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Electrical discharge machining characteristics of nickel-titanium shape memory alloy based on full factorial design

机译:基于全因子设计的镍钛形状记忆合金的放电加工特性

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摘要

Among many shape memory alloys, nickel-titanium (NiTi) alloys are popular due to their superior properties in shape memory effect and superelasticity. They are presently often used in microengineering and medical technology especially in orthopedic and orthodontic implants due to their specific properties. In this study, the electric discharge machine characteristics of NiTi shape memory alloys have been fully investigated by full factorial design. Analysis of mean showed that the material removal rate of NiTi in the electric discharge machine process significantly related to the electro-discharge energy, involving the pulse current and pulse duration. Many electrodischarge craters and recast layers were observed on the electric discharge machine surface of NiTi samples. In addition, there was no significant difference between copper (Cu) and tungsten-copper (W-Cu) electrodes in material removal rate but work stability of W-Cu electrode was longer. On the contrary, quantity of impurity on the surface of the Cu electrode was lower. The specimen's hardness near the outer surface could reach 1200 Hv, which originated from the hardening effect of the recast layer. Here, the microstructure, composition, and hardness of electric discharge machine surfaces are also discussed.
机译:在许多形状记忆合金中,镍钛(NiTi)合金因其在形状记忆效果和超弹性方面的卓越性能而广受欢迎。由于它们的特殊性能,它们目前经常用于微工程和医疗技术中,尤其是在整形外科和正畸植入物中。在这项研究中,已经通过全因子设计充分研究了NiTi形状记忆合金的放电机特性。均值分析表明,放电加工过程中NiTi的材料去除率与放电能量显着相关,涉及脉冲电流和脉冲持续时间。在NiTi样品的放电机表面上观察到许多放电坑和重铸层。另外,铜(Cu)和钨铜(W-Cu)电极的材料去除率没有显着差异,但W-Cu电极的工作稳定性更长。相反,Cu电极的表面上的杂质量较少。试件外表面附近的硬度可达到1200 Hv,这是由重铸层的硬化作用引起的。在此,还讨论了放电加工机表面的微观结构,组成和硬度。

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  • 作者单位

    Materials Engineering Department, Islamic Azad University, Southern Branch, Tehran, Iran;

    Materials Engineering Department, Islamic Azad University, Southern Branch, Tehran, Iran,Department of Mechanical and Industrial Engineering, University of Brescia, Brescia, Italy;

    Biomaterials Group, Faculty of Biomedical Engineering (Center of Excellence), Amirkabir University of Technology, Tehran, Iran;

    Biomaterials Group, Faculty of Biomedical Engineering (Center of Excellence), Amirkabir University of Technology, Tehran, Iran;

    Biomaterials Group, Faculty of Biomedical Engineering (Center of Excellence), Amirkabir University of Technology, Tehran, Iran;

    Biomaterials Group, Faculty of Biomedical Engineering (Center of Excellence), Amirkabir University of Technology, Tehran, Iran,Helmerich Advanced Technology Research Center, School of Material Science and Engineering, Oklahoma State University, Tulsa, OK, USA;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    NiTi shape memory alloy; electrical discharge machining; full factorial design;

    机译:NiTi形状记忆合金;放电加工;全析因设计;

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