Opdahl Hanna B, Jensen David W
Department of Civil Engineering, Brigham Young University, Provo, UT 84602, USA.
Jensen Technologies, LLC, 525 W 3050 S, Mapleton, UT 84664, USA.
Materials (Basel). 2021 Apr 20;14(8):2079. doi: 10.3390/ma14082079.
This study analyzes the buckling behavior of 8-node IsoTruss structures with outer longitudinal members. IsoTruss structures are light-weight composite lattice columns with diverse structural applications, including the potential to replace rebar cages in reinforced concrete. In the current work, finite element analyses are used to predict the critical buckling loads of structures with various dimensions. A dimensional analysis is performed by: deriving non-dimensional Π variables using Buckingham's Π Theorem; plotting the Π variables with respect to critical buckling loads to characterize trends between design parameters and buckling capacity; evaluating the performance of the outer longitudinal configuration with respect to the traditional, internal longitudinal configuration possessing the same bay length, outer diameter, longitudinal radius, helical radius, and mass. The dimensional analysis demonstrates that the buckling capacity of the inner configuration exceeds that of the equivalent outer longitudinal structure for the dimensions that are fixed and tested herein. A gradient-based optimization analysis is performed to minimize the mass of both configurations subject to equivalent load criteria. The optimized outer configuration has about 10.5% less mass than the inner configuration by reducing the outer diameter whilst maintaining the same global moment of inertia.
本研究分析了带有外部纵向构件的8节点等桁架结构的屈曲行为。等桁架结构是一种轻质复合晶格柱,具有多种结构应用,包括有可能替代钢筋混凝土中的钢筋笼。在当前工作中,使用有限元分析来预测不同尺寸结构的临界屈曲载荷。通过以下方式进行量纲分析:使用白金汉π定理推导无量纲π变量;绘制π变量相对于临界屈曲载荷的关系图,以表征设计参数与屈曲能力之间的趋势;评估具有相同跨度长度、外径、纵向半径、螺旋半径和质量的外部纵向配置相对于传统内部纵向配置的性能。量纲分析表明,对于本文中固定并测试的尺寸,内部配置的屈曲能力超过了等效的外部纵向结构。进行基于梯度的优化分析,以在等效载荷标准下使两种配置的质量最小化。通过减小外径同时保持相同的整体惯性矩,优化后的外部配置比内部配置的质量减少了约10.5%。