• 제목/요약/키워드: Crack formation

검색결과 395건 처리시간 0.03초

Evolution of sandstone shear strength parameters and its mesoscopic mechanism

  • Shi, Hao;Zhang, Houquan;Song, Lei
    • Geomechanics and Engineering
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    • 제20권1호
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    • pp.29-41
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    • 2020
  • It is extremely important to obtain rock strength parameters for geological engineering. In this paper, the evolution of sandstone cohesion and internal friction angle with plastic shear strain was obtained by simulating the cyclic loading and unloading tests under different confining pressures using Particle Flow Code software. By which and combined with the micro-crack propagation process, the mesoscopic mechanism of parameter evolution was studied. The results show that with the increase of plastic shear strain, the sandstone cohesion decreases first and then tends to be stable, while the internal friction angle increases first, then decreases, and finally maintains unchanged. The evolution of sandstone shear strength parameters is closely related to the whole process of crack formation, propagation and coalescence. When the internal micro-cracks are less and distributed randomly and dispersedly, and the rock shear strength parameters (cohesion, internal friction angle) are considered to have not been fully mobilized. As the directional development of the internal micro-fractures as well as the gradual formation of macroscopic shear plane, the rock cohesion reduces continuously and the internal friction angle is in the rise stage. As the formation of the macroscopic shear plane, both the rock cohesion and internal friction angle continuously decrease to a certain residual level.

충전제가 EPDM의 피로균열 성장속도에 미치는 영향 (Effects of Fillers on Fatigue Crack Growth Rate of Ethylene Propylene Diene Monomer)

  • 홍창국;정재연;조동련;강신영
    • 폴리머
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    • 제32권3호
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    • pp.270-275
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    • 2008
  • 고무재료의 피로균열 성장특성은 고무제품의 강도와 내구성을 평가하는 매우 중요한 요소이다. 본 연구에서는 자체 제작한 피로균열 성장 측정기를 이용하여 충전제 종류에 따른 EPDM의 피로균열 성장특성을 고찰하였다. 피로균열성장은 진동수와 측정온도에 영향을 받았으며, 진동수가 증가함에 따라 균열성장속도는 감소하였고 온도가 증가함에 따라 균열성장속도는 증가하였다. 충전된 EPDM의 인열에너지와 균열성장속도의 상관관계는 지수법칙을 따랐으며, 충전제의 함량이 증가함에 따라 균열성장속도가 감소하였다. 또한, 실리카로 충전된 EPDM이 카본블랙으로 충전된 EPDM에 비해 더 우수한 피로저항 특성을 보였다. 실리카로 충전된 경우, 균열성장속도는 30 phr까지 감소하다가 그 이후 다시 증가하였다. 미충전 시편의 피로 파괴단면 SEM 사진에서 작고 유연한 파괴자국들이 관찰되었으며, 실리카가 충전된 시편의 단면에서는 보강효과로 인하여 인열 형태가 불규칙 적이고 비교적 거친 표면이 관찰되었다.

반도체소자의 표면보호용 PSG, PE-SIN박막의 항균열특성에 대한 연구 (The Crack Resistance for PSG and Pe-Sin Films in the Semiconductor Device)

  • 하정민;신홍재;이수웅;김영욱;이정규
    • 한국재료학회지
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    • 제3권2호
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    • pp.166-174
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    • 1993
  • 반도체 소자의 표면 보호용으로 사용되는 상압 CVD 방법에 의한 PSG(Phosposilicate glass)막 및 플라즈마 CVD방법에 의한 PE-SiN(Plasma enhanced CVD S${i_2}{N_4}$)막의 항균열 특성을 알루미늄박막이 증착되어 있는 실리콘 기판위에서 조사했다. 45$0^{\circ}C$에서 30분간으 열처리를 반복하면서 균열 발생 유무 및 그 형태를 조사하여 이러한 균열의 생성을 각 막의 막응력과 관련하여 검토하였다. 이들 박막에서의 균열 발생은 하부 조직인 알루미튬배선과의 열팽창계수차에 의한 것임을 알 수 있었다. PSG막 두께가 증가할수록 인장응력이 증가하여 항균열성이 저하되었다. PSG막의 P농도가 증가할수록 막응력은 압축응력쪽으로 이동하였고 균열 발생은 억제되었다. PE-SiN 막도 높은 압축응력을 갖게 함으로써 항균열성을 향상시킬 수 있었다. 본 실험의 결과로부터 반복 열처리시 균열 발생여부에 대한 실험식을 제시하였다.

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LNG 304 스테인레스강의 피로균열전파특성과 변형유발 마르텐사이트 함량의 변화 (Characteristics of Fatigue Crack Propagation and Changes in Strain Induced Martensite α' of STS 304 Stainless Steel)

  • 김송희;박형래;이현승
    • 산업기술연구
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    • 제21권B호
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    • pp.341-348
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    • 2001
  • The effect of initial ${\alpha}^{\prime}$ in STS 304 Stainless Steel on fatigue resistance, and fatigue crack propagation behavior was studied with using C-T specimens. Higher ${\Delta}K_{th}$ was observed in the specimens with the content of 0% initial ${\alpha}^{\prime}$ than in the contents of 2% and 33% initial ${\alpha}^{\prime}$. The difference of da/dN at the same level of ${\Delta}K$ was distinctive in low and intermediate level of ${\Delta}K$ however became less different as the level of ${\Delta}K$ increased. It is because the formation of strain induced martensite occurred readily in lower ${\alpha}^{\prime}$ at the vicinity of the fatigue crack tip, which causes compressive residual stresses resulting in the enhancement of crack closure. In general fatigue cracks propagated transgranular mode and many segments of ridges were observed on the fracture surfaces. At the higher contents of initial ${\alpha}^{\prime}$ appeared the smaller size of ridge segments. Slips in austenite were blocked more frequently by the martensite colonies formed in austenite.

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TECHNIQUES FOR INTERGRANULAR CRACK FORMATION AND ASSESSMENT IN ALLOY 600 BASE AND ALLOY 182 WELD METALS

  • LEE, TAE HYUN;HWANG, IL SOON;KIM, HONG DEOK;KIM, JI HYUN
    • Nuclear Engineering and Technology
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    • 제47권1호
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    • pp.102-114
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    • 2015
  • Background: A technique developed to produce artificial intergranular stress corrosion cracks in structural components was applied to thick, forged alloy 600 base and alloy 182 weld metals for use in the qualification of nondestructive examination techniques for welded components in nuclear power plants. Methods: An externally controlled procedure was demonstrated to produce intergranular stress corrosion cracks that are comparable to service-induced cracks in both the base and weld metals. During the process of crack generation, an online direct current potential drop method using array probes was used to measure and monitor the sizes and shapes of the cracks. Results: A microstructural characterization of the produced cracks revealed realistic conformation of the crack faces unlike those in machined notches produced by an electrodischarge machine or simple fatigue loading using a universal testing machine. Conclusion: A comparison with a destructive metallographic examination showed that the characteristics, orientations, and sizes of the intergranular cracks produced in this study are highly reproducible.

이축하중을 받는 SM45C강의 피로균열의 발생과 성장거동 (Behavior of Fatigue Crack Initiation and Growth in SM45C Steel under Biaxial Loading)

  • 김상태;박선홍;권숙인
    • 한국해양공학회지
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    • 제18권6호
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    • pp.84-90
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    • 2004
  • Fatigue tests were conducted on SM45C steel using hour-glass shaped smooth tubular specimen under biaxial loading in order to investigate the crack formation and growth at room temperature. Three types of loading systems, were employed fully-reserved cyclic torsion without a superimposed static tension or compression fully-reserved cyclic torsion with a superimposed static tension and fully-reserved cyclic torsion with a superimposed static compression. The test results showed that a superimposed static tensile mean stress reduced fatigue life however a superimposed static compressive mean stress increased fatigue life. Experimental results indicated that cracks were initiated on planes of maximum shear strain whether or not the mean stresses were superimposed. A biaxial mean stress had an effect on the direction that the cracks nucleated and propagated at stage 1 (mode II).

Ti-6Al-4V재의 UNSM처리에 의한 축인장압축피로특성변화 (Variation of Axial Tension-Compression Fatigue Characteristics by UNSM on Ti-6Al-4V)

  • 서창민;조성암;편영식;서민수
    • 한국해양공학회지
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    • 제25권6호
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    • pp.42-48
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    • 2011
  • The present study makes three original contributions to nanoskinned Ti-6Al-4V materials. The nanoskins were fabricated on Ti-6Al-4V material using various surface treatments: deep rolling (DR), laser shot peening (LSP), and ultrasonic nanocrystal surface modification (UNSM). These surface treatments are newly developed techniques and are becoming more popular in industrial fields. A fatigue strength comparison at up to 106 cycles was conducted on these nanoskinned Ti-6Al-4V materials. Fatigue tests were carried out using MTS under axial loading tension-compression fatigue (R = -1, RT, 5 Hz, sinusoidal wave). The analysis of the crack initiation patterns in the nanoskinned Ti-6Al-4V materials found an interior originating crack pattern and surface originating crack type. Microscopic observation was mainly used to investigate the fatigue fractured sites. These surface modification techniques have been widely adopted, primarily because of the robust grade of their mechanical properties. These are mainly the result of the formation of a large-scale, deep, and useful compressive residual stress, the formation of nanocrystals by the severe plastic deformation (SPD) at the subsurface layer, and the increase in surface hardness.

AE방법에 의한 Flash Butt 용접부의 파괴거동 평가 (An Evaluation of the Fracture Behavior for Flash Butt Welding zone by Acoustic Emission Method)

  • 김용수;이하성;강동명
    • 한국안전학회지
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    • 제9권1호
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    • pp.9-18
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    • 1994
  • In this study, we conducted experimental tests to evaluate fracture behaviors of fresh-butt welded metal by Acoustic Emission technique. We selected similar welding and dissimilar welding process, the one welded for SM45C, SS41 and SUS304 of each material, the other for SM45C and SS41, SM45C and SUS304 and SS41 and SUS304. The fracturing processes of weld metal were estimatied through the fracture toughness test with compact tension specimens and fractography analysis. In ASTM test method E-399, type I curves for materials of this study were obtained by load-cod diagram of fracture toughness test. and 5% offset load( $P_{5}$) was estimated as the estimated crack initial load( $P_{Q}$), The estimated crack initial load( $P_{Q}$) of similar welding materials generally lower than base matal, and then SM45C appeared greatly in decreasing rate of PB, SS41 and SUS304 appeared in order. $P_{Q}$ of dissimilar welding materials were lower than the similar welding materials. $P_{Q}$ of welding of SM45C and SS41 appeared in small, SUS304 and SS41 appeared greatly in dissimilar welding materials. In fracture toughness test, AE counts increased before the inflection point of the slope, decreased after that. It was found that increasing of AE counts were due to the microcrack formation at the crack tip near the $P_{5}$ point through AE data. For welding materials in this study, both low and high AE amplitude appeared simulataneously. It was confirmed that the low AE amplotude was due to formation of micro void, micro crack or micro dimple, the high AE amplitude was caused by microvoid coalescence and quasi-cleavage fracture through analyses of fractograpy.apy.apy.apy.

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20 nm 두께의 ITO층이 코팅된 ITO/PET Sheet의 저항 및 균열형성 특성 연구 (A Study on the Resistance and Crack Propagation of ITO/PET Sheet with 20 nm Thick ITO Film)

  • 김진열;홍순익
    • 한국세라믹학회지
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    • 제46권1호
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    • pp.86-93
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    • 2009
  • The crack formation and the resistance of ITO film on PET substrate with a thickness of 20 nm were investigated as a function of strain. The onset strain for the increase of resistance increased with increasing strain rate, suggesting the crack initiation is dependent on the strain rate. Electrical resistance increased at the strain of 1.6% at the strain rates below $10^{-4}/sec$ while it increased at ${\sim}2%$ at the strain rates above $10^{-3}/sec$. The critical strain at which the cracks were formed is close to the proportional limit. Upon loading, the initial cracks perpendicular to the tensile axis were observed and propagated the whole sample width with increasing strain. The spacing between horizontal cracks is thought to be determined by the fracture strength and the interfacial strength between ITO and PET. The crack density increased with increasing strain. However, the effect of the strain rate on the crack density was less pronounced in ITO/PET with 20 nm ITO thickness than ITO/PET with 125 nm ITO thickness, the strength of ITO film is thought to increase as the thickness on ITO film decreases. The absence of cracks on ITO film at a strain as close as 1.5% can be attributed to the compressive residual stress of ITO film which was developed during cooling after the coating process. The higher critical strain for the onset of the resistance increase and the crack initiation of ITO/PET with a thinner ITO film (20 nm) can be linked with the higher strength of the thinner ITO film.