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首页> 外文期刊>Journal of Materials Processing Technology >Densification behavior of pure Zn metal parts produced by selective laser melting for manufacturing biodegradable implants
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Densification behavior of pure Zn metal parts produced by selective laser melting for manufacturing biodegradable implants

机译:用选择性激光熔化制造生物降解植入物产生的纯Zn金属部件的致密化行为

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A lot of recent studies have shown that Zn based metals exhibit promising application prospects for biodegradable medical implants. Only a handful of recent reports can be found on additive manufacturing of Zn metal. Either the obtained density was quite low, or the process window was quite narrow due to severe evaporation. This paper aims to clarify the effect of processing parameters on densification behavior during selective laser melting (SLM) of pure Zn, and obtain high density in a reasonable process window. Single track melting and preliminary experiments were used to understand the process at first. Response surface methodology (RSM) was used to further investigate the effect of parameters on densification. A reasonable process window of high density over 99.90% was predicted and verified. Porosity was resulted by either lack of fusion due to insufficient laser energy or by gas entrapment due to excessive evaporation. For SLM parts of high density, the mechanical properties were measured as 46.31 +/- 2.02HV, 20.47 +/- 5.71 GPa, 122.13 +/- 2.61 MPa, 137.9 +/- 2.48 MPa and 8.13 +/- 0.55% respectively for hardness, Young's modulus, Yield strength, ultimate strength and elongation. The paper provided processing knowledge on SLM of Zn metal and solved the most difficulty dealing with laser melting of Zn metal: low densification, thus paved the way for additive manufacturing of Zn based metals for biodegradable implants.
机译:最近的许多研究表明,基于Zn的金属表现出可生物降解的医疗植入物的有希望的应用前景。只有少数最近的报告可以在Zn金属的添加剂制造上找到。所获得的密度相当低,或由于严重蒸发,过程窗口非常窄。本文旨在阐明加工参数对纯锌的选择性激光熔化(SLM)期间的致密化行为的影响,并在合理的过程窗口中获得高密度。单轨熔化和初步实验首先用于了解该过程。响应表面方法(RSM)用于进一步研究参数对致密化的影响。预测并验证了高密度的合理过程窗口超过99.90%。由于由于激光能量不足或由于过度蒸发而通过气体滞留而导致孔隙率导致熔化。对于高密度的SLM部分,机械性能分别测量为46.31 +/- 2.02HV,20.47 +/- 2.61MPa,122.13 +/- 2.61MPa,137.9 +/- 2.48 MPa和8.13 +/- 0.55%,用于硬度,杨氏模量,屈服强度,极致强度和伸长率。本文提供了对Zn金属的SLM的处理知识,并解决了处理Zn金属激光熔化的最困难:低致密化,从而为可生物降解的植入物的Zn基金属的添加制造方式铺平了道路。

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