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首页> 外文期刊>Journal of intelligent material systems and structures >Fabrication of a novel laser-processed NiTi shape memory microgripper with enhanced thermomechanical functionality
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Fabrication of a novel laser-processed NiTi shape memory microgripper with enhanced thermomechanical functionality

机译:具有增强的热机械功能的新型激光加工的NiTi形状记忆微抓具的制造

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摘要

The thermomechanical properties of nickel-titanium shape memory alloys have sparked significant research efforts seeking to exploit their exotic capabilities. Until recently, the performance capabilities of nickel-titanium devices have been inhibited by the retention of only one thermomechanical response. In this article, the application of a novel laser-processing technique is demonstrated to create a monolithic self-positioning nickel-titanium shape memory microgripper. Device actuation and gripping maneuvers were achieved by thermally activating processed material regions which possessed unique phase transformation onset temperatures and thermomechanical recovery characteristics. The existence of each thermomechanical material domain was confirmed through differential scanning calorimetry analysis. Independent thermomechanical recoveries of each embedded shape memory were captured using tensile testing methods. Deployment of each embedded shape memory was achieved using resistive heating, and in situ resistivity measurements were used to monitor progressive phase transformations.
机译:镍钛形状记忆合金的热机械性能引发了巨大的研究努力,力求利用其奇特的性能。直到最近,镍钛器件的性能一直受到仅保留一个热机械响应的限制。在本文中,演示了一种新颖的激光加工技术的应用,以创建一个整体式的自定位镍钛形状记忆微夹持器。通过热激活具有独特相变起始温度和热机械恢复特性的加工材料区域,可以实现设备的驱动和抓紧动作。通过差示扫描量热分析确认了每个热机械材料域的存在。使用拉伸测试方法捕获每个嵌入式形状记忆的独立热机械恢复。使用电阻加热实现了每个嵌入式形状记忆的部署,并且使用原位电阻率测量来监视渐进式相变。

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