• Title/Summary/Keyword: Concrete Impregnant

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Self Cleaning Hydrophilic Impregnant of Concrete Structure (자기세정 콘크리트 표면보호재 적용에 관한 연구)

  • Song, Hun;Kim, Young-Yup;Chu, Yong-Sik;Lee, Jong-Kyu
    • Proceedings of the Korea Concrete Institute Conference
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    • 2006.11a
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    • pp.645-648
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    • 2006
  • Normally, deterioration in the concrete structure is due to carbonation and chloride ion attack. Therefore, concrete structure is needed to surface protection for increase durability using impregnant. Impregnant classify into two large groups in polymeric and silicate materials. Silicate impregnant is included silicate and alkali silicate(sodium and lithium silicate). Thus, this study is concerned with self cleaning hydrophilic property of concrete structure using silicate impregnant. From the experimental test result, TEOS and lithium silicate make good use of hydrophilic impregnant.

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Durability of Hydrophilic Alkali Silicate Impregnant of Concrete Structure (알칼리 실리케이트계 침투성 콘크리트 표면보호재의 내구특성)

  • Song, Hun;Lee, Jong-Kyu;Chu, Yong-Sik;Kim, Young-Yup
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2007.11a
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    • pp.91-94
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    • 2007
  • It is essential every concrete structure should continue to perform its intended functions, that is maintain its required strength and durability, during the service life. However, deterioration occurs more progressively from the outside of concrete exposed to severe conditions. Deterioration in the concrete structure is due to carbonation and chloride ion attack. Therefore, concrete structure is needed to surface protection for increase durability using impregnant. Impregnant classify into two large groups in polymeric and silicate materials. Silicate impregnant is included silane and alkali silicate(sodium and lithium silicate). Thus, this study is concerned with carbonation and chloride ion resistance of self cleaning hydrophilic impregnant of concrete structure using lithium and potassium silicate. From the experimental test result, lithium and potassium silicate have a good properties as a carbonation and chloride ion resistance. Lithium and potassium silicate make good use of hydrophilic impregnant.

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Reforming Property of Tile and Concrete Surface layer Using Self-cleaning Concrete Impregnant (Self-cleaning 침투성 함침제의 적용에 따른 타일 및 콘크리트 표층부의 개질특성)

  • Song, Hun;Jeon, Chan-Soo;Kim, Young-Ho
    • Journal of The Korean Digital Architecture Interior Association
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    • v.13 no.4
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    • pp.61-68
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    • 2013
  • Concrete structure is not the only material vulnerable to physical and chemical processes of deterioration associates with severe conditions. Deterioration of the concrete structure, however, occurs more progressively from the outside of the concrete exposed to severe conditions. Especially, Carbonation, chloride ion attack is more important factor of concrete durability. This study is interested in manufacturing the self-cleaning concrete surface impregnant including TEOS, lithium silicate for the repair of the exposed concrete surface and the color concrete requiring the advanced function in view of the concrete appearance. Form the results, TEOS and lithium silicate are very effective that increasing the concrete durability using self-cleaning concrete impregnant. Self-cleaning concrete impregnant specimens is satisfied with performance requirement of KS standard in adhesion test in tension but the reinforcement of concrete substrate is slight. So, the self-cleaning concrete impregnant of this study is more desirable for the improvement of durability rather than the reinforcement.

A Study on Durability Improvement for Concrete Structures Using Surface Impregnant (표면침투제를 이용한 콘크리트의 내구성 향상에 대한 연구)

  • Kwon, Seung-Jun;Park, Sang-Sun;Lee, Sang-Min;Kim, Jeong-Hoon
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.11 no.4
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    • pp.79-88
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    • 2007
  • Concrete structures undergo degradation of durability performance and it generally propagates to the structural problems. Recently. a lot of materials for surface protection for concrete are developed, however, performance is not clearly improved due to the difficulties such as repair construction technique and quality of materials for repairing. In this study, liquid inorganic impregnant for concrete structures is developed and durability performance for impregnated concrete specimens is carried out. Furthermore, the performances of the concrete specimens with developed impregnant is also compared with those of the specimens with impregnant conventionally used. Additional CSH gel is formed through the reaction of calcium hydroxide ($Ca(OH)_2$) and impregnant with silicate. As a result of the reaction, impregnated concrete is evaluated to have more denser surface and resistance to deterioration. Finally it is experimentally verified that the concrete specimens with developed impregnant show better durability performance than normal specimens and those with conventional impregnant.

Adhesion Characteristic and Porosity Change of Alkali Silicate Impregnant of Concrete (Silicate계 콘크리트 함침제 도포에 따른 부착특성 및 공극변화)

  • Song, Hun;Chu, Yong-Sik;Lee, Jong-Kyu;Lim, Young-Chul
    • Journal of the Korean Ceramic Society
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    • v.47 no.4
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    • pp.276-282
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    • 2010
  • There are the impregnating layer formation by surface protective materials or impregnants and the adhesion method by polymer, FRP sheet or steel plate in the surface protective method of concrete structure. The surface impregnation method by impregnants improves the durability of concrete structure by modifying the structure of the concrete surface and also have a merit that can be shortly applied in place without the decrease of concrete surface appearance and is easily applied again. This study is interested in manufacturing the concrete surface impregnants including lithium and potassium silicate for the repair of the exposed concrete and the color concrete requiring the advanced function in view of the concrete appearance. The durability and porosity properties was tested for the review of application. The result of this study show that the effective content of silicate ranges 5 to 20% and the separate application of the first impregnant and the second impregnant is effective for the optimum performance. The adhesion in tension is slightly increased but the reinforcement of concrete substrate is slight. So, the concrete impregnant of this study is more desirable for the improvement of durability rather than the reinforcement.

Selection of Concrete Surface Impregnant through Durability Tests (내구성 실험을 통한 최적 표면침투제의 선정)

  • Kwon, Seung-Jun;Park, Sang-Sun;Lee, Sang-Min;Kim, Jong-Woo
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.11 no.6
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    • pp.77-86
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    • 2007
  • The repair technique utilizing surface impregnant is widely used due to its simple construction procedures and economical benefit. Surface protection through this reparing technique cannot increase the bearing capacity of concrete members much but increase the durability performance and service life efficiently. In this study, fundamental tests such as water suction and permeation are performed for concrete specimens with several organic/inorgarnic impregnant and suitable impregnant is selected on the basis of the results. Finally, durability tests such as carbonation, freezing and thawing, and chloride attack are carried out for the concrete specimens with selected impregnant and it is experimentally verified that they have good resistance to deteriorations.

Surface Layer Change of Concrete with Concrete Impregnant (침투성 함침제에 따른 콘크리트 표층부의 개질특성)

  • Song, Hun;Shin, Hyeong-UK;Chu, Yong-Sik;Lee, Jong-Kyu
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2013.11a
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    • pp.200-201
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    • 2013
  • This study is interested in manufacturing the concrete surface impregnants including tetra ethyl ortho silicate, alkali silicate for the repair of the exposed concrete and the color concrete requiring the advanced function in view of the concrete appearance. The surface layer change and porosity properties was tested for the review of application. The result of this study show that the effective silicate are tetra ethyl ortho silicate and alkali silicate t. The adhesion in tension is slightly increased but the reinforcement of concrete substrate is slight. So, the concrete impregnant of this study is more desirable for the improvement of durability rather than the reinforcement.

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Property of Concrete Surface layer Using Self-Cleaning Silicate Concrete Impregnant (Self-Cleaning 실리케이트계 표면보호제를 적용한 콘크리트 표층부의 특성)

  • Song, Hun;Lee, Jong-Kyu;Chu, Yong-Sik
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.1 no.3
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    • pp.233-239
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    • 2013
  • This study is interested in manufacturing the self-cleaning silicate concrete surface impregnant including tetra ethyl ortho silicate, lithium silicate for the repair of the exposed concrete surface and the color concrete requiring the advanced function in view of the concrete appearance. The concrete surface layer change and static contact angel was tested for the review of application. The result of this study shows that the effective silicate is tetra ethyl ortho silicate and lithium silicate. The adhesion in tension is satisfied with performance requirement of KS standard but the reinforcement of concrete substrate is slight. So, The self-cleaning silicate concrete impregnant of this study is more desirable for the improvement of durability rather than the reinforcement.

Carbonation and Cl Penetration Resistance of Alkali Silicate Impregnant of Concrete (Silicate계 콘크리트 침투성 함침제의 탄산화 및 염해 저항성)

  • Song, Hun;Chu, Yong-Sik;Lee, Jong-Kyu
    • Journal of the Korean Ceramic Society
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    • v.45 no.11
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    • pp.719-724
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    • 2008
  • Every concrete structure should continue to perform its intended functions such as to maintain the required strength and durability during its lifetime. Deterioration of the concrete structure, however, occurs more progressively from the outside of the concrete exposed to severe conditions. Main deteriorations in concrete structures result from carbonation, chloride ion attack and frost attack. Concrete can therefore be more durable by applying surface protection to increase its durability using impregnants, which are normally classified into two large groups in polymeric and silicate materials. Concrete impregnants are composed of silanes and alkali silicates (sodium, potassium and lithium silicate). Thus, this study is concerned with elevating the carbonation and Cl- penetration resistance of concrete structures by applying alkali silicate hydrophilic impregnants including lithium and potassium silicates. From the experimental test results, lithium and potassium silicates produced a good improvement in carbonation resistance and are expected to be used as hydrophilic impregnants of concrete structures.

Mechanical Behavior of Steel Fiber Reinforced Polymer-impregnated Concrete (강섬유보강 폴리머침투콘크리트의 기계적 성질에 관한 연구)

  • 변근주;송영철;정해성;정기영
    • Proceedings of the Korea Concrete Institute Conference
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    • 1993.10a
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    • pp.156-161
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    • 1993
  • This paper is to develop steel fiber reinforced polymer-impregnated concrete(SFPIC) by impregnation polymer impregnate into hardened steel fiber reinforced concrete(SFRC). Steel fiber induces ductile behavior and polymer impregnant increase compressive strength. Steel fiber reinforced polymer-impregnated concrete specimens are prepared with fiber contents of 0.0, 1.5, 2.0, 2.5% and tested to obtain uni-axial and bi-axial compression strengths, tensile strength and flexural strength. The strength and mechanical properties of normal concrete, SFRC, SFPIC are compared.

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