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Wood ash as a supplementary cementing material in foams for thermal and acoustic insulation

机译:木灰作为热和声学绝缘材料泡沫中的补充胶合材料

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This study characterizes a Portland cement based cellular system prepared with a preformed foam. Wood ash, locally sourced from pulp and paper mills, was first characterized and later, blended at up to 20% of the binder. The resulting mixtures were cast at three densities between 1000 and 1400 kg/m(3) and examined for mechanical, thermal and acoustic properties. A phase analysis was performed using X-ray diffraction to identify the components of the wood ash and again, in the hydrated system. The thermal constants were measured using the Transient Plane Heat Source (TPS) technique per ISO 22007-2. Sound absorption and noise reduction coefficients were evaluated using the impedance tube method per ASTM C384-04. The results show that although blending wood ash led to lower compressive strength and elastic modulus, the drop in strength was within 20%. While not as effective in reducing noise, the wood ash led to 20% lower thermal conductivity. These findings offer wood ash as a viable, replenishable and sustainable substitute for Portland cement in insulating foams. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本研究表征了一种用预成型泡沫制备的基于门泥浆的蜂窝系统。从纸浆和造纸厂局部采用木灰,首先进行特征,并以后,将粘合剂的20%混合。所得混合物以1000至1400kg / m(3)的三种密度浇铸,并检查机械,热和声学性质。使用X射线衍射进行相位分析,以在水合系统中鉴定木灰和再次的组分。使用每个ISO 22007-2的瞬态平面热源(TPS)技术测量热常数。使用每个ASTM C384-04的阻抗管方法评估吸声和降噪系数。结果表明,虽然混合木灰导致较低的抗压强度和弹性模量,但强度下降在20%以内。虽然在降低噪音方面没有有效,但木灰导致导热率降低20%。这些调查结果为木灰提供了一种可行,可持续的,可持续的,可持续的,在绝缘泡沫中的波特兰水泥替代品。 (c)2019 Elsevier Ltd.保留所有权利。

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