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Ultra high molecular weight polyethylene doped with iron through high energy mechanical alloying

机译:超高分子量聚乙烯掺杂铁通过高能量机械合金化

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Doping polymers with metallic materials can improve significantly its use. Ultra high molecular weight polyethylene is known for its high resistance to abrasion and impact, and also for its friction coefficient, which is significantly lower than that of commercial steel and most polymeric materials. Therefore, this material presents high industrial demand despite its processing difficulty due to its high viscosity. One kind of polymer processing which has been widely used recently is the high energy mechanical alloying. This method provokes significant changes in the material, such as crystalline structure transformation, amorphization, formation of metastable phases, and nanostructuring, among others. In order to investigate the influence of iron dopant in structural characteristics of polymeric matrix, ultra high molecular weight polyethylene were doped with low concentrations (between 0.1 at.% and 1 at.%) of iron using the method of high energy mechanical alloying. The samples composition was characterized by X-Ray Diffraction M??ssbauer Spectroscopy. A theoretical molecular modeling was carried out to simulate the iron presence in polymeric cell, which is in good agreement with the experimental results. Therefore, there is evidence that part of the iron promotes a crossed bond between the polymeric chains.
机译:具有金属材料的掺杂聚合物可以显着改善其使用。超高分子量聚乙烯已知其高耐磨损和冲击,以及其摩擦系数,其显着低于商业钢和最具聚合物材料的摩擦系数。因此,尽管其高粘度,但这种材料仍然具有高工业需求。最近被广泛使用的一种聚合物加工是高能量机械合金化。该方法引起了材料的显着变化,例如结晶结构转化,亚型阶段的非晶化,形成,以及纳米结构。为了研究铁掺杂剂在聚合物基质的结构特征中的影响,使用高能量机械合金化方法掺杂具有低浓度(0.1at%和1.%)铁的超高分子量聚乙烯。样品组合物的特征在于X射线衍射M 2 Ssbauer光谱。进行了理论分子建模以模拟聚合物细胞中的铁存在,这与实验结果很好。因此,有证据表明,部分铁促进了聚合物链之间的交叉键。

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