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首页> 外文期刊>Journal of Applied Polymer Science >Blast furnace slags as functional fillers on rheological, thermal, and mechanical behavior of thermoplastics
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Blast furnace slags as functional fillers on rheological, thermal, and mechanical behavior of thermoplastics

机译:高炉矿渣作为功能性填料对热塑性塑料的流变,热和机械性能的影响

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Blast furnace slags (BFS) is a secondary byproduct of iron industry, which has a combination of acidic and basic oxides and show a complex, multiphase structure. If appropriately tailored, BFS could be an effective functional filler, improving the property profile of thermoplastics such as polypropylene (PP) and polystyrene (PS). As a raw material, the proposed filler may introduce both economic and ecological advantages, as it is considered an inexpensive secondary product rather than a natural resource. The current study aims at investigating the effect of incorporating BFS as a micro-sized filler on the rheological, thermal, and mechanical behavior of PP and PS. BFS types in this study are air-cooled, crystalline, and amorphous, grounded types. Both types are ground into 71, 40, and 20 mu m batches and introduced in 10, 20, and 30 weight fractions via melt kneading. Mixtures are then formed into 4-mm and 2-mm thick plates via compression molding. Slight increase in rheological factors is observed with increasing filler loading. BFS hinders the crystallization of PP, resulting in slight increase of crystallization temperatures (T-c) and lowering of crystallization enthalpy (Delta H-c). No significant effect of filler on transition temperatures (T-g) is reported. Mechanically, BFS increases the tensile modulus of PP, but decreases its strength. For PS formulations, a modest toughening effect is observed by slag filler. (c) 2015 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2016, 133, 43021.
机译:高炉矿渣(BFS)是钢铁工业的副产品,具有酸性和碱性氧化物的组合,并显示出复杂的多相结构。如果适当调整,BFS可能是有效的功能性填料,从而改善了热塑性塑料(如聚丙烯(PP)和聚苯乙烯(PS))的性能。作为原料,提出的填料可以带来经济和生态优势,因为它被认为是廉价的副产品,而不是自然资源。当前的研究旨在调查将BFS用作微细填料对PP和PS的流变,热和机械性能的影响。本研究中的BFS类型为风冷,结晶和无定形接地类型。两种类型均被研磨成71、40和20μm的批次,并通过熔融捏合以10、20和30重量份引入。然后通过压模将混合物形成4毫米和2毫米厚的板。随着填料含量的增加,流变因素略有增加。 BFS阻碍了PP的结晶,导致结晶温度(T-c)略有增加,结晶焓(Delta H-c)降低。没有发现填料对转变温度(T-g)有显着影响。在机械上,BFS会增加PP的拉伸模量,但会降低其强度。对于PS配方,通过炉渣填料观察到适度的增韧效果。 (c)2015 Wiley Periodicals,Inc. J. Appl。 Polym。科学2016、133、43021。

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