• 제목/요약/키워드: No-Load Test

검색결과 690건 처리시간 0.024초

프리캐스트 바닥판 PSC 합성거더 교량의 거동 (Behavior of PSC Composite Bridge with Precast Decks)

  • 정철헌;현병학
    • 대한토목학회논문집
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    • 제26권5A호
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    • pp.873-880
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    • 2006
  • 본 논문에서는 기존의 수평전단 설계식을 적용하여 프리캐스트 바닥판 PSC 합성거더 교량을 설계, 제작하였다. 피로하중에 대한 바닥판과 거더 그리고 전단연결부의 내구성과 거동특성을 평가하기 위하여 피로실험을 수행하였다. 실험결과 200만회 반복하중을 재하한 후 바닥판과 거더의 균열 및 잔류처짐은 발생하지 않았으며, 휨강성의 감소없이 선형거동을 나타냈다. 그리고 전단연결부의 손상은 나타나지 않았다. 또한 정적실험을 수행하여 연결부의 거동과 설계식의 적용성을 평가하고, 극한하중 상태에서의 구조적 성능과 정적강도 등을 평가하였다. 프리캐스트 바닥판 PSC 합성거더 교량은 사용하중상태에서 균열에 대해 2.08의 안전율을 나타냈으며, 파괴 시 충분한 극한내력과 연성거동을 나타냈다. 수평전단 설계식을 프리캐스트 바닥판 PSC 합성거더 교량의 수평전단 설계에 적용할 경우 사용성 및 구조적 안전성에 문제가 없는 경제적이고 신속한 형태의 교량을 시공할 수 있을 것으로 판단된다.

자동차 시트 쿠션 프레임 및 백 프레임의 구조 강도 해석 (Structural Strength Analysis at Cushion Frame and Back Frame of Automotive Seat)

  • 김성수;김기선;최두석;박상흡;김세환;조재웅
    • 한국산학기술학회논문지
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    • 제13권11호
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    • pp.4956-4962
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    • 2012
  • 자동차의 다양한 부품 중 자동차 시트는 인간과의 직접 접촉 부위로서 승차감을 평가 할 수 있는 가장 기본적인 항목이다. 따라서 자동차 시트는 승차감과 동시에 충분한 강성과 강도를 가져야 할 것이다. 본 연구에서는 자동차 시트에서의 시트 쿠션 프레임과 백 프레임을 3D 모델링하였고, 쿠션 프레임의 비틀림 강도, 수직하중강도 시험, 백 프레임의 강도 시험 3가지 실험에 대해서 시뮬레이션으로 구조해석을 하였다. 해석결과, 쿠션 프레임 비틀림 강도 시험에서는 초기 전변형량의 최대값은 5.8421mm가 나왔고, 영구 전변형량의 최대값은 0.02539mm가 나왔다. 쿠션 프레임 수직하중강도 시험에서는 쿠션 프레임 앞쪽 끝단의 전변형량은 2.1159mm이고, 뒤쪽 끝단은 0.0606mm이다. 하중을 더 증가한 경우는 전변형량의 최대값은 3.1739mm가 나왔다. 3 가지의 백 프레임 강도 시험에서는 최대의 전변형량은 0.18634mm로 나타났다. 본 연구결과는 자동차 시트 쿠션 프레임 및 백프레임의 과도한 변형 및 파괴가 없음으로서 승객의 안전을 보장하는 충분한 강성과 강도를 검증할 수 있었다.

섬유혼입공법을 적용한 고강도콘크리트 기둥의 재하 내화시험 (Fire Test of Fiber Cocktail Reinforced High Strength Concrete Columns with Loading)

  • 염광수;전현규;김흥열
    • 콘크리트학회논문집
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    • 제21권4호
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    • pp.473-480
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    • 2009
  • 폴리프로필렌섬유와 강섬유를 혼입한 고강도콘크리트 기둥의 재하하중비에 따른 내화성능을 검증하기 위하 여 3기의 동일한 기둥시험체를 제작하여 각 시험체에 40%, 50%, 그리고 61%의 설계하중에 해당하는 고정압축하중을 재하한 후 ISO-834 표준내화곡선에 따라 180분간 내화시험을 실시하였다. 폭렬은 발생하지 않았으며, 표면부의 색은 분 홍색을 띤 회색으로 변했다. 시험체의 최대 연직방향 처짐은 1.5~2.2 mm로, 내화시험 중 화재로 인한 시험체의 강도손 실이 발생하지 않았으며, 설계하중의 61%이내에서 시험체의 내화성능은 영향을 받지 않았다. 깊이별 내부 콘크리트의 온도분포, 콘크리트 내부 수분 증발로 인한 온도상승이 변한 점 등 전반적으로 비재하 내화시험 결과와 매우 유사하였다. 180분 내화시험 후의 최종온도는 모서리철근이 491.4oC, 중앙철근이 329.0oC이며, 철근의 총 평균온도는 409.8oC이다. 전 반적인 온도분포의 경향은 비재하 내화시험과 매우 유사하였다. 모서리철근의 열에너지 유입량이 많기 때문에 중앙철 근과의 온도차(153.7oC)가 나타났으며, 가열 후 30~50분 사이에 온도상승추세가 변하였다. 이는 강섬유와 폴리프로필렌 섬유를 혼입한 콘크리트의 온도구배가 낮고, 철근으로의 수분이동과 내부 수분의 막힘현상, 그리고 수분의 기화열 때문이다.

굽힘 압전 복합재료 작동기의 하중 특성 (Load Capability in a Bending Piezoelectric Composite Actuator with a Thin Sandwiched PZT Plate)

  • 우성충;구남서
    • 대한기계학회논문집A
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    • 제31권8호
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    • pp.880-888
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    • 2007
  • This article describes the load capability of bending piezoelectric actuators with a thin sandwiched PZT plate in association with the stored elastic energy induced by an increased dome height after a curing process. The stored elastic energy within the actuators is obtained via a flexural mechanical bending test. The load capability is evaluated indirectly in terms of an actuating displacement with a load of mass at simply supported and fixed-free boundary conditions. Additionally, a free displacement under no load of mass is measured for a comparison with an actuating displacement. The results reveal that an actuator with a top layer having a high elastic modulus and a low coefficient of thermal expansion exhibits a better performance than the rest of actuators in terms of free displacement as well as actuating displacement due to the formation of the large stored elastic energy within the actuator system. When actuators are excited at AC voltage, the actuating displacement is rather higher than the free displacement for the same actuating conditions. In addition, the effect of PZT ceramic softening results in a slight reduction in the resonance frequency of each actuator as the applied electric field increases. It is thus suggested that the static and dynamic actuating characteristics of bending piezoelectric composite actuators with a thin sandwiched PZT plate should be simultaneously considered in controlling the performance.

한발서기 동안 동측, 반대측 방향의 상지부하가 다리근육의 근활성도에 미치는 영향 (Effects of ipsilateral and contralateral loading on lower extremity muscle activity during one leg standing)

  • 허재석;이상열
    • 대한물리치료과학회지
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    • 제27권1호
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    • pp.34-42
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    • 2020
  • Background: The purpose of this study was to investigate the effects of ipsilateral and contralateral load changes during single-leg standing on the leg muscle activities of healthy people. Design: Randomized controlled trial. Methods: For all the subjects, a load was randomly applied to the ipsilateral or the contralateral side. While the load was applied, the subject raised a hand and then performed single-leg standing for 10 seconds using the dominant side. Results: During single-leg standing, the muscle activity of the gluteus medius, peroneus longus on the supporting side increased statistically significantly when an upper limb load was applied contralaterally, but no statistically significant differences were detected in the muscle activities of the tibialis anterior and the gastrocnemius using a test of within-subjects effects. Conclusion: It can be seen that muscle activities increase during exercise when the amount and frequency of a load are increased and when the same load is applied to different sides of the body. Such muscle activity increases may be applied to change the intensity of exercise when one is in a static posture, such as during single-leg standing.

50 kVA 주상용 몰드변압기의 설계 및 특성평가 (The Design and Performance Test of Mold Transformer for Outdoor Pole)

  • 조한구;이운용;황보국
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2002년도 춘계학술대회 논문집 유기절연재료 전자세라믹 방전플라즈마 일렉트렛트 및 응용기술
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    • pp.132-137
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    • 2002
  • The mold transformers have been widely used in underground substations in large building and have some advantages in comparison to oil-transformer, that is low fire risk, excellent environmental compatibility, compact size and high reliability. In addition, the application of mold transformer for outdoor is possible due to development of epoxy resin. The mold transformer generally has cooling duct between low voltage coil and high voltage coil. A mold transformer made by one body molding method has been developed for small size and low loss. The life of transformer is significantly dependent on the thermal behavior in windings. To analyse winding temperature rise, many transformer designer have calculated temperature distribution and hot spot point by finite element method(FEM). Recently, numerical analyses of transformer are studied for optimum design, that is electric field analysis, magnetic field, potential vibration, thermal distribution and thermal stress. In this paper, the temperature distribution of 50 kVA pole mold transformer for power distribution are investigated by FEM program and the temperature rise test of designed mold transformer carried out and test result is analyzed compare to simulation data. In this result, the designed mold transformer is satisfied to limit value of temperature and the other property is good such as voltage ratio, winding resistance, no-load loss, load loss, impedance voltage and percent regulation.

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피로시험 및 비파괴 검사를 통한 틸팅열차용 주행장치 프레임의 안전성 평가 (Safety Evaluation of Bogie Frame for Tilting Railway Vehicles by Fatigue and Nondestructive Tests)

  • 김정석;김남포
    • 한국철도학회논문집
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    • 제8권5호
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    • pp.419-424
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    • 2005
  • This paper has performed fatigue and nondestructive test of bogie frame for Korean tilting train. Before the fatigue test, static tests were carried out. From the test, the structural safety was investigated using Goodman diagram. After the static test, the fatigue test were conducted under tilting load conditions. The fatigue test was conducted for $10{\times}10^6$ cycles. During the fatigue test, the nondestructive tests using magnetic particle and liquid penetrant were performed at $6{\times}10^6$ cycle and $10{\times}10^6$cycle. From the crack detection tests, it was known that there was no fatigue crack in the bogie frame.

Tests on composite slabs and evaluation of relevant Eurocode 4 provisions

  • Salonikios, Thomas N.;Sextos, Anastasios G.;Kappos, Andreas J.
    • Steel and Composite Structures
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    • 제13권6호
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    • pp.571-586
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    • 2012
  • The paper addresses some key issues related to the design of composite slabs with cold-formed profiled steel sheets. An experimental programme is first presented, involving six composite slab specimens tested with a view to evaluating Eurocode 4 (EC4) provisions on testing of composite slabs. In four specimens, the EC4-prescribed 5000 load cycles were applied using different load ranges resulting from alternative interpretations of the reference load $W_t$. Although the rationale of the application of cyclic loading is to induce loss of chemical bond between the concrete plate and the steel sheet, no such loss was noted in the tests for either interpretation of the range of load cycles. Using the recorded response of the specimens the values of factors m and k (related to interface shear transfer in the composite slab) were determined for the specific steel sheet used in the tests, on the basis of three alternative interpretations of the related EC4 provisions. The test results confirmed the need for a more unambiguous description of the m-k test and its interpretation in a future edition of the Code, as well as for an increase in the load amplitude range to be used in the cyclic loading tests, to make sure that the intended loss of bond between the concrete slab and the steel sheet is actually reached. The study also included the development of a special-purpose software that facilitates design of composite slabs; a parametric investigation of the importance of m-k values in slab design is presented in the last part of the paper.

Experimental investigation of impact behaviour of shear deficient RC beam to column connection

  • Murat, Aras;Tolga, Yilmaz;Ozlem, Caliskan;Ozgur, Anil;R. Tugrul, Erdem;Turgut, Kaya
    • Structural Engineering and Mechanics
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    • 제84권5호
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    • pp.619-632
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    • 2022
  • Reinforced concrete (RC) structures may be subjected to sudden dynamic impact loads such as explosions occurring for different reasons, the collision of masses driven by rockfall, flood, landslide, and avalanche effect structural members, the crash of vehicles to the highway and seaway structures. Many analytical, numerical, and experimental studies focused on the behavior of RC structural elements such as columns, beams, and slabs under sudden dynamic impact loads. However, there is no comprehensive study on the behavior of the RC column-beam connections under the effect of sudden dynamic impact loads. For this purpose, an experimental study was performed to investigate the behavior of RC column-beam connections under the effect of low-velocity impact loads. Sixteen RC beam-column connections with a scale of 1/3 were manufactured and tested under impact load using the drop-weight test setup. The concrete compressive strength, shear reinforcement spacing in the beam, and input impact energy applied to test specimens were taken as experimental variables. The time histories of impact load acting on test specimens, accelerations, and displacements measured from the test specimens were recorded in experiments. Besides, shear and bending crack widths were measured. The effect of experimental variables on the impact behavior of RC beam-column connections has been determined and interpreted in detail. Besides, a finite element model has been established for verification and comparison of the experimental results by using ABAQUS software. It has been demonstrated that concrete strength, shear reinforcement ratio, and impact energy significantly affect the impact behavior of RC column-beam connections.

정적 부하의 비대칭적 적용에 따른 등 근육의 근전도 분석 (An Electromyographic Analysis of Back muscle Activity when Subjects are Lifting Static Loads in One Hand)

  • 김태영;박은영;이응상
    • 한국전문물리치료학회지
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    • 제4권1호
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    • pp.78-86
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    • 1997
  • Back muscles play an important role in protecting the spine. Epidemiological studies have shown that loads imposed on the human spine during daily living play a significant role in the onset of low back pain. No previous study has attempted to correlate the response of the trunk musculature with the type of external load. The purpose of this study was to use surface electromyography (EMG) to quantify the relative demands placed on the back muscles while lifting loads in one hand. Forty asymptomatic, twenty year-old subjects stood while lifting loads of 10% of body weight(BW) unilaterally. All EMG data were normalized to a percentage of the EMG voltage produced during no-load standing(%EMG). Our major analysis involved a paired t-test for repeated measures. Of particular note was the fact that the ipsilateral 10% of BW condition produced statistically less % EMG change than did the contralateral 10% of the condition.

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