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钢桥面板疲劳裂纹耦合扩展机理的数值断裂力学模拟 被引量:61
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作者 王春生 翟慕赛 +2 位作者 唐友明 陈惟珍 瞿天宇 《中国公路学报》 EI CAS CSCD 北大核心 2017年第3期82-95,共14页
为研究钢桥面板疲劳裂纹耦合扩展机理,建立焊接分析有限元模型,对纵肋-顶板连接细节、纵肋-横隔板连接细节的焊接全过程进行数值模拟,基于扩展有限元方法建立钢桥面板数值断裂力学模型,对疲劳敏感细节裂纹静、动态扩展行为进行分析。焊... 为研究钢桥面板疲劳裂纹耦合扩展机理,建立焊接分析有限元模型,对纵肋-顶板连接细节、纵肋-横隔板连接细节的焊接全过程进行数值模拟,基于扩展有限元方法建立钢桥面板数值断裂力学模型,对疲劳敏感细节裂纹静、动态扩展行为进行分析。焊接过程分析结果表明:纵肋-顶板连接焊缝区域、纵肋-横隔板焊缝端部区域均存在较大的残余拉应力,峰值接近钢材屈服强度;横隔板挖孔边缘存在切向残余拉应力,峰值约为200 MPa。疲劳裂纹扩展行为分析结果表明:纵肋-顶板连接细节在车辆荷载单独作用下以受压为主,考虑残余应力场作用后细节处于拉-拉应力状态,疲劳裂纹为Ⅰ型主导的Ⅰ-Ⅱ-Ⅲ型复合裂纹;车辆偏载作用下纵肋产生扭转变形,计入残余应力后纵肋-横隔板连接焊缝焊趾受拉开裂,萌生于纵肋焊趾、向纵肋腹板扩展的疲劳裂纹为Ⅰ型主导的Ⅰ-Ⅱ-Ⅲ型复合裂纹,萌生于纵肋-横隔板连接焊缝横隔板侧焊趾和横隔板挖孔边缘的疲劳裂纹为Ⅰ-Ⅱ型复合裂纹;纵肋对接细节的疲劳裂纹为Ⅰ型裂纹,车辆荷载作用下以受拉为主,位于纵肋底板弧形过渡区的裂纹相较于纵肋底板中间区域具备更强的扩展能力。 展开更多
关键词 桥梁工程 钢桥面板 数值断裂力学 疲劳裂纹 耦合扩展机理 扩展有限元法
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Fabrication and performance analyses of 45#steel supports using liquid forging 被引量:1
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作者 Yong-gen SUN Yu-shi QI +3 位作者 Jiao LI Zhi-ming DU Li-li CHEN Li-hua CHEN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第11期908-922,共15页
In this paper,45#steel supports prepared by liquid forging showed excellent performances and the effects of processing techniques on the development of microstructures and mechanical properties of these steel supports... In this paper,45#steel supports prepared by liquid forging showed excellent performances and the effects of processing techniques on the development of microstructures and mechanical properties of these steel supports were researched.The liquid forging process was simulated and technological parameters were optimized via a Pro CAST simulation software.The solidification time,temperature distribution,first principal stress distribution of the 45#steel supports varied with time,temperatures,and position.Two principal parameters,pouring temperature and dwell time,were assessed for their effects on microstructures,mechanical properties,and wear resistance properties of 45#steel supports.Results showed that the optimal pouring temperature of the molten metal and the pressure-holding time were between 1540℃ and 1560℃ and between 35 s and 40 s,respectively.The microstructure,mechanical properties,and fracture behavior of different positions in the support were also discussed,and the central position performed better than the edge because of plastic deformation.Finally,the dynamic solidification process was also investigated and the liquid forging process of 45#steel supports was complex and contained some special metal liquid convection and several plastic deformation stages. 展开更多
关键词 45#steel Liquid forging Numerical simulation Mechanical properties Wear resistance Fracture behavior
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