• 제목/요약/키워드: Iron-making

검색결과 217건 처리시간 0.019초

Scientific Analysis of Iron Making By-Products Excavated from Gogi-ri, Namwon, Korea

  • Bae, Chae Rin;Kwon, In Cheol;Cho, Nam Chul
    • 보존과학회지
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    • 제37권1호
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    • pp.34-42
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    • 2021
  • This study analyzes six slags excavated from the iron making site in Gogi-ri, Namwon, Korea to understand the characteristics of the ruins, and to confirm the iron making process performed at the time. The chemical components of the iron making by-products from the Gogi-ri site were analyzed, and the findings indicate total Fe contents between 23.24% and 37.56%, which are lower than the typical total Fe content found in ancient iron making processes. The deoxidation agent contents of the slags ranged from 43.88% to 58.13%, which are higher than the typical deoxidation agent content of ancient iron making processes. The high content suggests smooth separation between iron and slags, and TiO2 detected from the site suggests the use of materials with high titanium content in the iron making in the region. As for the microstructures of the slags, some slags have long pillar-shaped fayalites, while others have pillar-shaped wüstite along with ulvöspinel. Slags from the forging furnace show hammer scales created by both the earlier stages and later stages of forging work. The findings suggest that the iron making site in Gogi-ri, Namwon, Korea used to be an iron making facility where a full range of iron making process was carried out ranging from smelting to forging, and the ironmakers used a wide array of technologies to manufacture iron products.

Investigating the Iron-Making Process through the Scientific Analysis of By-products Obtained during Iron-Making from Songdu-ri Site in Jincheon, Korea

  • Jung, Da Yeon;Cho, Nam Chul
    • 보존과학회지
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    • 제38권1호
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    • pp.33-44
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    • 2022
  • The study, iron-making process was examined through the scientific analysis of six by-products that were obtained during iron making at the Songdu-ri site in Jincheon. The total Fe content of the slags excavated from the Songdu-ri site was 36.29-54.61 wt%, whereas the deoxidation agent was 26.48-49.08 wt%. The compound analysis result indicated that fayalite and wüstite are the main compounds in slag. Furthermore, the microstructure analysis result confirmed the presence of fayalite and wüstite in the slag. It can be inferred from the flat shape in a bright matrix structure of the hammer scales that forging was performed in the latter stage. The Raman micro-spectroscopy results confirmed that the surface was hematite (Fe2O4), middle layer was magnetite (Fe3O4), and inner layer was wüstite (FeO). The presence of smelting and smithing slags, spheroid hammer scales, and flake hammer scales suggests that at the Songdu-ri site, iron-making process is carried out by division of labor into producing iron bloom through direct smelting, refining and forge welding, and ingot production.

Neutron imaging for metallurgical characteristics of iron products manufactured with ancient Korean iron making techniques

  • Cho, Sungmo;Kim, Jongyul;Kim, TaeJoo;Sato, Hirotaka;Huh, Ilkwon;Cho, Namchul
    • Nuclear Engineering and Technology
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    • 제53권5호
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    • pp.1619-1625
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    • 2021
  • This paper demonstrates the possible nondestructive analysis of iron artifacts' metallurgical characteristics using neutron imaging. Ancient kingdoms of the Korean Peninsula used a direct smelting process for ore smelting and iron bloom production; however, the use of iron blooms was difficult because of their low strength and purity. For reinforcement, iron ingots were produced through refining and forge welding, which then underwent various processes to create different iron goods. To demonstrate the potential analysis using neutron imaging, while ensuring artifacts' safety, a sand iron ingot (SI-I) produced using ancient traditional iron making techniques and a sand iron knife (SI-K) made of SI-I were selected. SI-I was cut into 9 cm2, whereas the entirety of SI-K was preserved for analysis. SI-I was found to have an average grain size of 3 ㎛, with observed α-Fe (ferrite) and pearlite with a body-centered cubic (BCC) lattice structure. SI-K had a grain size of 1-3 ㎛, α-Ferrite on its backside, and martensite with a body-centered tetragonal (BCT) structure on its blade. Results show that the sample's metallurgical characteristics can be identified through neutron imaging only, without losing any part of the valuable artifacts, indicating applicability to cultural artifacts requiring complete preservation.

유물분석 자료를 통한 백제지역의 제철과 철기 제작기술 연구 (A Study on Iron Manufacturing and Technology through Analysis Reports of Iron artifacts in the Baekje Area)

  • 김수기
    • 보존과학회지
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    • 제30권4호
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    • pp.335-343
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    • 2014
  • 현재까지 분석된 백제지역 출토 철기 유물의 금속미세조직과 비금속개재물 분석 자료들을 한강, 금강, 영산강 유역권으로 분류하여 조업 온도를 추정하고 제강 및 열처리 기술을 지역적 시대별 특성을 조사하였다. 세 지역 모두 시대에 관계없이 고체저온환원으로 괴련철이나 해면철이 주 제철 방법으로 판단된다. 비금속개재물의 산화물 삼원상태도로 재해석한 결과 로내 온도는 $1,100{\sim}1,300^{\circ}C$ 정도에서 조업하였던 것으로 추정된다. 철광석은 자철광석이 주원료이며, $TiO_2$가 높은 것들은 사철을 사용하였던 것으로 보인다. $CaO/SiO_2$의 비율이 0.4 이상인 유물들은 석회질의 융제를 인위적으로 넣었던 것으로 판단된다. 제강은 저탄소강을 단야로에서 숯으로 가열할 때 나오는 CO, $CO_2$ gas로 침탄시키는 고체 침탄강임을 알 수 있었다. 또한 의도적으로 필요 부분의 강도를 높이는 침탄작업과 담금질을 하였던 것으로 보아 3세기에는 백제지역의 철기제작자들은 열처리 기술을 인지하고 있었다.

FASTMET$\circledR$ Process for Steel Mill Waste Recycling

  • Tanaka, Hidetoshi;Harada, Takao;Sugitatsu, Hiroshi
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2001년도 The 6th International Symposium of East Asian Resources Recycling Technology
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    • pp.387-392
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    • 2001
  • Kobe Steel, LTD. and Midrex Technologies Inc. jointly developed the FASTMET$\circledR$ process as a steel mill waste recycle technology in which the DRI product meets BF feed material or BOF/EAF feed material requirements. FASTMET(R) process turns value-less wastes into valuable DRI and sellable zinc oxide, and gives the solution for the steel mill wastes recycling from both economical and environmental viewpoints. During the development of the process, Laboratory, Pilot Plant and Demonstration Plant tests were carried out from 1990 to 1998. The first FASTMET(R) commercial plant began operation in April, 2000 and the second commercial plant started in April, 2001 Both commercial plants have proceeded successfully preying that FASTMET$\circledR$ is a suitable process for recycling steel mill waste and for producing DRI as an iron source.

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여수 봉산동 출토의 사철 쇠똥에 대하여 (Metallography of Iron Slag Excavated from Bongsan-dong, Yeosu City in the Period of the 16th to 19th Century)

  • 최주;김수철;도정만
    • 보존과학회지
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    • 제3권1호
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    • pp.13-18
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    • 1994
  • Chemical analysis and metallographic observations of the iron slag were carried out in an attempt to estimate the old iron-making process. The slag containing $9.3\%\;TiO_2$ without Cu indicates that the ore used for smelting was sand iron, not rock ore. The phases identified in the slag were $ulv\ddot{o}spinel$, magnetite, $w\ddot{u}stite$, fayalite etc. This also supports the fact that the smelted ore was iron sand. The total amount of Fe and slag-making components$(=SiO_2+Al_2O_3+MgO+CaO)$ were $40.7\%\;and\;36.1\%$, respectively. These values were average ones found in the old slags formed in the ancient iron-making process. Assuming that $TiO_2$ in the ore combines with FeO, resulting in the formation of $ulv\ddot{o}spinel$, the estimated temperature of smelting was found to be about $1200^{\circ}C$.

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제선 설비의 열공정 해석 모델링 접근 방법 (Analysis of the Thermal Processes in the Iron-Making Facility - Modeling Approach)

  • 양원;류창국;최상민;최응수;이덕원;허완욱
    • 대한기계학회논문집B
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    • 제28권7호
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    • pp.747-754
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    • 2004
  • Thermo-fluid characteristics in coke oven, sintering machine and blast furnace in iron-making facility are key processes related to the quality and productivity of the pig iron. Solid material in the processes usually forms a bed in a gas flow. For simulation of the processes by mathematical model, the solid beds are idealized to be a continuum and a reacting solid flow in the gas flow. Governing equations in the form of partial differential equations for the solid material can be constructed based on this assumption. Iron ore sintering bed is simulated and limited amount of parametric study have been performed. The results have a good agreement with the experimental results or physical phenomena, which shows the validity and applicability of the model.

고양 벽제 제철 유구 출토 철기의 분석을 통한 제철방법 연구 (A Study on Iron-manufacture Method through Analysis of Ironware excavated from Byeokje, Goyang)

  • 임주연;김수기
    • 보존과학회지
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    • 제28권4호
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    • pp.367-376
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    • 2012
  • 철기 생산 기술은 당시 사회 발전을 가늠하는 척도로서 과거의 제철 방법을 이해하기 위한 철기 유물의 미세조직과 개재물에 대한 다양한 연구가 진행되고 있다. 본 연구에서는 고려시대로 추정되는 고양 벽제 제철 유구에서 일괄로 수습된 철제 유물의 시편을 채취하여 광학현미경과 미세경도시험기, SEM-EDS를 이용하여 미세 조직의 성분분석을 통해 제철과 제련 기술을 추론하여 보았다. 연구결과 철괴는 주철괴와 탄소강 철괴로 분류되었다. 주철괴의 경우 백주철 조직과 인(P)의 함량이 높은 회주철 조직으로 분류되었으며 회주철 내 높은 P의 함량은 석회질 등의 융제가 첨가되며 혼입된 것으로 판단된다. 따라서 주철 조직의 철괴 및 고탄소강 철괴는 제련공정을 거치지 않은 선철들로 추정된다. 또한 철기 제작에는 크게 두가지 방법이 사용된 것으로 판단된다. 첫번째는 주물에 주철을 부어 제작하는 주철괴 제작 방법이며, 두번째는 선철의 제련 공정을 통하여 생산되는 탄소강을 제작하는 방법이다. 특히 탄소강의 고른 강 조직과 적은 양의 MnS 개재물은 현대 제철 조직과 매우 유사한 특징을 지니나 고양 벽제 제철유구에서 수습된 탄소강 내 Mn의 함유에 대하여 판단하기에는 좀 더 많은 연구가 이루어져야 할 것이며, 주철의 제강공정을 통한 고탄소강의 생산 가능성도 염두에 두어야 할 것으로 사료된다.

사철 제련을 통해 생산된 슬래그와 괴련철의 재료과학적 특성 비교 (Material Characteristic of Slags and Iron Bloom Produced by Smelting Process Using Sand Iron)

  • 조성모;조현경;권인철;조남철
    • 보존과학회지
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    • 제34권1호
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    • pp.39-50
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    • 2018
  • 본 연구에서는 전통 제련법을 토대로 사철을 이용해 괴련철 생산을 재현하고 슬래그 및 괴련철을 분석하여 재료학적 특성을 알아보았다. 원료는 고문헌을 토대로 경주사철과 포항사철을 이용했다. WD-XRF 및 XRD 결과 경주사철은 저티탄사철의 Magnetite이며 포항사철은 고티탄사철의 Magnetite와 Ilmenite가 혼합됨을 확인하였다. 슬래그의 XRD 및 미세조직 분석결과 경주사철 슬래그는 Fayalite와 $W{\ddot{u}stite$, 포항사철 슬래그는 Titanomagnetite와 Fayalite가 확인되어 사철의 Ti 함량에 따른 조직의 차이를 확인하였다. 괴련철의 미세조직의 분석결과 경주사철 괴련철은 표면에 공석강에 가까운 탄소함량을 보이는 Pearlite가 우세하며, 내부는 Ferrite와 Pearlite가 혼재된 아공석강이었다. 포항사철 괴련철은 순철에 가까운 Ferrite이었다. 괴련철의 철물화를 위해서는 내부 불순물 제거, 조직을 치밀하게 하는 정련 및 단접이 필요함을 확인하였다. 향후 다양한 조건의 전통 제철 실험을 통해 제철부산물의 성격을 규명하고 제철 유적의 특징을 알아보는데 중요한 데이터로 활용 가능할 것이다.

시스템 엔지니어링 방식에 의한 철강 연속 주조 시스템 설계 (A Systems Engineering Approach to Designing Continuous Casting System in Iron and Steel Making Plant)

  • 신기영;홍대근;윤수철;서석환
    • 시스템엔지니어링학술지
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    • 제10권2호
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    • pp.21-31
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    • 2014
  • Recently, global market competition of iron and steel products is ever increasing due to over-supply from increased number of industries in rapidly growing countries, such as China, Brazil, and Indonesia. To occupy the big market, major industries are trying to develop high quality, high performance steel products via developing a new iron and steel making process. In other words, development of a new and innovative steel plant is a key to cope with the tough situation. Design and development for the life cycle of iron and steel making plant is very much complex and multi-disciplinary. In this paper, Plant Systems Engineering (PSE), a tailored SE process for industrial plant based on ISO/IEC 15288 is used for the design of Continuous Casting Process (CCP) Plant system. The CCP is a crucial process in steel making plant, whose design technology is occupied by the advanced foreign companies. For the sake of increasing engineering capability for the design of CCP, we applied PSE Process for the renovation of the existing CCP Process. Through the study, we were convinced that the applied method can be used for other plant systems, and SE is really the way of thinking, design, and development of modern complex and multi-disciplinary systems where high risk factors are present throughout the whole life cycle.