高功率固体载荷下出现的一些s型和反s型响应模式

IF 0.7 Q4 MECHANICS
S. Mastilovic
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引用次数: 3

摘要

. 本次审查的目的是双重的。首先,它的目的是突出一些s型和反s型响应模式,最近在模拟过程中观察到的高应变率加载(主要是准脆性)固体。其次,它旨在回顾两种模型的各种性质,经常被用作非线性和饱和现象的曲线拟合工具。这两个模型——受到Hill和Weibull累积分布函数的启发——被两条水平渐近线所包围,在基线和最终饱和状态之间有一个平滑的过渡,其特征是在每个点上的非负(非正)导数为s型(逆s型)形状。虽然它们主要用于数据拟合,因为它们的灵活性和有效性,这些非线性模型还具有其他特性,可用于分析不可逆、非线性和远离平衡的现象。本文系统地考察了这两种模型的主要特征。尽管数据的满意曲线拟合不能被认为是因果关系的证明,但它可以强调一种行为模式,也许还可以提供调查指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Some sigmoid and reverse-sigmoid response patterns emerging from high-power loading of solids
. The objective of the present review is twofold. First, it aims at highlighting some sigmoid and reverse-sigmoid response patterns observed re- cently in the course of simulations of the high-strain-rate loading of (mostly, quasibrittle) solids. Second, it aims at reviewing various properties of two models used frequently as curve fitting tools for nonlinear and saturable phenomena. These two models-inspired by the Hill and the Weibull cumula- tive distribution functions-are bounded by two horizontal asymptotes with a smooth transition between the baseline and the final saturation state, char- acterized by a non-negative (a non-positive) derivative at each point for the sigmoid (the reverse-sigmoid) shape. Although they were used primarily for data fitting because of their flexibility and effectiveness, these nonlinear models possess other properties useful for the analysis of the irreversible, nonlinear and far-from-equilibrium phenomena. The main features of these two models are systematically examined in this review. In spite of the fact that satis- factory curve-fitting of data could not be considered a proof of causality it could underline a pattern of behavior and, perhaps, provide an investigation guidance.
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
4
审稿时长
32 weeks
期刊介绍: Theoretical and Applied Mechanics (TAM) invites submission of original scholarly work in all fields of theoretical and applied mechanics. TAM features selected high quality research articles that represent the broad spectrum of interest in mechanics.
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