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MODELLING OF HARD BROACHING

机译:硬分组建模

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摘要

Hard broaching is a finishing process to correct geometrical deviations of internal profiles on hardened workpieces, typically using a hardened steel body overlaid with a single layer of metal-bonded diamond grits. The tool essentially has the opposite contour as the workpiece. The process is characterized by an oscillating movement of the broaching tool, while the tool is pushed sequentially deeper into the workpiece. During the retraction phase the chips are removed from the chip spaces. The tool consists of a roughing part and a finishing part to increase the surface quality and reduce the tolerances.For gaining a deeper understanding of the process and for its optimization a stochastic tool model is introduced, which takes into account the differing shape, size, orientation and position of the single grains. Specifications about the tool geometry and the diamond coating as well as process parameters are used as input. The model is capable to predict the active grains, the respective cutting areas, cutting forces and surface roughness of such a virtual image of the broaching tool, which is thus capable to be used to layout and optimize the shape, layer and process strategy of hard broaching. It further allows analyzing the effects of the feed per stroke on the process in dependence of different process and tool parameters. By the modeling a strategy for process optimization is derived. The influences of the optimization strategy on the process are presented and discussed.
机译:硬拉削是一种校正过程,用于校正硬化工件上的内部轮廓的几何偏差,通常使用覆盖有单层金属结合金刚石砂粒的硬化钢体来完成。该工具基本上具有与工件相反的轮廓。该过程的特征在于拉削工具的振荡运动,同时将拉削工具依次更深地推入工件中。在缩回阶段,将切屑从切屑空间中移出。该工具包括一个粗加工部分和一个精加工部分,以提高表面质量并降低公差。 为了加深对过程的了解并对其进行优化,引入了一种随机工具模型,该模型考虑了单个晶粒的不同形状,大小,方向和位置。输入有关刀具几何形状和金刚石涂层以及工艺参数的规范。该模型能够预测这种拉削刀具虚拟图像的活性晶粒,相应的切削区域,切削力和表面粗糙度,因此能够用于布局和优化硬质合金的形状,层和加工策略拉削。它还可以根据不同的过程和工具参数来分析每行程进给对过程的影响。通过建模,可以得出用于过程优化的策略。提出并讨论了优化策略对过程的影响。

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