• 제목/요약/키워드: compacted materials

검색결과 182건 처리시간 0.027초

다짐시공이 불량한 증고 저수지 제체의 수위상승시 거동 (Behavior Characteristics of Poorly-Compacted Raised Reservoir Levee with Water Level Raising)

  • 이충원;김정면;문용배;김용성
    • 한국농공학회논문집
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    • 제56권6호
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    • pp.113-119
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    • 2014
  • This study aims to evaluate the behavior of poorly-compacted raised reservoir levee with water level raising by using centrifugal model test. From the test results, it seems that the hydraulic fracturing at the core of the raised reservoir levee with low degree of compaction possibly occurs due to the drastical increase of pore water pressure by water level raising. Additionally, the continuous infiltration may induce crack and/or sinkhole on the surface of the poorly-compacted raised reservoir levee owing to the increase of the subsidences at the crown and the front side of that. Therefore, reasonable construction management for the compaction of the raised reservoir levee is needed.

Compaction and Sintering Characteristics of High Energy Ball Milled Mn-Zn Ferrite Powders

  • Lee, Hyunseung;Rhee, Hoseong;Lee, Sangsoo;Chang, Si Young
    • 한국재료학회지
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    • 제31권12호
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    • pp.677-681
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    • 2021
  • The Mn-Zn ferrite powders were prepared by high energy ball milling, then compacted and sintered at various temperatures to assess their sintering behavior and magnetic properties. The initial ferrite powders were spherical in shape with the size of approximately 70 ㎛. After 3 h of ball milling at 300 rpm, aggregated powders ~230 nm in size and composed of ~15 nm nanoparticles were formed. The milled powders had a density of ~70 % when compacted at 490 MPa for 3 min. In the samples subsequently sintered at 1,273 K ~ 1,673 K for 3 h, the MnZnFe2O4 phase was detected. The density of the sintered samples had a tendency to increase with increasing sintering temperature up to 1,473 K, which produced the highest density of 98 %. On the other hand, the sample sintered at 1,373 K had the highest micro-hardness of approximately 610 Hv, which is due to much finer grains.

흙의 공학적 성질에 관한 연구 (Study on Engineering Properties of Earth Materials)

  • 김주범;윤충섭
    • 한국농공학회지
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    • 제17권3호
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    • pp.3815-3832
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    • 1975
  • This study was made to investigate various engineering properties of earth materials resulting from their changes in density and moisture content. The results obtained in this study are summarized as follows: 1. The finner the grain size is, the bigger the Optimum Moisture Content(OMC) is, showing a linear relationship between percent passing of NO. 200 Sieve (n) and OMC(Wo) which can be represented by the equation Wo=0.186n+8.3 2. There is a linear relationship of inverse proportion between OMC and Maximum Dry Density (MDD) which can be represented by the equation ${\gamma}$d=2.167-0.026Wo 3. There is an exponential curve relationship between void ratio (es) and MDD whose equation can be expressed ${\gamma}$d=2.67e-0.4550.9), indicating that as MDD increases, void ratio decreases. 4. The coefficent of permeability increases in proportion to decrease of the MDD and this increase trend is more obvious in coarse material than in fine material, and more obvious in cohesionless soil than in cohesive soil. 5. Even in the same density, the coefficient of permeability is smaller in wet than in dry from the Optimum Moisture Content. 6. Showing that unconfined compressive strength increases in proportion to dry density increase, in unsaturated state the compacted in dry has bigger strength value than the compacted in wet. On the other hand, in saturated state, the compacted in dry has a trend to be smaller than the compacted in wet. 7. Even in the same density, unconfined compressive strength increases in proportion to cohesion, however, when in small density and in saturated state, this relationship are rejected. 8. In unsaturated state, cohesion force is bigger in dry than in wet from OMC. In saturated state, on the other hand, it is directly praportional to density. 9. Cohesion force decreases in proportion to compaction rate decrease. And this trend is more evident in coarse matorial than in fine material. 10. Internal friction angle of soil is not influenced evidently on the changes of moisture content and compaction rate in unsaturated state, On the other hand in saturated state it is influenced density. 11. Cohesion force is directly proportional to unconfined compressive strength(qu), indicating that it has approximately 35 percent of qu in unsaturated state and approximately 70 percent of qu in saturated state.

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873~1173 K에서 열처리된 강화흑연강(Compacted Graphite Iron, CGI)의 음향방출 특성 (Acoustic Emission of Heat Treated Compacted Graphite Iron under 873~1173 K)

  • 남기우;안병건;이수철
    • 비파괴검사학회지
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    • 제33권5호
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    • pp.415-421
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    • 2013
  • CGI는 주철보다 큰 강도 또는 작은 무게가 요구되는 응용에서 인기를 얻고 있다. 최근, 강화흑연강은 디젤 엔진 블록, 터보 하우징 및 배기 매니폴드에 사용된다. 이 논문은 873~1173 K에서 1~24 시간 동안 열화된 CGI340의 기계적 성질의 변화에 따른 음향방출 특성을 평가하였다. 연필심 파괴시험 결과에서, 탁월주파수 및 모재의 속도는 각각 97 kHz와 5,490 m/s이었다. 인장시험에서 모재는 상대적으로 높은 탁월주파수를 얻었다. 그러나 열처리된 재료, 열처리 시간이 길고, 열처리 온도가 높을수록, 낮은 주파수의 영역에서 얻어졌다. 이러한 현상은 장기간의 사용에 의해 나타난다.

PCC(Powder Compacted Capsule) 크기 및 혼입율에 따른 자기치유 모르타르의 공학적 특성에 관한 실험적 연구 (An Experimental Study on Engineering Properties of Self-healing Mortar according to PCC(Powder Compacted Capsule) Size and Mixing Ratio)

  • 이재인;김채영;최세진
    • 한국건설순환자원학회논문집
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    • 제10권4호
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    • pp.514-522
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    • 2022
  • 본 연구에서는 시멘트 복합체에 시멘트계 재료로 구성된 자기치유 캡슐을 적용하여 콘크리트 구조물의 자기치유 성능을 향상시키기 위한 연구의 일환으로 PCC(Powder Compacted Capsule) 크기 및 혼입율에 따른 모르타르의 공학적 특성을 비교ㆍ분석하였다. 이를 위해 PCC 크기 및 혼입율에 따른 모르타르의 유동성, 압축강도, 하중재부하 시험, 탄산화, 초음파속도, 투수 특성 등을 측정하였다. 측정 결과, PCC의 혼입율이 증가할수록 유동성과 압축강도가 증가하였으며, 치유특성 검토를 위해 진행한 하중재부하 시험의 경우 03PC 배합에서 PCC 혼입율이 증가할수록 치유율이 증가하였다. 정수위투수 시험의 경우 PCC를 사용할 경우 유출수량 감소율이 Plain 배합에 비해 최대 35 % 높은것으로 나타났으며, 크기 0.3~0.6 mm의 PCC를 15 % 혼입할 시 모르타르의 균열 치유율 향상에 효과적인 것으로 나타났다.

나노 니켈 분말의 가스건 고속압축을 통한 나노결정립 니켈 벌크재의 제조 및 물성 (Manufacturing and Evaluation of Properties of Nanocrystalline Ni bulk by Dynamic Compaction of Nano Ni powders using a Gas-gun System)

  • 김우열;안동현;박이주;박종일;김형섭
    • 한국분말재료학회지
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    • 제21권1호
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    • pp.44-49
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    • 2014
  • In this study, nanocrystalline nickel powders were cold compacted by a dynamic compaction method using a single-stage gas gun system. A bending test was conducted to measure the bonding strengths of the compacted regions and microstructures of the specimen were analyzed using a scanning electron microscopy. The specimen was separated into two parts by a horizontal crack after compaction. Density test shows that the powder compaction occurred only in the upper part of the specimen. Brittle fracture was occurred during the bending test of the compact sample. Dispersion of shock energy due to spalling highly affected the bonding status of the nanocrystalline nickel powder.

Green Machining of the Warm Compacted Sinter Hardenable Material

  • Cheng, Chao-Hsu;Chiu, Ken;Guo, Ray
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part 1
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    • pp.295-296
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    • 2006
  • High hardness of P/M parts can be obtained in the cooling section of the sintering furnace by using sinter hardenable materials, thus the post-sintering heat treatment can be eliminated. However, the sinter hardened materials would have difficulties in secondary machining if it is required, which will limit the applications of sinter hardenable materials in the machined parts. Recent development in warm compaction technology can enable us not only to achieve the high green density up to $7.4\;g/cm^3$, but also the high green strength which is needed for green machining. Therefore by using warm compaction technology, the green machining can be applied to sinter hardenable materials for the high density, strength and hardness P/M parts. In the present study, a pre-alloyed steel powder, ATOMET4601, was used by mixing with 2.0% copper, 1.0% nickel, 0.9% graphite and a proprietary lubricant using a binder treatment process - FLOMET. The specimens were compacted and green machined with different machining parameters. The machined surface finish and part integrity were evaluated in selecting the optimal conditions for green machining. The possibility of applying the green machining to the high-density structural parts was explored.

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하수 슬러지 부산물을 이용한 다짐혼합재 및 토목합성수지점토라이너의 최종복토 차단층재로의 적용성에 관한 비교연구 (A Comparative Study on the Feasibility of Geosynthetics Clay Liner and Compacted Mixing Material Using By-products from Sewage Sludge to the Final Cover Materials in Landfills)

  • 정지훈;이재영;이명호
    • 한국지반신소재학회논문집
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    • 제7권2호
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    • pp.49-52
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    • 2008
  • 현재 사용되고 있는 폐기물 매립지의 최종복토 차단층으로는 다짐점토층(Compacted Clay Liner; CCL)을 일반적으로 오랫동안 사용하고 있으나 압축성이 높은 폐기물 위에서는 시공이 어려우며, 고농도 유기물에 의한 붕괴를 유발하여 선진국 등에서 널리 사용되고 있는 부직포 등 토목합성물질 사이에 차수성이 뛰어난 벤토나이트를 삽입한 토목합성수지점토라이너(Geosynthetic Clay Liner; GCL)를 대체재로 많이 사용하고 있다. GCL은 설치 전, 후로 뚫림이 있을 수 있는 단점이 있어 CCL은 여전히 우리나라에서 널리 사용되고 있다. 하지만 CCL은 앞서 언급한 문제보다 국내의 기후 및 지형적인 여건으로 점토의 부족문제가 더 크게 작용하고 있어 그 대체물질의 개발이 시급히 요구되고 있다. 그 대체물질로 최근 슬러지가 주목을 받고 있는데 대부분의 슬러지는 매립지에 처분되거나 해양투기를 하고 있지만 2012년부터 런던협약에 따라 전면적으로 금지될 전망이기 때문에 슬러지의 친환경적인 처리 처분이 긴급히 요구되고 있는 실정이다. 이 문제를 해결하기 위한 혁신적인 방법의 하나로 열가수분해에 의한 처리기술을 들 수 있다. 본 연구에서는 부족한 양질의 점토를 대체하기 위해 하수슬러지를 열가수분해 처리하고 나온 부산물을 이용하여 첨가제를 혼합하여 최적배합비로 혼합한 다짐혼합재(Compacted Mixing Materials; CMM)를 차수능이 높은 GCL과 비교하여 CMM의 최종복토 차단층재로의 이용가능성을 평가하였다

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고속철도 토공구간 쌓기 재료의 다짐함수비 조건에 따른 장기침하 특성 (Long-term Settlement of High Speed Railway Embankment Compacted under Dry/Wet Condition)

  • 이성진;이일화;이진욱
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 추계 학술발표회
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    • pp.1268-1277
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    • 2008
  • Recently, the high speed railway comes into the spotlight as the important and convenient traffic infrastructure. In Korea, Kyung-Bu high speed train service began in about 400km section at 2004, and the Ho-Nam high speed railway will be constructed by 2017. The high speed train will run with a design maximum speed of 300-350km/hr. Since the trains are operated at high speed, the differential settlement of subgrade under the rail is able to cause a fatal disaster. Therefore, the differential settlement of the embankment must be controlled with the greatest care. Furthermore, the characteristics and causes of settlements which occurred under construction and post-construction should be investigated. A considerable number of studies have been conducted on the settlement of the natural ground over the past several decades. But little attention has been given to the compression settlement of the embankment. The long-term settlement of compacted fills embankments is greatly influenced by the post-construction wetting. This is called 'hydro collapse' or 'wetting collapse'. This wetting collapse problem for the compressibility of compacted sands, gravels and rockfills, has been recognized by several researchers. For this wetting settlement problem, we showed the test results carried out with 4 fill materials. These tests were performed under the condition that the fill materials were inundated at the first wetting. Subsequently, in this study, we investigated the long-term settlement characteristics of the fill materials under the repeated partial wetting and rising of the ground water table happend by rainfall.

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원위치 동적강성 분석기의 개발 및 성능평가 (Development and Performance Evaluation of In-situ Dynamic Stiffness Analyzer)

  • 김동주;변용훈
    • 한국농공학회논문집
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    • 제61권2호
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    • pp.41-50
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    • 2019
  • Stiffness characteristic of subgrade is one of the most important aspects for the design and evaluation of pavement and railway. However, adequate field testing methods for evaluating the stiffness characteristics of the subgrade have not been developed yet. In this study, an in-situ dynamic stiffness analyzer (IDSA) is developed to evaluate the characteristics of subgrade stiffness along the depth, and its performance is evaluated in elastic materials and a compacted soil. The IDSA consists of a falling hammer system, a connecting rod, and a tip module. Four strain gauges and an accelerometer are installed at the tip of the rod to analyze the dynamic response of the tip generated by the drop of hammer. Based on the Boussinesq's method, the stiffness and Young's modulus of the specimens can be calculated. The performance of IDSA was tested on three elastic materials with different hardness and a compacted soil. For the repeatability of test performance, the dynamic signals for force and displacement of the tip are averaged from the hammer impact tests performed five times at the same drop height. The experimental results show that the peak force, peak displacement, and the duration depend on the hardness of the elastic materials. After calculating the stiffness and elastic modulus, it is revealed that as the drop height of hammer increases, the stiffness and elastic moduli of MC nylon and the compacted soil rapidly increase, while those of urethanes less increase.