特布瓦纳大学综合服务大楼设计检修与钢结构

Diana Ningrum, Handika Setya Wijaya, Ardinand Antonius Umbu Lele
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摘要

工程在土木工程领域的应用正在迅速增长,要求结构工程师,特别是在结构工程领域具有更高的生产力、创造力和创新能力。为了得到最优的截面尺寸,需要分析作用在结构上的梁和柱的力或载荷的大小。在工作荷载的影响下,弯矩承载力将在整个构件中均匀变形。在柔性结构中,作用在每个结构单元上的荷载需要考虑变形力矩。作为设计审查材料,Tribhuwana tungadewi大学综合服务大楼是一座5层的综合服务大楼,其主体结构采用钢结构,将进行设计审查,旨在确定建筑的强度和可靠性。Malang Tribhuwana tungadewi大学综合服务大楼设计综述的结果是使用WF型材的柱(1)钢。350年。175年。7. 11、安全抗弯矩、剪力、轴力和屈曲或屈曲。柱(2)混凝土30cm × 60cm,抗拉、抗剪、抗轴力安全。Block(1)使用WF。350 .175。7. 11、横梁(2)采用wf200。100 .5.5 .8,区块(3)使用WF.400.2000.8.13,区块(4)使用WF 250。125年。6.9、达到所要求的截面高度和次弯应力。楼板使用0.75毫米与10厘米混凝土和10 - 200厘米直径钢筋(f)的粘结,这是安全的力矩,剪力和挠度。连接使用直径为19的a -325型螺栓,可安全抵抗拉力、剪力和承重。使用底板和锚的支撑对拉力、剪切力和轴向力是安全的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
REVIEW DESAIN GEDUNG PELAYANAN TERPADU UNIVERSITAS TRIBHUWANA TUNGGADEWI MALANG DENGAN KONSTRUKSI BAJA
The application of engineering in the field of civil engineering is growing rapidly, requiring more productivity, creativity, and innovation from structural engineers, especially in the field of structural engineering. To get the optimal cross-sectional dimensions, the magnitude of the forces or loads acting on the structure needs to be analyzed for beams and columns. Under the influence of the working load, the moment bearing capacity will deform evenly throughout the elements. In a flexible structure, the load acting on each structural element needs to be taken into account the moment of deformation. As a design review material, the Tribhuwana Tunggadewi University Integrated Service Building is an integrated service building consisting of 5 floors, which in its main structure uses steel construction, a design review will be conducted, which aims to determine the strength and reliability of the construction. The results of the Review on the Design of the Integrated Service Building, Tribhuwana Tunggadewi University, Malang, are Column(1) steel using the WF profile. 350 . 175 . 7. 11, safe against moments, shear forces, axial forces and buckling or buckling. Column (2) concrete 30 cm x 60 cm is safe against tensile forces, shear forces and axial forces. Block (1) uses WF. 350 .175 . 7. 11, beam (2) uses WF 200 . 100 .5.5 .8 , block (3) uses WF.400.2000.8.13, block (4) uses WF 250 . 125 . 6.9, to the required cross-sectional height and secondary flexural stresses. The floor slab uses 0.75 mm bond with 10 cm concrete and 10 - 200 cm diameter reinforcement (f) which is safe against moments, shear forces and deflections. Connections using Type A-325 bolts with a diameter of 19, safe against tensile forces, shear forces, and bearing forces. Supports using base plates and anchors are safe against tensile forces, shear forces and axial forces.
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