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Study on the grinding behavior of laser-structured grinding in silicon nitride ceramic

机译:氮化硅陶瓷激光结构研磨的研磨行为研究

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摘要

Silicon nitride ceramics are extremely difficult and time-consuming to be machined with conventional methods, such as turning and grinding. Laser-assisted machining has been a field of extensive research during the past decade, as it is a promising solution to enhance the machinability of many difficult-to-cut materials, including silicon nitride ceramics. To enhance the processing precision of silicon nitride ceramic grinding, in this work, a method of laser structuring the surface of silicon nitride is proposed. The laser process allows to precisely control the dimensions of the generated features. Therefore, different patterns with equal silicon nitride surface area are produced in order to study the influence of the pattern geometry on the grinding behavior of the silicon nitride. Grinding performance of the structured silicon nitride is tested. The influences of grinding parameters, such as wheel speed and feed rate, are analyzed for their effects on the grinding force, surface roughness. It is found that the procedure of laser-structured silicon nitride has a strong influence on the grinding results. The grooves obtained by laser-structured silicon nitride are favorable for the flow of coolant, and the cracks generated inside the grooves weak the material locally. The laser-structured silicon nitride generally allows for a reduction of grinding forces by up to 63%, and it can effectively reduce the wear of the tool.
机译:氮化硅陶瓷是用常规方法加工的极其困难和耗时,例如转动和研磨。激光辅助加工在过去十年中是一种广泛的研究领域,因为它是增强许多难以切割材料的可加工性的有希望的解决方案,包括氮化硅陶瓷。为了提高氮化硅陶瓷研磨的加工精度,在该工作中,提出了一种激光结构化氮化硅表面的方法。激光过程允许精确地控制所产生的特征的尺寸。因此,产生具有相同氮化硅表面积的不同图案,以研究图案几何形状对氮化硅研磨行为的影响。测试了结构化氮化硅的研磨性能。分析研磨参数,例如车轮速度和进料速率的影响,以便它们对磨削力,表面粗糙度的影响。发现激光结构氮化硅的过程对研磨结果产生了很强的影响。通过激光结构氮化硅获得的凹槽有利于冷却剂的流动,并且在凹槽内部产生的裂缝局部弱。激光结构氮化硅通常允许将研磨力的降低至多63%,并且可以有效地减少工具的磨损。

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