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首页> 外文期刊>Journal of Applied Polymer Science >Polymer-modified bitumen of recycled LDPE and maleated bitumen
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Polymer-modified bitumen of recycled LDPE and maleated bitumen

机译:再生LDPE和马来酸沥青的聚合物改性沥青

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摘要

Maleated bitumen was prepared by the reaction of penetration grade bitumen (80/100) with maleic anhydride at 150°C for 2 h under nitrogen atmosphere. The effectiveness of maleation was assessed in bitumen-recycled low-density polyethylene (LDPE) blends in terms of their softening point and elastic recovery. It was observed that the softening point and elastic recovery of the blends increased after maleation of the base bitumen owing to the formation of an asphaltene-linked-LDPE system. To obtain the desired elasticity, a recoverable composition was worked out with the help of maleated bitumen, recycled LDPE and styrene-butadiene-styrene. The storage stability of the blends was assessed in terms of their difference in softening points, rheological parameters, and microstructure of the top and bottom portions of test tube samples. The difference in softening point of the recoverable maleated bitumen blend was 5°C as compared to 60°C for the base bitumen blend. The phase angle was also reduced to 7.4°at 70°C compared with the 44.30°for the base bitumen blend. Scanning electron micrographs indicate that polymers existed in both the top and the bottom portions of the aged test tube maleated blend samples. The stability of the blend was further improved when LDPE is colloidal milled with maleic anhydride in the blend preparation. Roofing bitumen was also made with maleated bitumen containing 9 wt % recycled LDPE content. Based on the rheological data, it was found that the maleated bitumen-LDPE blend exhibited superior time-/temperature-dependent response and higher creep recovery compared with the base bitumen blend.
机译:通过使渗透级沥青(80/100)与马来酸酐在氮气氛下于150°C下反应2小时来制备马来酸化沥青。就沥青回收的低密度聚乙烯(LDPE)共混物的软化点和弹性恢复而言,评估了马来化的有效性。观察到,由于沥青质连接的LDPE体系的形成,在基础沥青的马来酸化之后,共混物的软化点和弹性恢复增加。为了获得所需的弹性,借助于马来酸沥青,再循环的LDPE和苯乙烯-丁二烯-苯乙烯来制备可回收的组合物。根据它们在软化点,流变参数以及试管样品顶部和底部的微观结构方面的差异来评估混合物的储存稳定性。与基础沥青混合物的60℃相比,可恢复的马来酸沥青混合物的软化点差为5℃。与基础沥青混合料的44.30°相比,相角在70°C下也降低至7.4°。扫描电子显微照片表明,在老化的试管马来酸化的共混物样品的顶部和底部均存在聚合物。当将LDPE与马来酸酐胶体研磨在共混物中时,共混物的稳定性进一步提高。屋顶沥青也用含有9wt%的再循环LDPE含量的马来酸沥青制成。基于流变学数据,发现与基础沥青共混物相比,马来酸沥青-LDPE共混物表现出优异的时间/温度依赖性响应和更高的蠕变回复率。

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