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Collision-free machining fixture space design based on parametric tool space for five-axis grinding

机译:基于参数化刀具空间的五轴磨削无碰撞加工夹具空间设计

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As one of the most important criteria of fixture performance, there should be no collision between fixtures, tool, component and machine. Conventionally, fixture space design is treated as an isolated process from the design of tooling strategy, and the iteration of fixture re-design and re-manufacturing until a satisfactory fixture is achieved is very time-consuming and error-prone. In this paper, a novel method of fixture space design is proposed. Starting from the minimal number of set-ups, the tool spaces for all the machining features are generated parametrically by sweeping the wheel profile along the wheel trajectory. The fixture space is the remaining space after the tool space is deduced from the total working space. Therefore, the fixture space is, by nature, collision-free from the tool movement. The fixture space and the tool space can be designed interactively until the number of set-ups is minimal and an optimal system of fixture-tool-component is obtained in terms of the overall system performance. The fixture development for aerofoil blades is used as case study.
机译:作为夹具性能最重要的标准之一,夹具,工具,零件和机器之间不应发生碰撞。通常,夹具空间设计被视为与刀具策略设计隔离的过程,夹具重新设计和重新制造的迭代直到获得令人满意的夹具都是非常耗时且容易出错的。本文提出了一种新的夹具空间设计方法。从最少的设置开始,就通过沿车轮轨迹扫掠车轮轮廓,以参数方式生成所有加工特征的刀具空间。固定空间是从总工作空间中减去工具空间后的剩余空间。因此,夹具空间本质上不会因工具移动而发生碰撞。夹具空间和工具空间可以交互设计,直到设置的数量最少,并且就整体系统性能而言,获得了夹具工具组件的最佳系统。机翼叶片的夹具开发用作案例研究。

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