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An Experimental Study on the Precision Abrasive Machining Process of Hard and Brittle Materials with Ultraviolet-Resin Bond Diamond Abrasive Tools

机译:紫外线-树脂结合剂金刚石磨具精密加工硬脆材料的实验研究

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摘要

Ultraviolet-curable resin was introduced as a bonding agent into the fabrication process of precision abrasive machining tools in this study, aiming to deliver a rapid, flexible, economical, and environment-friendly additive manufacturing process to replace the hot press and sintering process with thermal-curable resin. A laboratory manufacturing process was established to develop an ultraviolet-curable resin bond diamond lapping plate, the machining performance of which on the ceramic workpiece was examined through a series of comparative experiments with slurry-based iron plate lapping. The machined surface roughness and weight loss of the workpieces were periodically recorded to evaluate the surface finish quality and the material removal rate. The promising results in terms of a 12% improvement in surface roughness and 25% reduction in material removal rate were obtained from the ultraviolet-curable resin plate-involved lapping process. A summarized hypothesis was drawn to describe the dynamically-balanced state of the hybrid precision abrasive machining process integrated both the two-body and three-body abrasion mode.
机译:在这项研究中,将紫外线可固化树脂作为粘合剂引入了精密磨料加工工具的制造过程中,旨在提供一种快速,灵活,经济,环保的增材制造工艺,以用热取代热压和烧结工艺。 -可固化树脂。建立了实验室制造工艺来开发可紫外线固化的树脂结合剂金刚石研磨板,并通过一系列基于浆料的铁板研磨的对比实验来检验其在陶瓷工件上的加工性能。定期记录加工后的工件表面粗糙度和重量损失,以评估表面光洁度质量和材料去除率。通过紫外线固化树脂板涉及的研磨工艺,表面粗糙度提高了12%,材料去除率降低了25%,这些结果令人鼓舞。提出了一个总结性的假设来描述结合了两体和三体磨损模式的混合精密磨料加工过程的动态平衡状态。

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