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首页> 外文期刊>International Journal of Surface Science and Engineering >Effect of process parameters on the microstructure, hardness and wear resistance properties of Zn-Sn-Ti coatings on AISI 1015 steel: laser alloying technique
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Effect of process parameters on the microstructure, hardness and wear resistance properties of Zn-Sn-Ti coatings on AISI 1015 steel: laser alloying technique

机译:工艺参数对AISI 1015钢锌-Sn-Ti涂层微观结构,硬度和耐磨性的影响:激光合金技术

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摘要

The deterioration of materials during industrial application poses a serious threat to the materials structural integrity. A material's susceptibility to wear and surface damage can be reduced by alteration of its surface chemistry, morphology and crystal structure which plays an important role in optimising a material's performance for a given application. The aim of the research was to investigate the enhancement in the microstructure and wear property of Zn-Sn-Ti ternary coatings on AISI 1015 steel by laser alloying technique using Ytterbium laser system (YLS). A laser power of 750-900 W, scanning speeds of 0.6 and 0.8 m/min, and alloy compositions of 25Zn-25Sn-50Ti and 20Zn-20Sn-60Ti were used in this study. At optimum composition of 20Zn-20Sn-60Ti and speed of 0.8 m/min, there was enhancement of 24% in wear resistance performance which was attributed to metastable intermetallic phases. The coatings were free of cracks with homogeneous and refined microstructures and good adhesion to the substrate. The response surface model (RSM) used authenticates reasonably with the experimental results.
机译:工业应用过程中材料的恶化对材料结构完整性构成严重威胁。通过改变其表面化学,形态学和晶体结构,可以减少材料对磨损和表面损伤的敏感性,这在优化了给定应用的材料的性能方面起着重要作用。该研究的目的是研究使用YTTerbium激光系统(YLS)激光合金技术通过激光合金化技术来研究AISI 1015钢上Zn-Sn-Ti三元涂层的微观结构和磨损性能。激光功率为750-900W,扫描速度为0.6和0.8米/分钟,并在本研究中使用25℃-25sn-50Ti和20zn-20sn-60ti的合金组合物。在20zn-20sn-60Ti的最佳组合物中,速度为0.8米/分钟,耐磨性性能的增强率为24%,归因于亚稳态金属间相。涂层不含均匀和精细的微观结构和对基材的粘附性良好的粘附性。响应表面模型(RSM)使用实验结果合理地进行认证。

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