• 제목/요약/키워드: Thickness of Web

검색결과 197건 처리시간 0.02초

Flexural performance of composite beams with open-web π-shaped steel partially-encased by concrete

  • Liusheng Chu;Yunhui Chen;Jie Li;Yukun Yang;Danda Li;Xing Ma
    • Steel and Composite Structures
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    • 제50권4호
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    • pp.419-428
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    • 2024
  • Prefabricated partially-encased composite (PEC) structural component is widely used in construction industry due to its superior structural performance and easy assembly characteristic. However, the solid web in traditional PEC components tends to split concrete into two halves, thus potentially reduces structural integrity and requires double concrete pouring. To overcome the above disadvantages, a new PEC beam with open-web π-shaped steel is proposed in this paper. Four open-web PEC beams with varying sectional height, flange thickness and web void rate were constructed and tested under flexural loads. During experimental tests, all beams exhibited typical flexural failure modes with strong moment capacities and excellent ductility. Owing to the unique construction form of web opening, steel-concrete bonding properties were enhanced and very small relative steel-concrete slips were observed. Experimental results also showed that the flexural capacity of such PEC beams increased with the increase of the sectional height and flange thickness, while was not affected by the web void rate. At last, a flexural capacity formula of the open-web PEC beam was proposed based on the whole section plastic rule. The formula results agreed well with experimental results.

Compression tests of cold-formed channel sections with perforations in the web

  • Kwon, Young Bong;Kim, Gap Deuk;Kwon, In Kyu
    • Steel and Composite Structures
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    • 제16권6호
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    • pp.657-679
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    • 2014
  • This paper describes a series of compression tests performed on cold-formed steel channel sections with perforations in the web (thermal studs) fabricated from a galvanized steel plate whose thickness ranged from 1.0 mm to 1.6 mm and nominal yield stress was 295 MPa. The structural behavior and performance of thermal studs undergoing local, distortional, or flexural-torsional buckling were investigated experimentally and analytically. The compression tests indicate that the slits in the web had significant negative effects on the buckling and ultimate strength of thin-walled channel section columns. The compressive strength of perforated thermal studs was estimated using equivalent solid channel sections of reduced thickness instead of the studs. The direct strength method, a newly developed and adopted alternative to the effective width method for designing cold-formed steel sections in the AISI Standard S100 (2004) and AS/NZS 4600 (Standard Australia 2005), was calibrated to the test results for its application to cold-formed channel sections with slits in the web. The results verify that the DSM can predict the ultimate strength of channel section columns with slits in the web by substituting equivalent solid sections of reduced thickness for them.

F10T 고장력 볼트를 이용한 T-형 플랜지형 구조물의 Prying Action에 따른 정적강도 해석 (The Static Strength Analysis of Prying Action for T-flange Shape Structure Using F10T High Strength Bolt)

  • 박명균;이중원;구본성
    • 한국안전학회지
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    • 제23권4호
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    • pp.19-24
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    • 2008
  • This paper presents and discusses the experimental results on the F10T high strength bolts used in the T-flange joint structure. The experimental works were carried out for the parameters which are flange web thickness, the distance between bolts, prying ratio. The results show that the working stress imposed to bolts decreases as the flange web thickness increases on the other hand the imposed stress to the bolts increases as the distance between two bolts increases. In other words the strength of the T-flange joint increased as the web flange thickness increases and the distance between two bolts decreases. The prying ratio is increased as the distance between two bolts increases and as the flange web thickness decreases However, the degree of stress decrease in flange thickness variation is not that high as the distance variation between two bolts. Finally the equation for predicting the failure stress in T-flange joint structure using F10T high strength bolts was suggested.

T형 다조부품의 결함에 관한 연구 (A Study on the Defect of T type Forging Products)

  • 손경호;김영호;서윤수
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1997년도 춘계학술대회 논문집
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    • pp.952-956
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    • 1997
  • This paper describes the method that can expand the forming limit of T type forging products used in aircraft and automotive forged products. The forming limitis determined by the ratio of web thickness to rib width in T type and the reduction in height of workpiece and especially depends on the ratio of web thickness to rib width. For this method, the geometric condition that consists of triangle type was introduced and FEM simulations and model exoeriments were carried out and compared with each other. The objective of this paper is to give the method not only that sink mark and folding phenomenon are eliminated but also that the forming limit and the structural strength of rib and web is increased.

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Microscopic Interpretation on Thickness Swelling Mechanism of Nonwoven Web Composites from Wood Particles and Polypropylene Fibers

  • Chae, Shoo-Geun;Eom, Young-Geun
    • 한국가구학회지
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    • 제17권2호
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    • pp.9-23
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    • 2006
  • Control particleboards were significantly higher in thickness swelling than wood particle-polypropylene fiber composites and their thickness swelling increased with the increase of target density. In the composites, thickness swelling did not vary significantly with the increase of target density but increased with the increase of wood particle content. And the composites with fine wood particles were significantly lower in thickness swelling than those with coarse wood particles irrespective of target density and formulation. In the scanning electron microscopy, significantly higher thickness swelling in the composites with coarse wood particles was thought to be the result of more interfacial separations by higher swelling stresses.

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Hysteretic performance of SPSWs with trapezoidally horizontal corrugated web-plates

  • Kalali, Hamed;Hajsadeghi, Mohammad;Zirakian, Tadeh;Alaee, Farshid J.
    • Steel and Composite Structures
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    • 제19권2호
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    • pp.277-292
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    • 2015
  • Previous research has shown that steel plate shear walls (SPSWs) are efficient lateral force-resisting systems against both wind and seismic loads. A properly designed SPSW can have high initial stiffness, strength, and energy absorption capacity as well as superior ductility. SPSWs have been commonly designed with unstiffened and stiffened infill plates based on economical and performance considerations. Recent introduction and application of corrugated plates with advantageous structural features has motivated the researchers to consider the employment of such elements in stiffened SPSWs with the aim of lowering the high construction cost of such high-performing systems. On this basis, this paper presents results from a numerical investigation of the hysteretic performance of SPSWs with trapezoidally corrugated infill plates. Finite element cyclic analyses are conducted on a series of flat- and corrugated-web SPSWs to examine the effects of web-plate thickness, corrugation angle, and number of corrugation half-waves on the hysteretic performance of such structural systems. Results of the parametric studies are indicative of effectiveness of increasing of the three aforementioned web-plate geometrical and corrugation parameters in improving the cyclic response and energy absorption capacity of SPSWs with trapezoidally corrugated infill plates. Increasing of the web-plate thickness and number of corrugation half-waves are found to be the most and the least effective in adjusting the hysteretic performance of such promising lateral force-resisting systems, respectively. Findings of this study also show that optimal selection of the web-plate thickness, corrugation angle, and number of corrugation half-waves along with proper design of the boundary frame members can result in high stiffness, strength, and cyclic performances of such corrugated-web SPSWs.

부식 H형 강재의 복부좌굴강도 추정에 관한 기초적 연구 (A Fundamental Study on Evaluation of Web Crippling Strength of Corroded H-Beams)

  • 김인태;신창희;정지영
    • 한국강구조학회 논문집
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    • 제22권5호
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    • pp.421-433
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    • 2010
  • 강구조물의 장기간 사용에 있어 가장 대표적인 노화현상의 하나로 부식손상을 들 수 있다. 그러나 부식 손상된 강재의 지속사용 여부 및 보수 보강 필요 여부를 판단하기 위한 잔존 내하력 평가법이 확립되어 있지 않은 실정이다. 본 연구에서는 부식손상으로 인한 단면결손 또는 두께감소의 정도가 H형 강재의 복부좌굴강도에 미치는 영향을 검토하고 잔존 복부좌굴하중 추정법을 제안하기 위하여, H형 강재의 복부좌굴실험과 유한요소해석을 실시하였다. 본 실험에서는 지하철 공사 현장에서 다년간 대기 노출로 인하여 부식 손상된 주형받침보를 절단한 H형 강재와 부식손상을 모사하기 위하여 인위적으로 복부 하단부의 부식손상 두께와 높이를 달리하여 제작한 H형 강재의 총 13개의 시험체를 사용하였다. 그리고 다양한 하중재하면적 또는 지지단면적을 모사하기 위해, 이들 중 5개의 시험체는 상부플랜지의 상면 전체에 걸쳐 압축하중을 전면재하 하였으며, 나머지 8개는 상부플랜지의 일부분에만 부분적으로 압축하중을 부분재하 하였다. 또한 이들 시험체에 대한 유한 요소해석을 수행하여 실험결과와 비교, 분석하였다. 그 결과, 복부의 부식두께 및 손상높이와 복부좌굴하중과의 상관관계를 정량화하였으며, 평균 부식감소량과 표준편차를 이용하여 H형 강재의 복부좌굴하중 감소계수를 추정할 수 있는 잔존 복부좌굴하중 추정법을 제안하였다.

Full scale test and alnalytical evaluation on flexural behavior of tapered H-section beams with slender web

  • Lee, Seong Hui;Choi, Sung Mo;Lee, E.T.;Shim, Hyun Ju
    • Steel and Composite Structures
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    • 제8권5호
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    • pp.389-402
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    • 2008
  • In December 2005, one(A) of the two pre-engineered warehouse buildings in the port of K City of Korea was completely destroyed and the other(B) was seriously damaged to be demolished. Over-loaded snow and unexpected blast of wind were the causes of the accident and destructive behavior was brittle fracture caused by web local buckling and lateral torsional buckling at the flange below rafter. However, the architectural design technology of today based on material non-linear method does not consider the tolerances to solve the problem of such brittle fracture. So, geometric non-linear evaluation which includes initial deformation, width-thickness ratio, web stiffener and unbraced length is required. This study evaluates the structural safety of 4 models in terms of width-thickness ratio and unbraced length using ANSYS 9.0 with parameters such as width-thickness ratio of web, existence/non-existence of stiffener and unbraced length. The purpose of this study is to analyze destructive mechanism of the above-mentioned two warehouse buildings and to provide ways to promote the safety of pre-engineered buildings.

전외측 대퇴부 유리피판술 이용한 제1 수지간 반흔구축 재건 (Anterolateral thigh flap for 1st web contracture release)

  • 김기완;이동철;김진수;기세휘;노시영;양재원
    • Archives of Plastic Surgery
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    • 제36권2호
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    • pp.147-152
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    • 2009
  • Purpose: First web space contracture of the hand has been treated with various surgical techniques such as Z - plasty, local flap, pedicled flap, distant free flap, and anterolateral thigh free flap. Among those surgical techniques, anterolateral thigh free flap provide a thin and pliable flap, which is a useful method for correction of first web space contracture. Methods: From August 2003 to September 2007, authors selected 9 patients who had first web space contracture with limitation of thumb abduction within 30 degrees. All of patients had received first web contracture release with anterolateral thigh free flap. Age ranged from 24 to 51, and all the patients were male. Average follow up period was 12 months and authors performed photographic analysis of the thumb abduction angle of postoperative increase. Result: All the flaps were survived. Donor site was closed with primary closure in 8 cases and covered with split - thickness skin graft in 1 case. Average flap size was $8{\times}9cm$ and average thickness was 0.6 cm in suprafascial flap. The procedure resulted in increased thumb abduction angle of $34.7^{\circ}$ in average and showed concave shape of first web space in suprafascial flap. Additional operations were performed with Z - plasty in 3 cases, local flap in 5 cases, and opponensplasty in 3 cases. Conclusion: In suprafascial flap, we obtained relatively thin flap thickness and were able to make natural concave shape of first web space. In releasing severe contracture of the first web space, anterolateral thigh free flap provided a good coverage of appropriate thickness and pliable soft tissue and allowed limited donor site morbidity.

Effect of local web buckling on the cyclic behavior of reduced web beam sections (RWBS)

  • Akrami, Vahid;Erfani, Saeed
    • Steel and Composite Structures
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    • 제18권3호
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    • pp.641-657
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    • 2015
  • Application of reduced web beam section (RWBS) as a sacrificial fuse element has become a popular research field in recent years. Weakening of beam web in these connections may cause local web buckling around the opening area which can affect cyclic behavior of connection including: maximum load carrying capacity, strength degradation rate, dissipated energy, rotation capacity, etc. In this research, effect of local web buckling on the cyclic behavior of RWBS connections is investigated using finite element modeling (FEM). For this purpose, a T-shaped moment connection which has been tested under cyclic loading by another author is used as the reference model. Fracture initiation in models is simulated using Cyclic Void Growth Model (CVGM) which is based on micro-void growth and coalescence. Included in the results are: effect of opening corner radii, opening dimensions, beam web thickness and opening reinforcement. Based on the results, local web buckling around the opening area plays a significant role on the cyclic behavior of connection and hence any parameter affecting the local web buckling will affect entire connection behavior.