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Mechanical property study on rapid additive layer manufacture Hastelloy? X alloy by selective laser melting technology

机译:快速添加剂层制造哈氏合金的力学性能研究? X合金通过选择性激光熔化技术

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摘要

Tensile mechanical properties of selective laser-melted Hastelloy? X alloy in as-deposited condition and after hot isostatic pressing (HIP) have been studied at ambient and elevated temperatures. Room temperature four-point bending and tension–tension fatigue properties have also been investigated in as-deposited condition and after HIP. The yield strength of the as-deposited selective laser-melted Hastelloy? X specimen is higher than the heat-treated (hot forged) samples. The ultimate strength is also higher than that of the hot forged samples while the elongation property is lower. This can be attributed to its ultrafine microstructure caused by rapid solidification, which is characteristic of the selective laser melting process. It is also found that the mechanical properties (tensile and fatigue) do not vary with samples built in different bed locations.
机译:选择性激光熔融哈氏合金的拉伸力学性能?已经研究了在室温和高温下处于沉积状态和热等静压(HIP)后的X合金。在沉积条件下和HIP之后,还研究了室温下的四点弯曲和张力-张力疲劳特性。沉积的选择性激光熔融哈氏合金的屈服强度? X样品高于热处理(热锻)样品。极限强度也比热锻样品高,而伸长率则低。这可以归因于由快速凝固引起的超细微结构,这是选择性激光熔化过程的特征。还发现机械性能(拉伸和疲劳)不会随在不同床位上建立的样品而变化。

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