首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture >Interactive fixture and tool space design considering tool movement, machine, and inspection for five-axis grinding
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Interactive fixture and tool space design considering tool movement, machine, and inspection for five-axis grinding

机译:交互式夹具和刀具空间设计,考虑了刀具移动,机床和五轴磨削检查

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摘要

This paper proposes a novel method of collision-free fixture and tool space design for five-axis grinding, considering tool movement, machine degrees of freedom, the machine envelope, inspection, and related features. The fixture space is designed in three steps. First, the fixture space is generated as the remaining space after cutting out the tooling space (i.e. the sweeping space of the grinding wheel along the profile of the machined features). In this way, the fixture space is naturally collision-free with respect to tool movement. Second, the fixture space is further modified based on the constraints imposed by the grinding machine centre, which include over-travel distance, the positions of coolant nozzle and wheel dresser, and so on. Third, the fixture space is modified again according to measurements conducted by coordinate measuring machines and in-cycle machine probes. Interactions of fixture space with tool space, machine, and inspection are considered. The fixture space design for holding aerofoil blades on a five-axis machining centre Makino A55 for grinding operations is used as a case study, and the results of this study have been verified by computer-aided manufacture (CAM) simulation software Vericut and physical experiments using dummy wheels.
机译:本文提出了一种新颖的五轴磨削无碰撞夹具和刀具空间设计方法,其中考虑了刀具运动,机床自由度,机床外壳,检查和相关特征。灯具空间分为三个步骤。首先,在切出工具空间(即,沿加工特征轮廓的砂轮的扫掠空间)后,将固定空间作为剩余空间生成。以这种方式,固定件空间相对于工具运动自然无碰撞。其次,根据磨床中心施加的约束,包括超程距离,冷却液喷嘴和砂轮修整器的位置等,进一步修改夹具空间。第三,根据坐标测量机和循环机探针进行的测量,再次更改夹具空间。考虑夹具空间与工具空间,机器和检查之间的相互作用。以用于在五轴加工中心Makino A55上进行磨削操作的机翼叶片的夹具空间设计为例,该研究的结果已通过计算机辅助制造(CAM)模拟软件Vericut和物理实验进行了验证。使用假人轮。

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