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首页> 外文期刊>Journal of Applied Polymer Science >Regeneration of carbon black from waste automobile tires
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Regeneration of carbon black from waste automobile tires

机译:从废旧汽车轮胎中再生炭黑

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摘要

Carbon black, an important ingredient in tires, was regenerated from waste automobile tires. Waste tires were cut to separate the tread cap, tread base, side wall, and inner ply and were crushed and pyrolyzed in a muffle furnace at 430degreesC for 3 h. This black was again heated at 430degreesC for 1.5 h to increase the surface area to get regenerated black (RB). To find out the effect of heating during pyrolysis, the original black was also heated at 430degreesC for 1.5 h to get heat-treated black (HTB). The regenerated black (RB) was characterized by different methods. It was mixed in different formulations, with few required properties of the final mixed compounds measured, and then cured maintaining technical cure time and temperature; physicomechanical properties of the cured specimen were measured and compared with that of the virgin black (VB) and the heat-treated black (HTB). From all these results it was concluded that regenerated black has a higher surface area, higher elongation at break, and higher heat buildup but a lower cure rate, a lower modulus, and a comparable state of cure, dispersion, hardness, tensile strength, and tear strength compared with those of the virgin black. It was also found that for the regenerated black, the structure and agglomerate size were slightly changed. Some polar acidic groups were incorporated into the carbon black during pyrolysis or during heat treatment. Regenerated black had better aging properties than did the virgin or heat-treated black. (C) 2003 Wiley Periodicals, Inc. [References: 9]
机译:炭黑是轮胎中的重要成分,是通过废旧汽车轮胎再生的。切割废轮胎以分离胎面盖,胎面基部,侧壁和内层,并在马弗炉中在430摄氏度下压碎和热解3小时。将该炭黑再次在430摄氏度下加热1.5小时,以增加表面积,得到再生炭黑(RB)。为了找出热解过程中加热的效果,还将原始黑炭在430摄氏度下加热1.5小时,以获得热处理黑炭(HTB)。再生黑(RB)用不同的方法表征。将其以不同的配方进行混合,几乎不测定最终混合化合物的所需性能,然后在保持技术固化时间和温度的条件下进行固化。测量固化样品的物理机械性能,并与纯黑(VB)和热处理黑(HTB)进行比较。从所有这些结果可以得出结论,再生黑具有较高的表面积,较高的断裂伸长率和较高的热量积聚,但固化速率较低,模量较低,并且固化,分散,硬度,拉伸强度和撕裂强度与纯黑相比。还发现对于再生的黑色,结构和附聚物的尺寸略有变化。在热解过程中或在热处理过程中,一些极性酸性基团被引入炭黑中。再生黑具有比原始或热处理黑更好的老化性能。 (C)2003 Wiley Periodicals,Inc. [参考:9]

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