• Title/Summary/Keyword: Static and Dynamic Stiffness Coefficients

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여러가지 다짐 평가장비의 적용성을 위한 실내시험 (Laboratory Tests for the Applicability of Various Testing Devices for Measuring Degree of Compaction)

  • 유완규;임남규;김병일;김주형
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 춘계 학술발표회 초청강연 및 논문집
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    • pp.1178-1187
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    • 2008
  • Quality assurance for embankment compaction is one of very important procedures to guarantee high quality construction. However, only sand replacement method (KS F2312) and static plate load test (KS F2310) which are conventional and tiresome methods are used to evaluate degree of compaction at construction fields. Recently, new types of devices such as the geogauge and the light falling weight deflectometer (LFWD), the soil impact hammer (CASPFOL) and dynamic cone penetration test etc. which are able to substitute for the conventional methods are begun to use to evaluate soil stiffness. In this study, a laboratory model test was performed to evaluate correlations among test results obtained from the new devices and to assess the potential use of them. All test results have correlations with relative density and water content. Especially, the coefficients of correlation between $E_G$ from the geogauge and $K_{30'}$ from the soil impact hammer and between $E_G$ from the geogauge and $E_{LFWD}$ from LFWD are more than 0.7 but those between the results from DCP and others are less than those between $E_{G{\cdot}}$ and $K_{30'}$ and $E_G$ and $E_{LFWD}$.

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열차 하중조건을 고려한 마찰형 방진장치 성능시험 및 마찰특성 분석 (Analysis of Performance Tests and Friction Characteristics of a Friction Type Isolator Considering Train Load Conditions)

  • 고용성;이찬영;지용수;김재왕
    • 한국산학기술학회논문지
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    • 제18권3호
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    • pp.694-702
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    • 2017
  • 선하역사의 경우 차량-궤도에서 발생하는 하중 및 진동이 직접적으로 전달되는 구조적 한계로 인하여 발생하는 구조체 전달 형태의 진동과 소음레벨이 다른 역사형식 대비 월등히 높음으로 인하여 역사 내 상업 및 업무시설 이용객과 종사자들의 불편과 민원이 증가하고 있다. 선하역사에 발생하는 소음 진동을 저감하기 위한 대책중 하나로 알려진 플로팅 궤도의 경우 궤도 하부에 고무 마운트나 패드 요소를 적용한 장치가 주로 설치되어 댐퍼 역할을 한다. 이러한 장치의 경우, 열차 운행 시 발생하는 비선형 하중에 대하여 정확한 강성 및 감쇠비를 설계하기 어렵다는 단점이 있다. 본 연구에서는 플로팅 궤도에 적용 가능하며 정확한 강성 설계가 가능한 마찰 쐐기형 방진장치를 소개한다. 또한, 방진장치 강성 설계값과 시험값을 비교 분석하고 마찰 쐐기형 블록 배치에 따른 감쇠비를 열차 하중조건에 따라 도출하였다. 방진장치의 성능시험은 DIN45673-7 규정에 의거하여 진행하였으며 시험항목인 정적 및 동적하중 시험을 모두 포함한다. 성능시험 하중조건은 DIN 규정에 따라 열차 및 궤도 중량을 고려하여 적용하였으며 수직 하중 및 수평 하중에 대한 시험을 진행하여 방진장치 적용에 따른 궤도의 구조안전성을 확보한다. 더불어, 하중재하속도에 따른 마찰재의 마찰계수 변화 양상을 확인함으로서 다양한 하중재하속도 조건에 대한 마찰쐐기형 방진장치의 진동저감 성능을 확인한다.

A Study on the Air Foil Journal Bearing Analysis with Perturbed Rarefaction Coefficients

  • Lee, Yong-Bok;Park, Dong-Jin;Kim, Chang-Ho;Jang, Gun-Hee
    • KSTLE International Journal
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    • 제7권2호
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    • pp.27-34
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    • 2006
  • Knudsen number is the ratio of molecular mean free path versus mm thickness and the criterion to determine the flow form. When its value is lower than 0.01, the flow can be assumed to has no slip boundary condition. And in the case that the value is between 0.01 and 10, then the flow has slip boundary condition at both the adjacent walls. The condition of the air flow between the rotating journal and top foil in the air foil bearing is determined by the rotating speed and load, and the Knudsen number is also varied by those values. Because the molecular mean free path is variable to the pressure and temperature, more exact formulation is necessary to understand and analyze the flow regime. In this study, the analysis considering Knudsen number formulated with those variables (pressure, temperature and mm thickness) was executed. The approximate value was examined using the equation to confirm whether the flow has the slip or no-slip boundary condition. From the analytic investigation, it was decided to range approximately 0.01 to 1.0 and the flow can be supposed to have the slip boundary condition. Under the condition of the slip flow, the static characteristics of the air foil bearing were examined using modified Reynolds equations. The results were compared with those considering no slip condition. It shows that the slip condition makes the flow decelerates and the load carrying capacity decreases compared with no slip condition. And as the bearing number and eccentricity ratio increase, the load carrying capacity also increased at both the cases. From this result, it can be supposed that the bearing torque also increases. In the analysis of the dynamic characteristics, the perturbed Knudsen number was taken into consideration. Because the Knudsen number is expressed as the terms of each variable, the perturbed equation can be simply derived. The results of both cases considering and not considering Knudsen number were compared each other. In the case of the direct terms of the stiffness and damping coefficients, the difference between both cases was little and increased as the bearing number and eccentricity ratio increased. And the cross terms have less or more differences.