首页> 外文期刊>Rapid prototyping journal >A personalized mandibular implant with supporting and porous structures designed with topology optimization - a case study of canine
【24h】

A personalized mandibular implant with supporting and porous structures designed with topology optimization - a case study of canine

机译:具有拓扑优化设计的配套和多孔结构的个性化下颌植入物 - 以犬为例

获取原文
获取原文并翻译 | 示例
           

摘要

Purpose The purpose of this study is to obtain a titanium mandibular implant that possesses a personalized external shape for appearance recovery, a supporting structure for physiological loading and numerous micro-pores for accelerating osseointegration. Design/methodology/approach A three-dimensional intact mandibular model of a beagle dog was created from cone-beam computerized tomography scans. A segment of the lower jaw bone was resected and replaced by a personalized implant with comprehensive structures including a customized external shape, supporting structures and micro-pores, which were designed by topology optimization. Then with FEM analysis, the stress, displacement distribution and compliance of the designed implant were compared with the non-optimized model. The weight of the optimized implant that was fabricated by SLM with titanium alloy powder was measured and contrasted with the predicted non-optimized model for evaluating the viability of the design. Findings The FEM results showed the peaks of von Mises stress and displacement on the optimized implant were much lower than those of the implant without optimization. With topology optimization, the compliance of the implant decreased significantly by 53.3 per cent, and a weight reduction of 37.2 per cent could be noticed. Originality/value A design strategy for personalized implant, with comprehensive structures and SLM as the fabrication method, has been developed and validated by taking a canine mandible as the case study. With comprehensive structures, the implant presented good biomechanical behaviors thanks to the most appropriate supporting structures obtained by optimal design. The topological optimal design combined with SLM printing proved to be an effective method for the design and fabrication of personalized implant with complex structures.
机译:目的本研究的目的是获得具有用于外观恢复的个性化外部形状的钛颌骨植入物,用于生理负荷的支撑结构和用于加速骨整合的许多微孔。设计/方法/方法是从锥形束计算机断层扫描扫描创建了比格犬的三维完整下颌模型。将下颌骨的一段切除并由个性化植入物取代,具有综合结构,包括通过拓扑优化设计的定制外形,支持结构和微孔。然后通过有限分析,与非优化模型进行比较设计植入物的应力,位移分布和依从性。通过用钛合金粉末制造的优化植入物的重量,并与预测的非优化模型进行对比,用于评估设计的可行性。结果表明有组织结果显示Von误区的峰值和优化植入物上的位移远低于植入物而无优化的植入物。通过拓扑优化,植入物的顺应性明显减少了53.3%,可以注意到37.2%的重量减轻。由于征集下颌骨作为案例研究,开发和验证了具有综合结构和SLM的个性化植入物的设计策略,并通过作为案例研究来开发和验证。通过综合结构,由于最佳设计获得的最合适的支撑结构,植入物呈现出良好的生物力学行为。拓扑最优设计与SLM印刷相结合,证明是设计和制造具有复杂结构的个性化植入物的有效方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号