• Title/Summary/Keyword: 시공조건

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Analysis of the influence of low viscosity typed high range water reducer on rheological properties high performance cement paste depending on SCM types and contents (저점도형 고성능 감수제가 다양한 혼화재 종류 및 치환량 조건에서 고성능 시멘트 페이스트의 레올로지 성능에 미치는 영향 분석)

  • Jeon, Jong-Woon;Son, Bae-Geun;Lee, Hyang-Sun;Han, Dong-Yeop
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2018.11a
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    • pp.46-47
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    • 2018
  • High performance concrete with low water-to-cement ratio has been widely used with increased demand of high rising buildings and huge scaled structures. Additionally, for high performance concrete, various SCMs are replaced to improve its performance from fresh state to hardened state. With the drawback of increased viscosity of the concrete mixture for high performance concrete, low-viscosity typed high range water reducer is the relatively new admixture. Therefore, as a goal of the research, under using various SCMs with wide range of content, the performance of low-viscosity typed high range water reducer was evaluated. Especially, in this research, the influence of low-viscosity typed high range water reducer on rheological properties including plastic viscosity and yield stress were assessed. As a result of the research, it is expected to provide a fundamental information of low -viscosity typed high ranged water reducer on high performance concrete with various conditions of SCMs.

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A Study on the Analysis of 3 Dimensional Substrate Behaviour of Complex Environmental Deterioration and the Analysis of Results (방수재료 및 공법의 내구성 평가를 위한 복합열화분석용 3차원 거동대응 시험결과)

  • Song, Je-Young;Seo, Hyun-Jae;Choi, Eun-Kyu;Lee, Jung-Hun;Kim, Byoungil;Oh, Sang-Keun
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2018.11a
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    • pp.189-190
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    • 2018
  • KS standards mostly relate to single component material evaluation, so in cases of underground structure environments, most cannot predict the existing composite forms of deterioration, resulting in the applied waterproofing materials becoming unable to respond to these damaging factors. Current domestic waterproofing market in Korea mainly uses single-ply waterproofing materials comprised of coatings or waterproof sheets and two or more-ply composite waterproofing methods. In order to evaluate these types of composite waterproofing systems, a new test equipment and method that incorporates various deterioration conditions (joint displacement, chemical exposure, water pressure etc) was developed. In a comparison testing, the results showed that flexible type materials have higher response performance towards joint displacement than the hardened material.

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Strength Properties of Bisphenol A-Type Epoxy-Modified Mortars under Various Curing Conditions (각종 양생조건에 따른 비스페놀 A형 에폭시수지 혼입 모르타르의 강도성상)

  • Kim, Wan-Ki
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2009.11a
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    • pp.55-59
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    • 2009
  • The epoxy resin without hardener can harden by a ring-opening reaction in the presence of the alkalies produced by the hydration of cement in epoxy-modified mortars and concretes. This paper investigates the effect of curing conditions on the strength improvement of polymer-modified mortars using bisphenol A-type epoxy resin without hardener. The polymer-modified mortars using epoxy resin are prepared with various polymer-cement ratios, and subjected to ideal, water, dry and heat cures. In the heat cure, the epoxy-modified mortars are sealed or unsealed with a PVDC (polyvinylidene chloride) film. The epoxy-modified mortars are tested for flexural and compressive strengths at desired curing methods. The microstructures of the epoxy-modified mortars are also observed by scanning electron microscope. The effects of curing conditions on the strength development of the epoxy-modified mortars are examined. From the test results, the marked effectiveness of the heat cure under the PVDC film sealing against the development of the strength of the epoxy-modified mortar without the hardener is recognized. The flexural and compressive strengths of 7-day-90℃ heat-cured, PVDC film-sealed epoxy-modified mortars without hardener reach 7 to 17MPa and 24 to 44MPa respectively, and are two to three times of Unmodified mortar. Such high strength development of the epoxy-modified mortars may be achieved by the dense microstructure formation by cement hydrates and the hardening of the epoxy resin in the mortars.

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Optimal Compensation of Differential Column Shortening in Tall Buildings for Multi Column Groups (고층건물의 멀티 기둥그룹에 대한 부등기둥축소량의 최적보정기법)

  • Kim, Yeong-Min
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.21 no.2
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    • pp.189-197
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    • 2008
  • This study presents optimal compensation algorithm of differential column shortening for more than two column groups. The proposed algorithm produces the minimum story groups and their compensation thicknesses which satisfy constraint conditions on performance and construction and enables not only the relative compensation but also the mixed compensation considering absolute shortening. The simulated annealing algorithm is used as the main optimization technique. The applicability of the proposed algorithm was verified by applying it to the 61-storey building where compensation of differential column shortening had already been performed. Using, the proposed algorithm compensation was performed easily and the number of compensation was less than the field method.

Parametric Analysis on Construction Conditions to Control Thermal Cracks in Subway Concrete Structure (지하철 구조물의 온도균열제어를 위한 시공조건별 해석적 영향 분석)

  • 김연태;김상철
    • Journal of the Korean Society for Railway
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    • v.7 no.4
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    • pp.312-318
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    • 2004
  • The wall in a subway structure is easily subject to crack occurrence since its expansion and shrinkage associated with hydration heat reaction is constrained by the slab. The greater problem is that the crack in the wall may be developed to pass through thickness and eventually deteriorate the structure due to rusting of reinforced steel. Thus, this study aims at controlling thermal cracks as much as possible and determining an optimized size of concrete placement through hydration heat analysis. For this study, effects of placement height, length, temperature and types of cement on the thermal cracks were evaluated by temperature rise, thermal stress and crack index. As results of parametric study, it was found that placement height and length do not have an effect on the temperature rise but have significant one on thermal stress which relates to direct possibility of thermal crack occurrence. This means that proper selection of size balancing internal constraint with external one is much more important than reducing the placement height and length simply. In order to prevent from thermal cracks most effectively, in addition, it was noted to reduce placement temperature and to use the cement blended with mineral admixture.

Development and Application of Unit Table Form using Euro Form for High-rise Building Construction (연질 및 경질 초속경도막방수재를 복합화한 옥상노출방수공법에 관한 실험적 연구(구조물 거동 대응성))

  • Choi, Eun-Kyu;Seo, Hyun-Jae;Kim, Bum-Soo;Lee, Jung-Hun;Song, Je-Young;Oh, Sang-Keun
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2017.11a
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    • pp.141-142
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    • 2017
  • New waterproofing technologies have emerged in the field of building waterproofing due to the recent diversification of the size and type of structures, the enhancement of required performance, and the diversification of new technologies (such as materials and methods)(Sheet waterproofing material, coating waterproofing material) is reduced, and composite waterproofing materials that utilize mutual benefits are widely used by compounding them (sheet+coating film, coating film+sheet). However, it is true that there is no evaluation method that can verify these composite waterproof materials, which is the most widely used at present, but the KS standard only specifies tests for individual materials However, there is a situation in which the countermeasures without a test method for composite waterproofing become sudden.

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Fiber blending Ratio Effect on Tensile Properties of Hybrid Fiber Reinforced Cement-based Composites under High Strain Rate (고변형속도 조건에서 섬유 혼합비가 하이브리드 섬유보강 시멘트복합체의 인장특성에 미치는 영향)

  • Son, Min-Jae;Kim, Gyu-Yong;Lee, Bo-Kyeong;Lee, Sang-Kyu;Kim, Gyeong-Tae;Nam, Jeong-Soo
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2017.11a
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    • pp.147-148
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    • 2017
  • In this study, the tensile properties of mono and hybrid fiber reinforced cement-based composite according to fiber blending ratio under the high strain rate was evaluated. Experimental results, the HSF1.5PVA0.5 shown the highest tensile strength because the PVA fiber suppressed the micro cracks in the matrix around the hooked steel fiber and improved the pull-out resistance of hooked steel fiber. Thus, DIF of strain capacity and fracture toughness of HSF1.5PVA were greatly improved. Also, the fracture toughness was greatly improved because the tensile stress was slowly decreased after the peak stress by improvement of the pull-out resistance of hooked steel fiber at strain rate 101/s.

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The Physical Properties of the Block Using Flame Resistant EPS Wastes (폐 난연성 EPS의 혼합조건에 따른 재생골재 블록의 물성에 관한 실험적 연구)

  • Cho, Kwang-Hyun;Kim, Ji-Hyun;Chung, Chul-Woo;Lee, Jae-Yong;Lee, Soo-Yong
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2013.11a
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    • pp.152-153
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    • 2013
  • Based on the Fire Service Act of mandatory provision, new buildings are strictly forced to use fire protection materials. Flame resistant EPS is one of those materials. Unlike conventional EPS that can be fused to make EPS ingot and be recycled for various purposes, flame resistant EPS waste cannot be recycled due to the presence of protective coating that is applied to increase the fire protection properties of EPS. A suitable alternative that can process large amount of flame resistant EPS wastes needs to be developed, and one of the possible alternative is to use them as construction materials. In this research, experiments were designed to observe whether the flame resistant EPS wastes can be utilized as partial replacements of fine aggregates in cement mortar. The replacement ratio of waste EPS was varied, and its effect on compressive strength and absorption capacity was investigated. According to the experimental results, both compressive strength and absorption capacity met the Korean Standard specification for cement bricks and blocks, indicating that flame resistant EPS wastes can be used for construction purposes.

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Experimental Study on Bed Change Around Upward Vertical Groyne with Installed Spacing (설치간격에 따른 상향수제 하상변동에 관한 실험연구)

  • Yeo, Hong-Koo;Kang, Joon-Gu;Kim, Sung-Jung;Yoon, Byeong-Mo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2012.05a
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    • pp.644-648
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    • 2012
  • 하천 내 설치하는 수제는 제방보호 및 유로변경의 목적으로 하천내 시공되는 구조물 중의 하나로서 하천복원과정에 있어 필수불가결한 구조물 중의 하나로 인식되고 있다. 수제는 대개 하나 이상의 일련의 군집형태로 수로 자체의 특성을 고려하여 설치가 되고 있다. 그러나 이러한 수제의 무분별한 설치는 주변 경관을 저해하거나 시공에 따른 비용 부담을 가중시키기 충분하다. 치수적 목적 이외에 경제적인 문제점을 해결하기 위해서는 실험을 통해 수제의 적절한 간격을 제시하는 것이 필요하다. 수제간격을 제시하기 위한 기초자료를 얻기 위해 본 연구에서는 기존 연직 및 하향군수제 하상변동실험과 동일한 조건으로 상향수제($\theta=45^{\circ}$)를 대상으로 수제간격에 대한 이동상 실험을 수행 하여 수제주변 및 수제역 내에서 발생하는 하상변동특성을 검토하였으며, 기존자료와 비교하였다. 실험결과 흐름집중 증가로 인해 국부세굴이 크게 발생하고 있으며 세굴폭은 수제길이의 3배 지점까지 영향을 미치고 있었으며, 퇴적고는 설치간격이 증가할수록 높게 형성되고 있었다. 연직 및 하향수제자료와 비교한 결과 상향수제는 수제끝단부에서 발생하는 국부적인 세굴에는 불리하나 수제역내 퇴적에는 유리한 것으로 나타났다.

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Evaluation of Compaction Properties of Subgrade Soil by Gyratory Compaction Curve (선회다짐곡선특성을 이용한 노상토의 다짐도 평가)

  • Lee, Kwan-Ho;Cha, Min-Kyung;Lim, Yu-Jin
    • Journal of the Korean Society of Hazard Mitigation
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    • v.9 no.1
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    • pp.33-40
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    • 2009
  • Compacted soil are used in almost roadway construction with compaction of soil. The direct consequence of soil compaction is densification, which in turn results in higher strength, lower compressibility, and lower permeability. The standard and modified Proctor tests are the most common methods. Both of these tests utilize impact compaction, although impact compaction shows no resemblance to any type of field compaction and is ineffective for granular soils. It has been dramatic advances in field compaction equipment. Therefore, the Proctor tests no longer represent the maximum achievable field density. The main objectives of this research are a survey of current field compaction equipment, laboratory investigation of compaction characteristics, and field study of compaction characteristics. The findings from the laboratory and compaction program were used to establish preliminary guidelines for suitable laboratory compaction procedures.