• 제목/요약/키워드: high compression strength

검색결과 710건 처리시간 0.027초

The effect of welding on the strength of aluminium stiffened plates subject to combined uniaxial compression and lateral pressure

  • Pedram, Masoud;Khedmati, Mohammad Reza
    • International Journal of Naval Architecture and Ocean Engineering
    • /
    • 제6권1호
    • /
    • pp.39-59
    • /
    • 2014
  • Nowadays aluminum stiffened plates are one of the major constituents of the marine structures, especially high-speed vessels. On one hand, these structures are subject to various forms of loading in the harsh sea environment, like hydrostatic lateral pressures and in-plane compression. On the other hand, fusion welding is often used to assemble those panels. The common marine aluminum alloys in the both 5,000 and 6,000 series, however, lose a remarkable portion of their load carrying capacity due to welding. This paper presents the results of sophisticated finite-element investigations considering both geometrical and mechanical imperfections. The tested models were those proposed by the ultimate strength committee of $15^{th}$ ISSC. The presented data illuminates the effects of welding on the strength of aluminum plates under above-mentioned load conditions.

수평보강재로 1단 보강된 플레이트거더의 휨강도 평가 방안 연구 (A Study for an Evaluation of Flexural Strength of Plate Girders Reinforced with One Line of Longitudinal Stiffeners)

  • 김병준;박용명;미키타 코발렌코;조광일
    • 한국강구조학회 논문집
    • /
    • 제29권4호
    • /
    • pp.281-289
    • /
    • 2017
  • 현재의 AASHTO LRFD 및 Eurocode 3 기준은 수평보강 플레이트거더의 휨강도를 과소 평가하는 것으로 나타났다. 이는 웨브보강으로 인한 웨브-플랜지 상호작용을 적절히 고려치 않는 것에 그 원인이 있다. 즉, 웨브 보강 시 압축플랜지의 회전을 구속하는 효과가 증가하여 압축플랜지의 좌굴강도가 증가한다. 또한 압축플랜지와 수평보강재가 웨브의 회전을 구속함으로써 웨브의 일정 영역이 항복강도에 도달하게 된다. 본 연구에서는 수평보강재로 1단 보강된 플레이트 거더에 대해 압축플랜지의 좌굴강도 증가와 웨브의 실제 응력분포를 고려하여 휨강도를 합리적으로 평가하기 위한 모델을 제안하였다. 일반강(SM490) 및 고강도강(HSB800) 플레이트거더에 대해 비선형해석으로부터 휨강도를 평가하고 본 제안 모델의 적용성을 분석하였다.

Concrete crack rehabilitation using biological enzyme

  • Chen, How-Ji;Tai, Pang-Hsu;Peng, Ching-Fang;Yang, Ming-Der
    • Computers and Concrete
    • /
    • 제19권4호
    • /
    • pp.413-417
    • /
    • 2017
  • Concrete is a material popularly used in construction. Due to the load-bearing and external environmental factors during utilization or manufacturing, its surface is prone to flaws, such as crack and leak. To repair these superficial defects and ultimately and avoid the deterioration of the concrete's durability, numerous concrete surface protective coatings and crack repair products have been developed. Currently, studies are endeavoring to exploit the mineralization property of microbial strains for repairing concrete cracks be the repairing material for crack rehabilitation. This research aims to use bacteria, specifically B. pasteurii, in crack rehabilitation to enhance the flexural and compression strength of the repaired concrete. Serial tests at various bacterial concentrations and the same $Urea-CaCl_2$ medium concentration of 70% for crack rehabilitation were executed. The results prove that the higher the concentration of the bacterial broth, the greater the amount of calcium carbonate precipitate was induced, while using B. pasteurii broth was for crack rehabilitation. The flexural and compression strengths of the repaired concrete test samples were the greatest at 100% bacterial concentration. Compared to the control group (bacterial concentration of 0%), the flexural strength had increased by 32.58% for 1-mm crack samples and 51.01% for 2-mm crack samples, and the compression strength had increased by 28.58% and 23.85%, respectively. From the SEM and XRD test results, a greater quantity of rectangular and polygonal crystals was also found in samples with high bacterial concentrations. These tests all confirm that using bacteria in crack rehabilitation can increase the flexural and compression strength of the repaired concrete.

Analysis of behavioral characteristics of liquefaction of sand through repeated triaxial compression test and numerical analysis

  • Hyeok Seo;Daehyeon Kim
    • Geomechanics and Engineering
    • /
    • 제38권2호
    • /
    • pp.165-177
    • /
    • 2024
  • Liquefaction phenomenon refers to a phenomenon in which excess pore water pressure occurs when a dynamic load such as an earthquake is rapidly applied to a loose sandy soil ground where the ground is saturated, and the ground loses effective stress and becomes liquid. The laboratory repetition test for liquefaction evaluation can be performed through a repeated triaxial compression test and a repeated shear test. In this regard, this study attempted to evaluate the effects of the relative density of sand on the liquefaction resistance strength according to particle size distribution using repeated triaxial compression tests, and additional experimental verification using numerical analysis was conducted to overcome the limitations of experimental equipment. As a result of the experiment, it was confirmed that the liquefaction resistance strength increased as the relative density increased regardless of the classification of soil, and the liquefaction resistance strength of the SP sample close to SW was quite high. As a result of numerical analysis, it was confirmed that the liquefaction resistance strength increased as the confining pressure increased under the same relative density, and the liquefaction resistance strength did not decrease below a certain limit even though the confining pressure was significantly reduced at a relatively low relative density. This is judged to be due to a change in confining pressure according to the depth of the ground. As a result of analyzing the liquefaction resistance strength according to the frequency range, it was confirmed that there was no significant difference from the laboratory experiment results in the basic range of 0.1 to 1.0 Hz.

고속열차의 선두부 형상이 터널 입구압력파에 미치는 영향 (Effect of Train Nose Shape on the High-Speed railway Tunnel Entry Compression Wave)

  • 김희동;김태호;서태원
    • 한국철도학회:학술대회논문집
    • /
    • 한국철도학회 1998년도 창립기념 춘계학술대회 논문집
    • /
    • pp.596-603
    • /
    • 1998
  • The entry compression wave, which is generated at the entrance of the tunnel, is almost always associated with the pressure transients in the tunnel as well as the impulse noise at the exit of the tunnel. It is highly required to design the train nose shape that can minimize such undesirable phenomena. The objective of the current work is to investigate the effects of the train nose shape on the entry compression wave. Numerical computations were applied to one-dimensional unsteady compressible flow in high-speed railway train/tunnel systems. A various shape of train noses were tested for a wide range of train speeds. The results showed that the strength of the entry compression wave is not influenced by the train nose shape, but the time variation of pressure in the entry compression wavefront is strongly related to the train nose shape. The current method of the characteristics was able to represent a desirable nose shape for various train speeds. Optimum nose shape was found to considerably reduce the maximum pressure gradient of the entry compression wave.

  • PDF

Seismic behavior of Q690 circular HCFTST columns under constant axial loading and reversed cyclic lateral loading

  • Wang, Jiantao;Sun, Qing
    • Steel and Composite Structures
    • /
    • 제32권2호
    • /
    • pp.199-212
    • /
    • 2019
  • This paper presents an investigation on seismic behavior of out-of-code Q690 circular high-strength concrete-filled thin-walled steel tubular (HCFTST) columns made up of high-strength (HS) steel tubes (yield strength $f_y{\geq}690MPa$). Eight Q690 circular HCFTST columns with various diameter-to-thickness (D/t) ratios, concrete cylinder compressive strengths ($f_c$) and axial compression ratios (n) were tested under the constant axial loading and reversed cyclic lateral loading. The obtained lateral load-displacement hysteretic curves, energy dissipation, skeleton curves and ductility, and stiffness degradation were analyzed in detail to reflect the influences of tested parameters. Subsequently, a simplified shear strength model was derived and validated by the test results. Finally, a finite element analysis (FEA) model incorporating a stress triaxiality dependent fracture criterion was established to simulate the seismic behavior. The systematic investigation indicates the following: compared to the D/t ratio and axial compression ratio, improving the concrete compressive strength (e.g., the HS thin-walled steel tube filled with HS concrete) had a slight influence on the ductility but an obvious enhancement of energy dissipation and peak load; the simplified shear strength model based on truss mechanism accurately predicted the shear-resisting capacity; and the established FEA model incorporating steel fracture criterion simulated well the seismic behavior (e.g., hysteretic curve, local buckling and fracture), which can be applied to the seismic analysis and design of Q690 circular HCFTST columns.

고강도 콘크리트의 취도계수에 관한 실험적 연구 (An experimental study on the fragility factor of high strength concrete)

  • 김희두;양성환
    • 한국건축시공학회:학술대회논문집
    • /
    • 한국건축시공학회 2014년도 춘계 학술논문 발표대회
    • /
    • pp.148-149
    • /
    • 2014
  • In modern society, population overcrowding and concentration of facilities are happened because of the concentration on to city. So this phenomenon demands improvement of material's performance, technical development of structure analysis and design and improvement of constructing ability .High strength concrete has some merits. High strengthening makes the cross section reduced, and that cause decrease of structure weight. And using high durable and superplasticizer promote liquidity, thus high quality concrete can be produced. Because of these advantages, this study is for showing validity of using it by compression/tensile strength experiment. As this experiment's result, when concrete become stronger, interface intensity coefficient between cement and aggregate is different and they don't adhere to each other. So there is brittle failure. Fragility factor also steadily increase with strong concrete, it tells high strength concrete has problem. Therefore the sources used in high strength concrete like cement and aggregate must have great quality. So the source's performance must be supervised well because their quality decides performance criteria.

  • PDF

서중환경의 단열온도상승 특성을 고려한 고강도 콘크리트의 압축강도 특성 (Compressive Strength Properties of high strength concrete considering Adiabatic temperature rise of hot weather environment)

  • 이은경;함은영;구경모;이보경;미야우치 히로유키;김규용
    • 한국건축시공학회:학술대회논문집
    • /
    • 한국건축시공학회 2013년도 추계 학술논문 발표대회
    • /
    • pp.56-57
    • /
    • 2013
  • In this study, in regard to concrete considering variety of admixture content rate, we evaluated property of adiabatic temperature rise. By setting up high temperature history, we evaluated effect to compression strength property of high strength concrete by early high temperature history. As a result, early high temperature history accelerated Hydration reaction of cement and contribute early strength development but it didn't accomplish performance objective in long-term aged.

  • PDF

비소성시멘트를 사용한 고강도 콘크리트의 조기강도 추정 연구 (A Study on Early Strength Estimation of High-strength Concrete Using Non-sintering Cement (NSC))

  • 김한식;임상준;강인석;박무영;문경주;정상진
    • 한국콘크리트학회:학술대회논문집
    • /
    • 한국콘크리트학회 2006년도 춘계 학술발표회 논문집(II)
    • /
    • pp.609-612
    • /
    • 2006
  • The quality of the concrete compression strength can be determined after the passage of 28 days, but if any defect is found the quality of concrete after that length of time, there can be serious problems in dismantling and repair. Thus, in response to the use of concrete using non sintering cement (NSC), the present study purposed to propose a method of managing the strength of high strength concrete using NSC in comparison with high strength concrete using ordinary Portland cement (OPC) through early strength estimation using microwave, which enables the quick estimation of the strength of high strength concrete using NSC.

  • PDF

SM570TMC 강재의 압축재 특성에 관한 연구 (A Study on the Characteristics of SM570TMC Plates in Compression Members)

  • 임성우;김요숙;장인화
    • 한국강구조학회 논문집
    • /
    • 제17권3호통권76호
    • /
    • pp.357-363
    • /
    • 2005
  • 건축물이 고층이 될 수록 고강도 강재의 사용요구가 증대된다. 그러나 고강도 강재는 일반 강재와는 전혀 다른 기계적 특성을 갖고 있다. 고강도 강재를 건축구조물에 적용하기 위해서는 비탄성 영역에서의 거동이 일반 강재와 동등한가를 확인해야 한다. 본 연구에서는 SM570TMC 강재로 제작된 박스형 및 H형 단면을 갖는 기둥의 국부좌굴강도를 평가하기 위해서 중심압축실험을 세장비를 변수로 수행하였다. 단주압축 실험결과 판폭두께비의 제한치를 만족하는 기둥부재의 최대내력은 국부좌굴에 의해 결정되며, 판폭두께비를 만족시키지 못하는 경우에는 최대내력에 도달하기 전에 국부좌굴이 발생되었으나 급격한 내력저하는 발생되지 않았다. 장주압축 실험결과 SM570TMC 강재는 허용응력도 설계법과 한계상태 설계법에서 정하고 있는 설계기준을 만족하였다.