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Jun.  2023
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DAI Wenshun, JIANG Zenghui, WANG Shuli, SHAO Zhongwei, WANG Dongyue. Influence of cutting parameters on cutting temperature of machining high strength steel by high-feed milling[J]. Manufacturing Technology & Machine Tool, 2023, (6): 44-48. doi: 10.19287/j.mtmt.1005-2402.2023.06.008
Citation: DAI Wenshun, JIANG Zenghui, WANG Shuli, SHAO Zhongwei, WANG Dongyue. Influence of cutting parameters on cutting temperature of machining high strength steel by high-feed milling[J]. Manufacturing Technology & Machine Tool, 2023, (6): 44-48. doi: 10.19287/j.mtmt.1005-2402.2023.06.008

Influence of cutting parameters on cutting temperature of machining high strength steel by high-feed milling

doi: 10.19287/j.mtmt.1005-2402.2023.06.008
  • Received Date: 2023-02-02
  • Accepted Date: 2023-04-07
  • High-feed milling is a milling method that adopts small depth of cut and large feed, and has high processing efficiency and processing quality in deep cavity processing. A simulation model of high-feed milling 34CrNi3Mo high strength steel was established to study the effect of cutting parameters on cutting temperature. The simulation research plan is designed by orthogonal test method, the cutting temperature obtained by simulation is studied by means of range analysis and variance analysis, and the empirical formula of cutting temperature is obtained according to multiple regression analysis method. The results show that the cutting efficiency of machining high-strength steel is improved by high-feed milling with increasing the cutting depth, which is conducive to avoiding a large increase in cutting temperature.

     

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  • [1]
    单世远, 闫晋予, 门驰. 快进给铣刀切削性能分析[J]. 工具技术, 2018, 52(9): 97-99. doi: 10.3969/j.issn.1000-7008.2018.09.034
    [2]
    潘国华. 钢件高进给铣削[J]. 金属加工:冷加工, 2010(22): 38.
    [3]
    郝见喜, 董长双. 基于自由切削理论的高进给铣刀片结构优化[J]. 煤矿机械, 2013, 34(3): 127-128. doi: 10.13436/j.mkjx.2013.03.133
    [4]
    边洪录, 王子铭, 李勋. TC4钛合金大进给铣削参数优化试验[J]. 机械制造, 2020, 58(7): 78-81. doi: 10.3969/j.issn.1000-4998.2020.07.024
    [5]
    王贺安. 高进给铣削加工工艺研究[J]. 企业技术开发, 2015, 34(23): 17-18,20.
    [6]
    凌平, 刘陨双, 李国华. TC21钛合金封闭深槽腔大悬伸快进给铣削加工技术[J]. 工具技术, 2020, 54(1): 76-81. doi: 10.3969/j.issn.1000-7008.2020.01.017
    [7]
    王曦, 黄树涛, 许立福, 等. 高速铣削AF1410高强度钢的实验研究[J]. 制造技术与床, 2022(1): 124-129.
    [8]
    陈隆波, 杨琪琳, 郭纪林, 等. 利用大进给量铣削提升模具制造生产率的研究[J]. 模具制造, 2021, 21(3): 76-80.
    [9]
    韩现龙. 基于Deform的切削参数对微铣削加工切削温度的影响分析[J]. 机械制造与自动化, 2021, 50(2): 67-69. doi: 10.19344/j.cnki.issn1671-5276.2021.02.018
    [10]
    杨吟飞, 赵威, 李亮, 等. Ti6Al4V钛合金大进给铣削切削力与切削温度的试验研究[J]. 航空精密制造技术, 2014, 50(4): 34-37. doi: 10.3969/j.issn.1003-5451.2014.04.010
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