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桥式盾构反拉板摩阻力分布特征及反拉力理论计算 被引量:1
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作者 龚红勇 《世界桥梁》 北大核心 2020年第4期65-69,共5页
为了解框架桥桥式盾构顶进施工反拉板摩阻力的分布规律,准确计算反拉板的反拉力,在分析桥式盾构法工作原理的基础上,采用ABAQUS建立框架桥桥式盾构顶进三维数值分析模型,分析不同荷载和不同摩擦系数下反拉板摩阻力的变化规律;结合反拉... 为了解框架桥桥式盾构顶进施工反拉板摩阻力的分布规律,准确计算反拉板的反拉力,在分析桥式盾构法工作原理的基础上,采用ABAQUS建立框架桥桥式盾构顶进三维数值分析模型,分析不同荷载和不同摩擦系数下反拉板摩阻力的变化规律;结合反拉板的受力分析,推导反拉力解析计算公式,并进行工程应用验证。结果表明:反拉板的摩阻力随顶进位移的增加,刚开始持续增大,之后呈现周期性的波动,但其最大值变化不大;反拉板的最大摩阻力与上覆荷载、摩擦系数正相关;工程应用中,反拉板施加的反拉力基本随上覆土重量、盾构体入土深度的增加而增大,盾构前端刚出土时达到最大值,随后逐浙减小,直到盾构完全出土后基本维持定值;采用解析计算方法得出的反拉力与现场实测值基本吻合,顶进过程中路基本体无明显变化,框架顶进顺利实施,验证了该解析计算方法的有效性。 展开更多
关键词 框架桥 桥式盾构 反拉板 摩阻力 有限元法 理论计算
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Reverse deep drawability of 5A06 aluminum alloy plate at elevated temperatures 被引量:3
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作者 张志超 徐永超 苑世剑 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第6期1538-1545,共8页
In order to avoid the occurrence of fracture at room temperature in reverse deep drawing of aluminum alloy plate, the warm reverse deep drawing method was proposed. The experiments were conducted at room temperature,... In order to avoid the occurrence of fracture at room temperature in reverse deep drawing of aluminum alloy plate, the warm reverse deep drawing method was proposed. The experiments were conducted at room temperature, 280 and 360 ℃ with a 4.5 mm thick 5A06 aluminum alloy plate. The effect of temperature, blank-holding force and gap on the fracture and wrinkle of the reverse deep drawing process was investigated. A fully coupled thermal-mechanical simulation was carried out to obtain the stress distribution through the commercial software of Abaqus/Explicit. The results show that the fracture is avoided at 280 ℃ since the bending-induced stress gradient in the transient area between the inside corner and the straight wall decreases from 505 MPa at RT to 72 MPa at 280 ° C. Although the fracture is avoided as the temperature increases, the wrinkle occurs at the outside die corner at temperature over 280 ° C, where the circumferential compressive stress becomes larger than that at the inside. As the temperature increases to 360 ℃, the fracture occurs due to the excessive softening, the tensile stress in the straight wall reaches rapidly to the tensile strength at the beginning of reverse deep drawing. When 1.5t (t=4.5 mm) blank holding gap is applied at 280 ℃, both the fracture and wrinkle can be avoided, and 420 mm deep cups are drawn successfully. 展开更多
关键词 5A06 aluminum alloy PLATE warm reverse deep drawing forming defect
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