首页> 外文会议>14th ASTM International Symposium on Composite Materials: Testing and Design; Mar 11-12, 2002; Pittsburgh, PA >Non-Scalar Approach to Simulate the Mechanical Degradation Process in Fibre-Rein Jorccd-Polymers (FRPs)
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Non-Scalar Approach to Simulate the Mechanical Degradation Process in Fibre-Rein Jorccd-Polymers (FRPs)

机译:非标量方法模拟纤维树脂Jorccd聚合物(FRP)中的机械降解过程

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摘要

A non-scalar formulation of the mechanical degradation process in FRPs is proposed. The approach bases on understanding the complex degradation process of a dynamically loaded FRP as a curve in a K-dimensional space. Each dimension of this space represents one type of observable physical damage (e.g., transverse crack formation and delamination) or one empiric damage parameter (e.g., damage according to Miner's rule). All points on the curve - or all stages of the damage process - are described unambiguously by a K-dimensional array D. Each component of D ascends monotonically with the applied load. By choosing summable parameters for the components of D and by breaking down the load into incremental load changes AL this non-scalar approach enables the damage growth with an applied load to be described in terms of numerical methods for evaluation and simulation. Furthermore, the proposed description allows to utilise a physically based damage accumulation hypothesis for dynamically loaded FRPs and to account for the interactions between different types of damage.
机译:提出了玻璃钢机械降解过程的非标量公式。该方法基于将动态加载的FRP的复杂降解过程理解为K维空间中的曲线。该空间的每个维度代表一种类型的可观察的物理损坏(例如,横向裂纹形成和分层)或一种经验损坏参数(例如,根据Miner规则的损坏)。曲线上的所有点-或损坏过程的所有阶段-均由K维数组D明确描述。D的每个分量随所施加的载荷单调上升。通过为D的分量选择可汇总的参数,并将载荷分解为增量载荷变化AL,这种非标量方法可以通过评估和仿真的数值方法来描述随施加载荷的损伤增长。此外,提出的描述允许利用基于物理的损伤累积假说来动态加载FRP,并说明不同类型的损伤之间的相互作用。

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