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圆柱螺旋弹簧疲劳强度的可靠性设计 被引量:2
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作者 余东满 李晓静 +1 位作者 王朝龙 陈春玲 《机械设计与制造》 北大核心 2007年第8期19-20,共2页
指出传统机械设计的缺陷,结合现代机械设计理论,并基于应力和强度干涉模型,介绍了圆柱螺旋弹簧疲劳强度的可靠性设计,同时利用实例,进一步阐明了设计步聚。对于重要或有可靠性要求的圆柱螺旋弹簧提供了可行的设计方法。
关键词 可靠性 应力和强度 圆柱螺旋弹簧
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碟式离心机转鼓筒体的动态可靠性研究
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作者 郑明亮 《化工设备与管道》 CAS 北大核心 2024年第3期59-63,共5页
以碟式离心机转鼓为研究对象,建立考虑载荷时间历程和结构参数同为随机性的结构动态可靠性模型,得到转鼓筒体的可靠度和失效率随时间变化规律。首先利用Lagrange方程,建立转鼓与分离物流固耦合关系的解析动力学模型;然后以有限元仿真计... 以碟式离心机转鼓为研究对象,建立考虑载荷时间历程和结构参数同为随机性的结构动态可靠性模型,得到转鼓筒体的可靠度和失效率随时间变化规律。首先利用Lagrange方程,建立转鼓与分离物流固耦合关系的解析动力学模型;然后以有限元仿真计算软件为平台,施加流固耦合载荷,采用随机抽样,得到转鼓筒体应力分布的统计特性;最后应用随机过程和应力与强度干涉理论,给出结构动态可靠性的评估指标。结论表明:碟式离心机正常工况下,最大应力集中区发生在沉渣区部位,其等效应力呈现时变正态分布,连续工作2000 h后,转鼓筒体强度满足要求的概率低于80%,寿命符合“浴盆”曲线中早期失效的特征,这为高速碟式分离机的动态优化设计奠定了基础。 展开更多
关键词 碟式离心机 转鼓体 应力和强度 动态可靠性
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Crack initiation stress and strain of jointed rock containing multi-cracks under uniaxial compressive loading: A particle flow code approach 被引量:16
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作者 范祥 KULATILAKE P H S W +1 位作者 陈新 曹平 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第2期638-645,共8页
The ratio of crack initiation stress to the uniaxial compressive strength(SCI,B/SUC,B) and the ratio of axial strain at the crack initiation stress to the axial strain at the uniaxial compressive strength(B,UCB,CI,A,A... The ratio of crack initiation stress to the uniaxial compressive strength(SCI,B/SUC,B) and the ratio of axial strain at the crack initiation stress to the axial strain at the uniaxial compressive strength(B,UCB,CI,A,A/SSSS) were studied by performing numerical stress analysis on blocks having multi flaws at close spacing's under uniaxial loading using PFC3 D. The following findings are obtained: SCI,B/SUC,B has an average value of about 0.5 with a variability of ± 0.1. This range agrees quite well with the values obtained by former research. For joint inclination angle, β=90°,B,UCB,CI,A,A/SSSS is found to be around 0.48 irrespective of the value of joint continuity factor, k. No particular relation is found betweenB,UCB,CI,A,A/SSSS and β; however, the average B,UCB,CI,A,A/SSSS seems to slightly decrease with increasing k. The variability ofB,UCB,CI,A,A/SSSS is found to increase with k.Based on the cases studied in this work,B,UCB,CI,A,A/SSSS ranges between 0.3 and 0.5. This range is quite close to the range of 0.4to 0.6 obtained for SCI,B/SUC,B. The highest variability of ± 0.12 forB,UCB,CI,A,A/SSSS is obtained for k=0.8. For the remaining k values the variability ofB,UCB,CI,A,A/SSSS can be expressed within ± 0.05. This finding is very similar to the finding obtained for the variability of SCI,B/SUC,B. 展开更多
关键词 jointed rock multi flaws uniaxial loading PFC3D model crack initiation stress(SCI B) axial strain at crack initiation
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Finite element analysis of road structure containing top-down crack within asphalt concrete layer 被引量:2
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作者 PIRMOHAMMAD Sadjad MAJD-SHOKORLOU Yousef 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第1期242-255,共14页
In this paper, a four-layered road structure containing a top-down crack is investigated by performing finite element analyses in ABAQUS. In this study, in addition to the vertical load of a vehicle wheel, the horizon... In this paper, a four-layered road structure containing a top-down crack is investigated by performing finite element analyses in ABAQUS. In this study, in addition to the vertical load of a vehicle wheel, the horizontal load as well as its position with respect to the crack is also considered in the analyses, and the crack tip parameters including stress intensity factors(SIFs) and T-stress are then calculated. Moreover, influence of elastic modulus and thickness of the pavement layers on the crack tip parameters is studied. Results show that the horizontal and vertical loads along with their position with respect to the crack, elastic modulus and thickness of the road layers influence the crack tip parameters(KⅠ, KⅡ and T-stress) significantly. It was also found that for the cases that the vehicle wheel is positioned near the crack plane, only the shear deformation mode is observed at the crack tip;while, for the vehicle wheel positions far from the crack, only the opening mode is observed, and between these positions, both the opening and shear deformation modes(i.e., mixed mode Ⅰ/Ⅱ) are observed at the crack tip. 展开更多
关键词 asphalt concrete top-down crack stress intensity factors T-STRESS horizontal load vertical load
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