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Correlation between surface tension and fatigue properties of Ti-6Al-4V alloy fabricated by EBM additive manufacturing

机译:EBM添加剂制造业Ti-6Al-4V合金表面张力与疲劳性能的相关性

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摘要

The powder bed fusion method using a heat source for 3D printing can be applied to fabricate the geometrical shapes of some parts, and enables rapid melting and cooling. 3D EBM additive manufacturing can supply a near-net-shape or net-shape and precise parts better than micro scale casting and precision casting. Casting parts have residual stress in the matrix and their microstructure, which can affect the dynamic properties, but if they are heat-treated under the optimal conditions, the residual stress can be reduced to enhance the dynamic-mechanical properties of 3D printed parts. In this study, Ti-6Al-4V bulk bars were fabricated by EBM additive manufacturing, and the microstructures, residual stress, and various interior defects of the specimens were analyzed. The residual stress and surface tension were measured and calculated in different specimens heat-treated at 850-950 degrees C. The relationship between the residual stress and surface tension was explained using the related equations and the influence on the high cycle fatigue properties was evaluated.
机译:可以应用使用用于3D印刷的热源的粉末床融合方法来制造一些部件的几何形状,并实现快速熔化和冷却。 3D EBM添加剂制造能够优于微尺度铸造和精密铸造的近净形或净形和精确的部件。铸件在基质中具有残余应力及其微观结构,这会影响动态性质,但如果它们在最佳条件下进行热处理,则可以减少残余应力以增强3D印刷部件的动态力学性能。在该研究中,通过EBM添加剂制造TI-6AL-4V散装条,分析了样本的微观结构,残余应力和各种内部缺陷。测量残余应力和表面张力并在850-950摄氏度热处理的不同样品中测量和计算。使用相关方程来解释残余应力和表面张力之间的关系,并评估对高循环疲劳性能的影响。

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