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Investigation of anisotropic mechanisms in ultra-precision diamond machining of KDP crystal

机译:KDP晶体超精密金刚石加工的各向异性机理研究

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摘要

Potassium dihydrogen phosphate (KDP) crystal presents a host of problems to engineers and opticians. Moreover, because of its anisotropic character, a particular crystal orientation and plane wave transmission are required while the machining process is performed. In this study, by applying the principle of the maximized shearing deformed specific energy and the different shearing elastic modulus along different crystal planes and orientations, a theoretical model to calculate the shear angles when cutting KDP crystal was established. Based on this model, the shear angles' variation regularity under different cutting conditions was obtained. Additionally, the variation regularities of cutting forces and roughness on different crystal planes were discussed. The results indicate that on different crystal planes the average cutting force and roughness as well as their variation amplitude are different. In addition, the calculated results show that rake angle plays an important role on suppression and minimizing material anisotropic character. Furthermore, the ultra-precision turning and milling experiments were conducted, and the theoretical model matched the experiments well within normal operating conditions.
机译:磷酸二氢钾(KDP)晶体给工程师和眼镜商带来了许多问题。此外,由于其各向异性,在执行机械加工过程时需要特定的晶体取向和平面波透射。本研究利用最大剪切变形比能和沿不同晶面和取向的不同剪切弹性模量的原理,建立了计算KDP晶体切割时剪切角的理论模型。基于该模型,获得了不同切削条件下剪切角的变化规律。此外,讨论了切削力和粗糙度在不同晶面上的变化规律。结果表明,在不同的晶面上,平均切削力和粗糙度以及它们的变化幅度是不同的。此外,计算结果表明前角在抑制和最小化材料各向异性方面起着重要作用。此外,进行了超精密车削和铣削实验,理论模型在正常工作条件下与实验非常吻合。

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