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首页> 外文期刊>Journal of Applied Polymer Science >Particle size distribution, mixing behavior, and mechanical properties of carbon black (high-abrasion furnace)-filled powdered styrene butadiene rubber
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Particle size distribution, mixing behavior, and mechanical properties of carbon black (high-abrasion furnace)-filled powdered styrene butadiene rubber

机译:炭黑(高磨损炉)填充的丁苯橡胶粉的粒度分布,混合行为和机械性能

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High-abrasion furnace black (HAF, grade N330)-filled powdered styrene butadiene rubber [P(SBR/HAF)] was prepared and the particle size distribution, mixing behavior in a laboratory mixer, and mechanical properties of P(SBR/HAF) were studied. A carbon black-rubber latex coagulation method was developed for preparing carbon black-filled free-flowing, noncontact staining SBR powders, with particle diameter less than 0.9 mm, under the following conditions: carbon black content > 40 phr, emulsifier/carbon black ratio > 0.02, and coating resin content > 2.5 phr. Over the experimental range, the mixing torque T. of P(SBR/HAF) was not as sensitive to carbon black content and mixing temperature as that of HAF-filled bale SBR (SBR/HAF), whereas the temperature build-up AT showed little dependency on carbon black content. Compared with SBR/HAF, P(SBR/HAF) showed a 20-30% mixing energy reduction with high carbon black content (>30 phr), which confers to powdered SBR good prospects for internal mixing. Carbon black and the rubber matrix formed a macroscopic homogenization in P(SBR/HAF), and the incorporation step is not obvious in the internal mixing processing results in these special mixing behaviors of P(SBR/HAF). A novel mixing model of carbon black-filled powdered rubber, during the mixing process in an internal mixer, was proposed based on the special mixing behaviors. P(SBR/HAF) vulcanizate showed better mechanical properties than those of SBR/HAF, dependent primarily on the absence of free carbon black and a fine dispersion of filler on the rubber matrix attributed to the proper preparation conditions of noncontact staining carbon black-filled powdered SBR. (C) 2004 Wiley Periodicals, Inc.
机译:制备了高磨耗炉黑(HAF,N330级)填充的粉状丁苯橡胶[P(SBR / HAF)],并测定了粒径分布,在实验室混合机中的混合行为以及P(SBR / HAF)的机械性能被研究了。开发了一种炭黑-橡胶乳胶混凝法,用于制备炭黑含量> 40 phr,乳化剂/炭黑比为以下条件的粒径小于0.9 mm的炭黑填充的自由流动,非接触染色的SBR粉末。 > 0.02,且涂料树脂含量> 2.5 phr。在实验范围内,P(SBR / HAF)的混合扭矩T.对炭黑含量和混合温度的敏感性不如HAF填充的SBR(SBR / HAF),而温度升高AT显示对炭黑含量的依赖性很小。与SBR / HAF相比,P(SBR / HAF)的混合能量降低了20-30%,且炭黑含量高(> 30 phr),这为粉状SBR带来了良好的内部混合前景。炭黑和橡胶基体在P(SBR / HAF)中形成了宏观的均质化,并且在内部混合过程中掺入步骤不明显,导致P(SBR / HAF)的这些特殊混合行为。基于内混合器的特殊混合行为,提出了一种新型的炭黑填充橡胶混合模型。 P(SBR / HAF)硫化橡胶显示出比SBR / HAF更好的机械性能,这主要归因于无接触污点填充炭黑的适当制备条件,从而导致游离碳黑的缺乏和填料在橡胶基质上的良好分散。粉末状SBR。 (C)2004年Wiley Periodicals,Inc.

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