• 제목/요약/키워드: coefficient of cyclic plastic strain

검색결과 4건 처리시간 0.019초

CR60강, SM58Q강과 그 용접부의 저사이클 피로특성 (A Study of Low Cycle Fatigue Properties in CR60,SM50Q Steel and the Weldments)

  • 김창주;염태동;유인석;위창욱
    • Journal of Welding and Joining
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    • 제12권1호
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    • pp.73-79
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    • 1994
  • Low cycle fatigue test was performed by companion specimens method to compare the properties of cyclic strain for the weldments of controlled rolling steel CR60 and welding structural steel SM58Q. And the result does not showed any difference of low cycle fatigue life between weldments. Especially, the values of coefficient of cyclic plastic strain $C_{p}$ and exponent of cyclic plastic strain $K_{p}$ of heat affected zones of CR60 steel and SM58Q steel were same. And $C_{p}$ and $K_{p}$ of CR60 steel were equal to the values of weld it means a good combination between the base metal, the heat affected zone and the weld of CR60 steel.eel.eel.

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차륜-레일 구름접촉에 의한 라체팅 모델링 (Simulation of Ratcheting in Wheel-Rail Contact)

  • 구병춘
    • 한국철도학회논문집
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    • 제11권3호
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    • pp.311-316
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    • 2008
  • 일정한 크기의 응력이 반복적으로 작용할 때 매 사이클마다 변형이 증가하는 현상을 라체팅이라고 한다. 라체팅은 레일이나 차륜의 균열발생 기구의 하나이지만 실험적, 이론적 측면에서 아직 많은 연구를 필요로 하는 분야이다. 레일의 경우 접선력 방향으로 소성변형이 축적되는 것으로 알려져 있다. 본 연구에서는 차륜-레일의 구름 접촉에서 발생하는 응력의 이론해에 대해 살펴보고, 라체팅을 모델링 할 수 있는 비선형 이동 경화법칙을 사용하는 탄소성 구성방정식을 적용하여 라체팅 현상을 모델링 하였다. 일정 크기의 접촉력이 반복적으로 작용할 때 매 사이클마다 일정 크기의 소성변형이 발생하였다.

반복하중을 받는 압전 복합재료 작동기의 피로 특성 (Degradation Prediction of Piezo-Composite Actuator under Cyclic Electric Field)

  • 헤리세티아완;구남서;윤광준
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2004년도 추계학술발표대회 논문집
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    • pp.286-289
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    • 2004
  • This paper presents the fatigue characteristics of LIPCA (LIghtweight Piezo-Composite Actuator) device system. The LIPCA device system is composed of a piezoelectric ceramic layer and fiber reinforced lightweight composite layers. Typically a PZT ceramic layer is sandwiched by a top fiber layer with low CTE (coefficient of thermal expansion) and base layers with high CTE. The advantages of the LIPCA design are weight reduction by using the lightweight fiber reinforced plastic layers without compromising the generation of high force and large displacement and design flexibility by selecting the fiber direction and the size of prepreg layers. To predict the degradation of actuation performance of LIPCA due to fatigue, the cyclic electric loading tests using PZT specimens were performed and the strain for a given excitation voltage was measured during the test. The results from the PZT fatigue test were implemented into CLPT (Classical Laminated Plate Theory) model to predict the degradation of LIPCA's actuation displacement. The fatigue characteristic of PZT was measured using a test system composed of a supporting jig, a high voltage power supplier, data acquisition board, PC, and evaluated.

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Study on the performance of concrete-filled steel tube beam-column joints of new types

  • Liu, Dianzhong;Li, Hongxian;Ren, Huan
    • Computers and Concrete
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    • 제26권6호
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    • pp.547-563
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    • 2020
  • In this paper, the influence of axial compression ratio on the mechanical properties of new type joints of side span of rectangular concrete-filled steel tubular column-H-type steel beam is studied. Two new types of side-span joints of rectangular concrete-filled steel tubular column-H-type steel beam are designed and quasi-static tests of five new type joints with 1:2 scale reduction ratios are performed. The axial compression ratio of joint JD1 is 0.3, 0.4 and 0.5, and the axial compression ratio of joint JD2 is 0.3 and 0.5. In the joint test, different axial forces were applied to the top of the column according to different axial compression ratios, and low-cyclic reciprocating load was applied on the beam. The stress and strain distribution, beam and column deformation, limit state, failure process, failure mechanism, stiffness degradation, ductile deformation and energy dissipation capacity of the joint were measured and analyzed. The results show that: with the increase of axial compression ratio, the ultimate bearing capacity of the joint decreases slightly, the plastic deformation decreases, and the stiffness and ductility decrease. According to the energy dissipation curve of the specimen, the equivalent damping coefficient also increases with the increase of axial compression ratio in a certain range, indicating that the increase of axial compression ratio can improve the seismic performance of the joint to a certain extent. The finite element method is used to simulate the joint test, and the test results are in good agreement with the simulation results.