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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Impact of intra-bond orbital hybridization and morphology of diamond coatings on machining performance of coated end mill cutters
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Impact of intra-bond orbital hybridization and morphology of diamond coatings on machining performance of coated end mill cutters

机译:金刚石涂层内粘接性轨道杂交和形态对涂层底铣刀加工性能的影响

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摘要

The current study analyses machining performance of diamond coated end mills in the light of coating morphology, difference in intra-bond orbital hybridization, wettability and anti-frictional characteristics. Three different classes of diamond coatings, including a new generation nanocrystalline (NCD) coating, were chosen so that they do contain different intensity of sp(2) and sp(3) hybridisation in C-C covalent bonding. The machining experiments were carried out in slot machining mode accomplished by two-fluted endmills and on aluminium and a silicon-free aluminium alloy, AA2024. sp(2)-rich hydrogenated DLC coating demonstrated outperformance in anti-frictional characteristics over its counter parts when tested against a sliding aluminium disc. The tribological performance of the sp(3)-rich NCD coating was superior to the sp(3)-hybridized microcrystalline diamond coating (MCD) but could not excel H-DLC coating. The difference in the hybridization level did not influence wettability towards the molten aluminium. However, the end mills having new generation NCD coating outperformed its counterparts at high speed machining conditions, establishing the supremacy over H-DLC coating, even over the MCD coating. The coating morphology including roughness played the most influencing role in favour of the machining performance, considering the ability to arrest built up layer (BUL) formation and to produce high surface finish of the machined work-surface.
机译:目前的研究分析了涂料形态的涂层形态,粘结内轨道杂交,润湿性和抗摩擦特性的差异的光加工性能。选择三种不同类金刚石涂层,包括新一代纳米晶(NCD)涂层,使得它们在C-C共价键合中含有不同的SP(2)和SP(3)杂交强度。加工实验以由双凹槽端盖和铝和铝和无硅铝合金,AA2024完成的槽加工模式下进行。 SP(2) - 氢化DLC涂层在抵抗滑动铝盘时,在其柜台上的抗摩擦特性方面表现出不佳。 SP(3)-RICH NCD涂层的摩擦学性能优于SP(3) - 酵母化的微晶金刚石涂层(MCD),但不能Excel Excel Excel Excel。杂交水平的差异不会影响熔融铝的润湿性。然而,具有新一代NCD涂层的端铣刀在高速加工条件下表现出其对应物,即使在MCD涂层上也可以在H-DLC涂层上建立至高无上。包括粗糙度的涂层形态起到最有利于加工性能的影响最大的作用,考虑到逮捕内置层(BUL)形成并产生机加工工作表面的高表面光洁度。

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