首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Effect of counterface roughness on the wear of conventional and crosslinked ultrahigh molecular weight polyethylene studied with a multi-directional motion pin-on-disk device
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Effect of counterface roughness on the wear of conventional and crosslinked ultrahigh molecular weight polyethylene studied with a multi-directional motion pin-on-disk device

机译:用多向运动销钉盘式装置研究端面粗糙度对常规交联超高分子量聚乙烯磨损的影响

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摘要

The effect of counterface roughness on the wear of conventional #nu#-sterilized, and electron-beam-crosslinked ultrahigh molecular weight polyethylene was studied with a circularly translating pin-on-disk device. The counterfaces, CoCr disks, were either polished, or roughened so that they represented the type of roughening and the range of surface roughness values (R)_a=0.014-0.24 #mu# m) observed in ex-planted femoral heads of total hip prostheses. The lubricant was diluted calf serum, and the test length 3 million cycles. A total of 24 tests were done. With both types of polyethylene, there was a strong correlation between R_a and wear factor k. The power equations were k=5.87*10~(-5) (R_a)~(0.91) for conventional polyethylene (R~2=0.94), and k=7.87*10~(-5)(R_2)~(2.49) for crosslinked polyethylene (R~2=0.82). Crosslinking improved wear resistance significantly. The wear of crosslinked polyethylene against the roughest counterfaces was lower than the wear of conventional polyethylene against the polished counterfaces. Against rough counterfaces, the wear of crosslinked polyethylene was an order of magnitude lower than that of conventional polyethylene. On the crosslinked polyethylene pins that were tested against polished counterfaces, remains of original machining marks were still visible after the test. The average size of wear particles produced by both types of polyethylene against rough counterfaces was similar, 0.4 #mu# m, whereas that produced by conventional and crosslinked polyethylene against polished counterfaces was significantly smaller, 0.2 and 0.1 #mu# m, respectively.
机译:使用圆形平移销钉在磁盘上的装置研究了端面粗糙度对常规#nu#灭菌和电子束交联的超高分子量聚乙烯的磨损的影响。对面CoCr圆盘经过抛光或粗糙化处理,从而代表了在全髋关节离体股骨头中观察到的粗糙化类型和表面粗糙度值范围(R)_a = 0.014-0.24#mu#m假肢。润滑剂是稀释的小牛血清,测试长度为300万次循环。总共进行了24个测试。对于两种类型的聚乙烯,R_a和磨损系数k之间都有很强的相关性。常规聚乙烯(R〜2 = 0.94)的幂方程为k = 5.87 * 10〜(-5)(R_a)〜(0.91),k = 7.87 * 10〜(-5)(R_2)〜(2.49)对于交联聚乙烯(R〜2 = 0.82)。交联显着改善了耐磨性。交联聚乙烯在最粗糙表面上的磨损低于传统聚乙烯在抛光表面上的磨损。在粗糙的表面上,交联聚乙烯的磨损比常规聚乙烯低一个数量级。在经过抛光的相对面测试的交联聚乙烯销上,测试后仍可见原始机加工痕迹。两种类型的聚乙烯对粗糙的对立面产生的磨损颗粒的平均尺寸相似,为0.4#μm,而常规和交联聚乙烯对抛光的对立面产生的磨损颗粒的平均尺寸分​​别显着较小,分别为0.2和0.1μm。

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