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A finite element modelling methodology for the non-linear stiffness evaluation of adhesively bonded single lap-joints. Part 2, Novel shell mesh to minimise analysis time

机译:用于粘合的单个搭接接头非线性刚度评估的有限元建模方法。第2部分,新颖的外壳网格可最大程度地减少分析时间

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摘要

A new modelling methodology is presented that enables the stiffness of adhesively bonded single lap-joints to be included in the finite element analysis of whole vehicle bodies. This work was driven by the need to significantly reduce computing resources for vehicle analysis. To achieve this goal the adhesive bond line and adherends are modelled by a relatively ‘small’ number of shell elements to replace the usual solid element mesh for a reliable analysis. Previous work in Part 1 has provided the necessary background information to develop and verify the new finite element analysis that reduces the solution runtime by a factor of 1000. Although a joint’s non-linear stiffness is reliably simulated to failure load, it is recognised by the authors that the coarse shell mesh cannot provide accurate peak stresses or peak strains for the successful application of a numerical failure criterion. Given that the new modelling methodology is very quick to apply to existing shell models of vehicle bodies, it is recommended for use by the stress analyst who requires, say at the preliminary design stage, whole vehicle stiffness performance in a significantly reduced timeframe.
机译:提出了一种新的建模方法,该方法可将粘合的单个搭接接头的刚度纳入整个车身的有限元分析中。这项工作是由于需要大量减少用于车辆分析的计算资源而推动的。为了实现此目标,胶粘剂粘合线和被粘物通过相对“少量”的壳单元进行建模,以替换常用的实体单元网格,从而进行可靠的分析。第1部分中的先前工作提供了必要的背景信息,以开发和验证新的有限元分析,该分析将求解时间减少了1000倍。尽管可靠地模拟了接头的非线性刚度以模拟破坏载荷,但该方法已得到认可。作者认为,粗壳网格无法为成功应用数值破坏准则提供准确的峰值应力或峰值应变。鉴于新的建模方法可以非常迅速地应用于现有的车身壳体模型,因此建议应力分析人员使用,例如在初步设计阶段就需要在大大减少的时间范围内提高整车的刚度性能。

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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