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浅析桥梁高墩柱工程施工工艺 被引量:3
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作者 赵德东 《知识经济》 2012年第16期101-101,共1页
随着我国公路桥梁建设步伐不断推进,山区峡谷、跨大江大河公路桥梁不断增加,高敦柱作为此类桥梁的重要组成部分,其施工中的质量控制成为桥梁建设的控制重点,本文通过加强施工中各个环节的质量控制,以消除高墩柱施工出现的垂直度以及混... 随着我国公路桥梁建设步伐不断推进,山区峡谷、跨大江大河公路桥梁不断增加,高敦柱作为此类桥梁的重要组成部分,其施工中的质量控制成为桥梁建设的控制重点,本文通过加强施工中各个环节的质量控制,以消除高墩柱施工出现的垂直度以及混凝土表面的质量问题。 展开更多
关键词 高墩柱 钢筋、模板、混凝土 施工工艺
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Numerical study on explosion-induced fractures of reinforced concrete structure by beam-particle model 被引量:3
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作者 LIU Jun ZHAO ChangBing YUN Bin 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第2期412-419,共8页
In the field of disaster prevention mitigation and protection engineering,it is important to identify the mechanical behaviors of reinforced concrete(RC)under explosive load by simulation.A three dimensional beam-part... In the field of disaster prevention mitigation and protection engineering,it is important to identify the mechanical behaviors of reinforced concrete(RC)under explosive load by simulation.A three dimensional beam-particle model(BPM),which is suitable to simulate the fracture process of RC under explosive load,has been developed in the frame of discrete element method (DEM).In this model,only the elastic deformations of beams between concrete particles were considered.The matrix displacement method(MDM)was employed to describe the relationship between the deformation and forces of the beam.A fracture criterion expressed by stress was suggested to identify the state of the beam.A BPM for steel bar,which can simulate the deformation of steel bar under high loading rate,was also developed based on the Cowper-Symonds theory.A program has been coded using C++language.Experiments of RC slab under explosive load were carried out using the program.Good agreement was achieved between the experimental and simulated results.It is indicated that the proposed theoretical model can well simulate the fracture characteristics of RC slab under explosive load such as blasting pit formation,cracks extension, spallation formation,etc. 展开更多
关键词 explosive load reinforced concrete slab beam-particle model steel bar high loading rate FRACTURE
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