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首页> 外文期刊>International Journal Precision Engineering Manufacturing-Green Technology >An Analytical Model for Grinding Force Prediction in Ultra-Precision Machining of WC with PCD Micro Grinding Tool
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An Analytical Model for Grinding Force Prediction in Ultra-Precision Machining of WC with PCD Micro Grinding Tool

机译:用PCD微型研磨工具对WC超精密加工研磨力预测的分析模型

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摘要

Micro grinding with a poly crystalline diamond (PCD) tool is one of the promising approaches for fabricating a micro mold on difficult-to-cut materials. As the process can also achieve good surface integrity without additional finishing processes, it could shorten total processing time and reduce total energy and resource impact. Modeling of micro grinding is necessary to understand the key design factors of the PCD tool which influence the grinding force inducing geometric errors in micromachining. This research proposes a model to describe the micro grinding of the difficult-to-cut material and predict the grinding force. The model for calculating the grinding force has been established considering contact area, grit size and distribution, tool shape, cutting depth, and cutting speed. Micromachining experiments with a PCD micro grinding tool fabricated by wire electro discharge machining have been conducted in tungsten carbide and provided the validation of the proposed model.
机译:用多晶硅金刚石(PCD)工具微型研磨是在难以切割的材料上制造微模的有希望的方法之一。由于该过程还可以实现良好的表面完整性而无需额外的整理过程,它可以缩短总处理时间并降低总能量和资源影响。微型研磨的建模是了解PCD工具的关键设计因素,影响影响微机械线中的磨削力的磨削力。该研究提出了一种模型来描述难以切割材料的微型研磨并预测研磨力。考虑到接触面积,砂砾尺寸和分布,工具形状,切割深度和切割速度,建立了计算磨力的模型。微机械线实验,采用电线电气放电加工制造的PCD微型研磨工具在碳化钨中进行,并提供了所提出的模型的验证。

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