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首页> 外文期刊>Journal of Elasticity >Effective Thermoelasticity of Polymer-Bonded Particle Composites with Imperfect Interfaces and Thermally Expansive Interphases
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Effective Thermoelasticity of Polymer-Bonded Particle Composites with Imperfect Interfaces and Thermally Expansive Interphases

机译:具有不完美界面和热膨胀性互连聚合物键合颗粒复合材料的有效热弹性

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摘要

A micromechanical model for the thermoelasticity of polymer-bonded composites is presented. The model is particularly aimed at describing materials where the polymeric binder phase undergoes non-negligible thermal expansion affecting the overall thermoelastic response. Constitutive choices for modeling a mixed binder-void interphase layer are proposed, and an associated decomposition of total eigenstrains into classical, elastic imperfection (damage), and binder thermal expansivity parts is examined within the context of imperfect inter-particle interfaces. A novel temperature dependent modified Eshelby tensor is identified, making possible the development of a temperature dependent modified self-consistent homogenization schemewhat we call the M-SCH model. A method for distinguishing between dispersed and isolated parts of the binder and void phases in the model is also provided, along with a description of particle coating (or interphase) thickness derived from particle morphology and mesoscale effective properties. Although the theory is general, its development is motivated by the need to model anisotropic and highly nonlinear observed thermal expansion behavior of the polymer bonded explosive PBX 9502, for which model simulations are performed and compared with existing measurements.
机译:提出了一种用于聚合物粘合复合材料热弹性的微机械模型。该模型特别旨在描述聚合物粘合剂相对应对影响总热弹性反应的不可忽略的热膨胀的材料。提出了用于建模混合粘合剂 - 空隙间层的本构型选择,并在渗透颗粒间接口的背景下检查总特征突出(损伤)和粘合剂热膨胀部的相关分解。鉴定了一种新的温度依赖性改性的eShelby张量,使得可能开发温度依赖性修正的自我一致均质均质枢目我们称之为M-SCH模型。还提供了一种区分模型中的粘合剂和空隙相的分散和隔离部分的方法,以及衍生自颗粒形态和Mesoscale有效性质的颗粒涂层(或间差)厚度的描述。虽然该理论是一般的,其发展是通过对聚合物键合炸药PBX 9502的各向异性和高度非线性观察到的热膨胀行为的动力,其进行了模拟模拟并与现有测量进行了相比。

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