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仿生鲨鱼皮微织构刀具铣削GH4169镍基高温合金的性能研究

刘俐鹏 牛秋林 沈炜智 戴福朋 王星华

宇航材料工艺2025,Vol.55Issue(6):61-67,7.
宇航材料工艺2025,Vol.55Issue(6):61-67,7.DOI:10.12044/j.issn.1007-2330.2025.06.008

仿生鲨鱼皮微织构刀具铣削GH4169镍基高温合金的性能研究

Performance Study of Micro-textured Cutting Tools With Biomimetic Shark Skin Pattern in Milling GH4169 Nickel-based Superalloy

刘俐鹏 1牛秋林 1沈炜智 1戴福朋 1王星华1

作者信息

  • 1. 湖南科技大学机电工程学院,湘潭 411201
  • 折叠

摘要

Abstract

In order to improve the milling surface quality of GH4169,dry cutting experiments were conducted by designing biomimetic shark skin micro-textured tools to study the effects of milling parameters on cutting force,cutting deformation coefficient,and surface roughness.The results show that,compared to non-textured tools and linear micro-textured tools,the biomimetic shark skin micro-textured tools provide the highest reduction in milling force,reaching up to 31%.Furthermore,the cutting force first decreases and then increases with rising cutting speed.At the same time,the cutting deformation coefficient of the biomimetic shark skin micro-textured tools is the largest,indicating good chip breaking capability.For the biomimetic shark skin micro-textured tools,the surface roughness of the machined workpiece decreases with the lower cutting speed and smaller feed per tooth.The influence of milling depth on the surface roughness of the machined workpiece exhibit a trend of initial decrease followed by increase.By analyzing the effects of different textured tool types and milling parameters on the surface roughness of the machined GH4169 superalloy,it is found that the optimal milling surface quality of the workpiece is obtained at a cutting speed of 200 m/min,a feed per tooth of 0.1 mm/z,and a milling depth of 1.8 mm.

关键词

GH4169/仿生/微织构刀具/铣削参数/表面粗糙度

Key words

GH4169/Bionics/Micro-texture tool/Milling parameters/Surface roughness

分类

矿业与冶金

引用本文复制引用

刘俐鹏,牛秋林,沈炜智,戴福朋,王星华..仿生鲨鱼皮微织构刀具铣削GH4169镍基高温合金的性能研究[J].宇航材料工艺,2025,55(6):61-67,7.

基金项目

国家自然科学基金(52075168) (52075168)

湖南省教育厅重点项目(22A0331) (22A0331)

湖南省研究生科研创新项目(CX20221051) (CX20221051)

宇航材料工艺

OA北大核心

1007-2330

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