Current status on manufacturing routes to produce metal matrix composites: State-of-the-art
暂无分享,去创建一个
[1] A. Kokabi,et al. Microstructure and mechanical properties of al/graphite- zirconium oxide hybrid composite fabricated by friction stir processing , 2022, Materials Science and Engineering: A.
[2] N. Ghetiya,et al. Investigation of microstructural and wear properties of stir cast and friction stir processed AA 2014-based metal matrix composites , 2022, Advances in Materials and Processing Technologies.
[3] Ojasvi Sharma,et al. Characterization of AA6063-T6/SiC/Walnut shell powder hybrid composite fabricated by electromagnetic stir-casting process with vacuum , 2022, Materials Today: Proceedings.
[4] Yiran Yang,et al. Enhancement of mechanical properties and wear of AA5083/316 stainless steel surface-composite developed through multi-pass friction stir processing (MPFSP) , 2022, Archives of Civil and Mechanical Engineering.
[5] Ziming Xie,et al. Microstructural evolution and mechanical properties of TiB2/2195 composites fabricated by ultrasonic-assisted in-situ casting , 2022, Ultrasonics sonochemistry.
[6] Zhongpin Chen,et al. Effects of rolling method on the microstructure and anisotropy of mechanical properties of Cu–15Cr in-situ composites , 2022, Materials Science and Engineering: A.
[7] He-guo Zhu,et al. Microstructure and mechanical properties of in-situ TiC reinforced Fe1.2MnCo0.8 medium-entropy alloy matrix composites , 2022, Materials Today Communications.
[8] A. Clare,et al. Enhanced Mechanical Properties of in Situ Synthesized Tic/Ti Composites by Pulsed Laser Directed Energy Deposition , 2022, SSRN Electronic Journal.
[9] V. Mohanavel,et al. Impact of multiple FSP passes on structure, mechanical, tribological and corrosion behaviors of AA6061/316 stainless-steel reinforced Al matrix composites , 2022, Surface and Coatings Technology.
[10] T. Das,et al. Fabrication and characterization of Al/GNPs composite by bottom pouring stir casting , 2022, Materials Letters.
[11] S. Mehrez,et al. Fabrication of AA6061/316 composites via a double pin FSP tool , 2022, Journal of Materials Research and Technology.
[12] Yue Sun,et al. Microstructure characterization and mechanical properties of in situ synthesized Ti2(Al,Si)C reinforced Al composites , 2022, Materials Characterization.
[13] V. Mohanavel,et al. Importance of pin number on mechanical properties and wear performance during manufacturing of AA6061/316 surface composite via FSP , 2022, Materials Letters.
[14] J. De Backer,et al. Properties Augmentation of Cast Hypereutectic Al–Si Alloy Through Friction Stir Processing , 2022, Metals and Materials International.
[15] Xinjiang Zhang,et al. Microstructure and enhanced mechanical properties of ZrC/Zr composites added by in-situ Y2O3 reinforced particles , 2022, Vacuum.
[16] Xin-hua Liu,et al. Microstructure and mechanical properties of in-situ TiB2/AlSi7Mg composite via powder metallurgy and hot extrusion , 2022, Journal of Materials Research and Technology.
[17] S. Marichamy,et al. Optimization of stir casting process parameter on copper aluminium composite , 2022, Materials Today: Proceedings.
[18] S. Mehrez,et al. Enhanced mechanical and tribological properties of AA6061/CeO2 composite fabricated by friction stir processing , 2022, Materials Letters.
[19] V. Sharma,et al. Approaches to measure volume fraction of surface composites fabricated by friction stir processing: A review , 2022, Measurement.
[20] Xiang-Tao Meng,et al. Microstructure, Properties and Strengthening Mechanism of Cu-Tib2-Al2o3 Composite Prepared by Liquid Phase In-Situ Reaction Casting , 2022, SSRN Electronic Journal.
[21] N. Ghetiya,et al. Effect of Friction stir processing parameters on microstructure and microhardness of aluminium based Metal matrix composites , 2022, Materials Today: Proceedings.
[22] K. Gopalakrishnan,et al. Influence of stir casting parameters in mechanical strength analysis of Aluminium Metal Matrix Composites (AMMCs) , 2022, Materials Today: Proceedings.
[23] P. Tambe,et al. Fabrication of surface metal matrix composites for structural applications using friction stir processing – A review , 2022, Materials Today: Proceedings.
[24] R. Jamaati,et al. Effects of Ni on the microstructure, mechanical and tribological properties of AA2024-Al3NiCu composite fabricated by stir casting process , 2021 .
[25] R. S. Walia,et al. Experimental Investigation on Microstructural and Mechanical Attributes of Al 7075-T6/SiC/CR/MoS2 Based Green Hybrid Composite Via Advanced Vacuum-Sealed Bottom Pouring Stir Casting , 2021, Silicon.
[26] Hanlian Liu,et al. Mechanical properties and microstructure of spark plasma sintered Al2O3-SiCw-Si3N4 composite ceramic tool materials , 2021, Ceramics International.
[27] R.S. Mishra,et al. Effect of multi-pass friction stir processing and SiC nanoparticles on microstructure and mechanical properties of AA6082-T6 , 2021, Advances in Industrial and Manufacturing Engineering.
[28] L. Tshabalala,et al. Effects of SiC On the Microstructure, Densification, Hardness and Wear Performance of TiB2 Ceramic Matrix Composite Consolidated Via Spark Plasma Sintering , 2021, Arabian Journal for Science and Engineering.
[29] Abdullah Aslan,et al. Effect of ball milling time on the structural characteristics and mechanical properties of nano-sized Y2O3 particle reinforced aluminum matrix composites produced by powder metallurgy route , 2021, Advanced Powder Technology.
[30] Poulomi Roy,et al. Mechanical and electrochemical properties of friction stir processed magnesium alloy AZ31 for biomedical applications: A pilot study , 2021, Materials Today: Proceedings.
[31] Lai-fei Cheng,et al. Electromagnetic wave-transparent porous silicon nitride ceramic prepared by gel-casting combined with in-situ nitridation reaction , 2021, Journal of the European Ceramic Society.
[32] R. Rana,et al. Microstructure evolution, mechanical behavior, and fracture analysis of ultrasonic-assisted stir-squeeze cast high strength AA7068/ZrO2p/Grp composite under thermal aging , 2021, Particulate Science and Technology.
[33] R. Zhou,et al. Fabrication of diamond/W–Cu functionally graded material by microwave sintering , 2021, Nuclear Engineering and Technology.
[34] S. D. Bharti,et al. Fabrication of AA6061/Al2O3 surface composite by double pass friction stir processing and investigation on mechanical and wear properties , 2021, Advances in Materials and Processing Technologies.
[35] H. Katsui,et al. Preparation of SiO2-diamond composites by spark plasma sintering , 2021, Journal of Asian Ceramic Societies.
[36] V. Badheka,et al. Fabrication and processing of aluminum alloy metal matrix composites , 2021, Materials and Manufacturing Processes.
[37] E. Mayo-Wilson,et al. The PRISMA 2020 statement: an updated guideline for reporting systematic reviews , 2021, BMJ.
[38] J. Davim,et al. Prediction of tensile strength in squeeze casted hybrid aluminium matrix composites using conventional statistical approach , 2021, Advances in Materials and Processing Technologies.
[39] W. Pabst,et al. Transparent MgAl2O4 spinel ceramics prepared via sinter-forging , 2021, Journal of the European Ceramic Society.
[40] J. Rajadurai,et al. Tribological investigations on h-BN/NiTi inoculated Al7075 composite developed via ultrasonic aided squeeze casting , 2021 .
[41] K. Patel,et al. Metal Matrix Composites Fabricated by Stir Casting Process–A Review , 2021, Advances in Materials and Processing Technologies.
[42] M. Sutaria,et al. Effects of stir casting process parameters on dispersion of reinforcement particles during preparation of metal composites , 2021 .
[43] D. Chaira. Powder Metallurgy Routes for Composite Materials Production , 2021 .
[44] N. Ghetiya,et al. A novel perception toward welding of stainless steel by activated TIG welding: a review , 2020, Materials and Manufacturing Processes.
[45] Parshant Kumar,et al. Effect of multi-groove reinforcement strategy on Cu/SiC surface composite fabricated by friction stir processing , 2020 .
[46] Sang-kwan Lee,et al. Experimental and thermodynamic study on interfacial reaction of B4C–Al6061 composites fabricated by stir casting process , 2020 .
[47] V. Badheka,et al. Different reinforcement strategies of hybrid surface composite AA6061/(B4C+MoS2) produced by friction stir processing , 2020, Materialwissenschaft und Werkstofftechnik.
[48] John Victor Christy,et al. Processing, Properties, and Microstructure of Recycled Aluminum Alloy Composites Produced Through an Optimized Stir and Squeeze Casting Processes , 2020 .
[49] J. Robson,et al. Friction stir welding/processing of metals and alloys: A comprehensive review on microstructural evolution , 2020 .
[50] S. D. Bharti,et al. Micro-hardness and wear behavior of AA2014/Al2O3 surface composite produced by friction stir processing , 2020, SN Applied Sciences.
[51] S. Kannan,et al. Processing and preparation of aerospace-grade aluminium hybrid metal matrix composite in a modified stir casting furnace integrated with mechanical supersonic vibration squeeze infiltration method , 2020 .
[52] Suresh Kumar Reddy Narala,et al. Experimental investigation to study the effects of processing parameters on developed novel AM(Al-Mn) series alloy , 2020 .
[53] Alagarsamy S.V.,et al. Multi-objective optimisation of dry sliding wear control parameters for stir casted AA7075- TiO2 composites using Taguchi-Grey relational approach , 2020, Australian Journal of Mechanical Engineering.
[54] A. Ma,et al. Investigation on mechanical properties and wear performance of functionally graded AZ91-SiCp composites via centrifugal casting , 2020 .
[55] Xin Cheng,et al. Effect of Different Sintering Additives on the Microstructure, Phase Compositions and Mechanical Properties of Si3N4/SiC Ceramics , 2020, ES Materials & Manufacturing.
[56] A. Handa,et al. Selection of tool transverse speed considering trial run experimentations for AZ61/Tic composite developed via friction stir processing using triangular tool , 2020 .
[57] A. S.,et al. Development of multi-pass processed AA6082/SiCp surface composite using friction stir processing and its mechanical and tribology characterization , 2020 .
[58] Ashish Kumar,et al. Effect of stirrer design on microstructure of MWCNT and Al alloy by stir casting process , 2020 .
[59] M. Anas,et al. An investigative review of squeeze casting: Processing effects & impact on properties , 2020 .
[60] John Victor Christy,et al. Optimization of stir–squeeze casting parameters for production of metal matrix composites using a hybrid analytical hierarchy process–Taguchi-Grey approach , 2020, Engineering Optimization.
[61] Y. Mazaheri,et al. On the surface reinforcing of A356 aluminum alloy by nanolayered Ti3AlC2 MAX phase via friction stir processing , 2019, Surface and Coatings Technology.
[62] Abhishek Sharma,et al. A comparative study on microstructural evolution and surface properties of graphene/CNT reinforced Al6061−SiC hybrid surface composite fabricated via friction stir processing , 2019, Transactions of Nonferrous Metals Society of China.
[63] Yifu Shen,et al. Investigation of microstructure and mechanical properties of SiC/Al surface composites fabricated by friction stir processing , 2019, Materials Research Express.
[64] Yifu Shen,et al. Fabrication of Al7075/PI composites base on FSW technology , 2019, The International Journal of Advanced Manufacturing Technology.
[65] S. Tiwari,et al. Friction-stir welding of AA6061-T6: The effects of Al2O3 nano-particles addition , 2019, Results in Materials.
[66] Abhishek Sharma,et al. Surface modification of Al6061-SiC surface composite through impregnation of graphene, graphite & carbon nanotubes via FSP: A tribological study , 2019, Surface and Coatings Technology.
[67] R. German,et al. A review of processing techniques for graphene-reinforced metal matrix composites , 2019, Materials and Manufacturing Processes.
[68] R. Muraliraja,et al. A review on the production of metal matrix composites through stir casting – Furnace design, properties, challenges, and research opportunities , 2019, Journal of Manufacturing Processes.
[69] L. Tonelli,et al. Effect of FSP parameters and tool geometry on microstructure, hardness, and wear properties of AA7075 with and without reinforcing B4C ceramic particles , 2019, The International Journal of Advanced Manufacturing Technology.
[70] S. Nayak,et al. Hybrid composites for automotive applications – A review , 2019, Journal of Reinforced Plastics and Composites.
[71] D. K. Sharma,et al. Fabrication of Hybrid Surface Composites AA6061/(B4C + MoS2) via Friction Stir Processing , 2019, Journal of Tribology.
[72] Surjya K. Pal,et al. Effect of multiple micro channel reinforcement filling strategy on Al6061-graphene nanocomposite fabricated through friction stir processing , 2019, Journal of Manufacturing Processes.
[73] S. Ramanathan,et al. Fabrication and Characterization of Organic and In-Organic Reinforced A356 Aluminium Matrix Hybrid Composite by Improved Double-Stir Casting , 2019, Silicon.
[74] S. A. Kori,et al. Characterization and Mechanical Properties of 2014 Aluminum Alloy Reinforced with Al2O3p Composite Produced by Two-Stage Stir Casting Route , 2019 .
[75] N. Ghetiya,et al. Joining of metal matrix composites using friction stir welding: a review , 2018, Materials and Manufacturing Processes.
[76] S. Kant,et al. Porosity Study of Developed Al–Mg–Si/Bauxite Residue Metal Matrix Composite Using Advanced Stir Casting Process , 2018, Arabian Journal for Science and Engineering.
[77] S. A. Kori,et al. Influence of Two-Stage Stir Casting Process on Mechanical Characterization and Wear Behavior of AA2014-ZrO2 Nano-composites , 2018, Transactions of the Indian Institute of Metals.
[78] M. Emamy,et al. Effects of Ca/Al ratio and extrusion process on Mg–Al–Ca alloys to produce a high toughness in-situ composite , 2018, Philosophical Magazine.
[79] A. N. Siddiquee,et al. A Review of Recent Progress in Solid State Fabrication of Composites and Functionally Graded Systems Via Friction Stir Processing , 2018 .
[80] B. Liang,et al. Fabrication and Wear Performance of (Cu–Sn) Solution/TiCx Bonded Diamond Composites , 2018, Journal of Superhard Materials.
[81] M. Azadi,et al. A parametric study on mechanical properties of aluminum–silicon/SiO2 nano-composites by a solid–liquid phase processing , 2018, Applied Physics A.
[82] Yavuz Sun,et al. Investigation of wear behaviour and microstructure of hot-pressed TiB2 particulate-reinforced magnesium matrix composites , 2018 .
[83] Surjya K. Pal,et al. Friction stir processing of Al6061-SiC-graphite hybrid surface composites , 2018 .
[84] Xian‐Xiang Zeng,et al. Recent Advancements in Polymer-Based Composite Electrolytes for Rechargeable Lithium Batteries , 2018, Electrochemical Energy Reviews.
[85] A. Garshin,et al. Main Areas for Improving Refractory Fiber-Reinforced Ceramic Matrix Composite Corrosion and Heat Resistance (Review) , 2018, Refractories and Industrial Ceramics.
[86] K. Patel,et al. Processing issues, machining, and applications of aluminum metal matrix composites , 2018 .
[87] T. Thankachan,et al. Effect of friction stir processing and hybrid reinforcements on copper , 2018 .
[88] Surjya K. Pal,et al. Surface modification of Al6061 by graphene impregnation through a powder metallurgy assisted friction surfacing , 2018 .
[89] T. Thankachan,et al. Investigations on the effect of friction stir processing on Cu-BN surface composites , 2018 .
[90] M. Sarcar,et al. Microstructure and mechanical behavior assessment of Al–Cu composites fabricated through stir casting , 2018 .
[91] Yucheng Wu,et al. Microstructures and properties of high-fraction Sip–6061Al composites fabricated by pressureless sintering , 2018 .
[92] Mohammad Jawaid,et al. Impact behaviour of hybrid composites for structural applications: a review , 2018 .
[93] M. A. Xavior,et al. Effect of ceramic reinforcements on microwave sintered metal matrix composites , 2018 .
[94] Bhaskar Chandra Kandpal,et al. Manufacturing and technological challenges in Stir casting of metal matrix composites– A Review , 2018 .
[95] N. Selvaraj,et al. Fabrication and Characterization of AA6082 ZTA Composites by Powder Metallurgy Process , 2018 .
[96] A. Chauhan,et al. Fabrication methods of particulate reinforced Aluminium metal matrix composite-A review , 2018 .
[97] I. G. Siddhalingeshwar,et al. Synthesis, Characterization and Mechanical Properties of AA7075 Based MMCs Reinforced with TiB2 Particles Processed Through Ultrasound Assisted In-Situ Casting Technique , 2018, Transactions of the Indian Institute of Metals.
[98] I. Papantoniou,et al. Manufacturing process of AA5083/nano-γAl2O3 localized composite metal foam fabricated by friction stir processing route (FSP) and microstructural characterization , 2018, Journal of Materials Science.
[99] Chuansong Wu,et al. Friction stir based welding and processing technologies - processes, parameters, microstructures and applications: A review , 2017 .
[100] S. A. J. Jahromi,et al. Fabrication of AZ31/MWCNTs Surface Metal Matrix Composites by Friction Stir Processing: Investigation of Microstructure and Mechanical Properties , 2017, Journal of Materials Engineering and Performance.
[101] F. Inambao,et al. Functionally graded metal matrix composite by centrifugal casting technique mathematical correlation , 2017 .
[102] A. Gerlich,et al. Fabrication of a new Al-Mg/graphene nanocomposite by multi-pass friction-stir processing: Dispersion, microstructure, stability, and strengthening , 2017 .
[103] N. Radhika,et al. The mechanical properties and abrasive wear behavior of functionally graded aluminum/AlB2 composites produced by centrifugal casting , 2017 .
[104] Amandeep Singh,et al. Fabrication and Tribological Behavior of Stir Cast Mg/B4C Metal Matrix Composites , 2017, Metallurgical and Materials Transactions A.
[105] Gürel Çam,et al. Recent developments in joining of aluminum alloys , 2017 .
[106] A. Çanakçı,et al. Fabrication of NanoSiC-Reinforced Al2024 Matrix Composites by a Novel Production Method , 2017 .
[107] J. Moses,et al. Investigation on the Tensile Strength and Microhardness of AA6061/TiC Composites by Stir Casting , 2017 .
[108] A. N. Siddiquee,et al. Effect of tool plunge depth on reinforcement particles distribution in surface composite fabrication via friction stir processing , 2017 .
[109] M. H. Ahmed,et al. Characterization of functionally graded Al-SiCp metal matrix composites manufactured by centrifugal casting , 2017 .
[110] A. N. Siddiquee,et al. Investigating Effects of Groove Dimensions on Microstructure and Mechanical Properties of AA6063/SiC Surface Composites Produced by Friction Stir Processing , 2017, Transactions of the Indian Institute of Metals.
[111] N. Arora,et al. An investigation of normal and submerged condition on microstructural and tribological properties of friction stir processed AZ91-D magnesium alloy , 2017 .
[112] Nese O. Korpe,et al. Production of aluminium–fly ash particulate composite by powder metallurgy technique using boric acid as foaming agent , 2017 .
[113] U. V. Kumar. Method of stir casting of Aluminum metal matrix Composites: A review , 2017 .
[114] B. Kumar,et al. Synthesis, Microstructure and Mechanical Properties of Al2O3/ZrO2/CeO2 Composites with Addition of Nickel and Titania Processed by Conventional Sintering , 2017 .
[115] A. Abdollahi,et al. Fabrication and Characterization of Hot Rolled and Hot Extruded Boron Carbide (B4C) Reinforced A356 Aluminum Alloy Matrix Composites Produced by Stir Casting Method , 2017, Transactions of the Indian Institute of Metals.
[116] Minoo Naebe,et al. Functionally graded materials: A review of fabrication and properties , 2016 .
[117] Yifu Shen,et al. Fabrication of tungsten particles reinforced aluminum matrix composites using multi-pass friction stir processing: Evaluation of microstructural, mechanical and electrical behavior , 2016 .
[118] M. Kazazi,et al. Microstructure and mechanical properties of Al-nano/micro SiC composites produced by stir casting technique , 2016 .
[119] S. Aravindan,et al. Machining behavior of AA6351–SiC–B4C hybrid composites fabricated by stir casting method , 2016 .
[120] Wei Liu,et al. Fabrication and characterization of stir casting AA6061—31%B 4 C composite , 2016 .
[121] D. Thakur,et al. Qualitative and quantitative assessment of microstructure in Al-B4C metal matrix composite processed by modified stir casting technique , 2016 .
[122] D. Das,et al. A simple stir casting technique for the preparation of in situ Fe-aluminides reinforced Al-matrix composites , 2016 .
[123] M. Rahsepar,et al. The influence of multipass friction stir processing on the corrosion behavior and mechanical properties of zircon-reinforced Al metal matrix composites , 2016 .
[124] I. Dinaharan,et al. Microstructure and wear characterization of aluminum matrix composites reinforced with industrial waste fly ash particulates synthesized by friction stir processing , 2016 .
[125] H. Ammar,et al. Metallographic investigation of tensile- and impact-tested aluminum composites , 2016 .
[126] M. Tan,et al. Fabrication of a new Al-Al2O3-CNTs composite using friction stir processing (FSP) , 2016 .
[127] M. Imran,et al. Study of hardness and tensile strength of Aluminium-7075 percentage varying reinforced with graphite and bagasse-ash composites , 2016, Resource-Efficient Technologies.
[128] I. Dinaharan. Influence of ceramic particulate type on microstructure and tensile strength of aluminum matrix composites produced using friction stir processing , 2016 .
[129] M. Joseph,et al. Processing and Characterization of Functionally Graded Aluminum (A319)—SiCp Metallic Composites by Centrifugal Casting Technique , 2016, Metallurgical and Materials Transactions A.
[130] H. Kurt. Influence of hybrid ratio and friction stir processing parameters on ultimate tensile strength of 5083 aluminum matrix hybrid composites , 2016 .
[131] K. Palanikumar,et al. Synthesis and characterization of dual particle (MWCT+B4C) reinforced sintered hybrid aluminum matrix composites , 2016 .
[132] Apurbba Kumar Sharma,et al. A Review of Research Trends in Microwave Processing of Metal-Based Materials and Opportunities in Microwave Metal Casting , 2016 .
[133] A. I. Bazlov,et al. Microstructure and material characterization of 6063/B4C and 1545K/B4C composites produced by two stir casting techniques for nuclear applications , 2016 .
[134] Sarabjeet Singh Sidhu,et al. Fabrication and Machining of Metal Matrix Composites: A Review , 2016 .
[135] N. Radhika,et al. Development of functionally graded aluminium composites using centrifugal casting and influence of reinforcements on mechanical and wear properties , 2016 .
[136] H. Patle,et al. Magnesium based surface metal matrix composites by friction stir processing , 2016 .
[137] Abhishek Kumar,et al. Dry sliding wear characteristics of in situ synthesized Al-TiC composites , 2016 .
[138] M. Dadashpour,et al. Effect of process parameter on mechanical properties and fracture behavior of AZ91C/SiO 2 composite fabricated by FSP , 2016 .
[139] Z. Sadeghian,et al. Evaluation of the microstructure and wear behaviour of AA6063-B4C/TiB2 mono and hybrid composite layers produced by friction stir processing , 2016 .
[140] A. N. Siddiquee,et al. Process parameters optimization for enhanced microhardness of AA 6061/ SiC surface composites fabricated via Friction Stir Processing (FSP) , 2016 .
[141] K. Jayadevan,et al. Analysis of Stir Cast Aluminium Silicon Carbide Metal Matrix Composite: A Comprehensive Review☆ , 2016 .
[142] Zhengyi Jiang,et al. Stir casting process for manufacture of Al–SiC composites , 2017, Rare Metals.
[143] M. Golmohammadi,et al. Fabrication and wear characterization of an A413/Ni surface metal matrix composite fabricated via friction stir processing , 2015 .
[144] V. Sharma,et al. Surface composites by friction stir processing: A review , 2015 .
[145] Zhenya Zhang,et al. Effect of multi-pass friction stir processing on microstructure and mechanical properties of Al3Ti/A356 composites , 2015 .
[146] A. Manna,et al. Fabrication of Hybrid Mg/(Al2O3p + SiCp + Grp) Metal Matrix Composite on Developed Gas Injection Liquid Stir Casting Setup , 2015 .
[147] S. H. Juang,et al. Influence of preheating temperatures and adding rates on distributions of fly ash in aluminum matrix composites prepared by stir casting , 2015 .
[148] K. Allesu,et al. Mechanical and Wear Properties of Al–Al2O3 Metal Matrix Composites Fabricated by the Combined Effect of Stir and Squeeze Casting Method , 2015, Transactions of the Indian Institute of Metals.
[149] M. B. Givi,et al. Mechanical and microstructural characterization of Cu/CNT nanocomposite layers fabricated via friction stir processing , 2015 .
[150] Yoshimi Watanabe,et al. Fabrication of copper/diamond functionally graded materials for grinding wheels by centrifugal sintered-casting , 2015 .
[151] Sunpreet Singh,et al. Effect of Single, Double and Triple Particle Size SiC and Al2O3 Reinforcement on Wear Properties of AMC Prepared by Stir Casting in Vacuum Mould , 2015, Transactions of the Indian Institute of Metals.
[152] J. Tan,et al. Microstructure evolution and impact toughness of sandwich structured composite prepared by centrifugal casting and hot rolling process , 2015 .
[153] V. Krstić,et al. Reaction sintering of SiC composites with in situ converted TiO2 to TiC , 2015, Journal of Materials Science.
[154] A. Yönetken. Fabrication of Electroless Ni Plated Fe–Al2O3 Ceramic–Metal Matrix Composites , 2015, Transactions of the Indian Institute of Metals.
[155] S. Prabu,et al. Influence of Processing Temperatures on Mechanical Properties and Microstructure of Squeeze Cast Aluminum Alloy Composites , 2015 .
[156] R. Binder,et al. Influence of phosphorus on the development of nickel alloy/h-BN-based self-lubricating composites processed by powder metallurgy , 2015 .
[157] M. B. Parappagoudar,et al. Modelling of squeeze casting process using design of experiments and response surface methodology , 2015 .
[158] V. Balaji,et al. Dry Sliding Wear Behavior of Titanium–(TiB+TiC) in situ Composite Developed by Spark Plasma Sintering , 2015 .
[159] C. Wen,et al. Carbon Nanotube Reinforced Titanium Metal Matrix Composites Prepared by Powder Metallurgy—A Review , 2015 .
[160] Vivek Jain,et al. Microwave Processing of Materials and Applications in Manufacturing Industries: A Review , 2015 .
[161] J. Oak,et al. Fabrication and Analysis of the Wear Properties of Hot-Pressed Al-Si/SiCp + Al-Si-Cu-Mg Metal Matrix Composite , 2015, Journal of Materials Engineering and Performance.
[162] J. Prakash,et al. Characterization of Aluminium Matrix Composites (AA6061/B4C) Fabricated by Stir Casting Technique , 2015 .
[163] Yoshimi Watanabe,et al. Grain Refinement of Al3Ti Dispersed Aluminum Matrix Composites by Reaction Centrifugal Mixed-Powder Method , 2015 .
[164] N. Sateesh,et al. Manufacture of Aluminium Metal Matrix Composite (Al7075-SiC) by Stir Casting Technique☆ , 2015 .
[165] M. Moshksar,et al. Fabrication and densification enhancement of SiC-particulate-reinforced copper matrix composites prepared via the sinter-forging process , 2014, International Journal of Minerals, Metallurgy, and Materials.
[166] Bruno de Meester de Betzenbroeck,et al. Characterization of oxide dispersion strengthened copper based materials developed by friction stir processing , 2014 .
[167] A. Gerlich,et al. Fabrication of metal matrix composites by friction stir processing with different Particles and processing parameters , 2014 .
[168] Saeed Maleksaeedi,et al. Effects of nano-Al2O3 particle addition on grain structure evolution and mechanical behaviour of friction-stir-processed Al , 2014 .
[169] A. Samadi,et al. Effect of pouring temperature and casting thickness on distribution gradient of in situ formed Al2Cu particles during centrifugal casting of hypereutectic Al–Cu alloy , 2014 .
[170] Yizhong Huang,et al. Investigation of microstructure and mechanical properties of Al6061-nanocomposite fabricated by stir casting , 2014 .
[171] Amir Arifin,et al. Material processing of hydroxyapatite and titanium alloy (HA/Ti) composite as implant materials using powder metallurgy: A review , 2014 .
[172] Guohua Wu,et al. Effects of processing parameters and Ca content on microstructure and mechanical properties of squeeze casting AZ91–Ca alloys , 2014 .
[173] M. Ahmed,et al. Manufacturing of Nano-Surface AA7075 Composites by Friction Stir Processing , 2014 .
[174] Yi Wu,et al. Mechanical properties of in-situ TiB2/A356 composites , 2014 .
[175] I. Dinaharan,et al. Effect of TiB2 content and temperature on sliding wear behavior of AA7075/TiB2 in situ aluminum cast composites , 2014 .
[176] M. A. Baghchesara,et al. Investigation of microstructure and mechanical properties of nano MgO reinforced Al composites manufactured by stir casting and powder metallurgy methods: A comparative study , 2014 .
[177] Shashi Prakash Dwivedi,et al. Microstructure and Mechanical Properties of A356/SiC Composites Fabricated by Electromagnetic Stir Casting☆ , 2014 .
[178] J. Wang,et al. Study on squeeze casting of an in situ 5 vol.-% TiB2/2014 Al composite , 2013 .
[179] A. Kumaraswamy,et al. Influence of reinforcements (SiC and Al2O3) and rotational speed on wear and mechanical properties of aluminum alloy 6061-T6 based surface hybrid composites produced via friction stir processing , 2013 .
[180] Belete Sirahbizu Yigezu,et al. The Key Attributes of Synthesizing Ceramic Particulate Reinforced Al-Based Matrix Composites through Stir Casting Process: A Review , 2013 .
[181] S. M. Masoudpanah,et al. Wear Behavior of Multiwalled Carbon Nanotube/AZ31 Composite Obtained by Friction Stir Processing , 2013 .
[182] I. Dinaharan,et al. Effect of Traverse Speed on Microstructure and Microhardness of Cu/B4C Surface Composite Produced by Friction Stir Processing , 2013, Transactions of the Indian Institute of Metals.
[183] H. Xue,et al. Effects of temperature on fracture behavior of Al-based in-situ composites reinforced with Mg2Si and Si particles fabricated by centrifugal casting , 2013 .
[184] Yoshimi Watanabe,et al. Fabrication of Al/Diamond Particles Functionally Graded Materials by Centrifugal Sintered-Casting Method , 2013 .
[185] S. Balasivanandha Prabu,et al. Deformation behaviour and failure mechanisms of Al–TiB2 in situ composites , 2013 .
[186] S. Jung,et al. Microstructure and mechanical property of A356 based composite by friction stir processing , 2013 .
[187] A. Mostafapour,et al. The effect of process parameters on microstructural characteristics of AZ91/SiO2 composite fabricated by FSP , 2013 .
[188] K. Allesu,et al. DESIGN, CONSTRUCTION AND PERFORMANCE EVALUATION OF MULTIPLE CASTING MACHINE , 2013 .
[189] N. Gupta,et al. Novel Applications of Functionally Graded Nano, Optoelectronic and Thermoelectric Materials , 2013 .
[190] Shengdun Zhao,et al. Effect of process parameters on microstructure and mechanical properties in AlSi9Mg connecting-rod fabricated by semi-solid squeeze casting , 2012 .
[191] T. Mahmoud,et al. Improvement of microstructural, mechanical and tribological characteristics of A413 cast Al alloys using friction stir processing , 2012 .
[192] R. Dasgupta. Aluminium Alloy-Based Metal Matrix Composites: A Potential Material for Wear Resistant Applications , 2012 .
[193] A. Gerlich,et al. Distribution and stability of carbon nanotubes during multi-pass friction stir processing of carbon nanotube/aluminum composites , 2012 .
[194] L. Geng,et al. Preparation and characterization of SiCp/2024Al composite foams by powder metallurgy , 2012 .
[195] Yoshimi Watanabe,et al. Fabrication of Aluminum Alloy‐Based Diamond Grinding Wheel by the Centrifugal Mixed‐Powder Method for Novel Machining Technology of CFRP , 2012 .
[196] N. Murugan,et al. Effect of tool rotational speed and pin profile on microstructure and tensile strength of dissimilar friction stir welded AA5083-H111 and AA6351-T6 aluminum alloys , 2012 .
[197] P. Kao,et al. Improvement of mechanical properties of a cast Al–Si base alloy by friction stir processing , 2012 .
[198] Yoshimi Watanabe,et al. Fabrication of Metal-Based Functionally Graded Grinding Wheel by a Centrifugal Mixed-Powder Method , 2012 .
[199] Rob Boom,et al. Recycling of composite materials , 2012 .
[200] M. R. Bayoumi,et al. Powder Metallurgical Fabrication and Microstructural Investigations of Aluminum/Steel Functionally Graded Material , 2011 .
[201] H. Ezatpour,et al. Microstructure and mechanical properties of Al-Al2O3 micro and nano composites fabricated by stir casting , 2011 .
[202] B. Xiao,et al. Formation mechanism of in situ Al3Ti in Al matrix during hot pressing and subsequent friction stir processing , 2011 .
[203] M. Barmouz,et al. Fabrication of in situ Cu/SiC composites using multi-pass friction stir processing: Evaluation of microstructural, porosity, mechanical and electrical behavior , 2011 .
[204] M. Afarani,et al. Fabrication of 5052Al/Al2O3 nanoceramic particle reinforced composite via friction stir processing route , 2011 .
[205] Guanghui Liu,et al. Aluminum alloy pistons reinforced with SiC fabricated by centrifugal casting , 2011 .
[206] B. S. Murty,et al. Fabrication and Response of Al70Y16Ni10Co4 Glass Reinforced Metal Matrix Composites , 2011 .
[207] V. S. Kumar,et al. Relationship between process parameters and mechanical properties of friction stir processed AA6063-T6 aluminum alloy , 2011 .
[208] H. Assadi,et al. Microstructure and tribological performance of an aluminium alloy based hybrid composite produced by friction stir processing , 2011 .
[209] G. Faraji,et al. Experimental Investigation of Magnesium-Base Nanocomposite Produced by Friction Stir Processing: Effects of Particle Types and Number of Friction Stir Processing Passes , 2011 .
[210] A. Kokabi,et al. Effect of rotational speed and probe profile on microstructure and hardness of AZ31/Al2O3 nanocomposites fabricated by friction stir processing , 2011 .
[211] S. Kashani-Bozorg,et al. Wear assessment of Al/Al2O3 nano-composite surface layer produced using friction stir processing , 2011 .
[212] C. Muralidharan,et al. Influence of friction stir welding process and tool parameters on strength properties of AA7075-T6 aluminium alloy joints , 2011 .
[213] T. K. Adelakin,et al. Study of Boride-Reinforced Aluminum Matrix Composites Produced via Centrifugal Casting , 2011 .
[214] R. Adalarasan,et al. AN EVALUATION OF MECHANICAL PROPERTIES AND MICROSTRUCTURE OF DISPERSION STRENGTHENED AI-6063 OBTAINED BY IN -SITU FABRICATION , 2011 .
[215] G. Faraji,et al. Effect of Process Parameters on Microstructure and Micro-hardness of AZ91/Al2O3 Surface Composite Produced by FSP , 2011 .
[216] R. M. Pillai,et al. Characterization of centrifugal cast functionally graded aluminum-silicon carbide metal matrix composites , 2010 .
[217] G. Das,et al. Tensile properties of cast and mushy state rolled Al–4·5Cu alloy and in situ Al4·5Cu–5TiB2 composite , 2010 .
[218] L. Sui,et al. Fabrication of ZrB2 particles reinforced AZ31 magnesium matrix composite by powder metallurgy and subsequent hot extrusion , 2010 .
[219] S. Aravindan,et al. Fabrication of copper–TiC–graphite hybrid metal matrix composites through microwave processing , 2010 .
[220] O. Suárez,et al. Fabrication and Characterization of Squeezed Cast Aluminum Matrix Composites Containing Boride Reinforcements , 2010 .
[221] Y. Xie,et al. Characteristics of two Al based functionally gradient composites reinforced by primary Si particles and Si/in situ Mg2Si particles in centrifugal casting , 2010 .
[222] H. Xue,et al. Microstructural characteristics and properties in centrifugal casting of SiCp/Zl104 composite , 2009 .
[223] Yoshimi Watanabe,et al. A Novel Fabrication Method for Functionally Graded Materials under Centrifugal Force: The Centrifugal Mixed-Powder Method , 2009, Materials.
[224] Lakhvir Singh,et al. Study of Wear Properties of Al-SiC Composites , 2009 .
[225] D. Moher,et al. Preferred reporting items for systematic reviews and meta-analyses: the PRISMA Statement , 2009, BMJ : British Medical Journal.
[226] A. Gerlich,et al. Synthesis of multi-walled CNT reinforced aluminium alloy composite via friction stir processing , 2009 .
[227] X. J. Wang,et al. The interfacial characteristic of SiCp/AZ91 magnesium matrix composites fabricated by stir casting , 2009 .
[228] B. S. Murty,et al. Ageing behaviour of A356 alloy reinforced with in-situ formed TiB2 particles , 2008 .
[229] R. M. Pillai,et al. Centrifugal casting of functionally graded aluminium matrix composite components , 2008 .
[230] M. Taha,et al. Some experimental data on workability of aluminium-particulate-reinforced metal matrix composites , 2008 .
[231] A. Çakan,et al. The effect of weld parameters on friction stir welding of brass plates , 2008 .
[232] Y. Birol. In situ synthesis of Al–TiCp composites by reacting K2TiF6 and particulate graphite in molten aluminium , 2008 .
[233] V. Balasubramanian,et al. Effect of Tool Pin Profile and Tool Rotational Speed on Mechanical Properties of Friction Stir Welded AA6061 Aluminium Alloy , 2008 .
[234] Z. Ma,et al. Friction Stir Processing Technology: A Review , 2008 .
[235] V. Balasubramanian,et al. Influences of tool pin profile and tool shoulder diameter on the formation of friction stir processing zone in AA6061 aluminium alloy , 2008 .
[236] Omayma A. Elkady,et al. Processing and Evaluation of Cu/Carbon Fibre Composites by Vortex and Powder Metallurgy Techniques , 2007 .
[237] P. Cavaliere,et al. Friction stir processing of AM60B magnesium alloy sheets , 2007 .
[238] A. Basumallick,et al. New Generation Metal Matrix Composites , 2007 .
[239] R. M. Pillai,et al. Centrifugal casting: A potential technique for making functionally graded materials and engineering components , 2007 .
[240] Weiweng Zhang,et al. Effect of pressure on microstructures and mechanical properties of Al-Cu-based alloy prepared by squeeze casting , 2007 .
[241] M. Ramachandra,et al. Effect of reinforcement of flyash on sliding wear, slurry erosive wear and corrosive behavior of aluminium matrix composite , 2007 .
[242] Xianfeng Li,et al. Damping capacity of in situ TiB2 particulates reinforced aluminium composites with Ti addition , 2007 .
[243] N. Ho,et al. Al-Al3Ti nanocomposites produced in situ by friction stir processing , 2006 .
[244] R. Mishra,et al. Microstructural modification of as-cast Al-Si-Mg alloy by friction stir processing , 2006 .
[245] N. Ramanan,et al. Modeling of Liquid Metal Infiltration of Porous Fiber Preform During Squeeze Casting , 2006 .
[246] M. Surappa,et al. Hot hardness and indentation creep study on Al–5% Mg alloy matrix–B4C particle reinforced composites , 2006 .
[247] Mario Rosso,et al. Ceramic and metal matrix composites: Routes and properties , 2006 .
[248] K. Das,et al. Synthesis and characterization of zircon sand/Al-4.5 wt% Cu composite produced by stir casting route , 2006 .
[249] Rajiv S. Mishra,et al. Effect of multiple-pass friction stir processing on microstructure and tensile properties of a cast aluminum-silicon alloy , 2006 .
[250] Y. Morisada,et al. MWCNTs/AZ31 surface composites fabricated by friction stir processing , 2006 .
[251] S. Prabu,et al. Influence of stirring speed and stirring time on distribution of particles in cast metal matrix composite , 2006 .
[252] I. Kim,et al. Microstructures of functionally graded materials fabricated by centrifugal solid-particle andin-situ methods , 2005 .
[253] T. Srivatsan,et al. Damage Tolerant Magnesium Metal Matrix Composites: Influence of Reinforcement and Processing , 2005 .
[254] R. Mishra,et al. Development of Ultrafine-grained Microstructure and Low Temperature (0.48 Tm) Superplasticity in Friction Stir Processed Al-Mg-Zr , 2005 .
[255] K. Tokaji. Effect of stress ratio on fatigue behaviour in SiC particulate-reinforced aluminium alloy composite , 2005 .
[256] J. Lo,et al. Preform cracking in squeeze cast magnesium based composites – effects of tooling temperature , 2004 .
[257] M. Gui,et al. Microstructure and mechanical properties of Mg – Al9Zn/SiCp composite produced by vacuum stir casting process , 2004 .
[258] Yoshimi Watanabe,et al. Nickel-aluminides/steel clad pipe fabricated by reactive centrifugal casting method from liquid aluminum and solid nickel , 2004 .
[259] Murray W. Mahoney,et al. Superplastic Forming of 7475 Al Sheet after Friction Stir Processing (FSP) , 2004 .
[260] Sumsun Naher,et al. Simulation of the stir casting process , 2003 .
[261] A. Kennedy,et al. The thermal stability of TiC particles in an Al7wt.%Si alloy , 2003 .
[262] Peter D. Lee,et al. Centrifugal casting of aluminium containing in situ formed TiB2 , 2003 .
[263] J. Bannan,et al. In situ fabrication of titanium carbide reinforced copper MMC , 2003 .
[264] Peiyong Li,et al. Fabrication and characterization of cast magnesium matrix composites by vacuum stir casting process , 2003 .
[265] R. Mishra,et al. Friction stir processing: a novel technique for fabrication of surface composite , 2003 .
[266] Takahiro Tanaka,et al. Centrifugal casting of Al2O3–15 wt.%ZrO2 ceramic composites , 2003 .
[267] Hyunho Shin,et al. Fabrication, microstructures and High-Strain-Rate properties of TiC-reinforced titanium matrix composites , 2002 .
[268] K. Asano,et al. Microstructure and mechanical properties of Al-Cu-Mg alloy matrix hybrid composites fabricated by squeeze casting , 2002 .
[269] L. Froyen,et al. Microstructure and interface characteristics of B4C, SiC and Al2O3 reinforced Al matrix composites: a comparative study , 2001 .
[270] M. Taha. INDUSTRIALIZATION OF CAST ALUMINUM MATRIX COMPOSITES (AMCCs) , 2001 .
[271] Yoshimi Watanabe,et al. Evaluation of three-dimensional orientation of Al3Ti platelet in Al-based functionally graded materials fabricated by a centrifugal casting technique , 2001 .
[272] Zhonghong Lai,et al. Fabrication of ZrO2–NiCr functionally graded material by powder metallurgy , 2001 .
[273] O. Domı́nguez,et al. CHARACTERIZATION AND PROPERTIES OF ALUMINUM COMPOSITE MATERIALS PREPARED BY POWDER METALLURGY TECHNIQUES USING CERAMIC SOLID WASTES , 2001 .
[274] Rajiv S. Mishra,et al. Friction Stir Processing: A New Grain Refinement Technique to Achieve High Strain Rate Superplasticity in Commercial Alloys , 2001 .
[275] Rajiv S. Mishra,et al. Friction Stir Processing: a Tool to Homogenize Nanocomposite Aluminum Alloys , 2001 .
[276] Sung-Whan Cho,et al. The effects of processing parameters on the microstructure and mechanical properties of modified B390 alloy in direct squeeze casting , 2000 .
[277] K. L. Lee,et al. Thermomechanical behaviour of a copper–chromium in situ composite , 2000 .
[278] M. R. Ghomashchi,et al. Squeeze casting: an overview , 2000 .
[279] T. Khan,et al. Reactive Casting of Ni–Al–Fe Ternary Intermetallic Alloys , 2000 .
[280] R. Katz,et al. Optimum parameters for wetting silicon carbide by aluminum alloys , 2000 .
[281] A. Mukherjee,et al. High Strain Rate Superplasticity in a Friction Stir Processed 7075 Al Alloy , 1999 .
[282] J. Zhang,et al. Microstructure and tensile properties of graded Al–Mg2 Si in situ composites fabricated by centrifugal casting , 1999 .
[283] W. P. Weng,et al. Applicability of ultrasonic testing for the determination of volume fraction of particulates in alumina-reinforced aluminum matrix composites , 1999 .
[284] M.S.J. Hashmi,et al. Metal matrix composites: production by the stir casting method , 1999 .
[285] R. Rawlings,et al. Production of silicon carbide Al 2124 alloy functionally graded materials by mechanical powder metallurgy technique , 1999 .
[286] John Banhart,et al. Metal foaming by a powder metallurgy method: Production, properties and applications , 1998 .
[287] L. Qi. The influence of liquid extrusion on the microstructure and properties of an Al-Si alloy , 1998 .
[288] X. Tong,et al. Al-TiC composites In Situ-processed by ingot metallurgy and rapid solidification technology: Part I. Microstructural evolution , 1998 .
[289] M. Gupta,et al. In situ preparation of TiB2 reinforced Al based composites , 1998 .
[290] M. Surappa. Microstructure evolution during solidification of DRMMCs (Discontinuously reinforced metal matrix composites): State of art , 1997 .
[291] Yoshimi Watanabe,et al. Analysis of thermal residual stress in a thick-walled ring of duralcan-base Al-SiC functionally graded material , 1996 .
[292] T. Bieler,et al. Superplasticity in powder metallurgy aluminum alloys and composites , 1995 .
[293] E. Lavernia,et al. A comparison of techniques for determining the volume fraction of particulates in metal matrix composites , 1992 .
[294] D. S. Pearson,et al. Centrifugal Consolidation of Al2O3 and AI2O3/ZrO2 Composite Slurries vs Interparticle Potentials: Particle Packing and Mass Segregation , 1991 .
[295] Yasuyoshi Fukui,et al. Fundamental Investigation of Functionally Gradient Material Manufacturing System using Centrifugal Force , 1991 .
[296] B. J. Pletka,et al. LIQUID PHASE SINTERED METAL MATRIX COMPOSITE MATERIALS , 1990 .
[297] F. Lange,et al. Powder Processing Science and Technology for Increased Reliability , 1989 .
[298] P. K. Rohatgi,et al. Incorporation of Alumina Particles in Aluminium-Magnesium Alloy by Stirring in Melt , 1984 .
[299] V. Agarwala,et al. Fabrication of Aluminium Base Composite by Foundry Technique , 1981 .