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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >The effect of grinding parameters and gas nitriding depth on the grindability and surface integrity of AISI D2 tool steel
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The effect of grinding parameters and gas nitriding depth on the grindability and surface integrity of AISI D2 tool steel

机译:研磨参数和气体氮化深度对AISI D2工具钢磨削性和表面完整性的影响

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摘要

The present contribution aims to study the combination effects of pre- and post-nitriding grinding and gas nitriding parameters (depth of cut, abrasive type, cooling mode, and nitriding depth) on the material grindability and generated surface integrity of AISI D2 tool steel. As a result, it is shown that grinding with sol-gel abrasive type increases AISI D2 surface hardness before gas nitriding when compared to Al2O3. To remove the brittle white layer, a fine post-nitriding during grinding experiments shows an improved grindability, yet an increase of total and arithmetic roughness with all grinding combination's parameters. After AISI D2 gas nitriding at 24 and 36 h, using the sol-gel abrasive type and conventional cooling mode, a compressive residual state of stresses was induced for lower depth of cut in grinding. When drawing the evolution of grinding specific energy regarding process parameters, it was possible to distinguish between burned and non-burned surfaces. This has helped to perform comparison of the AISI D2 steel ground surface burning under various grinding conditions after and before nitriding. Moreover, it was observed that thermal cracks appear only on severe grinding with combination of Al2O3 abrasive type and conventional cooling mode.
机译:本贡献旨在研究之前和之后的氮化研磨和气体渗氮参数(切削深度,磨料类型,冷却方式,和氮化深度)上的可磨性材料和AISI D2工具钢的表面生成的完整性的组合效果。其结果是,示出相比于氧化铝当气体氮化之前与溶胶 - 凝胶磨料型研磨增加AISI D2表面硬度。研磨实验示出了一种改进的可磨性,又一个与所有研磨组合的参数增加和总算术粗糙度的期间删除脆性白色层,细后氮化。在24 AISI D2气体渗氮和36小时,使用溶胶 - 凝胶磨料类型和常规的冷却模式后,应力的压缩残余状态被诱导为在磨削切下深度。当绘制关于磨削工艺参数的比能量的演变,有可能烧毁和非燃烧表面之间进行区分。这有助于执行AISI D2钢地表面和后氮化前各种研磨条件下燃烧的比较。此外,有人指出,热裂纹与氧化铝磨料类型的组合和常规冷却模式严重研磨才会出现。

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