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Study of elementary micro-cutting in hardened tool steel

机译:淬硬工具钢的基本显微切削研究

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摘要

In order to model micro-milling cutting forces, a way is to apply a local model on discretized elements of the cutting edge and then summing on the whole edge to obtain the global cutting forces. This local model is usually obtained by numerical simulation or cutting experimentation. This paper focuses on orthogonal and oblique micro-cutting experiments of AISI 6F7 with tungsten carbide tools. Results show the influence of cutting edge sharpness on cutting forces and the existence of different mechanisms corresponding to different ranges of uncut chip thickness values. A phenomenological model has been identified to model correctly these zones. Then, by comparing experimental micro-milling forces with those deduced from these micro-cutting model and tests, a good agreement has been found. In order to complete this study, phenomenological and thermo mechanical models are being developed. The aim is to obtain an elementary cutting model that can be used for micro-milling simulation and optimization.
机译:为了对微铣削切削力进行建模,一种方法是在切削刃的离散元素上应用局部模型,然后对整个切削刃求和以获得全局切削力。该局部模型通常通过数值模拟或切削实验获得。本文着重于用碳化钨工具对AISI 6F7进行正交和斜切实验。结果表明切削刃锋利度对切削力的影响以及存在与未切削切屑厚度值的不同范围相对应的不同机理。已经确定了一种现象学模型,可以对这些区域进行正确建模。然后,通过将实验微铣削力与从这些微切削模型和测试得出的力进行比较,已经找到了很好的协议。为了完成这项研究,正在开发现象学和热力学模型。目的是获得可用于微铣削仿真和优化的基本切削模型。

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