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Tuning the Superstructure of Ultrahigh-Molecular-Weight Polyethylene/Low-Molecular-Weight Polyethylene Blend for Artificial Joint Application

机译:调整用于人工关节的超高分子量聚乙烯/低分子量聚乙烯共混物的上部结构

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摘要

An easy approach was reported to achieve high mechanical properties of ultrahigh-molecular-weight polyethylene (UHMWPE)-based polyethylene (PE) blend for artificial joint application without the sacrifice of the original excellent wear and fatigue behavior of UHMWPE. The PE blend with desirable fluidity was obtained by melt mixing UHMWPE and low molecular weight polyethylene (LMWPE), and then was processed by a modified injection molding technology-oscillatory shear injection molding (OSIM). Morphological observation of the OSIM PE blend showed LMWPE contained well-defined interlocking shish-kebab self-reinforced superstructure. Addition of a small amount of long chain polyethylene (2 wt %) to LMWPE greatly induced formation of rich shish-kebabs. The ultimate tensile strength considerably increased from 27.6 MPa for conventional compression molded UHMWPE up to 78.4 MPa for OSIM PE blend along the flow direction and up to 33.S MPa in its transverse direction. The impact strength of OSIM PE blend was increased by 46% and 7% for OSIM PE blend in the direction parallel and vertical to the shear flow, respectively. Wear and fatigue resistance were comparable to conventional compression molded UHMWPE. The superb performance of the OSIM PE blend was originated from formation of rich interlocking shish-kebab superstructure while maintaining unique properties of UHMWPE. The present results suggested the OSIM PE blend has high potential for artificial joint application.
机译:据报道,一种简单的方法可实现用于人工关节应用的超高分子量聚乙烯(UHMWPE)基聚乙烯(PE)共混物的高机械性能,而不会牺牲UHMWPE原有的优异磨损和疲劳性能。通过将UHMWPE和低分子量聚乙烯(LMWPE)熔融混合获得具有所需流动性的PE共混物,然后通过改进的注射成型技术-振荡剪切注射成型(OSIM)进行加工。 OSIM PE共混物的形态学观察表明,LMWPE包含定义良好的连锁烤肉串自增强上部结构。向LMWPE中添加少量的长链聚乙烯(2 wt%)极大地诱导了丰富的烤肉串的形成。极限抗拉强度从传统的压缩成型UHMWPE的27.6 MPa沿流动方向显着提高到OSIM PE混合物的78.4 MPa沿流动方向,最高达到33.S MPa。在与剪切流平行和垂直的方向上,OSIM PE共混物的冲击强度分别提高了46%和7%。耐磨性和抗疲劳性可与常规压铸UHMWPE相媲美。 OSIM PE共混物的卓越性能源自形成丰富的连锁烤肉串上部结构,同时保持UHMWPE的独特性能。目前的结果表明,OSIM PE共混物具有很高的人工联合应用潜力。

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