首页> 外文会议>International Thermal Spray Conference, May 28-30, 2001, Singapore >Characterization and Mechanical Properties of Flame Sprayed Hydroxyapatite/Polymer Composite Coatings
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Characterization and Mechanical Properties of Flame Sprayed Hydroxyapatite/Polymer Composite Coatings

机译:火焰喷涂羟基磷灰石/聚合物复合涂层的表征与力学性能

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Hydroxyapatite/polymer composite coatings of different volume ratios were produced using a Plastic Flame Spray (PFS) system. The intent of this processing is to obtain a coating with an optimal combination of biological and mechanical properties of these two materials for skeletal implants. The composite coatings were produced with a mechanical blend of EMMA and hydroxyapatite powder from a fluidized bed powder feeder. Characterization was conducted by scanning electron microscopy on the surface I morphology, polished cross-sections and fracture surface I morphology of the coatings. The bioactivity of the coatings was evaluated with a calcium ion meter, and the stress-strain behavior was investigated by tensile testing. The biological and mechanical properties were found to be related to the volume and the distribution of the hydroxyapatite in the polymer matrix.
机译:使用塑料火焰喷涂(PFS)系统生产了不同体积比的羟基磷灰石/聚合物复合涂层。该处理的目的是获得具有这两种材料的骨骼植入物的生物学和机械性能的最佳组合的涂层。使用EMMA和羟基磷灰石粉末的机械混合物由流化床粉末进料器生产复合涂层。通过扫描电子显微镜对涂层的表面I形貌,抛光的横截面和断裂表面I形貌进行表征。用钙离子计评估涂层的生物活性,并通过拉伸试验研究应力-应变行为。发现生物学和机械性质与聚合物基体中羟基磷灰石的体积和分布有关。

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