首页> 外文期刊>Journal of Macromolecular Science. Physics >Polymer blends with hydrogenated nitrile-butadiene rubber and with an lonomer of hydrogenated carboxylic styrene-butadiene rubber
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Polymer blends with hydrogenated nitrile-butadiene rubber and with an lonomer of hydrogenated carboxylic styrene-butadiene rubber

机译:聚合物与氢化丁腈橡胶和氢化羧基丁苯橡胶的离聚物共混

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Hydrogenated nitrile-butadiene rubber (HNBR) and hydrogenated carboxylic styrene-butadiene rubber (HXSBR) were obtained from rubber latex via the diimide process without pressurized hydrogen. The ionomer of HXSBR was prepared via neutralization of HXSBR with a metallic ion. HNBR was melt-blended with polyethylene (PE) or poly(vinyl chloride) (PVC) and the potassium ionomer of HXSBR was blended with PE. Study of mechanical properties of the blends showed that when HNBR was higher than 40% of the blends, both blends behaved as thermoplastic elastomers. The HNBR/PE blend seems much better than NBR/PE blend with respect to mechanical properties, probably because of the presence of polyethylene segments in HNBR that enhanced the compatibility between HNBR and PE. After thermal aging at 150degreesC for 80 hr, the blends of HNBR/PE retained most of the mechanical propel-ties, whereas the specimens of NBR/PE blend became twisted. However, the difference between HNBR/PVC and NBR/PVC blends was somewhat less, probably because the two components of both blends are miscible, and self-crosslinking occurred during thermal aging. Scanning electron microscopy and differential scanning calorimetry were used to characterize the HNBR/PE blends. When the potassium ionomer of HXSBR was melt-blended with PE, the blends exhibited a synergistic behavior with respect to the tensile strength probably because of the formation of a thermoplastic interpenetrating polymer network through the crystalline domains of PE and the ionic domains of the ionomer. [References: 15]
机译:氢化丁腈橡胶(HNBR)和氢化羧基丁苯橡胶(HXSBR)是通过二酰亚胺工艺从橡胶胶乳中获得的,无需加压氢气。通过用金属离子中和HXSBR制备HXSBR的离聚物。将HNBR与聚乙烯(PE)或聚氯乙烯(PVC)熔融共混,并将HXSBR的钾离聚物与PE混合。共混物的机械性能研究表明,当HNBR高于共混物的40%时,两种共混物均表现为热塑性弹性体。就机械性能而言,HNBR / PE共混物似乎比NBR / PE共混物好得多,这可能是因为HNBR中存在聚乙烯片段,从而增强了HNBR和PE之间的相容性。在150°C下热老化80小时后,HNBR / PE共混物保留了大部分机械性能,而NBR / PE共混物的样品却发生了扭曲。但是,HNBR / PVC和NBR / PVC共混物之间的差异要小一些,这可能是因为两种共混物的两种成分均互溶,并且在热老化过程中发生了自交联。扫描电子显微镜和差示扫描量热法用于表征HNBR / PE共混物。当HXSBR的钾离聚物与PE熔融共混时,共混物在拉伸强度方面表现出协同作用,这可能是由于通过PE的结晶域和离聚物的离子域形成了热塑性互穿聚合物网络。 [参考:15]

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