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Evaluation of residual stress in microplasma sprayed hydroxyapatite coating by nanoindentation

机译:通过纳米茚满的分析基因羟基磷灰石涂层残留应力的评价

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The evaluation of residual stress in bioactive hydroxyapatite (HAP) ceramic coating by nanoindentation technique has been attempted successfully for the very first time ever in the present work. The HAP coatings were deposited on surgical grade 316 L austenitic stainless steel and Ti-6Al-4V substrates by microplasma spraying (MIPS) process. The coatings had Ca/P ratio of 1.67 and were ~8O-9O% crystalline. The results showed a residual comprcssive stress of ~22 MPa for the MIPS-HAP coatings on the SS316L substrates. For the coatings deposited on the Ti-6Al-4V substrates, however, a residual tensile stress of ~ 11 MPa was estimated. These data matched well with those obtained by XRD based technique. Thus, favorable data comparison provides further support to the efficacy of the nanoindentation based technique utilized in the present work for residual stress estimations.
机译:通过纳米狭窄技术对生物活性羟基磷灰石(HAP)陶瓷涂层的残余应激的评价已经成功地在本作中的第一次成功尝试。 通过显微喷涂(MIPS)工艺沉积在手术级316L奥氏体不锈钢和Ti-6Al-4V底板上的HAP涂层。 涂层的Ca / P比为1.67,〜80-90%结晶。 结果表明,SS316L衬底上的MIPS-HAP涂层〜22MPa的残留COLCSSIVE应力。 然而,对于沉积在Ti-6Al-4V基底上的涂层,估计〜11MPa的残余拉应力。 这些数据与基于XRD技术获得的数据良好匹配。 因此,有利的数据比较提供了进一步支持基于纳米indentation的技术在本作所使用的残余应力估计的功效。

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