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Development of lightweight ferrocement sandwich panels for modular housing and industralized building systemud

机译:开发用于模块化外壳和工业化建筑系统的轻质金属夹芯板 ud

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摘要

The development and construction of lightweight pre-fabricated sandwich structural elements in building construction is a growing trend in construction industry all over the world due to its high strength-to-weight ratio, reduced weight, and good thermal insulation characteristics. Sandwich construction element consists of thin face sheets or encasement of high performance material and a thick, lightweight and low strength material as core. Ferrocement is regarded as highly versatile thin material possessing superior properties which cannot be matched by other conventional thin materials. Aerated concrete is a cellular lightweight material which exhibits relatively higher strength than the conventional core materials such as foam. Additionally, sandwich construction deals with the problem of delamination of face sheets leading to their premature failure. This can be avoided by providing encasement over the core. This study was focused on the development of ferrocement encased aerated concrete sandwich wall elements, where ferrocement thin box encases a thick core of lightweight aerated concrete. The study was conducted in two phases. First phase involved the development of high workability and high performance slag-cement based mortar mix to cast proposed ferrocement encasement. The developed mortar was aimed to replace the traditional manual method of plastering the wire mesh by a mechanized casting method. The performance of mortar was investigated in terms of compressive strength, strength development, unit weight, effect of curing regime, and partial replacement of cement by weight with 50% and 60% of slag. The second phase of the study embarked on the development and investigation of the characteristics of ferrocement encased lightweight aerated concrete sandwich wall elements. To achieve the objective, about 600 specimens including large size wall elements were cast and tested. Ferrocement encasement was maintained at 12mm throughout the study. The parameters studied were compressive strength, flexural strength, failure mode, load-deflection behaviour, load-deformation behaviour, load-strain behaviour, unit weight, water absorption, initial surface absorption uniformity, and role of type and layers of the wire meshes. The results revealed the potential application of ferrocement encasement of lightweight aerated concrete to produce lightweight structural elements which leads towards the industrialization of building system. Finally, two mathematical models were developed to predict compressive strength of high workability slag-cement based mortars and the ultimate load of ferrocement encased aerated concrete sandwich wall elements. The values predicted from the mathematical models were 95%-100% accurate to the experimental results.
机译:由于其高的重量重量比,减轻的重量和良好的隔热特性,在建筑结构中开发和建造轻型预制夹层结构元件是全世界建筑业的增长趋势。三明治结构元件由薄面板或高性能材料的包装以及厚,轻便和低强度的材料作为芯层组成。增强铁被认为是具有优异性能的高度通用的薄材料,而其他常规薄材料则无法与之匹敌。加气混凝土是一种蜂窝状轻质材料,与传统的芯材(例如泡沫)相比,具有更高的强度。另外,夹心结构解决了导致面板过早分层的分层问题。通过在内核上提供外壳可以避免这种情况。这项研究的重点是开发用钢筋混凝土包裹的加气混凝土夹心墙元件,其中用钢筋混凝土薄盒包裹轻质加气混凝土的厚芯。该研究分两个阶段进行。第一阶段涉及开发高可加工性和高性能矿渣水泥基砂浆混合物,以铸造拟议的钢筋混凝土外包装。研制的砂浆旨在通过机械铸造方法代替传统的手动将金属丝网抹灰的方法。研究了砂浆的性能,包括抗压强度,强度发展,单位重量,固化方式的影响,以及用50%和60%的炉渣按重量部分置换水泥。研究的第二阶段着手于轻型加气混凝土夹心墙单元的铁氧体包裹特性的开发和研究。为了达到这个目的,铸造和测试了包括大型墙体在内的大约600个样品。在整个研究过程中,铁包被包裹在12mm处。所研究的参数是抗压强度,抗弯强度,破坏模式,载荷变形行为,载荷变形行为,载荷应变行为,单位重量,吸水率,初始表面吸收均匀性以及丝网类型和层的作用。结果表明,轻质加气混凝土的钢筋混凝土包裹物在生产轻质结构元件方面的潜在应用,从而导致建筑系统的工业化。最后,建立了两个数学模型来预测高可加工性基于矿渣水泥的砂浆的抗压强度和加气的加气混凝土夹心墙单元的极限载荷。从数学模型预测的值相对于实验结果准确度为95%-100%。

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