首页> 外文期刊>Journal of Biomechanics >The influence of component design, bearing clearance and axial load on the squeaking characteristics of ceramic hip articulations.
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The influence of component design, bearing clearance and axial load on the squeaking characteristics of ceramic hip articulations.

机译:零件设计,轴承游隙和轴向载荷对陶瓷髋关节吱吱作响特性的影响。

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Squeaking of hip replacements with ceramic-on-ceramic bearings has put the use of this material into question despite its superior wear behavior. Squeaking has been related to implant design. The purpose of this study was to determine the influence of particular acetabular cup and femoral stem designs on the incidence of squeaking and its characteristics. The dynamic behavior of the stem, head and stem assembled with head was investigated by determining their eigenfrequencies using experimental and numerical modal analysis. Four different stem and three different cup designs were investigated. Operational system vibrations resulting in audible squeaking were reproduced in a hip simulator and related to the respective component eigenfrequencies. The applied joint load and bearing clearance were varied in the clinically relevant range. Stems with lower eigenfrequencies were related to lower squeaking frequencies and increased acoustic pressure (loudness), and therefore to a higher susceptibility to squeaking. Higher load increased the squeaking frequency, while the acoustic pressure remained unchanged. No influence of the clearance or the cup design was found. Stem design was found to have an important influence on squeaking characteristics and its incidence, confirming and explaining similar clinical observations. Cup design itself was found to have no major influence on the dynamic behavior of the system but plays an important indirect role in influencing the magnitude of friction: Squeaking only occurs if the friction in the joint articulation is sufficient to excite vibrations to audible magnitudes. If friction is low, no squeaking occurs with any of the designs investigated.
机译:尽管陶瓷具有优越的耐磨性,但用陶瓷陶瓷轴承吱吱作响的髋关节替代品却使这种材料的使用受到质疑。吱吱声与植入物设计有关。这项研究的目的是确定特定的髋臼杯和股骨柄设计对吱吱声及其特征的影响。通过使用实验和数值模态分析确定特征频率,研究了杆,杆头和与杆头组装在一起的杆的动态行为。研究了四个不同的杆和三个不同的杯子设计。导致可听见的吱吱声的操作系统振动在髋部模拟器中再现,并与各个组件的本征频率有关。施加的关节负荷和轴承间隙在临床相关范围内有所变化。本征频率较低的茎与较低的吱吱声频率和增加的声压(响度)有关,因此与较高的吱吱声敏感性有关。较高的负载增加了吱吱声的频率,而声压保持不变。没有发现间隙或杯子设计的影响。人们发现,阀杆设计对吱吱声特性及其发生率具有重要影响,从而确认并解释了类似的临床观察结果。发现杯子设计本身对系统的动态行为没有重大影响,但在影响摩擦大小方面起着重要的间接作用:只有在关节铰接处的摩擦足以将振动激发到可听到的大小时,才会发出吱吱声。如果摩擦力低,则所研究的任何设计都不会产生吱吱声。

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