Influence of loading rate on strength characteristics of ultra high molecular weight polyethylene (UHMWPE)

Author:

Demiyanushko I V,Nadezhdin V S,Gruzdev A S,Titov O V

Abstract

Abstract Modern digital modeling of dynamic processes is impossible without verified models of materials. However, when creating a material model, it is necessary to consider the possibility of changing properties depending on the loading rate. In this paper we consider the influence of loading rate on the strength characteristics of modern polymer material – ultrahigh molecular weight polyethylene (UHMWPE).

Publisher

IOP Publishing

Subject

General Medicine

Reference13 articles.

1. Application of nonlinear-dynamics numerical methods for solving problems related to vehicle collisions with road guardrails;Demiyanushko,2017

2. Computational simulation and experimental study of cable for cable barriers;Demiyanushko;Mechanisms and Machine Science,2019

3. Study of mechanical properties of UHMWPE composites;Iakhin,2017

4. Structure, tribological and mechanical properties of extruded polymer-polymer UHMWPE composites printing;Panin;Friction and wear,2019

5. Influence of Laser Power on Tensile Properties and Material Characteristics of Laser-Sintered UHMWPE;Khalil;Manufacturing Rev.,2016

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