• 제목/요약/키워드: Iron furnace

검색결과 189건 처리시간 0.024초

저 품위 철광석을 사용한 식생용 투수 콘크리트의 중성화 및 제작에 관한 연구 (A Study on Chemical Neutralization and Production of Planting Porous Concrete Using Low-Grade Iron Ore)

  • 은희창;이민수;배충열
    • 산업기술연구
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    • 제27권A호
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    • pp.31-38
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    • 2007
  • Recently produced concrete has a tendency to overcome environmental defects. Porous and planting Eco-concrete requires the neutralization process and enough void in concrete to contain water, to pass air freely, and provides necessary nutrients to vegetation roots. The biological environment in concrete is not suitable for planting because the concrete possesses strong alkali constituent of pH 11-13. This study evaluated the strength and serviceability of concrete as well as the chemical characteristics of concrete mixed by low-grade iron ore left in the abandoned mine and treated by Ammonium monohydrogen phosphate, $(NH_4)_2HPO_4$. Test variables include two kinds of coarse aggregates such as crushed stones and low-grade iron ore, the duration time and the period for neutralization treatment by Ammonium monohydrogen phosphate, $(NH_4)_2HPO_4$, and the proportion ratio of cement, blast furnace slag and silica fume.

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Studies in Iron Manufacture Technology through Analysis of Iron Artifact in Han River Basin during the Proto-Three Kingdoms

  • Kim, Soo-Ki
    • Conservation and Restoration of Cultural Heritage
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    • 제1권1호
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    • pp.9-22
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    • 2012
  • The most widely excavated iron artifacts used as weapons or farm tools from central southern regions of Korea were subjects of non-metallic inclusion analysis through metallographic examination, microhardness measurement, and scanning electron microscopy with energy dispersive X-ray spectroscopy. Through metallographic interpretation and study of the analyzed results, the steel manufacturing and iron smelting using heat processing in the iron artifacts excavated from the central southern region of the ancient Korean peninsula was studied, and the analysis of the non-metallic inclusions mixed within the metallic structures was interpreted as the ternary phase diagram of the oxide to infer the type of iron ores for the iron products and the temperature of the furnace used to smelt them. Most of the ancient forged iron artifacts showed $Al_2O_3/SiO_2$ with high $SiO_2$ contents and relatively low $Al_2O_3$ contents for iron ore, indicating t hat for $Al_2O_3$ below 5%, it is presumed that magnetic iron ores were reduced to bloom iron (sponge iron) with direct-reduction process for production. The temperature for extraction of wustite for $Al_2O_3$ below 1% was found to be $1,020{\sim}1,050^{\circ}C$. Considering the oxide ternary constitutional diagram of glassy inclusions, the steel-manufacturing temperature was presumed to have been near $1,150{\sim}1,280^{\circ}C$ in most cases, and minimum melting temperature of casting iron part excavated in Daeseong-ri. Gyeonggi was near $1,400^{\circ}C$, and it is thought that hypoeutectic cast iron of about 2.3% carbon was casted and fragility of cast iron was improved by decarburizing in solid state.

鑄鐵에 있어서의 黑鉛球狀化機構에 關한 硏究 (1) (Study on the Spheroidizing Mechanism of Graphite in Cast iron (part 1))

  • 최형섭;장지영
    • 대한화학회지
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    • 제7권1호
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    • pp.51-57
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    • 1963
  • It is well known that the graphite flakes become spherulite, when a suitable amount of nodulizing element, such as cerium or magnesium, is added to the cast iron. The change of graphite from flake to nodular shape improves not only the tensile strength but the ductility as well. However, the mechanism of spheroidization of graphite in cast iron has not yet been clearly understood, and various theories proposed by a number of investigators were such that it may be due to the special nucleation effect, prevention of flake formation by the adsorption of magnesium vapour on the graphite surface or file surface free energy difference between plain graphite and magnesium-adsorbed graphite. Regardless of the speculations of spheroidizing mechanism of the graphite in the cast iron, the final phenomenon comes to the conclusion that it may be due to the lack of wettability between graphite and iron matrix. In order to collaborate this fact through an experimental method, the authors have constructed a vacuum arc furnace for the wettability measurement as its first step. Our study and experiments were then directed to the comparison of the wettability between iron and graphite on the two cases (namely, the one where magnesium was preliminarily coated on the graphite surface and the other not coated), by means of contact angle measurements. The result was such that a significant difference of the contact angles has been shown between the above two cases. indicating the spheroidization of graphite which might have resulted from the lack of wettability between magnesium-adsorbed graphite and iron matrix.

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Characterization of a Smelting Furnace in Ungyo Site in Wanju, Jeollabuk-do, Through Slag Analysis

  • Lee, Su Jeong;Cho, Nam Chul;Kang, Byoung Sun
    • 보존과학회지
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    • 제35권4호
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    • pp.373-383
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    • 2019
  • We characterized the smelting process and smelting furnace through scanning electron microscopy-energy dispersive spectroscopy, wavelength dispersive X-ray fluorescence, X-ray diffraction, and raman micro-spectroscopy with 13 relics including slags and furnace walls excavated from square-shaped building sites and pits of the Three Kingdoms site at the Ungyo site section I. Our results revealed that the principal components were FeO and SiO2; and CuO, PbO, and ZnO were contained in small quantities. Furthermore, fayalite, magnetite, augite, copper, and cuprite were found. High contents of FeO or SiO2 components seem to have been added to form fayalite to remove gangue in the smelting process. The relatively low content of S detected in the copper prills suggests that roasting was performed well. Cristobalite and mullite, which are minerals that indicate high-temperature found in the furnace wall, show that the smelting temperature was higher than 1,250℃. The findings of this study show a high possibility that the Wanju Ungyo site is smelting remains of copper ores, which are nonferrous metals, rather than iron. Various smelting byproducts excavated in this area in the future will help us better understand the copper smelting process that may have been performed since ancient times.

알칼리 자극제를 사용한 고로슬래그 경화체의 반응 및 강도특성 (Strength and Reaction Characteristic of the Hardened Blast Furnace Slag Paste using the Alkali Accelerator)

  • 김윤미;박선규;이상수;송하영
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2013년도 춘계 학술논문 발표대회
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    • pp.313-314
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    • 2013
  • The study carried out the experiment with presenting as the fundamental data for developing non-cement by using red mud generated in blast furnace slag and bauxite generated in the process of manufacturing the pig iron process of manufacturing Al(OH)3/Al2O from as the binding material using the accelerator of NaOH. After fixing the thing and the NaOH adding the blast furnace slag and NaOH 10, 20, 30 (%) with 10, 20, 30 (%) substituted the red mud in the blast furnace slag and the experimental method carried out the experiment. And it measured the flexural strength and compressive strength and took a photograph EDS analysis and SEM. Consequently, the compressive strength was improved as the addition rate of the NaOH was high and the compressive strength according to the replacement ratio of the red mud was degraded. This is determined that film of the blast furnace slag is destroyed and it makes the hydration reaction condition and the intensity is revealed.

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철스크랩의 리사이클링 (Recycling of Ferrous Scraps)

  • 손호상
    • 자원리싸이클링
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    • 제29권1호
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    • pp.3-16
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    • 2020
  • 본 논문에서는 철강제조 프로세스, 철스크랩의 전처리와 미량 원소, 그리고 철강공정에서 발생하는 분진의 리사이클링 기술에 대해 고찰하였다. 철강은 인류가 가장 많이 사용하는 범용 금속으로, 2018년 기준 전세계 조강 생산량은 18억 톤을 초과하였다. 철을 리사이클링하면 철광석으로부터 환원하여 철강재를 얻는 것에 비하여 CO2 발생량은 약 42 % 수준이며, 에너지는 약 60 %를 절약할 수 있다. 철스크랩은 스크랩을 주원료 사용하는 전기로제강과 철광석을 주원료로 사용하는 전로 제강공정에서 리사이클링되고 있다. 철스크랩을 주원료로 사용하는 전기로 제강법은 스크랩을 예열하는 장치를 부가한 에너지 절약형으로 바뀌어 가고 있다. 철강 제조공정에서 발생하는 분진은 제철소 내에서 다양한 방법으로 리사이클링하여 철분과 아연 등을 회수하고 있다.

전기로 제강분진에 함유된 금속원소의 휘발거동에 대한 속도론적 연구 (A Study on Kinetic of Volatilization Behavior of Metal Elements Contained in Electric Arc Furnace Dust)

  • 윤재홍;윤치현;이명원
    • 자원리싸이클링
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    • 제26권3호
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    • pp.17-25
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    • 2017
  • 전기로 제강분진은 고철을 전기로에서 용해하는 과정에서 발생하는 휘발성분들이 공기 중의 산소와 반응하여 산화물형태로 포집된 미세분말로써 다양한 특성을 가지고 있다. 이러한 전기로 제강분진의 효율적인 자원화를 위해서 반응속도론적 기초실험과 Pilot 규모의 생산실험을 병행하여 실시하였다. 그 결과 전기로 제강분진은 다양한 구성성분과 화합물로 구성되어 있었으며 공통적으로 Cl과 알카리 성분이 다량으로 존재함에 따라 자원화를 위한 실제 조업에 큰 악영향을 미치는 화합물의 형성이 예상된다. 휘발거동은 $1100^{\circ}C$ 영역에서 활발히 진행되고 $1250^{\circ}C$ 영역에서는 용융현상이 나타남을 확인할 수 있었다. 이러한 결과는 Pilot규모의 실증테스트의 결과로 얻은 조산화아연과 환원철의 형성거동에서도 동일한 결과를 얻었다. 이러한 결과는 전기로 제강분진의 자원화 플랜트의 설계 및 조업조건 설정에 유용한 기초자료로 활용이 기대된다.

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.

제철유적 조사연구법 시론 (Proposals on How to Research Iron Manufacture Relics)

  • 김권일
    • 헤리티지:역사와 과학
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    • 제43권3호
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    • pp.144-179
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    • 2010
  • 본고는 1970년대 이래 제철유적에 대한 조사가 꾸준히 증가되었음에도 불구하고 그 조사방법에 대한 연구는 이에 미치지 못하는 상황을 인식하는 데서 비롯되었다. 제철유적은 1990년대에 들어오면서 전국적으로 조사가 급증하였으며, 특히 최근에는 생산유적의 중요성이 부각되면서 더욱 주목받고 있는 유적의 하나이다. 하지만 분묘유적이나 취락, 성곽유적 등에 비해 제철유적의 조사방법에 대한 소개와 연구는 크게 부족하다고 할 수 있다. 그 이유는 제철조업의 프로세스는 매우 복잡하고 다양할 뿐 아니라, 공정의 이해를 위해서는 금속공학적인 기초지식까지 학습해야 하는 어려움이 있기 때문이다. 즉 고고학 조사와 연구에 있어 제철과 관련된 유구 유물의 성격이 이러한 프로세스와 어떠한 상관관계를 가지는지 밝히기가 몹시 어렵다는 이유 때문이다. 이러한 문제를 해결하기 위해 철생산 및 철기제작의 공정과 철재, 철괴 등 관련유물의 금속학적 특징에 대한 이해를 바탕으로, 제철유적 발굴조사의 순서와 방법, 유물의 분류 및 정리방법에 대한 시론을 제시함으로써 정밀한 조사와 심도 있는 분석이 이루어질 수 있도록 하는 것이 본 연구의 목적이다. 본고에서는 제철유적을 조업공정에 따라 채광, 제련, 정련, 단야, 용해, 제강유적의 6가지 유형으로 분류한 후, 사전조사와 지표${\rightarrow}$시굴${\rightarrow}$발굴조사로 이어지는 각 단계별 조사방법에 대해 정리하였다. 또한 가장 대표적인 제철관련유물인 철재의 분류 및 정리에 있어 새로운 방법을 모색해 보았다. 더불어 유적의 성격파악에 필요한 자연과학분석 및 제철로 복원실험의 필요성에 대해서도 언급하였으며, 내용의 구성에서는 사례 제시와 도면 사진자료를 최대한 활용하였다. 본고에서는 다양한 조사연구방법의 응용과 개발에 대해 심도 있게 논의하지는 못하였지만, 유구 유물의 세밀한 관찰을 통해 공정에 따른 다양한 제철유적의 조사연구 방법론 개발이 매우 시급한 과제임을 알 수 있었다. 그리고 유적의 종합적인 성격규명을 위해서는 고고학적 지식뿐만 아니라 자연과학 분야가 다양하게 응용되어야 하며, 더불어 실험고고학의 측면에서도 지속적인 제철로의 복원실험이 필요함을 알 수 있었다.

테르밋 반응을 이용한 페로망간 전기로 분진의 재활용에 관한 연구 (Recovery of manganese compounds from electric arc furnace dust by Aluminothermy Process)

  • 하태영;조영민;박영구;김윤채
    • 한국응용과학기술학회지
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    • 제32권1호
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    • pp.23-30
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    • 2015
  • The properties of dust collected from electric arc furnace of ferro manganese production units was investigated, and also the metallic manganese was recovered from the dust by aluminothermy process. The ferromanganese dust collected from electric arc furnace contained about 15% of manganese oxide ($Mn_3O_4$) and 9% of carbon as the contaminant, and have a 5um of 50% median diameter and irregular particle shape. The carbon contaminant in the dust could be reduced until about 0.1~0.5% level by roasting in the air at a temperature of 600~900C for 60minutes. The recovery of manganese could not be carried out using only ferromanganese dust from electric arc furnace by aluminothermy process, but the ferromanganese which contained manganese of about 92% and iron of about 5% could be obtained from the mixture of ferromanganese dusts from electric arc furnace and converter. The best mixing condition of dust fixed at electric arc furnace dust / converter dust ratio of 1:9 and 2:8, and the mixing rato of 3:7 or more could not separated the metal and slag from the reactant after aluminothermy reaction.