首页> 外文期刊>Procedia CIRP >Tool Performance Assessment based on Three-Dimensional Tool Wear Rate
【24h】

Tool Performance Assessment based on Three-Dimensional Tool Wear Rate

机译:基于三维刀具磨损率的刀具性能评估

获取原文
           

摘要

Determining the tool wear rate is one of the key factors in the models to predict the tool performance. The challenge of the tool wear rate based on the flank or crater wear is the balance of the tool wear mechanisms and its impact on the tool wear pattern. This research aims to contribute to the tool wear fields showing a method to assess the tool wear rate based on the volume of removed material from the tool (wear parameter WRM), which has the advantage of encompassing the effect of wear phenomena on the whole cutting edge in one output value. The methodology applied consist of the measurement of the WRMparameter (performed by a Focus Variation Microscope) in pre-defined machining times. In the sequence, the WRMvalues are submitted to two filters: (a) progressivity and (b) stability criterion. The first is related to the progressivity of tool wear over the time, and the latter defines the maximum dispersion of rates within measured WRMvalues. The tool wear rate (WRRM) is calculated based on Ordinary Least Squares (OLS). The validation experiments were carried out with PCBN tools during hard turning AISI 52100 steel with 60 HRC in 120, 150 and 187.5 m/min cutting speeds. For 120 m/min, the tool wear rate was 608 μm3/s; for 150 m/min it was 1427 μm3/s (135% higher); and for 187.5 m/min it was 2950 m3/s (107% higher than the previous). It was found that the criteria for validating WRMdata prevent calculating unrealistic tool wear rates. The method showed itself to be reliable and can inspire new approaches for cutting optimization with two major combined advantages: it is possible to apply the real tool wear values from the specific process studied, and short machining tests are necessary to acquire reliable tool wear values (WRM).
机译:确定工具磨损率是模型中预测工具性能的关键因素之一。基于侧面磨损或坑洼磨损的刀具磨损率的挑战是刀具磨损机制及其对刀具磨损模式的影响之间的平衡。这项研究旨在为工具磨损领域做出贡献,显示出一种基于从工具中去除的物料量(磨损参数WRM)评估工具磨损率的方法,其优点是涵盖了磨损现象对整个切削的影响在一个输出值中边沿。所应用的方法包括在预定的加工时间内测量WRM参数(由焦距变化显微镜执行)。在该序列中,将WRM值提交给两个过滤器:(a)累进性和(b)稳定性标准。前者与刀具随时间的磨损进展有关,后者定义了测得的WRM值内速率的最大离散度。刀具磨损率(WRRM)是根据普通最小二乘法(OLS)计算的。验证实验是使用PCBN工具在120、150和187.5 m / min的切削速度下以60 HRC的硬切削AISI 52100钢进行的。对于120 m / min,工具磨损率为608μm3/ s; 150 m / min时为1427μm3/ s(提高135%);速度为187.5 m / min,为2950 m3 / s(比以前高107%)。已发现,验证WRMdata的标准可防止计算出不切实际的刀具磨损率。该方法显示出了自身的可靠性,并可以通过两个主要的综合优势激发出用于切削优化的新方法:可以从研究的特定过程中应用真实的刀具磨损值,并且需要进行简短的机加工测试以获得可靠的刀具磨损值( WRM)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号