• Title/Summary/Keyword: AE(acoustic emission)

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An experimental study on triaxial failure mechanical behavior of jointed specimens with different JRC

  • Tian, Wen-Ling;Yang, Sheng-Qi;Dong, Jin-Peng;Cheng, Jian-Long;Lu, Jia-wei
    • Geomechanics and Engineering
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    • 제28권2호
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    • pp.181-195
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    • 2022
  • Roughness and joint inclination angle are the important factors that affect the strength and deformation characteristics of jointed rock mass. In this paper, 3D printer has been employed to make molds firstly, and casting the jointed specimens with different joint roughness coefficient (JRC), and different joint inclination angle (α). Conventional triaxial compression tests were carried out on the jointed specimens, and the influence of JRC on the strength and deformation parameters was analyzed. At the same time, acoustic emission (AE) testing system has been adopted to reveal the AE characteristic of the jointed specimens in the process of triaxial compression. Finally, the morphological of the joint surface was observed by digital three-dimensional video microscopy system, and the relationship between the peak strength and JRC under different confining pressures has been discussed. The results indicate that the existence of joint results in a significant reduction in the strength of the joint specimen, JRC also has great influence on the morphology, quantity and spatial distribution characteristics of cracks. With the increase of JRC, the triaxial compressive strength increase, and the specimen will change from brittle failure to ductile failure.

구리 CMP 후 버핑 공정을 이용한 연마 입자 제거 (Particle Removal on Buffing Process After Copper CMP)

  • 신운기;박선준;이현섭;정문기;이영균;이호준;김영민;조한철;주석배;정해도
    • 한국전기전자재료학회논문지
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    • 제24권1호
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    • pp.17-21
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    • 2011
  • Copper (Cu) had been attractive material due to its superior properties comparing to other metals such as aluminum or tungsten and considered as the best metal which can replace them as an interconnect metal in integrated circuits. CMP (Chemical Mechanical Polishing) technology enabled the production of excellent local and global planarization of microelectronic materials, which allow high resolution of photolithography process. Cu CMP is a complex removal process performed by chemical reaction and mechanical abrasion, which can make defects of its own such as a scratch, particle and dishing. The abrasive particles remain on the Cu surface, and become contaminations to make device yield and performance deteriorate. To remove the particle, buffing cleaning method used in post-CMP cleaning and buffing is the one of the most effective physical cleaning process. AE(Acoustic Emission) sensor was used to detect dynamic friction during the buffing process. When polishing is started, the sensor starts to be loaded and produces an electrical charge that is directly proportional to the applied force. Cleaning efficiency of Cu surface were measured by FE-SEM and AFM during the buffing process. The experimental result showed that particles removed with buffing process, it is possible to detect the particle removal efficiency through obtained signal by the AE sensor.

압열인장시험을 이용한 화강암의 지연파괴특성 및 장기안정성 평가 (Estimation of the Characteristics of Delayed Failure and Long-term Strength of Granite by Brazilian Disc Test)

  • 정용복;천대성;박의섭;박찬;이윤수;박철환;최병희
    • 터널과지하공간
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    • 제24권1호
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    • pp.67-80
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    • 2014
  • 본 연구에서는 임계하균열성장 변수를 구하기 위해 제안된 Wilkins의 시험법을 압열인장시험과 결합하여 화강암의 인장강도, Mode I 파괴인성과 임계하균열성장지수를 동시에 구하였으며 이를 사용하여 암석의 장기거동을 평가하였다. 또한 내부압력을 받는 압축공기저장(CAES) 공동에 대한 장기안정성을 수치해석코드인 FRACOD를 사용하여 해석하였다. 시험 결과 화강암의 임계하균열성장지수(n)는 29.39로 결정되었으며 5 ~ 6 MPa의 내압은 저장공동의 장기안정성에 큰 영향을 미치지 않는 것으로 나타났다. 또한 시험 과정에서 측정한 미소파괴음을 분석한 결과 암석내의 미소균열 생성 및 전파에 따른 암석의 손상을 정량적으로 기술할 수 있었다. 만약, 실내와 동일한 조건으로 현장에서 AE 모니터링을 수행할 경우 AE 모니터링을 통해서 하중을 받는 암석의 현재 상태를 정량적으로 평가하는 것이 가능할 것으로 판단된다.

Na/K 비 변화에 따른 무연 [Li0.04(NayK1-y)0.96](Nb0.86Ta0.1Sb0.04)O3 세라믹스의 압전 및 유전특성 (Piezoelectric and Dielectric Characteristics of Lead Free [Li0.04(NayK1-y)0.96](Nb0.86Ta0.1Sb0.04)O3 Ceramics with the Variations of Na/K Ratio)

  • 이갑수;류주현;홍재일;이석태;김용운;정회승
    • 한국전기전자재료학회논문지
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    • 제20권1호
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    • pp.25-30
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    • 2007
  • In this paper, lead-free [$Li_{0.04}(Na_{y}K_{1-y})_{0.96}](Nb_{0.86}Ta_{0.1}Sb_{0.04})O_{3}$ (y=0.4 - 0.58) ceramics were manufactured using conventional miked oxide method for acoustic emission(AE) sensor application and their dielectric and piezoelectric properties were investigated with the variations of Na/K ratio. The samples in the composition Na/K=54/46 exhibited excellent electrical properties of $d_{33}=300$ PC/N and kp=0.49. Taking into consideration above piezoelectric properties, it can be concluded that the [$Li_{0.04}(Na_{y}K_{1-y})_{0.96}](Nb_{0.86}Ta_{0.1}Sb_{0.04})O_{3}$ system ceramics are the promising lead-free materials capable of substituting PZT system ceramics.

Failure characteristics of combined coal-rock with different interfacial angles

  • Zhao, Tong-Bin;Guo, Wei-Yao;Lu, Cai-Ping;Zhao, Guang-Ming
    • Geomechanics and Engineering
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    • 제11권3호
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    • pp.345-359
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    • 2016
  • In order to investigate the influence of the interfacial angel on failure characteristics and mechanism of combined coal-rock mass, 35 uniaxial/biaxial compressive simulation tests with 5 different interfacial angels of combined coal-rock samples were conducted by PFC2D software. The following conclusions are drawn: (1) The compressive strength and cohesion decrease with the increase of interfacial angle, which is defined as the angle between structure plane and the exterior normal of maximum principal plane, while the changes of elastic modulus and internal friction angle are not obvious; (2) The impact energy index $K_E$ decreases with the increase of interfacial angle, and the slip failure of the interface can be predicted based on whether the number of acoustic emission (AE) hits has multiple peaks or not; (3) There are four typical failure patterns for combined coal-rock samples including I (V-shaped shear failure of coal), II (single-fracture shear failure of coal), III (shear failure of rock and coal), and IV (slip rupture of interface); and (4) A positive correlation between interfacial angle and interface effect is shown obviously, and the interfacial angle can be divided into weak-influencing scope ($0-15^{\circ}$), moderate-influencing scope ($15-45^{\circ}$), and strong-influencing scope (> $45^{\circ}$), respectively. However, the confining pressure has a certain constraint effect on the interface effect.

Micromechanical 시험법을 이용한 Kenaf 및 Ramie 섬유 강화 에폭시 복합재료의 계면물성 평가 (Interfacial Evaluation of Single Ramie and Kenaf Fibers/Epoxy Composites Using Micromechanical Technique)

  • 박종만;트란콩손;정진규;김성주;황병선
    • 접착 및 계면
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    • 제6권2호
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    • pp.13-20
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    • 2005
  • 환경 친화적인 자연섬유 강화 고분자 복합재료의 계면 전단강도는 총체적인 기계적 물성을 조절하는데 매우 중요한 역할을 수행한다. Ramie와 Kenaf 섬유 강화 에폭시 복합재료의 계면 전단강도는 최종 물성을 위한 최적 조건을 찾아내기 위해 미세역학시험법과 비파괴 음향방출시험을 이용하여 평가했다. Ramie와 Kenaf 섬유의 동적 접촉각을 측정했고, 계면 접착에서 젖음성과 상호 관련시켜서 해석하였다. Ramie와 Kenaf 섬유의 기계적 물성은 단섬유 인장시험을 통해 조사했고, 통계학적으로 uni-와 bimodal Weibull 분포를 통해서 분석하였다. Ramie와 Kenaf 섬유에 대한 실제 신장율의 clamping 효과의 영향도 평가할 수 있었다. 두 가지의 다른 미세파괴 형상은 섬유다발과 단섬유 복합재료로부터 오는 축방향의 debonding과 섬유상의 fracture는 인장과 압축하중하에서 관찰할 수 있었다.

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Incompatible deformation and damage evolution of mixed strata specimens containing a circular hole

  • Yang, Shuo;Li, Yuanhai;Chen, Miao;Liu, Jinshan
    • Geomechanics and Engineering
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    • 제20권5호
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    • pp.461-474
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    • 2020
  • Analysing the incompatible deformation and damage evolution around the tunnels in mixed strata is significant for evaluating the tunnel stability, as well as the interaction between the support system and the surrounding rock mass. To investigate this issue, confined compression tests were conducted on upper-soft and lower-hard strata specimens containing a circular hole using a rock testing system, the physical mechanical properties were then investigated. Then, the incompatible deformation and failure modes of the specimens were analysed based on the digital speckle correlation method (DSCM) and Acoustic Emission (AE) data. Finally, numerical simulations were conducted to explore the damage evolution of the mixed strata. The results indicate that at low inclination angles, the deformation and v-shaped notches inside the hole are controlled by the structure plane. Progressive spalling failure occurs at the sidewalls along the structure plane in soft rock. But the transmission of the loading force between the soft rock and hard rock are different in local. At high inclination angles, v-shaped notches are approximately perpendicular to the structure plane, and the soft and hard rock bear common loads. Incompatible deformation between the soft rock and hard rock controls the failure process. At inclination angles of 0°, 30° and 90°, incompatible deformations are closely related to rock damage. At 60°, incompatible deformations and rock damage are discordant due that the soft rock and hard rock alternately bears the major loads during the failure process. The failure trend and modes of the numerical results agree very well with those observed in the experimental results. As the inclination angles increase, the proportion of the shear or tensile damage exhibits a nonlinear increase or decrease, suggesting that the inclination angle of mixed strata may promote shear damage and restrain tensile damage.

EEMD법을 이용한 저속 선회베어링 상태감시 (Condition Monitoring of Low Speed Slewing Bearings Based on Ensemble Empirical Mode Decomposition Method)

  • 와휴 캐서렌드라;박진희;코사시;최병근
    • 한국소음진동공학회논문집
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    • 제23권2호
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    • pp.131-143
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    • 2013
  • 대부분의 철강산업 기계 등에 설치되어 사용되는 선회베어링은 교체를 위한 정확한 정비계획이 필요하기 때문에 저속회전체의 선회베어링에 대한 진동 상태감시가 매우 중요하게 되었다. 지금까지 음향방출(AE)법이 저속베어링의 상태감시에 가장 많이 사용되는 기술이고 몇몇의 경우는 진동을 사용한다. 음향방출을 사용하는 일반적인 이유는 저속에서 구름요소와 결함위치 사이의 충격에 의하여 발생되는 신호가 약하고 때때로 노이즈나 다른 간섭 주파수에 결함신호가 묻혀 검출이 어렵기 때문이다. 따라서 쉽게 특정 결함에 대한 결함주파수의 동정을 위하여 몇몇 연구자들은 충격에너지를 증가시키기 위하여 인위적으로 미리 정해진 길이, 넓이와 깊이의 결함을 베어링의 내, 외부 레이스에 인가하기도 한다. 이 논문에서는 15 rpm에서 운전하는 저속 선회베어링의 진동신호에 EMD와 EEMD를 적용하였고 논문에서 사용한 진동결함 신호는 국내 산업체에서 공급받은 것이다. 이 논문에서는 베어링결함 주파수 동정을 위하여 EEMD를 사용하여 결함신호의 FFT처리 결과를 입증하고 설명하였다.

Analysis of the crack propagation rules and regional damage characteristics of rock specimens

  • Li, Yangyang;Xu, Yadong;Zhang, Shichuan;Fan, Jing;Du, Guobin;Su, Lu;Fu, Guangsheng
    • Geomechanics and Engineering
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    • 제24권3호
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    • pp.215-226
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    • 2021
  • To study the evolution mechanism of cracks in rocks with multiple defects, rock-like samples with multiple defects, such as strip-shaped through-going cracks and cavity groups, are used, and the crack propagation law and changes in AE (acoustic emission) and strain of cavity groups under different inclination angles are studied. According to the test results, an increase in the cavity group inclination angle can facilitate the initial damage degree of the rock and weaken the crack initiation stress; the initial crack initiation direction is approximately 90°, and the extension angle is approximately 75~90° from the strip-shaped through-going cracks; thus, the relationship between crack development and cavity group initiation strengthens. The specific performance is as follows: when the initiation angle is 30°, the cracks between the cavities in the cavity group develop relatively independently along the parallel direction of the external load; when the angle is 75°, the cracks between the cavities in the cavity group can interpenetrate, and slip can occur along the inclination of the cavity group under the action of the shear mechanism rupture. With the increase in the inclination angle of the cavity group, the AE energy fluctuation frequency at the peak stress increases, and the stress drop is obvious. The larger the cavity group inclination angle is, the more obvious the energy accumulation and the more severe the rock damage; when the cavity group angle is 30° or 75°, the peak strain of the local area below the strip-shaped through-going fracture plane is approximately three times that when the cavity group angle is 45° and 60°, indicating that cracks are easily generated in the local area monitored by the strain gauge at this angle, and the further development of the cracks weakens the strength of the rock, thereby increasing the probability of major engineering quality damage. The research results will have important reference value for hazard prevention in underground engineering projects through rock with natural and artificial defects, including tunnels and air-raid shelters.

유리모세관 파괴시 방출된 탄성파에 대한 PZT 변환기의 응답특성 (Response Characteristics of the PZT Transducers during Glass Capillary Breakage)

  • 이종규
    • 비파괴검사학회지
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    • 제18권1호
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    • pp.33-41
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    • 1998
  • 유리모세관의 파괴시에 방출되는 탄성파를 이용하여 유리평판의 진앙점에 위치한 PZT변환기의 응답특성을 연구하였다. PZT변환기는 일정한 면적을 가지고 두께가 다른 PZT 세라믹 (Edo사의 EC-65)을 사용하여 제작하였다. 공기 경계층을 갖는 유리평판에서 힘의 크기가 1 N이고 상승시간이 280ns인 경사 점하중이 인가된 경우에 대하여 진앙점에서 수직 성분의 변위와 속도를 이론적으로 계산하였다. PZT변환기의 과도응답은 이론적으로 계산된 수직 성분의 속도가 입사하여 PZT세라믹의 전극과 만날 때 펄스형태로 나타난다고 생각할 수 있다. PZT변환기의 응답은 PZT세라믹의 직경 대 두께의 비가 약 0.33 이하인 경우에는 두께진동모드에만 의존하고, 그 이상의 경우에는 두께진동모드와 다른 저주파수의 진동 모드의 중첩에 의해서 일어난다고 생각된다. 첫 펄스의 반폭치시간은 인가된 파괴하중과 PZT변환기의 공진주파수에 무관하게 약 280ns로서 일정하였고, 음향방출 발생원의 상승시간으로 생각할 수 있었다. 첫 펄스의 최대진폭은 PZT변환기에 입사하는 수직 성분의 속도와 PZT세라믹의 축전용량에 비례하였다. 그러므로, 동일한 PZT변환기에 대하여 음향방출 발생원의 상승시간과 크기는 첫 펄스의 반폭치시간과 최대 진폭으로 평가할 수 있다.

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