{"title":"Grinding Plate Wear Failure Analysis","authors":"","doi":"10.31399/asm.fach.machtools.c0091853","DOIUrl":null,"url":null,"abstract":"\n A 230 mm (9 in.) diameter disk attrition mill was scheduled to grind 6.35 mm (0.25 in.) diameter quartz particles to a 0.075 mm (0.003 in.) diameter powder. Due to severe wear on the grinding plates, however, the unit was unable to complete the task of grinding the rock. The mill consisted of a heavy gray cast iron frame, a gravity feeder port, a runner, and a heavy-duty motor. The frame and gravity feeder weighed over 200 kg (440 lb) and, in some areas, was over 25 mm (1 in.) thick. To obtain the operating speed of 200 rpm, a gear system was used to transmit the torque from the 2-hp motor. The runner consisted of a 50 mm (2 in.) diameter shaft and two gray cast iron grinding plates. Investigation (visual inspection, historical review, photographs, model testing of new plates, chemical analysis, hardness testing, optical macrographs, and optical micrographs) supported the conclusion that the primary feed material was harder than the grinding plates, causing wear and eventual failure. Recommendations included reducing the clearance between the flutes and possible material changes.","PeriodicalId":446028,"journal":{"name":"ASM Failure Analysis Case Histories: Machine Tools and Manufacturing Equipment","volume":"56 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2019-06-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"ASM Failure Analysis Case Histories: Machine Tools and Manufacturing Equipment","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.31399/asm.fach.machtools.c0091853","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

A 230 mm (9 in.) diameter disk attrition mill was scheduled to grind 6.35 mm (0.25 in.) diameter quartz particles to a 0.075 mm (0.003 in.) diameter powder. Due to severe wear on the grinding plates, however, the unit was unable to complete the task of grinding the rock. The mill consisted of a heavy gray cast iron frame, a gravity feeder port, a runner, and a heavy-duty motor. The frame and gravity feeder weighed over 200 kg (440 lb) and, in some areas, was over 25 mm (1 in.) thick. To obtain the operating speed of 200 rpm, a gear system was used to transmit the torque from the 2-hp motor. The runner consisted of a 50 mm (2 in.) diameter shaft and two gray cast iron grinding plates. Investigation (visual inspection, historical review, photographs, model testing of new plates, chemical analysis, hardness testing, optical macrographs, and optical micrographs) supported the conclusion that the primary feed material was harder than the grinding plates, causing wear and eventual failure. Recommendations included reducing the clearance between the flutes and possible material changes.
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磨片磨损失效分析
一台直径230毫米(9英寸)的圆盘磨砂机计划将直径6.35毫米(0.25英寸)的石英颗粒磨成直径0.075毫米(0.003英寸)的粉末。然而,由于磨板磨损严重,该机组无法完成磨岩石的任务。磨机由一个沉重的灰色铸铁框架、一个重力给料口、一个流道和一个重型马达组成。机架和重力给料器重量超过200公斤(440磅),在某些区域,厚度超过25毫米(1英寸)。为了获得200 rpm的运行速度,使用齿轮系统来传递2 hp电机的扭矩。流道由一个直径50毫米(2英寸)的轴和两个灰铸铁磨盘组成。调查(目视检查,历史回顾,照片,新板的模型测试,化学分析,硬度测试,光学宏观图和光学显微图)支持的结论是,主要进料比研磨板更硬,导致磨损和最终失效。建议包括减少凹槽之间的间隙和可能的材料变化。
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