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首页> 外文期刊>Macromolecular chemistry and physics >Anisotropic Linear and Volumetric Thermal-Expansion Behaviors of Self-Standing Polyimide Films Analyzed by Thermomechanical Analysis (TMA) and Optical Interferometry
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Anisotropic Linear and Volumetric Thermal-Expansion Behaviors of Self-Standing Polyimide Films Analyzed by Thermomechanical Analysis (TMA) and Optical Interferometry

机译:通过热机械分析(TMA)和光学干涉测量分析的自站立聚酰亚胺膜的各向异性线性和体积热膨胀行为

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摘要

The relationships between the molecular structure, polymer chain orientation, β-transition temperature, and the coefficients of in-plane and out-of-plane linear thermal expansions (CTE, α), as well as the coefficients of volumetric thermal expansion (CVE, β), are extensively examined for ten types of self-standing aromatic polyimide (PI) films via thermomechanical analysis, near-infrared optical interferometry, and dynamic mechanical analysis. The out-of-plane CTEs (α_⊥) of PI films having rigid-rod structures are 20-40 times larger than their in-plane CTEs (α_(//)), whereas the α_⊥ values of PI films having bent linkages in the main chains are comparable to their α_(//) values. In addition, the values of normalized anisotropy in CTE for PIs (η), defined as (α_⊥ -α_(//))/β, are proportional to the orientation coefficients (P200) estimated from the in-plane/out-of-plane birefringence (Δn) and molecular polarizability tensor. Furthermore, larger CVE values are observed for PIs exhibiting lower β-relaxation temperatures (T_β), at which localized molecular motion occurs. In contrast, smaller CVE values are observed for PIs exhibiting higher T_βs because their local molecular motions are suppressed due to the structural rigidity and dense molecular packing.
机译:分子结构,聚合物链取向,β-转变温度与平面内和平面外线性热膨胀(CTE,α)的关系,以及体积热膨胀系数(CVE,CNE,通过热机械分析,近红外光学干涉测量和动态力学分析,广泛地检查十种类型的自站式芳族聚酰亚胺(PI)膜。具有刚性杆结构的PI膜的平面外CTE(α_⊥)比其面内CTE(α_(//))大20-40倍,而PI膜的α_⊥值具有弯曲的连接在主链中与其α_(//)值相当。另外,定义为(α-α_(//))/β的PIS(η)的CTE中的归一化各向异性的值与从平面内/外/外估计的方向系数(P200)成比例-plane双折射(Δn)和分子极化性张量。此外,对于表现出较低的β-松弛温度(T_β)的PI,观察到较大的CVE值,其发生局部分子运动。相反,对于表现出更高的T_β的PIS观察到较小的CVE值,因为由于结构刚度和致密分子包装,它们的局部分子动作被抑制。

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