Biomaterials Design: Computer Modeling and Six Sigma tools

Publish Year: 1395
نوع سند: مقاله کنفرانسی
زبان: English
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شناسه ملی سند علمی:

IESM03_020

تاریخ نمایه سازی: 6 اردیبهشت 1396

Abstract:

The ever-increasing demand for use of implants offering improved function makes development of new biomaterials a challenging task. This involves manipulation of composition/structure to combine multiple properties, sometimes even conflicting, in the desired biomaterial, simultaneously. Advanced computational techniques help in design and evaluation of biomaterials without the need to make any physical object and spend too much money, with reduced risks to the development efforts. However, use of these approaches has been in no regulatory framework and without combination of design and quality tools. This paper describes the link between computational design and a systematic problem solving methodology called Design for Six Sigma and provides a preliminary multidisciplinary conceptual model to achieve the best design by using the respective tools and techniques.

Keywords:

Computational biomaterial design for Six sigma (CBDFSS) , Biomaterials goal-oriented design , Systematic problem solving

Authors

Marjan Bahraminasab

Department of Tissue Engineering and Applied Cell Sciences, School of Medicine, Semnan University of Medical Sciences, Semnan, Iran

Kevin L Edwards

Institution of Engineering Designers, Courtleigh,Westbury Leigh,Wiltshire BE13 3TA, UK

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  • . Montgomery, D.C. and W.H. Woodall, An overview of six ...
  • . Narula, V. and S. Grover, Six Sigma: Literature Review ...
  • . Patel, N. and S. Shah, A Review on Implem ...
  • . Antony, J., Design for Six Sigma: a breakthrough business ...
  • . Yoon, H.-K. and J.-H. Byun, A Design for Six ...
  • . Holcomb, D., Design for Six Sigma in Technology and ...
  • . Kuehmann, C. and G. Olson, Computational materials design and ...
  • . Thapa, N., M. Prayson, and T. Goswami, Case Studies ...
  • _ Jahan, A. and M. Bahraminasab, Multicriteria Decision Analysis in ...
  • . Jahan, A., K.L. Edwards, and M. Bahraminasab, Multi-criteria Decision ...
  • . Bahraminasab, M. and A. Jahan, Material selection for femoral ...
  • . Li , M. and S. Azarm, Multiobjective collaborative robust ...
  • . Bahraminasab, M., et al., Multi-objective design optimization of functionally ...
  • Aherwar, A., A. Singh, and A. Patnaik, Study on mechanical ...
  • . Bahraminasab, M., et al., Using design of experiments methods ...
  • . Ashby, M., Multi-objective optimization in material design and selection. ...
  • . Bahraminasab, M., M.R. Hassan, and B.B. Sahari, Metallic biomaterials ...
  • . Curtarolo, S., et al., The h igh-throughput highway to ...
  • . Bahraminasab, M., et al, Material tailoring of the femoral ...
  • . Bahraminasab, M., et al., Aseptic loosening of femoral compon ...
  • . Bahraminasab, M., et al., Aseptic loosening of femoral components ...
  • . Bahraminasab, M., et al., On the influence of shape ...
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