首页> 外文期刊>Journal of biomedical materials research, Part A >Contact Stress Assessment of Conventional and Highly Crosslinked Ultra High Molecular Weight Polyethylene Acetabular Liners With Finite Element Analysis and Pressure Sensitive Film
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Contact Stress Assessment of Conventional and Highly Crosslinked Ultra High Molecular Weight Polyethylene Acetabular Liners With Finite Element Analysis and Pressure Sensitive Film

机译:常规和高度交联的超高分子量聚乙烯髋臼衬板的接触应力评估的有限元分析和压敏膜

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摘要

Stress magnitude and distribution of both conventional polyethylene verses a crosslinked polyethylene in the liner of a total hip replacement (THR) were examined using finite element analysis and pressure sensitive film. Both types of polyethylene were assessed against head sizes of 22 and 28 mm with 5-mm thick polyethylene liners and head sizes of 28, 38, and 46 mm with 3-mm thick polyethylene liners. Liners with 5-mm conventional polyethylene represented successful combinations with long track records. Our hypothesis was that although the combination of the large head and the lower modulus of the highly crosslinked polyethylene would lead to lower stresses, the stresses would be excessive if the liner was extremely thin at 3 mm. Von Mises stresses at the articulating surface of the highly crosslinked liners were lower, when compared to conventional polyethylene, in every THR size examined. Specifically, however, the 38- and 46-mm inner diameter (ID) highly crosslinked polyethylene even at the extreme of only 3-mm thick had. lower stresses than the 22-mm ID conventional liner of 5-mm thickness. These data indicate that the use of a large head against highly crosslinked material even at 3-mm thickness results in lower stresses than in an existing conventional 22-mm head and 5-mm thick combination. Obviously, other considerations will influence the minimum thickness to be recommended.
机译:使用有限元分析和压敏膜检查了两种常规聚乙烯相对于全髋关节置换术(THR)衬垫中交联聚乙烯的应力大小和分布。评估了两种类型的聚乙烯在5mm厚的聚乙烯衬里下的头部尺寸分别为22和28 mm,以及在3mm厚的聚乙烯衬里下的头部尺寸分别为28、38和46 mm。具有5毫米常规聚乙烯的衬板代表了具有悠久历史的成功组合。我们的假设是,尽管高交联聚乙烯的大压头和较低模量的组合将导致较低的应力,但是如果衬管在3 mm处非常薄,则应力将过大。与传统的聚乙烯相比,在所检查的每个THR尺寸中,高度交联的衬里的铰接表面处的冯·米塞斯应力都较低。但是,具体地说,即使在厚度仅为3毫米的极端情况下,也具有38毫米和46毫米内径(ID)的高度交联聚乙烯。应力比22毫米内径的5毫米常规衬套低。这些数据表明,即使在厚度为3毫米的情况下,使用大头对高度交联的材料也能产生比现有的常规22毫米头和5毫米厚的组合更低的应力。显然,其他考虑因素将影响建议的最小厚度。

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