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首页> 外文期刊>Journal of Materials Science >The electro-discharge machining characteristics of TiNi shape memory alloys
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The electro-discharge machining characteristics of TiNi shape memory alloys

机译:TiNi形状记忆合金的放电加工特性

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The electro-discharge machining (EDM) characteristics of TiNi shape memory alloys (SMAs) have been investigated in this study. Experimental results show that the material removal rate of TiNi SMAs in the EDM process significantly relates to the electro-discharge energy mode, involving the pulse current I P and pulse duration τP. It also has a reverse relationship to the product of the melting temperature and thermal conductivity of TiNi SMAs. In addition, a longer pulse duration τP and a lower pulse current I P should be selected to have a precise EDM machining of TiNi SMAs. Many electro-discharge craters and re-cast materials are observed on the EDM surface of TiNi SMAs. The re-cast layer consists of the oxides TiO2, TiNiO3 and the deposition particles of the consumed Cu electrode and dissolved dielectric medium. The thickness of the re-cast layer initially increases, reaches a critical value, and then decreases with increasing pulse duration τP. The specimen's hardness near the outer surface can reach 750 Hv for EDM TiNi SMAs. This feature originates from the hardening effect of the re-cast layer. The EDM TiNi SMAs still exhibit a nearly perfect shape recovery at a normal bending strain, but a slightly reduced shape recovery at a higher bending strain due to the depression of the re-cast layer. All the Ti49Ni51, Ti50Ni50 and Ti50Ni40Cu10 SMAs exhibit similar EDM characteristics although they have different crystal structures and mechanical properties at room temperature.
机译:在这项研究中,已经研究了TiNi形状记忆合金(SMAs)的放电加工(EDM)特性。实验结果表明,电火花加工过程中TiNi SMAs的材料去除率与放电能量模式显着相关,涉及脉冲电流I P 和脉冲持续时间τP。它与TiNi SMAs的熔化温度和热导率的乘积也具有相反的关系。此外,应选择较长的脉冲持续时间τP和较低的脉冲电流I P 以对TiNi SMA进行精确的EDM加工。在TiNi SMA的EDM表面上观察到许多放电坑和重铸材料。重铸层由氧化物TiO2 ,TiNiO3 以及消耗的Cu电极和溶解的介电质的沉积颗粒组成。重铸层的厚度最初增加,达到临界值,然后随着脉冲持续时间τP的减小而减小。对于EDM TiNi SMA,样品在外表面附近的硬度可以达到750 Hv。此功能源自重铸层的硬化效果。在正常弯曲应变下,EDM TiNi SMA仍显示出近乎完美的形状恢复,但由于重铸层的凹陷,在较高弯曲应变下,形状恢复略有降低。 Ti49 Ni51 ,Ti50 Ni50 和Ti50 Ni40 Cu10 SMA均具有相似的EDM特性,尽管它们具有不同的晶体结构。和室温下的机械性能。

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  • 来源
    《Journal of Materials Science 》 |2001年第2期| 399-404| 共6页
  • 作者单位

    Department of Materials Science Feng Chia University;

    Department of Materials Science Feng Chia University;

    Department of Materials Science Feng Chia University;

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  • 正文语种 eng
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