• 제목/요약/키워드: Static and fatigue behavior

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이축하중을 받는 SM45C강의 피로균열의 발생과 성장거동 (Behavior of Fatigue Crack Initiation and Growth in SM45C Steel under Biaxial Loading)

  • 김상태;박선홍;권숙인
    • 한국해양공학회지
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    • 제18권6호
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    • pp.84-90
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    • 2004
  • Fatigue tests were conducted on SM45C steel using hour-glass shaped smooth tubular specimen under biaxial loading in order to investigate the crack formation and growth at room temperature. Three types of loading systems, were employed fully-reserved cyclic torsion without a superimposed static tension or compression fully-reserved cyclic torsion with a superimposed static tension and fully-reserved cyclic torsion with a superimposed static compression. The test results showed that a superimposed static tensile mean stress reduced fatigue life however a superimposed static compressive mean stress increased fatigue life. Experimental results indicated that cracks were initiated on planes of maximum shear strain whether or not the mean stresses were superimposed. A biaxial mean stress had an effect on the direction that the cracks nucleated and propagated at stage 1 (mode II).

차체구조의 구조기인 내구 설계 (Structure Borne Durability Design of a Vehicle Body Structure)

  • 김효식;임홍재
    • 한국자동차공학회논문집
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    • 제12권3호
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    • pp.109-121
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    • 2004
  • This paper presents an optimal design method for structure-borne durability of a vehicle body structure. Structure-borne durability design requires a new design that can increase fatigue lives of critical areas in a structure and must prohibit transition phenomenon of critical areas that results from modification of the structure at the same time. Therefore, the optimization problem fur structure-borne durability design are consists of an objective function and design constraints of 2 types; type 1-constraint that increases fatigue lives of the critical areas to the required design limits and type 2-constraint that prohibits transition phenomenon of critical areas. The durability design problem is generally dynamic because a designer must consider the dynamic behavior such as fatigue analyses according to the structure modification during the optimal design process. This design scheme, however, requires such high computational cost that the design method cannot be applicable. For the purpose of efficiency of the durability design, we presents a method which carry out the equivalent static design problem instead of the dynamic one. In the proposed method, dynamic design constraints for fatigue life, are replaced to the equivalent static design constraints for stress/strain coefficients. The equivalent static design constraints are computed from static or eigen-value analyses. We carry out an optimal design for structure-borne durability of the newly developed bus and verify the effectiveness of the proposed method by examination of the result.

하중작용방식에 따른 점용접재의 피로거동 (A Study on the Fatigue Behavior of Spot Weld Specimen as Applied Load Pattern)

  • 송삼홍;양윤진
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2000년도 추계학술대회 논문집
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    • pp.485-488
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    • 2000
  • In this study, the fatigue characteristic of spot weld specimen was studied by using the various specimen. The specimen types were tensile shear specimen welded one spot and two spot, and cross tension. The tensile tests and fatigue tests were executed to know the mechanical properties under static and fatigue load condition. In addition, the relationship was illustrated by finite element method.

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윤하중 피로실험을 통한 FRP-콘크리트 합성바닥판의 구조 거동 분석 (Structural Behavior of FRP-Concrete Composite Bridge Deck for Rolling Fatigue)

  • 김성태;조근희;진원종;조정래;김병석
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 봄학술 발표회 논문집(I)
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    • pp.103-106
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    • 2005
  • Bridge deck is the element presenting the largest damage potentiality among the major bridge structural members. In the previous study, a new-type of FRP-concrete composite bridge deck system was proposed and its static performance was experimentally verified, This study aim at investigation of fatigue behavior such as failure mechanism through rolling fatigue test.

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Static and fatigue behavior of through-bolt shear connectors with prefabricated HFRC slabs

  • He, Yuliang;Zhuang, Jie;Hu, Lipu;Li, Fuyou;Yang, Ying;Xiang, Yi-qiang
    • Structural Engineering and Mechanics
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    • 제83권1호
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    • pp.109-121
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    • 2022
  • Twelve push-out test specimens were conducted with various parameters to study the static and fatigue performance of a new through-bolt shear connector transferring the shear forces of interface between prefabricated hybrid fiber reinforced concrete (HFRC) slabs and steel girders. It was found that the fibers could improve the fatigue life, capacity and initial stiffness of through-bolt shear connector. While the bolt-hole clearance reduced, the initial stiffness, capacity and slippage of through-bolt shear connector increased. After the steel-concrete interface properties were improved, the initial stiffness increased, and the capacity and slippage reduced. Base on the test results, the equation of the load-slip curve and capacity of through-bolt shear connector with prefabricated HFRC slab were obtained by the regression of test results, and the allowable range of shear force under fatigue load was recommended, which could provide the reference in the design of through-bolt shear connector with prefabricated HFRC slabs.

Design of Composite Multilayer Surface Antenna Structure and Its Bending Fatigue Characteristics

  • Moon, Tae-Chul;Hwang, Woon-Bong
    • Advanced Composite Materials
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    • 제17권3호
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    • pp.215-224
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    • 2008
  • The present study aims to design a multilayer microstrip antenna with composite sandwich construction and investigate fatigue behavior of this multilayer SAS (surface antenna structure) that was asymmetric sandwich structure for the next generation of structural surface technology. This term, SAS, indicates that the structural surface becomes an antenna. Constituent materials were selected considering electrical properties, dielectric constant and tangent loss as well as mechanical properties. For the antenna performance, antenna elements inserted into structural layers were designed for satellite communication at a resonant frequency of 12.2 GHz. From electrical measurements, it was shown that antenna performances were in good agreement with design requirements. In cyclic 4-point bending, flexure behavior was investigated by static and fatigue test. Fatigue life curve of the SAS was obtained. The experimental results of bending fatigue were compared with single load level fatigue life prediction equations and in good agreement. The SAS concept is can be extended to give a useful guide for manufacturers of structural body panels as well as antenna designers.

Fatigue behavior of hybrid GFRP-concrete bridge decks under sagging moment

  • Xin, Haohui;Liu, Yuqing;He, Jun;Fan, Haifeng;Zhang, Youyou
    • Steel and Composite Structures
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    • 제18권4호
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    • pp.925-946
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    • 2015
  • This paper presents a new cost-effective hybrid GFRP-Concrete deck system that the GFRP panel serves as both tensile reinforcement and stay-in-place form. In order to understand the fatigue behavior of such hybrid deck, fatigue test on a full-scale specimen under sagging moment was conducted, and a series of static tests were also carried out after certain repeated loading cycles. The fatigue test results indicated that such hybrid deck has a good fatigue performance even after 3.1 million repeated loading cycles. A three-dimensional finite element model of the hybrid deck was established based on experimental work. The results from finite element analyses are in good agreement with those from the tests. In addition, flexural fatigue analysis considering the reduction in flexural stiffness and modulus under cyclic loading was carried out. The predicted flexural strength agreed well with the analytical strength from finite element simulation, and the calculated fatigue failure cycle was consistent with the result based on related S-N curve and finite element analyses. However, the flexural fatigue analytical results tended to be conservative compared to the tested results in safety side. The presented overall investigation may provide reference for the design and construction of such hybrid deck system.

Structural behavior of precast concrete deck with ribbed loop joints in a composite bridge

  • Shin, Dong-Ho;Chung, Chul-Hun;Oh, Hyun-Chul;Park, Se-Jin;Kim, In-Gyu;Kim, Young-Jin;Byun, Tae-Kwan;Kang, Myoung-Gu
    • Smart Structures and Systems
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    • 제17권4호
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    • pp.559-576
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    • 2016
  • This study is intended to propose a precast bridge deck system, which has ribbed loop joints between the decks and lacks internal tendons to improve the workability of existing precast deck system. A composite bridge deck specimen was fabricated using the proposed precast deck system, and static and fatigue load tests were conducted to evaluate the structural behavior and the crack pattern of the deck. Leakage test of the deck joints was also conducted and finite element analysis was carried out to compare with the test results.

엔진마운트 고무부품의 내구 평가 및 동적 특성 예측 (Prediction of Durability, Static and Dynamic Properties on Rubber)

  • 김춘휴;김기주;정효태;김철웅;손일선;김중배
    • 한국자동차공학회논문집
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    • 제14권6호
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    • pp.17-23
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    • 2006
  • Rubber materials have the nonlinear, large deformation and viscoelastic behavior. W.D. Kim et al. studied these characteristics through the static, fatigue, dynamic, aging and viscoelastic test. This paper discussed that the properties of engine mounting rubber, such as static stiffness, fatigue life and damping factor, are predicted based on CAE by using material properties acquired by the report of Kim et al. In result, the static stiffness of engine mounting rubber is predicted approximately in comparison with test value. Also, it was confirmed that the relationship of fatigue life and Green-Lagrange strain in specimen was the valid tool to predict the fatigue life of engine mounting rubber. From the results of transient viscoelastic analysis the damping factor changed rapidly at the range less than 8hz.

강재로 구속된 프리스트레스트 콘크리트 합성거더의 정적 및 피로거동 (A Study on the Static and Fatigue Behavior of Steel-Confined Prestressed Concrete Girder)

  • 김정호;박경훈;황윤국;이상윤
    • 한국강구조학회 논문집
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    • 제16권6호통권73호
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    • pp.725-736
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    • 2004
  • 최근 국내에서 I형 거더의 외부가 강재로 이루어지고 내부에 무근콘크리트가 채워져 합성된 거더에 프리스트레스를 도입하여 경간을 장대화할 수 있는 새로운 개념의 합성거더인 '강재로 구속된 프리스트레스트 콘크리트 합성거더(Steel-Confined Prestressed Concrete Girder; SCP Girder)'가 개발되었다. 또한 개발된 거더를 실물크기로 제작하여 시공성을 확인하고 정적하중 재하에 의한 파괴실험을 통해 공용 중 안전성에 대한 실험적 검증이 수행되었다(김정호 등, 2002). 그러나 SCP 합성거더의 실용화를 위해서는 교량 파손의 주원인이 주행하중의 영향에 의한 피로파손인 점을 고려하여 반복하중에 대한 피로거동의 연구 및 피로 안전성 확보가 요구된다. 따라서 본 연구에서는 SCP 합성거더에 대한 피로거동 특성을 파악하고 피로설계를 위한 기초적인 자료를 제시하기 위해 피로실험을 실시하였다. 피로실험을 위한 시험체의 제작은 1등교에 해당하는 설계활하중(DB-24)에 대하여 10m 지간으로 설계 제작하였으며, 실험결과 도로교설계기준(한국도로교통협회, 2000)의 상세피로범주에 따른 허용피로응력범위를 초과하지 않는 것으로 나타났다. 또한 초기정적재하를 통해 설계의 타당성과 구조적 거동을 분석하였으며, 피로실험 종료 후 거더 외부를 이루고 있는 강재를 제거하여 내부콘크리트의 상태를 관찰하였다.