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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Analysis and comparison of wrist splint designs using the finite element method: Multi-material three-dimensional printing compared to typical existing practice with thermoplastics
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Analysis and comparison of wrist splint designs using the finite element method: Multi-material three-dimensional printing compared to typical existing practice with thermoplastics

机译:使用有限元方法的手腕夹板设计的分析与比较:多材料三维印刷与热塑性塑料典型现有练习相比

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摘要

Rheumatoid arthritis is a chronic disease affecting the joints. Treatment can include immobilisation of the affected joint with a custom-fitting splint, which is typically fabricated by hand from low temperature thermoplastic, but the approach poses several limitations. This study focused on the evaluation, by finite element analysis, of additive manufacturing techniques for wrist splints in order to improve upon the typical splinting approach. An additive manufactured/3D printed splint, specifically designed to be built using Objet Connex multi-material technology and a virtual model of a typical splint, digitised from a real patient-specific splint using three-dimensional scanning, were modelled in computer-aided design software. Forty finite element analysis simulations were performed in flexion-extension and radial-ulnar wrist movements to compare the displacements and the stresses. Simulations have shown that for low severity loads, the additive manufacturing splint has 25%, 76% and 27% less displacement in the main loading direction than the typical splint in flexion, extension and radial, respectively, while ulnar values were 75% lower in the traditional splint. For higher severity loads, the flexion and extension movements resulted in deflections that were 24% and 60%, respectively, lower in the additive manufacturing splint. However, for higher severity loading, the radial defection values were very similar in both splints and ulnar movement deflection was higher in the additive manufacturing splint. A physical prototype of the additive manufacturing splint was also manufactured and was tested under normal conditions to validate the finite element analysis data. Results from static tests showed maximum displacements of 3.46, 0.97, 3.53 and 2.51mm flexion, extension, radial and ulnar directions, respectively. According to these results, the present research argues that from a technical point of view, the additive manufacturing splint design stands at the sam
机译:类风湿性关节炎是一种影响关节的慢性疾病。治疗可包括用定制拟合夹板固定受影响的关节,其通常由低温热塑性塑料用手制造,但该方法造成了几个限制。本研究专注于评估,通过有限元分析,为腕屑的添加剂制造技术为改善典型的夹持方法。一种添加剂制造/ 3D印刷夹板,专门设计用于使用Objet Connex多材料技术和典型夹板的虚拟模型,从使用三维扫描的真实患者特定夹板数字化,以计算机辅助设计建模软件。在屈曲 - 延伸和径向 - 尺寸手腕运动中进行四十有限元分析模拟,以比较位移和应力。模拟表明,对于低严重程度,添加剂制造夹板分别在屈曲,延伸和径向中的典型夹板中具有25%,76%和27%的位移,而Ulnar值降低75%传统的夹板。对于更高的严重性负荷,屈曲和延伸运动导致偏转分别为24%和60%,在添加剂制造夹板中较低。然而,对于更高的严重性负荷,在添加剂制造夹板中,径向偏转值在两个夹板中非常相似,并且在添加剂制造夹板中较高。还制造了添加剂制造夹板的物理原型,并在正常条件下进行测试以验证有限元分析数据。静态试验结果显示出3.46,0.97,3.53和2.51mm屈曲,延伸,径向和尺尺寸的最大位移。根据这些结果,本研究认为,从技术角度来看,添加剂制造夹板设计矗立在山姆

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