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Investigation of cutting conditions on tool life in shoulder milling of Ti6Al4V using PVD coated micro-grain carbide insert based on design of experiments

机译:基于实验设计的PVD涂层微粒碳化物插入PVD涂层微粒碳化物肩铣削刀具寿命的切割条件调查

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摘要

Tool life prediction is generally of great importance in all metal cutting processes, including milling titanium. In this paper, tool life testing was performed based on full factorial design. The cutting speed and width varied between 100 and 120 m/min, and 10 and 70 percent of tool diameter, respectively. All cutting tests were performed in Ti6Al4V under wet conditions using Physical Vapor Deposition (PVD) coated milling inserts. The wear limit was set to 0.2 mm. The data were analyzed using multiple regression analyses, where the method of least squares was applied. A mathematical tool life model was established. Roughly, for each one percent increase in cutting width, tool life decreases on average by one percent, and an increase in cutting speed by a percent leads to a decrease in tool life by four percent. The adequacy of the model was verified using analysis of variance at 95% confidence level. Tool life contour in cutting width and speed was generated from the model. The results can be used for selecting optimum cutting parameters for providing a desired tool life or maximum metal removal rates for a favored tool life.
机译:在所有金属切割过程中,刀具寿命预测通常具有重要的意义,包括研磨钛。在本文中,基于完整因子设计进行了刀具寿命测试。切割速度和宽度在100至120米/分钟之间变化,分别为10和70%的刀具直径。使用物理气相沉积(PVD)涂覆铣削刀片在湿条件下在Ti6Al4V下进行所有切割测试。磨损限制设定为0.2毫米。使用多元回归分析来分析数据,其中应用最小二乘法。建立了数学工具寿命模型。粗略地,对于切割宽度的每个百分比增加,刀具寿命平均降低一个百分比,并且切割速度的增加百分比导致刀具寿命的减少为4%。使用95%置信水平的差异分析来验证模型的充分性。切割宽度和速度的刀具寿命轮廓是从模型产生的。结果可用于选择最佳的切削参数,用于提供所需的工具寿命的所需工具寿命或最大金属去除速率。

著录项

  • 期刊名称 Heliyon
  • 作者单位
  • 年(卷),期 2020(6),6
  • 年度 2020
  • 页码 e04217
  • 总页数 7
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:材料科学;机械工程;摩擦学;加工;涂料;金属;材料应用;材料加工;工具寿命;铣削;PVD涂层;Ti6Al4V;实验设计;
  • 入库时间 2022-08-21 12:11:09

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