Suppr超能文献

冻融循环作用下橡胶纤维增强膨胀土的本构损伤模型

Constitutive Damage Model for Rubber Fiber-Reinforced Expansive Soil under Freeze-Thaw Cycles.

作者信息

Wang Rongchang, Yang Zhongnian, Ling Xianzhang, Shi Wei, Sun Zhenxing, Qin Xipeng

机构信息

School of Civil Engineering, Qingdao University of Technology, Qingdao 266520, China.

School of Civil Engineering, Harbin Institute of Technology, Harbin 150006, China.

出版信息

Materials (Basel). 2024 Oct 11;17(20):4979. doi: 10.3390/ma17204979.

Abstract

To elucidate the degradation mechanism of expansive soil-rubber fiber (ESR) under freeze-thaw cycles, freeze-thaw cycle tests and consolidated undrained tests were conducted on the saturated ESR. The study quantified the elastic modulus and damage variables of ESR under different numbers of freeze-thaw cycles and confining pressure, and proposed a damage constitutive model for ESR. The primary findings indicate that: (1) The effective stress paths of ESR exhibit similarity across different numbers of freeze-thaw cycles, the critical stress ratio slightly decreased by 8.8%, while the normalized elastic modulus experienced a significant reduction, dropping to 42.1%. (2) When considering the damage threshold, the shear process of ESR can be divided into three stages: weak damage, damage development, and failure. As strain increases, the microdefects of ESR gradually develop, penetrating macroscopic cracks and converging to form the main rupture surface. Eventually, the damage value reaches 1. (3) Due to the effect of freeze-thaw cycles, initial damage exists for ESR, which is positively correlated with the number of freeze-thaw cycles. The rubber fibers act as tensile elements, and the ESR damage evolution curves intersect one after another, showing obvious plastic characteristics in the late stage of shear. (4) Confining pressure plays a role in limiting the development of ESR microcracks. The damage deterioration of ESR decreases with an increase in confining pressure, leading to an increase in ESR strength. (5) Through a comparison of the test curve and the theoretical curve, this study validates the rationality of the damage constitutive model of ESR under established freeze-thaw cycles. Furthermore, it accurately describes the nonlinear impact of freeze-thaw cycles and confining pressure on the ESR total damage.

摘要

为阐明冻融循环作用下膨胀土 - 橡胶纤维(ESR)的降解机制,对饱和ESR开展了冻融循环试验和固结不排水试验。该研究量化了不同冻融循环次数和围压作用下ESR的弹性模量和损伤变量,并提出了ESR的损伤本构模型。主要研究结果表明:(1)不同冻融循环次数下ESR的有效应力路径具有相似性,临界应力比略有下降8.8%,而归一化弹性模量显著降低,降至42.1%。(2)考虑损伤阈值时,ESR的剪切过程可分为三个阶段:轻微损伤、损伤发展和破坏。随着应变增加,ESR的微缺陷逐渐发展,贯通宏观裂缝并汇聚形成主要破裂面。最终,损伤值达到1。(3)由于冻融循环的作用,ESR存在初始损伤,且与冻融循环次数呈正相关。橡胶纤维起到拉伸元件的作用,ESR损伤演化曲线依次相交,在剪切后期呈现明显的塑性特征。(4)围压对ESR微裂缝的发展起到限制作用。ESR的损伤劣化随围压增加而减小,导致ESR强度增加。(5)通过试验曲线与理论曲线的对比,本研究验证了既定冻融循环条件下ESR损伤本构模型的合理性。此外,它准确描述了冻融循环和围压对ESR总损伤的非线性影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8343/11509877/79858cef0755/materials-17-04979-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验