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An experimental study of the effects of dressing parameters on the topography of grinding wheels during roller dressing

机译:砂轮修整过程中修整参数对砂轮形貌影响的实验研究

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Vitreous-bonded grinding wheels are widely used for machining features on aerospace components achieving high material removal rates under high pressure coolant. Dressing is a vital stage in the grinding process to ensure a consistent wheel topography and performance. However, the effects of roller dressing on functional performance of vitreous grinding wheels as well as its influence on different abrasive grit morphologies have not been fully characterised. This paper studies the influence of dressing parameters on the topography, morphology and characteristics of the surface of different vitrified abrasive wheels in order to better understand the process and therefore optimise the preparation of grinding wheels for industrial machining. Alumina grinding wheels with conventional and engineered grit shapes were dressed at two different infeed rates over a range of seven different speed ratios (from -0.8 to +1). An experimental methodology has been developed incorporating a range of known techniques to define the abrasive wheel condition including measured power consumption and ground graphite coupons as well as using optical microscopes to measure grain fracture flats, peak density and abrasive grain shape. It has been found that power consumption of the grinding wheel spindle increases at higher infeed rates and speed ratios. This leads to increased fracturing of the grains and whole-grain pull out. According to the results the infeed rate has a more substantial effect on wheel topography than speed ratio and the response of engineered grit morphologies to dressing is dependent on grit orientation. (C) 2017 The Society of Manufacturing Engineers. Published by Elsevier Ltd. All rights reserved.
机译:玻璃粘结砂轮广泛用于航空航天零件的机械加工,可在高压冷却剂下实现较高的材料去除率。修整是磨削过程中至关重要的阶段,以确保一致的砂轮形貌和性能。但是,滚轮修整对玻璃砂轮功能性能的影响及其对不同磨料粒度形态的影响尚未得到充分表征。本文研究修整参数对不同玻璃化砂轮表面形貌,形貌和表面特性的影响,以便更好地了解加工过程,从而优化工业加工砂轮的制备。在两种不同的进给速度下,在七个不同的速比范围内(从-0.8到+1),对具有常规和工程砂砾形状的氧化铝砂轮进行了修整。已经开发出一种结合了一系列已知技术的实验方法,以定义砂轮条件,包括测量的功率消耗和磨碎的石墨试样,以及使用光学显微镜测量晶粒断裂平面,峰密度和磨粒形状。已经发现,在较高的进给速度和速度比下,砂轮主轴的功率消耗增加。这导致谷物的破裂增加,全谷物拉出。根据结果​​,进给速度对车轮形貌的影响比速比更大,工程砂砾形貌对修整的响应取决于砂砾取向。 (C)2017年制造工程师学会。由Elsevier Ltd.出版。保留所有权利。

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