• Title/Summary/Keyword: 제철 슬래그 골재

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The Mechanical Properties of SMA Concrete Mixture Using Steel Slag Aggregate (제철 슬래그 골재를 이용한 SMA 혼합물의 역학적 특성)

  • Kim, Hyeok-Jung;Na, Il-Ho
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.9 no.1
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    • pp.109-116
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    • 2021
  • In order to replace mineral aggregate used as road pavement materials with steel slag aggregate, this present study evaluated mechanical properties of SMA Concrete mixtures using steel slag aggregate as oxidized slag from electric furnace in iron works. The variables of this experiment are the aggregate type of mineral and steel slag and the sieve sized of 10mm and 13mm. The physical properties inclu ding the specific gravity and absorption rate etc. of the slag aggregate mixtu res satisfied the KS standard as asphalt mixtu re. As a resu lt of evalu ating the mechanical properties of the asphalt mixtures, the optimum asphalt content of the slag aggregate mixtures were lower than that of the mineral aggregate mixtures, but other quality standards were all satisfied. In the deformation strength evaluation, the slag aggregate mixtures were measu red slightly higher than that of the mineral aggregate mixtu res, and the dynamic stability test satisfied the 2,000pass/mm standard value in all specimens. And, the moduli of resilient of the slag aggregate mixtures showed an improved value compared with the mineral aggregate mixtures. Therefore, as the resilient rate of the slag aggregate mixtures improved, it is speculated that there will be an effect of improving public performance according to the repeated traffic load of the vehicle.

Properties of Slag Gravel (슬래그 골재의 특성)

  • 서상교;최정호
    • Magazine of the Korea Concrete Institute
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    • v.13 no.1
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    • pp.66-72
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    • 2001
  • 지구 온난화, 천연 자원의 고갈, 처분 장소의 핍박 등 환경문제가 사회적인 문제로 대두되고 있다. 특히 건설분야에서 천연산 골재의 부족은 매우 심각한 상황에 있으며, 이를 해결하기 위해 재생골재의 재활용 등 많은 연구가 이루어져 1999년도에는 아스팔트 콘크리트용 재생골재(KS F 2572), 콘크리트용 재생골재(KS F 2573), 도로기층용 재생골재(KS F 2574)에 대한 규격을 제정함으로써 실용화의 단계에까지 이르고 있다 그러나 제철소의 제강 및 정련 공정상에서 발생하는 철강슬래그를 콘크리트용 골재로서 활용하기 위한 국내의 연구는 몇몇 연구자들에 의해서만 이루어지고 있어 초기 단계에 있다고 할 수 있다. 이에 본고에서는 콘크리트용 천연산 골재의 대체 재료로서 각종 철강슬래그의 적극적인 재활용을 도모하기 위해 최근 슬래그를 골재로서 사용하기 위해서 연구한 결과 및 실례를 수록한 문헌을 조사 검토하여 슬래그 골재의 특성에 대하여 소개하고자 한다.

Physical Properties of Permeable Concrete Using Slag as an Aggregate (슬래그 골재를 사용한 투수성 콘크리트의 물리적 성질)

  • 이용구;김희덕;성휘정;최재진
    • Proceedings of the KAIS Fall Conference
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    • 2001.05a
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    • pp.236-240
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    • 2001
  • 본 연구는 제철소에서 부산물로 생성되는 고로슬래그 및 제강슬래그를 골재의 일부로 대체 사용하고 고성능AE감수제를 적정량 사용하여 고품질의 투수성 콘크리트를 제조하는 것에 관한 것이다. 실험결과 고성능AE감수제와 슬래그를 사용하는 경우 투수계수 0.1cm/sec 이상을 유지하는 상태에서 재령 28일의 압축강도 240kgf/㎠ 정도까지의 비교적 높은 강도의 투수성 콘크리트를 경제적으로 제조할 수 있음이 확인되었다.

An Experimental Study on the Properties of Water Cooled Blast Furnace Slag as a Fine Aggregate for Concrete (콘크리트용 잔골재로서 고로수쇄(高爐水碎)슬래그의 물성(物性)에 대한 실험적(實驗的) 연구(硏究))

  • Moon, Han Young;Choi, Yun Wang
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.12 no.1
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    • pp.107-113
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    • 1992
  • This paper is the part of fundamental study considering whether the unprocessed water cooled blastfurnace slag, by-product of iron works, can be useful for some fine aggregate of mortar and concrete. The acquired results in this study show that the qualities of the water cooled blastfurnace slag produced in the state of raw material in the country in not good for using as a fine aggregate of mortar and concrete. To be used as a fine aggregate of concrete the qualities need to be improved in the process of manufacture.

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Physical Properties of Permeable Concrete Using Slag as an Aggregate (슬래그 골재를 사용한 투수성 콘크리트의 물리적 성질)

  • 최재진;박원태
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.4 no.4
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    • pp.404-408
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    • 2003
  • This paper discusses the physical properties of permeable high quality concrete using blast furnace slag or steel slag as a part of aggregate. In the case of steel slag, aging treatment was adopted to prevent the volume expansion. With high range water reducing agent, the concrete using slag aggregate showed compressive strength up to 24MPa at the age of 28 days and the water permeability of the concrete was over the level of 0.1 m/s in this experiment. Also, there was no expansion problem in the concrete substituted with aged slag as a part of aggregate.

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Study of Polymer Rapid Setting Cement Concrete Using Electric Arc Furnace Oxidizing Slag Aggregate (전기로(電氣爐) 산화(酸化)슬래그 잔골재를 이용한 폴리머 속경성(速硬性) 시멘트 콘크리트 기초물성(基礎物性) 연구(硏究))

  • Jung, Won-Kyong;Gill, Yong-Soo;Kang, Seung-Hee
    • Resources Recycling
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    • v.21 no.1
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    • pp.30-40
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    • 2012
  • Electric arc furnace slag is made in ironworks during steel refining, it is been increasing chemical and physical resistibility using ageing method of unstable state of melting steel slag for using concrete's fine aggregates. Which is been changing stable molecular structure of aggregates, it restrains moving of ion and molecule. In Korea, KS F 4571 has been prepared for using the electric arc furnace oxidizing slag to concrete aggregates(EFS). In this study, Electric arc furnace oxidizing slag is used in the PRCC(Polymer Rapid setting Cement Concrete) which is applied a bridge pavement of rehabilitation, largely. The results showed that the increment of compressive strength development by 10- 20%. The flexural strength of EFS-Con increased greatly as the electric arc furnace oxidizing slag changed. The compressive strength and flexural strength developed enough for opening the overlayed EFS-Con to the traffic after 4 hours of EFS-Con placement. The permeability of EFS-Con was evaluated as negligible due to its very low charge passed. Thus, EFS-Con could be used at repairing or overlaying the concrete at fast-track job sites.

Geotechnical Characterization of Artificial Aggregate made from Recycled Resources of Gwangyang Bay Area as a Drainage Material (광양만권 순환자원으로 제조된 배수재용 인공골재의 지반공학적 특성)

  • Kim, Youngsang;Kim, Wonbong
    • Journal of the Korean GEO-environmental Society
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    • v.14 no.10
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    • pp.49-57
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    • 2013
  • Recently, recycling of the industrial by-products has been an important issue of the Yeosu bay, where large industrial complex is located. Major industrial by-products which are produced from Yeosu industrial complex area are phosphogypsum and flyash, which are about 82% and 10% of the 1.6 million tons industrial by-products. Moreover since the Yeosu industrial complex is located at seaside, phosphogypsum has been pointed as cause of serious environmental contaminant from the regional society. Therefore recycling study can't be delayed anymore. In this paper, artificial aggregate was manufactured by non-sintering process from industrial byproducts - e.g., phosphogypsum and slag - as a geotechnical drainage material. To show the feasibility of the artificial aggregate as a geotechnical drainage material, geotechnical experiments including particle size analysis, permeability test, and large scale direct shear test were carried out. Test results show that the permeability of the artificial aggregates range from $6.94{\times}10^{-1}cm/sec$ to $8.86{\times}10^{-1}cm/sec$, which is much larger value than those are required for the drainage material from the construction specification in Korea, and the friction angle of the artificial aggregate is as large as that of sand in water immersion conditions. From the test results, it was concluded that artificial aggregate made from industrial by-products can be used successfully as a geotechnical drainage material.

Investigation of Sectional Force on Increasing of Dead Load with Bridge Deck Overlay using Electric Arc Furnace Slag Sand (전기로(電氣爐) 산화(酸化)슬래그 잔골재를 이용한 교면포장(橋面鋪裝) 시 단위질량(單位質量) 증대(增大)에 따른 슬래브 단면력(斷面力) 검토(檢討))

  • Jung, Won-Kyong;Chon, Beom Jun;Gil, Yong-Soo
    • Resources Recycling
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    • v.22 no.2
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    • pp.62-70
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    • 2013
  • Electric arc furnace slag is made in ironworks during steel refining, it is been increasing chemical and physical resistibility using ageing method of unstable state of melting steel slag for using concrete's fine aggregates. Which is been changing stable molecular structure of aggregates, it restrains moving of ion and molecule. In Korea, KS F 4571 has been prepared for using the electric arc furnace slag to concrete aggregates. In this study, Electric arc furnace slag is used in the PMC(Polymer Modified Concrete) which is applied a bridge pavement of rehabilitation, largely. In that case, this study evaluates the structural safety about increasing the specific weight. The 4-type bridges(RC slab bridge, RC rigid-frame bridge, PSC Beam bridge, Steel box girder bridge) pavement's increasing the total dead load is in 1 ~ 2%. Design moments in a load combination are increased less then 2%. safety factor is decreased less than 3%. Therefore, the structural safety has no problem for applying the electric arc furnace slag within PMC in bridge.

Long-Term Performance Evaluation on the Recycled Asphalt Concrete Using the Steel Slag and Reclaimed Asphalt Pavement Aggregates (제강 슬래그 및 순환골재를 사용한 순환 아스팔트 혼합물의 장기 공용성 평가)

  • Park, Kyung-Won;Jang, Dong-Bok;Lee, Jong-Min;Kang, Byung-Hwa;Kim, Hyung-Bae
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.9 no.4
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    • pp.633-641
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    • 2021
  • The study performed long-term performacne evaluation on the hot mix asphalt using the steel slag aggregates and Reclaimed Asphalt Pavement (RAP). The laboratory comparative evaluation was conducted between conventional Hot Mix Asphalt (HMA) which is entitled WC-2 and HMA containing steel slag and RAP which is entitled ES WC-2(R). Dynamic stability test, dynamic modulus test, and fatigue crack test were conducted during the comparative evaluation process. The dynamic stability test result showed that ES WC-2(R) was 140% higher than WC-2. It is noted that ES WC-2(R) showed no inflection point whereas WC-2 showed inflection point during the dynamic stability test which implies ES WC-2(R) has the higher moisture susceptability than WC-2. The dynamic modulus of ES WC-2(R) were 342.3%, 486.7%, and 350.0% higher than WC-2 at medium temperature of 21℃, low temperature of -10℃, and high temperature of 38℃ respectively. The test result showed that rutting resistance of ES WC-2(R) is higher than WC-2 at all temperature spectrum. The fatigue resistance of ES WC-2(R) were 31.7%, 325.3%, 899.9% higher at low stress level, medium stress level, and high stress level, respectively. The test result showed that ES WC-2(R) is higher than WC-2 at all stress levels. Based on the laboratory comparative evaluation, The in-situ scale Accelerated Pavement Test (APT) was conducted comparing WC-2 and WC-2(R). APT found that the rutting resistance of WC-2(R) was 45% higher than WC-2.