<p>The stored energy field inside deformation zones of metal workpieces determines microstructural evolution and material property alterations, thereby affecting the entire lifecycle of machined parts through chip formation, tool wear mechanisms, surface integrity, and service performance. This paper reviews the effects of the stored energy on the machining and service processes of machined metal parts. Concretely, attention is paid to theoretical and experimental methods for quantifying stored energy (Section&#xa0;<InternalRef RefID="Sec2">2</InternalRef>), the effects of the stored energy field inside machining deformation zones on the chip formation and tool wear (Section&#xa0;<InternalRef RefID="Sec9">3</InternalRef>), and the effects of the stored energy field near the machined surface on the surface integrity and service performance of machined parts (Section&#xa0;<InternalRef RefID="Sec12">4</InternalRef>). Advantages and disadvantages of current research are summarized, and the possible future works are proposed (Section&#xa0;<InternalRef RefID="Sec18">5</InternalRef>). Through the literature review, this paper aims to provide a reference for analyzing the whole machining and service processes of metal workpieces based on stored energy, thereby promoting the construction of the integrated theory of “Materials-Manufacturing-Service.”</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Effects of the stored energy inside the deformation zones of metal workpieces on the machining and service processes of machined parts: a review

  • Zhengyi Tang,
  • Chuanzhen Huang,
  • Rui Su,
  • Hanlian Liu,
  • Jiahui Niu,
  • Zhen Chen,
  • Binghao Li

摘要

The stored energy field inside deformation zones of metal workpieces determines microstructural evolution and material property alterations, thereby affecting the entire lifecycle of machined parts through chip formation, tool wear mechanisms, surface integrity, and service performance. This paper reviews the effects of the stored energy on the machining and service processes of machined metal parts. Concretely, attention is paid to theoretical and experimental methods for quantifying stored energy (Section 2), the effects of the stored energy field inside machining deformation zones on the chip formation and tool wear (Section 3), and the effects of the stored energy field near the machined surface on the surface integrity and service performance of machined parts (Section 4). Advantages and disadvantages of current research are summarized, and the possible future works are proposed (Section 5). Through the literature review, this paper aims to provide a reference for analyzing the whole machining and service processes of metal workpieces based on stored energy, thereby promoting the construction of the integrated theory of “Materials-Manufacturing-Service.”