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Residual Stresses at Critical Locations in Additively-Manufactured Components

机译:橡皮制造部件中的关键位置处的残余应力

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Adopting additively-manufactured components in conventional supply chains requires an understanding of residual stress effects on typical component quality: dimensional accuracy, mechanical strength, and fatigue performance. Residual stresses are central to these elements of component quality; however, they vary significantly at different locations in addi-tively-manufactured parts. Multiple methods are used to assess residual stresses at critical locations including the build/baseplate interface, the near surface layers, between layers, and typical planes of interest. Exploratory measurements on laser engineering net shaping (LENS) and powder bed fusion (PBF) bosses are performed using the contour method and slitting method. Steep stress gradients and high stresses with limits approaching the material yield strength are reported. These stresses are often compressive at the component interior and tensile near the outer surfaces. Future work is planned to investigate repeatability of both the measurement methods and the ADDITIVE manufacturing processes.
机译:在传统的供应链中采用含量制造的组件需要了解对典型元件质量的残余应力影响:尺寸精度,机械强度和疲劳性能。残余应力是这些元件质量的这些元素的核心;然而,它们在ADDI-Tively制造的部件中的不同位置显着变化。多种方法用于评估包括构建/底板界面的关键位置的残余应力,在层之间的近表面层,层之间和典型的感兴趣的平面之间。使用轮廓方法和切割方法进行激光工程净成型(镜片)和粉末融合(PBF)凸起的探索性测量。报道了陡峭的应力梯度和接近材料屈服强度的限制的高应力。这些应力通常在部件内部和外表面附近的拉伸处压缩。未来的工作计划调查测量方法和添加剂制造过程的可重复性。

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