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Studies on thermal shock resistance of TiN and TiAlN coatings under pulsed laser irradiation

机译:脉冲激光辐照下TiN和TiAlN涂层的耐热冲击性能研究

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TiN and TiAIN nitride coatings were deposited on WC/Co cemented carbide by cathode arc evaporation technique. The microstructural and fundamental properties of these nitride coatings were examined. Thermal shock tests were carried out on these nitride coatings by laser irradiation, and thermal shock behaviours were examined by scanning electron microscopy. Results showed that the major factors causing failure of these nitride coatings after laser irradiation were thermal stress and oxidation. The formation of cracks on the irradiated coating surface is attributed to the shrinkage and relaxation of thermal stresses during laser irradiation. The critical power density at which the coating is fractured is 20 × 10~8 W m~(-2) for the TiN coating and 45 × 10~8 W m~(-2) for the TiAIN coating. The coatings with Al (TiAIN) exhibited higher thermal shock resistance over the one without Al (TiN). Analysis of the repeated laser irradiated coating surfaces demonstrated that the TiN coating was composed mainly of crack networks, spallation and bulges, whereas the TiAIN coating experienced less damage than the TiN coating and showed a lot of cavities on the coating surface.
机译:TiN和TiAIN氮化物涂层通过阴极电弧蒸发技术沉积在WC / Co硬质合金上。检查了这些氮化物涂层的微观结构和基本性能。通过激光辐照对这些氮化物涂层进行热冲击试验,并通过扫描电子显微镜检查热冲击行为。结果表明,导致这些氮化物涂层在激光照射后失效的主要因素是热应力和氧化。在被辐照的涂层表面上形成裂纹的原因是激光辐照期间热应力的收缩和松弛。对于TiN涂层,涂层断裂的临界功率密度为20×10〜8 W m〜(-2),对于TiAIN涂层,断裂的临界功率密度为45×10〜8 W m〜(-2)。与不含Al(TiN)的涂层相比,含Al(TiAIN)的涂层具有更高的抗热震性。对重复的激光辐照涂层表面进行的分析表明,TiN涂层主要由裂纹网络,散裂和凸起组成,而TiAIN涂层的损坏程度小于TiN涂层,并且在涂层表面上显示出许多空洞。

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