Effects of Sequential Operation with Heat Treatment and Mechanical Milling on Work Hardening for Superalloy GH4169

高温合金 材料科学 可加工性 压痕硬度 微观结构 加工硬化 机械加工 冶金 硬化(计算) 刀具磨损 沉淀硬化 复合材料 图层(电子)
作者
Pingzhong Zhu,Zhanqiang Liu,Xiaoping Ren,Bing Wang,Qinghua Song
出处
期刊:Metals [Multidisciplinary Digital Publishing Institute]
卷期号:11 (9): 1367-1367 被引量:3
标识
DOI:10.3390/met11091367
摘要

Engineering components are usually manufactured with sequential production processes. Work hardening due to previous production processes affects the machinability of the workpiece in subsequent operations. In this research, the surface work hardening of a workpiece manufactured by two sequential processes with heat treatment/milling (HT + M) and milling/heat treatment (M + HT) of superalloy GH4169 was investigated. First, the surface microstructure characteristics, including plastic deformation and grain size of the machined workpiece surface processed by the two sequential processes, were quantitatively presented. Then, the microhardness on the machined workpiece surface and its cross-section was measured and analyzed. Finally, a surface microhardness calculation model considering twin boundary deformation was proposed. Here, we also present the microstructure evolution principle of the machined workpiece surface by the two sequential processes. It was found that the degree of work hardening of HT + M machining was 179%, whereas that of M + HT was only 101%. The research results can be applied to the optimized selection of process sequence for manufacturing superalloy GH4169.
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