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研磨技术对于精密零件的制造具有重要作用。随着自动化、微机程序控制的发展,对机器零件不但要求工件表面的光洁度很高,而且要求有极高的尺寸精度、几何精度及相互位置精度。由于加工件的精度要求高,尽管目前磨削技术水平不断提高,出现了镜面磨削,微动进给、自动检测及投影放大等先进技术,但是仍然满足不了对加工精度的要求,所以应用研磨技术就显得尤为重要。
Grinding technology for the manufacture of precision parts plays an important role. With the development of automation and computer program control, the machine parts not only require high surface finish but also high dimensional accuracy, geometric accuracy and mutual positional accuracy. Due to the high precision of the machined parts, advanced technologies such as mirror grinding, fretting feed, automatic detection and projection magnification have emerged in the past despite the increasing level of grinding technology, but still can not meet the machining accuracy requirements. Therefore, the application of grinding Technology is particularly important.