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The use of ferrocement in the construction of squat grain silos

机译:在矮棚粮仓的建设中使用钢筋混凝土

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In this study, an investigation is made from the statics and economic aspects of the possibility of using the composite material ferrocement on the surfaces of squat cylindrical grain silos. For this purpose, the geometry of two model silos, each of height 5 m and diameter 5 m and 12.5 m, was designed. Five different reinforced plates of 10 and 20 mm thickness were produced to research the most suitable ferrocement plates to be used on the surface of these silos. Most durable reinforcement type for covering the silo surface was determined by pressure and bending tests. Grade 30 and Grade 55 steel plates were also considered for use in covering steel-coated silos. In the statics analysis performed with SAP2000, the least plate thicknesses needed for silos surfaced with Grade 30 and Grade 55 steel were found to be 6.20 mm and 4.70 mm respectively for silos of diameter 5 m, and 6.70 mm and 5.00 mm for silos of diameter 12.5 m. In the economic analysis, it was found that 20 mm thick Type 4 (with a wire diameter of 0.30 mm and a mesh aperture of 2 mm x 2 mm square type) reinforced ferrocement surfacing material was 5.6-6.1 times more economical than Grade 30 steel surfacing material and 4.4-4.7 times more economical than using Grade 55 steel. These results show that ferrocement can be used in place of steel from the point of view both of statics and economy.
机译:在这项研究中,从静力学和经济方面进行了调查,研究了在蹲式圆柱形粮仓表面上使用复合材料加铁的可能性。为此,设计了两个模型筒仓的几何形状,每个筒仓的高度为5 m,直径分别为5 m和12.5 m。生产了五种不同的厚度分别为10和20毫米的增强板,以研究最适合在这些筒仓表面上使用的加铁板。覆盖筒仓表面的最耐用的加固类型是通过压力和弯曲试验确定的。还考虑将30级和55级钢板用于覆盖钢制筒仓。在使用SAP2000进行的静力学分析中,发现直径30 m的筒仓的最小厚度分别为30级和55级钢的筒仓,直径为5 m的筒仓的最小板厚度分别为6.20 mm和4.70 mm,直径筒仓的最小钢板厚度为6.70 mm和5.00 mm 12.5米在经济分析中,发现20毫米厚的4型(线径为0.30毫米,网孔为2毫米x 2毫米方型)增强的铁氧体表面材料比30级钢经济性高5.6-6.1倍堆焊材料的经济性是使用55级钢的4.4-4.7倍。这些结果表明,从静力学和经济性的角度来看,可以使用铁补铁代替钢。

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