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.
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。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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