• 제목/요약/키워드: Rate Stick

검색결과 81건 처리시간 0.023초

화학기계적 연마(CMP) 공정에서의 트라이볼로지 연구 동향 (Tribology Research Trends in Chemical Mechanical Polishing (CMP) Process)

  • 이현섭
    • Tribology and Lubricants
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    • 제34권3호
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    • pp.115-122
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    • 2018
  • Chemical mechanical polishing (CMP) is a hybrid processing method in which the surface of a wafer is planarized by chemical and mechanical material removal. Since mechanical material removal in CMP is caused by the rolling or sliding of abrasive particles, interfacial friction during processing greatly influences the CMP results. In this paper, the trend of tribology research on CMP process is discussed. First, various friction force monitoring methods are introduced, and three elements in the CMP tribo-system are defined based on the material removal mechanism of the CMP process. Tribological studies on the CMP process include studies of interfacial friction due to changes in consumables such as slurry and polishing pad, modeling of material removal rate using contact mechanics, and stick-slip friction and scratches. The real area of contact (RCA) between the polishing pad and wafer also has a significant influence on the polishing result in the CMP process, and many researchers have studied RCA control and prediction. Despite the fact that the CMP process is a hybrid process using chemical reactions and mechanical material removal, tribological studies to date have yet to clarify the effects of chemical reactions on interfacial friction. In addition, it is necessary to clarify the relationship between the interface friction phenomenon and physical surface defects in CMP, and the cause of their occurrence.

간호대학생의 주사침 자상에 대한 지식, 이행 및 위험인식 (Knowledge, Compliance and Levels of Risk Factor Recognition for Needlestick Injuries in Student Nurses)

  • 박선남;이은영;김경미;한숙정
    • 기본간호학회지
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    • 제12권3호
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    • pp.337-346
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    • 2005
  • Purpose: The purpose of this study was to investigate the levels in student nurse of knowledge, compliance and risk factor recognition for needlestick injuries. Method: Nine hundred and thirty eight(938) student nurse from 3 universities and 3 junior colleges participated in this study. Completed questionnaires were collected between October and November 2004. They were analyzed by using the descriptive statistics and $x^2$-test, t-test with the SAS program, Results: There were no significant differences in the general characteristics of participants between the two groups-Needlestick Injury(NSI) group and non-Needle stick Injury(non-NSI) group. The scores for knowledge levels of treatment after needle stick injuries and the risk factor recognition level were significantly higher in the NSI group. The scores for performance level as to handling and using needles after needlestick injuries were significantly higher in the non-NSI group. Conclusion: It is necessary to develop a preventive program to decrease the needlestick injury rate among student nurse.

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Fretting Wear and Friction of lnconel 690 for Steam Generator Tube in Elevated Temperature Water

  • Lee, Young-Ze;Lim, Min-Kyu;Oh, Se-Doo
    • KSTLE International Journal
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    • 제3권1호
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    • pp.49-53
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    • 2002
  • Inconel 690 for nuclear steam generator tube has more chromium than the conventionally used Inconel 600 in order to increase the corrosion resistance. TD evaluate the tribological characteristics under fretting condition the fretting tests as well as sliding tests were carried out in elevated temperature water environment. Fretting tests of the cross-cylinder type were done under various vibrating amplitudes and applied normal loads in order to measure the friction forces and wear volumes. Also, the conventional sliding tests of pin-en-disk type were carried out to compare the test results. In fretting, the friction was very sensitive to the load and the amplitude. The friction coefficient decreased with increasing load and decreasing amplitude. Also, the wear of Inconel 690 can be predictable using the work rate model. Depending on normal loads and vibrating amplitudes, distinctively different wear mechanisms and of ten drastically different wear rates can occur. It was fecund that the fretting wear coefficients in water were increased as increasing the temperature of water.

습지 수제부에서 삽목방법에 따른 갯버들 생장율 및 토양 유실 억제 효과 (The Growth Rate of Salix Gracilistyla Miq. and its Effect of Protecting Soil from Dispersion Depending on the Planting Method Applied to Shore-marginal Slope)

  • 이춘석;류남형
    • 한국환경복원기술학회지
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    • 제6권3호
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    • pp.56-68
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    • 2003
  • The main purpose of this study was to verify the shore margin protection effect of the root system of Salix gracilistyla Miq. developed from direct sticking cuttings on wetland, through the measurement of root growth and comparison of soil slaking rate depending on the planting method applied to shore-marginal slope. Comparison of growth rate and soil dispersion rate was made between five planted slope and one naked slope. The planting methods applied to the planted slope were (a) horizontally layed burying of stick(45cm) bundle (b) horizontally layed covering the slope with sticks (c) horizontally fencing with normal cuttings(20cm) (d) elected sticking of normal cutting at equal distances (e) random scattering short cuttings(3-4cm). As results, the most effective planting method was horizontally layed burying, and in order to increase its efficiency scattering the live stem chips in 2-3cm on the slope is recommended. The growth of root was negatively regressive to the distance from water floor.

시료 두께에 의한 저온진공건조기의 열적 특성에 관한 연구 (A Study on the Thermal Characteristics of the Low Temperature Vacuum Dryer by Material Layers)

  • 최순열;문수범
    • Journal of Advanced Marine Engineering and Technology
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    • 제26권2호
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    • pp.226-232
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    • 2002
  • In tradition, there have been two kinds of drying methods, which are sun drying and artificial drying. The sun drying method which has been adopted traditionally has been replaced by the hot-air drying method which is one of the most general methods of artificial drying, with its simple drying system, low initial cost of drying plant, and easy operating method. But the hot-air drying method has some defects ; (1)much energy loss happens due to the discharge of hot air during the drying process, (2)control of drying rate is not easy on account of changing relative humidity of inlet air for uniform hot air temperature, (3)high temperature of floods in drying process brings about the production of low-grade drying products. Also, the hot-air drying method is inducing environmental and sanitary problems which are resulting from the emission of high temperature and high humidity air, including stick on the drying progress. Vacuum drying technique, whose drying time and 7uantity of exhausting energy is about 1/3 ~1/4 of hot air drying, is very excellent in the drying efficiency. As the results, it took about 20 hours for material to reach about 18% of the final moisture content in order to store products for a long time, from about 470% of the early moisture content at the beginning of drying, and maximum drying rate comes to about $0.35 kg/m^2hr$ at about 350% of the moisture content.

A12024-T4의 프레팅 피로균열거동에 관한 실험적 연구 (An experimental study on the fretting fatigue crack behaviour of A12024-T4)

  • 이봉훈;이순복
    • 대한기계학회논문집A
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    • 제21권3호
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    • pp.511-518
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    • 1997
  • The technique of fretting fatigue test was developed and fretting fatigue tests of A12024-T4 were conducted under several conditions. The newly developed calibration methods for measuring surface contact tractions showed good linearity and repeatability. The plate type specimen to which tow bridge type pads were attached and vision system was used to observe the crack behaviour. The oblieque cracks appeared in the early stage of crack growth and they became mode I cracks as they grow about 1 mm. The mode I transition points were found to be longer when surface tractions are higher or bulk stress is lower. Before the crack becomes mode I crack, 'well point' where crack grow about rate is minimum, was detected under every experimental condition. The crack behaviour was found to be affected by surface tractions, contact area, bulk stress. It was also found that partial slip and stick condition is most detrimental and the crack starts from the boundary of stick and slip. For gross slip crack started at the outside edge of pad. After crack mode transition, fretting fatigue cracks showed almost same behaviour of plain mode I fatigue cracks. Equivalent stress intensity factor was used to analyze the behaviour of fretting fatigue cracks and it was found that stress intensity factors can be applied to fretting fatigue cracks.

부식된 핵연료 피복관과 지지격자 사이의 프레팅 마멸 특성 (Fretting Wear Characteristics of the Corroded Fuel Cladding Tubes for Nuclear Fuel Rod against Supporting Girds)

  • 김진선;박세민;김용환;이승재;이영제
    • Tribology and Lubricants
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    • 제23권3호
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    • pp.130-133
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    • 2007
  • Fuel cladding tubes in nuclear fuel assembly are held up by supporting grids because the tubes are long and slender. Fluid flows of high-pressure and high-temperature in the tubes cause oscillating motions between tubes and supports. This is called as FIV (flow induced vibration), which causes fretting wear in contact parts of tube and support. The fretting wear of tube and support can threaten the safety of nuclear power plant. Therefore, a research about the fretting wear characteristics of tube-support is required. The fretting wear tests were performed with supporting grids and cladding tubes, especially after corrosion treatment on tubes, in water. The tests were done using various applied loads with fixed amplitude. From the results of fretting tests, the wear amounts of tube materials can be predictable by obtaining the wear coefficient using the work rate model. Due to stick phenomena the wear depth was changed as increasing load and temperature. The maximum wear depth was decreased as increasing the water temperatures. At high temperatures there are the regions of some severe adhesion due to stick phenomena.

부식된 핵연료 피복관과 지지격자 사이의 프레팅 마멸 특성 (Fretting Wear Characteristics of the Corroded Fuel Cladding Tubes for Nuclear Fuel Rod against Supporting Girds)

  • 이영제;김진선;박세민;김용환;이승재
    • Tribology and Lubricants
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    • 제24권3호
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    • pp.129-132
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    • 2008
  • Fuel cladding tubes in nuclear fuel assembly are held up by supporting grids because the tubes are long and slender. Fluid flows of high-pressure and high-temperature in the tubes cause oscillating motions between tubes and supports. This is called as FIV (flow induced vibration), which causes fretting wear in contact parts of tube and support. The fretting wear of tube and support can threaten the safety of nuclear power plant. Therefore, a research about the fretting wear characteristics of tube-support is required. The fretting wear tests were performed with supporting grids and cladding tubes, especially after corrosion treatment on tubes, in water. The tests were done using various applied loads with fixed amplitude. From the results of fretting tests, the wear amounts of tube materials can be predictable by obtaining the wear coefficient using the work rate model. Due to stick phenomena the wear depth was changed as increasing load and temperature. The maximum wear depth was decreased as increasing the water temperatures. At high temperatures there are the regions of some severe adhesion due to stick phenomena.

고려엉겅퀴 재배지에서 발생한 우리대벌레 공간분포 및 기주식물 (Spatial Distribution and Host Plants of the Ramulus koreanus (Phasmida; Phasmatidae) in Korean Thistle Cultivation)

  • 손민웅;정충렬;권기면;정철의
    • 한국응용곤충학회지
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    • 제59권4호
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    • pp.281-293
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    • 2020
  • 고려엉겅퀴는 강원도에서 곤드레라는 음식 재료로 재배하는 작물이다. 고려엉겅퀴에 대한 정기적인 병해충 모니터링 중 우리대벌레의 국부적인 발생으로 인한 큰 피해를 발견하였고, 우리대벌레의 동정과 생태학적 특성을 보고한다. 본 조사는 2019년 5월 28일부터 동년 10월 1일까지 강원도 정선군에 있는 3곳의 고려엉겅퀴 재배지에서 실시하였다. 해당 포장에서 채집한 우리대벌레의 형태적, 분자 생물적 분석으로 대벌레과(Phasmida) 계열의 Ramulus koreanus Kwon Ha et Lee로 동정하였다. 우리대벌레는 6월 11일부터 8월 22일까지 고려엉겅퀴 포장에서 발생하였으며, 7월 23일에 최대 발생 밀도를 보였다. Taylor's power law와 Greens index를 이용하여 공간분포를 분석한 결과 무작위로 분포하는 것을 확인하였다. 우리대벌레의 고려엉겅퀴 일일 섭식량은 성충 기준 60.98 ± 4.35 ㎠ 였으며, 주요 기주식물은 가래나무와 아로니아였다. 우리대벌레 발생 메커니즘과 우리대벌레가 농업과 산림 생태계에 미칠 수 있는 영향 및 농작물 피해를 줄이기 위해 그 방법을 추구할 것이다.

고에너지 물질의 연소반응 해석을 위한 반응속도식 개발 및 정의에 관한 연구 (A Study on Development of Reaction Rate Equation for Reactive Flow Simulation in Energetic Materials)

  • 김보훈;여재익
    • 한국추진공학회지
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    • 제16권5호
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    • pp.47-57
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    • 2012
  • 고에너지 물질의 연소 현상을 해석하기 위하여 반드시 필요한 반응속도식과 이를 구성하고 있는 미 정상수를 결정하는 이론적 방법을 제안하였다. 개선된 I&G 모델은 기존의 반응속도식이 갖던 문제점들을 효과적으로 극복하면서 동시에 중요한 물리적 의미를 내포하는 형태로 제안되었다. 이는 공극붕괴(void collapse)로 인한 hotspot의 생성을 의미하는 점화 모델과 폭굉(detonation)으로의 천이를 의미하는 화염 발달 모델의 합으로 구성되어 있다. 또한 함께 소개된 이론적 모델은 고에너지 물질의 수치해석 기법인 Hydrocode를 사용하기 전에 미정상수 $b,\;G,\;x,\;I$를 결정함으로써 특정 고에너지 물질의 연소 특성을 규명하는데 사용된다. 이론적 방법은 기존의 고에너지 물질의 연소 시험을 모사한 수치해석적 방식보다 효율적이고 정확도가 높은 결과를 제공하므로 진일보 된 방법이라고 할 수 있다.