• Title/Summary/Keyword: Melt temperature

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A Fabrication and Characteristics of GaInAs/InP PIN Phtodiode Grown by LPE (LPE에 의한 GaInAs/InP PIN Photodiode의 제작 및 특성)

  • 박찬용;남은수;박경현;김상배;박문수;이용탁;홍창희
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.27 no.5
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    • pp.737-746
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    • 1990
  • Ga0.47In0.53As PIN photodiodes(PD) having various areas have been fabricated by liquid phase epitaxial techniques. Ternary melt has been baked out at 675\ulcorner in H2 atmosphere for 20 hours before growth, which resulted in reduction of background carrier concentration of grown epi-layer. Also, lattice mismatch has been controlled within 0.01%. The room temperature performance of 10**-4cm\ulcornerarea PIN PD at a bias voltage of -5V were` quantum efficiency(with no antireflection coating)=60% for 1.3\ulcorner light source, dark current\ulcorner5nA, and capacitance\ulcornerpE. Frequency response measurement of packaged PIN PD has shown that cut-off frequency (f-3dB) was 961MHz. This PD has shown a good eye pattern when it was incorporated in a 565Mbps optical receiver.

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Characteristics of BSCCO Superconductor Tube Using Partial Melting Process (부분용융법을 이용한 BSCCO 초전도 튜브 특성)

  • 박용민;장건익
    • Proceedings of the Korea Institute of Applied Superconductivity and Cryogenics Conference
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    • 2001.02a
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    • pp.25-28
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    • 2001
  • Bi-2212 HTS tube was fabricated by centrifugal forming process(CFP). As a variation of melt casting process(MCP) or centrifugal casting technique, the centrifugal forming process is a flexible method for manufacturing Bi-2212 bulk tubes and has been optimized to achieve smooth surface and uniform thickness. At this process, the slurry was prepared in the mixing ratio of 10:1 between Bi-2212 powder and binder and initially charged into the rotating mold under the speed of 300~450 rpm Heat-treatment was performed at the temperature ranges of 860 ~ $890^{\circ}C$ in air for partial melting. The HTS tube fabricated by centrifugal forming process at $890^{\circ}C$ under the rotating speed of 450 rpm was highly densified and the plate-like grains with more than 20$\mu$m were well oriented along the rotating axis. The measured Tc and Jc at 10K were around 85K and 3,000A/cm2 respectively.

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Mechanism of $3CaO.SiO_2$ Prevention in Presence of Excess $SO_3$ (과량의 $SO_3$가 존재할 때 $3CaO.SiO_2$의 생성 저하 메카니즘)

  • 정해문;한기성;최상흘
    • Journal of the Korean Ceramic Society
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    • v.30 no.7
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    • pp.527-534
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    • 1993
  • The phenomena that excess sulfate hindred the C3S formation in the presence of clinker liquid phase were investigated. In the case of (NH4)2SO4, assuming SO3 atmospheric condition, sulfate stabilized C2S and was enriched at the surface of C2S grains, so C2S was prevented from being dissolved into clinker melt. CaSO4 showed the similar aspect with (NH4)2SO4, however, the prevention of C3S formation by CaSO4 took more influence that C2AS and C4A3 were formed below 100$0^{\circ}C$, and remained upto clinkering temperature, 145$0^{\circ}C$, thus these intermediate phases caught CaO which would participate the C3S formation.

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The PTC Characteristics of High Density Polyethylene/Carbon Black/MWCNTs Hybrid Nanocomposites (HDPE/Carbon Black/MWCNTs Hybrid 나노복합재료의 PTC 특성)

  • Kim, Sung-Kwan;Lee, Joong-Hee
    • Proceedings of the Korean Society For Composite Materials Conference
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    • 2005.11a
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    • pp.71-74
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    • 2005
  • In this paper, the effects of the MWCNTs on the PTC characteristics of the conventional CB/polymer nanocomposites were investigated. For the uniform dispersion of the MWCNTs in the polymer matrix., nitricacid-treated MWCNTs were dispersed with the dissolved HOPE in the solvent. After evaporating solvent, the dried master batches in the oven were melt blended mixed with CB and HDPE to obtain the PTC materials. The initial resistivity of PTC materials decreased and the PTC intensity increased with the MWCNTs. During three repeated heating and cooling cycles, the PTC materials containing MWCNTs showed a great reproducibility due to the conductive network structures of CB particles and MWCNTs.

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A Study on Sink Mark of Injection Molded Products (사출성형부품의 싱크마크에 관한 연구)

  • 서윤수;김영호;임동주
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 1997.04a
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    • pp.811-814
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    • 1997
  • The injection molding process has been developed as a very important technology for the automotive and electric industries in recent years. But, in the injection molding products with rib-web structures, partial deformation by thermal volumetric shrinkage called Sink Mark, is occurred. In this study, to make explicitly characteristics of sink mechanism, an experimental approach was taken by using multi T-shaped mold cavity and FEM simulation. As a result, pressure on the packing process and the rib thickness are the most effective on sink mark depth. On the other hand, melt temperature has no effect on sink mark depth fot the same rib thickness.

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Filling Imbalance of Elastomer TPVs in Injection Mold with Multi-Cavity (다수캐비티 사출금형에서 엘라스토머 TPV의 충전 불균형)

  • Han, Dong-Yeop;Kwon, Yun-Suk;No, Byeong-Su;Jeong, Yeong-Deug
    • Journal of the Korean Society for Precision Engineering
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    • v.24 no.2 s.191
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    • pp.41-46
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    • 2007
  • Recently, the study for filling imbalance in thermoplastic polymer has gradually been increased. However, it is hard to find the researches for filling imbalance of thermoplastic elastomer(TPE). The experiment of filling imbalance was conducted for the three kinds of thermoplastic vulcanizes(TPVs) in the mold with geometrically balanced runner system. In this experiment, the effects of the melt temperature and injection speed on the filling imbalance were investigated. To solve the filling imbalance, Runner Core pin(RC pin) in the experimental mold was adopted and it's effects was tested. In this paper, we present that the insert length of RC pin is dependent to each polymers for optimal filling balance.

Filling Imbalance in Injection Mold with Branch Type Runner System (나뭇가지형 러너시스템을 갖는 사출금형에서의 충전 불균형)

  • Han, Dong-Yeop;Jeong, Yeong-Deug
    • Design & Manufacturing
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    • v.1 no.1
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    • pp.45-50
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    • 2007
  • Recently, the study for filling imbalance in thermoplastic polymer has gradually been increased. However, it is hard to find the researches for filling imbalance of thermoplastic elastomer(TPE). The experiment of filling imbalance was conducted for thermoplastic vulcanize(TPV) and PP, ABS polymers in the mold with un-geometrically balanced runner system(Branch Type Runner System). In this experiment, the effects of the melt temperature, injection pressure and injection speed on the filling imbalance were investigated.

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Oxygen Isotope Data of Winter Water in the Western Weddell Sea: Preliminary Results

  • Khim, Boo-Keun;Park, Byong-Kwon;Kang, Sung-Ho
    • Journal of the korean society of oceanography
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    • v.33 no.1-2
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    • pp.1-7
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    • 1998
  • In the western Weddell Sea, winter mixed layer is characterized by near-freezing temperature and higher salinity due to brine injection through sea-ice formation. This layer becomes Winter Water being capped by warmer and less saline Antarctic Surface Water during the sea-ice melt-ing season. In this study, Winter Water was preliminarily identified by the oxygen isotopic com-positions. The ${\delta}^{18}$O values of Winter Water show the progressively increasing trend from south to north in the study area. It presumably reflects the enhanced mixing with Antarctic Surface Water due to the extent of influence by low S'"0 value of sea-ice/glacier meltwater. Correlations between salinity and 6'"0 values of seawater can be used to more generally characterize Winter Water with a view to identification. However, the prediction on the degree of mixing from these relationships needs more detailed isotope data, although this study allows the oxygen isotopic composition of seawater as a tracer to identify the water mass.

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Analysis of Keyhole Formation and Stability in Laser Spot Welding (레이저 점 용접의 키홀 발생과 안정성에 대한 해석)

  • 고성훈;이재영;유중돈
    • Journal of Welding and Joining
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    • v.20 no.4
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    • pp.484-490
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    • 2002
  • The formation and stability of stationary laser weld keyholes were investigated using a numerical simulation. The effect of multiple reflections in the keyhole was estimated using the ray tracing method, and the free surface profile, flow velocity and temperature distribution were calculated numerically. In the simulation, the keyhole was formed by the displacement of the melt induced by evaporation recoil pressure, while surface tension and hydrostatic pressure opposed cavity formation. A transition mode having the geometry of the conduction mode with keyhole formation occurred between the conduction and keyhole modes. At laser powers of 500W and greater, the protrusion occurred on the keyhole wall, which resulted in keyhole collapse and void formation at the bottom. Initiation of the protrusion was caused mainly by collision of upward and downward flows due to the pressure components, and Marangoni flow had minor effects on the flow patterns and keyhole stability.bility.

Preparation of Partial Mesophase Pitch-based Carbon Fiber from FCC-DO

  • Park, Sang-Hee;Yang, Kap-Seung;Soh, Soon-Young
    • Carbon letters
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    • v.2 no.2
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    • pp.99-104
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    • 2001
  • Partial mesophase (PM) pitch precursor was prepared from fluidized catalytic cracking-decant oils (FCC-DO) by chemical reaction in the presence of $Br_2$. The PM pitch heated-treatment at $420^{\circ}C$ for 9 h exhibited the softening point of $297^{\circ}C$ with 23% yield, and 55% anisotropic content. The PM pitch precursor was melt-spun through circular nozzle by pressurized $N_2$, stabilized at $310^{\circ}C$, carbonized at $700^{\circ}C$, $1000^{\circ}C$, and $1200^{\circ}C$. The enough stabilization introduced 16.4% of the oxygen approximately. The stacking height ($L_{c002}$) and interlayer spacing ($d_{002}$) of the as-spun fibers were 4.58 nm and $3.45{\AA}$ and the value became minimum and maximum at $700^{\circ}C$ respectively in the carbonization procedure. The tensile strength increased with an increase in the heat treatment temperature exhibiting highest value of 750 MPa at $1200^{\circ}C$ carbonization.

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