• Title/Summary/Keyword: Columnar Dendrite

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$CO_2$ Weldability of Zn Coated Steel Sheet(1) - Weld Defects and Its Characteristics in Welds - (아연도금강판의 $CO_2$ 용접특성(1) - 용접부 결함의 종류와 특성 -)

  • 이종봉;안영호;박화순
    • Journal of Welding and Joining
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    • v.18 no.1
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    • pp.91-96
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    • 2000
  • Characteristics of the weld defect, such as a blowhole and a pit in lap-jointed fillet Co₂ welds of Zn-coated steel sheet were studied in order to make clear the sequence of the blowhole formation during welding. Main conclusions obtained are as follows: 1) Blowhole, wormhole and pit were found in fillet welds, although the optimum welding condition of 200A-23V-100cm/min was applied. 2) Zn was only detected at the solidification boundary at the early stage of the blowhole formation. 3) Most of the blowholes was started to form at lap-joint by the Zn vapor. With increasing of the Zn vapor and its pressure, the blowhole was develope to th bed surface until the completion of weld solidification. 4) The behavior of the blowhole in growth was similar to that of the columnar dendrite during welding.

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A study on the microstructure and micro-hardenss distribution in laser welded AZ31 magnesium alloy (AZ31 마그네슘합금 레이저 용접부의 미세조직 및 미소경도의 분포에 관한 연구)

  • Choi, Y.H.;Lee, M.Y.;Choi, S.H.
    • Laser Solutions
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    • v.15 no.3
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    • pp.11-15
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    • 2012
  • The laser weld of AZ31 magnesium alloy was characterized with OM, EBSD and micros vickers hardness tester in experiment. EBSD analysis and micro-hardness measurements were carried out at the three regions (Equiaxed Zone, Columnar Dendrite Zone, Base Metal) of the welded AZ31Mg alloy sheets. The magnesium alloy show the rectangular shape bead in laser weld. EBSD analysis revealed that the three regions show the heterogeneous distribution of grain size and microtexture. Micro-hardness measurement also revealed that the heterogeneous distribution of microstructure contributed to the heterogeneous micro-hardness distribution in the three regions.

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A study on the effect of ultrasonic beam skewing based on theoretical model approach in CCSS (원심 주조 스텐레스 강에서의 이론적 모델을 통한 Beam Skewing 영향 고찰)

  • Lee, S.L.;Lim, H.T.;Lee, Y.S.
    • Journal of the Korean Society for Nondestructive Testing
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    • v.10 no.1
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    • pp.24-28
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    • 1990
  • Centrifugally Cast Stainless Steel generally shows similar structure to the weld in austenitic stainless steel in the point of casting. When examining this material ultrasonically, the beam does not generally propagate straightforward but rather deviates from its original direction and this phenomenon called skewing is originally caused by anisotropic material. In order to calculate the beam skewing effect theoretically, work has been performed based on a model approach which has regarded material itself as having been composed of multi-layered columnar dendrite structure and the result was compared with the one from experiment. The result from both theory and experiment showed good correlation and ultrasonic beam showed the least skewing with around 45 degree incident angle.

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A Study on the Microstructure of Melt-Quenched AISI 310 Stainless Steel (단롤법으로 제조한 AISI 310 스테인레스강의 급냉 조직에 관한 연구)

  • Choi, J.H.;Oh, M.S.;J., S.S.;Lee, Y.H.
    • Journal of the Korean Society for Heat Treatment
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    • v.9 no.1
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    • pp.19-26
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    • 1996
  • Melt-quenching of steels leads to various metallographic effects such as refinement of grain size, extension of the solid solubility of carbon and alloying elements, and is expected to improve the mechanical properties of conventional steels. Furthermore, this technique is a useful method for producing sheet directly from liquid state. And it will lend itself to development as a continuous cast process which offers significant savings in energy and product costs. The purpose of this study is to present the microstructures of melt-quenched austenitic stainless steels. As the results of this study, the morphology of melt-quenched microstructure show that the roll contact area is columnar structure, and the free surface area is dendrite structure. As the line speed increases, the ratio of $d_{colunnar}/d_{total}$ increases from 0.12 to 0.60, but the ribbon thickness decreases from $150{\mu}m$ to $30{\mu}m$.

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Effects of Precipitate Element Addition on Microstructure and Magnetic Properties in Magnetostrictive Fe83Ga17 alloy

  • Li, Jiheng;Yuan, Chao;Zhang, Wenlan;Bao, Xiaoqian;Gao, Xuexu
    • Journal of Magnetics
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    • v.21 no.1
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    • pp.12-19
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    • 2016
  • The <100> oriented $Fe_{83}Ga_{17}$ alloys with various contents of NbC or B were prepared by directionally solidification method at the growth rate of $720mm{\cdot}h^{-1}$. With a small amount of precipitates, the columnar grains grew with cellular mode during directional solidification process, while like-dendrite mode of grains growth was observed in the alloys with higher contents of 0.5 at% due to the dragging effect of precipitates on the boundaries. The NbC precipitates disperse both inside grains and along the boundaries of $Fe_{83}Ga_{17}$ alloys with NbC addition, and the Fe2B secondary phase particles preferentially distribute along the grain boundaries in B-doped alloys. Precipitates could affect grain growth and improved the <100> orientation during directional solidification process. Small amount of precipitate element addition slightly increased the magnetostrictive strain, and a high value of 335 ppm under pre-stress of 15 MPa was achieved in the alloys with 0.1 at% NbC. Despite the fact that the effect on magnetic induction density of small amount of precipitates could be negligible, the coercivity markedly increased with addition of precipitate element for $Fe_{83}Ga_{17}$ alloy due to the retarded domain motion resulted by precipitates.