Item does not contain fulltextIn the current study, the effects of different ways to implement the complex micro-mechanical behavior of the cement-bone interface on the fatigue failure of the cement mantle were investigated. In an FEA-model of a cemented hip reconstruction the cement-bone interface was modeled and numerically implemented in four different ways: (I) as infinitely stiff, (II) as infinitely strong with a constant stiffness, (III) a mixed-mode failure response with failure in tension and shear, and (IV) realistic mixed mode behavior obtained from micro-FEA models. Case II, III, and IV were analyzed using data from a stiff and a compliant micro-FEA model and their effects on cement failure were analyzed. The data used for Case I...
The mechanical effects of varying the depth of cement penetration in the cement–bone interface were ...
The integrity of the cement-bone interface is vital to the long term stability of cemented arthropla...
The goal of this study was to quantify the micromechanics of the cement–bone interface under tensile...
Fatigue failure of the cement mantle in terms of cement cracking is one of the failure mechanisms th...
Item does not contain fulltextWhile including the cement-bone interface of complete cemented hip rec...
Item does not contain fulltextThe cement-bone interface provides fixation for the cement mantle with...
Item does not contain fulltextThe mechanical effects of varying the depth of cement penetration in t...
The cement–bone interface provides fixation for the cement mantle within the bone. The cement–bone i...
In cemented total hip arthroplasty, the implant needs a mechanically stable cement-bone interface fo...
In order to gain insight into the micro-mechanical behavior of the cement-bone interface, the effect...
While including the cement–bone interface of complete cemented hip reconstructions is crucial to cor...
Item does not contain fulltextDespite the widespread use of cement as a means of fixation of implant...
Contains fulltext : 108389.pdf (publisher's version ) (Open Access)In finite eleme...
Recently, experiments were performed to determine the micromechanical behavior of the cement-bone in...
The mechanical effects of varying the depth of cement penetration in the cement–bone interface were ...
The mechanical effects of varying the depth of cement penetration in the cement–bone interface were ...
The integrity of the cement-bone interface is vital to the long term stability of cemented arthropla...
The goal of this study was to quantify the micromechanics of the cement–bone interface under tensile...
Fatigue failure of the cement mantle in terms of cement cracking is one of the failure mechanisms th...
Item does not contain fulltextWhile including the cement-bone interface of complete cemented hip rec...
Item does not contain fulltextThe cement-bone interface provides fixation for the cement mantle with...
Item does not contain fulltextThe mechanical effects of varying the depth of cement penetration in t...
The cement–bone interface provides fixation for the cement mantle within the bone. The cement–bone i...
In cemented total hip arthroplasty, the implant needs a mechanically stable cement-bone interface fo...
In order to gain insight into the micro-mechanical behavior of the cement-bone interface, the effect...
While including the cement–bone interface of complete cemented hip reconstructions is crucial to cor...
Item does not contain fulltextDespite the widespread use of cement as a means of fixation of implant...
Contains fulltext : 108389.pdf (publisher's version ) (Open Access)In finite eleme...
Recently, experiments were performed to determine the micromechanical behavior of the cement-bone in...
The mechanical effects of varying the depth of cement penetration in the cement–bone interface were ...
The mechanical effects of varying the depth of cement penetration in the cement–bone interface were ...
The integrity of the cement-bone interface is vital to the long term stability of cemented arthropla...
The goal of this study was to quantify the micromechanics of the cement–bone interface under tensile...