Wu Angxuan, Jia Lan, Yu Wenwen, Zhu Fengbo, Liu Fuyong, Wang Yanqin, Lu Guoyun, Qin Shuhao, Gao Dongyang, Wang Hua, Wu Xiaogang, Zheng Qiang
College of Materials Science & Engineering, Taiyuan University of Technology, Taiyuan 030024, China.
Shanxi-Zheda Institute of Advanced Materials and Chemical Engineering, Taiyuan 030024, China.
Polymers (Basel). 2021 Nov 30;13(23):4204. doi: 10.3390/polym13234204.
In recent years, buried bellows have often had safety accidents such as pipeline bursts and ground subsidence due to the lack of adequate mechanical properties and other quality problems. In order to improve the mechanical properties of bellows, fly ash (FA) was used as a reinforced filler in high density polyethylene (HDPE) to develop composites. The FA was surface treated with a silane coupling agent and HDPE-g-maleic anhydride was used as compatibilizer. Dumbbell-shaped samples were prepared via extrusion blending and injection molding. The cross-section morphology, thermal stability and mechanical properties of the composites were studied. It was observed that when 10% modified FA and 5% compatibilizer were added to HDPE, the tensile yield strength and tensile breaking strength of the composites were nearly 30.2% and 40.4% higher than those of pure HDPE, respectively, and the Young's modulus could reach 1451.07 MPa. In addition, the ring stiffness of the bellows was analyzed using finite element analysis. Compared with a same-diameter bellows fabricated from common commercially available materials, the ring stiffness increased by nearly 23%. The preparation method of FA/HDPE is simple, efficient, and low-cost. It is of great significance for the popularization of high-performance bellows and the high value-added utilization of FA.
近年来,由于机械性能不足等质量问题,埋地波纹管经常发生管道爆裂、地面沉降等安全事故。为了提高波纹管的机械性能,将粉煤灰(FA)作为增强填料添加到高密度聚乙烯(HDPE)中以制备复合材料。采用硅烷偶联剂对粉煤灰进行表面处理,并使用HDPE-g-马来酸酐作为增容剂。通过挤出共混和注塑成型制备哑铃形样品。研究了复合材料的横截面形态、热稳定性和机械性能。结果表明,当在HDPE中添加10%的改性粉煤灰和5%的增容剂时,复合材料的拉伸屈服强度和拉伸断裂强度分别比纯HDPE提高了近30.2%和40.4%,杨氏模量可达1451.07MPa。此外,利用有限元分析方法对波纹管的环刚度进行了分析。与由普通市售材料制成的同直径波纹管相比,环刚度提高了近23%。粉煤灰/高密度聚乙烯的制备方法简单、高效、低成本。这对于高性能波纹管的推广以及粉煤灰的高附加值利用具有重要意义。