• 제목/요약/키워드: Major Crack

검색결과 288건 처리시간 0.025초

Crack source location by acoustic emission monitoring method in RC strips during in-situ load test

  • Shokri, Tala;Nanni, Antonio
    • Smart Structures and Systems
    • /
    • 제13권1호
    • /
    • pp.155-171
    • /
    • 2014
  • Various monitoring techniques are now available for structural health monitoring and Acoustic Emission (AE) is one of them. One of the major advantages of the AE technique is its capability to locate active cracks in structural members. AE crack locating approaches are affected by the signal attenuation and dispersion of elastic waves due to inhomogeneity and geometry of reinforced concrete (RC) members. In this paper, a novel technique is described based on signal processing and sensor arrangement to process multisensory AE data generated by the onset and propagation of cracks and is validated with experimental results from an in-situ load test. Considering the sources of uncertainty in the AE crack location process, a methodology is proposed to capture and locate events generated by cracks. In particular, the relationship between AE events and load is analyzed, and the feasibility of using the AE technique to evaluate the cracking behavior of two RC slab strips during loading to failure is studied.

CRACK INITIATION AND PROPAGATION OF BLADES FRACTURE MECHANICS APPROACH

  • Rao, J. S.
    • 유체기계공업학회:학술대회논문집
    • /
    • 유체기계공업학회 1998년도 강연회 및 연구개발 발표회 논문집
    • /
    • pp.11-28
    • /
    • 1998
  • Crack initiation and propagation of blades is a serious matter in turbomachinery. Outages are common due to these problems that occur during the service of the machine resulting in a huge loss of revenue. Once in a while, the problems become serious and cause major shutdowns which can in some cases result in the loss of the whole machine in a catastrophic manner. In this presentation, we will discuss the crack initiation studies of a hydraulic machine runner blade by local stress strain approach and crack propagation at the root of a low pressure stage steam turbine blade by means of stress intensity factor approach. In both the cases, we will show how the present day technologies can predict actual field observations.

  • PDF

콘크리트 구조물의 표면 균열 평가 기법 (Surface Crack Evaluation Method in Concrete Structures)

  • 이방연;이성태;김진근
    • 비파괴검사학회지
    • /
    • 제27권2호
    • /
    • pp.173-182
    • /
    • 2007
  • 콘크리트 구조물에 발생한 균열은 내구성과 사용성 측면의 문제가 발생할 수 있기 때문에 정기적으로 관리하여야 한다. 대부분의 균열 측정은 균열 현미경과 균열 게이지와 같은 장비를 이용하여 균열의 폭, 길이, 방향 등과 같은 균열의 특징을 육안조사나 수작업에 의해 수행되고 있다. 그러나 기존의 방법들은 시간과 인력이 많이 필요할 뿐만 아니라 계측자의 주관이 개입될 여지가 많다. 따라서 이 연구에서는 이미지 프로세싱과 인공신경회로망을 이용하여 콘크리트 표면 균열 평가 기법을 제시하고자 한다. 개발된 기법은 세부분(균열 검출, 균열 분석, 균열 패턴인식)으로 나누어진다. 개발된 기법의 유효성을 검증하기 위하여 실험을 수행하였고, 실험 결과 개발된 기법은 콘크리트 표면 균열을 효과적으로 검출, 분석할 수 있었고, 5가지 균열 패턴을 정확히 인식하였다.

부재속성에 따른 균열 형상 분석에 관한 연구 - 공동주택 외벽 균열을 중심으로 - (A Study of Crack Shape Analysis based on Properties of Member in Apartment Exterior Wall)

  • 김만장
    • 한국건설관리학회논문집
    • /
    • 제16권3호
    • /
    • pp.143-151
    • /
    • 2015
  • 콘크리트 구조물에 발생하는 균열은 구조물의 내력, 내구성, 방수성 등 모든 기능을 저하시키는 주요한 원인으로, 그 대책의 필요성은 구조물이 존재하는 한 계속될 것이다. 하지만 콘크리트 구조물에서의 균열은 재료와 시공 및 사용환경, 구조적 요인 등 다양한 변수가 복합적으로 작용하고 있어 이에 대한 대책 마련과 사전 예방이 쉽지 않은 것이 현실이다. 이에 본 연구에서는 공동주택 외벽에서 균열이 발생한 사례를 분석하여 이에 대한 데이터베이스를 구축하고, 발생한 균열과 부재의 속성간의 관계를 상관관계를 도출하고자 한다. 이는 각 부재가 가지는 기본적 속성이 유사함을 고려하여 균열과 부재의 관계를 분석하고 부재의 속성을 검토하여 균열에 대한 대책 마련에 일조하고자 함이다.

매스콘크리트에서 타설블럭의 크기(L/H)와 구속체의 탄성계수가 온도응력에 미치는 영향에 관한 검토 (Evaluation on the Effect of the Size of Placing Block(L/H) and Elastic Modulus of Base Structure on the Thermal Stress in Mass Concrete)

  • 강석화;이용호;박칠림
    • 한국콘크리트학회:학술대회논문집
    • /
    • 한국콘크리트학회 1996년도 봄 학술발표회 논문집
    • /
    • pp.275-279
    • /
    • 1996
  • In this study, the effect of external restraint on the thermal stresses and thermal cracking mode in mass concrete are analysed using the two major factors affecting external restraint such as the ratio of width go height of the placed structure (L/H) and the elastic modulus of base structure (E). For this parametric study, many cases with different values of L/H and Er are analysed by the FEM program and the co-relationship of the those major factors is examined. To evaluate the effect of external restraint on the thermal behavior of placing structure, internal restraint stress caused by temperature difference is subtracted from total thermal stress. In the case of small value of L/H or Er, it shows as internally restricted mode indicating maximum tensile stress in surface at early age, and the external restraint makes the possibility of thermal cracking higher. However, in the case of the large values of L/H and Er, the crack index at center is smaller than at surface due to the effect of external restraint. Thus, the initial location of the thermal crack is shifted from the surface to the center and the resulting crack is formed at later age.

  • PDF

십자형 필렛 용접 이음부 의 굽힘피로 특성 에 대한 파괴역학적 고찰 (Fracture mechanics approach to bending fatigue behavior of cruciform fillet welded joint)

  • 엄동석;강성원;김영기
    • Journal of Welding and Joining
    • /
    • 제3권2호
    • /
    • pp.52-63
    • /
    • 1985
  • Fillet welded joints, specially in ship structure, are well known the critical part where stress concentrate or crack initiates and grows. This paper is concerned with the study of the behavior of fatigue crack growth t the root and toe of load carrying cruciform fillet welded joints under three points bending by the determination of stress intensity factor from the J-Integral, using the Finite Element Method. The stress intensity factor was investigated in accordance to the variation of the weld size (H/Tp). weld penetration (a/W) and plate thickness (2a'/Tp). As mixed mode is occurred on account of shearing force under the three points bending, Stern's reciprocal theory is applied to confirm which mode is the major one. The main results may be summarized as follows 1) The calculation formula of the stress intensity factor at the both of root and toe of the joint was obtained to estimate the stress intensity factor in the arbitrary case. 2) The change of stress field around crack tip gives much influence on each other at the roof and toe as H/Tp decreases. 3) Mode I is a major mode under the three points bending.

  • PDF

아스팔트 콘크리트 포장용 균열실링재의 부착특성 평가 (Evaluation of Adhesion Characteristics of Crack Sealants Used in Asphalt Concrete Pavement)

  • 이재준;김승훈;백종은;임재규;김용주
    • 한국도로학회논문집
    • /
    • 제17권2호
    • /
    • pp.55-62
    • /
    • 2015
  • Cracking is an inevitable fact of asphalt concrete pavements and plays a major role in pavement deterioration. Pavement cracking is one of the main factors determining the frequency and method of repair. Cracks can be treated with a number of preventative maintenance actions, including overlay surface treatments such as slurry sealing, crack sealing, or crack filling. Pavement cracks can show up as one or all of the following types: transverse, longitudinal, fatigue, block, reflective, edge, and slippage. Crack sealing is a frequently used pavement maintenance treatment because it significantly extends the pavement service life. However, crack sealant often fails prematurely due to a loss of adhesion. Because current test methods are mostly empirical and only provide a qualitative measure of the bond strength, they cannot accurately predict the adhesive failure of the sealant. This study introduces a laboratory test aimed at assessing the bonding of hot-poured crack sealant to the walls of pavement cracks. A pneumatic adhesion tensile testing instrument (PATTI) was adopted to measure the bonding strength of the hot-poured crack sealant as a function of the curing time and temperature. Based on a limited number of test results, the hot-poured crack sealants have very different bonding performances. Therefore, this test method can be proposed as part of a newly developed performance-based standard specification for hot-poured crack sealants for use in the future. PURPOSES : The purpose of this study was to evaluate both the adhesion and failure performance of a crack sealant as a function of its curing time and curing temperature. METHODS: A pneumatic adhesion tensile testing instrument (PATTI) was adopted to measure the adhesion performance of a crack sealant as a function of the curing time and curing temperature. RESULTS: With changes in the curing time, curing temperature, and sealant type, the bond strengths were found to be significantly different. Also, higher bond strengths were measured at lower temperatures. Different sealant types produced completely different bond strengths and failure behaviors. CONCLUSIONS: The bonding strength of an evaluated crack sealant was shown to differ depending on various factors. Two sealant types, which were composed of different raw materials, were shown to perform differently. The newly proposed test offers the possibility of evaluating and differentiating between different crack sealants. Based on alimited number of test results, this test method can be proposed as part of a newly developed performance-based standard specification for crack sealants or as part of a guideline for the selection of hot-poured crack sealant in the future.

Study on the Causes of Premature Cracking of Epoxy Coatings for Ship's Ballast Tanks

  • Song, Eun Ha;Lee, Ho Il;Chung, Mong Kyu;Lee, Seong Kyun;Baek, Kwang Ki
    • Corrosion Science and Technology
    • /
    • 제5권2호
    • /
    • pp.69-76
    • /
    • 2006
  • Premature cracking of the epoxy coatings applied on ship's ballast tanks(BT) can lead to damage of ship's hulls. To avoid this, it's important to have clear understanding of the underlying mechanism and primary factors of the coating crack. In this study, the efforts were made to clarify the integrated effects of main factors, i.e., initial coating shrinkage, thermally induced strain, steel-structural strain and the intrinsic coating flexibility at the initial and after aging, to the early cracking phenomena of epoxy coating in the ship's ballast tank. The coating crack is caused by combination of thermal stress, structural stress, and internal stresses which is closely related to chemical structures of the coatings. On the other hand, thermal stresses and dimensional stabilities would rarely play a major role in coating crack for ballast tank coatings with rather large flexibility. Crack resistance of the coatings at early stages can be estimated roughly by measuring internal stress, FT-IR and $T_g$ value of the coatings. A new screening test method was also proposed in this study, which can be possibly related to the long-term resistance of epoxy-based paints to cracking.

해포석이 시멘트 경화체의 특성에 미치는 영향 (The Effects of Sepiolite on the Properties of Portland Cement Mortar)

  • 강현주;송명신;김영식
    • 한국세라믹학회지
    • /
    • 제45권8호
    • /
    • pp.443-452
    • /
    • 2008
  • Shrinkage crack is a major concern for cement materials, especially for flat structures such as Korean On-Dol floor system, flooring for garages, and wall. One of the methods to reduce the adverse effects of shrinkage cracking is to reinforce cement materials with shot randomly distributed fibers. The efficiency of inorganic fibrous material to arresting cracks in cementitious composites was studied. Cement materials reinforced with five different qualities of inorganic fibrous material were tested. Contents of inorganic fibrous material were 1.0 kg, 1.5 kg, 2.0 kg, 2.5 kg, 3.0 kg by weight of cement mortar and C : S types of cement mortar were 1:3 and 1:4. W/C were 60% and 80%. Cement mortar of inorganic fibrous material reinforcement showed an ability to reduce the crack width and crack length significantly as compared to unreinforced cement mortar. $40%{\sim}60%$ drop in shrinkage crack of 1:4 cement mortar with 1.5 kg over was observed.

Studies on the effect of thermal shock on crack resistance of 20MnMoNi55 steel using compact tension specimens

  • Thamaraiselvi, K.;Vishnuvardhan, S.
    • Nuclear Engineering and Technology
    • /
    • 제53권9호
    • /
    • pp.3112-3121
    • /
    • 2021
  • One of the major factors affecting the life span of a Reactor Pressure Vessel (RPV) is the Pressurised Thermal Shock (PTS). PTS is a thermo-mechanical load on the RPV wall due to steep temperature gradients and structural load created by internal pressure of the fluid within the RPV. Safe operating life of a nuclear power plant is ensured by carrying out fracture analysis of the RPV against thermal shock. Carrying out fracture tests on RPV/large scale components is not always feasible. Hence, studies on laboratory level specimens are necessary to validate and supplement the prototype results. This paper aims to study the fracture behaviour of standard Compact Tension [C(T)] specimens, made of RPV steel 20MnMoNi55, subjected to thermal shock through experimental and numerical investigations. Fracture tests have been carried out on the C(T) specimens subjected to thermal transient load and tensile load to quantify the effect of thermal shock. Crack resistance curves are obtained from the fracture tests as per ASTM E1820 and compared with those obtained numerically using XFEM and a good agreement was found. A quantitative study on the crack tip plastic zone, computed using cohesive segment approach, from the numerical analyses justified the experimental crack initiation toughness.