首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Material properties of ultra-high molecular weight polyethylene: Comparison of tension, compression, nanomechanics and microstructure across clinical formulations
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Material properties of ultra-high molecular weight polyethylene: Comparison of tension, compression, nanomechanics and microstructure across clinical formulations

机译:超高分子量聚乙烯的材料特性:临床制剂张力,压缩,纳米力学和微观结构的比较

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摘要

This is the first study to simultaneously measure material properties in tension, compression, nanoindentation as well as microstructure (crystallinity and lamellar level properties) across a wide variety of clinically relevant ultra-high molecular weight polyethylene (UHMWPE) formulations. Methodologies for the measurement of UHMWPE mechanical properties-namely elastic modulus, yield stress, yield strain, ultimate strength, energetic toughness, Poisson's ratio, hardness and constitutive variables-are evaluated. Engineering stress-strain behavior is compared to true stress-strain behavior for UHMWPE across a range of cross-linking and antioxidant chemistry. The tensile mechanical properties and constitutive behavior of UHMWPE are affected by resin type, antioxidant source and degree of cross-linking. Poisson's ratio is shown to be affected by resin type, antioxidant addition, and cross-linking dosage. Relationships between bulk mechanical properties from different measurement methodologies as well as microstructure are analyzed across all material formulations using Spearman rank correlation coefficients. Modulus and yield strength correlate in both tension and compression. Similarly, tensile and compressive properties including modulus and yield strength correlate strongly with crystallinity (X-c) and lamellar thickness (D). This work has broad application and provides a basis for interpreting the mechanical behavior of UHMWPE used in orthopedic implants.
机译:这是第一研究在各种临床相关的超高分子量聚乙烯(UHMWPE)制剂中同时测量张力,压缩,纳米茚,纳米狭窄以及微观度(结晶度和层状物质)中的材料特性。评估了UHMWPE机械性能测量的方法,即弹性模量,屈服应力,产量应变,最终强度,能量韧性,泊松比,硬度和组成型变量 - 得到了效果。将工程应力 - 应变行为与在一系列交联和抗氧化化学中的UHMWPE的真正应力 - 应变行为进行比较。 UHMWPE的拉伸力学性能和组成型行为受树脂类型,抗氧化源和交联度的影响。泊松的比率显示受树脂类型,抗氧化添加和交联剂量的影响。使用Spearman等级相关系数在所有材料配方中分析了来自不同测量方法的批量机械性能与微观结构之间的关系。张力和压缩中的模量和屈服强度相关。类似地,包括模量和屈服强度的拉伸和压缩性能与结晶度(X-C)和层状厚度(D)强烈地相关。这项工作具有广泛的应用,并为解释矫形植入物中使用的UHMWPE的力学行为提供了基础。

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