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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >The Influence of Plastic Deformation Performed Before and After Electron Beam Irradiation on Mechanical Properties and Wear of UHMWPE
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The Influence of Plastic Deformation Performed Before and After Electron Beam Irradiation on Mechanical Properties and Wear of UHMWPE

机译:电子束辐照前后的塑性变形对UHMWPE力学性能和磨损的影响

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摘要

The paper compares the modification methods of polymers GUR 1050 and GUR 1020 by means of plastic deformation before (ON) and after (NO) irradiation with an electron beam (N). Evaluation of the effectiveness of the modification methods applied was carried out by means of micromechanical examinations and tribological tests on T-01 and T-05 testers (polymer/Vitalium alloy). The results of micromechanical, sclerometric and tribological tests indicate unequivocally the effectiveness of the modifications applied, as compared to the polymer modification through irradiation with an electron beam only. A decrease in hardness and elasticity modulus was found for materials subjected to the ON and NO technology as compared to N, while maintaining the growing trend of these values along with the applied radiation dose. There was also noted a large increase of the wear resistance coefficient, Wβ, and an increase of the mjcroploughing component's share in the wear mechanism p, which had a direct influence on the reduction of the linear wear by 2.5-3 times and a nearly twofold decrease of the mass wear. The surface subjected to friction processes became smoother and free of lamella fragments which were visible for the base material not subjected to any modifications. This was documented with the observations performed on a scanning microscope and in the stereometric examination of the surface.
机译:本文通过用电子束(N)辐照(ON)之前和(NO)之后的塑性变形,比较了聚合物GUR 1050和GUR 1020的改性方法。通过对T-01和T-05测试仪(聚合物/维他命合金)进行微机械检查和摩擦学测试,对所采用的改性方法的有效性进行了评估。与仅通过电子束辐照进行的聚合物改性相比,微机械,硬度和摩擦学测试的结果明确表明了改性的有效性。发现与N相比,采用ON和NO技术的材料的硬度和弹性模量有所降低,同时保持了这些值和所施加的辐射剂量的增长趋势。还注意到,耐磨性系数Wβ大大增加,并且磨损机理p中微耕作部件的份额增加,这直接影响了线性磨损的减少2.5-3倍和几乎两倍。减少整体磨损。经过摩擦处理的表面变得更光滑,并且没有薄片碎片,这对于未经任何改性的基材是可见的。这是通过在扫描显微镜上进行的观察以及表面的立体检查记录的。

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