• 제목/요약/키워드: Crack-Healing

검색결과 123건 처리시간 0.202초

전기화학적 전착기법을 활용한 콘크리트의 인공 균열치유에 관한 실험적 연구 (Experimental Study on Artificial Crack Healing for Concrete Using Electrochemical Deposition Method)

  • 이창홍;송하원
    • 콘크리트학회논문집
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    • 제21권4호
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    • pp.409-417
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    • 2009
  • 이 연구에서는 인공균열치유방법으로서 전기화학적 전착기법을 활용한 균열치유에 관한 실험연구를 통해 부 식모니터링의 관점에서 자기균열치유 및 인공균열치유의 비교분석을 수행하였다. 이를 위해 가압전류의 특성 분석, 갈 바닉 전류의 비교분석, 선형분극저항의 비교분석 및 치유전과 치유후의 균열 치유 향상도를 사진화상 분석기법을 통한 정량화 비교로서 수행하였다. 연구결과로부터, 가압전류 모니터링에서 고정 가압전류에 따른 전압의 결과는 시간의 경 과에 따라 일정부분까지 증가하다가 수렴하는 것을 알 수 있었고, 갈바닉 전류 측정에 의해 인공균열치유의 경우가 자 기균열치유에 비해 더욱 넓은 범위의 전류 vs. 전압 범위 분포를 보여 부식저항성을 안정화하고 있음도 확인하였다. 한 편 사진 화상 분석기법을 통해서는 인공균열치유 기법의 경우가 약 1.63배 자기균열치유에 비해 균열치유 향상효과를 가지는 것으로 분석되었다.

Ion Implantation으로 Ca를 첨가한 단결정 $Al_2$O$_3$의 Crck-Like Pore의 Healing 거동-H. Hexagonal Ligaments and Type of Healing (Effect of Ca Implantation on the Sintering and Crack Healing Behavior of High Purity $Al_2$O$_3$ Using Micro-Lithographic Technique -II. Hexagonal Ligaments and Type of Healing)

  • 김배연
    • 한국세라믹학회지
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    • 제36권8호
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    • pp.813-819
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    • 1999
  • Ion implantation, photo-lithography, Ar ion milling과 hot press 법을 이용한 micro-fabrication techrique을 사용하여 고순도 알루미나 단결정인 사파이어의 내부에, 조절된 Ca의 첨가량을 갖고 있는, crack과 비슷한 형태의 기공들을 형성시켰다. 이 bi-cryslal을 각각의 온도에서 열처리하여 Ca 이온이 고온에서 알루미나의 morphology와 hcaling에 미치는 영향을 관찰하였다. 열처리 온도가 올라감에 따라서 crack-like pore의 내부에 hcxagonal bridging ligaments가 생성되었는데, 열처리 온도와 Ca의 첨가량이 증가할수록 크기가 커지는 것을 관찰할 수 있었고, 생성된 hexagonal bndgmg ligaments는 열처리가 진행됨에 따라 서서히 커지면서 모서리가 둥글어지는 현상을 관찰할 수 있었다. Bicrystal 내부에 형성된 crack-like pore는 열처리가 진행되면서 edge regression. ligamcnt growth 및 flow의 3가지의 특징적인 형태로 진행되었다. 이때 edge regression은 상대적으로 저온에서부터 전체 crack-like pore에서 서서히 일어나기 시작하였으며, ligament growth는 일부 crack-like pore에서 진행되있으며, 대단히 빠른 속도로 crack healing이 진행됨을 추정할 수 있었다. Flow는 $1800^{\circ}C$ 이상의 고온에서 모든 crack-like pore에 걸쳐서 느리게 일어남을 알 수 있었다.

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노출환경 조건이 자기치유형 보수 모르타르 시험체의 균열 치유성능에 미치는 영향 (Influence of Exposure Environmental Conditions on the Crack Healing Performance of Self-healing Repair Mortar Specimens)

  • 이웅종;이현호;안상욱;이광명
    • 한국건설순환자원학회논문집
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    • 제6권4호
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    • pp.283-288
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    • 2018
  • 균열 자기치유 소재는 균열발생 시점부터 노출환경 조건에 따라 활성화되기 때문에 치유성능과 균열면의 노출환경 조건과의 관계 규명이 매우 중요하다. 이에 본 연구에서는 자기치유형 보수 모르타르의 치유성능에 노출환경 조건이 미치는 영향을 투수시험을 통하여 조사하였다. 균열시험체의 초기 균열폭에 대한 온도 및 습도의 영향을 조사한 결과, 양생온도의 영향은 미미하였으나, 건습변화에 의해서는 균열닫힘 현상이 발생하고 있음을 확인하였다. 그리고 자기치유형 보수 모르타르 시험체의 균열부위에서 생성된 치유물질은 calcite 광물로 확인되었다. 밀도가 높은 calcite 광물은 중력의 영향을 받아 침강하기 때문에, 균열면의 방향에 따라 치유성능에 다소 차이를 나타냈으며, 또한 대기노출 조건보다 습윤노출 조건에서 치유성능이 크게 향상되었다.

미생물 기반 자발적 콘크리트 균열치유제 성능 분석 및 실스케일 균열치유성능 검증 (Investigation of Microorganism-Based Autonomous Crack Healing Agent and Full-scale Verification of Crack Healing)

  • 유연준;이병재;양주경;이윤
    • 한국구조물진단유지관리공학회 논문집
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    • 제27권6호
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    • pp.138-143
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    • 2023
  • 이 연구에서는 탄산칼슘 형성 박테리아의 내생포자를 접종한 알지네이트 겔과 포자현탁액 형태의 균열치유제를 모르타르에 첨가하여 균열치유성능을 비교, 분석함으로써 균열치유제 제조방법별 균열치유성능을 분석하였다. 또한 박스형 암거 형태의 실 구조물에 적용하여 실험실 환경뿐만 아니라 개발된 균열치유제가 실제 현장에 적용될 수 있는 환경을 조성하여 실구조물 스케일에서 균열치유성능을 검증하고자 하였다. 건조 방식을 달리한 두 가지 형태의 알지네이트 겔로 구성된 균열치유제를 분석한 결과, 건열건조 방식의 균열치유제는 균열치유 성능을 나타내었으나, 동결건조 방식의 경우 얼음 결정에 의해 다수의 포자가 사멸되어 균열치유성능을 잃는 것으로 나타났다. 실스케일 구조물의 균열부에서 추출된 균열치유 추정물질의 SEM 사진과 XRD 패턴 분석 결과 균열치유제에 적용된 균열치유 미생물이 생성한 탄산칼슘 결정 중 하나인 calcite인 것으로 나타났으며, 미생물에 의한 균열치유메커니즘이 실구조물에서 구현될 수 있음을 확인하였다.

균열자기치유조성물을 함유한 균열보수스틱 제조 및 그를 이용한 새로운 콘크리트 미세균열 보수방법 (New maintenance method of concrete micro crack using repair stick with self-healing capability and manufacture of repair stick containing the self-healing ingredient)

  • 안태호;김홍기;김경민;소광호
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2014년도 추계 학술논문 발표대회
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    • pp.111-112
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    • 2014
  • This research focuses on the study that micro-crack of concrete is repaired to use self-healing technology. Self-healing concrete is widely studied in domestic and international construction field recently. Micro-crack(less than 0.3mm)of concrete is repaired using a crack repair stick which containing self-healing agents. Therefore, the crack on construction structure will be easily repaired by using a crack repair stick. Also experiment was proceeded because of evaluating the long term durability.

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Crack-Healing Behavior of SiC with Additive SiO2 Colloid

  • Ahn, Seok-Hwan;Moon, Chang-Kwon;Nam, Ki-Woo
    • 동력기계공학회지
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    • 제19권1호
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    • pp.45-49
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    • 2015
  • This study focuses on the crack-healing behavior and bending strength of SiC ceramics with sintering additives of $SiO_2$colloid. Optimized crack-healing condition was found to be 1hr at an atmosphere of 1373 K. The maximum crack size that can be healed at the optimized condition was a semi-elliptical surface crack of $450{\mu}m$ in diameter. After heat treatment at the optimum temperature in air, the crack morphology almost entirely disappeared and the strength recovered to the value of the smooth specimens at room temperature for the investigated crack sizes up to $450{\mu}m$. The crack with width $1.4{\mu}m$ can be completely heal the surface crack.

Si3N4/SiC 복합 세라믹의 온도에 따른 크랙 힐링 관찰과 확산거동 (Crack Healing Behavior with Healing Temperature in Si3N4/SiC Composite Ceramics)

  • 송오성;안도 코토지;다카하시 코지;나가오 와타루;류지호
    • 한국재료학회지
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    • 제15권12호
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    • pp.780-785
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    • 2005
  • To investigate the microcrack healing behavior of $Si_3N_4-20wt\%SiC-8wt\%Y_2O_3$ composite ceramics(SNCY8), we observe the crack length evolution a! the time of 20, 40, 60 minutes with in-situ optical microscopy by varying healing temperature of $800\~1200^{\circ}C$. Crack healing obviously occurred as heating temperature and time increased. We proposed a simple model of effective diffusion based on the crack length evolution with healing condition, and determined the effective diffusion coefficient as Our result implies that we may predict the healing ability quantitatively with temperature and time in structural ceramics through the effective diffusion coefficient model.

미생물 혼입 자기치유 콘크리트의 균열 치유성능 및 내구성능 (Crack-healing and durability performance of self-healing concrete with microbial admixture)

  • 추인엽;우상균;이병재;이윤;이효섭
    • KEPCO Journal on Electric Power and Energy
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    • 제7권2호
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    • pp.295-299
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    • 2021
  • Recently, interest in maintenance has been increasing due to the enlargement and aging of infra structures. Therefore, a new paradigm is required to secure and improve the durability of structures differentiated from the past. Accordingly, research on smart concrete incorporating the concept of self-healing into concrete is being actively conducted. In this study, the crack healing performance and durability performance of self-healing concrete applied with a hydrogel containing biomineral-forming microorganisms were evaluated. As a result of evaluating the dispersion of the hydrogel in concrete, it was confirmed that the hydrogel was well distributed in concrete matrix with a dispersion coefficient of 0.35 to 0.46. The crack healing performance evaluation was verified by a water permeability test, and showed a recovery rate of 95% or more at the age of 28 days, confirming the applicability of self-healing concrete. The durability performance of self-healing concrete was evaluated in terms of resistance to penetration of chloride ion and freezing and thawing. Regardless of the mixing of the hydrogel, the same level of durability performance was shown for various compressive strength level. Therefore, it was confirmed that the microbial admixture did not affect concrete durability. In the future, long-term crack healing performance and durability verification studies should be supplemented.

유리질 중합체의 균열 Healing에 관한 연구 (제1보) -이론 모델링- (A study on Crack Healing of Various Glassy Polymers (part I) -theoretical modeling-)

  • 이억섭
    • 한국정밀공학회지
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    • 제3권1호
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    • pp.40-49
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    • 1986
  • Crack, craze and void are common defects which may be found in the bulk of polymeric materials such as either themoplastics or thermosets. The healing phenomena, autohesion, of these defects are known to be a intrinsic material property of various polymeric materials. However, only a few experimental and theoretical investigations on crack, void and craze healing phenomena for various polymeric materials have been reported up to date [1, 2, 3]. This may be partly due to the complications of healing processes and lacking of appropriate theoretical developments. Recently, some investigators have been urged to study the healing phenomena of various polymenic materials since the significance of the use of polymer based alloys or composites has been raised in terms of specific strength and energy saving. In the earlier published reports [1, 2, 3, 4], the crack and void healing velocity, healing toughness and some other healing mechanical and physical properties were measured experimentally and compared with predicted values by utilizing a simple model such as the reptation model under some resonable assumptions. It seems, however, that the general acceptance of the proposed modeling analyses is yet open question. The crack healing processes seem to be complicate and highly dependent on the state of virgin material in terms of mechanical and physical properties. Furthermore, it is also strongly dependent on the histories of crack, craze and void development including fracture suface morphology, the shape of void and the degree of disentanglement of fibril in the craze. The rate of crack healing may be a function of environmental factors such as healing temperature, time and pressure which gives different contact configurations between two separated surfaces. It seems to be reasonable to assume that the crack healing processes may be divided in several distinguished steps like stress relaxation with molecular chain arrangement, surface contact (wetting), inter- diffusion process and com;oete healing (to obtain the original strength). In this context, it is likely that we no longer have to accept the limitation of cumulative damage theories and fatigue life if it is probable to remove the defects such as crack, craze and void and to restore the original strength of polymers or polymer based compowites by suitable choice of healing histories and methods. In this paper, we wish to present a very simple and intuitive theoretical model for the prediction of healed fracture toughness of cracked or defective polymeric components. The central idea of this investigation, thus, may be the modeling of behavior of chain molecules under healing conditions including the effects of chain scission on the healing processes. The validity of this proposed model will be studied by making comparisons between theoretically predicted values and experimentally determined results in near future and will be reported elsewhere.

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Ion Implantation으로 Ca를 첨가된 단결정 $Al_2$O$_3$의 Crack-Like Pore의 Healing 거동-III: Stability of Crack-Like Pore (Effects of Ca Implantation on the Sintering and Crack Healing Behavior of High Purity $Al_2$O$_3$ Using Micro-Lithographic Technique-III: Stability of Crack-Like Pore)

  • 김배연
    • 한국세라믹학회지
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    • 제36권9호
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    • pp.887-892
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    • 1999
  • The inner crack-like pore with controlled amount of Ca impurity in the high purity alumina single crystal sapphire had been created by micro-fabrication technique which includes ion implanation photo-lithography Ar ion milling and hot press technique. The crack-like pores in two-hour hot pressed specimen were extremely stable even after heat treating at 1,80$0^{\circ}C$ for 5 hours almost no healing was observed. But the crack-like pores in one-hour hot pressed specimen at 1,30$0^{\circ}C$ were healed by heat treatment and the amount of healing was increased with the heat treatment time and temperature and the amount of Ca addition. The edges of crack-like pore parallel to <1100> direction in (001) basal plane were stable but the edges normal to this direction in (00101) plane <1120> direction were unstable to facetting This means that the surface energy of alumina along the <1100> direction in (0001) basal plane in much lower than <1120> direction.

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