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首页> 外文期刊>Journal of Materials Science >Compressive and ultrasonic properties of polyester/fly ash composites
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Compressive and ultrasonic properties of polyester/fly ash composites

机译:聚酯/粉煤灰复合材料的压缩和超声性能

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The addition of hollow fillers having appro_priate mechanical properties can decrease the density of the resulting composite, called syntactic foams, while concur_rently improving its mechanical properties. In this study, hollow fly ash particles, called cenospheres, are used as fillers in polyester matrix material. Cenospheres are a waste by-product of coal combustion and, as such, are available at very low cost. In this study, the composites were synthesized by settling cenospheres in a glass tube filled with liquid polyester resin and subsequently curing the resin. This process resulted in a functionally graded structure containing a gradient in the cenosphere volume fraction along the sample height. Uniform radial sections were cut from each composite and were characterized to observe the relationship between cenosphere volume fraction and compressive properties of the composite. The composite was also tested using ultrasonic non-destructive evaluation method. Results show that the modulus of the composites increases with increasing cenosphere volume fraction. The modulus of composites containing more than 4.9 vol% cenosphere was found to be higher than the matrix resin. In general, the modulus of composites increased from 1.33 to 2.1 GPa for composites containing from 4.9-29.5 vol% cenospheres. The specific strength of the composite was found to be as high as 2.03 MPa/(kg/m~3) compared to 0.96 MPa/(kg/m~3) for the neat resin. Numerous defects present in fly ash particles caused a reduction in the strength of the composite. However, the reduction in the strength was found to be only up to 22%. Increase of over 110% in the specific modulus and only a slight decrease in the strength indicates the possibility of significant saving of weight in the structures using polyester/fly ash syntactic foams.
机译:添加具有适当机械性能的中空填料可以降低所得复合材料(称为复合泡沫)的密度,同时可以同时改善其机械性能。在这项研究中,空心粉煤灰颗粒(称为空心球)被用作聚酯基质材料的填料。空心球是燃煤的废物副产品,因此可以以非常低的成本获得。在这项研究中,通过将空心球沉降在装有液体聚酯树脂的玻璃管中,然后固化该树脂,来合成复合材料。该过程产生了功能梯度结构,该结构包含沿样品高度的空心球体积分数的梯度。从每个复合材料上切下均匀的径向截面,并进行表征,以观察空心层体积分数与复合材料的压缩性能之间的关系。还使用超声非破坏性评估方法测试了复合材料。结果表明,复合材料的模量随空心球体积分数的增加而增加。发现包含大于4.9%(体积)的空心层的复合材料的模量高于基体树脂。通常,对于含有4.9-29.5 vol%空心球的复合材料,复合材料的模量从1.33 GPa增加到2.1 GPa。发现该复合材料的比强度高达2.03 MPa /(kg / m〜3),而纯树脂为0.96 MPa /(kg / m〜3)。粉煤灰颗粒中存在许多缺陷,导致复合材料强度降低。然而,发现强度降低仅高达22%。比模量增加超过110%,而强度仅稍微降低,表明使用聚酯/粉煤灰复合泡沫可显着节省结构的重量。

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