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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Microstructure and mechanical properties of Ti(C, N) and TiN/Ti(C, N) multilayer PVD coatings
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Microstructure and mechanical properties of Ti(C, N) and TiN/Ti(C, N) multilayer PVD coatings

机译:Ti(C,N)和TiN / Ti(C,N)多层PVD涂层的组织和力学性能

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摘要

Magnetron sputtered Ti(C, N) and TiN/Ti(C, N) multilayer coatings are deposited onto cemented carbide substrates at 350 deg C. The crystal structure and microstructure of the deposited coatings are characterized by means of X-ray diffraction (XRD), scanning electron microscopy (SEM), nanoindentation and scratch test. XRD examination indicates that both coatings are of fee structure. In accordance with SEM observation, both coatings are columnar crystallites structures and the TiN/Ti(C, N) multilayer coating forms the modulation structure with alternating TiN and Ti(C,N) layers. As for TiN/Ti(C,N) multilayer coating, the hardness and adhesion with substrate are improved due to interface effect between TiN and Ti(C,N) layers. Ti(C,N) and TiN/Ti(C,N) multilayer coatings exhibit approximately identical performance and different failure forms in machining carbon steel. But the performance of TiN/Ti(C, N) multilayer coating inserts in machining stainless steel is superior to Ti(C,N) coating inserts due to the better thermal stability of TiN/Ti(C,N) multilayer coating.
机译:磁控溅射Ti(C,N)和TiN / Ti(C,N)多层涂层在350摄氏度下沉积到硬质合金基体上。沉积的涂层的晶体结构和微观结构通过X射线衍射(XRD)表征),扫描电子显微镜(SEM),纳米压痕和划痕测试。 XRD检查表明两种涂层均具有费用结构。根据SEM观察,两个涂层都是柱状微晶结构,并且TiN / Ti(C,N)多层涂层形成具有交替的TiN和Ti(C,N)层的调制结构。对于TiN / Ti(C,N)多层涂层,由于TiN和Ti(C,N)层之间的界面效应,因此提高了硬度和与基材的附着力。 Ti(C,N)和TiN / Ti(C,N)多层涂层在加工碳钢时表现出大致相同的性能和不同的破坏形式。但是,由于TiN / Ti(C,N)多层涂层具有更好的热稳定性,因此在加工不锈钢时,TiN / Ti(C,N)多层涂层刀片的性能优于Ti(C,N)涂层刀片。

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