• Title/Summary/Keyword: 균열발생강도

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연강용접 이음의 해수 중에서의 부식피로강도에 대하여

  • 영정흔일
    • Journal of Welding and Joining
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    • v.1 no.2
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    • pp.34-44
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    • 1983
  • 이 논문에서는 먼저 연강 모재에 대해서 여러 가지의 반복 속도로 대기 중과 해수 중 및 3% Nacl 용액 중에서의 피로시험을 실시하고, 피로 균열 발생수명 및 전파수명에 미치는 속도의 영향을 검사함과 동시에 피로수명의 추정법에 대해서 해설한다. 그리고 연강의 완전용입 용접 이음의 toe 부에 대하여 추정한 피로 균열 발생수명과, 파랑주기에 가까운 10cpm의 반복 속도에서 피로시험을 실시하여 구한 수명과를 비교한 결과에 대해서도 소개하고자 한다.

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Characteristic of Microcracks with Mixing Proportional Properties of Concrete (미세균열이 콘크리트의 염소이온 침투에 미치는 영향 III; 배합조건 특성에 따른 미세균열의 특성)

  • Yoon, In-Seok;Kim, Young-Geun;Park, Ki-Bong
    • Journal of the Korea Concrete Institute
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    • v.20 no.4
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    • pp.469-475
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    • 2008
  • It is obvious that chloride penetration through cracks can threaten the durability of concrete substantially, according to the previous studies of author. It was proposed that crack depth corrseponded with critical crack width from the surface is a crucial factor in view of durability design of concrete structures. It is now necessary to deal with chloride penetration through microcracks characterized with the mixing features of concrete. The purpose of this study is examining the effect of mix proportional features of concrete such as coarse aggregate, high strengtherize of concrete and reinforcement of steel fiber on chloride penetration through cracks. Although small size of coarse aggregate can lead to many microcracks in concrete, the cracks should not impact on chloride penetration directly. On the contrary, chloride should penetrate through cracks easily in concrete with a large size of coarse aggregate because mixrocracks are connected to each other. Second, high strength concrete has an excellent performance to resist with chloride penetration. However, for cracked high strength concrete, its performance is reduced upto the level of ordinary concrete. Finally, steel fiber reinforcement is effective to reduce chloride penetration through cracks because steel fiber reinforcement can lead to reduce crack depth significantly.

Effects of Axiral Restraint on flexural and Shear Behavior in High Strength Reinforced Concrete Beams (고강도 철근 코크리트 휨 부재의 휨.전단거동에 미치는 축방향 구속의 영향)

  • 양은익;고훈범;김진근;이성태
    • Magazine of the Korea Concrete Institute
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    • v.9 no.6
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    • pp.207-216
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    • 1997
  • 본연구는 축방향 변형 구속이 고강도 콘크리트 휨부재의 휨 전단거동에 미치는 영향을 조사하기 위한 것으로, 수화열과 건조수축에 기인하는 축방향 변형과 재하에 의한 축방향 변형을 구속한 부재 및 무구속 부재에 대하여 휨파괴와 전단파괴 실험을 실시하였다. 타설 직후부터 축변형을 구속한 실험체의 재하시 강성은 재하전의 구속으로 발생한 관통균열의 영향을 받아 무구속 실험체의 강성보다 낮지만, 재하시의 축변형 구속에 따른 압축구속력의 상승으로 인하여 강성의 크기는 역전되었다 축변형이 완전히 구속된 휨부재의 휨강도는 무구속 부재보다 20%이상 상승하지만 변형능력은 감소하는 것으로 나타났으며, 재하전의 축변형 구속에 의한 관통균열(균열폭 0.1mm 미만)은 부재의 전단내력 및 전단균열 진전 형상에 영향을 미치지 않았다.

Development of Preheat-free 800 MPa GMA Welding Consumable (800MPa급 무예열 GMA 용접재료 개발)

  • Kim, Hee-Jin;Seo, J.S.;Park, H.K.;Park, C.K.
    • Proceedings of the KWS Conference
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    • 2009.11a
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    • pp.39-39
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    • 2009
  • 고강도강의 용접성은 저온균열 저항성으로 대변되는데, TMCP강과 HSLA강 등이 개발되면서 고강도강의 저온균열저항성이 크게 향상되어 무예열 용접성이 확보되었다. 그러나 용접재료 측면에서는 그에 상응하는 재료의 개발이 지연되어 용착금속부에서의 저온균열이 심각한 문제로 대두되고 있는 실정이다. 이러한 문제는 800 MPa급인 HY-100강재를 HSLA-100강으로 대체하는 과정에서 현실적인 문제로 제기 되었다. 즉 HSLA강은 용접 예열이 필요치 않았으나 기존의 용접재료, 즉 HY-100 강재에 사용하던 용접재료를 사용하게 되면 용착금속부에서 저온균열이 발생하여 용접예열을 생략할 수 없다는 판단에 이르게 되었던 것이다. 이에 본 연구의 목적은 HSLA-100강을 무예열 용접할 수 있는 GMA 용접와이어 개발하는 것이며, 구체적인 개발 목표는 무예열 용접조건에서 800 MPa 이상의 인장강도를 가지며 $-50^{\circ}C$에서의 충격인성이 50 J 이상인 GMA 용접와이어 개발하는 것이다. 이러한 용접재료를 합금설계함에 있어 무예열 용접성을 확보하기 위하여 용접재료의 탄소함량을 0.01% 수준으로 하고, 용착금속의 인장강도와 저온 충격치에 미치는 Mn과 Mo 함량의 영향을 검토하고 각각의 조성을 실험계획법으로 확정하였다. 그리고 확산성수소량에 따른 저온균열 발생 여부를 확인하여 무예열용접성을 확보하기 위해서는 확산성수소량이 3ml/100g 이하가 되어야 한다는 사실을 실험적으로 확인하였다. 그리고 이를 달성하기 위해서는 원자재인 와이어로드의 표면 품질이 중요하다는 사실도 확인할 수 있었다. 다음으로는 실험계획법에 의거하여 선정된 합금조성의 신뢰성을 검증하기 위하여 800kg 중량의 시제품을 생산하였으며, 생산된 시제품에 대해서는 실험계획법에서 사용한 Ar+5%CO2외에도 Ar+20%CO2를 적용하여 보호가스의 영향을 검토하였다. 검토 과정에서 Ar+20%CO2용으로 사용하기 위해서는 용접재료의 Si 및 Mn 함량이 상향조정되어야 함을 확인할 수 있었다. 그리고 탄소함량을 0.05% 수준으로 증가시키면 Mo 함량을 크게 저하시킬 수 있음도 확인할 수 있었다. 이러한 과정을 거쳐 개발된 GMA 용접재료는 무예열 용접조건에서 저온균열이 발생하지 않았으며, 인장강도는 830 MPa이었으며 $-50^{\circ}C$에서의 충격치는 90 J 이상이었다.

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Fracture Properties of High Strength Concrete Disk with Center-Crack (중앙에 노치가 있는 고강도 콘크리트 디스크의 파괴특성)

  • 진치섭;김희성;박현재;김민철
    • Journal of the Korea Concrete Institute
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    • v.13 no.2
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    • pp.161-167
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    • 2001
  • It is difficult to obtain accurate fracture toughness values using three point bending test(TPB) proposed by RILEM committees because the shape of load-deflection curve is irregular and final crack propagation occurs after some slow stable cracking. However, fracture toughness is easily obtained from crack initiation load in the disk test. In this paper, the fracture properties of high strength concrete disks with center-crack was investigated. For this purpose, the experimental results were compared with the results by finite element analysis(FEA). And the experimental fracture locus was compared with theoretical fracture locus. Also, the results of fracture properties for the degree of concrete strength are presented. It is concluded from this study that results from FEA with maximum stress theory were compared well with the results from experiment. And the degree of concrete strength was contributed to the crack initiation load and fracture toughness, but was not contributed to the failure angle. Also, The discrepancy of fracture locus between the maximum stress theory and the experiment for concrete is considered to depend upon a large energy requirement for inducing the mixed-mode and sliding mode fractures.

Axial Behavior of Concrete Cylinders Confined with FRP Wires (FRP 와이어 보강 콘크리트 공시체의 압축거동)

  • Cho, Baiksoon;Lee, Jong-Han;Choi, Eunsoo
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.33 no.5
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    • pp.1765-1775
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    • 2013
  • The application of FRP wire as a mean of improving strength and ductility capacity of concrete cylinders under axial compressive load through confinement is investigated experimentally in this study. An experimental investigation involves axial compressive test of three confining amounts of FRP wire and three concrete compressive strengths. The effectiveness of FRP wire confinement on the concrete microstructure were examined by evaluating the internal concrete damage using axial, circumferential, and volumetric strains. The axial stress-strain relations of FRP wire confined concrete showed bilinear behavior with transition region. It showed strain-hardening behavior in the post-cracking region. The load carrying capacity was linearly increased with increasing of the amount of FRP wire. The ultimate strength of the 35 MPa specimen confined with 3 layer of FRP wire was increased by 286% compared to control one. When the concrete were effectively confined with FRP wire, horizontal cracks were formed by shearing. It was developed from sudden expansion of the concrete due to confinement ruptures at one side while the FRP wire was still working in hindering expansion of concrete at the other side of the crack. The FRP wire failure strains obtained from FRP wire confined concrete tests were 55~90%, average 69.5%, of the FRP wire ultimate uniaxial tensile strain. It was as high as any other FRP confined method. The magnitude of FRP wire failure strain was related to the FRP wire effectiveness.

Comparison of Flexural Tensile Strength according to the Presence of Notch and Fiber Content in Ultra High Performance Cementitious Composites (노치 유무와 섬유혼입률에 따른 UHPCC의 휨인장강도 비교)

  • Kang, Su-Tae
    • Journal of the Korea Concrete Institute
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    • v.24 no.5
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    • pp.525-533
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    • 2012
  • In this study, bending tests were performed on beam specimens made of UHPCC with the fiber content range of 0~5 vol% to investigate the contribution of fiber content to first cracking strength and flexural tensile strength. Also, four-point bending tests for unnotched beam as well as three-point bending test for notched beam were performed to estimate the effect of the presence of notch on the strengths. The experiment result showed that the increase in fiber content made linear improvement in the flexural tensile strength; whereas first cracking strength was enhanced only when at least 1 vol% of fibers was incorporated. Comparison of the bending test results with and without notch showed that the notch effect varied with the fiber content. The increase in fiber content diminished the effect of stress concentration on the notch tip, reducing the difference in the strengths. With much higher fiber content, the effect of stress concentration almost disappeared and the defection on cracking plane or the size effect dominated the strengths, consequently resulting in higher strengths in the notched beams than the unnotched ones.

Glass-alumina Composites Prepared by Melt Infi1tration: III. In-vitro Fatigue Behavior (용융침투법으로 제조한 유리-알루미나 복합체: III. In-vitro 피로거동)

  • 이득용;이세종;박일석;장주웅;김병수
    • Journal of the Korean Ceramic Society
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    • v.40 no.7
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    • pp.662-666
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    • 2003
  • Hertzian cyclic fatigue properties of the alumina-glass dental ceramics were evaluated in exact in vitro environment at contact loads from 200 N to 1000 N and up to 10$\^$6/ cycles to investigate the indentation damage and strength degradation. At 200 N, no strength degradation and crack generation was observed up to 10$\^$6/ contact cycles. As load increased from 200 N to 1000 N, the drastic reduction in strength was found when the damage transition from ring to radial crack occurred. The extent of strength degradation was more pronounced in vitro environments probably due to chemical reaction of artificial saliva with glass phase through radial cracks introduced during large numbers of contacts.

The Characteristics of Strength Development and Curing Cycle of the Steam Cured Concrete (증기양생 콘크리트의 양생온도주기와 강도발현 특성)

  • Kim, Kwang-Don;Kim, Choon-Ho
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.14 no.5
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    • pp.63-71
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    • 2010
  • This paper is about a research of steam curing which is one of the curing methods for accelerating the early-age strength of pre-cast concrete. With cylinder mold and mock-up specimen, the research was executed to study the best cycle of steam curing temperature through quantifying cycle of steam curing and maximum temperature, while the required strength is developed under the early-age. Moreover, causes and measurements for the high temperature of concrete, which is due to the steam curing, and the crack, which occurs when removing steel form, are stated. Ultimately, the economical method of producing, which satisfies early-age strength development and quality assurance while manufacturing PC structure, is stated.

A Comprehensive Examination of Autogenous Shrinkage in Ultra-High-Strength Concrete augmented with Graphene and Hollow Glass Powder (그래핀과 유공유리분말을 사용한 초고강도 콘크리트의 자기수축에 관한 실험적 연구)

  • Seo, Tae-Seok;Lee, Hyun-Seung;Kim, Kang-Min
    • Journal of the Korea Institute of Building Construction
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    • v.23 no.5
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    • pp.547-558
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    • 2023
  • This research delves into the fabrication of an ultra-high-strength concrete, enriched with oxidized graphene nanoplatelet(GO) and hollow glass powder(HGP), notably eschewing the conventional inclusion of silica fume(SF). The primary objective was to scrutinize the autogenous shrinkage characteristics of this innovative formulation. It was discerned that the NewMix specimen, which incorporated the cGO(sourced from Company C) and HGP, and intentionally bypassed SF, showcased a commendable 13% reduction in autogenous shrinkage relative to the benchmark(Ref) specimenthat incorporated SF. Moreover, the proclivity for crack formation owing to autogenous shrinkage in the NewMix was observed to manifested by NewMix at the juncture of cracking emerged as the apex value. Attributed to the expansive specific surface area and exemplary dispersibility of cGO, it was postulated that the concrete's pore structure benefitted from enhanced infill, leading to a reduction in autogenous shrinkage. Additionally, the cGO integration fortified the concrete's resistance to crack initiation. Consequently, such an enhancement is posied to be pivotal in mitigating crack propagation resulting from autogenous shrinkage in ultra-high-strength concrete.