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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Selective laser melting of titanium alloy with 50 wt% tantalum: Effect of laser process parameters on part quality
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Selective laser melting of titanium alloy with 50 wt% tantalum: Effect of laser process parameters on part quality

机译:具有50wt%钽的选择性激光熔化钛合金:激光工艺参数对零件质量的影响

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Selective laser melting (SLM) is a powder bed fusion additive manufacturing (AM) technique that produces three-dimensional (3D) parts by fusing metallic powders with a high-energy laser. SLM involves numerous process parameters that may influence the properties of the final parts. Hence, establishing the effect of the SLM processing parameters is important for producing parts of high quality. In this study, titanium-tantalum alloy was fabricated by SLM using a customized powder blend to achieve in situ alloying. The influence of processing parameters on the microstructure and properties such as relative density, microhardness and surface roughness was investigated. The results show that fully dense titanium-tantalum parts can be obtained from SLM. With laser power of 360 W, scan speed of 400 mm/s, powder layer thickness of 0.05 mm and hatch spacing of 0.125 mm, the titanium-tantalum alloy produced by SLM has relative density of 99.85 +/- 0.18%. Despite the variation in process parameters, titanium-tantalum shows laminar beta grains in random directions in both xy and yz-plane from optical microscope (OM) analysis in all the parts produced. This observation is further confirmed using x-ray diffraction (XRD).
机译:选择性激光熔融(SLM)是一种粉末融合添加剂制造(AM)技术,通过熔化具有高能激光的金属粉末产生三维(3D)零件。 SLM涉及许多可能影响最终部分的属性的过程参数。因此,建立SLM处理参数的效果对于生产高质量的部分是重要的。在该研究中,使用定制的粉末混合物来制造钛钽合金,以实现原位合金化。研究了处理参数对微观结构和性质的影响,例如相对密度,微硬度和表面粗糙度。结果表明,可以从SLM获得完全致密的钛钽零件。激光功率为360W,扫描速度为400 mm / s,粉末层厚度为0.05 mm,舱口间距为0.125 mm,由SLM产生的钛钽合金具有99.85 +/- 0.18%的相对密度。尽管工艺参数变化,但钛钽在XY和YZ平面中从XY和YZ平面中的随机方向上显示了来自光学显微镜(OM)分析的所有部件。使用X射线衍射(XRD)进一步确认该观察。

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