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首页> 外文期刊>Journal of Applied Polymer Science >Thermal and dynamic mechanical Behavior of poly(vinyl chloride)/wood flour composites
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Thermal and dynamic mechanical Behavior of poly(vinyl chloride)/wood flour composites

机译:聚氯乙烯/木粉复合材料的热力学和动态力学行为

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Thermal and dynamic mechanical behaviors of wood plastic composites made of poly vinyl chloride (PVC) and surface treated, untreated wood flour were characterized by using differential scanning calorimetry and dynamic mechanical analysis. Glass transition temperature (T-g) of PVC was slightly increased by the addition of wood flour and by wood flour surface treatments. Heat capacity differences (Delta C-p) of composites before and after glass transition were markedly reduced. PVC/wood composites exhibited smaller tan 6 peaks than PVC alone, suggesting that less energy was dissipated for coordinated movements and disentanglements of PVC polymer chains in the composites. The rubbery plateaus of storage modulus (E') curves almost disappeared for PVC/wood composites in contrast to a well defined plateau range for pure PVC. It is proposed that wood flour particles act as "physical crosslinking points" or,pinning centers" inside the PVC matrix, resulting in the absence of the rubbery plateau and high E' above T-g The mobility of PVC chain segments were further retarded by the presence of surface modified wood flour. (C) 2007 Wiley Periodicals, Inc.
机译:通过差示扫描量热法和动态力学分析,表征了聚氯乙烯(PVC)和经表面处理,未经处理的木粉的木质塑料复合材料的热力学和动态力学行为。通过添加木粉和木粉表面处理,PVC的玻璃化转变温度(T-g)略有提高。玻璃化转变前后,复合材料的热容差(ΔC-p)显着降低。 PVC /木材复合材料的tan 6峰比单独的PVC小,这表明复合材料中PVC聚合物链的协调运动和解开耗散的能量更少。与纯PVC的明确定义的平稳范围相反,PVC /木材复合材料的储能模量(E')曲线的橡胶平稳状态几乎消失了。有人提出木粉颗粒充当PVC基质内部的“物理交联点”或“钉扎中心”,导致不存在橡胶平台和高于Tg的高E'。存在会进一步阻碍PVC链段的流动性表面改性木粉的制造(C)2007 Wiley Periodicals,Inc.

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