首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Microstructure-Level Model for the Prediction of Tool Failure in Coated WC-Co Cutting Tool Materials During Intermittent Cutting
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Microstructure-Level Model for the Prediction of Tool Failure in Coated WC-Co Cutting Tool Materials During Intermittent Cutting

机译:WC-Co涂层刀具材料间断切削过程中刀具失效预测的微观结构模型

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摘要

A model to predict failure of coated WC-Co grades due to chipping in intermittent cutting via microstructure-level finite element machining process simulation is presented and applied to various coated WC-Co tools. Coated tools were examined for the characterization and simulation of their microstructures. Model predictions of failure due to chipping for coated WC-Co systems were validated by continuous machining tests. In order to simulate cyclic loading conditions during intermittent cutting, mechanical and thermal boundary conditions were applied during cutting phases and removed during noncutting phases. Interrupted turning experiments were conducted to validate the model, and the results showed that the predictions agreed well with the observations from the experiments. The paper includes the application of this model to a problem of WC-Co grade design.
机译:提出了一种通过微观结构级有限元加工过程仿真来预测由于间歇切削中的碎裂而导致的涂层WC-Co等级失效的模型,并将其应用于各种涂层的WC-Co工具。对涂层工具进行了检查,以表征和模拟其微观结构。通过连续机加工测试验证了涂层WC-Co系统由于崩刃而导致的失效模型预测。为了模拟间歇切削过程中的循环载荷条件,在切削阶段施加了机械边界条件和热边界条件,在非切削阶段去除了机械和热边界条件。进行了连续的车削实验以验证模型,结果表明预测结果与实验观察结果吻合良好。本文包括该模型在WC-Co级设计问题中的应用。

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