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11211121金蟲 (小有名氣)
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| 隨著連續(xù)梁和連續(xù)剛構(gòu)廣泛的應(yīng)用,發(fā)現(xiàn)一些橋梁在施工過程中腹板出現(xiàn)裂縫。本文以彈性力學(xué)為依據(jù),運用ansys建立連續(xù)梁、連續(xù)剛構(gòu)橋三維實體模型,計算混凝土腹板三向受力情況下的主拉應(yīng)力,并對比腹板內(nèi)最大主拉應(yīng)力與混凝土抗拉強度的關(guān)系,由此說明腹板產(chǎn)生裂縫的原因。結(jié)合實際橋梁,在采用懸臂現(xiàn)澆法施工時四種工況下混凝土腹板受力狀態(tài),計算得出最大主拉應(yīng)力分別為:1.04MPa、3.93MPa、2.81MPa和-0.47MPa。因此說明豎向預(yù)應(yīng)力能有效控制腹板混凝土的主拉應(yīng)力,為預(yù)防混凝土腹板內(nèi)部主拉應(yīng)力超過混凝土抗拉強度,應(yīng)在施工時先張拉豎向預(yù)應(yīng)力,其次張拉水平預(yù)應(yīng)力鋼筋,最后在張拉豎彎預(yù)應(yīng)力鋼筋。 |
木蟲 (正式寫手)
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| With the continuous beams and rigid frame a wide range of applications found in the construction of some bridges cracks in the web. In this paper, elasticity, based on the use of ansys establishment of continuous beam, continuous rigid frame bridge three-dimensional solid model, the strength of concrete webs by three cases to the main tensile stress, and compared the maximum principal tensile stress within the web and tensile strength of concrete relationship, this shows the reason web cracks. Light of the actual bridge, in situ method using cantilever construction of concrete frames with four types of stress state condition, the maximum principal tensile stress is calculated, respectively: 1.04MPa, 3.93MPa, 2.81MPa and-0.47MPa. Therefore, effective control of vertical webs of prestressed concrete principal tensile stress, for the prevention of concrete principal tensile stress exceeds the internal webs of concrete tensile strength, should be first in the construction of vertical prestress tension, followed by the level of prestress tension steel, and finally tensioned prestressed reinforced vertical curve. |
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