• 제목/요약/키워드: Rod Impact

검색결과 115건 처리시간 0.024초

세라믹 타일이 삽입된 금속 블록의 최적 방호구조 연구 (Evaluation of Ballistic Performance of Ceramic-Tile-Inserted Metal Block)

  • 이승환;이민형
    • 대한기계학회논문집A
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    • 제40권3호
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    • pp.297-304
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    • 2016
  • 세라믹(AD-90 alumina, $B_4C$) 타일이 삽입된 금속 블록(4340-steel)에 텅스텐 합금(tungsten alloy)의 긴 운동에너지탄을 수직 고속 충돌시키는 수치해석을 수행하였다. 본 연구를 수행하기에 앞서 두 가지의 반무한판 충돌 모델의 침투 깊이에 대해서 검증을 하였다. 세라믹 재료는 JH-2 (Johnson-Holmquist) 모델을 적용하였고 계산된 침투 깊이를 실험값과 비교하여 만족할만한 결과를 얻었다. 앞서 언급한 판에 대해서 세라믹 타일의 세 가지 두께별로 금속판에 삽입된 위치를 다르게 하여 충돌 시뮬레이션을 수행하였다. 긴 관통자의 잔류속도, 잔류질량 그리고 잔류운동에너지를 얻어 세라믹 타일의 위치가 구조물의 방호 성능에 어떠한 영향을 미치는지 알아보았다. 그리고 단순 금속 블록 대비 세라믹 타일을 사용하는 경우의 질량 효율이 어떻게 되는지 확인해보았다. 마지막으로 이들을 토대로 질량효율 관점에서 최적 방호구조에 대한 평가를 수행하였다.

채혈바늘에 의한 2차 감염 방지기능을 갖는 랜싯과 전동식 채혈기의 개발 (Development of the Electric Lancing Device and the Lancet to Prevent the Secondary Contamination by Needlestick Injury)

  • 홍성철;장석진;강신한
    • 한국산학기술학회논문지
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    • 제12권12호
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    • pp.5464-5468
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    • 2011
  • 본 연구는 채혈바늘에 의해 발생하는 2차 감염을 방지하기 위한 안전 랜싯(Lancet)을 설계 개발하고, 연속하여 채혈하는 경우에 쉽게 그리고 편리하게 사용할 수 있도록 무선 전동방식 채혈기의 설계 제작을 목적으로 한다. 안전랜싯은 채혈침과 보호캡이 일체형으로 설계되어 채혈 순간을 제외하고는 채혈침이 항상 보호캡 속에 있도록 하여 채혈바늘에 의한 사고를 방지하도록 하였다. 전동 채혈기는 충전건전지를 전원으로 하고 솔레노이드의 작동으로 랜싯을 타격하여 채혈하도록 설계되었으며, 연발타격 또는 단발타격의 기능을 선택하도록 설계 제작되었다. 또한 타격봉에 의한 충격력과 사용된 배터리의 수명 등이 측정되었다. 이 채혈기는 한방병의원의 사혈기로도 사용되도록 제작되었다.

Impact of Screw Type on Kyphotic Deformity Correction after Spine Fracture Fixation: Cannulated versus Solid Pedicle Screw

  • Arbash, Mahmood Ali;Parambathkandi, Ashik Mohsin;Baco, Abdul Moeen;Alhammoud, Abduljabbar
    • Asian Spine Journal
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    • 제12권6호
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    • pp.1053-1059
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    • 2018
  • Study Design: Retrospective review. Purpose: To detect the effect of cannulated (poly-axial head) and solid (mono-axial head) screws on the local kyphotic angle, vertebral body height, and superior and inferior angles between the screw and the rod in the surgical management of thoracolumbar fractures. Overview of Literature: Biomechanics studies showed that the ultimate load, yield strength, and cycles to failure were significantly lower with cannulated (poly-axial head) pedicle comparing to solid core (mono-axial head). Methods: The medical charts of patients with thoracolumbar fractures who underwent pedicle screw fixation with cannulated or solid pedicle screws were retrospectively reviewed; the subjects were followed up from January 2011 to December 2015. Results: Total 178 patients (average age, $36.1{\pm}12.4years$; men, 142 [84.3%]; women, 28 [15.7%]) with thoracolumbar fractures who underwent surgery and were followed up at Hamad Medical Corporation were classified, based on the screw type as those with cannulated screws and those with solid screws. The most commonly affected level was L1, followed by L2 and D12. Surgical correction of the local kyphotic angle was significantly different in the groups; however, there was no significant difference in the loss of correction of the local kyphotic angle of the groups. Surgical correction of the reduction in the vertebral body height showed statistical significance, while the average loss of correction in the reduction of the vertebral body height was not significantly different. The measurement of the angles made by the screws on the rods was not significantly different between the cannulated (poly-axial head) and solid (mono-axial head) screw groups. Conclusions: Solid screws were superior in terms of providing increased correction of the kyphotic angle and height of the fractured vertebra than the cannulated screws; however, no difference was noted between the screws in the maintenance of the superior and inferior angles of the screw with the rod.

LCA 기반 PSC 교량의 환경부하 특성분석에 대한 연구 (An Analysis of the Characteristics of Environmental Impact for PSC Beam Bridges using Life Cycle Assessment)

  • 조남호;윤원건;이완렬;김경주
    • 대한토목학회논문집
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    • 제36권2호
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    • pp.297-305
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    • 2016
  • 2015년부터 한국에서 시행된 "탄소배출권 거래제"로 인해 각 분야에서 환경문제에 대응하고자 하는 움직임이 커지고 있다. 특히 환경부하량의 정확한 산출이 어려운 건설 분야에서는 ISO 14040 Series의 LCA (Life Cycle Assessment)를 적용하여 환경부하량을 산출하고자 하는 움직임이 지속되고 있다. 본 연구에서는 PSC beam 교량의 시공중 발생하는 환경부하량을 전과정 평가(Life Cycle Assessment, LCA) 방법론을 기반으로 분석하였다. 총 34개의 교량을 대상으로 분석한 결과, 건설 자재별 환경부하량은 레미콘(53.3%), 선재(9.6%), 철근(7.8%), 시멘트(6.8%) 합판(5.5%), 에너지(5.2%) 순으로 도출되었으며, 환경 범주별 환경부하량은 지구온난화(45.5%), 자원고갈(30.4%), 인체독성(10.5%), 광화학산화물생성(8.9%) 순으로 도출되었다. 향후 LCA를 기획 및 설계 단계에서 도입한다면, 환경부하를 고려한 의사결정을 수행할 수 있을 것으로 기대된다.

자동차 시트 프레임 지지대 개수에 따른 내구성 해석을 통한 융합연구 (A Convergence Study through Durability Analysis due to the Number of Automotive Seat Frame Supports)

  • 최계광;조재웅
    • 한국융합학회논문지
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    • 제9권8호
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    • pp.155-160
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    • 2018
  • 자동차 시트는 주행시 운전자의 편의와 안전을 제공하는 하나의 부품이다. 최근 그 시트는 의자와 같은 용도 외에 외부의 충격이나 진동으로부터 운전자를 보호하고 편의를 주는 역할을 하고 있다. 자동차의 충돌 안전성 및 내구성과 같이 시트 프레임의 구조적인 기능에 대한 설계가 중요하다. 본 연구에서는 시트 프레임의 구조적인 안전성과 내구성을 높이기 위하여 시트 백 프레임 부분에 환봉을 1개씩 증가하여 시트를 설계하였다. 설계 및 해석 프로그램으로는 CATIA와 ANSYS를 사용하여 본 연구를 수행하였다. 구조해석과 진동해석을 통한 본 연구 결과로서는 Model 4가 타 모델 대비 더 뛰어난 내구성을 가지는 것을 알 수 있었다. 이 결과를 이용함으로서 구조적인 안전성과 내구성을 가진 자동차 시트 프레임 설계를 할 때에 유용한 자료가 될 것이라고 사료되며, 자동차 시트 프레임의 디자인을 융합기술에 접목하여 미적 감각을 나타낼 수 있다.

A comparative study on the impact of Gd2O3 burnable neutron absorber in UO2 and (U, Th)O2 fuels

  • Uguru, Edwin Humphrey;Sani, S.F.Abdul;Khandaker, Mayeen Uddin;Rabir, Mohamad Hairie;Karim, Julia Abdul
    • Nuclear Engineering and Technology
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    • 제52권6호
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    • pp.1099-1109
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    • 2020
  • The performance of gadolinium burnable absorber (GdBA) for reactivity control in UO2 and (U, Th)O2 fuels and its impact on spent fuel characteristics was performed. Five fuel assemblies: one without GdBA fuel rod and four each containing 16, 24, 34 and 44 GdBA fuel rods in both fuels were investigated. Reactivity swing in all the FAs with GdBA rods in UO2 fuel was higher than their counterparts with similar GdBA fuel rods in (U, Th)O2 fuel. The excess reactivity in all FAs with (U, Th)O2 fuel was higher than UO2 fuel. At the end of single discharge burn-up (~ 49.64 GWd/tHM), the excess reactivity of (U, Th) O2 fuel remained positive (16,000 pcm) while UO2 fuel shows a negative value (-6,000 pcm), which suggest a longer discharge burn-up in (U, Th)O2 fuel. The concentration of plutonium isotopes and minor actinides were significantly higher in UO2 fuel than in (U, Th)O2 fuel except for 236Np. However, the concentration of non-actinides (gadolinium and iodine isotopes) except for 135Xe were respectively smaller in (U, Th)O2 fuel than in UO2 fuel but may be two times higher in (U, Th)O2 fuel due to its potential longer discharge burn-up.

Analysis of control rod driving mechanism nozzle rupture with loss of safety injection at the ATLAS experimental facility using MARS-KS and TRACE

  • Hyunjoon Jeong;Taewan Kim
    • Nuclear Engineering and Technology
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    • 제56권6호
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    • pp.2002-2010
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    • 2024
  • Korea Atomic Energy Research Institute (KAERI) has operated an integral effect test facility, the Advanced Thermal-Hydraulic Test Loop for Accident Simulation (ATLAS), with reference to the APR1400 (Advanced Power Reactor 1400) for tests for transient and design basis accidents simulation. A test for a loss of coolant accident (LOCA) at the top of the reactor pressure vessel (RPV) had been conducted at ATLAS to address the impact of the loss of safety injections (LSI) and to evaluate accident management (AM) actions during the postulated accident. The experimental data has been utilized to validate system analysis codes within a framework of the domestic standard problem program organized by KAERI in collaboration with Korea Institute of Nuclear Safety. In this study, the test has been analyzed by using thermal-hydraulic system analysis codes, MARS-KS 1.5 and TRACE 5.0 Patch 6, and a comparative analysis with experimental and calculation results has been performed. The main objective of this study is the investigation of the thermal-hydraulic phenomena during a small break LOCA at the RPV upper head with the LSI as well as the predictability of the system analysis codes after the AM actions during the test. The results from both codes reveal that overall physical behaviors during the accident are predicted by the codes, appropriately, including the excursion of the peak cladding temperature because of the LSI. It is also confirmed that the core integrity is maintained with the proposed AM action. Considering the break location, a sensitivity analysis for the nodalization of the upper head has been conducted. The sensitivity analysis indicates that the nodalization gave a significant impact on the analysis result. The result emphasizes the importance of the nodalization which should be performed with a consideration of the physical phenomena occurs during the transient.

레이저 용접된 박판 지르코늄 합금의 피로특성 (Fatigue Characteristics of Laser Welded Zirconium Alloy Thin Sheet)

  • 정동희;김재훈;윤용근;박준규;전경락
    • Journal of Welding and Joining
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    • 제30권1호
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    • pp.59-63
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    • 2012
  • The spacer grid is one of the main structural components in a fuel assembly. It supports fuel rods, guides cooling water and maintains geometry from external impact load and cyclic stress by the vibration of nuclear fuel rod, it is necessary to have sufficient strength against dynamic external load and fatigue strength. In this study, the mechanical properties and fatigue characteristics of laser beam welded zircaloy thin sheet are examined. The material used in this study is a zirconium alloy with 0.66 mm of thickness. The fatigue strength under cyclic load was evaluated at stress ratio R=0.1. S-N curves are presented with statistical testing method recommend by JSME- S002 and compared with S-N curves at R.T. and $315^{\circ}C$. As a result of the experimental approach, the design guide of fatigue strength is proposed and the results obtained from this study are expected to be useful data for spacer gird design.

벼의 규소체로부터 세라믹 분말제조에 관한 연구 I. 회전칼날절단 방식에 의한 왕겨 분화와 그에 따른 밀도변화 (Studies on Ceramic Powder Fabrication from Rice Phytoliths I. Pulverization of Bice Husks Using Rotating Knife Cutting Method and Changes of Their Densities)

  • 강대갑
    • 한국분말재료학회지
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    • 제2권2호
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    • pp.135-141
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    • 1995
  • As the first step of study on fabrication of ceramic powders from phytoliths in rice, especially in rice husks, pulverization method of rice husks and the properties of milled rice husks were investigated. Impact methods, such as ball milling, were not meaningful for pulverizing elastic and thin fabric structure of rice husks. The most effective one was cutting method. In the present work, a rotating knife cutting method was applied to pulverizing rice husks. A 40-mesh screen was inserted under the rotating knives. The most portion of the milled powder was found in -50/+100 mesh section. Morphology of the milled rice husks revealed that the husks larger than 70 mesh were flake-like shape, at -70/+100 mesh section relatively equi-axed shape, at -170/+325 mesh section rod-like shape, and below 325 mesh section dust-like shape. Tap density of raw rice husks was about 0.1 $g/cm^3$, while those of milled rice husks were over $0.4 g/cm^3$. This meant that, for a given volume of reactor, raw material charge can be increased more that 4 times when using milled rice husks than unmilled one. True densities of unmilled and milled rice husks were higher than $1.4 g/cm^3$, and increased with decreasing milled sizes.

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Regional Cathodic Protection Design of a Natural Gas Distribution Station

  • Yabo, Hu;Feng, Zhang;Jun, Zhao
    • Corrosion Science and Technology
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    • 제16권5호
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    • pp.235-240
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    • 2017
  • Regional cathodic protection has significant impact on pipeline integrity management. After risk analyses of a newly built gas distribution station constructed in an area with large dwelling density, risk score was high because of potential threat caused by galvanic corrosion. Except reinforced steel in concrete, there are four kinds of metal buried under earth: carbon steel, galvanized flat steel, zinc rod and graphite module. To protect buried pipeline from external corrosion, design and construction of regional cathodic protection was proposed. Current density was measured with potential using potential dynamic test and boundary element method (BEM) was used to calculate current requirement and optimize best anode placement during design. From our calculation on the potential, optimized conditions for this area were that an applied current was 3A and anode was placed at 40 meters deep from the soil surface. It results in potential range between $-1.128V_{CSE}$ and $-0.863V_{CSE}$, meeting the $-0.85V_{CSE}$ criterion and the $-1.2V_{CSE}$ criterion that no potential was more negative than $-1.2V_{CSE}$ to cause hydrogen evolution at defects in coating of the pipeline.