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首页> 外文期刊>IJIDeM: International Journal on Interactive Design and Manufacturing >The process of designing a rotating platform artificial knee prosthesis with posterior stabilizers by finite element analysis
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The process of designing a rotating platform artificial knee prosthesis with posterior stabilizers by finite element analysis

机译:通过有限元分析设计具有后稳压器的旋转平台人造膝关节假体的过程

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The purpose of this paper is to design a rotating platform knee prosthesis with posterior stabilizers. This design is based on reverse engineering and interactive acquisition and reconstruction of 3D models combined with the finite element method. A 3D geometric model of a healthy knee joint was created from an anatomical knee model by using an active acquisition system based on a 3D scanner. This healthy model comprises a portion of the long bones (femur, tibia and fibula), as well as the transverse ligament, medial collateral ligament, posterior cruciate ligament, anterior cruciate ligament, medial meniscus and cartilage. The digital model that was obtained was repaired and converted to an engineering drawing format by use of CATIA? software. Also, based on the foregoing format, a rotating platform knee prosthesis was designed and assembled by this software. Once the healthy and artificial models were repaired, the Mentat Marc? software was used to develop the healthy and artificial knee FE models. From the anthropometry of the human body, a combination of loads and positions were obtained by use of 3D Static Strength Prediction software. The normal stresses, Von Mises stresses and all relative displacements of the healthy and artificial knee FE model were determined. The Von Mises stresses on both the cortical and the trabecular bone of the artificial and healthy knee FE model were analyzed and compared. The prosthesis was designed for the knee of a male patient of height and body weight of 190?cm and 120?kg, respectively.
机译:本文的目的是设计具有后稳压器的旋转平台膝关节假体。该设计基于逆向工程和交互式采集和三维模型的重建,与有限元法相结合。通过使用基于3D扫描仪的主动采集系统从解剖膝关节模型创建健康膝关节的3D几​​何模型。这种健康的模型包括长骨(股骨,胫骨和腓骨)的一部分,以及横向韧带,内侧侧韧带,后十字架韧带,前十字架韧带,内侧弯月面和软骨。通过使用CATIA修复并转换为工程绘图格式的数字模型?软件。此外,根据上述格式,通过该软件设计和组装了旋转平台膝关节假体。一旦修理了健康和人工模型,米特玛特玛尔克?软件用于开发健康和人造膝关节FE模型。根据人体的人体测量法,通过使用3D静态强度预测软件获得负载和位置的组合。确定了正常的应力,von误解应力和健康和人造膝部Fe模型的所有相对位移。分析并比较了人工和健康膝关节Fe模型的皮质和小梁骨骼的von误解了损伤。假肢分别设计用于较高高度和体重190Ωcm和120Ω·kg的男性患者的膝盖。

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