• Title/Summary/Keyword: 현장 재료 강도

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A Study for In-situ Application of High Strength Antiwashout Underwater Concrete (고장도용 수중불분리성 콘크리트의 현장적용을 위한 연구)

  • 문한영;송용규;이승훈;정재홍
    • Journal of the Korea Concrete Institute
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    • v.13 no.4
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    • pp.336-345
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    • 2001
  • The construction of underwater structures has been increased, but underwater concrete hassome problems of quality deterioration and contamination around in-situ of civil and architecture; therefore, new materials and methods for them are demanded. In this paper in-situ application of underwater antiwashout concrete which is manufactured for trio purpose of not only decreasing suspended solids and the heat of hydration but also increasing long term strength was studied. In the case of mock-up test(Ⅰ), when underwater antiwashout concrete, whose slump flow was 58 cm, was placed in the mock-up test at a speed of 24 ㎥/hr, it took about a minute to flow to the side wall, and the surface was maintained at horizontal level. In this case, compressive strength of the core specimens in each section was higher than the standard design compressive strength of 240 kgf/㎠. In the case of mock-up test(II), pH value and suspended solids of high strength underwater antiwashout concrete were 10.0∼11.0 and 51 mg/ℓ at 30 minutes later, initial and final setting time were about 30, 37 hr, and the slump flow of that was 53$\pm$2 cm. In the placement at a speed of 27 ㎥/hr, there was no large difference in flowing velocity, with or without reinforcement and flowing slope was maintained at horizontal level. In this case, compressive strength and elastic modulus of the core specimens somewhat decreased as flowing distance was far : however, those of central area showed the highest value.

Exploring the Flexural Bond Strength of Polymer-Cement Composition in Crack Repair Applications (균열 보수용 폴리머 시멘트 복합체의 휨접착강도에 관한 연구)

  • Jo, Young-Kug
    • Journal of the Korea Institute of Building Construction
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    • v.24 no.1
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    • pp.23-34
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    • 2024
  • This research aims to assess the flexural bonding efficacy of polymer-cement composites(PCCs) in mending cracks within reinforced concrete(RC) structures. The study involved infilling PCCs into cement mortar cracks of varying dimensions, followed by evaluations of enhancements in flexural adhesion and strength. The findings indicate that the flexural bond performance of PCCs in crack repair is influenced by the cement type, polymer dispersion, and the polymer-to-binder ratio. Specifically, the use of ultra-high early strength cement combined with silica fume resulted in an up to 19.0% improvement in flexural bond strength compared to the application of ordinary Portland cement with silica fume. It was observed that the augmentation in flexural strength of cement mortar filled with PCCs was significantly more dependent on the depth of the crack rather than the width. Furthermore, PCCs not only acted as repair agents but also as reinforcement materials, enhancing the flexural strength to a certain extent. Consequently, this study concludes that PCCs formulated with ultra-high early strength cement, various polymer dispersions, silica fume, and a high polymer-to-binder ratio ranging from 60% to 80% are highly effective as maintenance materials for crack filling in practical settings.

A Evaluation on the Field Application of High Strength Concrete for CFT Column (고강도 CFT용 콘크리트의 현장적용성 평가 및 장기거동 예측)

  • Park, Je Young;Chung, Kyung Soo;Kim, Woo Jae;Lee, Jong In;Kim, Yong Min
    • Journal of the Korea Concrete Institute
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    • v.26 no.6
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    • pp.707-714
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    • 2014
  • CFT (Concrete-Filled Tube) is a type of steel column comprised of steel tube and concrete. Steel tube holds concrete and the concrete inside tube takes charge of compressive load. This study presents structural performance of the CFT column which has 73~100 MPa high strength concrete inside. Fluidity, mechanical compression, pump pressure test in flexible pipe were conducted for understanding properties of the high strength concrete. Material properties were achieved by various experimental tests, such as slump, slump flow, air content, U-box, O-Lot, L-flow. In addition, mock-up tests were conducted to monitor concrete filling, hydration heat, compressive strength. From construction sites in Sang-am dong and University of Seo-kang, long-term behaviors could be effectively predicted in terms of ACI 209 material model considering elastic deformation, shrinkage and creep.

Evaluation of Field Application for the mix properties of the thixotropic grout (가소성그라우트의 배합특성 및 현장 적용성 평가)

  • Kim, Hak-Moon;Jang, Kyung-Jun
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.12 no.9
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    • pp.4223-4238
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    • 2011
  • The advantages of grouting are the simple instrument, the simple procedure of practice and the simple verification of grouting result. but the more grouting practice there is, the more damages of environment from grouting practice and grouting materials there are. so, the grouting materials and methods with the character of environment friendly are introduced in construction field, recently. This paper is to study of the physical characteristics that has thixotropic character and that consists of inorganic and polycarboxylate co-polymer. In study, various testing methods are performed such as a viscosity, a thixotropy, a compressive strength, a heavy metal detection and pH measurement in lab test and a low pressure injection test and a high pressure injection test in field with different soil type. As a result, a optimum mix ratio is proposed by analyzing the result of lab test. the field applicability is verified by checking a injection pressure, a grout volume and a hardened body of grout by excavating the practice site.

A Study on the Basic and Compression Characteristics of Lightweight Waste for Use as Fill Materials (성토재 적용을 위한 경량폐기물의 기본물성 및 압축특성 연구)

  • Lee, Sung-Jin;Kim, Yun-Ki;Koh, Tae-Hoon;Lee, Su-Hyung;Shin, Min-Ho
    • Journal of the Korean Geotechnical Society
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    • v.27 no.5
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    • pp.61-74
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    • 2011
  • This is a fundamental research on use as fill material of lightweight waste such as bottom ash and tire shred. We carried out the test for particle size distribution, specific gravity, density, shear strength, permeability and vertical compression settlement, considering water content change and temperature effect of several waste materials. Bottom ash, which is lighter than soils, has similar permeability and particle size distribution to those of weathered soils. But permeability may differ depending on the particle size distribution. The shear strength aspect of bottom ash and tire shred mixed materials are similar to that of natural fill materials. In the 1-D vertical compression settlement test, we could be assured that bottom ash and tire shred mixed materials showed similar compression settlement to that of sand under actual vertical stress. Furthermore, materials including bottom ash showed smaller compression settlement than that of weathered soils in the long-term settlement test under wetting and freezing-thawing condition.

The Properties of Compressive Strength of Non-standard Specimens Considered Strength Level (강도수준을 고려한 비표준형 공시체의 압축강도 특성)

  • Lee, Seung-Han;Jung, Yong-Wook;Yun, Yong-Ho;Jang, Seck-Soo;Yeo, In-Dong
    • Proceedings of the Korea Concrete Institute Conference
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    • 2008.04a
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    • pp.781-784
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    • 2008
  • Recently as application of high-strength concrete on concrete structures has been on the rise, use of non-standard specimen is increasing. Therefore, this study investigated the effect of specimen's size effect, ratio of height/diameter and curing conditions on concrete compressive strength. Results of experiments showed that as size of specimen increased as much as 1 mm, standard design compressive strength of 24MPa fell as much as0.15MPa 40MPa fell as much as 0.1MPa 80MPa fell as much as 0.3MPa, and it indicates that as the level of strength is intensified, the decrement of compressive strength increases. As ratio of height/diameter increased as much as 1.0, compressive strength of 24MPa fell as much as 2.9MPa 40MPa fell as much as 3.7MPa 80MPa fell as much as 9.8MPa, and it means that as strength of concrete is higher, influence of ratio of height/diameter becomes bigger.

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화력발전용 보일러 튜브의 수명평가

  • 김건영
    • Journal of the KSME
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    • v.32 no.4
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    • pp.335-339
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    • 1992
  • 보일러 튜브의 열화원인에 근거하여 수명을 평가하는 방법 중 실제 현장에서 실용화되고 있는 방법들에 대하여 개략적이나마 기술하여 개념을 정립코자 하였다. 그러나 실제 보일러는 설비가 방대할 뿐만 아니라 사용조건이 가혹하여 수명예측을 위한 평가기술만으로 설비를 사고없이 안 전하게 운용하기는 대단히 힘들다. 또한 기술분야도 재료, 강도, 설계, 부식, 연소 등 대단히 광 범위하여 많은 관련자를 필요로 하므로 설계자, 제작자, 사용자, 연구자 및 기능 분야 등이 독 립적이고 종합적인 협조하에서만 사고를 예방할 수 있다. 따라서 경년열화 및 수명평가 연구에 관심이 있는 각 분야의 종사자들이 꾸준히 함께 노력 할 때만이 우리 나라 장치산업의 운용기술 축적이 가능하리라 여기며 상호간의 노력을 다짐한다.

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Batch Plant and Truck Agitator of Ready Mixed Concrete (레미콘의 혼합설비 및 적재 운반설비 관리)

  • Kang, Hun;Lee, Jong-Ryeol
    • Magazine of the Korea Concrete Institute
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    • v.14 no.4
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    • pp.33-39
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    • 2002
  • 레미콘의 품질성능을 좌우하는 것은 콘크리트 사용재료 및 배합뿐만 아니라 레미콘을 제조하는 믹서 및 이를 현장까지 운반하는 트럭 에지테이터의 품질성능에 크게 좌우된다. 그러나, 레미콘 공장의 혼합 설비인 믹서 및 트럭 에지테이터에 관한 국내 자료는 거의 전무한 실정이며 이에 관한 연구도 상대적으로 매우 부족하다. 특히, 최근에는 고강도 콘크리트, 고유동 콘크리트, 고강도 경량 콘크리트, 수중불분리 콘크리트, 섬유보강 콘크리트 등 고성능 콘크리트 성능에 대한 요구가 날로 증가하는 추세이며 이에 따라 레미콘 공장에서도 혼합설비 및 운반설비가 고성능화 되어 가는 추세이다.(중략)

Gas Metal Arc Welding of Aluminum Alloys (알루미늄 합금의 GMAW 용접)

  • 윤광희;한용섭
    • Journal of Welding and Joining
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    • v.12 no.1
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    • pp.16-27
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    • 1994
  • 1970년대 2번에 걸친 석유 파동 이후 재료의 경량화는 자동차, 우주항공분야에서 중요한 문제로 대두되었다. 알루미늄합금은 높은 강도/밀도비, 내식성, 인성 및 저온 특성을 보유하고 있어 일반 가정용품에서 자동차, 우주항공, 선박같은 수송장비까지 여러분야에 사용되고 있으며, 그 사용량과 적용분야는 해가 갈수록 증가하고 있다. 알루미늄합금의 용접특성과 용접 시공기술에 대한 연구결과는 상당히 많이 발표되어 있으나, 실제 현장용접시에는 기공, 불완전 용입 등의 예상치 못한 용접불양이 발생한다. 알루미늄합금의 용접 방법으로는 GTAW, GMAW 등의 보호가스 용접이 주로 사용되고 있다. 본 고에서는 알루미늄합금의 GMAW용접 특성과 용접시 용접 결함에 대하여 간단히 기술하고자 한다.

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An Evaluation of Epoxy Asphalt Mixtures for Long-Span Steel Bridge Deck (장경간 강바닥판 교량용 에폭시 아스팔트 혼합물의 적용성 평가)

  • Baek, Yu Jin;Park, Chang Woo;Kim, Nakseok
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.32 no.6D
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    • pp.579-586
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    • 2012
  • The main objective of the research is to evaluate the laboratory performances of epoxy asphalt mixtures for long-span steel bridge decks. The aggregate gradations were recommended for field applications. The laboratory performance test results showed that the durability of epoxy asphalt mixtures was more noticeable than that of conventional ones. The structural analysis was conducted using resilient modulus and bond-shear test results. The analysis results revealed that just 9% out of total bond-shear stress was enough for the entire required bond-shear stress in the pavement system. The tensile stresses in the bridge decks were within limits compared to the laboratory test results from the Nanjing Grand Bridge in China. As a result, the laboratory performances of the epoxy asphalt mixtures for long-span steel bridge decks were better than those of conventional asphalt mixtures. However, the laboratory performance tests of epoxy asphalt mixtures for long-span steel bridge decks should be conducted precisely since the strengths of the mixtures are sensitive to the temperatures and curing times.