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Micro-abrasive wear of semi-crystalline polymers

机译:半结晶聚合物的微磨料磨损

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The abrasive wear of a series of four semi-crystalline polymers was investigated with a micro-scale abrasive wear tester. The wear of four semi-crystalline polymers: PA6.6, PBT, POM and PTFE was measured under specific test conditions. The silicon carbide slurry concentration and the load were varied. The wear coefficients of the polymers were compared with the (mechanical) properties. Scanning Electron Microscopy images showed that high slurry concentrations and low loads lead to three-body wear, while low slurry concentrations and high loads result in predominantly two-body grooving. Depending on the experimental conditions, several relations between wear and polymer properties can be found. Experimental conditions should, therefore, be carefully chosen to avoid different wear regimes while measuring a series of polymers. In order to compare the wear coefficient of polymers and obtain relations between wear and polymer properties one should be aware of the dominant wear mechanism.
机译:用微级磨料磨损测试仪研究了一系列四种半结晶聚合物的研磨磨损。在特定的试验条件下测量四种半结晶聚合物的磨损:PA6.6,PBT,POM和PTFE。碳化硅浆料浓度和负载变化。将聚合物的磨损系数与(机械)性质进行比较。扫描电子显微镜图像显示,高浆料浓度和低负荷导致三体磨损,而低浆料浓度和高负荷主要是两体凹槽。根据实验条件,可以找到磨损和聚合物性能之间的几种关系。因此,应仔细选择实验条件,以避免在测量一系列聚合物的同时避免不同的磨损制度。为了比较聚合物的磨损系数并获得磨损和聚合物性能之间的关系,应该了解主要的磨损机制。

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