• 제목/요약/키워드: Cement-Mixed Soil

검색결과 115건 처리시간 0.028초

알칼리활성화 슬래그-레드머드 흙포장재의 레드머드 대체율에 따른 기공특성 (Porosity of Alkali-Activated Slag-Red Mud Soil Mixed Pavement of Red Mud Substitution Rate)

  • 강혜주;김병기;김재환;강석표
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2016년도 추계 학술논문 발표대회
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    • pp.91-92
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    • 2016
  • Red mud is an inorganic by-product produced from the mineral processing of alumina from Bauxite ores. the development of alkali-activated slag-red mud cement can be a representative study aimed at recycling the strong alkali of the red mud as a construction material. This study is to investigate the pore characteristics of alkali-activated slag-red mud soil pavement according to the red mud content. The results showed that the porosity of alkali-activated slag-red mud soil pavement increased but the compressive strength of that decreased as the red mud content increased.

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고칼슘 연소재를 이용한 매입말뚝의 주면고정액에 관한 실험적 연구 (An Experimental Study on Filling Material for Bored Pile Using High Calcium Ash)

  • 송상훤;임양현;서세관;조대성
    • 한국지반신소재학회논문집
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    • 제16권4호
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    • pp.13-20
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    • 2017
  • 본 연구에서는 순환 유동층 보일러의 고칼슘 연소재를 활용하여 개발한 새로운 매입말뚝의 주면고정액(ZA-Soil)에 대한 성능을 평가하기 위해 실내시험을 실시하였고, 보통 포틀랜드시멘트와의 비교평가를 실시하였다. 실내시험 결과, 매입말뚝의 고강도 주면고정액(ZA-Soil 1)과 저강도 주면고정액(ZA-Soil 2)의 압축강도는 보통 포틀랜드시멘트 대비 68.0%와 64.6%인 것으로 나타났고, 적절한 유동성과 환경적 안정성을 확보하고 있는 것으로 나타났다. 또한 매입말뚝의 고강도 주면고정액(ZA-Soil 1)을 흙 재료와 혼합한 경우 재령 28일에서의 압축강도가 보통 포틀랜드시멘트를 사용한 경우의 압축강도에 비해 1.10~1.23배 큰 것으로 나타나 강도증진효과가 우수한 것으로 나타났다.

헤어섬유로 보강된 점토흙의 강도 특성 분석 (Analysis of the Strength Characteristics of Hair Fiber Reinforced Caly Soil)

  • 손무락;송화선;이재용
    • 한국지반공학회논문집
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    • 제31권6호
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    • pp.15-25
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    • 2015
  • 본 연구는 연약지반의 강도증진을 목적으로 친환경 헤어섬유를 혼입한 점토흙의 강도 특성을 파악하였다. 본 연구에서는 헤어섬유의 길이 및 혼입율, 시멘트의 첨가량, 양생기간을 변화시키며 헤어섬유 혼입 점토흙의 압축강도 및 인장강도를 조사하였으며, 또한 응력-변형율 특성을 조사하였다. 시험결과, 헤어섬유 혼입점토는 압축 및 인장 모두에서 강도증진을 보였으며, 특히 인장강도에서 보다 큰 효과가 있는 것으로 나타났다. 뿐만 아니라, 헤어섬유 혼입점토가 파괴시까지 더 큰 변위를 허용하는 것으로 나타났다. 이와같은 결과를 토대로 향후 점토지반 강도증진을 위해 친환경 재료인 헤어섬유를 실무적으로 활용해도 될 것으로 판단된다.

지연다짐이 Soil-Cement의 압축강도에 미치는 영향 (The Effect of Delayed Compaction on Unconfined Compressive Strength of Soil-Cement Mixtures)

  • 정일웅;김문기;도덕현
    • 한국농공학회지
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    • 제28권4호
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    • pp.66-76
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    • 1986
  • This study was attempted to investigate the effects of delayed compaction on the unconfined compressive strengh and dry density of Soil-cement mixtures. Soil-cement construction is a time-consuming procedure. Time-delay is known as a detrimental factor to lower the quality of soil-cement layer. A laboratory test was performed using coarse and fine weathered granite soils. The soils were mixed with 7% cement at optimum moisture content and excess moisture content in part. Socondary additives such as lime, gypsum-plaster, flyash and sugar were tried to counteract the detri-mental effect of delayed compaction. The specimens were compacted by Harvard Miniature Compaction Apparatus at 0,1,2,4,6 hors after mixing. Two kinds of compactive efforts(9 kgf and 18 kgf tamper) were applied. The results were summarized as follows: 1.With the increase of time delay, the decrease rate of dry density of the specimen compacted by 9 kgf tamper was steeper than that of the specimen compacted by 18kgf tamper. In the same manner, soil-B had steeper decreasing rate of dry density than soil-A. 2.Based on the results of delayed compaction tests, the dry density and unconfined compressive sterngth were rapidly decreased in the early 2 hours delay, while those were slowly decreased during the time delay of 2 to 6 hours. 3.The dry density and unconfined compressive strength were increased by addition of 3% excess water to the optimum moisture content during the time delay of 2 to 6 hours. 4.Without time delay in compaction, the dry densities of soil-A were increased by adding secondary additives such as lime, gypsum-plaster, flyash and sugar, on the other hand, those of soil-B were decreased except for the case of sugar. 5.The use of secondary additives like lime, gypsum-plaster, flyash and sugar could reduce the decrease of unconfined compressive strength due to delayed compaction. Among them, lime was the most effective. 6.From the above mentioned results, several recommendations could be suggested in order to compensate for losses of unconfined compressive strenght and densit v due to delayed compaction. They are a) to use coarse-grained granite soil rather than fined-grained one, b) to add about 3% excess compaction moisture content, c) to increase compactive effort to a certain degree, and d) to use secondary additives like line gypsum-plaster, flyash, and sugar in proper quantity depending on the soil types.

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A study of the fresh properties of Recycled ready-mixed soil materials (RRMSM)

  • Huang, Wen-Ling;Wang, Her-Yung;Chen, Jheng-Hung
    • Computers and Concrete
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    • 제17권6호
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    • pp.787-799
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    • 2016
  • Climate anomalies in recent years, numerous natural disasters caused by landslides and a large amount of entrained sands and stones in Taiwan have created significant disasters and greater difficulties in subsequent reconstruction. How to respond to these problems efficaciously is an important issue. In this study, the sands and stones were doped with recycled materials (waste LCD glass sand, slag powder), and material was mixed for recycled ready-mixed soil. The study is based on security and economic principles, using flowability test to determine the water-binder ratio (W/B=2.4, 2.6, and 2.8), a fixed soil: sand ratio of 6:4 and a soil: sand: glass ratio of 6:2:2 as fine aggregate. Slag (at concentrations of 0%, 20%, and 40%) replaced the cement. The following tests were conducted: flowability, initial setting time, unit weight, drop-weight and compressive strength. The results show that the slump values are 220 -290 mm, the slump flow values are 460 -1030 mm, and the tube flow values are 240-590 mm, all conforming to the objectives of the design. The initial setting times are 945-1695 min. The unit weight deviations are 0.1-0.6%. The three groups of mixtures conform to the specification, being below 7.6 cm in the drop-weight test. In the compressive strength test, the water-binder ratios for 2.4 are optimal ($13.78-17.84kgf/cm^2$). The results show that Recycled ready-mixed soil materials (RRMSM) possesses excellent flowability. The other properties, applied to backfill engineering, can effectively save costs and are conducive to environmental protection.

헤어섬유로 보강된 모래흙의 인장강도 특성 분석 (Analysis of the Tensile Strength Characteristics of Sand Soil Reinforced by Hair Fiber)

  • 손무락;이재용
    • 한국지반환경공학회 논문집
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    • 제17권2호
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    • pp.23-29
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    • 2016
  • 본 연구는 모래흙의 인장강도 증진에 관한 것으로서 친환경 헤어섬유를 혼입한 모래흙의 인장강도 특성을 파악하였다. 본 연구에서는 헤어섬유의 길이 및 혼입률, 시멘트의 첨가량, 양생기간을 변화시키며 헤어섬유 혼입 모래흙의 인장강도를 조사하였으며, 또한 응력-변형률 특성을 파악하였다. 시험결과, 헤어섬유 혼입 모래흙은 상당한 인장강도 증진을 보였다. 뿐만 아니라, 헤어섬유 혼입 모래흙은 파괴 시 더 큰 변위를 겪을 수 있는 것으로 나타났다. 이와 같은 결과를 토대로 향후 모래흙의 인장강도 증진을 위해 친환경 재료인 헤어섬유를 실무적으로 활용해도 될 것으로 판단된다.

제지회계 지반개량재로 처리된 연약점토의 물리적 특성 (Physical Characteristics of Soft Clay Improved by PFA Stabilization Agent)

  • 김광빈;이용안;김유성
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 가을 학술발표회 논문집
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    • pp.561-568
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    • 2002
  • PFA(Paper Fly Ash) are reclaimed mainly or used in cement industry field as mixture agent in terms of materials recycling. Recently, research for recycling PFA as embankment materials or soil stabilization agent are undergoing in geotechnical engineering field. In this study, physical characteristics of PFA stabilization agent-soil admixtures are examined in change of water content, void ratio, consistency, grain distribution, specific gravity and density. Futhermore, the physical characteristics are compared with unconfined strength as engineering characteristics. Test results showed that unconfined strength and density are increased with increasing of PFA stabilization agent mixed ratio. On the other hand, specific gravity, void ratio and water content are decreased with increasing of PFA stabilization agent mixed ratio. It would be concluded that natural high water content ratio weak soil could be highly improved engineering and physical characteristics with PFA stabilization agent

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가설 토류벽용 SCW의 미경화 현상 (Unhardening Phenomena of SCW constructed in Organic Soil)

  • 김교원;송정락;강기영
    • 지질공학
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    • 제1권1호
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    • pp.11-18
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    • 1991
  • 본 고는 특정 흙에서의 가설 흙막이용 SCW의 미경화현상 원인을 실험적으로 규명하며 성공적으로 현장 시공한 사례를 소개하고자 한다. 시험은 현장 흙을 채취하여 현장 배합비와 변경된 배합비 및 특정약액의 추가에 따른 SCW의 강도특성 변화를 실내 측정하였다. 그 결과 SCW 미경화 현상의 원인은 현장의 유기질토에 기인된 것으로 나타났으며, 이에 대한 대책으로 염화칼슘 2% 첨가시 가장 효과적인 것으로 나타났다. 그러나 염화칼슘의 배합비르 4%, 6%로 증가시킨 경우에는 오히려 강도가 저하되는 특이한 현상을 나타내었다. 또한 pH가 13이 되도록 NaOH를 첨가한 경우에는 오히려 강도가 저하하였고, NaSiO$_2$를 첨가한 경우는 조기 강도는 어느 정도 발현된 반면, 장기 강도는 감소되는 현상을 보였다.

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Mechanical behaviour of waste powdered tiles and Portland cement treated soft clay

  • Al-Bared, Mohammed A.M.;Harahap, Indra S.H.;Marto, Aminaton;Abad, Seyed Vahid Alavi Nezhad Khalil;Mustaffa, Zahiraniza;Ali, Montasir O.A.
    • Geomechanics and Engineering
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    • 제19권1호
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    • pp.37-47
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    • 2019
  • The main objective of this study is to evaluate and compare the efficiency of ordinary Portland cement (OPC) in enhancing the unconfined compressive strength of soft soil alone and soft soil mixed with recycled tiles. The recycled tiles have been used to treat soft soil in a previous research by Al-Bared et al. (2019) and the results showed significant improvement, but the improved strength value was for samples treated with low cement content (2%). Hence, OPC is added alone in this research in various proportions and together with the optimum value of recycled tiles in order to investigate the improvement in the strength. The results of the compaction tests of the soft soil treated with recycled tiles and 2, 4, and 6% OPC revealed an increment in the maximum dry density and a decrement in the optimum moisture content. The optimum value of OPC was found to be 6%, at which the strength was the highest for both samples treated with OPC alone and samples treated with OPC and 20% recycled tiles. Under similar curing time, the strength of samples treated with recycled tiles and OPC was higher than the treated soil with the same percentage of OPC alone. The stress-strain curves showed ductile plastic behaviour for the untreated soft clay and brittle behaviour for almost all treated samples with OPC alone and OPC with recycled tiles. The microstructural tests indicated the formation of new cementitious products that were responsible for the improvement of the strength, such as calcium aluminium silicate hydrate. This research promotes recycled tiles as a green stabiliser for soil stabilisation capable of reducing the amount of OPC required for ground improvement. The replacement of OPC with recycled tiles resulted in higher strength compared to the control mix and this achievement may results in reducing both OPC in soil stabilisation and the disposal of recycled tiles into landfills.

부산 고결점토의 변형률 의존적 동적거동특성에 관한 연구 (Strain-dependent dynamic properties of cemented Busan clay)

  • 김아람;장일한;조계춘;심성현;강연익
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 추계 학술발표회 2차
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    • pp.61-67
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    • 2010
  • Thick soft clay deposits which are generally located at the west and south coast of the Korean peninsula have complicated characteristics according to their orientation and formation history. Thus, several geotechnical problems could possibly occur when those soft clay deposits are used as foundations for marine structures. Deep cement mixing (DCM) method is one of the most widely used soft soil improvement method for various marine structures, nowadays. DCM method injects binders such as cement into the soft ground directly and mixes with the in-situ soil to improve the strength and other geotechnical properties sufficiently. However, the natural impacts induced by dynamic motions such as ocean waves, wind, typhoon, and tusnami give significant influences on the stability of marine structures and their underlaying foundations. Thus, the dynamic properties become important design criteria to insure the seismic stability of marine structures. In this study, the dynamic behavior of cemented Busan clay is evaluated. Laboratory unconfined compression test and resonant column test are performed on natural in-situ soil and cement mixed specimens to confirm the strength and strain-dependent dynamic behavior variation induced by cement mixing treatment. Results show that the unconfined compressive strength and shear modulus increase with curing time and cement content increment. Finally, the optimized cement mixing ratio for sufficient dynamic stability is obtained through this study. The results of this study are expected to be widely used to improve the reliability of seismic design for marine structures.

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