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Damping mechanism of chlorobutyl rubber and phenolic resin vulcanized blends

机译:氯丁基橡胶与酚醛树脂硫化共混物的阻尼机理

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An intensive study has been undertaken on the damping mechanism of chlorinated butyl rubber (CIIR) and phenolic resin (PR) vulcanized blends. Evidence from morphology observations of blend sections by scanning electron microscopy, extraction experiments, molecular weight analysis by gel permeation chromatography indicates that except a part of PR crosslinked with CIIR, the others remain linear and disperse in the CIIR matrix to form a two-phase continuity. The tan delta curves of blend without striking peak split from the dynamic mechanical spectra and inward shift of glass transition of linear PR suggests that cured CIIR and linear PR is miscible to a certain extent, thus, the phase separation in the blends can be described as slight phase separation. There observations are interpreted in terms of variations of free volume characterized by positron annihilation lifetime spectroscopy.
机译:对氯化丁基橡胶(CIIR)和酚醛树脂(PR)硫化共混物的阻尼机理进行了深入研究。通过扫描电子显微镜,提取实验,凝胶渗透色谱进行分子量分析的共混物形态观察的证据表明,除一部分PR与CIIR交联外,其余PR保持线性并分散在CIIR基质中以形成两相连续性。混合物的tanδ曲线没有从动态力学光谱中出现明显的峰裂和线性PR的玻璃化转变的向内移动,表明固化的CIIR和线性PR在一定程度上是可混溶的,因此,混合物中的相分离可描述为轻微的相分离。那里的观察结果是用以正电子an没寿命光谱学为特征的自由体积变化来解释的。

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