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Static behavior of bolt connected steel-concrete composite beam without post-cast zone 无后浇区螺栓连接钢-混凝土组合梁的静力性能
IF 4.6 3区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Pub Date : 2021-01-01 DOI: 10.12989/SCS.2021.38.4.365
Y. Xing, Yun Zhao, Q. Guo, Jingfeng Jiao, Qingyang Chen, Ben-zhao Fu
Although traditional steel-concrete composite beams have excellent structural characteristics, it cannot meet the requirement of quick assembly and repair in the engineering. This paper presents a study on static behavior of bolt connected steel-concrete composite beam without post-cast zone. A three-dimensional finite element model was developed with its accuracy and reliability validated by available experimental results. The analysis results show that in the normal service stage, the bolt is basically in the state of unidirectional stress with the loss of pretightening can be ignored. Parametric studies are presented to quantify the effects of the post-cast zone, size and position of splicing gap on the behavior of the beam. Based on the studies, suggested size of gap and installation order were proposed. It is also confirmed that optimized concrete slab in mid-span can reduce the requirement of construction accuracy.
传统的钢-混凝土组合梁虽然具有优良的结构特性,但不能满足工程中快速组装和维修的要求。本文对无后浇区螺栓连接钢-混凝土组合梁的静力性能进行了研究。建立了三维有限元模型,并通过已有的实验结果验证了模型的准确性和可靠性。分析结果表明:在正常使用阶段,锚杆基本处于单向受力状态,预紧损失可以忽略;参数研究提出了量化后浇筑区,尺寸和位置的拼接缝隙对梁的行为的影响。在此基础上,提出了建议的间隙尺寸和安装顺序。同时也证实了优化跨中混凝土板可以降低施工精度要求。
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引用次数: 1
Steel and Composite Structures 钢结构和组合结构
IF 4.6 3区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Pub Date : 2021-01-01 DOI: 10.12989/SCS.2021.38.6.637
Dongchen Ye, K. Ke, Yiyi Chen
The component-based method is widely used to analyze the initial stiffness of joint in steel structures. In this study, an analytical component model for determining the column face stiffness of square or rectangular hollow section (SHS/RHS) subjected to tension was established, focusing on endplate connections. Equations for calculating the stiffness of the SHS/RHS column face in bending were derived through regression analysis using numerical results obtained from a finite element model database. Because the presence of bolt holes decreased the bending stiffness of the column face, this effect was calculated using a novel plate-spring-based model through numerical analysis. The developed component model was first applied to predict the bending stiffness of the SHS column face determined through tests. Furthermore, this model was incorporated into the component-based method with other effective components, e.g., bolts under tension, to determine the tensile stiffness of the T-stub connections, which connects the SHS column, and the initial rotational stiffness of the joints. A comparison between the model predictions, test data, and numerical results confirms that the proposed model shows satisfactory accuracy in evaluating the bending stiffness of SHS column faces.
基于构件的方法被广泛应用于钢结构节点初始刚度分析。本文以端板连接为重点,建立了确定受拉方形或矩形空心截面(SHS/RHS)柱面刚度的解析构件模型。利用有限元模型数据库的数值结果,通过回归分析,推导出了SHS/RHS柱端面弯曲刚度的计算公式。由于螺栓孔的存在降低了柱表面的抗弯刚度,因此通过数值分析,采用了一种新的基于板弹簧的模型来计算这种影响。将所建立的构件模型首次应用于试验确定的SHS柱端面抗弯刚度的预测。此外,将该模型与其他有效构件(如受拉螺栓)结合到基于构件的方法中,确定连接SHS柱的t形短节连接的抗拉刚度和节点的初始旋转刚度。通过对模型预测、试验数据和数值结果的比较,验证了该模型在计算SHS柱端面抗弯刚度方面具有满意的精度。
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引用次数: 0
The influence of graphene platelet with different dispersions on the vibrational behavior of nanocomposite truncated conical shells 不同分散度的石墨烯血小板对纳米复合材料截锥形壳振动行为的影响
IF 4.6 3区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Pub Date : 2021-01-01 DOI: 10.12989/SCS.2021.38.1.047
M. Khayat, A. Baghlani, S. Dehghan, M. Najafgholipour
This work addresses the free vibration analysis of Functionally Graded Porous (FGP) nanocomposite truncated conical shells with Graphene PLatelet (GPL) reinforcement. In this study, three different distributions for porosity and three different dispersions for graphene platelets have been considered in the direction of the shell thickness. The Halpin–Tsai equations are used to find the effective material properties of the graphene platelet reinforced materials. The equations of motion are derived based on the higher-order shear deformation theory and Sanders's theory. The Fourier Differential Quadrature (FDQ) technique is implemented to solve the governing equations of the problem and to obtain the natural frequencies of the truncated conical shell. The combination of FDQ with higher-order shear deformation theory allows a very accurate prediction of the natural frequencies. The precision and reliability of the proposed method are verified by the results of literature. Moreover, a wide parametric study concerning the effect of some influential parameters, such as the geometrical parameters, porosity distribution, circumferential wave numbers, GPLs dispersion as well as boundary restraint conditions on free vibration response of FGP-GPL truncated conical shell is also carried out and investigated in detail.
本文研究了石墨烯血小板(GPL)增强的功能梯度多孔(FGP)纳米复合材料截顶锥形壳的自由振动分析。在本研究中,考虑了石墨烯薄片在壳厚方向上的三种不同的孔隙度分布和三种不同的分散。利用Halpin-Tsai方程求解石墨烯血小板增强材料的有效材料性能。基于高阶剪切变形理论和桑德斯理论推导了运动方程。利用傅里叶微分正交(FDQ)技术求解了该问题的控制方程,得到了截顶圆锥壳的固有频率。FDQ与高阶剪切变形理论的结合可以非常准确地预测固有频率。文献结果验证了该方法的精度和可靠性。此外,还对几何参数、孔隙度分布、周向波数、gpl色散以及边界约束条件等影响FGP-GPL截顶锥形壳自由振动响应的影响进行了广泛的参数化研究。
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引用次数: 13
Stoneley wave propagation in nonlocal isotropic magneto-thermoelastic solid with multi-dual-phase lag heat transfer 具有多-双相滞后传热的非局域各向同性磁热弹性固体中的斯通利波传播
IF 4.6 3区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Pub Date : 2021-01-01 DOI: 10.12989/SCS.2021.38.2.141
P. Lata, Sukhveer Singh
In the present paper we have investigated the Stoneley wave propagation at the interface of two dissimilar homogeneous nonlocal magneto-thermoelastic media under the effect of hall current applied to multi-dual-phase lag heat transfer. The secular equations of Stoneley waves have been derived by using appropriate boundary conditions. The wave characteristics such as attenuation coefficients, temperature distribution and phase velocity are computed and have been depicted graphically. Effect of nonlocal parameter and hall effect are studied on the attenuation coefficient, phase velocity, temperature distribution change, stress component and displacement component. Also, some particular cases have been discussed from the present study.
本文研究了多双相滞后传热中霍尔电流作用下两种不同均质非局部磁热弹性介质界面处的斯通利波传播。利用适当的边界条件,导出了斯通利波的长期方程。计算了衰减系数、温度分布和相速度等波的特性,并用图形表示。研究了非局部参数和霍尔效应对衰减系数、相速度、温度分布变化、应力分量和位移分量的影响。此外,本文还讨论了一些具体的案例。
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引用次数: 8
Fatigue property analysis of U rib-to-crossbeam connections under heavy traffic vehicle load considering in-plane shear stress 考虑面内剪应力的重型车辆荷载下U型肋-横梁连接疲劳性能分析
IF 4.6 3区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Pub Date : 2021-01-01 DOI: 10.12989/SCS.2021.38.3.271
Haibo Yang, H. Qian, Ping Wang
In this study, the fatigue property of U rib-to-crossbeam connections in orthotropic steel bridge (OSB) crossbeams under heavy traffic vehicle load was investigated considering the effects of in-plane shear stress. The applicability of an improved structural stress (ISS) method was validated for the fatigue behavior analysis of nonwelded arc-shaped cutout regions in multiaxial stress states. Various types of fatigue testing specimens were compared for investigating the equivalent structural stress, fatigue crack initiation positions, and failure modes with the unified standards. Furthermore, the implications of OSB crossbeams and specified loading cases are discussed with respect to the improved method. The ISS method is proven to be applicable for analyzing the fatigue property of nonwelded arc-shaped cutout regions in OSB crossbeams. The used method is essential for gaining a reliable prediction of the most likely failure modes under a specific heavy traffic vehicle load. The evaluated results using the used method are proven to be accurate with a slighter standard deviation. We obtained the trend of equivalent structural stress in arc-shaped cutout regions and validated the crack initiation positions and propagation directions by comparing them with the fatigue testing results. The implications of crossbeam spans on fatigue property are less significant than the effects of crossbeams.
考虑面内剪应力的影响,研究了正交各向异性钢桥(OSB)横梁U型肋连接在重型车辆荷载作用下的疲劳性能。验证了改进的结构应力法在多轴应力状态下非焊接弧形切口疲劳行为分析中的适用性。采用统一的标准,对不同类型的疲劳试样进行对比,研究等效结构应力、疲劳裂纹起裂位置和破坏模式。此外,还讨论了OSB横梁和指定荷载情况对改进方法的影响。结果表明,ISS方法可用于分析OSB梁非焊接弧形切口区的疲劳特性。所使用的方法对于在特定的重型交通车辆荷载下获得最可能的失效模式的可靠预测是必不可少的。用所采用的方法评价的结果是准确的,标准偏差较小。得到了弧形切口区域的等效结构应力变化趋势,并与疲劳试验结果进行了对比,验证了裂纹的起裂位置和扩展方向。梁跨对疲劳性能的影响不如梁的影响显著。
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引用次数: 7
Shear behavior of concrete-encased square concrete-filled steel tube members: Experiments and strength prediction 方钢管混凝土包壳构件的抗剪性能:试验与强度预测
IF 4.6 3区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Pub Date : 2021-01-01 DOI: 10.12989/SCS.2021.38.4.431
Yong Yang, Chen Xin, Yicong Xue, Yunlong Yu, Chaorui Zhang
This paper presents experiments and theoretical analysis on shear behavior of eight concrete-encased square concrete-filled steel tube (CECFST) specimens and three traditional reinforced concrete (RC) specimens. A total of 11 specimens with the test parameters including the shear span-to-depth ratio, steel tube size and studs arrangement were tested to explore the shear performance of CECFST specimens. The failure mode, shear capacity and displacement ductility were thoroughly evaluated. The test results indicated that all the test specimens failed in shear, and the CECFST specimens enhanced by the interior CFST core exhibited higher shear capacity and better ductility performance than that of the RC specimens. When the other parameters were the same, the larger steel tube size, the smaller shear span-to-depth ratio and the existence of studs could lead to the more satisfactory shear behavior. Then, based on the compatible truss-arch model, a set of formulas were developed to analytically predict the shear strength of the CECFST members by considering the compatibility of deformation between the truss part, arch part and the steel tube. Compared with the calculated results based on several current design specifications, the proposed formulas could get more accurate prediction.
本文对8个方形钢管混凝土包壳试件和3个传统钢筋混凝土试件的抗剪性能进行了试验和理论分析。共对11个试件进行了剪切跨深比、钢管尺寸、螺柱布置等试验参数的试验,探讨了CECFST试件的抗剪性能。对其破坏模式、抗剪能力和位移延性进行了全面评估。试验结果表明,所有试件均在剪切过程中破坏,且经CFST内芯加固后的CECFST试件比RC试件具有更高的抗剪能力和更好的延性。在其他参数相同的情况下,钢管尺寸越大、剪切跨深比越小、钉钉的存在越能获得较好的剪切性能。然后,在桁架-拱协调模型的基础上,建立了考虑桁架部分、拱部分和钢管变形协调的CECFST构件抗剪强度解析预测公式。与现行几种设计规范的计算结果相比,本文提出的计算公式能够得到更准确的预测结果。
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引用次数: 1
A non-dimensional theoretical approach to model high-velocity impact on thick woven plates 厚编织板高速碰撞的无量纲理论方法
IF 4.6 3区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Pub Date : 2021-01-01 DOI: 10.12989/SCS.2021.38.6.717
L. Alonso, D. Garcia-Gonzalez, C. Navarro, S. García-Castillo
A theoretical energy-based model to capture the mechanical response of thick woven composite laminates, which are used in such applications as maritime or aerospace, to high-velocity impact was developed. The dependences of the impact phenomenon on material and geometrical parameters were analysed making use of the Vaschy-Buckingham Theorem to provide a non-dimensional framework. The model was divided in three different stages splitting the physical interpretation of the perforation process: a first where different dissipative mechanisms such as compression or shear plugging were considered, a second where a transference of linear momentum was assumed and a third where only friction took place. The model was validated against experimental data along with a 3D finite element model. The numerical simulations were used to validate some of the new hypotheses assumed in the theoretical model to provide a more accurate explanation of the phenomena taking place during a high-velocity impact.
开发了一种基于能量的理论模型,用于捕获用于海事或航空航天等应用的厚编织复合材料层压板对高速撞击的机械响应。利用Vaschy-Buckingham定理分析了冲击现象对材料和几何参数的依赖关系,从而提供了一个无量纲框架。该模型分为三个不同的阶段,将射孔过程的物理解释分开:第一个阶段考虑了不同的耗散机制,如压缩或剪切堵塞,第二个阶段假设了线性动量的转移,第三个阶段只发生了摩擦。通过实验数据和三维有限元模型对模型进行了验证。数值模拟用于验证理论模型中的一些新假设,从而对高速撞击过程中发生的现象提供更准确的解释。
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引用次数: 4
The effect of multi-phase-lag and Coriolis acceleration on a fiber-reinforced isotropic thermoelastic medium 多相滞后和科里奥利加速度对纤维增强各向同性热弹性介质的影响
IF 4.6 3区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Pub Date : 2021-01-01 DOI: 10.12989/SCS.2021.39.2.125
A. Alharbi, S. Said, M. Othman
The three-phase-lag model, thermoelasticity without energy dissipation (G-N II) theory and thermoelasticity with energy dissipation (G-N III) theory are applied to study the effect of rotation on a fiber-reinforced thermoelastic medium. The exact expressions for the physical quantities were obtained by using the normal mode analysis. The numerical results for the field quantities are given in the physical domain and illustrated graphically in the absence and presence of rotation, Coriolis acceleration as well as reinforcement parameters.
采用三相滞后模型、无能量耗散热弹性(G-N II)理论和有能量耗散热弹性(G-N III)理论研究旋转对纤维增强热弹性介质的影响。利用正态模态分析得到了物理量的精确表达式。给出了物理域的场量的数值结果,并用图形说明了在没有和存在旋转、科里奥利加速度以及增强参数的情况下场量的数值结果。
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引用次数: 3
Compressive strength of circular concrete filled steel tubular stubs strengthened with CFRP CFRP加固圆形钢管混凝土桩的抗压强度
IF 4.6 3区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Pub Date : 2021-01-01 DOI: 10.12989/SCS.2021.39.2.189
J. Ou, Y. Shao
The compressive strength of circular concrete filled steel tubular (C-CFST) stubs strengthened with carbon fiber reinforced polymer (CFRP) is studied theoretically. According to previous experimental results, the failure process and mechanism of circular CFRP-concrete filled steel tubular (C-CFRP-CFST) stubs is analyzed, and the loading process is divided into 3 stages, i.e., elastic stage, elasto-plastic stage and failure stage. Based on continuum mechanics, the theoretical model of C-CFRP-CFST stubs under axial compression is established based on the assumptions that steel tube and concrete are both in three-dimensional stress state and CFRP is in uniaxial tensile stress state. Equations for calculating the yield strength and the ultimate strength of C-CFRP-CFST stubs are deduced. Theoretical predictions from the presented equations are compared with existing experimental results. There are a total of 49 tested specimens, including 15 ones for comparison of yield strength and 44 ones for comparison of ultimate strength. It is found that the predicted results of most specimens are within an error limit of 10%. Finally, simplified equations for calculating both yield strength and ultimate strength of C-CFRP-CFST stubs are proposed.
对碳纤维增强聚合物(CFRP)加固圆形钢管混凝土桩的抗压强度进行了理论研究。根据前人的试验结果,分析了圆形cfrp -钢管混凝土桩(C-CFRP-CFST)的破坏过程和机理,并将其加载过程划分为3个阶段,即弹性阶段、弹塑性阶段和破坏阶段。基于连续介质力学,在假设钢管和混凝土均处于三维应力状态,CFRP处于单轴拉应力状态的前提下,建立了C-CFRP-CFST轴压桩的理论模型。推导了C-CFRP-CFST桩的屈服强度和极限强度计算公式。并与已有的实验结果进行了比较。试验试件共49个,其中屈服强度对比15个,极限强度对比44个。结果表明,大多数试件的预测结果误差在10%以内。最后,提出了C-CFRP-CFST桩的屈服强度和极限强度的简化计算公式。
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引用次数: 2
Improving the axial compression capacity prediction of elliptical CFST columns using a hybrid ANN-IP model 利用混合ANN-IP模型改进椭圆CFST柱轴压承载力预测
IF 4.6 3区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Pub Date : 2021-01-01 DOI: 10.12989/SCS.2021.39.3.319
Viet-Linh Tran, Yun Jang, Seung-Eock Kim
This study proposes a new and highly-accurate artificial intelligence model, namely ANN-IP, which combines an interior-point (IP) algorithm and artificial neural network (ANN), to improve the axial compression capacity prediction of elliptical concrete-filled steel tubular (CFST) columns. For this purpose, 145 tests of elliptical CFST columns extracted from the literature are used to develop the ANN-IP model. In this regard, axial compression capacity is considered as a function of the column length, the major axis diameter, the minor axis diameter, the thickness of the steel tube, the yield strength of the steel tube, and the compressive strength of concrete. The performance of the ANN-IP model is compared with the ANN-LM model, which uses the robust Levenberg–Marquardt (LM) algorithm to train the ANN model. The comparative results show that the ANN-IP model obtains more magnificent precision (R^2 = 0.983, RMSE = 59.963 kN, a20-index = 0.979) than the ANN-LM model (R^2 = 0.938, RMSE = 116.634 kN, a20-index = 0.890). Finally, a new Graphical User Interface (GUI) tool is developed to use the ANN-IP model for the practical design. In conclusion, this study reveals that the proposed ANN-IP model can properly predict the axial compression capacity of elliptical CFST columns and eliminate the need for conducting costly experiments to some extent.
本文提出了一种新的高精度人工智能模型ANN-IP,该模型将内点(IP)算法与人工神经网络(ANN)相结合,用于改进椭圆钢管混凝土(CFST)柱轴压承载力预测。为此,利用从文献中提取的145个椭圆CFST柱试验来建立ANN-IP模型。在这方面,轴压能力被认为是柱长、长轴直径、短轴直径、钢管厚度、钢管屈服强度和混凝土抗压强度的函数。将ANN- ip模型与使用鲁棒Levenberg-Marquardt (LM)算法训练的ANN-LM模型的性能进行了比较。对比结果表明,ANN-IP模型的精度(R^2 = 0.983, RMSE = 59.963 kN, a20-index = 0.979)高于ANN-LM模型(R^2 = 0.938, RMSE = 116.634 kN, a20-index = 0.890)。最后,开发了一个新的图形用户界面(GUI)工具,将ANN-IP模型用于实际设计。综上所述,本文提出的ANN-IP模型可以较好地预测椭圆CFST柱的轴压能力,并在一定程度上消除了进行昂贵实验的需要。
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引用次数: 14
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Steel and Composite Structures
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