首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >On the grindability of low-carbon steel under dry, cryogenic and neat oil environments with monolayer brazed cBN and alumina wheels
【24h】

On the grindability of low-carbon steel under dry, cryogenic and neat oil environments with monolayer brazed cBN and alumina wheels

机译:关于低碳钢在干燥,低温和纯油环境下具有单层钎焊cBN和氧化铝砂轮的可磨性

获取原文
获取原文并翻译 | 示例
           

摘要

Grinding of low-carbon steel often exhibits severe wheel loading due to the formation of long chips and high adhering tendency of the work material with the grits. Conventional composite-type alumina wheels are commercially utilised for grinding low-carbon steel. However, the actual nature of grit wear cannot be truly understood in a composite wheel. The truing and dressing conditions also have some influences on the wear mechanism. Therefore, in order to explore the wear pattern on a single layer of grits, monolayer brazed cBN, white and grey Al2O3 wheels were used in the present study. The grindability of AISI 1020 steel was evaluated under dry, liquid nitrogen and neat oil environments. The surface profile of the workpiece after being ground in each environmental condition was traced with a surface profilometer to reveal the mechanism of grit wear. The post-grinding conditions of the wheels were observed using scanning electron microscopy. The cBN wheel was found to outperform the alumina wheels in terms of grinding forces and grit wear. The wear of the cBN wheel was remarkably arrested with the application of neat oil. On the other hand, large-scale adhesion and breakage of grits in white alumina wheel were observed under cryogenic environment. In fact, the beneficial role of liquid nitrogen could not be realised in reducing grinding forces and grit wear with all the three types of wheel. A lubricating agent like neat oil appeared to be more suitable than cryogenic cooling when grinding low-carbon steel.
机译:低碳钢的磨削通常会产生严重的砂轮载荷,这是由于长切屑的形成以及工作材料与磨粒的高粘附趋势。商业上使用常规的复合型氧化铝轮来研磨低碳钢。然而,在复合材料轮中不能真正理解砂粒磨损的实际性质。修整条件和修整条件也会对磨损机理产生影响。因此,为了探究单层磨粒的磨损方式,本研究使用了单层钎焊的cBN,白色和灰色的Al2 O3 砂轮。在干燥,液氮和纯油环境下评估了AISI 1020钢的可磨性。使用表面轮廓仪追踪在每种环境条件下磨削后的工件表面轮廓,以揭示砂粒磨损的机理。使用扫描电子显微镜观察砂轮的磨后条件。发现在研磨力和砂砾磨损方面,cBN砂轮的性能优于氧化铝砂轮。使用纯油可显着阻止cBN轮的磨损。另一方面,在低温环境下观察到白氧化铝砂轮中的大规模附着力和砂砾的破裂。实际上,在所有这三种类型的砂轮中,液氮在降低磨削力和降低砂粒磨损方面均无法发挥有益的作用。当研磨低碳钢时,像纯净油这样的润滑剂似乎比低温冷却更合适。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号