• 제목/요약/키워드: High Strength Steel for Frame Structure

검색결과 36건 처리시간 0.025초

에너지 흡수형 고력볼트를 사용한 철골 주각부의 동적 거동 특성에 관한 연구 (A Study on the Dynamic Behavior Characteristics of Steel Column Base using Energy Absorbtion High Strength Bolt)

  • 이승재;박재성
    • 한국공간구조학회논문집
    • /
    • 제11권3호
    • /
    • pp.67-76
    • /
    • 2011
  • 주각부는 상부의 강구조와 철근콘크리트조 기초의 접합부로써 매우 중요한 부분이다. 현재 국내외 강구조 골조 공사에서 사용되는 주각부의 형식은 크게 구분하여 노출형 주각부 근권형 주각부, 매입형 주각부라고 할 수 있다. 이 중에서 부재의 재사용 및 재활용을 최우선으로 고려한다면 노출형 주각부가 가장 유리하다. 본 연구에서는 이러한 노출형 주각부의 시공 성능 및 역학적 성능을 획기적으로 개선할 수 있는 형태의 강구조 선형상 노출형 주각부를 개발하고, 구조 성능 평가를 위한 탄소성 재하실험을 수행하였다. 그 결과 개발된 신형상 노출형 주각부는 수평 방향과 수직 방향의 시공 오차를 현장에서 간단히 흡수하여 기존 노출형 주각부의 시공 불량을 사전에 방지함으로써 구조 성능을 발휘한다. 또한 에너지 흡수형 고력볼트를 사용함으로써 변형 성능이 증가함을 알 수 있었다.

알루미늄 압출재를 사용한 철도차량차체의 단위 압출재 최적설계 (An Optimal Design for Truss Core Unit of Railway Carbody of Aluminum Extrusion Plate)

  • 장창두;하윤석;조영천;신광복
    • 한국철도학회논문집
    • /
    • 제6권3호
    • /
    • pp.194-202
    • /
    • 2003
  • To make railway carbody light in weight has advantages at some aspects of both manufacturing and maintenance. Recently, railway carbodys of steel structure have been lightened their weight by using aluminum extrusion plate. for the additional lightening of railway carbody, an optimal design which maintains proper strength and minimizes weight must be achieved. Optimization which is used with finite element analysis for aluminum extrusion plate has the disadvantage of consuming much time. In this paper, the method of equivalent material property which is available to FEA code is established using the method of equivalent stiffness. This method for plate is expanded into the method for railway carbody structure with plates and shells. An objective function is established for maximum stiffness of unit aluminum extrusion plate using established method of equivalent material property. We performed an multi-objective optimization using the penalty function method. As a result, recommendable shapes and sizes of unit extrusion plate for under-frame of high speed train is presented.

Capacity spectrum method based on inelastic spectra for high viscous damped buildings

  • Bantilas, Kosmas E.;Kavvadias, Ioannis E.;Vasiliadis, Lazaros K.
    • Earthquakes and Structures
    • /
    • 제13권4호
    • /
    • pp.337-351
    • /
    • 2017
  • In the present study a capacity spectrum method based on constant ductility inelastic spectra to estimate the seismic performance of structures equipped with elastic viscous dampers is presented. As the definition of the structures' effective damping, due to the damping system, is necessary, an alternative method to specify the effective damping ratio ${\xi}eff$ is presented. Moreover, damping reduction factors (B) are introduced to generate high damping elastic demand spectra. Given the elastic spectra for damping ratio ${\xi}eff$, the performance point of the structure can be obtained by relationships that relate the strength demand reduction factor (R) with the ductility demand factor (${\mu}$). As such expressions that link the above quantities, known as R - ${\mu}$ - Τ relationships, for different damping levels are presented. Moreover, corrective factors (Bv) for the pseudo-velocity spectra calculation are reported for different levels of damping and ductility in order to calculate with accuracy the values of the viscous dampers velocities. Finally, to evaluate the results of the proposed method, the whole process is applied to a four-storey reinforced concrete frame structure and to a six-storey steel structure, both equipped with elastic viscous dampers.

The effect of RBS connection on energy absorption in tall buildings with braced tube frame system

  • Shariati, Mahdi;Ghorbani, Mostafa;Naghipour, Morteza;Alinejad, Nasrollah;Toghroli, Ali
    • Steel and Composite Structures
    • /
    • 제34권3호
    • /
    • pp.393-407
    • /
    • 2020
  • The braced tube frame system, a combination of perimeter frame and bracing frame, is one of the systems used in tall buildings. Due to the implementation of this system in tall buildings and the high rigidity resulting from the use of general bracing, providing proper ductility while maintaining the strength of the structure when exposing to lateral forces is essential. Also, the high stress at the connection of the beam to the column may cause a sudden failure in the region before reaching the required ductility. The use of Reduced Beam Section connection (RBS connection) by focusing stress in a region away from beam to column connection is a suitable solution to the problem. Because of the fact that RBS connections are usually used in moment frames and not tested in tall buildings with braced tube frames, they should be investigated. Therefore, in this research, three tall buildings in height ranges of 20, 25 and 30 floors were modeled and designed by SAP2000 software, and then a frame in each building was modeled in PERFORM-3D software under two RBS-free system and RBS-based system. Nonlinear time history dynamic analysis is used for each frame under Manjil, Tabas and Northridge excitations. The results of the Comparison between RBS-free and RBS-based systems show that the RBS connections increased the absorbed energy level by reducing the stiffness and increasing the ductility in the beams and structural system. Also, by increasing the involvement of the beams in absorbing energy, the columns and braces absorb less energy.

H형강 플랜지 두께변화에 따른 구조용집성재 접합부의 탄소성거동 (Elasto-plastic behaviour of structural laminated timber joint by flange thickness of H beam)

  • 김순철;양일승
    • 한국강구조학회 논문집
    • /
    • 제18권3호
    • /
    • pp.385-393
    • /
    • 2006
  • 목구조의 효율적인 이용은 건설산업에 있어 자재생산에 따른 에너지의 대량소비 및 폐기물유발을 감소할 수 있어 친환경적인대응방안으로 주목받고 있다. 이러한 친환경적인 목재의 수요를 증대시키기 위해서는 중 대형 목구조를 필요로 하는데 기존의 단일부재 및 접합부로써 중 대형 목구조를 실현하는 데는 한계가 있다. 그러므로 중 대형 목구조의 가능성을 높이기 위해서는 구조용집성재의 사용 및 다른 재료를 병합한 효율적인 접합방법이 필요로 하게 된다. 본 연구는 중 대형 목구조용 2방향 라멘접합부 개발을 목표로 하여 H형강과 구조용집성재를 사용한 플랜지의 두께(None, 6mm, 9mm, 12mm)이며, 접합부의 휨 실험을 통해 강성, 강도, 구조용집성재의 응력분포, H형강 플랜지의 변형도 및 파괴형상을 파악하였다. 실험결과, H 형강의 플랜지 두께가 9mm, 12mmm인 실험체는 높은 강도와 우수한 변형능력을 발휘하였다. 또한 H 형강의 플랜지 두께가 9mm, 12mm인 실험체의 이력거동은 매우 크고 매우 높은 에너지 흡수능력을 가지고 있었다.

부분 무기둥 비계구조 골조 거동에 관한 실험적 연구 (An Experimental Study on the Behavior of Scaffolding System without a Part of Column)

  • 손기상;정희종
    • 한국안전학회지
    • /
    • 제28권4호
    • /
    • pp.66-71
    • /
    • 2013
  • There is a critically structural problem of scaffolding system when one of scaffold columns is remove to be used as a gangway for their temporary office in the structure before finishing all such as an apartment or office building. This is not used to checking to structurally checking at a construction site. This study is to find out which system at a site will be more effective and low-cost-high effectiveness of aluminum ladder, timber ladder, ${\phi}$1/2 inch steel pipe truss with a type of concave, convex warren truss ladders. Theses are structurally tested with horizontal set as a truss type with 1.8 meter long. Concentrated load has been loaded at the upper center of the system and checked its strain at the bottom center, using aluminum-use strain gage and steel-use gauge have been attached concave warren truss with diameter 1/2 inch has 14% stronger than convex truss. Convex truss has almost same strength as an aluminum ladder truss, it is found out.

자동차부품 제조를 위한 실험용 스피닝머시인 개발 (Development of Spinning Machine for Manufacturing the Automobile Parts)

  • 이항수
    • 한국소성가공학회:학술대회논문집
    • /
    • 한국소성가공학회 2002년도 춘계학술대회 논문집
    • /
    • pp.117-120
    • /
    • 2002
  • This research is related with the development of CNC spinning machine. The purpose is to use for developing the practical parts of automobile such as dams, pulley, etc. The machine structure is made by heavy duty frame for the steel products with high strength. The hydraulic servo system is applied for giving the exactness of control. In order to improve the spinnability, the involute curves can be generated in CNC program In the future, this spinning machine is applicable to development of all the parts of industry such as electric parts, automobile parts, aerospace and the military supplies.

  • PDF

Performance-based and damage assessment of SFRP retrofitted multi-storey timber buildings

  • Vahedian, Abbas;Mahini, Seyed Saeed;Glencross-Grant, Rex
    • Structural Monitoring and Maintenance
    • /
    • 제2권3호
    • /
    • pp.269-282
    • /
    • 2015
  • Civil structures should be designed with the lowest cost and longest lifetime possible and without service failure. The efficient and sustainable use of materials in building design and construction has always been at the forefront for civil engineers and environmentalists. Timber is one of the best contenders for these purposes particularly in terms of aesthetics; fire protection; strength-to-weight ratio; acoustic properties and seismic resistance. In recent years, timber has been used in commercial and taller buildings due to these significant advantages. It should be noted that, since the launch of the modern building standards and codes, a number of different structural systems have been developed to stabilise steel or concrete multistorey buildings, however, structural analysis of high-rise and multi-storey timber frame buildings subjected to lateral loads has not yet been fully understood. Additionally, timber degradation can occur as a result of biological decay of the elements and overloading that can result in structural damage. In such structures, the deficient members and joints require strengthening in order to satisfy new code requirements; determine acceptable level of safety; and avoid brittle failure following earthquake actions. This paper investigates performance assessment and damage assessment of older multi-storey timber buildings. One approach is to retrofit the beams in order to increase the ductility of the frame. Experimental studies indicate that Sprayed Fibre Reinforced Polymer (SFRP) repairing/retrofitting not only updates the integrity of the joint, but also increases its strength; stiffness; and ductility in such a way that the joint remains elastic. Non-linear finite element analysis ('pushover') is carried out to study the behaviour of the structure subjected to simulated gravity and lateral loads. A new global index is re-assessed for damage assessment of the plain and SFRP-retrofitted frames using capacity curves obtained from pushover analysis. This study shows that the proposed method is suitable for structural damage assessment of aged timber buildings. Also SFRP retrofitting can potentially improve the performance and load carrying capacity of the structure.

Experimental seismic behaviour of L-CFST column to H-beam connections

  • Zhang, Wang;Chen, Zhihua;Xiong, Qingqing;Zhou, Ting;Rong, Xian;Du, Yansheng
    • Steel and Composite Structures
    • /
    • 제26권6호
    • /
    • pp.793-808
    • /
    • 2018
  • In this study, the seismic performance of the connections between L-shaped columns composed of concrete-filled steel tubes (L-CFST columns) and H-beams used in high-rise steel frame structures was investigated. Seven full-scale specimens were tested under quasi-static cyclic loading. The variables studied in the tests included the joint type, the axial compression ratio, the presence of concrete, the width-to-thickness ratio and the internal extension length of the side plates. The hysteretic response, strength degradation, stiffness degradation, ductility, plastic rotation capacity, energy dissipation capacity and the strain distribution were evaluated at different load cycles. The test results indicated that both the corner and exterior joint specimens failed due to local buckling and crack within the beam flange adjacent to the end of the side plates. However, the failure modes of the interior joint specimens primarily included local buckling and crack at the end plates and curved corners of the beam flange. A design method was proposed for the flexural capacity of the end plate connection in the interior joint. Good agreement was observed between the theoretical and test results of both the yield and ultimate flexural capacity of the end plate connection.

Research on hysteretic characteristics of EBIMFCW under different axial compression ratios

  • Li, Sheng-cai;Lin, Qiang
    • Earthquakes and Structures
    • /
    • 제22권5호
    • /
    • pp.461-473
    • /
    • 2022
  • Energy-saving block and invisible multiribbed frame composite wall (EBIMFCW) is an important shear wall, which is composed of energy-saving blocks, steel bars and concrete. This paper conducted seismic performance tests on six 1/2-scale EBIMFCW specimens, analyzed their failure process under horizontal reciprocating load, and studied the effect of axial compression ratio on the wall's hysteresis curve and skeleton curve, ductility, energy dissipation capacity, stiffness degradation, bearing capacity degradation. A formula for calculating the peak bearing capacity of such walls was proposed. Results showed that the EBIMFCW had experienced a long time deformation from cracking to failure and exhibited signs of failure. The three seismic fortification lines of the energy-saving block, internal multiribbed frame, and outer multiribbed frame sequentially played important roles. With the increase in axial compression ratio, the peak bearing capacity and ductility of the wall increased, whereas the initial stiffness decreased. The change in axial compression ratio had a small effect on the energy dissipation capacity of the wall. In the early stage of loading, the influence of axial compression ratio on wall stiffness and strength degradation was unremarkable. In the later stage of loading, the stiffness and strength degradation of walls with high axial compression ratio were low. The displacement ductility coefficients of the wall under vertical pressure were more than 3.0 indicating that this wall type has good deformation ability. The limit values of elastic displacement angle under weak earthquake and elastic-plastic displacement angle under strong earthquake of the EBIMFCW were1/800 and 1/80, respectively.