Residual stresses in ultrasonic vibration assistance turning cemented carbide
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F. Jiao | Y. Niu | Xinbo Wang | Ming-jun Zhang | Shuo Chen
[1] Ming Chen,et al. Study on the mechanism of AL2024-T351/Ti-6Al-4V laminated materials by ultrasonic vibration drilling , 2022, Archives of Civil and Mechanical Engineering.
[2] D. Xiang,et al. Establishment of Scratching Force Model for Micro-removal of SiCp/Al Composites by Ultrasonic Vibration , 2022, Journal of Materials Processing Technology.
[3] Z. Said,et al. Residual stress of grinding cemented carbide using MoS2 nano-lubricant , 2022, The International Journal of Advanced Manufacturing Technology.
[4] Z. Said,et al. Influence of texture shape and arrangement on nanofluid minimum quantity lubrication turning , 2021, The International Journal of Advanced Manufacturing Technology.
[5] T. Muthuramalingam,et al. A comprehensive review on residual stresses in turning , 2021, Advances in Manufacturing.
[6] K. Chou,et al. A facile route to prepare ODS WC Co cemented carbides , 2021 .
[7] G. Marcheselli,et al. Toward Greener Synthesis of WC Powders for Cemented Tungsten Carbides Manufacturing , 2021 .
[8] L. Wan,et al. Precision grinding of cemented carbides based on a multi-layer brazed diamond wheel using an electrolyte containing carbon nanotubes , 2021, The International Journal of Advanced Manufacturing Technology.
[9] T. Bergs,et al. Experimental analysis on vibratory finishing of cemented carbides , 2021 .
[10] Zhanqiang Liu,et al. Effects of Physicochemical Properties of Different Base Oils on Friction Coefficient and Surface Roughness in MQL Milling AISI 1045 , 2021, International Journal of Precision Engineering and Manufacturing-Green Technology.
[11] H. Qi,et al. DEM and experimental study on the ultrasonic vibration-assisted abrasive finishing of WC-8Co cemented carbide cutting edge , 2021 .
[12] Lei Liu,et al. Effects of micro/nano CeO2 on the microstructure and properties of WC-10Co cemented carbides , 2020 .
[13] Bo Zhao,et al. Thermo-mechanical coupling effect on surface residual stress during ultrasonic vibration-assisted forming grinding gear , 2020 .
[14] F. Jiao,et al. Tool wear in laser ultrasonically combined turning of tungsten carbide with PCD tools , 2020, The International Journal of Advanced Manufacturing Technology.
[15] Xiaohu Xu,et al. Robotic grinding of complex components: A step towards efficient and intelligent machining - challenges, solutions, and applications , 2020, Robotics Comput. Integr. Manuf..
[16] Chenbing Ni,et al. Review of ultrasonic vibration-assisted machining in advanced materials , 2020 .
[17] Hongwei Liu,et al. Residual stresses in high-speed two-dimensional ultrasonic rolling 7050 aluminum alloy with thermal-mechanical coupling , 2020 .
[18] M. Khajehzadeh,et al. Finite element simulation and experimental investigation of residual stresses in ultrasonic assisted turning. , 2020, Ultrasonics.
[19] Deyuan Zhang,et al. Effects of high-pressure coolant on cutting performance of high-speed ultrasonic vibration cutting titanium alloy , 2020, Journal of Materials Processing Technology.
[20] Chengwei Kang,et al. Advances in Rotary Ultrasonic-Assisted Machining , 2020 .
[21] N. Ying,et al. A novel 3D finite element simulation method for longitudinal-torsional ultrasonic-assisted milling , 2020 .
[22] Z. Deng,et al. Thermal-mechanical coupling simulation and experimental research on the grinding of zirconia ceramics , 2019, Journal of Manufacturing Processes.
[23] Jun Wang,et al. Predictive model for minimum chip thickness and size effect in single diamond grain grinding of zirconia ceramics under different lubricating conditions , 2019, Ceramics International.
[24] N. Klingbeil,et al. The effect of process parameters on residual stress evolution and distortion in the laser powder bed fusion of Ti-6Al-4V , 2019, Additive Manufacturing.
[25] Ammar H. Elsheikh,et al. Effect of cutting parameters on surface residual stresses in dry turning of AISI 1035 alloy , 2019, Journal of the Brazilian Society of Mechanical Sciences and Engineering.
[26] D. Hui,et al. Analysis and homogenization of residual stress in aerospace ring rolling process of 2219 aluminum alloy using thermal stress relief method , 2019, International Journal of Mechanical Sciences.
[27] Ping Zou,et al. Study on ultrasonic vibration–assisted cutting of Nomex honeycomb cores , 2019, The International Journal of Advanced Manufacturing Technology.
[28] Shubao Yang,et al. A novel finite element method for the wear analysis of cemented carbide tool during high speed cutting Ti6Al4V process , 2019, The International Journal of Advanced Manufacturing Technology.
[29] Dazhong Wang,et al. Investigations of tangential ultrasonic vibration turning of Ti6Al4V using finite element method , 2019 .
[30] F. Jiao,et al. Optimization of tungsten carbide processing parameters for laser heating and ultrasonic vibration composite assisted cutting , 2018, Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science.
[31] Dongzhou Jia,et al. Experimental evaluation of surface topographies of NMQL grinding ZrO2 ceramics combining multiangle ultrasonic vibration , 2018, The International Journal of Advanced Manufacturing Technology.
[32] S. Amini,et al. Residual stress, tensile strength, and macrostructure investigations on ultrasonic assisted friction stir welding of AA 6061-T6 , 2018, The Journal of Strain Analysis for Engineering Design.
[33] S. Amini,et al. Evaluation of optimized surface properties and residual stress in ultrasonic assisted ball burnishing of AA6061-T6 , 2018, Measurement.
[34] Z. Bi,et al. Grinding characteristics of cBN-WC-10Co composites , 2017 .
[35] Z. Bi,et al. Simulation and experiment of cutting characteristics for single cBN-WC-10Co fiber , 2017 .
[36] Dongzhou Jia,et al. Maximum undeformed equivalent chip thickness for ductile-brittle transition of zirconia ceramics under different lubrication conditions , 2017 .
[37] Jianguang Li,et al. Distortion caused by residual stresses in machining aeronautical aluminum alloy parts: recent advances , 2017 .
[38] Pulak M. Pandey,et al. Recent advances in ultrasonic assisted turning: A step towards sustainability , 2016 .
[39] Varun Sharma,et al. Optimization of machining and vibration parameters for residual stresses minimization in ultrasonic assisted turning of 4340 hardened steel. , 2016, Ultrasonics.
[40] Steven Y. Liang,et al. Residual stress modeling in minimum quantity lubrication grinding , 2016 .
[41] C. Sanz,et al. Surface integrity of rotary ultrasonic machined ZrO2–TiN and Al2O3–TiC–SiC ceramics , 2015 .
[42] P. Dong,et al. Analysis of residual stress relief mechanisms in post-weld heat treatment , 2014 .
[43] T. Mehner,et al. Influencing the residual stresses in the surface layer by use of appropriate cutting parameters and tool geometries in turning of aluminium matrix composites , 2012 .
[44] Tao Sun,et al. Finite element optimization of diamond tool geometry and cutting-process parameters based on surface residual stresses , 2007 .
[45] R. C. McClung,et al. A literature survey on the stability and significance of residual stresses during fatigue , 2007 .
[46] K. Srinivas,et al. Optimization of Residual Stresses in Hard Turning of Super Alloy Inconel 718 , 2018 .
[47] P. Bocher,et al. Influence of surface residual stresses on the fatigue life and crack propagation behavior of turned Inconel 718 super-alloy , 2018 .
[48] M. Wan,et al. Modeling of machining-induced residual stresses , 2018, Journal of Materials Science.
[49] Fukuo Hashimoto,et al. Industrial challenges in grinding , 2009 .