• 제목/요약/키워드: Mixed sand

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건조수축에 따른 균열 억제를 위한 규사 혼입 CLC의 특성 (Properties of CLC using Silica to Suppress Cracking due to Drying Shrinkage)

  • 이창우;이상수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2021년도 가을 학술논문 발표대회
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    • pp.125-126
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    • 2021
  • In order to improve the housing culture, construction changes for the utilization of diverse and multifunctional spaces are appearing in response to the increasing diverse needs of consumers. Cellular Light-weight Concrete (CLC) is being developed for use in fire-resistant heat-insulating walls and non-bearing walls. However, manufacturing non-uniformity has become a problem as a drawback due to the use of foamed bubbles and normal temperature curing, and additional research is required. Therefore, in order to suppress cracks due to drying shrinkage, silica sand is mixed with CLC to try to understand its characteristics. In the experiment, the compressive strength from 7 to 28 days of age was measured via a constant temperature and humidity chamber, and the drying shrinkage was analyzed according to each condition using a strain gauge. The compressive strength of matrix tends to decrease as the substitution rate of silica sand increases. This is judged by the result derived from the fact that the specific surface area of silica sand is smaller than that of slag. Based on KS F 2701 (ALC block), the compressive strength of 0.6 products is 4.9 MPa or more as a guide, so the maximum replacement rate of silica sand that satisfies this can be seen at 60%. Looking at the change in drying shrinkage for just 7 days, the shrinkage due to temperature change and drying is 0.7 mm, and the possibility of cracking due to shrinkage can be seen, and it seems that continuous improvement and supplementation are needed in the future.

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Influence of grain size ratio and silt content on the liquefaction potentials of silty sands

  • Sonmezer, Yetis Bulent;Kayabali, Kamil;Beyaz, Turgay;Fener, Mustafa
    • Geomechanics and Engineering
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    • 제31권2호
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    • pp.167-181
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    • 2022
  • Soil liquefaction has been one of the most important concerns in geotechnical earthquake engineering in recent years, due to its damages to structures and its destructive effects. The cyclic liquefaction of silty sands, in particular, remains of great interest for both research and application. Although many factors are known that affect the liquefaction resistance of sands, the effect of fine grain content is perhaps one of the most studied and still controversial. In this study, 48 deformation-controlled cyclic simple shear tests were performed on BS and CS silt samples mixed with 5%, 15% and 30% by weight of Krk085, Krk042 and Krk025 sands in constant-volume conditions to determine the liquefaction potential of silty sands. The tests were carried out at 30% and 50% relative density and under 100 kPa effective stress. The results revealed that the liquefaction potential of silty sand increases with increasing average particle size ratio (D50sand / d50silt) of the mixture for a fixed silt content. Furthermore, for identical base sand, the liquefaction potentials of coarse grained sands increase with increasing silt content, while the respective potentials of fine grained sands generally decrease. However, this situation may vary depending on the silt grain structure and is affected by the nature of the fine grains. In addition, the variation of the void ratio interval was shown to provide a good intuition in determining the liquefaction potentials of silty sands, while the intergranular void ratio alone does not constitute a criterion for determining the liquefaction potentials of silty sands.

Cyclone separator의 형상에 따른 미세플라스틱 입자 거동 수치해석 연구 (Numerical Analysis Study on Micro-plastic Particle behavior According to the Shape of Cyclone Separator)

  • 강인선;서원준;유동호;김영식;김형철;임석연
    • Tribology and Lubricants
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    • 제40권2호
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    • pp.61-66
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    • 2024
  • Micro-plastics are synthetic high-differentiation chemicals of less than 5mm in size, and are deposited not only on the sea surface but also on the coast. If these micro-plastics are not properly separated from the sand, they can threaten marine ecosystems. Thus, in the present study, we aimed to apply cyclone separator to the micro-plastic retrieval in order to predict the movement of particles according to the formation of the cyclone separator by applying the centrifugal force of the particle in accordance with the rotational movement of the air. The cyclone separator has three shapes, the first one is a typical interconnected cyclone separator. The second is the horn form, except for the cylinder in a regular cyclone separator, and the third is a form that increases the horn's height twice in the second. The numerical analysis simulation of the Cyclone separator used the Fluent software package. The output speed of the Cyclone separator was 5 to 13m/s at 1m/s intervals. The simulated particles include sand, Styrofoam, PET, PP, and PU. Sand particles are assigned a fixed diameter of 2mm, while other particles have a diameter of 3mm. As a result of the analysis, the first form was not separated from plastic. The Styrofoam separation efficiency in the second showed its highest efficiency at 72.7% at 7m/s, and the efficiency decreased after 12m/s as the sand particles were mixed into the plastic attachment location. In the third form, the separation efficiency of Styrofoam at 12m/s was highest at 67.9%.

모래-세립분 혼합토에 대한 반복전단강도특성 평가 (Evaluation of Cyclic Shear Strength Characteristics of Sands Containing Fines)

  • 김욱기;김동욱;이준용;김주형
    • 한국지반공학회논문집
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    • 제28권7호
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    • pp.31-40
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    • 2012
  • 토질분류법에서 흙은 크게 사질토와 점성토로 분류되며, 실제 설계에서도 이와 같이 분류된 흙 종류에 따라 다른 예측식을 사용하여 흙의 거동을 평가하고 있다. 그러나, 모래-세립분 혼합토는 전형적으로 중간토(intermediate soil or transitional soil)로 구분되어 모래와 점토의 중간적인 성질을 나타내기 때문에, 이러한 혼합토에 대한 거동특성을 평가할 수 있는 기준이 필요하다. 본 논문에서는 입도분포를 조정한 특정 모래에 세 가지 종류의 세립분으로 구성된 다양한 세립분함유율을 갖는 시료를 대상으로 일련의 반복 삼축압축시험을 수행하였다. 모래가 골격을 이루는 간극비(골격간극비)를 고려하여, Silica sand와 세립분(Iwakuni natural clay, Tottori silt, kaolinite)을 다양한 건조 중량비로 혼합하여 그 특성을 파악하였으며, 실험결과로 전환 세립분함유율(threshold fines content)을 넘지 않는 혼합토의 반복전단강도를 세립분 함유율 증가에 따라 평가하였다. 그 결과, 반복 전단응력비는 세립분 함유율 증가에 따라 조밀한 시료에서는 감소, 느슨한 시료에서는 증가하는 결과를 나타냈으며, 혼합토의 반복전단응력비를 등가골격간극비의 개념을 이용하여 평가했다.

수도(水稻)에 대(對)한 합성규산물질(合成珪酸物質)의 효과(效果) (Effect of The Fused Siliceous Materials on Rice Plant)

  • 이윤환;한기학;임선욱
    • Applied Biological Chemistry
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    • 제14권3호
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    • pp.183-189
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    • 1971
  • 규산재료(珪酸材料)인 강사(江砂) 및 석영(石英)과 농용(農用) 소석회(消石灰)의 혼합(混合) 용융물(溶融物)에 대(對)한 규산질(珪酸質) 비료(肥料)로써의 효과(效果)를 구명(究明)코져 유효규산함량(有效珪酸含量)이 낮은 답토괴(畓土壞)에서 수도(水稻)에 대(對)해서 천연(天然) 규회석(珪灰石)을 대조(對照)로 시비처리(施肥處理)하여 시험(試驗)한 결과(結果) 1. 모래용융물(溶融物)이 석영용융물(石英溶融物)에 비(比)하여 N/2 염산가용규산함량(鹽酸可溶珪酸含量)이 높고 2% 구연산 가용규산함량(可溶珪酸含量)은 석영용융물(石英溶融物)이 모래용융물(溶融物)보다 높았다. 2. 벼의 규산흡수량(珪酸吸收量)은 석영용융물(石英溶融物)에서 가장 크고 모래용융물(溶融物)과 규회석(珪灰石)은 거의 같았으며 이용율(利用率)은 천연(天然) 규회석(珪灰石)이 가장 높고 석영용융물구(石英溶融物區)가 모래용융물구(溶融物區)보다 높았다. 3. 정조수량(正租收量)은 규산물질(珪酸物質)의 시용(施用)으로 수량구성요소중(收量構成要素中) 수당입수(穗當粒數), 등숙률(登熟率) 및 천입중(千粒重)의 증가(增加)로 증수(增收)되었으며 공시재료중(供試材料中) 석영용융구(石英溶融區)에서 가장 크게 증수(增收)하였으며 대조구(對照區)${\fallingdotseq}$모래용융물(溶融物) 100kg/10a<천연규회석(天然珪灰石)${\fallingdotseq}$모래용융물(溶融物) 300kg/10a${\fallingdotseq}$석영용융물(石英溶融物) 100kg/10a<모래용융물(溶融物) 500kg/10a${\fallingdotseq}$석영용융물(石英溶融物) 300kg/10a<석영용융물(石英溶融物) 500kg/10a의 순서(順序)이었다.

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인공지반의 토양조성과 토양심도가 중엽형들잔디의 생육에 미치는 영향 (Effects of Soil mixtures and Soil Depths on the Growth of Zoysia japonica for the Artificial Planting Ground)

  • 이은엽;문석기
    • 한국환경복원기술학회지
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    • 제2권2호
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    • pp.24-32
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    • 1999
  • 인공지반의 환경조건에 적합한 토양을 개발하기 위해 토양종류(9종류)와 토심(10cm, 15cm, 20cm - 토양 5종류)을 달리했을 때의 들잔디의 생육상태를 측정한 결과는 다음과 같다. 1. 발아율(발아개체수)은 밭흙에서 가장 저조하고, 공극률과 투수능력이 상대적으로 우수한 버미큘라이트와 모래를 혼합한 토양(VSS, VSS, VS)에서 높게 나타났다. 2. 발병율(발병개체수) 역시 공극률과 투수능력이 상대적으로 불량한 밭흙에서 가장 높고, 버미큘라이트를 주재료로 한 V, VSH 토양에서 낮았는데, 이는 상대적으로 통기성과 투수능력이 양호했기 때문으로 생각된다. 3. 생육상태(초장)는 버미큘라이트+모래+부숙톱밥을 혼합한 VSH, VSS 토양에서 좋았고 버미큘라이트에서 가장 낮았다. 이는 들잔디의 수직 생장효과(초장)가 토양의 물리적성질(통기성, 투수율 등) 외에도 유기질계의 토양개량재에 의해 향상될 수 있음을 의미한다. 4. 피복율은 발병율(발병 개체수)이 높고 발아세가 초기부터 불량했던 밭흙에서 가장 저조했으며, VSH(버미큘라이트20%+모래70%+부숙톱밥10%), VSS(버미큘라이트40%+모래50%+부숙롭밥10%) 토양에서 월등히 높았다. 5. 황변율은 VS(버미큘라이트70%+모래30%) 등 버미큘라이트 혼합토양에서 비교적 높고, SCS, SHS 등 유기질계 토양개량재 혼합율이 높은 토양에서 상대적으로 낮았다. 6. SCS(밭흙50%+훈탄30%+모래20%), SHS(밭흙50%+부숙톱밥30%+모래20%) 혼합토는 인공지반 녹지의 푸른기간 연장에 긍정적인 효과를 주는 것으로 나타났다. 7. 토심에 따른 들잔디의 생육은 대체적으로 토심 10cm보다는 토심 15cm, 20cm에서 양호한 것으로 나타났다. 그러나 이들간의 통계적인 유의차이가 토양종류에 따라 다르게 나타나고 있어 생육상태의 특성이 토심 뿐만 아니라 토양종류에도 영향을 받고 있음이 확인되었다. 특히, 수평생장(피복율)의 측정결과 토심 15cm구와 20cm구간에 별다른 차이가 없었던 점으로 미루어 보아 토양종류에 따라서는 토심 15cm이 생존에 필요한 최소토심만이 아니라 생육상태도 양호했던 것으로 나타났다. 따라서 토양종류에 따라서는 들잔디의 생육에 양호한 토심을 줄여줄 수 있는 것으로 판단된다. 7. 토심에 따른 들잔디의 생육은 대체적으로 토심 10cm보다는 토심 15cm, 20cm에서 양호한 것으로 나타났다. 특히, 발아율(발아개체수), 수평생장(피복율), 황변율의 측정결과 토심 15cm구와 20cm구간에 별다른 차이가 없었던 점으로 미루어 보아 토양구성에 따라서는 토심 15cm가 생존에 필요한 최소토심만이 아니라 생육상태도 양호할 것으로 판단된다. 8. 본 연구결과는 현재까지 실시된 토양분석과 단기간의 들잔디의 생육결과이므로 인공지반의 토양구성과 들잔디의 생육관계를 규명하기 위한 연구가 지속되어야 할 것이다.

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仁川 近海 島嶼地域의 海岸植物 群落에 따른 細胞性 粘菌의 出現과 分布 (Occurrence and Distribution of Cellular Slime Molds in Relation to the Coastal Plant Communities of Islands near Inch`on)

  • Hong, Jeong-Soo;Nam-Kee Chang
    • The Korean Journal of Ecology
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    • 제14권4호
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    • pp.457-467
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    • 1991
  • Occurrence and distribution of the celluar slime molds in relation to the coastal plant communities of svven islands near inch'on wereinvestigated. as a results, total seven species were isolated from the soils of the coastal plant communities. These are dictyostelium mucoroides, polysphodylium pallidum, dictystelium polycephalum. d. mucoroides was the most commonly found in the coastal plant communities investigated, and was dominant pecularly in the coastal mixed forests, the coastal broad-leaved forests and salt marshes. In the coastal coniferous forest and the coastal dune sand plants, hoeever, p. violaceum was the dominant species. species diversity was relatively was relatively high in the coastal coniferous ferests and the coastal mixed forests. However, agerage number of species isolated from all plant communities was very low,2.8.

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복합오염물질제거를 위한 현장반응층 이용에 관한 연구

  • 조현희;박재우
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 추계학술발표회
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    • pp.168-171
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    • 2003
  • This research was conducted to assess the performance of the mixed reactive materials with sand, iron filings, and HDTMA-bentonite for trichloroethylene (TCE) and chromate removal under controlled groundwater flow conditions. TCE and chromate removal rates with the mixtures of iron filing/HDTMA-bentonite were highest among four columns due to reduction by iron filings and sorption by HDTMA-bentonite. The greater capacity of the mixed iron filing/HDTMA-bentonite compared HDTMA-bentonite was due to an enhanced chromate reduction in addition to chromate sorption. The presence of chromate caused greater inhibition of TCE removal in the column with iron filings, while the presence of TCE caused less inhibition of TCE. Also, nitrate caused the decrease in TCE removal relative to chloride. Nitrate ions may also significantly affect TCE reduction rates by competing for electrons with the chlorinated compounds. The anion and co-existed contaminants competing effects should be considered when designed permeable reactive barriers (PRBs) composed of zero valent iron for field applications to remediate TCE and chromate.

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SHS법으로 제조한 SiC분말 및 소결체의 특성 (Properties of SiC Powders Prepared by SHS Method and Its Sintered Bodies)

  • 김흥원
    • 한국분말재료학회지
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    • 제1권2호
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    • pp.135-144
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    • 1994
  • Silicon carbide powder was prepared from mixtures of Sangdong silica sand and carbon black by SHS (Self propagating High temperature Synthesis) method which utilizes magnesiothermic reduction of silica. In the powder preparation process, the reacted powder was leached by chloric acid to remove the magnesium oxide and was subsequently roasted to remove free carbon. The impurities were mostly eliminated by hot acid treatment. The resultant SiC powder showed the mean particle size of 0.22 ${\mu}{\textrm}{m}$ and the specific surface area of $66.55 m^2/g$. The SiC powder was mixed with 1 wt% of boron and of carbon to increase densification rate. The mixed powder was pressed and sintered pressurelessly at $2100^{\circ}C$ for 30 min in argon gas. The sintered body showed the hardness of $2550 kg{\cdot}f/mm^2$ and the fracture toughness, KIC of $3.47 MN/m^{3/2}$.

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