• 제목/요약/키워드: Crushing behavior

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PFC를 이용한 입자 파쇄 모델의 적용성 연구 (Applicability of Particle Crushing Model by Using PFC)

  • 정선아;김은경;이석원
    • 한국지반신소재학회논문집
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    • 제9권1호
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    • pp.47-57
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    • 2010
  • 기초 지반이나 댐, 사면 등을 건설할 경우, 성토재로 입자 크기가 큰 조립 재료를 많이 사용하고 있다. 따라서 이러한 조립재료의 전단 거동은 구조물의 안정성에 영향을 미치게 된다. 예를 들어, 구조물과 입자의 접촉면 혹은 입자들간의 접촉면에서 발생하는 입자 파쇄는 전체 지반의 특성을 변화시키고 따라서 구조물의 안정성에 문제를 유발할 수 있다. 본 연구에서는 입자의 파쇄 유무에 따른 전단 거동의 특성을 파악하기 위해 개별요소법(DEM, Distinct Element Model)을 기반으로 하는 수치해석 프로그램 PFC2D를 이용하여 직접전단실험을 재현하였다. 입자의 모델을 파쇄 모델과 비 파쇄 모델로 구분하여 총 4개의 모델을 모사하고 그 결과를 분석하였다. 비 파쇄 모델에는 one ball 모델과 clump 모델이, 파쇄 모델에는 cluster 모델과 Lobo-crushing 모델을 적용하였다. 입자의 구성은 Lobo-Guerrero and Vallejo(2005)가 제안한 8개 입자의 조합으로 구성하였다. 해석 결과, 내부마찰각 순서는 clump 모델 > cluster 모델 > one ball 모델 순이며, 전체를 비교해 봤을 때 원형입자모델보다 입자 결합모델이, 파쇄 모델보다 비 파쇄 모델의 내부마찰각이 크게 나타났다. 또한 기존에 제시된 Lobo-Guerrero and Vallejo(2005)의 모델은 입자 파쇄 거동을 모사하기에는 부적합하다는 결론을 얻을 수 있었다.

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Sabkha층의 Hydrotest 시 입자파쇄 거동분석 (Behavior Analysis of Particle Crushing about Sabkha Layer under Hydrotest)

  • 김석주;한희수
    • 한국지반환경공학회 논문집
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    • 제14권9호
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    • pp.57-65
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    • 2013
  • 탄산질 모래는 낮은 구속압에서도 입자파쇄가 발생하며 이로 인해 높은 압축성을 나타내기 때문에 입자파쇄가 강도 및 변형특성에 중요한 영향을 미친다. 본 논문은 탄산질 모래로 구성된 Sabkha층에 Tank 설치를 위하여 시험성토 및 Hydrotest를 수행한 후 지반의 침하거동을 비교 분석한 것이다. 현장 Sabkha층 시료는 압밀시험결과 80~170kPa에서 입자파쇄가 발생하였고, 화학조성을 분석한 결과 석영질 모래에서 검출되지 않은 칼슘성분이 다량 검출되어 입자파쇄가 잘 일어날 수 있음을 알 수 있었다. 입자파쇄가 발생하지 않은 시험성토에서는 성토완료 이틀만에 간극수의 소산과 침하가 완료되었으나 입자파쇄응력보다 큰 200kPa의 하중이 재하된 Hydrotest에서는 충수 후 장기침하거동이 발생하여 시험성토의 침하거동과는 상이한 결과를 나타내었다. 따라서 현장 Sabkha층에 입자파쇄하중 이상의 하중이 재하될 경우 입자파쇄로 인한 즉시침하와 파쇄된 입자의 재배열로 인한 이차압축침하가 발생됨을 알 수 있었다.

박판 4각튜브의 반실험적 압괴메카니즘 해석 (Semi Empirical Analysis on the Crushing Mechanism of Thin-Walled Rectangular Tubes)

  • 김천욱;한병기;임채홍
    • 대한기계학회논문집A
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    • 제21권1호
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    • pp.12-21
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    • 1997
  • A model for analysis of the crushing mechanism of thin-walled rectangular tube is presented. The crushing modes of rectangular tubes may be characterized as either compact or noncompact and the model presented only considers compact modes. The unloading process in the crushing are categorized into three different stages where the distinction is based on the ratio of outward to inward fold length. Using the kinematic relations and the energy conservation principle, the instantaneous crush load is derived. An approximate equation that considers the rolling behavior is also given so that the crush load history may be established. The equation is experimentally proved.

콘 형상 실린더의 축 방향 압축변형을 이용한 충격흡수장치 설계 (Design of Energy Absorption Device Using the Axial Crushing Behavior of Truncated Cone Type Cylinder)

  • 김지철;이학렬;김일수;심우전;박동화
    • Tribology and Lubricants
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    • 제19권5호
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    • pp.259-267
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    • 2003
  • A brake device for the high-speed impacting object is designed using an axial crushing of thin-walled metal cylinder. Thickness of the cylinder is increased smoothly from the impacting end to the fixed end, resulting in the truncated cone shape. Truncated cone shape minimizes the imperfection-sensitivity of the structure and ensures that plastic hinges are formed sequentially from impacting end. This prevents the undesirable sudden rise in the first peak-crushing load. Several specimens with different conic angles, mean thickness of the wall, and materials were designed and quasi-static compression tests were performed on them. Results indicate that adoption of appropriate conic angle prevents simultaneous wrinkles generation and sudden rise of crushing load and that appropriate conic angle differs in each case, depending on the geometry and material property of the cylinder. Finite element analysis was performed for static compression of the cylinder and its accuracy was checked for the future application.

골판지의 정적완충특성과 골판지상자의 크리이프 거동 (Static Cushioning Properties of Corrugated Fiberboard and Creep Behavior of Boxes)

  • 박종민;김만수;정성원
    • Journal of Biosystems Engineering
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    • 제20권4호
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    • pp.323-332
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    • 1995
  • The horizontal compression test of some selected corrugated fiberboards was performed to determine the cushioning properties of them. Creep behavior of the corrugated fiberboard boxes, which have been widely used in rural area for packaging fruits and vegetables, was tested. The flute crushing stress of the corrugated fiberboard depended upon mainly the basic weight of the corrugated medium, comparing with the combined basic weight of corrugated fiberboard. When moisture content of the corrugated fiberboards was increased about 8% (d.b.), the flute crushing stress of them was decreased at the rate of 44%~64%. The cushion factor of the sample fiberboards showed much higher value at the lower moisture content of them. These trends appeared to be more obvious at the lower applied stress levels. Also, the cushion factors of the double wall corrugated fiberboards(DW) were observed to be little higher than those of the single wall corrugated fiberboards(SW). The creep behavior of the sample boxes was found to be highly moisture and static load dependent. The creep behavior of the corrugated fiberboard boxes could be well analyzed by the asymptotic slope derived from the creep model.

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Identification of Plant Response to the Human Behavior of Crushing Plants

  • Kim, Kwang Jin;Kim, Hyeon Ju;Son, Deokjoo;Jeong, Na Ra;Yun, Hyung Gewon;Han, Seung Won;You, Soojin;Kim, Chan-joong;Lee, Seon Hwa
    • 인간식물환경학회지
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    • 제22권6호
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    • pp.593-600
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    • 2019
  • We identified how plants affected by the human behavior of crushing plants respond and what kind of plants responded sensitively. We investigated Lactuca sativa "Gaesebadak", Syneilesis palmata and Peucedanum japonicum as plants that humans use for edible purposes, and Achyranthes japonica and Bidens bipinnata as wild plants that stick to people's clothes and disperse seed. Plants exposed to human breathing air were compared with those exposed to human breathing air after being crushed. Methyl jasmonate (MeJA), a chemical word, was measured using Syft/MS, which detects real-time VOC, and related genes were analyzed. The amount of MeJA of Syneilesis palmata and Peucedanum japonicum as edible plants was greater than that of non-edible plants that disperse seeds using humans. The amount of MeJA ranged from 0.20 ppb to 0.35 ppb when the control group were not exposed to human breathing air. On the other hand, MeJA decreased after increasing for the first hour in human breathing air. Also, MeJA affected by human breathing after crushing plants was higher than that affected by just human breathing air. Peucedanum japonicum showed the most distinctive difference between the treatment with human breathing after crushing plants and the treatment with just human breathing. In addition, the gene activity of JAR1 and JMT increased 3 hours after the treatment with human breathing after crushing plants. Therefore, in the treatment with human breathing after crushing plants, the concentration of MeJA and the activity of related genes showed the same tendency to increase. As a result, the plant that responded sensitively to human behavior was Peucedanum japonicum. Plants released MeJA as a chemical word in the treatment with human breathing air after crushing plants.

에너지 흡수용 알루미늄 허니컴 재료의 압축거동 분석 및 설계 (An Analysis of Axial Crushing Behavior of Energy Absorbing Aluminum Honeycomb and Design of Cell Configuration)

  • 김중재;김상범;김헌영
    • 한국자동차공학회논문집
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    • 제9권5호
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    • pp.195-205
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    • 2001
  • The mechanical properties of aluminum honeycomb on the direction of axial crushing under quasistatic loading test was investigated. The crushing process was simulated numerically by full-scale finite element models. Simulations reproduce the experimental results both qualitatively as well as quantitatively. From the investigation, we suggested the constitutive model of energy absorbing honeycomb structure for large scale impact analysis. Real impact test of the WB(Moving Deformable Barrier) was carried and compared with finite element simulation. Constitutive model used in the numerical simulation had a good correlation with experiment. By suggesting the optimizing method fur honeycomb cell configuration design, relationship between cell configuration and crush strength is studied.

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Effect of grain crushing on 1D compression and 1D creep behavior of sand at high stresses

  • Wang, Z.;Wong, R.C.K.
    • Geomechanics and Engineering
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    • 제2권4호
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    • pp.303-319
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    • 2010
  • The effect of grain crushing on the deformation of sand in 1D compression and 1D creep at high stresses was investigated theoretically and experimentally. An approach was proposed to formulate the process of grain crushing in sand in accordance with the laws of fracture mechanics and energy conservation. With this approach, the relation between the void ratio and the amount of grains crushed in 1D compression was derived. Laboratory test data were used to verify this derived relation. In addition, it was observed that there are similarities in evolution of grain size distribution in 1D compression and 1D creep tests. This implies that the changes in microstructure in sand under 1D compression and 1D creep are comparable.

경량화용 Al/CFRP원형 부재의 축 압궤거동에 관한 연구 (A Study on the Axial Crushing Behavior of Aluminum Cm Circular Members for light-weight)

  • 이길성;차천석;양인영
    • 한국자동차공학회논문집
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    • 제13권5호
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    • pp.50-56
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    • 2005
  • Aluminum member absorbs energy by stable plastic deformation under axial loading. While CFRP(Carbon Fiber Reinforced Plastics) member absorbs energy by unstable brittle failure but its specific strength and stiffness is higher than those of aluminum member. In this study, for complement of detects and synergy effect by combination with the advantages of each member, the axial collapse tests were performed for aluminum CFRP members which are composed of aluminum members wrapped with CFRP outside aluminum circular members. Based on the respective collapse characteristics of aluminum and CFRP members, crushing behavior and energy absorption characteristics were analyzed for aluminum CRRP members which have different CFRP fiber orientation angle and thickness Test results showed that aluminum CFRP members supplemented the unstable brittle failure of CFRP members due to ductile nature of inner aluminum members. It turned out that the CFRP fiber orientation angle and thickness influence energy absorption capability together with the collapse mode of the members.

다중 파괴기준의 소성모델을 이용한 철근콘크리트부재의 비선형 해석 (Nonlinear Analysis of Reinforced Concrete Members using Plasticity with Multiple Failure Criteria)

  • 박홍근
    • 콘크리트학회지
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    • 제7권5호
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    • pp.145-154
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    • 1995
  • 콘크리트는 압축압밀과 인장균열파괴의 두 개의 서로 다른 파괴양상을 타나낸다. 따라서, 다차원의 압밀과 인장균열을 포함하는 콘크리트의 비선형해석을 위하여 두개의 다른 파괴기준을 사용하는 콘크리트 재료모델이 사용되어야 한다. 본 연구에서 사용하는 콘크리트 모델은 소성이론에 기초한 것으로 압축압밀과 인장균열에 대한 다중파괴이론을 사용하고 잇다. 인장균열거동에 대해 두 개의 다른 재료모델이 사용되고 있는데, 이상화된 균열방향에 따라 분류되는 회전균열소성모델과 정지균열소성모델이 사용되고 있다. 본 연구에서는 콘크리트의 비선형거동이 plane stress 문제에 대하여 단순화된다. 이 재료모델은 유한요소해석에 사용되며 그 결과는 몇 개의 철근콘크리트부재 실험과 비교된다. 회전균열소성모델과 정지균열소성모델의 장단점이 비교된다.