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An analytical predictive model and experimental validation for machining with grooved tools incorporating the effects of strains, strain-rates, and temperatures

机译:结合应变,应变率和温度影响的带槽刀具加工的分析预测模型和实验验证

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摘要

By effectively integrating a recently developed universal slip-line model with Oxley's predictive machining theory, a new analytical predictive model for machining with restricted contact grooved tools has been developed and presented in this paper. A computational flow chart is provided to illustrate the method of integration. The cutting forces are predicted for varying flow stress properties to include the effects of strains, strain-rates, and temperatures. Extensive cutting tests involving the use of three groups of chip-grooves have been conducted to validate the new method. An encouraging good agreement has been found between predicted and experimental results.
机译:通过将最近开发的通用滑移线模型与Oxley的预测加工理论有效地集成在一起,本文开发并提出了一种新的用于有限接触带槽刀具加工的解析预测模型。提供了计算流程图以说明集成方法。预测切削力以改变流动应力特性,以包括应变,应变率和温度的影响。已经进行了涉及使用三组切屑槽的广泛切削试验,以验证该新方法。在预测结果和实验结果之间发现了令人鼓舞的良好协议。

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