• 제목/요약/키워드: High-Mn steels

검색결과 106건 처리시간 0.017초

복합조직형 고강도 용융아연 도금강판의 도금특성에 미치는 강중 Si의 영향 (Effects of Silicon on Galvanizing Coating Characteristics in Dual Phase High Strength Steel)

  • 전선호;진광근;신광수;이준호;손호상
    • 대한금속재료학회지
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    • 제47권7호
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    • pp.423-432
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    • 2009
  • In the galvanizing coating process, the effects of the silicon content on the coatability and wettability of molten zinc were investigated on Dual-Phase High Strength Steels (DP-HSS) with various Si contents using the galvanizing simulator and dynamic reactive wetting systems. DP-HSS showed good coatability and a well-developed inhibition layer in the range of Si content below 0.5 wt%. Good coatability was the results of the mixed oxide $Mn_{2}SiO_{4}$, being formed by the selective oxidation on the surface, with a low contact angle in molten zinc and a large fraction of oxide free surface that provided a sufficient site for the molten zinc to wet and react with the substrate. On the other hand, with more than 0.5 wt%, DP-HSS exhibited poor coatability and an irregularly developed inhibition layer. The poor coatability was due to the poor wettability that resulted from the development of network-type layers of amorphous ${SiO}_{2}$, leading to a high contact angle in molten zinc, on the surface.

고에너지용 저합금강 제동디스크의 마모 특성 평가 (Evaluation of Wear Characteristics of Low-alloy Steel Brake Discs for High Energy Capacity)

  • 이동규;김경일;조규섭;김경택
    • 한국항행학회논문지
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    • 제28권4호
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    • pp.532-537
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    • 2024
  • 본 연구에서는 항공기 및 고속전철 등 대형 수송기기의 제동디스크에 적용되는 Ni-Cr-Mo-V계 및 Ni-Cr-Mo계 저합금강의 합금 성분 변화에 따른 마모 특성을 평가하였다. 경도시험 결과, C-Mo-V강의 경도는 39.4±0.9HRc로 가장 높았고, Ni-Cr-Mo강이 32.4±0.6HRc로 가장 낮았다. 마찰계수는 수직하중이 증가함에 따라 감소하는 경향을 보였으며, 수직하중 1 N에서 Ni-Cr-Mo강의 마찰계수가 0.842, 수직하중 5 N에서 Mn-Cr-V강이 0.696으로 가장 높았다. Ni-Cr-Mo강은 수직하중 1 N에서 마모흔의 폭 711 ㎛, 깊이 8.24 ㎛, 마모량 11 mg, 수직하중 5 N에서 폭 1,017 ㎛, 깊이 19.17 ㎛, 마모량 17 mg으로 가장 큰 마모흔의 폭, 깊이 및 마모량을 보여주었다. 마모기구 분석 결과, 모든 시편에서 패임, 박리 및 응착이 관찰되었고, Ni-Cr-Mo강에서 소성변형이 더 우세하게 관찰되었다.

고강도-신장플랜지성 열연강의 미세조직 및 기계적 성질 (Microstructure and Mechanical Properties of High Strength and Stretch-Flangeability Hot-Rolled Steels)

  • 천은준;이주승;도형협;김성주;박용호;강남현
    • 한국재료학회지
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    • 제22권1호
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    • pp.16-23
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    • 2012
  • Research into the development of high strength (1 GPa) and superior formability, such as total elongation (10%), and stretch-flangeability (50%) in hot-rolled steel was conducted with a thermomechanically controlled hot-rolling process. To improve the overall mechanical properties simultaneously, low-carbon steel using precipitation hardening of Ti-Nb-V multimicroalloying elements was employed. And, ideal microstructural characteristics for the realization of balanced mechanical properties were determined using SEM, EBSD, and TEM analyses. The developed steel, 0.06C-2.0Mn-0.5Cr-0.2(Ti + Nb + V), consisted of ferrite as the matrix phase and second phase of granular bainite with fine carbides (20-50 nm) in both phases. The significant factor of the microstructural characteristics that affect stretch-flangeability was found to be the microstructural homogeneity. The microstructural homogeneity, manifest in such characteristics as low localization of plastic strain and internally stored energy, was identified by grain average misorientation method, analyzed by electron backscattered diffraction (EBSD) and hardness deviation between the phases. In summar, a hot-rolled steel having a composition 0.06C-2.0Mn-0.5Cr-0.2(Ti + Nb + V) demonstrated a tensile strength of 998 MPa, a total elongation of 19%, and a hole expansion ratio of 65%. The most important factors to satisfy the mechanical property were the presence of fine carbides and the microstructural homogeneity, which provided low hardness deviation between the phases.

역변태에 의한 냉연 TRIP강의 제조기술 (Manufacturing of Cold-rolled TRIP Steel by Reversion Process)

  • 진광근;정진환;이규영
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 1999년도 제3회 압연심포지엄 논문집 압연기술의 미래개척 (Exploitation of Future Rolling Technologies)
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    • pp.356-365
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    • 1999
  • The present study is aimed at developing the TRIP(transformation induced plasticity) aided high strength low carbon steel using reversion process. An excellent combination of elongation over 40% and tensile strength abut 100kgf/$\textrm{mm}^2$ achieved in processing of 0.15C-0.5 Si-6Mn steel by slow heating to intercritial temperature region and accelerated cooling into room temperature. This good combination is caused by TRIP phenomena of retained austenite in steels during deformation. The stability of retained austenite is very important for the good ductility and it depends on the diffusion of carbon and manganeses during heat treatment. The accelerated cooling after holding at annealing temperature retards the formation of pearlite and provides the carbon enrichment in retained austenite in steel, resulting in the increase in elongation of the cold-rolled TRIP steel. On the other hand, heat treating the steel at 600$^{\circ}C$ for 5 hour before cold rolling increases elongation but reduces the amount of retained austenite after reversion processing. It is accounted that the heat treating is effective for the increase in the stability of retained austenite.

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플랜트 엔지니어링을 위한 BCC-Fe 기반 저합금강의 기계적 및 열팽창 특성 합금 효과: Ab Initio 계산 (Alloying Effects of BCC-Fe Based Low-Alloy Steel on Mechanical and Thermal Expansion Properties for a Plant Engineering: Ab Initio Calculation)

  • 김명재;곽종욱;김지웅;김경남
    • 한국재료학회지
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    • 제33권10호
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    • pp.422-429
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    • 2023
  • High-strength low-alloy steel is one of the widely used materials in onshore and offshore plant engineering. We investigated the alloying effect of solute atoms in α-Fe based alloy using ab initio calculations. Empirical equations were used to establish the effect of alloying on the Vicker's hardness, screw energy coefficient, and edge dislocation energy coefficient of the steel. Screw and edge energy coefficients were improved by the addition of V and Cr solute atoms. In addition, the addition of trace quantities of V, Cr, and Mn enhanced abrasion resistance. Solute atoms and contents with excellent mechanical properties were selected and their thermal conductivity and thermal expansion behavior were investigated. The addition of Cr atom is expected to form alloys with low thermal conductivity and thermal expansion coefficient. This study provides a better understanding of the state-of-the-art research in low-alloy steel and can be used to guide researchers to explore and develop α-Fe based alloys with improved properties, that can be fabricated in smart and cost-effective manners.

Transmission Electron Microscopy Observation of Twin Variant Selection in Austenitic Twinning-Induced Plasticity Steel

  • Han, Jung-Hoon;Oh, Juhyun;Yoon, Sangmoon;Kim, Yanghoo;Han, Heung Nam;Kim, Miyoung
    • Applied Microscopy
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    • 제46권4호
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    • pp.238-243
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    • 2016
  • Twinning-induced plasticity (TWIP) steels with the austenite structure containing high manganese exhibit both good strength and excellent formability. Such properties originate from crystallographic slip and mechanical twins produced when the austenite structure is under mechanical stress. There are 12 twin systems, referred to as twin variants, when slip is induced. These twin systems include twin planes and twin directions and play an important role in determining strength and ductility of the material by strongly influencing texture formation of the austenite structure. In the present study, twins produced in a high-Mn TWIP steel as a result of uniaxial tension were observed using a transmission electron microscope; a comparative analysis was performed through interaction energy calculations. Electron diffraction was used to determine the twin system with respect to the uniaxial tension direction in each grain. Both the Schmid factors and interacting energies required for the generation of twins were calculated and subsequently compared with experimental results. This approach demonstrated the possibility of predicting the deformation behavior of the material.