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首页> 外文期刊>Journal of Applied Polymer Science >Rheology of silicon carbide/vinyl ester nanocomposites
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Rheology of silicon carbide/vinyl ester nanocomposites

机译:碳化硅/乙烯基酯纳米复合材料的流变学

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Silicon carbide (SiC) nanoparticles with no surface treatment raise the viscosity of a vinyl ester resin much more intensely than micrometer-size SiC particles. An effective dispersant generally causes a reduction in the resin viscosity attributed to its surface-active properties and thereby increases the maximum fraction of particles that can be introduced. This article assesses the rheological behavior of SiC-nanoparticle-filled vinyl ester resin systems with the Bingham, power-law, Herschel-Bulkley, and Casson models. The maximum particle loading corresponding to infinite viscosity has been determined to be a 0.1 volume fraction with the (1 - eta(-1/2)(r))-phi dependence (where eta(r) is the relative viscosity and is the particle volume fraction). The optimum fractional weight percentage of the dispersants (wt % dispersant/wt % SiC) is around 40% for 30-nm SiC nanoparticles, which is much higher than 1-3% for micrometer-size particles. SiC nanoparticles at a concentration of 9.2 wt % (0.03 volume fraction) cause a fourfold increase in the resin viscosity. The addition of a dispersant at the optimum dosage lowers the viscosity of SiC/vinyl ester suspensions by 50%. The reduction in the viscosity is substantial to improve the processability of SiC/vinyl ester nanocomposites. (c) 2006 Wiley Periodicals, Inc.
机译:未进行表面处理的碳化硅(SiC)纳米颗粒比微米级SiC颗粒更强烈地提高了乙烯基酯树脂的粘度。有效的分散剂通常导致归因于其表面活性的树脂粘度降低,从而增加了可引入的颗粒的最大比例。本文使用宾厄姆,幂律,Herschel-Bulkley和Casson模型评估SiC-纳米颗粒填充的乙烯基酯树脂系统的流变行为。对应于无限粘度的最大颗粒负载已确定为0.1体积分数,具有(1- eta(-1/2)(r))-phi依赖性(其中eta(r)是相对粘度,是颗粒体积分数)。对于30纳米SiC纳米颗粒,分散剂的最佳分数重量百分比(wt%分散剂/ wt%SiC)约为40%,远高于微米级颗粒的1-3%。浓度为9.2 wt%(体积分数为0.03)的SiC纳米颗粒会使树脂粘度增加四倍。以最佳剂量添加分散剂可使SiC /乙烯基酯悬浮液的粘度降低50%。粘度的降低对于改善SiC /乙烯基酯纳米复合材料的可加工性是重要的。 (c)2006年Wiley Periodicals,Inc.

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