• 제목/요약/키워드: Tip growth

검색결과 498건 처리시간 0.027초

Corrosion Fatigue Cracking of Low Alloy Steel in High Temperature Water

  • Lee, S.G.;Kim, I.S.;Jang, C.H.;Jeong, I.S.
    • Corrosion Science and Technology
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    • 제2권2호
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    • pp.93-97
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    • 2003
  • Fatigue crack growth test or low alloy steel was performed in high temperature water. Test parameters were dissolved oxygen content. loading frequency and R-ratio ($P_{min}/P_{max}$). Since the sulfur content or the steel was low, there were no environmentally assisted cracks (EAC) in low dissolved oxygen(DO) water. At high DO, the crack growth rate at R = 0.5 tests was much increased due to environmental effects and the crack growth rate depended on loading frequency and maximized at a critical frequency. On the other hand, R = 0.7 test results showed an anomalous decrease of the crack growth rate as much different behavior from the R = 0.5. The main reason of the decrease may be related to the crack tip closure effect. All the data could be qualitatively understood by effects of oxide rupture and anion activity at crack tip.

혼합모드 하중 하에서의 균열성장 중 피로파단면 마찰과 균열닫힘효과의 상호관계 (The Correlation between Fatigue Fracture Crack Surface Friction and Crack Closure Effect in Crack Growth under Mixed-mode loading)

  • 서기정;송삼홍;이정무
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.214-219
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    • 2004
  • Crack tip behavior of single mode loading condition(mode I)depend on tensile loading component but one of mixed mode loading condition(mode I+II) have influenced on shear loading component like the practical structure. Because crack closure is caused by shear loading component under mixed-mode loading a research on the behavior in the stage of crack initiation and propagation require to be evaluate about crack closure effect by fatigue crack surface friction. For that reasion we examined the behavior at the crack tip by direct measuring method. Measured behavior at the crack tip was analyzed through vector crack tip displacement. As a result, crack propafation equation was corrected by considering with crack closure effect. In addition we compared fatigue fracture crack surface and crack closure level.

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Petunia 조직배양시 몇가지 공해물질이 생장반응에 미치는 영향 (Growth Responses of Petunia as Affected by Several Pollutants in Vitro)

  • 백기엽;최성렬;이재욱;최주견
    • Journal of Plant Biology
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    • 제27권3호
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    • pp.139-147
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    • 1984
  • This in vitro study was employed to clarify the effects of several pollutants i.e. $SO_2$, fluoride, cadmium(Cd), aluminum(Al) and NaCl, on the organogenesis and growth responses of shoot-tip, stem and multiple-buds segments derived from hypocotyl or cotyledon culture of petunia seedlings. ${Na_2}{SO_3}$levels of more than 200$\mu{g}$/ml had significantly reduced organogenesis, growth, and chlorophyll content. The injuries caused by ${Na_2}{SO_3}$, concentration of more than 400$\mu{g}$/ml were alleviated by increasing hydrogenion concentration of medium, indicating some relationship between two factors. Organogenesis was not affected by the fluoride concentration up to 100ppm in the media, but the growth and chlorophyll content were greatly reduced by the fluoride. The effect of Cd depended on the explant sources used for the culture; 1.0ppm was effective for fresh weight increase in shoot tip culture, and 3.0ppm in stem segments culture. Organogenesis and growth were greatly reduced by more than 10.0 Cd treatment. Growth and formation of shoots were better with Na conc. of 0.3% compared to control, but those of roots were inhibited. Na concentration goes over 1.0%, organogenesis and subsequent growth were inhibited, and chlorophyll synthesis was drastically reduced. Chlorophyll content was increased on the medium supplemented with Al 50$\mu{g}$/ml compared to control. However the formation and growth of shoots were greatly inhibited with more than 400$\mu{g}$/ml and roots were not produced at all.

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축대칭 압출금형의 피로수명예측에 관한 연구 (A Study on the Prediection of Fatigue Life in the Axi-symmetric Extrusion Die)

  • 안수홍;김태형;김병민;최재찬;조해용
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1994년도 추계학술대회 논문집
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    • pp.235-239
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    • 1994
  • In this paper, the fatigue behaviour of typical axisymmetric forward extrusion die is investigated and extrusion process is analyzed by the rigid-plastic finite element method and elasto-plastic finite element method. To approach the crack problem involving crack initiation and propagation in extrusion die, LEFM(Linear Elastic Fracture Mechanics) is introduced and singular element which models stress.strain singularity in the crack tip vincity has been used to obtain an accurate stress intensityu factor values and other results. Form the displacement around the crack tip the stress intensity factor and the effective stress intensity factor at the beginning of the die inlet radius has been calculated. Applying proper fatigue crack propagation criterion such as Paris/Erdogan fatigue law to this data the angle and direction of fatigue crack growth has been simulated and these are compared with some experimental results. Using the computed crack growth rate, fatigue life of the extrusion die has been evaluated.

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고구마 무병묘의 기내 증식에 미치는 생장조절물질, Sucrose, 최소생장 보존의 영향 (Effect of Growth Regulator, Sucrose, and Minimal-growth Conservation on In Vitro Propagation of Virus-free Sweet Potato Plantlets)

  • 이나라;이승엽
    • 생물환경조절학회지
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    • 제29권1호
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    • pp.1-8
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    • 2020
  • 고구마 바이러스 무병묘의 기내급속증식을 위한 적정 생장 조절물질 및 sucrose 농도, 최소생장 기내보존(15℃)에 미치는 광의 영향과 생존율 및 기내생장 특성 등을 조사하였다. 고구마 무병묘의 마디배양은 0.2 mg·L-1 BA 첨가배지에서 줄기신장, 줄기직경, 잎수, 뿌리수, 생체중 및 건물중 등이 가장 양호하였다. 배양부위 및 배지물리성에 따른 적정 sucrose 농도는 마디배양은 5% sucrose를 첨가한 고체배지에서, 정단배양은 3% sucrose를 첨가한 액체배지에서 줄기두께, 잎수, 뿌리수, 뿌리길이, 생체중 및 건물중 등의 생육에 가장 효과적이었다. 15℃ 저온항온기에서 고구마 무병묘의 최소생장 기내보존은 암상태에서는 3개월 내에 모두 고사하였으나, 적색:청색(7:3) 혼합 LED (150±5 μmol·m-2·s-1 PPFD)에서는 5개월까지 100% 생존하였다. 따라서 고구마 무병묘의 최소생장 기내보존에는 광이 필요하며, 샬레에 밀식(10 개체/샬레)할 경우, 좁은 공간에서 대량보존이 가능하였다.

화상처리법을 이용한 A533B강의 진전균열특이장 평가 (Evaluationof Growing Crack-Tip Singularity in A533B Steel by Image Processing Technique)

  • 표창률;김영진
    • 대한기계학회논문집A
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    • 제21권1호
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    • pp.124-132
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    • 1997
  • This paper describes an experimental and numerical study on growing ductile crack-tip behaviors. The hybrid experimental and numerical method by means of a computer image processign technique, was applied to the analysis of both base metal and weld metal CT specimens. In the weld metal specimen, the initial crack-tip was placed in front of fusion line, and the crack orientation was perpendicular to it. Finite element analysis of crack growth behaviors in both base and weld matal specimens made of A533B Class 1 steel were also performed to examine the effects of weldment on near crack-tip fields. a series of experimental studies on crack-tip behaviors have clearly shown the qualitative effects of material properties, especially a hardening exponent. The experimental and numerical results have also shown that weldment does not affect displacement and strain fields near a crack-tip while a stress field is influenced by the difference between yield stresses of both base and weld metals.

마늘의 경정배양에서 기내인경구 대량생산을 위한 2단계 배양의 도입 (Introduction of two-step culture method for multiple seed bulb development from shoot tip culture of garlic (Allium sativium L.))

  • 황혜연;이영복
    • Journal of Plant Biotechnology
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    • 제35권1호
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    • pp.75-80
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    • 2008
  • 마늘의 경정을 기내배양하여 대량의 기내종구를 생산하기 위한 다신초의 유기 및 기내구의 비대조건을 찾고자 배지의 당의 농도를 다르게 하고 또한 생장조절물질을 첨가하여 신초의 대량발생 여부를 확인하였으며, 대형배양용기를 이용하여 대량생산을 하기 위한 tank배양에서 신초의 분화와 기내구의 발달에 관하여 검토하였다. 경정배양에서의 shoot 발생이나 기내구 형성 모두 3% sucrose 첨가 MS고체배지에서 8% 보다 양호하였으며, 생장조절물질의 효과는 2 mg/L 2iP와 0.2 mg/L IAA의 혼합처리에서 shoot 발생과 bulb의 형성수가 양호하였다. 이 처리구에서 발생한 shoot와bulb의 수는 각각 3.3 및 2.7개로 나타났다. 다신초를 유도할 수 있는 조건의 배지에서 경정을 2개월 동안 배양하여 다신초를 분화시킨 후, 20 L water tank를 이용하여 sucrose 농도를 3%와 8%로 설정한 MS액체배지에 옮겨 45일간 배양한 후에 bulb형성을 조사하였을 때 유식물체의 생육에 있어서는 3% sucrose 첨가조건에서 8% 첨가배지보다 양호하였다. 그러나 기내구의 형성이나 생장에 있어서는 sucrose의 농도가 8%일 때 보다 효과적이었다. 경정배양에서의 다신초의 초기생산에는 3% sucrose조건에서 양호한 효과를 보이고 있으므로 마늘의 인경구를 대량으로 생산하기 위해서는 다신초의 생산과 구비대 과정을 구분하는 2단계 배양법을 도입하는 것이 유리할 것이다. Tank배양시 배지에 0.2 mg/L BA, 0.02 mg/L NAA를 첨가한 처리에서 양호하였으며 NAA 농도가 높을 수록 유식물체의 생육이나 구비대의 효과는 현저하게 저하되었다.

P92와 STS 316L강의 고온 피로 균열 성장에 미치는 하중 파형의 영향 (The Effect of Loading Waveform on the High Temperature Fatigue Crack Propagation in P92 and STS 316L Steel)

  • 김수영;임병수
    • 한국자동차공학회논문집
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    • 제10권4호
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    • pp.136-140
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    • 2002
  • High temperature fatigue crack growth behavior of P92 and STS 316L steel were investigated under four load conditions using CT type specimens. Loading and unloading times for the low wave forms were combinations of 1 sec. and 50 sec., which were two symmetric wave forms and two unsymmetric wave forms. Their behaviors are characterized using ΔK parameter. In STS 316L, Crack growth rate generally increases as frequency decreases. However, sensitivity of the loading rate to crack growth rate was fecund to be far greater than that of the unloading time. It is because as loading time increases, creep occurs at crack tip causing the crack growth rate to increase. However creep does not occur at the crack tip even if the unloading time is increased. In P92 steel, crack growth rate showed same behavior as in STS 316L. But the increase in loading or unloading time made almost no difference in crack growth rate, suggesting that no significant creep occurs in P92 steel even though loading time increases. After conducting high temperature tensile tests and comparing high temperature fatigue crack growth rates under various wave forms, it was proved that P92 steel has not only good high temperature properties but also improved, better high temperature fatigue properties than STS 316L.

室溫時效 및 變形時效가 微小 疲勞크랙의 開口變位에 미치는 影響 (Influence of Room Temperature and Strain Aging on the COD for a Small Fatigue Crack)

  • 김민건
    • 대한기계학회논문집
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    • 제19권2호
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    • pp.402-407
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    • 1995
  • The effects of room temperature and strain aging treatment are discussed on the critical condition for the onset of growth of non-propagating cracks on 0.15% C low carbon steel, with special emphasis on the length of the critical non-propagating crack and on the crack opening displacement(COD) at the crack tip. It is found from the experimental analysis that room temperature and strain aging of a fatigue pre-cracked specimen introduced the closure of a crack tip of the pre-crack and the reduction of crack opening displacement at the wake of crack, together with an improvement in crack growth resistance of the microstructure. This may cause an increase in the endurance limit of the specimen, through the enhancement of effective stress for the onset of growth of the critical non-propagating crack.

Effect of a Single Applied Overload on Fatigue Crack Growth Behavior in Laser-welded Sheet Metal

  • Kwak Dai-Soon;Kim Seog-Hwan;Oh Taek-Yul
    • International Journal of Precision Engineering and Manufacturing
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    • 제7권3호
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    • pp.30-34
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    • 2006
  • We investigated fatigue crack growth behavior in laser-welded sheet metal caused by a single applied overload The fatigue specimens were made using butt jointed cold rolled sheet metal that was welded with a $CO_2$ laser, The effects of the specimen thickness and overload ratio were determined from fatigue crack propagation tests, These tests were performed in such a way that the fatigue loading was aligned parallel to the weld line while the crack propagated perpendicular to the weld line, Overload ratios of 1.0, 1.5, and 2. 0 were applied near the tip of the fatigue crack at points located 6, 4, and 2 mm from the weld line. The specimens were either 0.9 or 2.0 mm thick. The size of the plastic zone at the crack tip due to the single applied overload was also determined using finite element analysis.