首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >BK7 optic surface shape affected by non-uniform temperature distribution during continuous polishing
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BK7 optic surface shape affected by non-uniform temperature distribution during continuous polishing

机译:BK7光学表面形状受连续抛光期间不均匀温度分布的影响

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摘要

The continuous polishing process has been extensively used in polishing large optical elements with high precision surface figure. During polishing, the interfacial friction between the rotating optic and lap introduces heat into the optic and results in a non-uniform temperature of the optic. The non-uniform temperature distribution would cause optic deformation and thus has a critical effect on the surface figure, which haven't been addressed till now. In this study, we measured the temperature distribution of the optic with buried temperature sensor. We then model the nonuniform temperature distribution, the results show that the temperature at the edge of the optical element is the lowest, and the temperature on the polished surface is the highest. The maximum temperature difference inside the 430 x 430 x 80 mm(3) BK7 optic is about 0.4 degrees C. Under such non-uniform temperature distribution, the thermal deformation of the optical element is 1.7 mu m.
机译:连续抛光工艺已广泛用于抛光大型光学元件,具有高精度表面图。 在抛光期间,旋转光学和圈之间的界面摩擦将热量引入光学中并导致光学的不均匀温度。 非均匀的温度分布会导致光学变形,因此对尚未解决的表面图具有临界效果。 在本研究中,我们测量了光学温度传感器的光学温度分布。 然后,我们模拟不均匀的温度分布,结果表明光学元件边缘处的温度是最低的,抛光表面上的温度最高。 在430×430×80mm(3)BK7光学内部的最大温差为约0.4℃。在这种非均匀温度分布下,光学元件的热变形为1.7μm。

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