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Review of creep modelling for predicting of long-term behavior of glued-laminated bamboo structures

机译:蠕变模型综述,用于预测胶合层压竹结构的长期性能

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Glued-laminated bamboo has been widely used to substitute timber as a building material. This material classified as a viscoelastic material because it exhibiting properties that are common to both solid and liquid. Under long-term constant loading, the glued-laminated bamboo structures will experience creep deformation. The mechanical, power law and finite element models are common methods that used to predict the creep for viscoelastic material, some of them have advantages and disadvantages. In this manuscript, modelling of long-term creep is reviewed. The fundamental concepts of creep modelling, the influence of variable load level, and humidity were discussed to develop for computational applications. By using FEA program, a subroutine has been developed by previous researchers to accommodate the effect of orthotropic properties. In the future, the subroutine will be used and developed for numerical creep analysis of glued-laminated bamboo.
机译:胶合层压竹子已被广泛用来代替木材作为建筑材料。该材料归类为粘弹性材料,因为它具有固态和液态共同的特性。在长期恒定的载荷下,胶合层压竹结构会发生蠕变变形。力学,幂定律和有限元模型是用于预测粘弹性材料蠕变的常用方法,其中有些具有优缺点。在本手稿中,对长期蠕变的建模进行了回顾。讨论了蠕变建模的基本概念,可变载荷水平的影响和湿度,以开发计算应用程序。通过使用FEA程序,以前的研究人员已经开发了一个子程序来适应正交各向异性特性的影响。将来,该子例程将用于胶合层压竹子的数值蠕变分析并被开发。

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