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Effect of Chip Morphology during Grinding Bearing Steel Using Single Layer Brazed and Galvanic Bonded Cubic Boron Nitride (cBN) Wheel

机译:单层钎焊和电连接的立方氮化硼(cBN)砂轮磨削轴承钢时切屑形态的影响

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摘要

Chip formation in grinding involves high specific energy compared to other machining processes due to high negative rake angle of grains, adverse grinding process parameters and physical-mechanical properties of the workpiece material. This causes excessive friction between chip-grit and chip-bond interfaces as there are no free flow of chip between grits and work surface. It generates high heat, which can have harmful effects on workpiece surface in case of dry grinding. But single layer brazed type (BT) or galvanic bonded (GB) cBN wheel could be the solution for the above mentioned problem, as the protrusion and gap of the grits may be monitored during manufacturing. Unlike conventional grinding, the single layer counterpart produces favorable chips during grinding bearing steel in ductile mode with lesser grinding forces and specific energy. This investigation also shows that the chips of larger volume cannot be accommodated in the intergrjt spaces, which are very small in the GB wheel due to dense grit distribution and shorter grit protrusion, whereas, even with such a large chip load, the BT wheel works effectively for wider and uniform spacing and larger protrusion of the grits.
机译:与其他加工工艺相比,由于晶粒的高负前角,不利的磨削工艺参数和工件材料的物理机械性能,与其他加工工艺相比,磨削中的切屑形成需要较高的比能。这会在切屑和切屑键合界面之间产生过度的摩擦,因为切屑和工作表面之间没有切屑自由流动。它会产生高热量,在干磨的情况下会对工件表面产生有害影响。但是单层铜焊(BT)或电焊(GB)cBN轮可能是上述问题的解决方案,因为砂粒的突出和间隙可在制造过程中进行监控。与常规磨削不同,单层配对在延性模式下对轴承钢进行磨削时会产生良好的切屑,磨削力和比能量较小。该调查还表明,大体积的切屑无法容纳在内部空间中,由于密粒分布和较短的砂粒突出,GB轮中的切屑空间非常小,而即使有如此大的切屑负载,BT轮也可以工作有效地实现更宽,更均匀的间距和更大的砂粒突出。

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