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Mechanical testing of electrophoretically deposited hydroxyapatite

机译:电泳沉积羟基磷灰石的机械测试

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摘要

In the present study, hydroxyapatite (HAp) was electrophoretically deposited on Ti, Ti6Al4V and 316L stainless steel substrates. The effects of sintering temperatures ranging from 875 deg C to 1000 deg C on the bonding strength between the HAp coating and metal substrates were investigated. In general, sintering causes decomposition of the HAp coating even at a temperature of 875 deg C. In the present study, dual HAp coatings were prepared. The use of dual HAp coatings enabled decomposition to be confined to the "undercoat", while the surface coating remained decomposition free. The bonding strength between the HAp coating and the metal substrates was assessed by shear strength testing, according to ASTM F1044-87. It was found that the coating on stainless steel sintered at 925 deg C gave the best result among the three substrates, 25 MPa, of adhesive strength. The high adhesive strength of stainless steel was mainly due to the high thermal expansion coefficient of this metal. This resulted in residual compressive stresses in the coating, whereas the low thermal expansion coefficients of Ti and Ti6Al4V produced residual tensile stresses. The tensile stress in the coating over Ti and Ti6Al4V substrates caused the coatings to buckle and crack, thereby greatly decreasing their bonding strengths.
机译:在本研究中,羟基磷灰石(HAp)电泳沉积在Ti,Ti6Al4V和316L不锈钢基底上。研究了875℃至1000℃范围内的烧结温度对HAp涂层与金属基材之间结合强度的影响。通常,即使在875摄氏度的温度下,烧结也会导致HAp涂层分解。在本研究中,制备了双HAp涂层。使用双重HAp涂层可以将分解限制在“底涂层”内,而表面涂层则保持不分解。根据ASTM F1044-87,通过剪切强度测试评估HAp涂层与金属基材之间的粘合强度。结果发现,在25 MPa的三种基材中,以925℃烧结的不锈钢涂层具有最佳的粘合强度。不锈钢的高粘合强度主要归因于这种金属的高热膨胀系数。这导致了涂层中的残余压缩应力,而Ti和Ti6Al4V的低热膨胀系数产生了残余拉伸应力。 Ti和Ti6Al4V基材上的涂层中的拉伸应力导致涂层弯曲和破裂,从而大大降低了它们的结合强度。

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