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Investigation on the microstructure and creep behavior of laser remelted thermal barrier coating

机译:激光再熔断热阻挡涂层微观结构和蠕变行为的研究

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摘要

Laser surface modification of the thermal barrier coating was investigated with the aim of increasing creep resistance. Yttria-stabilized-zirconia (YSZ) with a CoNiCrAlY bond coat was deposited by air plasma spraying on equiaxed Ti-6Al-4V substrates. Analysis was carried out comparing uncoated samples with as-sprayed and laser remelted ones. A cross section and detailed characterization of coating surface was carried out by scanning electron microscopy and X-ray diffraction techniques. Mechanical properties in terms of microhardness and creep resistance were evaluated. Constant load creep tests were conducted at stress levels of 125 to 319 MPa at 500 degrees C and 600 degrees C. A dense ceramic layer of thickness about 40 mu m was formed by laser remelted treatment and its microhardness surface was higher than the other layers. As-sprayed YSZ had higher creep resistance than other samples. Analysis of creep behavior showed that the steady-state creep rate of laser remelted samples had about 42% reduction in 600 degrees C condition, evidencing a higher creep resistance than uncoated material. SEM images revealed a ductile fracture with presence of equiaxed dimples.
机译:研究了热阻挡涂层的激光表面改性,目的是提高蠕变性。通过在等轴Ti-6Al-4V底板上喷涂具有对皮式粘结涂层的氧化钇稳定 - 氧化锆(YSZ)。进行分析,将未涂覆的样品与以喷涂和激光重熔的混合物进行比较。通过扫描电子显微镜和X射线衍射技术进行横截面和涂层表面的详细表征。评价微硬度和蠕变抗性方面的机械性能。在500℃和600℃下以125至319MPa的应力水平进行恒定载荷蠕变试验。通过激光重熔处理形成约40μm的厚度致密陶瓷层,其微硬度表面高于其他层。喷雾的YSZ具有比其他样品更高的抗蠕变性。蠕变行为分析表明,激光重熔样品的稳态蠕变率在600摄氏度下降约42%,比未涂层材料相比,较高的抗蠕变性。 SEM图像显示延性骨折,存在等式凹坑。

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