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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >The investigation of mechanism of serrated chip formation under different cutting speeds
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The investigation of mechanism of serrated chip formation under different cutting speeds

机译:不同切削速度下锯齿状切屑形成机理的研究

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摘要

Chip type is determined by the coupled effects of workpiece material property, cutting speed, uncut chip thickness, feed rate, and tool edge geometry. The understanding of chip formation plays a critical role in studying surface integrity and optimization of machining process variables. Serrated chip, one of the major important chip type, is usually formed in hard cutting at high speed. In this study, a new analytical model has been proposed to better understand the formation of serrated chip, and the simulations have been acquired using ABAQUS/Explicit in machining AISI 1045 during different speeds (from 60 to 6000 m/min). The workpiece material property is modeled with the Johnson-Cook model, and the experiments have been conducted with AISI 1045 during speeds from 60 to 1200 m/min. It has been shown that flow stress is influenced simultaneously by the strain rate hardening and temperature softening. When the speed reaches very high, the temperature softening will fail, and the strain rate hardening will play a more important role. Also, it can be found that the hardening ratio increases when the cutting speed rises. The results of the simulations and experiments correlated well. The cutting force and thrust force both decrease as the cutting speed increases, and the difference between them will shrink when the machining speed reaches a high level.
机译:切屑类型取决于工件材料性能,切削速度,未切屑厚度,进给速度和刀刃几何形状的耦合影响。对切​​屑形成的理解在研究表面完整性和优化加工工艺变量方面起着至关重要的作用。锯齿状切屑是一种重要的重要切屑类型,通常在高速硬切削中形成。在这项研究中,提出了一种新的分析模型以更好地理解锯齿状切屑的形成,并且使用ABAQUS / Explicit在不同速度(60至6000 m / min)下加工AISI 1045时获得了仿真。用Johnson-Cook模型对工件的材料特性进行建模,并使用AISI 1045在60至1200 m / min的速度下进行了实验。已经表明,流动应力同时受到应变速率硬化和温度软化的影响。当速度达到很高时,温度软化将失败,应变速率硬化将发挥更重要的作用。此外,可以发现,随着切削速度的提高,硬化率增加。模拟和实验的结果很好地相关。切削力和推力都随着切削速度的增加而减小,并且当加工速度达到较高水平时,两者之间的差异将缩小。

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