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Interaction analysis and optimal design of composite action of plastered straw bale

机译:灰泥草捆复合作用的相互作用分析及优化设计

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Purpose - The purpose of this paper is to assess the effects of cement- and earth-plastered straw bale walls against the appropriate vertical loads.Design/methodology/approach - The effects of contact between two common types of plasters and the stacked straw bale by the optimal design analysis have been assessed in this work with the use of finite element method.Findings - Cement- and earth-plastered straw bale walls have shown adequate resistance against the appropriate vertical loads and showed that the earth-plaster can bear higher stress than the cement plastered straw bale. There is the implication that the collapse or response of the earth-straw bale wall will be significantly higher compared to that of cement-straw bale wall.Practical implications - The stress stability obtained of the analytical walls is adequate after using the best fit variables for the wall height and thickness.Originality/value - The paper shows that the allowable stresses of 70.14 kN/m2 for cement plastered straw bale wall and 73.14 kN/m2 for earth-plastered straw bale wall are higher than the calculated stress values using SAP2000 of 18.836 and 64.2 kN/m2 for cement plastered straw bale wall,respectively.
机译:目的-本文的目的是评估水泥和土层秸秆捆在适当的垂直载荷作用下的设计/方法/方法-两种常见类型的灰泥与堆积的秸秆之间的接触影响研究结果-通过有限元方法对最佳设计分析进行了评估。结果-水泥和土灰泥草捆墙对适当的垂直载荷表现出足够的抵抗力,并表明土灰泥可以承受比水泥灰泥的稻草包。这意味着与水泥-稻草包墙相比,稻草-稻包墙的倒塌或响应将明显更高。实际意义-在使用最佳拟合变量后,分析墙的应力稳定性足够了。原始性/值-本文表明,水泥灰泥草捆壁的许用应力为70.14 kN / m2,土灰泥草捆草壁的许用应力为73.14 kN / m2高于使用SAP2000计算的应力值。水泥灰泥草捆墙分别为18.836和64.2 kN / m2。

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