首页> 外文期刊>Macromolecular Research >Surface and Chemical Properties of Surface-Modified UHMWPE Powder and Mechanical and Thermal Properties of Its Impregnated PMMA Bone Cement V.Effect of Silane Coupling Agent on the Surface Modification of UHMWPE Powder
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Surface and Chemical Properties of Surface-Modified UHMWPE Powder and Mechanical and Thermal Properties of Its Impregnated PMMA Bone Cement V.Effect of Silane Coupling Agent on the Surface Modification of UHMWPE Powder

机译:表面改性的UHMWPE粉末的表面和化学性质以及其浸渍的PMMA骨水泥的力学和热学性质V.硅烷偶联剂对UHMWPE粉末的表面改性的影响

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Conventional poly(methyl methacrylate) (PMMA) bone cement has been widely used as an useful biopolymeric material to fix bone using artificial prostheses.However,many patients had to be reoperated,due to the poor mechanical and thermal properties of conventional PMMA bone cement,which are derived from the presence of unreacted MMA liquid,the shrinkage and bubble formation that occur during the curing process of the bone cement,and the high curing temperature (above 100 deg C) which has to be used.In the present study,a composite PMMA bone cement was prepared by impregnating conventional PMMA bone cement with ultra high molecular weight polyethylene (UHMWPE) powder,in order to improve its mechanical and thermal properties.The UHMWPE powder has poor adhesion with other biopolymeric materials due to the inertness of the powder surface.Therefore,the surface of the UHMWPE powder was modified with two kinds of silane coupling agent containing amino groups (3-amino propyltriethoxysilane (TSL 8331~R) and N-(2-aminoethyl)-3-(amino propyltrimethoxysilane) (TSL 8340~R)),in order to improve its bonding strength with the conventional PMMA bone cement.The tensile strengths of the composite PMMA bone cements containing 3 wt% of the UHMWPE powder surface-modified with various ratios of TSL 8331~R and TSL 8340~R were similar or a little higher than that of the conventional PMMA bone cement.However,no significant difference in the tensile strengths between the conventional PMMA bone cement and the composite PMMA bone cements could be found.However,the curing temperatures of the composite PMMA bone cements were significantly decreased.
机译:常规的聚甲基丙烯酸甲酯(PMMA)骨水泥已被广泛用作有用的生物聚合材料,使用人工假体固定骨。但是,由于传统的PMMA骨水泥的机械​​和热性能较差,许多患者不得不再次手术,这是由于未反应的MMA液体的存在,骨水泥固化过程中发生的收缩和气泡形成以及必须使用的高固化温度(高于100摄氏度)而引起的。复合PMMA骨水泥的制备方法是将常规PMMA骨水泥用超高分子量聚乙烯(UHMWPE)粉末浸渍,以改善其机械性能和热性能。由于粉末的惰性,UHMWPE粉末与其他生物聚合物材料的粘合性较差因此,用两种含氨基的硅烷偶联剂(3-氨基丙基三乙氧基硅烷(TSL) 8331〜R)和N-(2-氨基乙基)-3-(氨基丙基三甲氧基硅烷)(TSL 8340〜R)),以提高其与常规PMMA骨水泥的粘结强度.PMMA复合骨水泥的抗张强度含有3 wt%经各种比例的TSL 8331〜R和TSL 8340〜R表面改性的UHMWPE粉末与传统的PMMA骨水泥相近或略高,但两者之间的抗张强度没有显着差异可以找到传统的PMMA骨水泥和复合PMMA骨水泥。但是,复合PMMA骨水泥的固化温度明显降低。

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