Wear assessment of 3–D printed parts of PLA (polylactic acid) using Taguchi design and Artificial Neural Network (ANN) technique
暂无分享,去创建一个
Harish Kumar | P. K. Arora | Girija Moona | Meena Pant | Ranganath M Singari | Harish Kumar | Meena Pant | G. Moona | Harish Kumar | P. K. Arora | Meenakshi Pant | Ranganath M Singari | R. Singari
[1] A. K. Sood,et al. Parametric appraisal of mechanical property of fused deposition modelling processed parts , 2010 .
[2] S. Sahmani,et al. Calcium phosphate-PLA scaffolds fabricated by fused deposition modeling technique for bone tissue applications: Fabrication, characterization and simulation , 2020 .
[3] Abdul Samad Mohammed,et al. Wear Characteristics of Metallic Biomaterials: A Review , 2015, Materials.
[4] L. Jyothish Kumar,et al. Current Trends of Additive Manufacturing in the Aerospace Industry , 2017 .
[5] David Z. Zhang,et al. Additive manufacturing: A framework for implementation , 2014 .
[6] M.S.J. Hashmi,et al. Methods of wear testing for advanced surface coatings and bulk materials , 1998 .
[7] Ali Siadat,et al. Impact of fused deposition modeling (FDM) process parameters on strength of built parts using Taguchi’s design of experiments , 2018, The International Journal of Advanced Manufacturing Technology.
[8] Thomas Welzel,et al. Processing and Wear Behaviour of 3D Printed PLA Reinforced with Biogenic Carbon , 2018, Advances in Tribology.
[9] H S Dobbs,et al. Wear studies on prosthetic materials using the pin-on-disc machine. , 1982, Biomaterials.
[10] Rajesh Kumar Sharma,et al. Basics and applications of rapid prototyping medical models , 2014 .
[11] S. Perepelkina,et al. Investigation of Tribological Properties of Friction Pairs Duralumin – Fluoropolymer Used for Design and Manufacturing of Biomechatronic Devices , 2017 .
[12] Syed H. Masood,et al. Analysis of wear behavior of additively manufactured PC-ABS parts , 2018, Materials Letters.
[13] Manu Srivastava,et al. Optimisation of FDM process parameters by Taguchi method for imparting customised properties to components , 2018 .
[14] Charlie C. L. Wang,et al. The status, challenges, and future of additive manufacturing in engineering , 2015, Comput. Aided Des..
[15] Fernando Fraternali,et al. Dimensional accuracy analysis of coupled fused deposition modeling and vapour smoothing operations for biomedical applications , 2017 .
[16] Pratyoosh Shukla,et al. Improved biobleaching of mixed hardwood pulp and process optimization using novel GA-ANN and GA-ANFIS hybrid statistical tools. , 2019, Bioresource technology.
[17] R. Auras,et al. Poly(lactic acid)-Mass production, processing, industrial applications, and end of life. , 2016, Advanced drug delivery reviews.
[18] Kwan H. Lee,et al. Determination of optimal build direction in rapid prototyping with variable slicing , 2006 .
[19] Chilukuri Ramesh,et al. Friction and wear behavior of laser-sintered iron–silicon carbide composites , 2009 .
[20] Jorge Manuel Mercado-Colmenero,et al. A numerical and experimental study of the compression uniaxial properties of PLA manufactured with FDM technology based on product specifications , 2019, The International Journal of Advanced Manufacturing Technology.
[21] Anoop Kumar Sood,et al. Experimental investigation and empirical modelling of FDM process for compressive strength improvement , 2012 .
[22] Eleonora Atzeni,et al. Overview on Additive Manufacturing Technologies , 2017, Proceedings of the IEEE.
[23] Pero Raos,et al. Experimental analysis of properties of materials for rapid prototyping , 2009 .
[24] Carmita Camposeco-Negrete,et al. Optimization of FDM parameters for improving part quality, productivity and sustainability of the process using Taguchi methodology and desirability approach , 2020 .
[25] E. García-Plaza,et al. Additive manufacturing of PLA structures using fused deposition modelling: Effect of process parameters on mechanical properties and their optimal selection , 2017 .
[26] Jorge Salguero,et al. Application of Pin-On-Disc Techniques for the Study of Tribological Interferences in the Dry Machining of A92024-T3 (Al–Cu) Alloys , 2018, Materials.
[27] J. Plocher,et al. Review on design and structural optimisation in additive manufacturing: Towards next-generation lightweight structures , 2019 .