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首页> 外文期刊>International Journal of Fatigue >Cyclic plastic behavior of additively manufactured Ti-6Al-4V under uniaxial and multiaxial non-proportional loading
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Cyclic plastic behavior of additively manufactured Ti-6Al-4V under uniaxial and multiaxial non-proportional loading

机译:单轴和多轴非比例载荷下增材制造的Ti-6Al-4V的循环塑性行为

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摘要

Cyclic plastic behavior of additively manufactured Ti-6Al-4V titanium alloy was experimentally investigated under non-proportional multiaxial cyclic loading. Four cylindrical hollow specimen types were fabricated using laser powder bed fusion (L-PBF). The typology of each specimen was defined by the orientation of the layers and application of a stress-relief heat treatment post production. Then, the specimens' microstructures were analyzed. Stress strain cyclic testing in the specimens' plastic region resulted in near-equivalent curves for each fabricated specimen type. Fatigue tests evidenced that the fatigue life was similar regardless of heat-treatment and layer orientation. Hysteresis loops showed a higher energy absorption for the heat-treated components. Drastic softening has been detected in the majority of the tests and cracks initiating from internal voids, internal defects and surface could be observed.
机译:在非比例多轴循环载荷下,通过实验研究了增材制造的Ti-6Al-4V钛合金的循环塑性行为。使用激光粉末床熔合(L-PBF)制作了四种圆柱空心样品类型。每个样品的类型由层的方向和生产后施加的应力消除热处理定义。然后,分析了样品的微观结构。在样品的塑性区域进行应力应变循环测试,得出每种制造的样品类型的曲线几乎相等。疲劳测试表明,不管热处理和层取向如何,疲劳寿命都是相似的。磁滞回线对热处理过的部件显示出更高的能量吸收。在大多数测试中都检测到剧烈的软化,并且可以观察到由内部空隙,内部缺陷和表面引起的裂纹。

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