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New method for determining in vitro structure stiffness of ceramic acetabular liners under different impact conditions

机译:确定不同冲击条件下陶瓷髋臼内衬体外结构刚度的新方法

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摘要

Increasing both patient mobility and prosthesis life span requires improvements in the range of motion and wear behavior of the liner. With the use of new composite alumina-zirconia ceramic materials, the same stability of the liner can be achieved at lower wall thickness than it is possible with alumina-only materials. The aim of this study was developing a method for determining the in vitro structure stiffness of ceramic acetabular liners against impact stresses. The first trials were performed with a common alumina acetabular liner type (Ceramtec; Biolox forte; diameter 28. mm; thickness 7. mm) and a new type of alumina-zirconia (Ceramtec Biolox delta; same dimensions) liner. The clinically established alumina liner was reproducibly damaged using worst case Separation/subluxation equivalent to one-fourth or half of the head diameter, and an impact load of 15. J. The liners containing the new alumina-zirconia material were not damaged in any of the trials up to an impact load of 20. J and half head diameter offset.
机译:增加患者的活动能力和假体寿命都需要改善衬垫的运动范围和磨损性能。与仅使用氧化铝的材料相比,通过使用新型的复合氧化铝-氧化锆陶瓷材料,可以在较低的壁厚处实现相同的衬里稳定性。这项研究的目的是开发一种确定陶瓷髋臼内衬抗冲击应力的体外结构刚度的方法。最初的试验是使用普通的氧化铝髋臼衬垫(Ceramtec; Biolox forte;直径28. mm;厚度7. mm)和新型氧化铝-氧化锆(Ceramtec Biolox delta;相同尺寸)衬垫进行的。使用最坏情况下的分离/半脱焊相当于头部直径的四分之一或一半,并且冲击载荷为15,可重复使用的临床确定的氧化铝衬里受到损坏。J.含有新型氧化铝-氧化锆材料的衬里在任何情况下均未损坏在20的冲击载荷下进行试验。

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