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RECYCLING OF TIRE-CURING BLADDER BY ULTRASONIC DEVULCANIZATION(Paper No. 26)

机译:超音波化解胎轮胎(第26号文件)

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摘要

The recycling of butyl rubber based tire-curing bladder was carried out by means of a grooved barrel ultrasonic extruder. Die pressure and ultrasonic power consumption were measured as a function of flow rate and ultrasonic amplitude. Gel fraction and crosslink density of the ultrasonically devulcanized rubber were substantially reduced. The latter caused some reduction in gel fraction and crosslink density in the revulcanized rubber. These findings were correlated with dynamic properties and the cure behavior of the devulcanized rubber. The mechanical properties of the revulcanized rubber, dependent on processing conditions during devulcanization, were compared with that of the virgin vulcanizate. Good mechanical properties of revulcanized rubber was achieved with 86% and 71% reduction of the tensile strength and the elongation at break respectively, and with modulus increased by 44%. The devulcanized rubber was found to contain tiny gel particles of a wide size distribution with a predominant size of less than 4 μm.
机译:通过带槽筒超声挤出机进行丁基橡胶基轮胎固化囊的再循环。模具压力和超声波功耗被测量为流速和超声波幅度的函数。显着降低了超声脱硫橡胶的凝胶级分和交联密度。后者引起了凝胶分数的一些降低和逆转橡胶中的交联密度。这些发现与Devulcanized橡胶的动态性质和固化行为相关。将逆转橡胶的机械性能与在脱霉菌化期间的加工条件相比,与维珍硫化橡胶的加工条件进行了比较。通过86%和71%降低拉伸强度和分别在断裂的伸长率下降的良好机械性能,分别延伸,模量增加44%。发现抗透明橡胶含有宽尺寸分布的微小凝胶颗粒,其主要尺寸小于4μm。

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