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Evaluation of nanomechanical and tribological properties of laser surface alloyed boride-nitride-carbide ceramic matrix composite coatings

机译:激光表面合金硼化硼 - 碳化物基质复合涂料的纳米力学和摩擦学性能评价

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Interesting mechanical and tribological properties, favorable for both ambient and high temperature applications, can be gathered by composites consisting of multiple reinforcing phases. The present study focuses on the characterization of ceramic matrix composite coatings with in-situ reinforcements, developed through combination of laser triggered chemical reaction and subsequent laser treatment. A preplaced precursor mixture of TiO2, SiO2, hBN and graphite powders in stoichiometric proportions is used for the chemical reaction activated by a high power laser beam to produce coatings containing TiB2, TiN, SiC and hBN. Minor modifications in the constituents of the preplaced precursor mixture helped in developing coatings different in terms of the amount of hBN and SiC present in it. This compositional variation brought significant changes in mechanical and tribological properties of the coatings. X-ray diffraction (XRD) and high resolution transmission electron microscopy (FIRTEM) are used to confirm the presence of all the reaction products in the CMC coatings developed. Evaluation of nanomechanical properties and studies on the tribological properties of these coatings are performed thoroughly. Reduced modulus (E-r) and nanohardness (H) of the composite coatings deposited on AISI 1025 steel have been measured from load displacement curves. The stress-strain curves of composite coatings help in characterizing its damage tolerance and determining design stresses to find suitability to any application. Presence of hBN in composite coating causes reduction in coefficient of friction. Coatings formed with SiC in precursor helps in improving the specific wear rate. Top surface morphology and tribological properties of these coatings, after they are exposed to high temperature, are also explored.
机译:有趣的机械和摩擦学性质,有利于环境和高温应用,可以通过复合材料来收集,由多种增强阶段组成。本研究专注于通过激光触发的化学反应和随后的激光处理的组合开发的陶瓷基质复合涂层的表征。在化学计量比例中的TiO 2,SiO 2,HBN和石墨粉末的预复制前体混合物用于由高功率激光束激活的化学反应,以产生含有TIB2,锡,SiC和HBN的涂层。在预复制的前体混合物的成分中的微细性修饰有助于在其中存在的HBN和SiC的量而不同的显影涂层。该组成变异带来了涂层的机械和摩擦学性质的显着变化。 X射线衍射(XRD)和高分辨率透射电子显微镜(FIRTEM)用于确认开发的CMC涂层中所有反应产物的存在。彻底进行纳米力学性质和研究这些涂层的摩擦学性质的评价。沉积在AISI 1025钢上的复合涂层的减少量(E-R)和纳米型(H)已从负载位移曲线测量。复合涂层的应力 - 应变曲线有助于表征其损坏的耐受性和确定设计应力,以找到适用性的适用性。复合涂层中HBN的存在导致摩擦系数降低。用SiC在前体形成的涂层有助于提高特定的磨损率。还探讨了这些涂层的顶部表面形态和摩擦学特性,也探讨了高温后。

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