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Production of lightweight gypsum using a vegetal protein as foaming agent

机译:使用植物蛋白作为发泡剂的轻质石膏的生产

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The paper deals with the production of lightweight gypsum composites by means of a vegetal protein foaming agent. Two manufacturing methods, which basically differ in the physical state of the foaming agent used, have been proposed and the relative experimental results have been compared and discussed. The gypsum foam samples have been characterized from several points of view (physical, mechanical and microstructural). Thermal and acoustic properties and also porosity have been investigated in order to evaluate the insulation features of the lightweight gypsum composites. The addition of foaming agent strongly affected the mechanical performance of all the samples and led to a significant modification of the post-cracking behavior. Differences observed in the morphology and porosity, related to the two manufacturing methods, are due to the method of pore-formation, especially to the different amounts of air insufflated within the gypsum pastes which influence, in addition to the porosity, the final microstructure and consequently the insulation performances of the gypsum foams. In fact, the more porous samples, obtained from the addition of the liquid foaming agent, showed both the lower values of thermal conductivity and the better values of sound absorption coefficient, leading to a final lightweight products characterized by improved insulation properties.
机译:本文通过植物蛋白质发泡剂涉及轻质石膏复合材料的生产。已经提出了两种基本上不同于所用发泡剂的物理状态的制造方法,并进行了比较和讨论了相对实验结果。石膏泡沫样品的特征是从几个观点(物理,机械和微观结构)的特征。已经研究了热和声学性能,并且还研究了孔隙率,以评估轻质石膏复合材料的绝缘特征。添加发泡剂强烈影响所有样品的机械性能,并导致对后开裂行为的显着改性。与两种制造方法相关的形态和孔隙率观察到的差异是由于孔隙形成的方法,尤其是由于孔隙率,最终的微观结构和最终的微观结构和因此,石膏泡沫的绝缘性能。事实上,从添加液体发泡剂获得的更多孔的样品,显示出导热率的较低值和吸声系数的更好值,导致最终的轻质产品,其特征在于改善的绝缘性。

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