• 제목/요약/키워드: #4 sieve passing content

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흙의 물리적 성질이 다짐에 미치는 영향 (A Study on the Effect of Some Physical Properties of Soil on the Compaction)

  • 김성교;김문기
    • 한국농공학회지
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    • 제18권3호
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    • pp.4171-4183
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    • 1976
  • This study is to investigate the effect of some physical properties of soil on the compaction. The compaction effect depends upon various factors such as soil type, moisture content, gradation and compaction energy. In this study, with steady compaction energy, the relationships between maximum dry density and moisture content, gradation and consistency were analyzed by soil types. Some results obtained in this study are summarized as follows 1. Generally, the coarser the grain size, the bigger is the maximum dry density and the smaller is the optimum moisture content and its moisture-dry denisty curve is relatively steep. The finner the grain size, the smaller is the max. dry density and the bigger is the opt. moisture content and its moisture-dry density curve is less steep. 2. The relationship between max. dry density (${\gamma}$dmax) and opt. moisture content, void ratio, clay content, percent passing of No. 200 sieve, liquid limit and plastic limit can be represented by the equation ${\gamma}$dmax =ao+a1X(a0>0, a1<0) 3. The relationship between opt. moisture content (Wopt) and clay content, percent passing of No. 200 sieve, liquid limit and plastic limit can be represented by the equation Wopt=a0+a1X(a0>0, al>0). 4. The fact that maximum dry density of the compacted soil is decreased with the increase of the optimum moisture content in any types of soil tested, and the fact that optimum moisture content can be positively correlated with clay content, percent passing of No. 200 sieve, liquid limit and plastic limit of the soil, lead to the conclusion that clay content, percent passing of No. 200 sieve, liquid limit and plastic limit of the soil are direct factors in reduction of the maximum dry density of engineering soil.

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흙의 다짐에 관한 연구(제4보) -흙의 다짐이 -축골조강동 및 투수계수에 미치는 영향- (Study on the Soil Compaction (Part 4) -The Influence of Soil Compadtion on Unconfined Compressive Strength and Coefficient of Permeability-)

  • 강예묵
    • 한국농공학회지
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    • 제12권3호
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    • pp.2003-2012
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    • 1970
  • In order to the influence of grain size distribution on compressive strength and coefficient of permeability, unconfined compression test and permeability test were performed for seventy samples that have various grain-size distributions. Its results are as follows: 1. Maximum unconfined compressive strength appears at the dry side of optimum moisture content. 2. Unconfined compressive strength is proportional to the increase of percent passing of No. 200 sieve. 3. Precent of deformation in failure increases in proportion to the increase of percent passing of No. 200 sieve, and modulus of No. 200 sieve, and modulus of deformation also increases in proportion to percent passing of No. 200 sieve. 4. Unconfined compressive strength increases in proportion to uniformity coefficient, liquid limit and plastic index, but it decreases gradually according to the increase of coefficient of grading and classification area. 5. Maximum dry density decreases according to the increase of void ratio. 6. Coefficient of permeability decreases according to the increase of percent passing of No. 200 sieve, and when percent of No. 200 sieve, and when percent passing of No. 200 enlarged more than 40%, it becomes less than $10^{-6}cm/sec$ which is the limit of coefficient of permeability of core material for earth dam proposed by Lee. 7. Coefficient of permeability increases according to the increase of coefficient of grading, classification area and index of Talbot formula r, but it was rather decrease by the increase of uniformity coefficient. 8. Coefficient of permeability seems to depend on the size and the shape of the flow path which is a series of void to be concerned by the size and the proprton of soil grain, even though void ratios are same.

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흙의 다짐에 관한 연구 (제2 보) -200번체 통과율이 다짐에 미치는 영향- (Study on the Soil Compaction (part II) The Influence of Passing Percentage of No. 200 Sieve on Soil Compaction)

  • 강문묵
    • 한국농공학회지
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    • 제12권1호
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    • pp.1854-1860
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    • 1970
  • Results of this study on the influence of percent passing of No. 200 sieve on soil compaction are as follows; 1. The higher maximum dry density of soil is, the lower optimum moisture content is. Maximum dry density is highest value and optimum moisture content is the lowest value in twocases that percents of No. 200 sieve are 30% in soils of which percents retained on No. 10 sieve are 5% and 10% respectively. 2. Maximum dry density increases according as uniformity coefficient increase. Maximum dry density is the highest when uniformity coefficient is approximately 300 in soil of which maximum diameter is 4.76mm. 3. Maximum dry density has a tendency to become large according as value of Cu Caincrease. Correlation between maximum dry density and $Log_{10}$(CuCa) shows straight line. 4. Maximum dry density increases according as n increase and reaches the peak when n equal 0.35 in condition that the index of talbot formula n is less than 0.35 in soil of which maximum diameter is 4.76mm. 5. Maximum dry density has a tendency to increase according as value of Cg $(Cg=\frac{P_{50}^2}{P_{10}{\times}{P_{200}}$) decrease.

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흙의 다짐에 관한 연구(3) <10번체 잔류량이 다짐에 미치는 영향> (Study on the Soil Compaction (part 3) on Soil Compaction)

  • 강문묵
    • 한국농공학회지
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    • 제12권2호
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    • pp.1927-1936
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    • 1970
  • This is a study on the influence of percent retaining of No. 10 sieve on soil compaction. Reviewing the test values in part 1 and part 2, a relative equation to predict maximum dry density and optimum moisture content was induced. Results of the study are as follow; 1. Maximum dry density increases according as percent retatining of No. 10 sieve increase untill 40%, but it decreases in more than 50%. 2. Maximum dry density has the greatest value at 25%, also it decreases according to increase or decrease at 25% in percent passing of No. 200 sieve. 3. Grain size distribution that Maximum dry density is largest, is 40% in 4.76mm to 2.0mm, 35% in 2.0mm to 0.074mm, 25% in lese than 0.074mm. 4. Correlation betwesn Maximum dry density and optimum moisture content made a curved line. The deviation between maximum dry density to be predicted from optimum moisture content and test values, is less than about 5%. 5. Range of deviation between optimum moisture content to be predicted from classification area and uniformity coefficient isless than about 20%, which belongs to range of moisture content that is correspondent with 95% of maximum dry density, generally.

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영남지역 국도에 사용된 흙의 CBR 특성에 관한 연구 (A Study on CBR Characteristics of National Highway in Yeongnam Region)

  • 박영목;이고현;김낙석;조규태
    • 대한토목학회논문집
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    • 제36권3호
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    • pp.535-543
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    • 2016
  • 국토교통부 부산지방국토관리청에서 영남지역의 국도건설을 위해 수행된 약 30년간의 총 480개 시험데이터를 이용하여 지역별 및 모암 특성별로 나누어 흙쌓기재료의 기초적인 토질정수의 통계치를 나타내고 각 토질정수간의 상관성을 분석하였다. 특히 CBR값과 흙의 토질특성간의 상관관계를 분석하였다. 영남지역의 흙 시료는 SM이 163개로 약 34%를 점하며, SC, CL 및 SP를 합하면 4종의 흙이 전체 시료의 약 79%에 해당한다. 영남지역의 조립토의 평균 CBR값은 12.7~20.3%의 범위를 나타내며, 세립토는 평균 CBR값이 4.8%~7.1%의 범위를 나타내며 조립토에 비해 약 절반 이하였다. 자연함수비, No.200체 통과율, 최적함수비 및 최대건조밀도 등이 CBR값과 좋은 상관관계를 나타내며, No.200체 통과율이 가장 높은 상관성을 가짐을 알았다. 또한 영남지역을 모암의 특성에 따라 행정구역을 6 zone으로 구분하여 각각의 상관성을 검토한 결과, 상관성이 증가됨을 알았다. 향후 기술자가 본 연구결과를 활용하면 영남지역의 행정구역별, 모암특성별 및 토질분류별 개략적 토질특성 파악과 각 토질정수간의 상관성을 파악하는데 도움이 될 것으로 판단된다.

투수성 성토재료의 기계다짐에 관한 연구 (A Study on the Mechanical Compaction of Pervious Materials)

  • 윤충섭
    • 한국농공학회지
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    • 제23권3호
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    • pp.65-77
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    • 1981
  • The Compaction of fill dam is very important for increasing of the safty of dam. Vibration roller is used for the compaction of pervious materials such as sand and gravel. The principal objects of this study are to give a comstruction criteria of vibration roller and to find out the relationship between dry density and permeabity of pervious soil after compaction. The results in this study are summerized as follows. 1.The relationship between maximum dry density (Υdmax) and optimum moisture content(Wo) of modified compaction test is Υdmax=2. 74-0. 064w0 2.The maximum dry density decrease with increasing fine particle(n) and the relative formular is n==ae-brdmax 3.The maximum dry density is influenced more by passing rate of number 200 sieve than 4 sieve. 4.The coefficient of permeability are similar when the degrees of compaction are equal even though the spreading thickness of soil are different. 5.The coefficient of permeability(K)is greatly influence by fine particle passing number 200 sieve, and those relationship is inversely proportionate. 6.The K values of pervious soil are from 10-0 cm/sec to 10-4 cm/sec when degree of compaction by a modified method is from 90 to 95percent. 7.The coarser material is little influenced on the permeability with different density. 8.The increasing rate of permeability with decreasing degree of compaction is more influened by fine pacticle than number 200 sieve. When degree of compaction decrease from 100 percent to 90 percent the K values of SM and GM increase about 20 times but GW increase 6 times only. 9.The effect of compaction by vibration roller is greatly influenced by 6 passes and the increasing rate of the effect is decraased at 8 passes. 10. In order to get the degree of compaction of 95 percent or more, 6 to 8 passes of roller are generall required with 30 cm thickeness of soil for 4.5 ton to 6.5 ton vibration roller and 7 to 8 passes is required with 50cm thickness for 8 to 12 ton roller.

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축제용 흙의 밀도변화에 의한 투수계수에 관한 연구 (A study on Permeability of Soil with Different Density)

  • 윤충섭
    • 한국농공학회지
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    • 제15권1호
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    • pp.2904-2912
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    • 1973
  • The density of soil is one of the most important of its engineering properties, and many soil-engineering operations directed toward improving the density characteristics of matecal. This report is a study on relationship between density, permiabilty and other physical properties of compacted soil in various desity grades. The results of the study can be summariged as follow: 1. The optimum moisture content of soil increses with increasing of fine particles and a relationship between both parameter is $w_0=0.1765.n$ Where, n is passing percentage from #200 sieve. 2. The porosity of soil increases with increasing of optimum water content as $e=aw_0+b$ without having relation to compaction ratio. 3. The increment of permeability of soil is high when the compaction ratio is increased and the phenomenon is conspicuous in case of course soil and non-plastic soil. 4. The permeability of soil decreases with increasing of optrimum water content and the phenomenon is conspicuous when compaction ratio decreases. And the permeability is almost constant when optimum water content is more than 25 percent, even though compaction ratio changes. 5. The permeablity of soil increanses when the amount of fine particles is very few, the permeability is almost constant as being impervious condition without having relation to compaction ratio when there in more than 90 percent of fine particles(less than #200 sieve).

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흙의 다짐에 관한 연구(I) (Study on the Soil Compaction)

  • 강문묵
    • 한국농공학회지
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    • 제11권4호
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    • pp.1783-1790
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    • 1969
  • It is one of the most economical method of soil stabilization works to compact soil, which increases soil density artificially. Compaction effort is to lessen void of soils, and consequently its aim is to enlarge friction and cohesion force, and reduce permeability of soil. Factors in compaction effort are moisture content, grain size, grain size distribution, physical properties, compaction method and temperature of soils etc. The results obtained in this study on the effects that grain size, gradation and physical properties influence upon compaction effort for 20 samples under the constant compaction method, are summarized as follows: 1. The bigger the maximum dry density is, the smaller the optimum moisture content is, on the other hand, the smaller the maximum dry densityis, the bigger the optimum moisture content is, ingeneral. 2. The coarser the grain size is, the bigger the maximum dry density is, and the optimum moisture content becomes small, and dry density-moisture content curve has the sharp peak, generally. Also, the finer the grain size is the smaller the maximum dry density is, and the optimum moisture content shows the big value, and dry density-moisture content curve has the dull peak. 3. The maximum dry density shows the biggest value on the sample to be about 15% of particles finer than No. 200 sieve. The more the percent passing of No. 10 sieve increase, the smaller the maximum dry density is. Soils which have uniformity coefficient less than 5 in particles larger than 0.074mm hardly show dry density-moisture content curve. 4. There is a relation which is ramax=2.3948-0.0376 Wopt between the maximum dry density and the optimum moisture content, namely, the maximum dry density is increased in proportion to decrease of the optimum moisture content. 5. There are relations to be the straight lines which the maximum dry density decrease, on the other hand, the optimum moisture content increase in accordance with enlargement of Atterberg Limit(LL, PL, PL) in compacted soils.

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암버럭-토사 혼합성토재 철도노반의 다짐특성 연구 (A Study on the Compaction Characteristics of Crushed Rock-soil Mixture for Railway Subgrade)

  • 김대상;박성용;송종우;김수일;송재준
    • 한국철도학회논문집
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    • 제12권2호
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    • pp.183-189
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    • 2009
  • 경부고속철도 2단계 구간은 콘크리트궤도 형식으로 건설되고 있다. 콘크리트궤도는 궤도의 강성 구조적 특징으로 인하여 잔류침하 규정이 엄격하게 적용되고 있다. 궤도의 잔류침하는 궤도를 지지하는 하부구조인 노반과 원지반으로부터 기인된다. 암버럭과 흙 재료로 건설되고 있는 노반의 잔류침하는 현장다짐품질에 따라 원지반을 포함한 총 잔류침하의 중요한 부분이 될 수 있다. 따라서 암버럭 토사 혼합성토재로 이루어진 노반에서의 잔류침하를 최소화하는 것은 콘크리트궤도의 성공적인 건설을 위하여 중요한 요소 중 하나이다. 본 논문에서는 암버럭-토사 혼합성토재의 거동을 이해하기 위하여 총 31회의 대형다짐시험을 수행하였다. 다짐시료는 건설 중인 2개 현장으로부터 혈암과 이암을 주성분으로 하는 노반 재료를 채취하여 조성하였고, 다짐시험은 암 종류, 4번체 통과율, 최대입경, 함수비를 변화시키면서 수행하였다. 시험결과로부터 혼합성토재의 최대건조단위중량에 영향을 미칠 수 있는 인자들에 대한 평가를 수행하였다.

재성형(再成形)한 해성점토(海成粘土)의 비배수(非排水) 변형특성(變形特性)에 관(關)한 연구(硏究) (A Study on the Undrained Deformation Characteristics of Remoulded Marine Clay)

  • 윤현정;강예묵;조성섭
    • 농업과학연구
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    • 제12권2호
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    • pp.309-323
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    • 1985
  • 본(本) 연구(硏究)는 삼축압축(三軸壓縮) 조건(條件)에서 여러 제한인자(制限因子)들이 재성형(再成形)한 해성점토(海成粘土)의 응력(應力)-변형(變形)에 미치는 영향(影響)을 알기 위하여 여러가지 단계(段階)의 함수비(含水比)와 밀도(密度)및 기타(其他)의 조건(條件)을 달리하여 실내(室內)에서 임의(任意)로 재성형(再成形)한 5가지 점토시료(粘土試料)의 비배수(非排水) 삼축압축(三軸壓縮) 시험(試驗)을 하여 다음과 같은 결과(結果)를 얻었다. 1. 함수비(含水比)의 증가(增加)와 함께 변형(變形)에 대(對)한 파괴주응력차(破壞主應力差)는 적어졌다. 2. 건조밀도(乾操密度)가 커질수록 변형(變形)에 대(對)한 파괴주응력차(破壞主應力差)는 커졌다. 3. 파괴주응력차(破壞主應力差)에 대(對)한 재성형(再成形) 함수비(含水比)와 밀도(密度)의 상호작용(相互作用)의 영향(影響)은 함수비(含水比) 6.6~9.7%와 건조밀도(乾操密度) $1.50{\sim}1.55g/cm^3$에서 가장 뚜렷했다. 4. 해성점토(海成粘土)에서는 축방향(軸方向) 변형율(變形率)이 응력(應力)-변형성질(變形性質)에 미치는 영향(影響)은 뚜렷하지 않았으나, 축방향(軸方向) 변형율(變形率)이 증가(增加)함에 따라 탄성계수율(彈性係數率)은 감소(減少)하는 경향(傾向)이 나타났다. 5. 입도(粒度)의 배합(配合)이 양호(良好)한 시료(試料)에서 변형(變形)에 대(對)한 주응력차(主應力差)가 큰 값을 나타냈다. 6. 해성점토(海成粘土)의 비배수(非排水) 변형(變形)에 관계(關係)가 깊은 인자(因子)만을 골라서 응력(應力)및 변형(變形) 예측(豫測)을 위한 중회귀(重回歸) 분석(分析) 모형(模型)을 만들 수 있다.

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