• 제목/요약/키워드: phase transformation temperature

검색결과 509건 처리시간 0.025초

Fatigue Properties of Ti-Ni Shape Memory Alloy Wire Welded by Nd: YAG Laser

  • Kim, Y.S.;Kim, J.D.;Kil, B.L.
    • International Journal of Korean Welding Society
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    • 제3권1호
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    • pp.39-44
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    • 2003
  • The welded specimens were made by butt welding of the 2 wires of 50mm length using the pulsed YAG laser. The laser welded wires were tested for investigating the shape memory effect and the ability of super elasticity. The fatigue properties of the welded wires were investigated using the rotary bending fatigue tester specially designed for wires. Moreover, the effect of defocusing distance during laser welding on the static and fatigue properties was Investigated. The shape memory effect and super elasticity of the laser welded wires were approximately identical with that of base metal at the test temperature below 353K. However, the welded wires were broken within elastic limit at the test temperature above 353k. Under the cyclic bending loading conditions, the welded wires could be useful only below the elastic limit, while the base metal had sufficient fatigue life even the stress induced M-phase region. The fatigue strength of the welded wires was about half of that of the base metal. The deterioration of the static and fatigue properties in the welded wires was proven to be from the large difference of the transformation behavior between the base metal and welded part that is caused by vaporization of Ni-content at the welded part during the welding process. The defocusing distance below 3mm acted more largely on lowering the strength of the welded wires than that of 6mm or 8mm.

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화학센서용 다공성 ${\gamma}-Fe_2O_3$ 박막 제조 (Fabrication of ${\gamma}-Fe_2O_3$ Thin Film for Chemical Sensor Application)

  • 김범진;임일성;장건익
    • 센서학회지
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    • 제8권2호
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    • pp.171-176
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    • 1999
  • PECVD법을 이용하여 $Al_2O_3$ 기판위에 증착된 $Fe_3O_4$박막의 상전이를 통하여 ${\gamma}-Fe_2O_3$ 박막을 제조하였다. ${\gamma}-Fe_2O_3$ 박막의 상전이는 주로 증착온도와 $Fe_3O_4$의 산화과정에 의해 유도되었다. $Fe_3O_4$ 상은 $200{\sim}300^{\circ}C$의 증착온도에서 in-situ로 얻을 수 있었다. 증착온도에 따른 상변화는 없었으며 $250^{\circ}C$에서 증착된 $Fe_3O_4$상이 가장 안정된 상을 나타내었다. ${\gamma}-Fe_3O_3$ 상은 $280{\sim}300^{\circ}C$의 온도범위에서 $Fe_3O_3$ 상을 산화시켜 유도하였다. $Fe_3O_4$ 상과 ${\gamma}-Fe_2O_3$ 상은 같은 spinel구조를 가지고 있으며 공존상으로서 존재함을 알 수 있었다. 또한, $Al_2O_3$에 산화된 ${\gamma}-Fe_2O_3$ 박막은 다공성의 미세구조를 나타내었다.

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AP추진제의 연소면 형성 및 전파 모델링 연구 (A phase transformation model for burning surface in AP/HTPB propellant combustion)

  • 정태용;도영대;유지창;여재익
    • 한국항공우주학회지
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    • 제38권4호
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    • pp.363-368
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    • 2010
  • 고체추진제의 연소가 진행될 때, 고체상에서 액체상으로, 액체상에서 기체상으로의 상변화가 일어난다. 이 때 추진제 표면에서는 액체상, 기체상이 동시에 존재하게 된다. 액체상과 기체상의 중간에서는 액체상과 기체상의 혼합으로 인하여 거품이 형성되는데, 이 구간을 용융층(Melt Layer)이라고 한다. 용융층의 윗부분, 즉 액체상과 기체상 사이에는 연소면(Burning Surface)이 존재한다. 일반적으로 고체추진제가 연소될 때 생성되는 용융층의 두께는 1기압에서 약 1마이크론 정도이다. 본 연구에서는 물리적인 상변화 현상을 상방정식을 이용하여 액체에서 기체로의 상변화 현상을 모사하였다. 이를 통하여 연소면의 두께, 형성과 전파를 모사하였다.

졸-겔법에 의한 $Y_2O_3-ZrO_2$계와 $CaO-ZrO_2$계 섬유의 제조 및 Raman Microprobe에 의한 상분석 (Fabrication of $Y_2O_3-ZrO_2$ and $CaO-ZrO_2$ Fibers by Sol-Gel Process and Their Phase Characterization by Raman Microprobe)

  • 황진명;은희태;권혁기
    • 한국세라믹학회지
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    • 제31권1호
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    • pp.104-114
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    • 1994
  • ZrO2 fibers were fabricated by means of the Sol-Gel process using Zr(O-nC3H7)4-H2O-C2H5OH-HNO3 solution as a starting material. The optimum experimental parameters such as molar ratio of starting materials, concentration, temperature, viscosity, the amounts of stabilizer and the pH of solution were determined. The experimentally determined optimum variables which produce good ZrO2 fibers were used to manufacture the Y2O3-and CaO-ZrO2 fibers. The amounts of Y2O3 and CaO were varied within the range from 1.5~5 mol% and 3~15 mol% respectively. The phase transformation and microstructural evolution of the fabricated ZrO2 gel fibers were investigated after heat treatments up to 120$0^{\circ}C$ by X-ray diffraction, Raman microprobe spectroscopy, SEM, and specific surface area and pore volume measurements. From the analysis of X-ray diffraction and Raman spectra, the phase of heat treated Y2O3-and CaO partially stabilized ZrO2 gel fibers(Y2O3:2.5~3 mol%, CaO:6~9 mol%) were identified as a tetragonal phase up to 100$0^{\circ}C$. The maximum tensile strength of 2.5Y2O3-97.5ZrO2 and 6CaO-94ZrO2 (in mol%) fibers heat treated at 100$0^{\circ}C$ for 1 hr was found be 1.3~2 GPa with diameters of 10~20 ${\mu}{\textrm}{m}$.

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PRAM용 Cu-도핑된 Ge8Sb2Te11 박막의 특성 (Characteristics of Cu-Doped Ge8Sb2Te11 Thin Films for PRAM)

  • 김영미;공헌;김병철;이현용
    • 한국전기전자재료학회논문지
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    • 제32권5호
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    • pp.376-381
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    • 2019
  • In this work, we evaluated the structural, electrical and optical properties of $Ge_8Sb_2Te_{11}$ and Cu-doped $Ge_8Sb_2Te_{11}$ thin films prepared by rf-magnetron reactive sputtering. The 200-nm-thick deposited films were annealed in a range of $100{\sim}400^{\circ}C$ using a furnace in an $N_2$ atmosphere. The amorphous-to-crystalline phase changes of the thin films were investigated by X-ray diffraction (XRD), UV-Vis-IR spectrophotometry, a 4-point probe, and a source meter. A one-step phase transformation from amorphous to face-centered-cubic (fcc) and an increase of the crystallization temperature ($T_c$) was observed in the Cu-doped film, which indicates an enhanced thermal stability in the amorphous state. The difference in the optical energy band gap ($E_{op}$) between the amorphous and crystalline phases was relatively large, approximately 0.38~0.41 eV, which is beneficial for reducing the noise in the memory devices. The sheet resistance($R_s$) of the amorphous phase in the Cu-doped film was about 1.5 orders larger than that in undoped film. A large $R_s$ in the amorphous phase will reduce the programming current in the memory device. An increase of threshold voltage ($V_{th}$) was seen in the Cu-doped film, which implied a high thermal efficiency. This suggests that the Cu-doped $Ge_8Sb_2Te_{11}$ thin film is a good candidate for PRAM.

고온 고압 환경에서 합성 제올라이트 X의 상전이 비교연구 (Phase Transition of Zeolite X under High Pressure and Temperature)

  • 이현승;이수진;이용문
    • 자원환경지질
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    • 제56권1호
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    • pp.13-21
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    • 2023
  • 합성 제올라이트 X의 고온 고압 하에서 압력 전달 매개체에 따른 체적탄성계수와 상전이 특성을 이해하기 위해 X-선 분말 회절 연구를 진행하였다. 제올라이트 X에 물과 탄산 용액을 압력전달매개체로 사용하여 상온 상압에서 최대 250 ℃, 5.18 GPa까지 가열 및 가압하는 과정에서 나타나는 단위포 부피 변화와 상전이를 방사광 X-선 회절을 통해 관찰하였다. 르바일의 전체 분말 패턴 분해법이 적용된 GSAS2 프로그램을 사용하여 각 압력 단계에서 제올라이트 X와 그멜리나이트, 나트로라이트, 스멕타이트의 격자상수와 단위포 부피를 도출하였다. 버치-머내한 2차 방정식이 적용된 EosFIt 프로그램을 사용하여 각 제올라이트 X와 스멕타이트의 체적탄성계수를 구하였다. 물을 사용한 실험에서 제올라이트 X의 체적탄성계수는 89(3) GPa, 탄산 수용액을 사용한 실험에서 제올라이트 X의 체적탄성계수는 92(3) GPa이다. 두 실험 모두 최초 가압 시 제올라이트 X 내부로 압력 전달 매개체의 유입으로 인한 부피 증가 현상이 발생하였다. 물을 사용한 실험에서 제올라이트 X는 그멜리나이트, 나트로라이트, 스멕타이트로 상전이 하였으며, 탄산 수용액을 사용한 실험에서 제올라이트 X는 스멕타이트로 상전이 하였다. 물을 사용한 실험에서 나타난 제올라이트 간 변화는 탄산 수용액을 사용한 실험에서는 발생하지 않았으며, 이는 특정 제올라이트 생성 조건이 압력 전달 매개체 pH와 연관이 있는 것으로 판단된다.

상압소결(常壓燒結)한 SiC-$ZrB_2$ 전도성(電導性) 복합체(複合體)의 특성(特性)에 미치는 In Situ YAG의 영향(影響) (Effect of In Situ YAG on Properties of the Pressureless-Sintered SiC-$ZrB_2$ Electroconductive Ceramic Composites)

  • 신용덕;주진영;고태헌;이정훈
    • 전기학회논문지
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    • 제57권11호
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    • pp.2015-2022
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    • 2008
  • The effect of content of $Al_2O_3+Y_2O_3$ sintering additives on the densification behavior, mechanical and electrical properties of the pressureless-sintered $SiC-ZrB_2$ electroconductive ceramic composites was investigated. The $SiC-ZrB_2$ electroconductive ceramic composites were pressurless-sintered for 2 hours at 1,700[$^{\circ}C$] temperatures with an addition of $Al_2O_3+Y_2O_3$(6 : 4 mixture of $Al_2O_3$ and $Y_2O_3$) as a sintering aid in the range of $8\;{\sim}\;20$[wt%]. Phase analysis of $SiC-ZrB_2$ composites by XRD revealed mostly of $\alpha$-SiC(6H), $ZrB_2$ and In Situ YAG($Al_5Y_3O_{12}$). The relative density, flexural strength, Young's modulus and vicker's hardness showed the highest value of 89.02[%], 81.58[MPa], 31.44[GPa] and 1.34[GPa] for $SiC-ZrB_2$ composites added with 16[wt%] $Al_2O_3+Y_2O_3$ additives at room temperature respectively. Abnormal grain growth takes place during phase transformation from $\beta$-SiC into $\alpha$-SiC was correlated with In Situ YAG phase by reaction between $Al_2O_3$ and $Y_2O_3$ additive during sintering. The electrical resistivity showed the lowest value of $3.l4{\times}10^{-2}{\Omega}{\cdot}cm$ for $SiC-ZrB_2$ composite added with 16[wt%] $Al_2O_3+Y_2O_3$ additives at 700[$^{\circ}C$]. The electrical resistivity of the $SiC-TiB_2$ and $SiC-ZrB_2$ composite was all negative temperature coefficient resistance (NTCR) in the temperature ranges from room temperature to 700[$^{\circ}C$]. Compositional design and optimization of processing parameters are key factors for controlling and improving the properties of SiC-based electroconductive ceramic composites.

HSLA 강의 미세조직과 저온 샤르피 충격 특성에 미치는 탄소와 니켈의 영향 (Effect of Carbon and Nickel on Microstructure and Low Temperature Charpy Impact Properties of HSLA Steels)

  • 엄해원;조성규;조영욱;신건철;권용재;이정구;신상용
    • 한국재료학회지
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    • 제30권4호
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    • pp.184-196
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    • 2020
  • In this study, effects of carbon and nickel on microstructure and low temperature Charpy impact properties of HSLA (high strength low alloy) steels are investigated. To understand the complex phase transformation behavior of HSLA steels with high strength and toughness before and after welding processes, three kinds of HSLA steels are fabricated by varying the carbon and nickel content. Microstructure analysis, low temperature Charpy impact test, and Vickers hardness test are performed for the base metals and CGHAZ (coarse-grain heat affected zone) specimens. The specimens with the lowest carbon and nickel content have the highest volume fraction of AF, the lowest volume fraction of GB, and the smallest GB packet size. So, the low temperature Charpy absorbed energy of the CGHAZ specimen is the highest. The specimens with increased carbon and nickel content have the lowest volume fraction of AF, the highest volume fraction of GB, and the largest GB packet size. So, the low temperature Charpy absorbed energy of the CGHAZ specimen is the lowest.

천이금속에 따른 SiC계 복합체의 전기적 특성 (Electrical Properties of SiC Composites by Transition Metal)

  • 신용덕;서재호;주진영;고태헌;김영백
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2007년도 제38회 하계학술대회
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    • pp.1303-1304
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    • 2007
  • The composites were fabricated, respectively, using 61[vol.%]SiC-39[vol.%]$TiB_2$ and using 61[vol.%]SiC-39[vol.%]$ZrB_2$ powders with the liquid forming additives of 12[wt%] $Al_{2}O_{3}+Y_{2}O_{3}$ by hot pressing annealing at $1650[^{\circ}C]$ for 4 hours. Reactions between SiC and transition metal $TiB_2$, $ZrB_2$ were not observed in this microstructure. ${\beta}{\rightarrow}{\alpha}$-SiC phase transformation was occurred on the SiC-$TiB_2$ and SiC-$ZrB_2$ composite. The relative density, the flexural strength and Young's modulus showed the highest value of 98.57[%], 226.06[Mpa] and 86.38[Gpa] in SiC-$ZrB_2$ composite at room temperature respectively. The electrical resistivity showed the lowest value of $7.96{\times}10^{-4}[{\Omega}{\cdot}cm]$ for SiC-$ZrB_2$ composite at $25[^{\circ}C]$. The electrical resistivity of the SiC-$TiB_2$ and SiC-$ZrB_2$ composite was all positive temperature coefficient resistance (PTCR) in the temperature ranges from $25[^{\circ}C]$ to $700[^{\circ}C]$. The resistance temperature coefficient of composite showed the value of $6.88{\times}10^{-3}/[^{\circ}C]$ and $3.57{\times}10^{-3}/[^{\circ}C]$ for SiC-$ZrB_2$ and SiC-$TiB_2$ composite in the temperature ranges from $25[^{\circ}C]$ to $700[^{\circ}C]$.

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Effect of a surface oxide-dispersion-strengthened layer on mechanical strength of zircaloy-4 tubes

  • Jung, Yang-Il;Park, Dong-Jun;Park, Jung-Hwan;Kim, Hyun-Gil;Yang, Jae-Ho;Koo, Yang-Hyun
    • Nuclear Engineering and Technology
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    • 제50권2호
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    • pp.218-222
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    • 2018
  • An oxide-dispersion-strengthened (ODS) layer was formed on Zircaloy-4 tubes by a laser beam scanning process to increase mechanical strength. Laser beam was used to scan the yttrium oxide ($Y_2O_3$)-coated Zircaloy-4 tube to induce the penetration of $Y_2O_3$ particles into Zircaloy-4. Laser surface treatment resulted in the formation of an ODS layer as well as microstructural phase transformation at the surface of the tube. The mechanical strength of Zircaloy-4 increased with the formation of the ODS layer. The ring-tensile strength of Zircaloy-4 increased from 790 to 870 MPa at room temperature, from 500 to 575 MPa at $380^{\circ}C$, and from 385 to 470 MPa at $500^{\circ}C$. Strengthening became more effective as the test temperature increased. It was noted that brittle fracture occurred at room temperature, which was not observed at elevated temperatures. Resistance to dynamic high-temperature bursting improved. The burst temperature increased from 760 to $830^{\circ}C$ at a heating rate of $5^{\circ}C/s$ and internal pressure of 8.3 MPa. The burst opening was also smaller than those in fresh Zircaloy-4 tubes. This method is expected to enhance the safety of Zr fuel cladding tubes owing to the improvement of their mechanical properties.