首页> 外国专利> Numerically simulating structural behaviors of a product using explicit finite element analysis with a mass scaling enhanced subcycling technique

Numerically simulating structural behaviors of a product using explicit finite element analysis with a mass scaling enhanced subcycling technique

机译:使用显式有限元分析和质量缩放增强子循环技术,对产品的结构行为进行数值模拟

摘要

Methods and systems for numerically simulating structural behaviors of a product using explicit FEA with a mass scaling enhanced subcycling technique are disclosed. A FEA model of the product defined by a plurality of nodes and finite elements is received. A critical time step size is calculated for each finite element and then assigned to associated nodes. Elements are partitioned into N element groups with first group requiring minimum time step size Δt1 and other element groups requiring respective time step sizes (ΔtN=2N−1Δt1). In order not to resort or repartition the finite elements and still obtain a stable solution, respective proper amounts of mass scaling are applied to those elements that have become too small to maintain a stable solution in their respective element groups. A time-marching simulation using explicit FEA with the mass scaling enhanced subcycling technique is then conducted with such a FEA model.
机译:公开了使用具有质量缩放增强的子循环技术的显式有限元分析法对产品的结构行为进行数值模拟的方法和系统。接收由多个节点和有限元定义的乘积的FEA模型。计算每个有限元的关键时间步长,然后将其分配给关联的节点。元素分为N个元素组,第一个元素组要求最小时间步长Δt 1 ,其他元素组则需要各自的时间步长(Δt N = 2 N- 1 Δt 1 )。为了不求助于有限元或重新划分有限元并仍然获得稳定的解,对那些太小而无法在其各自的元素组中保持稳定解的元素应用相应的质量缩放比例。然后,在这种FEA模型中使用显式FEA和质量缩放增强子循环技术进行时间行进仿真。

著录项

  • 公开/公告号US2013185029A1

    专利类型

  • 公开/公告日2013-07-18

    原文格式PDF

  • 申请/专利权人 JOHN O. HALLQUIST;

    申请/专利号US201213351864

  • 发明设计人 JOHN O. HALLQUIST;

    申请日2012-01-17

  • 分类号G06F17/50;G06F17/10;

  • 国家 US

  • 入库时间 2022-08-21 16:51:28

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