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A novel family of multiple springs models suitable for biaxial rate-independent hysteretic behavior

机译:一种新的多弹簧模型家庭,适用于双轴率无关的滞后行为

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This paper presents a novel family of multiple springs models capable of reproducing the nonlinear response typical of mechanical systems and materials having a biaxial kinematic rate-independent hysteretic behavior. In such a formulation, the generalized force vector, representing the output variable, is computed by summing the contribution of n springs, respectively made up of a nonlinear elastic spring in parallel with a rate-independent hysteretic one. In particular, the generalized force of each spring is computed as a function of the related generalized displacement and history variable. Two isotropic biaxial hysteretic models are derived from the proposed general formulation: the Multiple Springs Bilinear Model and the Multiple Springs Exponential Model. The former is an algebraic model that is illustrated to clearly explain the meaning of the parameters and variables adopted in the formulation. Conversely, the latter is a transcendental model that is presented not only to demonstrate the potentiality of the family in terms of accuracy and computational efficiency, but also to show the possibility of developing models that can reproduce different types of biaxial hysteretic behavior with few parameters having a clear mechanical significance. Such a sophisticated model is validated through numerical and experimental tests. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种新型的多弹簧型,能够再现具有双轴运动率无关的滞后行为的机械系统和材料的非线性响应。在这样的制剂中,通过求解N弹簧的贡献来计算代表输出变量的广义力载体,分别由与速率无关的滞后1的非线性弹性弹簧组成。特别地,每个弹簧的广义力被计算为相关的广义位移和历史变量的函数。两位各向同性双轴滞后模型源自所提出的一般配方:多弹簧双线性模型和多个弹簧指数模型。前者是一种代数模型,示出了清楚地解释了配方中采用的参数和变量的含义。相反,后者是一种超越模型,不仅展示了家庭的潜力,而且在准确性和计算效率方面表现出开发可以再现不同类型的双轴滞后行为的模型的可能性明显的机械意义。通过数值和实验测试验证这种复杂的模型。 (c)2020 elestvier有限公司保留所有权利。

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