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Efficiency Investigation of Removal of Loading Carbon Chips on Wheel Surface Using Dry Ice Blasting

机译:用干冰爆破去除车轮表面装载碳芯片的效率调查

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In dry grinding of hard carbon parts, the loading by carbon chips on wheel surface occurs in early grinding process, and the grinding performance of wheel is extremely declined. The deterioration affects the grinding accuracy and efficiency. Therefore, loading is one of the problems that must be resolved for high efficiency and high quality grinding of carbon. Generally, the grinding performance of wheel is recovered by the dressing. However, it's not suitable from a viewpoint of the wheel life and the production cost because available abrasive grains possessing sharp edges under loading carbon chips on wheel surface are lost by dressing. In this study, we propose the dry ice blasting for removing loading carbon chips on wheel surface. The dry ice particles impact on pressed carbon chips with high pressure and sublimate to carbon dioxide quickly. Therefore, it is little influence on working environment because the dry ice doesn't remain on wheel surfaces after blasting without the damage. In this report, we carry out the blasting tests of resinoid bond diamond wheel surface without grinding performance by loading carbon chips, and analyzed the effect of nozzle processing speed and nozzle feed pitch on recovering abrasive protrusion. The effective dry ice blasting conditions are investigated for high efficiency removal of loading carbon chips, analyzing the protrusion height of abrasive grains.
机译:在硬碳零件的干燥研磨中,在轮表面上的碳芯片装载在早期研磨过程中,轮子的研磨性能极为下降。劣化会影响研磨精度和效率。因此,加载是必须解决的问题之一,以实现高效率和高质量的碳。通常,敷料恢复车轮的研磨性能。然而,它不适用于车轮寿命的观点和生产成本,因为通过敷料丢失了在车轮表面上的碳芯片下具有锋利边缘的可用磨粒。在这项研究中,我们提出了用于去除轮表面上的装载碳碎片的干冰爆破。干冰颗粒对压制的碳芯片产生高压并快速升华到二氧化碳。因此,对工作环境的影响很小,因为干冰在爆破后不会留在车轮表面上而不会损坏。在本报告中,我们通过装载碳芯片进行树脂粘合金刚石轮表面的爆破试验而不通过研磨性能,并分析喷嘴加工速度和喷嘴进给间距对回收磨料突起的影响。研究了有效的干冰爆破条件以进行高效除去载碳碎片,分析磨粒的突起高度。

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