• 제목/요약/키워드: Interlayer Crack

검색결과 25건 처리시간 0.02초

3Cr-1Mo강/STS-309L 오버레이 용접부의 천이영역 조직에 미치는 용접조건의 영향 (Effect of Welding Condition on Microstructure of Transient Zone in Overlay Weld of 3Cr-1Mo Steel/STS-309L)

  • 김동진;김병훈;지병하;김정태;김성곤;강정윤;박화순
    • Journal of Welding and Joining
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    • 제18권2호
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    • pp.49-56
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    • 2000
  • Recently developed Austenite stainless steel, 309L was used to overlay on 3Cr-1Mo-V-Ti-B steels, using Electroslag welding process, which wide electrodes were adopted. Transition region in welding interlayer relating to disbonding crack was investigated. Also, the effect of welding condition on the width of transition region and coarsening grains of the austenite were studied. 1) With increasing welding speed the width of martensite at transient region was increased, but the amount of delta ferrite in weld metal was reduced, being fine grained. 2) The form of martensite at the transition region was occurred by reversible transformation during cooling since the interdiffusion of Cr and Ni from weld metal and Fe and C from base metals at the transition region, causes to lowering the concentration of Cr and Ni at the transition region, leading to increasing Ms point. 3) With increasing welding speed, the grain of austenite formed at the welding interface was finer. With increasing welding current under the same welding speed, the grain size of the austenite was finer. At high current, original grain size of the austenite is coarse, but the austenite has fine grains because the austenite was transformed to martensite during cooling. 4) In the case of high welding speed, the width of martensite at the welding interface was increased, but the grain size of austenite at the welding interface was finer. This indicates that the inhibition of disbonding crack may be achieved through dispersening fine carbides in the gain boundary.

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강도 및 건조수축 저감을 통한 CLC의 안정성 평가 (Evaluation of Stability of CLC through Strength and Reduction of Drying Shrinkage)

  • 이창우;황우준;이상수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2022년도 가을 학술논문 발표대회
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    • pp.205-206
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    • 2022
  • This study intends to conduct tests on subsidence and drying shrinkage by mixing CaO-CSA expansion materials to ensure the stability of CLC, and to understand its properties. Based on CLC of 0.6, the replacement ratio of CaO-CSA expansion material was conducted at five levels compared to blast furnace slag, and the results are as follows. The replacement of CaO-CSA expansion material at an appropriate level produces ethringhite and potassium hydroxide, and it is believed that the internal voids of CLC and the Tobelmorite interlayer structure are charged to increase the structural stability, leading to an increase in compressive strength and a decrease in the drying shrinkage. However, it is judged that tissue relaxation due to excessive substances in the high replacement ratio affects the stability of CLC. In the future, we will conduct additional experiments on density, absorption rate, flow test, and settlement, and evaluate and analyze the stability of CLC by selecting the optimal replacement ratio of CaO-CSA expansion materials.

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Flexural Behavior of Laminated Wood Beams Strengthened with Novel Hybrid Composite Systems: An Experimental Study

  • Mehmet Faruk OZDEMIR;Muslum Murat MARAS;Hasan Basri YURTSEVEN
    • Journal of the Korean Wood Science and Technology
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    • 제51권6호
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    • pp.526-541
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    • 2023
  • Wooden structures are widely used, particularly in earthquake zones, owing to their light weight, ease of application, and resistance to the external environment. In this study, we aimed to improve the mechanical properties of laminated timber beams using novel hybrid systems [carbon-fiber-reinforced polymer (CFRP) and wire rope]. Within the scope of this study, it is expected that using wood, which is an environmentally friendly and sustainable building element, will be more economical and safe than the reinforced concrete and steel elements currently used to pass through wide openings. The structural behavior of the hybrid-reinforced laminated timber beams was determined under the loading system. The experimental findings showed that the highest increase in the values of laminated beams reinforced with steel ropes was obtained with the 2N reinforcement, with a maximum load of 38 kN and a displacement of 137 mm. Thus, a load increase of 168% and displacement increase of 275% compared with the reference sample were obtained. Compared with the reference sample, a load increase of 92% and a displacement increase of 14% were obtained. Carbon fabrics placed between the layers with fiber-reinforced polymer (FRP) prevented crack development and provided significant interlayer connections. Consequently, the fabrics placed between the laminated wooden beams with the innovative reinforcement system will not disrupt the aesthetics or reduce the effect of earthquake forces, and significant reductions can be achieved in these sections.

저온 성장 AlN 층이 삽입된 Al0.55Ga0.45N/AlN/GaN 이종접합 구조의 구조적 특성 및 이차원 전자가스의 광학적 특성 (Structural properties and optical studies of two-dimensional electron gas in Al0.55Ga0.45/GaN heterostructures with low-temperature AlN interlayer)

  • 곽호상;이규승;김희진;윤의준;조용훈
    • 한국진공학회지
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    • 제17권1호
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    • pp.34-39
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    • 2008
  • 저온에서 성장된 AlN (LT-AlN)층이 삽입된 $Al_xGa_{1-x}N/LT$-AlN/GaN 이종접합 구조를 금속유기 화학기상 증착법 (metal-organic chemical vapor deposition)을 사용하여 사파이어 기판 위에 제작하였다. Rutherford backscattering spectroscopy 실험을 통하여 $Al_xGa_{1-x}N$층의 Al의 조성비 x가 55% 임을 확인하였고, X-선 역격자 공간 mapping을 통하여 층간 변형력을 조사하였다. LT-AlN층의 삽입 여하에 따른 $Al_{0.55}Ga_{0.45}N$ 층의 깨짐 현상을 광학현미경과 주사전자현미경을 통하여 조사하였는데, LT-AlN 층이 삽입된 시료의 경우에 깨짐 현상이 현저히 줄어든 $Al_{0.55}Ga_{0.45}N$ 층을 얻을 수 있었다. 뿐만 아니라 LT-AlN 층이 삽입된 $Al_{0.55}Ga_{0.45}N$/LT-AlN/GaN 이종접합 구조에 대하여 이차원 전자가스 (two-dimensional electron gas, 2DEG) 관련된 photoluminescence (PL) 신호를 관찰하였다. 이 시료에 대하여 온도 변화에 따른 PL 실험을 수행하여 100 K 근방까지 2DEG 관련된 PL 신호를 관찰하였다. 여기광 세기에 따른 PL 실험을 통하여 ~3.411 eV에서 나타난 2DEG PL 신호와 함께 ${\sim}3.437eV$에서도 PL 신호가 관측되었는데, 이는 AlGaN/LT-AlN/GaN 계면에 형성된 2DEG 버금띠와 Fermi 에너지 준위에서의 재결합 특성으로 각각 해석되었다.

SiC 강화 CFRP 복합재의 파괴거동에 관한 음향방출 적용 (AE Application for Fracture Behavior of SiC Reinforced CFRP Composites)

  • 류영록;윤유성;권오헌
    • 한국안전학회지
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    • 제31권3호
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    • pp.16-21
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    • 2016
  • Carbon Fiber Reinforced Plastic(CFRP) composite with a higher specific strength and rigidity is more excellent than conventional metallic materials or other organic polymer of FRP. It has been widely used in vehicles, aerospaces and high technology industries which are associated with nuclear power fields. However, CFRP laminated composite has several disadvantages as like a delamination, matrix brittleness and anisotropic fibers that are the weak points of the crack initiation. In this present work, the reinforced silicon carbide(SiC) particles were added to the interlayer of CFRP laminates in order to mitigate the physical vulnerability affecting the cracking and breaking of the matrix in the CFRP laminated composite because of excellent specific strength and thermal shock resistance characteristics of SiC. The 1wt% of SiC particles were spread into the CFRP prepreg by using a spray coating method. After that, CFRP prepregs were laminated for the specimen. Also, the twill woven type CFRP prepreg was used because it has excellent workability. Thus the mechanical and fracture behaviors of the twill woven CFRP laminated composite reinforced with SiC particles were investigated with the acoustic emission(AE) method under a fracture test. The results show that the SiC particles enhance the mechanical and fracture characteristics of the twill CFRP laminate composite.