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首页> 外文期刊>Journal of Applied Polymer Science >Characterization of defatted soy flour and elastomer composites
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Characterization of defatted soy flour and elastomer composites

机译:脱脂大豆粉和弹性体复合材料的表征

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摘要

Defatted soy flour (DSF) is an abundant renewable commodity and is more economically favorable then soy protein isolate or soy protein concentrate. DSF contains soy protein, soy carbohydrate, and soy whey. The aqueous dispersion of DSF was blended with styrene-butadiene latex to form elastomer composites. The inclusion of soy carbohydrate increased the tensile stress in the small strain region, but reduced the elongation at break. The shear elastic modulus of the composites showed an increase in the small strain region, consistent with its stress-strain behavior. The inclusion of soy carbohydrate and soy whey also improved the recovery behavior in the nonlinear region. At small strain, the shear elastic modulus of 30 % filled composites at 140 degrees C was about 500 times higher than that of the unfilled elastomer, indicating a significant reinforcement effect generated by DSF. Compared with soy protein isolate (SPI), the stress softening effect and recovery behavior under dynamic strain indicate the addition of soy carbohydrate and soy whey may have increased the filler-rubber interaction. In general, the DSF composites gave better mechanical properties compared with the protein composites. (c) 2005 Wiley Periodicals, Inc.
机译:脱脂大豆粉(DSF)是一种丰富的可再生商品,比大豆分离蛋白或浓缩大豆蛋白在经济上更有利。 DSF包含大豆蛋白,大豆碳水化合物和大豆乳清。将DSF的水分散体与苯乙烯-丁二烯胶乳共混以形成弹性体复合材料。大豆碳水化合物的加入增加了小应变区域的拉伸应力,但降低了断裂伸长率。复合材料的剪切弹性模量在小应变区域显示出增加,与其应力-应变行为一致。包含大豆碳水化合物和大豆乳清也改善了非线性区域的恢复行为。在较小的应变下,填充度为30%的复合材料在140摄氏度时的剪切弹性模量比未填充的弹性体高约500倍,表明DSF产生了显着的增强效果。与大豆分离蛋白(SPI)相比,在动态应变下的应力软化作用​​和恢复行为表明添加大豆碳水化合物和大豆乳清可能增加了填料-橡胶相互作用。通常,与蛋白质复合材料相比,DSF复合材料具有更好的机械性能。 (c)2005年Wiley Periodicals,Inc.

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