Cracking Behavior of the ZhS6K Superalloy during Direct Laser Deposition with Induction Heating

Metals Pub Date : 2024-05-22 DOI:10.3390/met14060610
Anastasiia Dmitrieva, Anastasiya Semenyuk, M. Klimova, Ilya Udin, Dmitrii Mukin, Artur Vildanov, S. Zherebtsov, O. Klimova-Korsmik, N. Stepanov
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Abstract

For this work, the behavior of the ZhS6K alloy (Russian grade) in the process of direct laser deposition was investigated. Two samples, a “small” one (40 × 10 × 10 mm3) and “large” one (80 × 16 × 16 mm3), were fabricated with direct laser deposition. In both samples, the typical dual-phase γ/γ҆ microstructure with cuboidal shape of the γ҆ precipitates was observed. Both specimens revealed a similar tendency to continuous increasing in hardness from the bottom to the top associated with the refinement of γ҆ precipitates. The “small” sample was essentially crack-free, while the “large” one underwent extensive cracking. The possible effects of various factors, including thermal history, size, and shape of the gamma grains, on cracking behavior were discussed.
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ZhS6K 超合金在感应加热直接激光沉积过程中的开裂行为
在这项工作中,研究了 ZhS6K 合金(俄罗斯牌号)在激光直接沉积过程中的行为。采用激光直接沉积法制作了两个样品,一个是 "小 "样品(40 × 10 × 10 mm3),另一个是 "大 "样品(80 × 16 × 16 mm3)。在这两个样品中,都观察到了典型的γ/γ҆双相微观结构,γ҆沉淀物呈立方体状。两种试样都显示出类似的趋势,即随着γ҆析出物的细化,硬度从下到上持续上升。小 "样品基本上没有裂纹,而 "大 "样品则出现了大面积裂纹。讨论了各种因素(包括热历史、γ 晶粒的大小和形状)对开裂行为可能产生的影响。
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