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Application of Cavitation Aided Abrasive Machining to Manufacture of Micro Air Vents on Injection Molds

机译:空化辅助磨料加工在注射模具上制造微风通风口的应用

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The purpose of this study is a practical application of the cavitation aided abrasive machining (CAAM). This study shows the machining effect of the precision abrasive machining on injection molds using the cavitation in a suction flow of slurry, which can easily finish to a fine surface by a simple apparatus. The cavitation occurred above the workpiece surface downstream of the restrictor tip because of the rapid decompression and then the abrasive grains in the water interfere with the workpiece surface by the cavitation impact. In this report, the possibility of application of the cavitation aided abrasive machining to the precision manufacturing of micro air vents on the rib of injection molds are generated by using masks of a certain thickness that are made on a special masking equipment, and the machining characteristics of micro air vents are investigated by analyzing the depth of micro grooves and the surface finish in machining of injection molds. When the depth of the micro grooves is approximately 1μm in the machining of 30 minutes, the manufacture of molding parts without burrs or residual voids is carried out by CAAM.
机译:本研究的目的是空化辅助磨料加工(CAAM)的实际应用。该研究表明,使用简单的装置可以容易地完成浆料中的空化物在注射模具上的精密磨料加工的加工效果。由于快速减压,并且水中的研磨颗粒通过空化冲击干扰了工件表面,在限流器尖端下游的工件表面上方发生空化。在本报告中,通过使用在特殊掩模设备上制造的一定厚度的掩模和加工特性,通过使用一定厚度的掩模来施加空化辅助磨料加工到注射模具的微空气通风口的精确制造。通过分析微槽的深度和注射模具的加工中的表面光洁度来研究微空气通风口。当微槽的深度在加工时大约1μm,在30分钟的情况下,通过CAAM进行没有毛刺或残余空隙的模制部件的制造。

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