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A study on type Ⅱ structures. Part Ⅰ: a modified one-dimensional mass-spring model

机译:Ⅱ型结构的研究。第一部分:修正的一维质量弹簧模型

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Most impact energy-absorbing structures can be classified into one of two types in terms of the shape of the overall quasi-static load-displacement curve in the early stages of deformation. Type Ⅰ has a relatively "flat-topped" curve, while type Ⅱ has an initial peak load followed by a "steeply falling" curve. The previous work showed that the deformation of type Ⅱ specimens is much more sensitive to the impact velocity than that of type Ⅰ specimens. That is, when the total kinetic energy remains the same for all specimens, smaller final deformations result from higher impact velocities; and this phenomenon is much more significant for type Ⅱ specimens than for type Ⅰ specimens. In order to explain this characteristic of type Ⅱ structures, a one-dimensional mass-spring model with variable mass is proposed for a typical type Ⅱ structure (i.e., a pair of pre-bent plates), and used to examine the effects of the lateral inertia of the structure under impact. Unlike conventional mass-spring models, our system contains an equivalent variable mass, which is a function of the rotational angle at plastic hinges and comes into effect during the second phase of the dynamic response. Predictions of this analytical model agree very well with an ABAQUS FE simulation of the dynamic response of the pre-bent plates to impact; and this verifies the validity of the mass-spring model proposed.
机译:就变形初期的整体准静态载荷-位移曲线的形状而言,大多数冲击吸能结构可分为两种类型之一。 Ⅰ型具有相对“平顶”曲线,而Ⅱ型具有初始峰值载荷,然后是“急剧下降”曲线。先前的工作表明,Ⅱ型试样的变形对冲击速度的敏感性比Ⅰ型试样的大。也就是说,当所有样品的总动能保持相同时,较高的冲击速度会导致较小的最终变形;这种现象对于Ⅱ型标本比Ⅰ型标本更为明显。为了解释Ⅱ型结构的这一特性,针对典型的Ⅱ型结构(即一对预弯板),提出了一个质量可变的一维质量弹簧模型,并用来检验该结构的影响。受到冲击的结构的横向惯性。与传统的质量弹簧模型不同,我们的系统包含等效变量,该变量是塑料铰链处旋转角度的函数,并在动态响应的第二阶段生效。该分析模型的预测与ABAQUS FE模拟预弯板对冲击的动力响应非常吻合;这验证了所提出的质量弹簧模型的有效性。

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