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法雷尔连续混合机中转子设计、螺杆设计及加工参数的影响

Impacts of Rotor Design, Screw Design, and Processing Parameters in a Farrel Continuous Mixer.

作者信息

Alotaibi Mansour, Barry Carol Forance

机构信息

Department of Plastics Engineering, University of Massachusetts Lowell, Lowell, MA 01879, USA.

出版信息

Polymers (Basel). 2025 Feb 25;17(5):619. doi: 10.3390/polym17050619.

Abstract

Continuous mixers, which consist of a section with non-intermeshing counter-rotating rotors and a single-screw extruder, were developed for thermoset rubber and are often used for compounding of heavily filled thermoplastics. Due to the high mixing efficiency and tight control of shear levels, they may be suited for other compounding other material systems. Little work, however, has been reported on compounding with these mixers, and preliminary work with polypropylene showed interesting limitations of the mixing parameters. Therefore, this study investigated the effects of nine rotor designs, two single-screw designs, rotor speed, feed rate, and orifice setting on the residence time and melt temperature in a Farrel Compact Processor. In general, single-stage rotors produced lower mixer residence times and melt temperatures compared to longer two-stage and high dispersion rotors. Higher rotor speeds and feed rates and smaller orifice openings generally reduced mixer residence times. Higher rotor speeds increased mixer melt temperatures, whereas higher feed rates and smaller orifice openings produced lower mixer melt temperatures. The single-screw design impacted the residence time but not the melt temperature. Overall, the results of this work provided strategies for optimizing the processing parameters and rotor design selection when melt compounding with continuous mixers.

摘要

连续混合机由一段带有非啮合反向旋转转子的部分和一个单螺杆挤出机组成,是为热固性橡胶开发的,常用于填充量大的热塑性塑料的混炼。由于混合效率高且对剪切水平控制严格,它们可能适用于其他材料体系的混炼。然而,关于使用这些混合机进行混炼的报道很少,对聚丙烯的初步研究显示了混合参数存在有趣的局限性。因此,本研究调查了九种转子设计、两种单螺杆设计、转子速度、进料速率和孔板设置对法雷尔紧凑型处理器中停留时间和熔体温度的影响。一般来说,与较长的两级转子和高分散转子相比,单级转子产生的混合机停留时间和熔体温度更低。较高的转子速度和进料速率以及较小的孔板开口通常会缩短混合机停留时间。较高的转子速度会提高混合机熔体温度,而较高的进料速率和较小的孔板开口会降低混合机熔体温度。单螺杆设计影响停留时间,但不影响熔体温度。总体而言,这项工作的结果为在使用连续混合机进行熔体共混时优化工艺参数和选择转子设计提供了策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1866/11902392/6c591d5b7074/polymers-17-00619-g001.jpg

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