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Concept design of a novel tactile probe tip for down scaled 3D CMMs

机译:新型3D坐标测量机的触觉探针的概念设计

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Although coordinate metrology has reached a very high state of development concerning versatility and accuracy for common engineering parts, a high precision capability with nano scale resolution and accuracy is often hard to achieve when it is required to measure very small parts and features. The limiting component is the bulky probing system of traditional CMMs (coordinate measuring machines). In order to satisfy increasing demand for highly accurate geometrical measurements on small parts and small structures, a new measuring probe of high sensitivity and small geometrical dimension with low contact forces needs to be developed. In this paper, a novel probing system, which combines a FBG (Fibre Bragg Grating) embedded optical fibre tactile probe with an optical sensing technique, has been proposed. With the sensor elements integrated into the probe tip directly, the system sensitivity can be increased significantly. A preliminary theoretical analysis of the sensitivity of the FBG fibre sensor under axial and lateral end point loading has been presented and the results show that this micro scale probe has great potential to realize a resolution of 1nanometer on geometrical measurement of small parts.
机译:尽管坐标计量学已在通用工程零件的通用性和精度方面达到了很高的发展水平,但是当需要测量非常小的零件和特征时,往往难以实现具有纳米级分辨率和精度的高精度功能。限制组件是传统CMM(坐标测量机)的庞大探测系统。为了满足对在小零件和小结构上进行高精度几何测量的不断增长的需求,需要开发一种新的具有低接触力的高灵敏度和小几何尺寸的测量探头。在本文中,提出了一种新颖的探测系统,该系统将FBG(光纤布拉格光栅)嵌入式光纤触觉探头与光学传感技术相结合。通过将传感器元件直接集成到探头尖端中,可以显着提高系统灵敏度。提出了对FBG光纤传感器在轴向和横向端点载荷下灵敏度的初步理论分析,结果表明,这种微型标尺在小零件的几何测量中具有实现1纳米分辨率的巨大潜力。

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