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Machinability Study On Precision Turning Of Pa66 Polyamide With And Without Glass Fiber Reinforcing

机译:有和没有玻璃纤维增​​强的Pa66聚酰胺精密车削加工性能的研究

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摘要

Polyamide composites are widely employed in various fields of engineering, such as aircraft, automobile, robots and machines due to their good properties. They are generally manufactured by extrusion, and therefore these materials require additional machining operations. Precision machining aims the production of advanced components with high dimensional accuracy and acceptable surface integrity. This paper aims the better understanding of the machinability of PA 66 polyamide with and without 30% glass fiber reinforcing, when precision turning at different feed rates and using four distinct tool materials. The findings indicated that the radial force component presented highest values, followed by the cutting and feed forces. The PCD tool gave the lowest force values associated with best surface finish, followed by the ISO grade K15 uncoated carbide tool with chip breaker when machining reinforced polyamide. Continuous coiled micro-chips were produced, irrespectively of the cutting parameters and tool material employed.
机译:聚酰胺复合材料因其良好的性能而广泛应用于各种工程领域,例如飞机,汽车,机器人和机器。它们通常通过挤压制造,因此这些材料需要额外的机加工操作。精密加工旨在生产具有高尺寸精度和可接受的表面完整性的高级组件。本文旨在更好地了解在有不同进给率和使用四种不同工具材料的情况下进行精密车削时,使用和不使用30%玻璃纤维增​​强的PA 66聚酰胺的切削性能。结果表明,径向力分量呈现最高值,其次是切削力和进给力。当加工增强聚酰胺时,PCD刀具具有与最佳表面粗糙度相关的最低力值,其次是具有断屑器的ISO级K15非涂层硬质合金刀具。不论使用何种切削参数和工具材料,都可以生产连续卷绕的微芯片。

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