Zhu Lin, Pan Yiren, Tian Xiaolong, Liu Huaqiao, Bian Huiguang, Wang Chuansheng
School of Mechatronics Engineering, Qingdao University of Science and Technology, Qingdao 266061, China.
Materials (Basel). 2019 Sep 25;12(19):3118. doi: 10.3390/ma12193118.
In order to efficiently prepare high-performance silica/rubber composites for use in the tread of semi-steel radial tires, a serial modular continuous mixer was designed according to the principle of modular functionalization. The modular structure and serial process helped control the accuracy of the silanization reaction. Synchronous four-wing serrated rotors and reverse meshing reaction mixing twin-rotors utilized shear flow and elongation flow to improve the dispersion. In this paper, the mechanism of serial modular continuous mixing was analyzed, and the influence of the core reaction mixing zone (various mixing elements) on silica-filled compounds was investigated by cooling visualization experiments, including dispersion, and the silanization reaction degree. Meanwhile, a comparative experiment between serial mixing and two-stage mixing was conducted, which showed that the serial process comprehensively improved the dispersion, mechanical properties, and dynamic mechanical properties of silica/rubber vulcanizate.
为了高效制备用于半钢子午线轮胎胎面的高性能二氧化硅/橡胶复合材料,根据模块化功能化原理设计了一种串联式模块化连续混炼机。模块化结构和串联工艺有助于控制硅烷化反应的精度。同步四翼锯齿转子和反向啮合反应混合双转子利用剪切流和拉伸流来改善分散性。本文分析了串联模块化连续混炼的机理,并通过冷却可视化实验研究了核心反应混合区(各种混合元件)对二氧化硅填充胶料的影响,包括分散性和硅烷化反应程度。同时,进行了串联混炼和两段混炼的对比实验,结果表明串联工艺全面提高了二氧化硅/橡胶硫化胶的分散性、力学性能和动态力学性能。