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Mechanical Characterization of Gypsum Composites Containing Inert and Insulation Materials from Construction and Demolition Waste and Further Application as A Gypsum Block

机译:建筑和拆除废料中含惰性和绝缘材料的石膏复合材料的机械特性及其在石膏砌块中的应用

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摘要

This article analyzes the feasibility of using construction and demolition waste (expanded polystyrene, ceramic, and concrete waste) in a gypsum matrix to manufacture plaster for interior coatings or for prefabricated elements for interior partitions. To do this, several gypsum specimens were prepared (4 × 4 × 16 cm) incorporating different percentages of waste based on the weight of the gypsum (25%, 50%, and 75% of ceramic, concrete, and a mixture of both). Reference samples were also produced (without additions) to compare the results obtained. The compounds with the best performance were selected and lightened by preparing other samples in which 1/3 and 2/3 of the volume of ceramic, concrete, and mixed waste were replaced with expanded polystyrene (EPS). All samples were tested in the laboratory and the following physical and mechanical characteristics were determined: density, surface hardness, flexural strength, compressive strength, capillary water absorption, and thermal conductivity. Several applications were proposed for the selected compounds. A gypsum block with a sandwich configuration was obtained (40 × 20 × 10 cm) using the optimum compound. The block was further tested regarding its density and compression strength. A comparative analysis showed that it is possible to produce materials with a gypsum matrix by adding ceramic, concrete, and EPS waste, improving the behavior of the traditional gypsum and enabling them to be applied in various construction applications. These applications have a lower environmental impact than ordinary ones because they use less primary raw material, due to the reuse of waste.
机译:本文分析了在石膏基质中使用建筑和拆除废物(膨胀的聚苯乙烯,陶瓷和混凝土废物)制造用于内部涂料的石膏或用于内部隔板的预制构件的可行性。为此,准备了一些石膏样品(4×4×16 cm),其中包含基于石膏重量(25%,50%和75%的陶瓷,混凝土以及两者的混合物)不同百分比的废物。还生产了参考样品(不添加)以比较获得的结果。通过制备其他样品来选择性能最佳的化合物,并使其变轻,在该样品中,分别用膨胀聚苯乙烯(EPS)代替了1 / 3、2 / 3的陶瓷,混凝土和混合废料。所有样品均在实验室进行了测试,并确定了以下物理和机械特性:密度,表面硬度,抗弯强度,抗压强度,毛细管吸水率和热导率。对于所选化合物,提出了几种应用。使用最佳化合物可以得到具有三明治结构的石膏块(40×20×10 cm)。对该块进行了密度和抗压强度的进一步测试。一项比较分析表明,通过添加陶瓷,混凝土和EPS废料,改善传统石膏的性能,使其能够用于各种建筑应用,可以生产具有石膏基质的材料。这些应用程序对环境的影响比普通应用程序低,这是因为由于废物的再利用,它们使用的原材料较少。

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