• 제목/요약/키워드: mode splitting

검색결과 120건 처리시간 0.032초

Dynamic failure features and brittleness evaluation of coal under different confining pressure

  • Liu, Xiaohui;Zheng, Yu;Hao, Qijun;Zhao, Rui;Xue, Yang;Zhang, Zhaopeng
    • Geomechanics and Engineering
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    • 제30권5호
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    • pp.401-411
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    • 2022
  • To obtain the dynamic mechanical properties, fracture modes, energy and brittleness characteristics of Furong Baijiao coal rock, the dynamic impact compression tests under 0, 4, 8 and 12 MPa confining pressure were carried out using the split Hopkinson pressure bar. The results show that failure mode of coal rock in uniaxial state is axial splitting failure, while it is mainly compression-shear failure with tensile failure in triaxial state. With strain rate and confining pressure increasing, compressive strength and peak strain increase, average fragmentation increases and fractal dimension decreases. Based on energy dissipation theory, the dissipated energy density of coal rock increases gradually with growing confining pressure, but it has little correlation with strain rate. Considering progressive destruction process of coal rock, damage variable was defined as the ratio of dissipated energy density to total absorbed energy density. The maximum damage rate was obtained by deriving damage variable to reflect its maximum failure severity, then a brittleness index BD was established based on the maximum damage rate. BD value declined gradually as confining pressure and strain rate increase, indicating the decrease of brittleness and destruction degree. When confining pressure rises to 12 MPa, brittleness index and average fragmentation gradually stabilize, which shows confining pressure growing cannot cause continuous damage. Finally, integrating dynamic deformation and destruction process of coal rock and according to its final failure characteristics under different confining pressures, BD value is used to classify the brittleness into four grades.

Coconut shell waste as an alternative lightweight aggregate in concrete- A review

  • Muhammad Fahad, Ejaz;Muhammad ,Aslam;Waqas, Aziz;M. Jahanzaib, Khalil;M. Jahanzaib, Ali;Muhammad, Raheel;Aayzaz, Ahmed
    • Advances in materials Research
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    • 제11권4호
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    • pp.299-330
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    • 2022
  • This review article highlights the physical, mechanical, and chemical properties of coconut shells, and the fresh and hardened properties of the coconut shell concrete are summarized and were compared with other types of aggregates. Furthermore, the structural behavior in terms of flexural, shear, and torsion was also highlighted, with other properties including shrinkage, elastic modulus, and permeability of the coconut shell concrete. Based on the reviewed literature, concrete containing coconut shell as coarse aggregate with normal sand as fine showed the 28-day compressive strength between 2 and 36 MPa with the dried density range of 1865 to 2300 kg/m3. Coconut shell concretes showed a 28-day modulus of rupture and splitting tensile strength values in the ranges of 2.59 to 8.45 MPa and 0.8 to 3.70 MPa, respectively, and these values were in the range of 5-20% of the compressive strength. The flexural behavior of CSC was found similar to other types of lightweight concrete. There were no horizontal cracks on beams which indicate no bond failure. Whereas, the diagonal shear failure was prominent in beams with no shear reinforcements while flexural failure mode was seen in beams having shear reinforcement. Under torsion, CSC beams behave like conventional concrete. Finally, future recommendations are also suggested in this study to investigate the innovative lightweight aggregate concrete based on the environmental and financial design factors.

Study on terahertz (THz) photoconversion technology based on hyperfine energy-level splitting of Positronium (Ps) generated from relativistic electron beams

  • Sun-Hong Min;Chawon Park;Ilsung Cho;Minho Kim;Sukhwal Ma;Won Taek Hwang;Kyeong Min Kim;Seungwoo Park;Min Young Lee;Eun Ju Kim;Kyo Chul Lee;Yong Jin Lee;Bong Hwan Hong
    • 대한방사성의약품학회지
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    • 제6권2호
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    • pp.102-115
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    • 2020
  • In the state of Positronium (Ps), which is an unstable material created by the temporary combination of electrons and positrons, the imaging technology through photo-conversion methodology is emerging as a new research theme under resonance conditions through terahertz electromagnetic waves. Normally, Positronium can be observed in the positron emission computed tomography (PET) process when an unstable, separate state that remains after the pair annihilation of an electron and a positron remains. In this study, terahertz (THz) waves and Cherenkov radiation (CR) are generated using the principle of ponderomotive force in the plasma wake-field acceleration, and electrons and positrons are simultaneously generated by using a relativistic electron beam without using a PET device. We confirm the possibility of Positronium photoconversion technology in terahertz electromagnetic resonance conditions through experimental studies that generate an unstable state. Here, a relativistic electron beam (REB) energy of 0.5 MeV (γ=2) was used, and the terahertz wave frequencies is G-band. Meanwhile, a THz wave mode converting three-stepped axicon lens was used to apply the photoconversion technology. Through this, light emission in the form of a luminescence-converted Bessel beam can be verified. In the future, it can be used complementarily with PET in nuclear medicine in the field of medical imaging.

맹방해안에서 관측되는 Beach Cusp의 일 년에 걸친 대순환 과정과 계절별 특성 - 여러 생성기작 중 포획모드 Edge Waves를 중심으로 (Grand Circulation Process of Beach Cusp and its Seasonal Variation at the Mang-Bang Beach from the Perspective of Trapped Mode Edge Waves as the Driving Mechanism of Beach Cusp Formation)

  • 조용준
    • 한국해안·해양공학회논문집
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    • 제31권5호
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    • pp.265-277
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    • 2019
  • 파랑관측 자료와 실측된 해안선 위치를 활용하여 맹방해안에 형성되는 beach cusp의 일 년에 걸친 대순환과정과 계절별 특성을 포획모드 Edge waves와 beach cusp의 인과 관계를 중심으로 살펴보았다. 맹방표사 계에 출현하는 beach cusp의 시공을 통한 변화 추이를 가늠하기 위해 threshold 상향통과 법으로 특정된 각 beach cusp의 파장과 진폭을 활용하여 정량화하였으며, 스펙트럼 해석의 경우에는 spectral mean sand wave number를 도입하여 정량화하였다. Spectral mean sand wave number의 시계열자료로부터 sand wave의 융합과 분할이 반복되는 주기를 산출하는 경우 beach cusp의 대순환과정은 일 년에 두 번에 걸쳐 진행되는 것으로 보인다. 해빈면적의 경우 해빈 대순환 과정이 완성되는 일 년을 기준으로 $14,142m^2$ 정도 증가하였으며, quadratic 회귀 분석하여 얻은 평균 해안선의 경우 맹방해안 남단과 북단에서는 18 m, 맹방해안 중앙부에서는 2.4 m 내외로 전진하였다. 해빈면적은 2017.11.26부터 2017.12.22 사이에 $30,345m^2$ 내외로 급속하게 증가하였으며, 이렇게 급속한 해빈면적 증가는 상당히 예외적인 것으로 11월 26부터 12월 22일 사이에 맹방해안으로 내습한 파랑의 성격에 기인하는 것으로 판단된다. 전술한 기간은 온화한 장주기 너울이 지배적이며, 대부분의 파랑이 영의 영각에 가깝게 맹방해안으로 내습한다. 이러한 파랑조건은 주 표사 이송모드가 횡단 표사라는 것을 의미하며 자연 해빈의 자기 치유능력이 횡단 표사를 통해 구현된다는 사실을 상기하면 전술한 해빈면적의 급속한 증가는 영의 영각으로 진입하는 파랑의 경계층 streaming에 의해 해안방향으로 회귀되는 표사가 누적되어 발생하는 것으로 판단된다.

강섬유 혼입률과 피복두께에 따른 GFRP 보강근의 부착특성 (Bond Properties of GFRP Rebar with Cover Thickness and Volume Fraction of Steel Fiber)

  • 최윤철
    • 콘크리트학회논문집
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    • 제24권6호
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    • pp.761-768
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    • 2012
  • 이 연구는 강섬유 혼입률에 따른 피복두께와 GFRP 보강근의 부착특성을 부착응력-미끌림 관계를 통하여 평가하였다. 실험변수로는 강섬유 혼입률을 0%, 1%, 2%로 하였고 피복두께는 보강근 직경($d_b$)의 $1.5d_b$$5.4d_b$로 하였다. GFRP 보강근의 직경은 D13과 D16 두 가지를 사용하였으며, 비교실험을 위하여 이형철근을 사용하였다. 실험 결과 피복두께에 따 상이한 파괴형태를 취했으며, 작은 피복두께를 갖는 $1.5d_b$의 경우 쪼갬파괴 형태를 취했고 충분한 피복두께인 $5.4d_b$를 갖는 경우 뽑힘파괴 형태를 취했다. 이에 강섬유 혼입률을 증가시켰음에도 파괴형태에는 영향이 없었다. 그러나 강섬유 혼입률의 증가에 따라 최대부착응력 도달 후 급작스런 부착응력 감소폭이 감소하였다. 또한, 작은 피복두께를 갖는 경우 최대부착응력에 도달 전에 파괴되면서 강섬유 혼입률에 따른 부착응력의 차이가 거의 없었지만, 충분한 피복두께를 갖는 경우에는 최대부착응력에 도달 하면서 강섬유 혼입률 증가에 따라 부착응력이 증가하였다. 이는 강섬유의 가교작용으로 인해 콘크리트 내부의 미소균열 및 쪼개짐 균열의 성장을 억제하였기 때문으로 판단되었다.

원전 액체 방사성 유출물 해양확산 평가를 위한 동해 해수순환 모델링 (Ocean Circulation Model ing of East Sea for Aquatic Dispersion of Liquid Radioactive Effluents from Nuclear Power Plants)

  • 정양근;이갑복;방선영;이웅권;이용선
    • 한국방사성폐기물학회:학술대회논문집
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    • 한국방사성폐기물학회 2005년도 추계 학술대회 논문집
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    • pp.321-331
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    • 2005
  • 과학기술부고시 2003-12호 "원자로시설부지 수문 및 해양특성 조사평가 기준" 이 신규 제정되어, 원전 액체 방사성 유출물에 대한 삼차원적인 해양확산 평가 필요성이 커지고 있다. 한국수력원자력(주)와 전력연구원은 신고리, 신월성, 신울진 원 전등 다수의 신규원전 건설이 계획 또는 추진되고 있는 동해안을 대상으로 광역 및 부지별 입지특성을 반영한 해양확산 평가기술을 개발하고 있다. 동해안의 해수유동은 동해 해수순환에 의해 영향을 받기 때문에 원전 주변의 방사성 물질의 해양확산을 보다 정확히 평가하기 위해서는 동해 해수순환에 대한 이해가 선행되어야한다. 따라서 본 연구에서는 일본 큐슈대학교 응용역학연구소에서 개발한 RIAMOM 모델을 근간으로 동해 해수순환 모델링을 수행하였다. 모델 영역은 $126.5^{\circ}E{\~}142.5^{\circ}E$ $33^{\circ}N{\~}52^{\circ}N$, 수직층은 20개로 나누었다. 이 모델은 JODC, KNFRDI, 그리고 ECMWF로 부터 구하였다. 모델링 결과, 동해 해수순환을 비교적 잘 모의하고 있는 것으로 나타났다. 향후 모델링 결과를 정량적으로 평가하기 위해 인공위성 추적 부이를 이용하여 확산 검증 실험을 실시할 예정이다.

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Experimental investigation of the mechanical behaviors of grouted crushed coal rocks under uniaxial compression

  • Jin, Yuhao;Han, Lijun;Meng, Qingbin;Ma, Dan;Wen, Shengyong;Wang, Shuai
    • Geomechanics and Engineering
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    • 제16권3호
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    • pp.273-284
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    • 2018
  • A detailed understanding of the mechanical behaviors for crushed coal rocks after grouting is a key for construction in the broken zones of mining engineering. In this research, experiments of grouting into the crushed coal rock using independently developed test equipment for solving the problem of sampling of crushed coal rocks have been carried out. The application of uniaxial compression was used to approximately simulate the ground stress in real engineering. In combination with the analysis of crack evolution and failure modes for the grouted specimens, the influences of different crushed degrees of coal rock (CDCR) and solidified grout strength (SGS) on the mechanical behavior of grouted specimens under uniaxial compression were investigated. The research demonstrated that first, the UCS of grouted specimens decreased with the decrease in the CDCR at constant SGS (except for the SGS of 12.3 MPa). However, the UCS of grouted specimens for constant CDCR increased when the SGS increased; optimum solidification strengths for grouts between 19.3 and 23.0 MPa were obtained. The elastic moduli of the grouted specimens with different CDCR generally increased with increasing SGS, and the peak axial strain showed a slightly nonlinear decrease with increasing SGS. The supporting effect of the skeleton structure produced by the solidified grouts was increasingly obvious with increasing CDCR and SGS. The possible evolution of internal cracks for the grouted specimens was classified into three stages: (1) cracks initiating along the interfaces between the coal blocks and solidified grouts; (2) cracks initiating and propagating in coal blocks; and (3) cracks continually propagating successively in the interfaces, the coal blocks, and the solidified grouts near the coal blocks. Finally, after the propagation and coalescence of internal cracks through the entire specimens, there were two main failure modes for the failed grouted specimens. These modes included the inclined shear failure occurring in the more crushed coal rock and the splitting failure occurring in the less crushed coal rock. Both modes were different from the single failure mode along the fissure for the fractured coal rock after grouting solidification. However, compared to the brittle failure of intact coal rock, grouting into the different crushed degree coal rocks resulted in ductile deformation after the peak strength for the grouted specimens was attained.

Opto-Electrochemical Sensing Device Based on Long-Period Grating Coated with Boron-Doped Diamond Thin Film

  • Bogdanowicz, Robert;Sobaszek, Michał;Ficek, Mateusz;Gnyba, Marcin;Ryl, Jacek;Siuzdak, Katarzyna;Bock, Wojtek J.;Smietana, Mateusz
    • Journal of the Optical Society of Korea
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    • 제19권6호
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    • pp.705-710
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    • 2015
  • The fabrication process of thin boron-doped nanocrystalline diamond (B-NCD) microelectrodes on fused silica single mode optical fiber cladding has been investigated. The B-NCD films were deposited on the fibers using Microwave Plasma Assisted Chemical Vapor Deposition (MW PA CVD) at glass substrate temperature of 475 ℃. We have obtained homogenous, continuous and polycrystalline surface morphology with high sp3 content in B-NCD films and mean grain size in the range of 100-250 nm. The films deposited on the glass reference samples exhibit high refractive index (n=2.05 at λ=550 nm) and low extinction coefficient. Furthermore, cyclic voltammograms (CV) were recorded to determine the electrochemical window and reaction reversibility at the B-NCD fiber-based electrode. CV measurements in aqueous media consisting of 5 mM K3[Fe(CN)6] in 0.5 M Na2SO4 demonstrated a width of the electrochemical window up to 1.03 V and relatively fast kinetics expressed by a redox peak splitting below 500 mV. Moreover, thanks to high-n B-NCD overlay, the coated fibers can be also used for enhancing the sensitivity of long-period gratings (LPGs) induced in the fiber. The LPG is capable of measuring variations in refractive index of the surrounding liquid by tracing the shift in resonance appearing in the transmitted spectrum. Possible combined CV and LPG-based measurements are discussed in this work.

강자성공명을 이용한 $Co_{84}\;Hf_{16}$ 박막의 자기적 성질 연구 (The Magnetic Properties of $Co_{84}\;Hf_{16}$ Thin Films by FMR)

  • 김기현;장재호;김영호
    • 한국자기학회지
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    • 제7권4호
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    • pp.191-195
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    • 1997
  • DC magnetron sputtering 방법에 의해 $Co_{84}$H $f_{16}$ 박막 (1300 .angs. , 2150 .angs. )을 제작하였다. 박막의 자기적 특성을 조사하기 위해서 J-band (7.42 GHz) 마이크로파 영역의 강자성 공명 (ferromagnetic resonance) 장치를 이용하였다. 측정된 공명 흡수선의 주 모드(main mode)로부터 계산된 분광학적 분리상수 g 값은 1300 .angs. , 2150 .angs. 일 때 각각 2.06과 2.07이었으며, 상온에서의 유효 자화(4 .pi. $M_{eff}$)값은 10385 emu/$cm^{3}$,10770 emu/$cm^{3}$였다. 자기 이방성을 조사하기 위해 VSM(vibrating sample magnetometer)을 이용하여 측정된 포화자화(4 .pi. $M_{s}$ )값은 16409 emu/$cm^{3}$와 14222 emu/$cm^{3}$였다. 유효 이방성 자기장 $H_{A}$ (effective anisotropy field)과 일축 이방성상수 $K_{u}$ (uniaxial anisotropy constant)는 각각 6024 Oe, 3452 Oe와 3.93 * $10^{6}$ erg/$cm^{3}$, 1.95 * $10^{6}$erg/$cm^{3}$였다. 77K에서 상온까지 온도에 따른 유효 포화 자화(4 .pi. $M_{eff}$)값을 측정하였으며, 포화자화의 온도의존성은 Bloch 법칙을 잘 만족시켰다. 이 포화자화곡선을 최적화하여 Bloch 상수 B, C를 구하였고, 77K에서 0K까지 외삽법으로 구한 $M_{eff}$(0)는 각각 894 erg/$cm^{3}$, 891 erg/$cm^{3}$였으며, 스핀파 경도 상수 D값과 교환 경도 상수 $A_{eff}$는 각각 148 meV .angs. $^{2}$, 103.8 meV .angs. $^{2}$와 1.77 * $10^{-6}$ erg/cm, 0.67 * $10^{-6}$ erg/cm 였다.다.

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섬유보강이 콘크리트의 역학적 특성과 철근콘크리트의 균열성상에 미치는 영향에 관한 연구 (Studies on the Effect of Fiber Reinforcing upon Mechanical Properties of Concrete and Crack Mode of Reinforoed Concrete)

  • 박승범
    • 한국농공학회지
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    • 제20권2호
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    • pp.4645-4687
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    • 1978
  • This study was attempted to investigate the mechanical properties of concrete and crack control effects of reinforced concrete with steel and glass fiber. The experimental program includes tests on the properties of fresh concrete containing fibers, compressive strength, tensile strength, flexural strength, Young's modulus, Shrinkage and deformation of steel or glass fiber reinforced concrete. Also this study was carried out to investigate the effect of steel or glass fiber to retard the development in reinforced concrete subject to uniaxial tension and thus facilitate the use of steels of higher strength. The major conclusions that can be drawn from the studies are as follows: 1. The effect of the fibers in various mixes on fresh concrete confirmed that fibers do have a significant effect on the properties of fresh concrete, bringing much more stable and exhibiting a signiflcant reduction in surface bleeding, and that the cohesion is greatly improved and the internal resistance increases with fiber concentration. But the addition of an excess contents and length of fibers brings about the reduction of workability. 2. With the addition of steel fibers(1.5% Vol.) to concrete, the compressive strength as compared with plain concrete showed a very slight increase, but excess addition, over 1.5% Vol. of steel and glass fiber reduced its strength. 3. Splitting tensile strength of fiber reinforced concrete showed a significant increase tendency, as compared with plain concrete. In case of containing steel fiber (2.5%, 30mm), it showed that the maximum increase rate of 1.48 times as much rate, and in case of containing glass fiber (2.5%, 30mm), the increase rate of strength was 1.25 times as much rate. 4. Flexural strength of fiber reinforced concrete showed a significant tendency, as compared with plain concrete. Containing steel fiber (2.5%, 30mm) showed the maximum increase rate of 1.64 times as much rate and containing glass fiber (2.5%, 30mm) showed the increase rate of strength of 1.32 times as much rate, and in general, the 30mm length brougth the best results. 5. The strength ratio ($\sigma$b/$\sigma$c and $\sigma$t/$\sigma$c) increased, when steel fiber's average spacing was up to 3.05mm, but decreased when beyond 3.05mm, and it was confirmed that tensile or flexural strengths of steel fiber reinforced concrete are apparently governed by fiber's average spacing. 6. The compressive strain of fiber reinforced concrete showed a significant increasing tendency as the fiber was added, but Young's modulus. with the addition of steel and glass fibers, showed a slight decrease tendency. And according to the increase of flexural strength, a considerable increase was seen in toughness. 7. With the addition of fiber's the shrinkage of concrete was significantly decreased, in both case of adding steel fibers 12.5%, 30mm, and showed a significant decrease ratio, in average 30.4% and 36.7%, as compared with plain concrete. 8. With the increase of fiber volume fraction and length, the gained stress in reinforcing bar in concrete specimens increased in all crack widths, but at different rates, with the decrease of fiber diameter, the stress showed a considerable increasing tendency. And the duoform steel fibers showed the greatest improvement, as compared with the other types tested. 9. The influence of fiber dimensions in order of significanse on the machanical properties of concrete and the crack control of reinforced concrete was explained as follows: content, length, aspect ratio and dimeter.

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