• 제목/요약/키워드: Microcracking temperature

검색결과 31건 처리시간 0.021초

PSE/AS4 복합재료의 가속노화가 피로강도에 미치는 영향 (The Effects of Physical Aging of PSF/AS4 Laminate on Fatigue)

  • 김형원
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2005년도 추계학술발표대회 논문집
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    • pp.39-44
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    • 2005
  • The effects of aging of PSF/AS4 laminates on fatigue was studied using the new energy release rate analysis. The analysis by the variational mechanics has been useful in providing fracture mechanics interpretation of matrix microcracking in cross-ply laminates. This paper describes the changes of the critical energy release rate (microcracking toughness) according to the aging period under fatigue loading. The master plot by modified Paris-law gives a characterization of a material system's resistance to microcrack formation. PSF $[0/90_{s}]_{s}$ laminates were aged at four different temperature based on the glass transition temperature for 0 to 60 days. At all temperatures, the toughness decreased with aging time. The decrease of the toughness at higher temperature was faster than at lower temperature. To assess the effects of aging on fatigue, the unaged laminates were compared with the laminates which had been aged for 60 days at 170$^{\circ}C$ near 180 $^{\circ}C$ t$_g$. The slope of dD/dN versus ${\Delta}G_m$. of the aged laminates was lower than that of the unaged laminates. There was a significant shift of the aged data to formation of microcracks at the lower values of ${\Delta}G_m$.

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Thermal Shock Behavior of Barium Titanate Ceramics

  • Jae Yeon Kim;Young Wook Kim;Kyeong Sik Cho;June Gunn Lee
    • The Korean Journal of Ceramics
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    • 제3권3호
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    • pp.195-198
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    • 1997
  • Post-firing process of electronic ceramic, such as electroding and encapsultion with resin, often causes damage by thermal shock. The thermal shock behavior of $BaTiO_3$ ceramics was investigated by the down-quench test, where the relative strength retained is determined after the sample is quenched from an elevated temperature into a fixed temperature bath. The critical temperature drop, $\DeltaTc$, was evaluated for three kinds of sintered $BaTiO_3$ ceramics, which were formed by extrustioin, uniaxial pressing using granules, and uniaxial pressing using powders. A drastic loss in strength caused by microcracking was observed for the specimens quenched with $\DeltaT\geq150^{\circ}C$. This concentp can be adopted as a method of the quality control by monitoring the sudden drop of the strength of capacitor products after each exposure to heat.

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AE에 의한 알루미나 세라믹스의 Microcrack 생성과 파괴거동의 평가 (Evaluation of Fracture Behavior and Formation of Microcrack of Alumina Ceramics by Acoustic Emission)

  • 장병국;우상국
    • 한국세라믹학회지
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    • 제35권6호
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    • pp.551-558
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    • 1998
  • Detection of microcrack in {{{{ {Al }_{2 } {O }_{3 } }} ceramics were studided by AE(acoustic emission) technique with 4-point bending test in order to evaluate the fracture process and formation of microcrack. Fully-dense alu-mina ceramics having a different grain size were fabricated by varing the hot-pressing temperature. The grain size of alumina increased with increasing the hot-pressing temperature whereas the bending strength decreasd. The microcracks were observed by SEM and TEM. The generation of AE event increased with increasing the applied load and many AE event was generated at maximum applied load. Alumina with smaller grain size shows the generation of many AE event resulting in an increase of microcrack formation. An intergranular fracture is predominantly observed in fine-grained alumina whereas intragranular fracture occurs predominantly in coarse-grained alumina,. Analysis of micorstructure and AE prove that primary mi-crocracks occur within grain-boundaries of alumina. The larger microcracking were formed by the growth and/or coalesence of primary microcracks. Then the materials become to fracuture by main crack gen-eration at the maximum applied load.

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Numerical analysis of plasma-sprayed ceramic coatings for high-temperature applications

  • St. Doltsinis, Ioannis;Haller, Kai-Uwe;Handel, Rainer
    • Structural Engineering and Mechanics
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    • 제4권6호
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    • pp.679-702
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    • 1996
  • The finite element method is employed in conjunction with micromechanical modelling in order to assess the performance of ceramic thermal barrier coatings applied to structural components. The study comprises the conditions of the deposition of the coating by plasma spraying as well as the thermal cycling of the coated component, and it addresses particularly turbine blades. They are exposed to high temperature changes strongly influencing the behaviour of the core material and inducing damage in the ceramic material by intense straining. A concept of failure analysis is discussed starting from distributed microcracking in the ceramic material, progressing to the formation of macroscopic crack patterns and examining their potential for propagation across the coating. The theory is in good agreement with experimental observations, and may therefore be utilized in proposing improvements for a delayed initiation of failure, thus increasing the lifetime of components with ceramic thermal barrier coatings.

PSF/AS4 복합재료의 가속노화가 피로강도에 미치는 영향 (The Effects of Physical Aging of PSF/AS4 Laminate on Fatigue)

  • 김형원
    • Composites Research
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    • 제19권4호
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    • pp.1-6
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    • 2006
  • PSF/AS4 복합재 적층구조의 가속노화가 피로강도에 미치는 영향을 변분이론을 이용한 에너지 발산율(energy release rate) 분석을 이용하여 연구하였다. 변분이론 분석은 수지미소균열에 대한 파괴역학을 해석하는데 사용되어 왔으며 이 논문에서는 피로하중 하에서 가속노화 시간에 따르는 파괴인성이 어떻게 변하는가를 설명하였다. 수정된 Paris 법칙에 의한 선도는 각 재료마다. 미소균열이 형성되는 특성을 나타낸다. PSF/AS4 $[0/902]_s$ 적층구조가 60일 동안 유리천이온도에 근거를 두고 세분한 4개의 각기 다른 온도로 가속노화를 하였다. 모든 온도에서 파괴인성은 가속노화 시간에 따라 감소하였다. 높은 온도에서의 파괴인성의 감소는 낮은 온도에서의 감소보다 빠르게 진전되었다. 가속노화가 피로강도에 미치는 영향을 파악하기 위해 유리 천이온도인 섭씨 180도에 가까운 170도에서 60일 동안 노화한 것과 노화하지 않은 것을 비교하였다. 노화된 시편에 대하여 파괴인성의 변화(${\Delta}G_m$)가 낮은 값에서 미소균열이 형성되는 것을 알 수 있었다.

Effect of Grain Size on the Thermomechanical Properties of $Al_2 TiO_5$ Ceramics

  • Kim, Ik-Jin;Kweon, Oh-Seong;Ko, Young-Shin;Constatin Zografou
    • The Korean Journal of Ceramics
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    • 제2권4호
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    • pp.246-250
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    • 1996
  • The thermomechanical properties of materials from the system Al2O3-SiO2-TiO2(Tialite-Mullite) were investigated by correlating the thermal expansion anisotroypy, flexural strength and Young's modulus with grain size and atructural microcracking during cooling. Microcracking temperatures were determined by measuring the hysteresis of the thermal expansion anisotropy with dilatometry. Single phase Aluminium Titanate is a low strength material, while composites with more than 10 vol% mullite as second phase enhance the Young's modulus, thermal expansion coefficient and room temperature strength.

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$SiC/TiB_2$ 복합체의 미세구조와 기계적 특성 (Microstructures and Mechanical Properties of $SiC/TiB_2$ Composites)

  • 윤재돈
    • 한국분말재료학회지
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    • 제2권3호
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    • pp.216-222
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    • 1995
  • $SiC/TiB_2$ composites of varying $TiB_2$ content from 0 to 52 vol.% were prepared by pressureless sintering. When these composites were sintered at $2150^{\circ}C$ the mechanical properties such as elastic modulus, strength and toughness increased with increasing $TiB_2$ content. On the other hand, at a sintering temperature of $2200^{\circ}C$, the mechanical properties reduced gradually with increasing $TiB_2$ content. The main reason was deduced from the onset of spontaneous microcracking and the critical particle size for microcracking was calculated approximately 5.6 $\mu\textrm{m}$.

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전기용융 분말로부터 합성된 $Al_2$TiO$_5$ Ceramics의 열충격 저항성 (Thermal Shock Resistance of $Al_2$TiO$_5$ Ceramics Prepared from Electrofused Powders)

  • 김익진
    • 한국세라믹학회지
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    • 제35권10호
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    • pp.1061-1069
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    • 1998
  • The thermal instability of Al2TiO5 Ceramics was contrlled by solid solution with MgO SiO2 and ZrO2 through electrofusion in an arc furnace. The thermal expansion properties of Al2TiO5 composites show the hysteresis due to the strong anisotropy of The crystal axes of these material. These phenomena are ex-plained by the opening and closing of microcracks. The difference in microcracking temperatures e.g 587.6(ATG2), 405.9(ATG3) and 519.7$^{\circ}C$(ATG4) is caused by the difference in grain size and stabilizer type. The thermal shock behaviour under cyclic conditions between 750-1400-75$0^{\circ}C$ show no change in mi-crostructure and phase assemblage for all three stabilized specimens. After the thermal loading test at 110$0^{\circ}C$ for 100hrs. ATG1 and ATG2 materials decomposes completely to its components corundum and ru-tile in both cases. However with approximatelly 20% retention of the Al2TiO5 Thus in order to prevent decomposition of the stabilized material in the critical temperature range 800-130$0^{\circ}C$ it must be traversed within a short period of time.

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Grain Boundary Microcracking in ZrTiO4-Al2TiO5 Ceramics Induced by Thermal Expansion Anisotropy

  • Kim, Ik-Jin;Kim, Hyung-Chul;Lee, Kee-Sung;Han, In-Sub
    • 한국세라믹학회지
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    • 제40권2호
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    • pp.109-112
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    • 2003
  • The grain-boundary microcracking materials in the system $Al_2$TiO$_{5}$ -ZrTiO$_4$(ZAT) is influenced by the thermal expansion anisotropy. The range of ZAT compositions investigated had showed very low thermal expansions of 0.3~1.3$\times$10$^{-6}$ K loin compared to 8.29$\times$10$^{6}$ K of pure ZrTiO$_4$and 0.68$\times$10$^{6}$ K of polycrystalline $Al_2$TiO$_{5}$ , respectively, compared with the theoretical thermal expansion coefficient for a single crystal of $Al_2$TiO$_{5}$ , 9.70$\times$10$^{6}$ K. The low thermal expansion and microcraking temperature are apparently due to a combination of thermal contraction and expansion caused by the large thermal expansion anisotropy of the crystal a ies of the $Al_2$TiO$_{5}$ phase.

RESEARCH TRENDS IN THE CELLULOSE REINFORCED FIBROUS CONCRETE IN USA

  • Soroushian, Parviz;Ravanbakhsh, Sizvosh
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1997년도 가을 학술발표회 논문집
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    • pp.3-23
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    • 1997
  • The growth in fast-track construction and repair has prompted major efforts to develop high-early-strength concrete mix compositions. Such mixtures rely on the use of relatively high cement contents and accelerator dosages to increase the rate of strength development. The measures, however, seem to compromise the long-term performance of concrete in applications such as full-depth patches as evidenced by occasional premature deterioration of such patches. The hypothesis successfully validated in this research was that traditional methods of increasing the early-age strength of concrete, involving the use of high cement and accelerator contents, increase the moisture and thermal movements of concrete. Restraint of such movements in actual field conditions, by external or internal restraining factors, generates tensile stresses which introduced microcracks and thus increase the permeability of concrete. This increase in permeability accelerates various processes of concrete deterioration, including freeze-thaw attack. Fiver reinforcement of concrete is an effective approach to the control of microcrack and crack development under tensile stresses. Fibers, however, have not been known of accelerating the process of strength gain in concrete. The recently developed specialty cellulose fibers, however, were found in this research to be highly effective in increasing the early-age strength of concrete. This provides a unique opportunity to increase the rate of strength gain in concrete without increasing moisture an thermal movements, which actually controlling the processes of microcracking and racking in concrete. Laboratory test results confirmed the desirable resistance of specialty cellulose fiber reinforced High-early-strength concrete to restrained shrinkage microcracking an cracking, and to different processes of deterioration under weathering effects.

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