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Analysis of rubber particles produced by the solid state shear extrusion pulverization process

机译:固态剪切挤压粉碎工艺产生的橡胶颗粒的分析

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Vulcanized natural rubber was pulverized using a single screw extruder in a non-cryogenic Solid State Shear Extrusion (SSSE) process where rubber granulates were subjected to high compressive and shear stresses. The produced particles had diameters ranging from 40 to 1700 μm. Reprocessing of the produced powder resulted in a narrower particle size distribution. Considerable heat generated in the extruder due to friction caused surface oxidation of the fine rubber particles and, in turn, initiation of agglomeration of a portion of the produced particles. Physical, chemical, and thermal analyses were performed on the produced rubber particles and the rubber granulates to determine the effects of the pulverization process. The produced particles had irregular shapes with rough surfaces. The external surfaces of the particles were porous, but no microporosity was detected by nitrogen BET analysis. Swelling and extraction experiments showed that both the crosslink density and gel fraction of the particles were lower than those of the rubber granulates. The reprocessing of the produced particles caused further reduction in the crosslink density and the gel fraction. A correlation was established between the crosslink density and the gel fraction. Thermal analysis revealed similar behavior of all particles and the granulates in a nitrogen environment, but there was considerable thermo-oxidative degradation of the fine particles in air. The chemical analysis indicated that some of the bonds were broken during the pulverization process, arid partial devulcanization had taken place.
机译:使用单螺杆挤出机在非低温固态剪切挤出(SSSE)工艺中将硫化天然橡胶粉碎,在该工艺中,橡胶颗粒承受高压缩应力和剪切应力。产生的颗粒的直径为40至1700μm。所生产粉末的再处理导致较窄的粒度分布。由于摩擦,在挤出机中产生大量热量,导致细橡胶颗粒的表面氧化,继而引发一部分所产生颗粒的团聚。对生产的橡胶颗粒和橡胶颗粒进行物理,化学和热分析,以确定粉碎过程的效果。产生的颗粒具有表面粗糙的不规则形状。颗粒的外表面是多孔的,但是通过氮BET分析没有检测到微孔。溶胀和萃取实验表明,颗粒的交联密度和凝胶分数均低于橡胶颗粒。产生的颗粒的再加工导致交联密度和凝胶分数进一步降低。在交联密度和凝胶分数之间建立了相关性。热分析显示在氮气环境中所有颗粒和颗粒的行为相似,但空气中细颗粒有相当大的热氧化降解。化学分析表明,在粉碎过程中一些键断裂,并且发生了部分脱硫。

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