Loading...
Search for: hinges
0.011 seconds
Total 44 records

    Performance of circular opening in beam web connections

    , Article Life Science Journal ; Volume 9, Issue 3 , 2012 , Pages 1377-1383 ; 10978135 (ISSN) Momenzadeh, S. B ; Sharif University of Technology
    Abstract
    Fragile behavior in the area around the connections which is tangent on beam to column and also incidence of brittle cracks and failures in this area, in the event of severe ground shaking, are the main problems and disadvantages that have negative effect on the performance of steel bending frames and would have restrictions effect on the of the frame's plasticity behavior. To solve the problem of bending the frame, two methods have been proposed. In the first method, the connection will be strengthened so that has enough resistance and sufficient strength to prevent cracks and failures to non-elastic deformation of the frame in the inner part of beams be answered. In the second method,... 

    On the analytical model of semi-hinged steel connections, using plate theory

    , Article Thin-Walled Structures ; Volume 40, Issue 6 , 2002 , Pages 487-501 ; 02638231 (ISSN) Mofid, M ; Azizpour, S ; McCabe, S. L ; Sharif University of Technology
    2002
    Abstract
    An analytical method is presented that can be used to determine the behavior of a particular steel beam-to-column top and seat angle connection with double web angles. This article demonstrates a closed form solution of the equations of deformation, for this type of connection. Besides, a step-by-step analytical procedure for establishment of the linear part of M-θ curve of this form of connection is developed. However, this technique can properly be extended to the non-linear regions, which is not considered in this article. The correctness of the results has been ascertained by a comparison, using experimental approach as well as different analytical technique; and very good agreement has... 

    Experimental evaluation of steel moment resisting frames with a nonlinear shear fuse

    , Article Joint Geotechnical and Structural Engineering Congress 2016, 14 February 2016 through 17 February 2016 ; 2016 , Pages 624-634 ; 9780784479742 (ISBN) Mahmoudi, F ; Dolatshahi, K.M ; Mahsuli, M ; Shahmohammadi, A ; Nikoukalam, M.T ; Sharif University of Technology
    American Society of Civil Engineers (ASCE)  2016
    Abstract
    This paper presents the experimental investigation of an innovative energy dissipation system in steel moment resisting frames. In the proposed system, a replaceable beam with a smaller cross-section than that of the main beam is placed at the mid span of the beam designed to act as a shear fuse. This shifts the location of the plastic hinging from the end of the beam to the middle since the shear fuse yields in shear prior to the flexural yielding of the main beam. This system eliminates the need to comply with the rigorous limitation on the beam span-To-depth ratio that is proposed by seismic design codes to ensure the formation of plastic hinges at the two ends of the beam. Moreover, this... 

    Seismic performance of reduced web section moment connections

    , Article International Journal of Steel Structures ; Volume 17, Issue 2 , 2017 , Pages 413-425 ; 15982351 (ISSN) Momenzadeh, S ; Kazemi, M. T ; Hoseinzade Asl, M ; Sharif University of Technology
    Korean Society of Steel Construction  2017
    Abstract
    Seismic behavior of beam-to-column connections can be improved by shifting the location of inelasticity away from the column’s face. Such connections can be achieved by reducing the flange area at a specific distance from the beam-column connection, called reduced beam section (RBS), or by reducing web area by introducing a perforation into the web, called reduced web section (RWS). This paper presents a parametric study that is carried out on the effect of the perforation size, perforation location, and the beam span length in the RWS connections, using finite element modeling. Next, an interaction formula is derived for design purposes, and a step by step design method is developed.... 

    Mechanism analysis of steel frames considering moment–shear interaction

    , Article Advances in Structural Engineering ; 2018 ; 13694332 (ISSN) Kazemi, M. T ; Sharifi, M ; Yang, J ; Sharif University of Technology
    SAGE Publications Inc  2018
    Abstract
    Considering the interaction of flexural moment and shear force in the steel frames with haunch or intermediate beam length and eccentrically braced frames with intermediate link length is a major concern of the structural analysis and design. This article contains two stages. In the first stage, to investigate the moment–shear interaction for the highly ductile steel I-sections, a study is carried out using finite element analysis and a simple and practical relationship is developed. In the second stage, a simple approach based on virtual work method for assemblage of interconnected rigid bodies is employed to consider collapse mechanisms with mixed hinges. Using this approach, the... 

    Multi-objective optimization of piezoelectric microactuator using genetic algorithms

    , Article 2008 ASME International Mechanical Engineering Congress and Exposition, IMECE 2008, Boston, MA, 31 October 2008 through 6 November 2008 ; Volume 13, Issue PART B , 2009 , Pages 723-730 ; 9780791848746 (ISBN) Esteki, H ; Hasannia, A ; Sharif University of Technology
    2009
    Abstract
    In flex-tensional piezoactuators, due to the low displacement of piezostacks, a compliant mechanism is used to amplify displacement of piezostack. In this paper, optimization of a compliant mechanism with corner-filleted flexure hinges is carried out using real-coded genetic algorithms (GAs) to avoid trapping in local optimums. The objective functions are displacement amplification and stiffness of mechanism and design variables are cross-sectional size and material used. The constraints which are applied on mechanism are based on piezostack dimensions and manufacturing limits. Displacement amplification and stiffness are calculated using strain energy and Castigliano's displacement theorem.... 

    Mechanism analysis of steel frames considering moment–shear interaction

    , Article Advances in Structural Engineering ; Volume 22, Issue 1 , 2019 , Pages 254-267 ; 13694332 (ISSN) Kazemi, M. T ; Sharifi, M ; Yang, J ; Sharif University of Technology
    SAGE Publications Inc  2019
    Abstract
    Considering the interaction of flexural moment and shear force in the steel frames with haunch or intermediate beam length and eccentrically braced frames with intermediate link length is a major concern of the structural analysis and design. This article contains two stages. In the first stage, to investigate the moment–shear interaction for the highly ductile steel I-sections, a study is carried out using finite element analysis and a simple and practical relationship is developed. In the second stage, a simple approach based on virtual work method for assemblage of interconnected rigid bodies is employed to consider collapse mechanisms with mixed hinges. Using this approach, the... 

    Kinematics and Dynamic Analysis of a Compliant Parallel Mechanism with Flexible Links for Micro Applications

    , M.Sc. Thesis Sharif University of Technology Yaghoubi, Reza (Author) ; Sayyadi, Hassan (Supervisor)
    Abstract
    In this research dynamic modeling of a 3-DOF (degree of freedom) compliant parallel mechanism with flexible intermediate links has been investigated. Unlike conventional rigid mechanisms that gain their mobility from movable joints, the compliant mechanisms transmit or transform through elastic deformation of flexible members (flexible connector and joint), displacement, force, or energy from input into output. Eliminating clearance, friction, wear and demand of lubrication in compliant mechanisms, and having monolithic structure provides high-precision motion with micro/nanometer level resolution for them. Therefore compliant mechanisms play a significant role in modern technologies such as... 

    Investigation of Strength and Ductility of Hinged Khorjini Connection

    , M.Sc. Thesis Sharif University of Technology Hosseini, Sajjad (Author) ; Moghaddam, Hassan (Supervisor) ; Eskandari, Morteza (Co-Advisor)
    Abstract
    Khorjini connection is a type of connection in steel frames, in which the beam remains continuous at the intersection with column. In its ordinary form, this beam is connected to the face of column section using upper and lower angles. This type of connection is frequently used in construction of steel frames in Iran due to economic advantages and ease of fabrication. However since it is rarely used in other countries, its behavior and method of design is not described in international references and standards. The failure of the connections is a dominant type of seismic fraction in a building (The main reason of structural failures in Manjil and Roudbar earthquake – 1990). Contrary to the... 

    Nonlinear Seismic Analysis of Steel Moment Resisting Frames Considering Soil-Structure Interaction Effect with the Endurance Time Method

    , M.Sc. Thesis Sharif University of Technology Niki Rashidi, Mohammad Javad (Author) ; Ghannad, Mohammad Ali (Supervisor) ; Esmaeil Pourestekanchi, Homayun (Co-Advisor)
    Abstract
    Dominance over the seismic behavior of structures leads to proper design and the cost reduction of structures according to the structures demand performance. In this regard, the issue of performance-based seismic design of structures has been proposed in which the nonlinear behavior of structures is the basis for the design and evaluation of structures during earthquakes. Moreover, regarding of soil under the structures will change the elastic and inelastic behavior of structures; also, the effects of soil-structure interaction on the seismic performance of structures should be considered to achieve the real behavior of structures. Hence, the purpose of this study is to evaluate the... 

    The effect of gusset plate in moment-rotation behavior of double-web angle connection in braced frames

    , Article Scientia Iranica ; Volume 24, Issue 6 , 2017 , Pages 2712-2725 ; 10263098 (ISSN) Mofid, M ; Wayghan, A. R. T ; Sharif University of Technology
    Abstract
    Double-web angle connection is one of the most rudimentary connections in simple structural systems such as braced frame system. It is essentially presumed in conventional designs that double-web angle connection behaves as a hinge connection. However, in braced frames, due to existence of braces in some bays, in specified locations where gusset plates of brace are placed with beam-to-column connection in one joint, this assumption may not be accurate. This is due to the restraining of the beam from rotation by gusset plates that are placed either on the top and bottom of the beam or only on one side. In such cases, the simple beam-to-column connection may be transformed into a semi-hinge or... 

    Trajectory following of a micro motion stage based on closed-loop FEM simulation

    , Article ASME International Mechanical Engineering Congress and Exposition, IMECE 2007, Seattle, WA, 11 November 2007 through 15 November 2007 ; Volume 11 PART A , 2008 , Pages 155-158 ; 079184305X (ISBN); 9780791843055 (ISBN) Shahidi, A ; Mahboobi, S. H ; Pirouzpanah, S ; Esteki, H ; Sarkar, S ; Sharif University of Technology
    2008
    Abstract
    Micro motion stages are one of the essential components in field of micro robotics and ultra fine positioning systems. This research presents the optimum design of a 3-DOF micro motion stage and its position control using FEM simulation. This stage to be studied uses a 3 RRR flexure hinge base compliant mechanism driven by three piezoelectric stack actuators to provide micro scale planar motion. First of all parametric modeling of the stage will be fulfilled in ANSYS environment utilizing a commercial piezostack and different types of flexure hinges. Hence the Jacobian matrix will be achieved for each case. The optimum selection of the hinge form will be achieved upon results of the previous... 

    Effect of utilizing glass fiber-reinforced polymer on exural strengthening of rc arches

    , Article Scientia Iranica ; Volume 26, Issue 4A , 2019 , Pages 2299-2309 ; 10263098 (ISSN) Moradi, H ; Khaloo, A. R ; Shekarchi, M ; Kazemian, A ; Sharif University of Technology
    Sharif University of Technology  2019
    Abstract
    An experimental study of the. flexural behavior of Reinforced-Concrete (RC) arches strengthened with Glass Fiber-Reinforced Polymer (GFRP) layers was performed. A total of 36 specimens including 3 un-strengthenod (control) and 33 strengthened RC arches were tested under centrally concentrated point load. The variables of this study were steel reinforcement ratio, number of GFRP layers, and location and arrangement of GFRP layers. Failure mode, load-displacement response of specimens, crack propagation patterns, and GFRP debonding were examined. The extrados strengthening method was shown to Ix1 more effective than the intrados strengthening one in improving the failure load and rigidity of... 

    Experimental investigation on the behavior of RC arches strengthened by GFRP composites

    , Article Construction and Building Materials ; Volume 235 , 28 February , 2020 Khaloo, A ; Moradi, H ; Kazemian, A ; Shekarchi, M ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    An experimental investigation on the behavior of RC arches strengthened by glass fiber-reinforced polymer (GFRP) composites is presented. Twelve samples were tested in order to determine influence of arrangement and number of GFRP layers on RC arches having different steel reinforcement ratios. The arches were tested under centrally concentrated point load using displacement control condition. Load-deflection behavior, failure mode, GFRP debonding, angle between hinge formation and supports and crack propagation pattern are studied extensively. Based on test results, extrados strengthening is much more effective than intrados strengthening in increasing ultimate load carrying capacity which... 

    Evaluation of strong column-weak beam criterion in spliced columns of steel moment frames

    , Article Results in Engineering ; Volume 14 , 2022 ; 25901230 (ISSN) Shamszadeh, M. M ; Maleki, S ; Sharif University of Technology
    Elsevier B.V  2022
    Abstract
    In the seismic design of steel special moment frames, it is necessary to ensure that columns are generally stronger than beams. This reduces the probability of a weak story failure mechanism of the frame and ensures the formation of beams' plastic hinges earlier than the columns'. This criterion is known as strong column-weak beam (SCWB) in seismic design codes and is checked by a formula in the form of a ratio of total flexural strengths of columns to beams framing at each joint. It is common practice to ignore the column section change at the splice location and to use the flexural strength of the larger column section in evaluating this ratio. In this paper, several steel special moment... 

    Dynamic Modeling of Micro Elastic Robot in Micro Positioning Application

    , M.Sc. Thesis Sharif University of Technology Hassani, Hanif (Author) ; Zohoor, Hassan (Supervisor) ; Sohrabpour, Saeid (Supervisor)
    Abstract
    In this work, we want to gain and analyze the dynamic equations of an open four bar mechanism with two flexible links and three flexible hinges. In continue, one of the applications of a 3-RRR mechanism has been mentioned and dynamic equations and angles behavior have been analyzed. The effect of hinge stiffnesses and their sequence has been investigated by using Hamilton principle. In addition, The behavior of the mechanism with flexible links has compared to the mechanism with non-flexible. At last, the results have been validated by ADAMS software.

     

    Investigation on the Effect of Existence of Gusset Plate in Moment-otation Behavior of Double Angle Connection in Braced Frames

    , M.Sc. Thesis Sharif University of Technology Tabkhi Wayghan, Amir Reza (Author) ; Mofid, Massoud (Supervisor)
    Abstract
    Double web angle connection is one of the most simple connections in fabrication in simple frame structural systems. In common design procedures for this type of structural system, it is assumed that double web angle connection behaves as a simple connection, but in this system when bracing used, gusset plates of bracing are connected to top and bottom of double web angle connection, or just in top or bottom, and these gusset plates restraint beam to rotate at the places where it is connected to column. Restraning rotation of beam against column in beam to column connection, may change the classification of connection from simple connection to semi-rigid or even rigid connection. In this... 

    Analyzing and Modeling of Semi-hinged Connections in Steel Structure

    , M.Sc. Thesis Sharif University of Technology Haji kazemi, Mohsen (Author) ; Mofid, Massoud (Supervisor)
    Abstract
    Double angle connections, which are welded to the beam web and bolted to the column flange, are usually used to make hinged or semi-hinged connections. Several models are presented in this study whose geometrical properties are different. The finite element software package is used to develop the finite element analysis of the connections. An analytical method is presented that can be used to determine the behavior and deformation for this type of connection. The correctness of Moment-rotation curves of finite element analysis for each connection has been ascertained by comparison, using analytical technique; and a very good agreement has been obtained  

    Steel Moment-Resisting Frames with Mixed Ductile Moment-Shear Fuse

    , M.Sc. Thesis Sharif University of Technology Alavi, Amir Ali (Author) ; Kazemi, Mohammad Taghi (Supervisor)
    Abstract
    This thesis presents the seismic performance evaluation of steel MRFs with nonlinear replaceable links. Although existing MRFs can provide life safety during a design level earthquake, they are expected to sustain significant damage at the locations of flexural yielding fuses in the beams .These drawbacks can be mitigated by introducing replaceable links at the locations of expected inelastic action. Codes require that the span-to-depth ratio of the beams in moment resisting frames (MRF) should be limited to guarantee the development of plastic hinges with a sufficient length at beam ends. To overcome the abovementioned limits, in this paper a new replaceable shear structural fuse is... 

    On the Characteristic and Behavior of Concrete Structure with Steel Knee Hat Brace

    , M.Sc. Thesis Sharif University of Technology Ziyadidegan, Saeideh (Author) ; Mofid, Massoud (Supervisor)
    Abstract
    Nowadays, the knee bracing system (KBF) takes civil engineer’s attention because of its benefits and properties. This new form of framing is constructed through the knee and the diagonal brace elements. The knee part is a fuse-like component that dissipates energy by the formation of plastic flexural and/or shear hinge, when the building is subjected to severe lateral loads. In this system, the diagonal brace provides most of the lateral stiffness. Also the flexural or shear yielding of the knee element provides the ductility under a severe earthquake. In this way, the damage is concentrated in a secondary member, which can be easily repaired at minimum cost. Floor distortions are reduced...