Модель накопления повреждений в ортотропном композиционном материале

Юрий Витальевич Баяндин, М. С. Головин, Михаил Владимирович Банников, Сергей Витальевич Уваров
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Abstract

The paper presents a theoretical and experimental study of the influence of damage accumulation in composite material on the elastic fourth-rank tensor and on the strength under quasi-static, cyclic and dynamic loads. Layered polymer composites (glass or carbon fiber-reinforced plastic) are considered. This work aims to develop a mathematical model that accounts for the impact of damage in the composite material on the fourth-rank tensor of elastic properties. The constitutive relations for an orthotropic composite material are proposed, taking into account the accumulation of damage during tensile or shear loading. A numerical simulation using the finite element method is done for a periodicity cell for composite variants (unidirectional, layered, etc.) to determine the effective elastic properties. Quasi-static loading experiments were conducted on composite samples (carbon plastic) to validate the model and the degradation of elastic properties was determined by measuring the longitudinal sound speed. The full-scale experiments confirmed that damage accumulation in carbon fiber-reinforced plastic leads to the degradation of its effective elastic properties. In this connection, a technique was developed to take into account irreversible damage in an orthotropic composite material through the components of the ductility tensor, which may be helpful for the design and analysis of composite structures. The findings of the study could help with the creation of new materials with enhanced mechanical characteristics, as well as with raising the quality of already-existing materials. The developed mathematical model of orthotropic composite material can be used to enhance the structural strength properties and boost the application safety in a variety of industry.
正交各向异性复合材料损伤累积模型
本文通过理论和实验研究了复合材料中损伤累积对弹性四阶张量以及准静态、循环和动态载荷下强度的影响。研究考虑了层状聚合物复合材料(玻璃纤维或碳纤维增强塑料)。这项工作旨在建立一个数学模型,以说明复合材料中的损伤对弹性特性四阶张量的影响。考虑到拉伸或剪切加载过程中损伤的累积,提出了正交复合材料的构成关系。使用有限元法对复合材料变体(单向、分层等)的周期单元进行了数值模拟,以确定有效弹性特性。对复合材料样品(碳塑料)进行了准静态加载实验,以验证模型,并通过测量纵向声速确定弹性性能的退化情况。全尺寸实验证实,碳纤维增强塑料中的损伤累积会导致其有效弹性性能退化。为此,研究人员开发了一种技术,通过延性张量的分量来考虑正交复合材料中的不可逆损伤,这可能有助于复合材料结构的设计和分析。研究结果有助于创造具有更强机械特性的新材料,也有助于提高现有材料的质量。所建立的正交各向异性复合材料数学模型可用于增强结构强度特性,提高各种工业领域的应用安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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