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基于变形机动分析的薄壁箱梁畸变效应研究
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作者 刘泽翔 张元海 《铁道学报》 EI CAS CSCD 北大核心 2024年第6期173-180,共8页
提出一种通过角点位移分析箱梁畸变效应的理论解析法。基于变形机动分析,以分解的角点位移描述和分析箱梁畸变行为;根据应变假设和闭合箱室满足的翘曲位移连续性条件推导畸变翘曲位移及应力分布模式;根据势能驻值原理,建立以角点位移为... 提出一种通过角点位移分析箱梁畸变效应的理论解析法。基于变形机动分析,以分解的角点位移描述和分析箱梁畸变行为;根据应变假设和闭合箱室满足的翘曲位移连续性条件推导畸变翘曲位移及应力分布模式;根据势能驻值原理,建立以角点位移为未知量的畸变控制微分方程。通过数值算例,验证解析理论和计算方法的正确性。结果表明:按翘曲模式分析的截面翘曲位移沿板宽按直线分布,翘曲正应力的分布与在板元弯曲假设下的应力分布规律相同;考虑泊松比影响后的横向弯矩相比于忽略泊松比时增大未超过0.6%;角点沿垂直顶(底)板方向的畸变位移大于其沿垂直腹板方向的位移分量;腹板与顶板交点处的翘曲正应力和横向弯矩小于腹板与底板交点处的相应值;腹板倾角变化对翘曲正应力和横向弯矩有显著影响,合理减小腹板倾角可一定程度减小翘曲正应力和横向弯矩。 展开更多
关键词 薄壁箱梁 畸变效应 变形机动分析 角点位移 势能驻值原理
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Dynamic probabilistic analysis of stress and deformation for bladed disk assemblies of aeroengine 被引量:3
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作者 白斌 白广忱 《Journal of Central South University》 SCIE EI CAS 2014年第10期3722-3735,共14页
In order to describe and control the stress distribution and total deformation of bladed disk assemblies used in the aeroengine, a highly efficient and precise method of probabilistic analysis which is called extremum... In order to describe and control the stress distribution and total deformation of bladed disk assemblies used in the aeroengine, a highly efficient and precise method of probabilistic analysis which is called extremum response surface method(ERSM) is produced based on the previous deterministic analysis results with the finite element model(FEM). In this work, many key nonlinear factors, such as the dynamic feature of the temperature load, the centrifugal force and the boundary conditions, are taken into consideration for the model. The changing patterns with time of bladed disk assemblies about stress distribution and total deformation are obtained during the deterministic analysis, and at the same time, the largest deformation and stress nodes of bladed disk assemblies are found and taken as input target of probabilistic analysis in a scientific and reasonable way. Not only their reliability, historical sample, extreme response surface(ERS) and the cumulative probability distribution function but also their sensitivity and effect probability are obtained. Main factors affecting stress distribution and total deformation of bladed disk assemblies are investigated through the sensitivity analysis of the model. Finally, compared with the response surface method(RSM) and the Monte Carlo simulation(MCS), the results show that this new approach is effective. 展开更多
关键词 bladed disk assemblies probabilistic analysis finite element model extremum response surface method sensitivity analysis transient dynamic analysis
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