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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Pull-Out Response of a Steel Post Inserted in a Pre-Drilled HDPE Cylinder: Analytical and Finite Element Analyses Using Pressure-Dependent Friction
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Pull-Out Response of a Steel Post Inserted in a Pre-Drilled HDPE Cylinder: Analytical and Finite Element Analyses Using Pressure-Dependent Friction

机译:插入预钻HDPE气缸中的钢柱的拉出响应:使用压力相关摩擦的分析和有限元分析

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For the aim of fixing and stabilizing the Total Knee Arthroplasty (TKA) tibial component, pull-out strength of the post is one of the most important factors to be considered. The material properties of bone, coupled with the principal dimensions of bone/post assembly such as diameter, interference fit and implantation length, may affect the pull-out strength of the post fixation. In this study, a cylindrical stainless steel post inserted in a pre-drilled High Density Polyethylene (HDPE) cylinder with an initial interference fit was taken as a model to assess the contribution of post fixation to the initial stability of TKA tibial component. Pull-out experiments were carried out for different initial interference fits and implantation lengths. Under pull-out loading, the micro-slip initiation and propagation at the post/cylinder interface was found to be progressive and was modeled using Coulomb friction at the interface. In order to examine the experimental ultimate pull-out force results, an analytical model was developed. The analytical model was fitted to the experimental results by adjusting the friction coefficient for the considered ranges of initial interference fit and implantation length. It was found that friction coefficient depends on initial interference fit (Δr) as well as on the initial contact pressure (σ0). For the considered interference fit values Δr = 0.1 mm, Δr = 0.2 mm and Δr = 0.3 mm (σ0 = 13.62 MPa, σ0 = 27.24 MPa and σ0 = 40.86 MPa), the values of adjusted friction coefficient are 0.091, 0.067 and 0.058, respectively. Finite Element simulation was also carried out for the pull-out test using the ABAQUS program. It was found that numerical, analytical and experimental results are all in good agreement.
机译:为了固定和稳定全膝关节置换(TKA)胫骨组件,桩的拔出强度是要考虑的最重要因素之一。骨骼的材料属性,再加上骨骼/桩组件的主要尺寸,例如直径,过盈配合和植入长度,可能会影响桩固定的拉出强度。在这项研究中,将圆柱形不锈钢柱插入具有初始过盈配合的预钻高密度聚乙烯(HDPE)圆柱体中作为模型,以评估后固定对TKA胫骨组件初始稳定性的贡献。针对不同的初始过盈配合和植入长度进行了拉拔实验。在拉拔载荷下,发现在柱/圆柱体界面处的微滑开始和传播是渐进的,并使用界面处的库仑摩擦进行建模。为了检查实验极限拉拔力结果,开发了一个分析模型。通过针对初始过盈配合和植入长度的考虑范围调整摩擦系数,将分析模型拟合到实验结果。已经发现,摩擦系数取决于初始过盈配合(Δr)以及初始接触压力(σ0)。对于考虑的过盈配合值Δr= 0.1 mm,Δr= 0.2 mm和Δr= 0.3 mm(σ0= 13.62 MPa,σ0= 27.24 MPa和σ0= 40.86 MPa),调整后的摩擦系数值为0.091、0.067和0.058,分别。还使用ABAQUS程序对拉拔测试进行了有限元模拟。发现数值,分析和实验结果都吻合良好。

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