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首页> 外文期刊>Materials Science and Engineering >Study on variations of microstructure and metallurgical properties in various heat-affected zones of SLM fabricated Nickel-Titanium alloy
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Study on variations of microstructure and metallurgical properties in various heat-affected zones of SLM fabricated Nickel-Titanium alloy

机译:SLM镍钛合金热影响区组织和冶金性能变化的研究

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摘要

Nickel-Titanium (NiTi) is a material of great interest in modern industry as its shape memory and superelastic behaviors provide unique and useful properties that can be incorporated into complex designs and applications. However, due to its poor machinability, it is difficult to realize its full potential with conventional manufacturing techniques. With the advent of additive manufacturing, the potential for the use of NiTi in modern designs has been reignited and the analysis and optimization of its mechanical properties are a pivotal point of current material science research. Furthermore, insight into the variations of these material properties and how they vary throughout an additively manufactured part is key to improving the quality and repeatability of these parts. In this research paper, samples are printed using a single set of process parameters. These samples are then cut and analyzed for grain structure, chemical composition, microstructure, and hardness. Finally, results are reported and variations in these material properties are summarized.
机译:镍钛合金(NiTi)在现代工业中引起了人们的极大兴趣,因为其形状记忆和超弹性行为提供了独特而有用的特性,这些特性可以并入复杂的设计和应用中。然而,由于其可加工性差,因此难以利用常规制造技术来充分发挥其潜力。随着增材制造的出现,重新点燃了在现代设计中使用NiTi的潜力,其机械性能的分析和优化是当前材料科学研究的关键点。此外,深入了解这些材料特性的变化以及在整个增材制造零件中它们如何变化是提高这些零件的质量和可重复性的关键。在本研究论文中,使用一组过程参数打印样品。然后切割这些样品,并分析其晶粒结构,化学成分,微观结构和硬度。最后,报告了结果并总结了这些材料特性的变化。

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