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Graphene-Enhanced Environmentally-Benign Cutting Fluids for High-Performance Micro-Machining Applications

机译:高性能微加工应用中石墨烯增强的环境友好型切削液

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摘要

A canola-based cutting oil enhanced with graphene platelet (GPL) additives has been developed to fulfill the need for environmentally benign cutting oils for high performance micro-machining applications. Carboxyl-functionalized graphene platelets are used to enable stable GPL dispersion in the polar oil. Three oil formulations consisting of 0.05%, 0.10% and 0.15% GPL by weight are tested. The GPL-laden canola oil is first characterized based on its kinematic viscosity, thermal conductivity and coefficient of friction. Micro-turning tests are then performed to study the effect of GPL loading on the cutting temperature, cutting force, and the surface finish of the part. All tested loadings improve the cooling and lubricating properties of the canola oil. For cooling, this improvement is seen to increase with GPL loading. In the case of lubrication, there appears to be an optimal loading of around 0.10%. The presence of GPL also leads to a decrease in the surface roughness of the micro-machined surface but this improvement drops with increased GPL loading.
机译:为了满足高性能微加工应用对环境无害的切削油的需求,已经开发了使用石墨烯血小板(GPL)添加剂增强的基于菜籽油的切削油。羧基官能化的石墨烯血小板用于使GPL在极性油中稳定分散。测试了由0.05%,0.10%和0.15%GPL重量组成的三种油配方。载有GPL的低芥酸菜籽油首先基于其运动粘度,导热系数和摩擦系数进行表征。然后进行微车削测试,以研究GPL负载对切削温度,切削力和零件表面光洁度的影响。所有测试的负载量均可改善芥花籽油的冷却和润滑性能。对于冷却来说,这种改善会随着GPL负载的增加而增加。在润滑的情况下,最佳负载量约为0.10%。 GPL的存在还导致微加工表面的表面粗糙度降低,但是随着GPL负载的增加,这种改善下降。

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