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Mechanical Performance of Polyethylene Joints Based on Nanocomposites Doped with Titanium Dioxide

机译:基于纳米复合材料掺杂二氧化钛的聚乙烯关节力学性能

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Two sheets of polyethylene (biomedical type) are welded by a diode laser; one of the two layers is doped with titanium dioxide nanoparticles at different concentrations in order to enhance the absorption coefficient at the laser wavelength. The doped nanocomposite plastic has the typical white color of pure polyethylene. Single-lap geometries are stressed by means of mechanical static lap shear and hardness tests in order to check the change induced by laser energy absorption and choose the best filler amount. These polymeric joints can be useful in biomedical field for the special features of the ultra-high-molecular-weight polyethylene and for the particular advantages of high sealing precision required in medical devices.
机译:两张聚乙烯(生物医学型)由二极管激光焊接;两层中的一个以不同浓度的二氧化钛纳米颗粒掺杂,以增强激光波长处的吸收系数。掺杂的纳米复合塑料具有典型的纯聚乙烯的白色白色。通过机械静态剪切和硬度测试来强调单圈几何形状,以检查激光能量吸收诱导的变化,并选择最佳填充剂。这些聚合物接头可用于用于超高分子重量聚乙烯的特殊特征的生物医学领域,以及医疗器械所需的高密封精度的特殊优点。

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