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Statistical Characterization of Viscoelastic Modulus using a Spectrum Function Approach

机译:谱函数方法的粘弹性模量的统计表征

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Previous experiments have shown a high degree of variation in viscoelastic creep strain measurements of polymer matrix composites (PMCs). Engineering design involving material properties of PMCs should be performed with this variability in consideration. Therefore, this paper presents an approach to characterize the longitudinal relaxation modulus of a vinyl ester polymer (DERAKANE 441-400) with variations in its material properties. A spectrum approach is used to describe viscoelastic material functions; a distribution function with two parameters is selected. Short-term tensile creep experiments were conducted at four temperatures below the glass transition temperature. In-plane longitudinal and transverse strain-time histories were measured using a digital image correlation technique. The variation in the relaxation modulus was described by formulating the probability density functions (PDFs) and the corresponding cumulative distribution functions (CDFs) of the moduli using a two-parameter Weibull distribution. Both Weibull shape (γ) and scale (β) parameters of the relaxation moduli distributions were shown to be time and temperature dependent. Two-dimensional quadratic Lagrange interpolation functions were used to characterize the Weibull parameters to obtain the PDFs and subsequently the CDFs of the creep compliances for the complete design temperature range (24°C ≤ T ≤ 60°C) during steady state creep (t ≥ 1000 s). At each test temperature, relaxation modulus curves were obtained for constant CDF values and compared with the experimental data. The predicted relaxation moduli of a vinyl ester polymer in the design space are in good agreement with the experimental data.
机译:先前的实验已经显示出高分子体基质复合材料(PMC)的粘弹性蠕变应变测量的高度变化。应考虑到这种可变性,执行涉及PMC的材料特性的工程设计。因此,本文提出了一种方法来表征乙烯基酯聚合物(Derakane 441-400)的纵向松弛模量,其材料性能变化。一种频谱方法用于描述粘弹性材料功能;选择具有两个参数的分发功能。短期拉伸蠕变实验在低于玻璃化转变温度的四个温度下进行。使用数字图像相关技术测量面内纵向和横向应变时间历史。通过使用双参数Weibull分布制定Moduli的概率密度函数(PDF)和相应的累积分布函数(CDFS)来描述松弛模量的变化。释放模量分布的威布尔形状(γ)和刻度(β)参数被显示为时间和温度依赖性。二维二次拉格朗日插值函数用于表征Weibull参数以获得PDF,随后在稳态蠕变期间为完整设计温度范围(24°C≤T≤60°C)的CREEP赋值的CDF(T≥ 1000s)。在每个测试温度下,获得恒定CDF值的弛豫模量曲线,并与实验数据进行比较。设计空间中的乙烯基酯聚合物的预测放松模量与实验数据吻合良好。

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