首页> 外文OA文献 >Computer-implemented method of simulating performance of e.g. endovascular stent-graft, involves partitioning model such that material models simulate material behaviour in units of object model of super elastic tension and compression
【2h】

Computer-implemented method of simulating performance of e.g. endovascular stent-graft, involves partitioning model such that material models simulate material behaviour in units of object model of super elastic tension and compression

机译:计算机执行的模拟性能的方法,例如血管内支架移植物涉及分区模型,以便材料模型以超弹性拉伸和压缩的对象模型为单位模拟材料行为

摘要

NOVELTY - The method involves performing (S8) numerical analysis using the object model and material models together to simulate (S7) behavior of the object e.g. exotic material such as Nitinol wire material under defined conditions. The object model is partitioned (S5) such that first material model is used to simulate the material behavior in units of object model subject to super elastic tension. The second material model is used to simulate the material behavior in units of object model subject to super elastic compression. USE - Computer-implemented method of simulating performance of object made of material e.g. superelastic material such as nickel- titanium metal alloys used in product (claimed) e.g. medical devices such as vascular implant such as endovascular stent-graft. Can also be used in industrial, consumer, and aerospace applications. ADVANTAGE - The method using partitioned model is more accurate over the range of tensile and compressive conditions. The model is used in an iterative design process to achieve a product meeting desired performance specifications. The method produces more efficient design process and enhanced reliability.
机译:新奇-该方法涉及使用对象模型和材料模型一起执行(S8)数值分析,以模拟(S7)对象的行为,例如特定条件下的异质材料(例如镍钛诺线材)。划分对象模型(S5),以便使用第一个材料模型以受超弹性张力作用的对象模型为单位模拟材料行为。第二个材料模型用于以受超弹性压缩的对象模型为单位模拟材料行为。用途-模拟由材料制成的物体的性能的计算机实现方法超弹性材料,例如产品(要求保护)中使用的镍钛金属合金,例如医疗器械,例如血管植入物,例如血管内覆膜支架。也可用于工业,消费和航空航天应用。优势-使用分区模型的方法在拉伸和压缩条件范围内更为精确。该模型用于迭代设计过程中,以实现满足所需性能规格的产品。该方法产生更有效的设计过程和增强的可靠性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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