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In-situ synthesis of TiC/Ti composite coating by high frequency induction cladding

机译:高频感应包层原位合成TiC / Ti复合涂层

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摘要

The in-situ formation of TiC/Ti composite coating was achieved by induction cladding (IC) approach. The powder mixture of 70 at% Ti and 30 at% graphite were preplaced on a Ti6Al4V substrate and irradiated with a high frequency induction heating coil in Ar atmosphere. The cladded coating exhibited a practically dense and pore-free microstructure with metallurgical adherence to the substrate. Fine titanium carbides (TiC) were uniformly formed in the coating, which were confirmed by X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS) and transmission electron microscope (TEM) analysis. Two temperature peaks within the coating indicates the induction cladding process is different from the point heating sources. Dissolution-precipitation mechanism is used to explain the formation of the composite coating and the in situ synthesis of the TiC particle reinforcements. The nanoindentation hardness of the TiC particles is about 22 GPa, which makes the microhardness of the composite coating (600 HV0.2) nearly twice the microhardness of the Ti6Al4V substrate (340 HV0.2). The hardness evolution of the composite coating is evaluated by the rule of mixtures and the predicted results are consistence with the measured ones. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过感应包层(IC)方法实现了TiC / Ti复合涂层的原位形成。在Ti6Al4V基板上预先复位70at%Ti和30处的粉末混合物,并用在AR气氛中用高频感应加热线圈照射。包覆的涂层表现出实际致密的和无孔的微观结构,其具有冶金粘附到基材上。在涂层中均匀地形成细碳化钛(TiC),其通过X射线衍射(XRD),X射线光电子能谱(XPS)和透射电子显微镜(TEM)分析来确认。涂层内的两个温度峰表示感应包层的进程与点加热源不同。溶解沉淀机制用于解释复合涂层的形成和原位合成TIC颗粒增强剂。 TIC颗粒的纳米凸缘硬度约为22GPa,其使复合涂层(600hv0.2)的显微硬度接近Ti6Al4V底物的微硬度(340hv0.2)。通过混合物的规则评估复合涂层的硬度演化,预测结果与测量的结果一致。 (c)2017年Elsevier B.V.保留所有权利。

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