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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >The influence of alumina crystal structures on the morphology and surface erosion of PMMA composite materials exposed to cavitation testing
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The influence of alumina crystal structures on the morphology and surface erosion of PMMA composite materials exposed to cavitation testing

机译:氧化铝晶体结构对蓄水试验暴露的PMMA复合材料形态和表面腐蚀的影响

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摘要

Composites are materials that reach many users and therefore, it is necessary to correlate the properties of every component on the behaviour of the material. Alumina is used as reinforcement with the aim of improving hardness. It was proven that the hardness depends on the crystal structure of the reinforcement. As the hardness is related to cavitation resistance, the influence of different reinforcements on the composite cavitation resistance was studied. Alumina and iron(III) oxide doped alumina particles were prepared by the sol-gel technique, starting from soluble salts of both elements. The gels were calcined at three different temperatures: 700, 800 and 900 degrees C. Poly(methyl methacrylate), PMMA, was used as the polymer matrix reinforced with alumina particles. The reinforcement content of all the samples was 3 wt %. Cavitation erosion of the samples was measured using a standard ultrasonic vibratory setup with a stationary sample. The cavitation resistance of the samples was studied using the classical mass loss method and the surface defects resulting from cavitation were analyzed. The morphologies of the defects after 1 h of cavitation erosion were examined by field emission scanning electron microscopy (FE-SEM). The images were characterized using the image analysis procedure. The results showed that the alumina crystal structure resulting at different calcination temperatures influences the defect morphology, cavitation resistance and the hardness of the composites.
机译:复合材料是到达许多用户的材料,因此,有必要将每个组件的性质与材料的行为相关联。氧化铝用作强化,目的是提高硬度。证明硬度取决于增强件的晶体结构。随着硬度与空化抗性有关,研究了不同增强对复合空心阻力的影响。通过溶胶 - 凝胶技术从两个元素的可溶性盐开始制备氧化铝和铁(III)掺杂的氧化铝颗粒。在三种不同的温度下煅烧凝胶:700,800和900℃。聚(甲基丙烯酸甲酯),PMMA用作用氧化铝颗粒加固的聚合物基质。所有样品的增强含量为3wt%。使用具有固定样品的标准超声波振动设置测量样品的空化腐蚀。使用经典的质量损失方法研究样品的空化阻力,分析了空化引起的表面缺陷。通过现场发射扫描电子显微镜(Fe-SEM)检查了空化腐蚀1小时后的缺陷的形态。使用图像分析程序表征图像。结果表明,氧化铝晶体结构导致不同的煅烧温度影响复合材料的缺陷形态,脉冲阻力和硬度。

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