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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Microstructural evolution and mechanical property of Ti-6Al-4V wall deposited by continuous plasma arc additive manufacturing without post heat treatment
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Microstructural evolution and mechanical property of Ti-6Al-4V wall deposited by continuous plasma arc additive manufacturing without post heat treatment

机译:连续等离子体弧添加制造沉积的Ti-6Al-4V壁的微观结构演化与力学性能

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摘要

Plasma arc additive manufacturing (PAM) is a novel additive manufacturing (AM) technology due to its big potential in improving efficiency, convenience and being cost-savings compared to other AM processes of high energy beam. In this research, several Ti-6Al-4V thin walls were deposited by optimized weld wire-feed continuous PAM process (CPAM), in which the heat input was gradually decreased layer by layer. The deposited thin wall consisted of various morphologies, which includes epitaxial growth of prior beta grains, horizontal layer bands, martensite and basket weave microstructure, that depends on the heat input, multiple thermal cycles and gradual cooling rate in the deposition process. By gradually reducing heat input of each bead and using continuous current in the PAM process, the average yield strength (YS), ultimate tensile strength (UTS) and elongation reach about 877 MPa, 968 MPa and 1.5%, respectively, which exceed the standard level of forging. The mechanical property was strengthened and toughened due to weakening the aspect ratio of prior beta grains and separating nano-dispersoids among a lamellar. Furthermore, this research demonstrates that the CPAM process has a potential to manufacture or remanufacture in AM components of metallic biomaterials without post-processing heat treatment.
机译:等离子弧添加剂制造(PAM)是一种新的添加剂制造(AM)技术,因为它具有提高效率,便利性和成本节约的巨大潜力,与其他高能BEA M的过程相比。在该研究中,通过优化的焊丝馈送连续PAM工艺(CPAM)沉积了几个Ti-6AL-4V薄壁,其中热输入通过层逐渐减小。沉积的薄壁由各种形态组成,其包括先前β谷物,水平层,马氏体和篮子编织微结构的外延生长,这取决于沉积过程中的热输入,多重热循环和逐渐冷却速率。通过逐渐减少每个珠子的热输入并在PAM工艺中使用连续电流,平均屈服强度(Ys),极限拉伸强度(UTS)和伸长率分别达到约877MPa,968MPa和1.5%,超过标准锻造水平。由于削弱了先前β晶粒的纵横比和层状脂肪酸的纵横比而强化和增韧。此外,该研究表明,CPAM工艺具有在没有后处理热处理的情况下在金属生物材料的AM组分中制造或再制造。

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