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首页> 外文期刊>Journal of Materials Science. Materials in Medicine >Coupling of HDPE/hydroxyapatite composites by silane-based methodologies
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Coupling of HDPE/hydroxyapatite composites by silane-based methodologies

机译:HDPE /羟基磷灰石复合材料的偶联基于硅烷的方法

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Several coupling treatments based on silane chemicals were investigated for the development of high density (HDPE)/hydroxyapatite (HA) composites. Two HA powders, sintered HA (HAs) and non sintered HA (HAns), were studied in combination with five silanes, namely γ-methacryloxy propyltrimethoxy silane (MEMO), 3-(2-aminoethyl)aminopropyltrimethoxy silane (DAMO), vinyltrimethoxy silane (VTMO), 3-aminopropyltriethoxy silane (AMEO) and trimethoxypropyl silane (PTMO). The HA particles were treated by a dipping in method or by spraying with silane solutions. After drying, the treated powders were compounded with HDPE or HDPE with acrylic acid and/or organic peroxide and subsequently compression molded. The tensile test specimens obtained from the molded plates were tensile tested and their fracture surfaces were observed by scanning electron microscopy (SEM). For the sintered HA (HAs) composites, the most effective coupling treatments concerning stiffness are those based on MEMO and AMEO. The low influence of these coupling procedures on strength is believed to be associated to the low volume fraction and the relatively smooth surface of the used HA particles. For the non-sintered HA (HAns) composites, it was possible to improve significantly both the stiffness and the strength. Amino silanes demonstrated to be highly efficient concerning strength enhancement. The higher effectiveness of the coupling treatments for HAns filled composites is attributed to their higher particle surface area, smaller particle size distribution and expected higher chemical reactivity. For both cases, the improvement in mechanical performance after the coupling treatment is consistent with the enhancement in interfacial adhesion observed by SEM.
机译:为了开发高密度(HDPE)/羟基磷灰石(HA)复合材料,研究了几种基于硅烷化学物质的偶联处理。结合5种硅烷(γ-甲基丙烯酰氧基丙基三甲氧基硅烷(MEMO),3-(2-氨基乙基)氨基丙基三甲氧基硅烷(DAMO),乙烯基三甲氧基硅烷)与五种硅烷一起研究了两种HA粉末,即烧结HA(HAs)和非烧结HA(HAns)。 (VTMO),3-氨基丙基三乙氧基硅烷(AMEO)和三甲氧基丙基硅烷(PTMO)。通过浸入方法或通过用硅烷溶液喷雾来处理HA颗粒。干燥后,将处理过的粉末与HDPE或HDPE与丙烯酸和/或有机过氧化物混合,然后压模。对由模制板获得的拉伸试样进行拉伸测试,并通过扫描电子显微镜(SEM)观察其断裂表面。对于烧结的HA(HAs)复合材料,关于刚度最有效的耦合处理是基于MEMO和AMEO的那些。这些偶联过程对强度的低影响被认为与所用HA颗粒的低体积分数和相对光滑的表面有关。对于未烧结的HA(HAns)复合材料,可以显着提高刚度和强度。氨基硅烷在强度提高方面被证明是高效的。 HAns填充复合材料偶联处理的较高有效性归因于其较高的颗粒表面积,较小的粒度分布和预期的较高化学反应性。对于这两种情况,偶联处理后机械性能的改善与SEM观察到的界面粘附性的提高是一致的。

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