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There is logic in logit – including wear rate in Colding’s tool wear model

机译:Logit中有逻辑 - 包括冷的工具磨损模型中的磨损率

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摘要

Modelling of tool wear in metal cutting processes has been the foundation of the field since the famous Taylor’s tool life model. Tool wear models have been developed for planning machining operations and calculating production costs. Most wear models do not include wear rate in the model but rather just the final wear at end of tool life, i.e. the limiting wear. This is a major disadvantage of Taylor’s model, and practically all the other experimental models of tool wear. The wear progression over time is lost with the selection the limiting wear. This paper proposes a new logit-function based model for wear rate that can be included in the existing models. In this work, in addition to Taylor’s model, Colding’s model is used with the proposed wear rate model. The outcome is a model that can predict the tool wear at a given cutting speed, feed and at any given time within the tool life range, without selection the limiting tool wear. The model can be also used inversely so that the output is the tool life at a given cutting parameters and wear. The results show good fit to the experiment data (~10 %) and the model captures the typical wear rate shape well.
机译:自着名的泰勒工具寿命模型以来,金属切割过程工具磨损的建模是该领域的基础。已经开发了用于规划加工操作和计算生产成本的工具磨损模型。大多数磨损模型不包括模型中的磨损率,而是仅仅是刀具寿命结束时的最终磨损,即限制磨损。这是泰勒模型的一个主要缺点,实际上刀具磨损的所有其他实验模型。随着时间的推移随着时间的推移,磨损进展损失了限制磨损。本文提出了一种新的Logit-Function基于磨损率模型,可包含在现有模型中。在这项工作中,除了泰勒的模型之外,冷的模型还与所提出的磨损率模型一起使用。结果是一种模型,可以在刀具寿命范围内以给定的切割速度,饲料和任何给定时间预测工具磨损,而无需选择限制刀具磨损。该模型也可以倒置,使得输出是给定切割参数和磨损的刀具寿命。结果表明,实验数据(〜10%)良好贴合,型号捕获典型的磨损率良好。

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