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The Effect of Heat Treatment on Tensile Yielding Response of the New Superalloy ABD-900AM for Additive Manufacturing

机译:热处理对新型超合金ABD-900AM的拉伸响应的影响

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The heat treatment response of the new superalloy ABD-900AM, designed specifically for additive manufacturing (AM), is studied. The as-fabricated microstructure is characterised at multiple length-scales including by X-ray synchrotron diffractometry and transmission Kikuchi diffraction imaging. The very high cooling rates arising during the process suppress γ' precipitation; thus the details of heat treatment are shown to be important in establishing properties. The yield stress and tensile strength developed are marginally improved by super-solvus rather than sub-solvus heat treatment, but the ductility is then compromised. The tensile behaviour is superior to the heritage alloy IN939 which has a comparable fraction of γ'; this is due to the larger refractory content of ABD-900AM and its finer scale precipitation. The internal strains developed during processing are sufficient to promote recrystallization during super-solvus heat treatment which breaks down microstructural anisotropy and promotes grain growth; however, this effect is absent for the sub-solvus case.
机译:研究专为添加剂制造(AM)设计的新型超合金ABD-900AM的热处理响应。由制造的微观结构的特征在于多个长度尺度,包括通过X射线同步衍生法和传输kikuchi衍射成像。过程中产生的非常高的冷却率抑制γ'沉淀;因此,热处理的细节显示在建立性质方面很重要。通过超级溶解而不是亚溶剂热处理产生的屈服应力和拉伸强度,但延长延展性。拉伸行为优于遗传合金IN939,其具有γ'的可比分数;这是由于ABD-900AM的较大耐火性含量及其更细量的降水。在加工过程中产生的内部菌株足以促进在超级溶剂热处理期间重结晶,该热处理分解微观结构各向异性并促进晶粒生长;然而,对亚唯一的情况不存在这种效果。

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