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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Wear stress mitigation and structural characteristics of highly performing zinc-based induced ZrO2/ZrN composite alloy coating on mild steel
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Wear stress mitigation and structural characteristics of highly performing zinc-based induced ZrO2/ZrN composite alloy coating on mild steel

机译:高效锌基诱导ZrO2 / ZrN复合合金涂层在温和钢上的磨损应力缓解和结构特征

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摘要

The challenge of residual stress as a result of wear deformation and thermal instability is the motivation behind this study. Nanosized ZrO2/ZrN particles were dispersed into zinc-rich electrolyte using dual anode electrolytic co-deposition (DAECD) route at constant time of deposition and applied current density. The hardness and wear behavior of the coatings were investigated using diamond base microhardness tester and MTR-300 abrasive test rig respectively. The structural properties of the coatings were systematically characterized by X-ray diffractometer (XRD), scanning electron microscopy equipped with energy-dispersive X-ray spectroscopy (SEM-EDS), atomic force microscopy, and metallurgical optical microscopy. The stability of the coatings was examined by isothermal furnace at 400 A degrees C. From the results, it is observed that a good adhere coating with significant improvement in mechanical performance was attained. The hardness characteristic value increases from 34 HVN to 172.4 HVN for Zn-ZrO2-ZrN alloy. The plastic deformation was reduced from 0.2 g/min of the as-received sample to 0.0059 g/min for Zn-ZrO2-ZrN matrix. Hence, this establishes that the stability in the coated sample against the working substrate is attributed to the formation of coherent, uniform structural properties, and good strengthening effect from the multifaceted composite materials.
机译:磨损变形和热不稳定的结果残余应力的挑战是这项研究背后的动机。纳米ZrO2 /的ZrN颗粒使用在沉积恒定时间双重阳极电解共沉积(DAECD)路线分散到富锌电解质和施加的电流密度。分别使用金刚石基显微硬度计和MTR-300磨料试验台的涂层的硬度和磨损特性进行了研究。涂层的结构特性进行了系统的特征在于,X射线衍射装置(XRD),扫描装备有能量色散型X射线光谱法(SEM-EDS)电子显微镜,原子力显微镜,冶金光学显微镜。涂层的稳定性通过在400甲摄氏度从结果的等温炉检查时,观察到了良好的附着与机械性能显著改善涂层实现。从34 HVN硬度特性值增加到172.4 HVN为锌 - 氧化锆 - 的ZrN合金。塑性变形被从作为接收的样品0.2克/分钟降低至0.0059克/分钟的Zn-ZrO2固体-的ZrN矩阵。因此,这个规定,对所述工作基底涂覆的样品中的稳定性归因于形成相干的,均匀的结构性能,以及良好的强化效果从多方面的复合材料。

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