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HITCAN for actively cooled hot-composite thermostructural analysis

机译:HITCAN用于主动冷却的热复合材料热结构分析

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摘要

A computer code, high temperature composite analyzer (HITCAN), was developed to analyze/design hot metal matrix composite structures. HITCAN is a general purpose code for predicting the global structural and local stress-strain response of multilayered (arbitrarily oriented) metal matrix structures both at the constituent (fiber, matrix, and interphase) and the structural level, including the fabrication process effects. The thermomechanical properties of the constituents are considered to be nonlinearly dependent on several parameters, including temperature, stress, and stress rate. The computational procedure employs an incremental iterative nonlinear approach utilizing a multifactor-interaction material behavior model, i.e., the material properties are expressed in terms of a product of several factors that affect the properties. HITCAN structural analysis capabilities (static, load stepping - a multistep static analysis with material properties updated at each step, modal, and buckling) for cooled hot structures are demonstrated through a specific example problem.
机译:开发了计算机代码高温复合材料分析仪(HITCAN)来分析/设计铁水基复合材料结构。 HITCAN是一种通用代码,用于预测多层(任意取向)金属基体结构的整体结构和局部应力应变响应,包括成分(纤维,基体和相间)以及结构水平,包括制造过程的影响。组分的热机械性质被认为是非线性依赖于几个参数,包括温度,应力和应力率。该计算过程采用利用多因素相互作用的材料行为模型的增量迭代非线性方法,即,以影响该特性的几个因素的乘积来表示材料特性。通过一个具体的示例问题展示了HITCAN的结构分析功能(静态,载荷步进-在每个步骤,模态和屈曲处更新材料属性的多步静态分析)。

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