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Application of Power Ultrasound in Cavitation Erosion Testing of Nano-Ceramic Particle/Polymer Composites

机译:电力超声在纳米陶瓷颗粒/聚合物复合材料的空化腐蚀试验中的应用

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Cavitation erosion is predominant in pipelines for liquid transportation, causing damage to pipe wall, impeller and their accessories. The present study is focused on development of cavitation -wear resistant nano-ceramic particle-reinforced polymer matrix material; and on study of its feasibility to be used as lining material in hydraulic transportation. The polymer/nano composite is fabricated using power ultrasound in all three process steps: synthesis of nano-dimensional particles of white fused alumina (WFA) from micron size particles, optimized blending and finally reinforcement into poly methyl methacrylate (PMMA) matrix. The effect of ultrasonic parameters on nano-composite/ virgin polymers (like polyethylene and polypropylene) is studied by measuring mass loss of the materials and suspension turbidity during exposure time. At low frequency (20-60 kHz), cavitation intensity is predominant; this effect is utilized for fabricating sub-micron particles, and for performing accelerated cavitation erosion tests. At high frequency, acoustic streaming is predominant; this effect is utilized for blending and reinforcing of the nano ceramic particles into polymer matrix. The size and quantity of the particles generated by cavitation erosion was analyzed by Laser Particle Size Analyzer (20 nm-1400 micron range). The nano-composite coupons were analyzed before and after the ultrasonic erosion test using SEM. It is concluded that low-frequency sonication is a viable option for cavitaton erosion testing of ceramic/polymer composites.
机译:空化腐蚀是液体运输管道的主要侵蚀,导致管壁,叶轮及其配件造成损坏。本研究专注于耐污水抗性纳米陶瓷颗粒增强聚合物基质材料的开发;并研究其可行性用作液压运输中的衬里材料。在所有三个工艺步骤中使用功率超声制造聚合物/纳米复合材料:将纳米熔融氧化铝(WFA)的纳米颗粒合成,从微米尺寸颗粒,优化的混合和最后加固到聚甲基丙烯酸甲酯(PMMA)基质中。通过在暴露时间测量材料和悬浮浊度的质量损失来研究超声波参数对纳米复合/原子聚合物(如聚乙烯和聚丙烯)的影响。在低频(20-60 kHz),空化强度是主要的;这种效果用于制造亚微米颗粒,并用于进行加速的空化腐蚀试验。在高频时,声学流是主要的;这种效果用于混合和加强纳米陶瓷颗粒成聚合物基质。通过激光粒度分析仪(20nm-1400微米范围)分析由空化腐蚀产生的颗粒的尺寸和量。使用SEM在超声波腐蚀测试之前和之后分析纳米复合试样。得出结论,低频超声处理是陶瓷/聚合物复合材料的VICITOTON腐蚀测试的可行选择。

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