Acrylic bone cement is used to fixate hip replacement implants into the bone. Creep and fatigue failure of the cement promote failure of the implant. For the purpose of implant testing, we derived a finite element algorithm that simulates creep and damage accumulation in acrylic bone cement. The simulation combines a Maxwell creep model, with a 3-D continuum damage mechanics approach modeling anisotropic damage accumulation. The technical details of the simulation are described. In a first application tensile fatigue tests on tubular cement specimens are simulated. The creep elongation and fatigue life of the specimens, as predicted by the simulations, are successfully correlated to the experimental results. In a second application, the sim...
It has been suggested that the endurance of cemented femoral reconstructions in total hip arthroplas...
Despite the success of cemented total hip replacement (THR), high failure rates are occasionally rep...
The goal of this study was to quantify the micromechanics of the cement–bone interface under tensile...
Acrylic bone cement is used to fixate hip replacement implants into the bone. Creep and fatigue fail...
We present a method to simulate acrylic bone cement damage accumulation around implants. The method ...
We developed a finite element model to preclinically test cemented hip implants for damage accumulat...
Rigorous preclinical testing of cemented hip prostheses against the damage accumulation failure scen...
One possible loosening mechanism of the femoral component in total hip replacement is fatigue cracki...
Peak stress levels predicted in finite element analysis (FEA) usually depend on mesh density, due to...
It has been suggested that the endurance of cemented femoral reconstructions in total hip arthroplas...
Peak stress levels predicted in finite element analysis (FEA) usually depend on mesh density, due to...
Failure of the cement mantle has been identified as a possible mode of failure of the implanted femu...
It has been suggested that the endurance of cemented femoral reconstructions in total hip arthroplas...
Despite the success of cemented total hip replacement (THR), high failure rates are occasionally rep...
The goal of this study was to quantify the micromechanics of the cement–bone interface under tensile...
Acrylic bone cement is used to fixate hip replacement implants into the bone. Creep and fatigue fail...
We present a method to simulate acrylic bone cement damage accumulation around implants. The method ...
We developed a finite element model to preclinically test cemented hip implants for damage accumulat...
Rigorous preclinical testing of cemented hip prostheses against the damage accumulation failure scen...
One possible loosening mechanism of the femoral component in total hip replacement is fatigue cracki...
Peak stress levels predicted in finite element analysis (FEA) usually depend on mesh density, due to...
It has been suggested that the endurance of cemented femoral reconstructions in total hip arthroplas...
Peak stress levels predicted in finite element analysis (FEA) usually depend on mesh density, due to...
Failure of the cement mantle has been identified as a possible mode of failure of the implanted femu...
It has been suggested that the endurance of cemented femoral reconstructions in total hip arthroplas...
Despite the success of cemented total hip replacement (THR), high failure rates are occasionally rep...
The goal of this study was to quantify the micromechanics of the cement–bone interface under tensile...