• Title/Summary/Keyword: Exposure Device

검색결과 429건 처리시간 0.035초

커튼월에 적용된 구조용 실링재의 옥외폭로와 실내복합열화 처리방법에 따른 내풍압성능 비교연구 (A Study on Comparison of Outdoor Wind Pressure Performance According to Outdoor Exposure and Acceleration Deterioration Methods of Structural Sealants Applied to Curtain Wall)

  • 장필성;홍순구;김성래
    • 한국산학기술학회논문지
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    • 제19권9호
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    • pp.279-287
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    • 2018
  • 실란트는 현대 건축물의 중요한 요소로 사용되고 있으며, 습기, 공기, 기타 물질의 침입에 대한 방벽을 제공함으로서 내후성에 대한 건물 보호의 역할을 한다. 다양한 환경에 노출되어 물리적, 화학적, 기계적 특성이 변화되어 수명이 단축되는 경우가 많으며, UV, 습기, 온도 신축 등은 내구성과 직결되는 중요한 이슈이다. 본 연구에서는 구조용 실링마감재의 내구성능을 실내에서 검증하기 위한 장비로서 외기의 환경을 모사할 수 있는 복합열화시험 챔버를 제작하였다. 황사, 산성비, 미생물에 의한 오염 등 특이 기상 상황의 재현은 어려우며 외기 환경을 100 % 모사하는 것은 불가능한 것으로 판단되며, 구조용 실링재의 옥외폭로시험방법과 복합열화시험장치에 대한 내후성 시험 결과 간의 상관관계를 통해 재현성을 확보하고자 연구하였다. 옥외폭로시험의 변위량 시험 결과 실링재의 응집력이 분해되어 연질화가 진행되는 것으로 판단되었고, 옥외폭로 1년 후 변위는 초기 물성치보다 3600 Pa에서 3배 정도 차이가 나는것을 볼 수 있었고, 비교제품의 경우 최대 7배까지 변위가 차이나는 것으로 확인되었다. 복합열화시험장치에서 변위시험결과 열화되어 탄성 및 인장특성이 감소하는 경향을 나타내었다. 변성실리콘 실링재의 경우는 현재 400 Cycle을 완료하여 옥외폭로 12개월의 물성저하를 확인하였다. 시험체의 변형은 육안으로는 확인할 수 없어 상대적으로 실리콘 실링재 제품보다 상태 안정성이 양호한 것으로 판단된다. 옥외폭로시험 결과, 복합열화시험장치가 체계화되어 관련 지침 또는 규격 등에 제안된다면, 실제 사용환경에서 12개월의 예상수명을 실내에서 3개월 미만에서 검증할 수 있는 방법으로 향후, 경제적 손실저감, 공기단축, 설계에 예상 가능한 재료의 선정 등에 활용될 것으로 기대된다.

고휘도 휴대용 디스플레이를 위한 액정소자의 폴리스타일렌 배향막에 관한 연구 (Chemically modulated polystyrene surface using various ion beam exposure time for liquid crystal alignment of high brightness mobile display)

  • 조명현;이호영
    • 한국위성정보통신학회논문지
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    • 제9권3호
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    • pp.22-26
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    • 2014
  • 본 연구에서는 액정의 수직배향을 달성하기 위해서 특별히 제조된 폴리스타일렌 박막에 다양한 이온빔을 조사하는 방법을 사용하였다. 일반적으로 폴리스타일렌 수지는 통상의 폴리이미드 계열의 수지에 비해서 박막코팅을 하였을 때 보다 우수한 투과율을 나타내므로, 투과형 디스플레이로 사용되는 LCD의 배향막 재료로 더 적합하다고 생각되었다. 특히 고휘도이면서 저전력 사양을 달성하여야 하는 휴대용 디스플레이에서의 응용가능성이 기대되었다. 그러나, 일반적인 러빙법에 의한 배향처리에 대해서는 액정분자의 배향성이 폴리이미드 계열의 재료에 비해서 열등하여 사용되지 못하였다. 본 연구에서는 폴리스타일렌 계열의 박막재료를 배향막으로 가공함에 있어서 새로운 이온빔 조사법에 의한 비접촉식 배향법을 사용하였으며, 배향성과 액정분자의 프리틸트각 특성에 대해서 정량적인 결과를 얻을 수 있었다. 실험에서는 폴리스타일렌 수지에 이온빔의 조사시간을 15초까지 변화시키면서 액정분자의 배향성 및 프리틸트각의 특성을 측정하였다. 측정결과 스마트폰 및 휴대용 정보단말기 등의 디스플레이에 적합한 고투과율 액정표시소자의 구현이 가능하였다.

디지털흉부X선촬영에서 검출기 방식에 따른 최적의 노출조건 (Optimal Exposure Conditions according to Detector Type in Chest Digital Radiography)

  • 이원정
    • 대한안전경영과학회지
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    • 제17권4호
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    • pp.213-221
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    • 2015
  • The aim of this study was to set up the optimal exposure condition according to detector type considering image quality (IQ) with radiation dose in chest digital radiography. We used three detector type such as flat-panel detector (FP) and computed radiography (CR), and charge-coupled device (CCD). Entrance surface dose (ESD) was measured at each exposure condition combined tube voltage with tube current using dosimeter, after attaching on human phantom, it was repeated 3 times. Phantom images were evaluated independently by three chest radiologists after blinding image informations. Standard exposure condition using each institution was 117 kVp-AEC at FP and 117 kVp-8 mAs at CR, and 117 kVp-8 mAs at CCD. Statistical analysis was performed by One way ANOVA (Dunnett T3 test) using SPSS ver. 19.0. In FP, IQ scores were not significant difference between 102 kVp-4 mAs and 117 kVp-AEC (28.4 vs. 31.1, p=1.000), even though ESD was decreased up to 50% ($62.3{\mu}Gy$ vs. $125.1{\mu}Gy$). In CR, ESD was greatly decreased from 117 kVp-8 mAs to 90 kVp-8 mAs without significant difference of IQ score (p=1.000, 24.6 vs. 19.5). In CCD, IQ score of 117 kVp-8 mAs was similar with 109 kVp-8 mAs (29.6 vs. 29.0), with decreasing from $320.8{\mu}Gy$ to $284.7{\mu}Gy$ (about 11%). We conclude that optimal x-ray exposure condition for chest digital radiography is 102 kVp-4 mAs in FP and 90 kVp-8 mAs in CR, and 109 kVp-8 mAs in CCD.

Use of Portable Global Positioning System (GPS) Devices in Exposure Analysis for Time-location Measurement

  • Lee, Ki-Young;Kim, Joung-Yoon;Putti, Kiran;Bennett, Deborah H.;Cassady, Diana;Hertz-Picciotto, Irva
    • 한국환경보건학회지
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    • 제35권6호
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    • pp.461-467
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    • 2009
  • Exposure analysis is a critical component of determining the health impact of pollutants. Global positioning systems (GPS) could be useful in developing time-location information for use in exposure analysis. This study compares four low cost GPS receivers with data logging capability (Garmin 60, Garmin Forerunner 201, GeoStats GeoLogger and Skytrx minitracker MT4100) in terms of accuracy, precision, and ease of use. The accuracy of the devices was determined at two known National Geodetic Survey points. The coordinates logged by the devices were compared when the devices were carried while walking and driving. The Garmin 60 showed better accuracy and precision than the GeoLogger when they were placed at the geodetic points. The Forerunner and Skytrx did not record when they were kept stationary. When the subject wore the devices while walking, the location of the devices differed by about 8 m on average between any two device combinations involving the four devices. The distance between the coordinates logged by the devices decreased when the devices were carried with their antennas facing the sky. All the devices showed similar routes when they were used in a car. All the devices except the Forerunner had satisfactory signal reception when they were worn and when they were carried in the car. The GeoLogger is less comfortable for the subject because of specific wearing requirements. This evaluation found that the Garmin 60 and the Skytrx may be useful in personal exposure analysis studies to record time-location data.

Role of Non-Thermal DBD Plasma on Cell Migration and Cell Proliferation in Wound Healing

  • Ali, Anser;Lee, Seung Hyun;Kim, Yong Hee;Uhm, Han Sup;Choi, Eun Ha;Park, Bong Joo
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.526-526
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    • 2013
  • Plasma technology isbeing developed for a range of medical applications including wound healing. However, the effect of plasma on many cells and tissues is unclear. Cell migration and cell proliferation are very important biological processes which are affected by plasma exposure and might be a potential target for plasma therapy during wound healing treatment. In this study, we confirmed the plasma exposure time and incubation time after plasma treatment in skin fibroblast (L-929 cells) to evaluate the optimal conditions forplasma exposure to the cell in-vitro. In addition, we used a scratch method to generate artificial wound for evaluating the cell migration by plasma treatment. Where, the cells were treated with plasma and migration rate was observed by live-cell imaging device. To find the cell proliferation, cell viability assay was executed. The results of this study indicate the increased cell proliferation and migration on mild plasma treatment. The mechanisms for cell migration and cell proliferation after plasma treatment for future studies will be discussed.

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Characterization of Low-temperature SU-8 Negative Photoresist Processing for MEMS Applications

  • May Gary S.;Han, Seung-Soo;Hong, Sang-Jeen
    • Transactions on Electrical and Electronic Materials
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    • 제6권4호
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    • pp.135-139
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    • 2005
  • In this paper, negative SU-8 photoresist processed at low temperature is characterized in terms of delamination. Based on a $3^3$ factorial designed experiment, 27 samples are fabricated, and the degree of delamination is measured for each. In addition, nine samples are fabricated for the purpose of verification. Employing the. neural network modeling technique, a process model is established, and response surfaces are generated to investigate degree of delamination associated with three process parameters: post exposure bake (PEB) temperature, PEB time, and exposure energy. From the response surfaces generated, two significant parameters associated with delamination are identified, and their effects on delamination are analyzed. Higher PEB temperature at a fixed PEB time results in a greater degree of delamination. In addition, a higher dose of exposure energy lowers the temperature at which the delamination begins and also results in a larger degree of delamination. These results identify acceptable ranges of the three process variables to avoid delamination of SU-8 film, which in turn might lead to potential defects in MEMS device fabrication.

Health effects of electromagnetic fields on children

  • Moon, Jin-Hwa
    • Clinical and Experimental Pediatrics
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    • 제63권11호
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    • pp.422-428
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    • 2020
  • In today's world, most children are exposed to various manmade electromagnetic fields (EMFs). EMFs are electromagnetic waves less than 300 GHz. A developing child's brain is vulnerable to electromagnetic radiation; thus, their caregivers' concerns about the health effects of EMFs are increasing. EMF exposure is divided into 2 categories: extremely low frequencies (ELFs; 3-3,000 Hz), involving high-voltage transmission lines and in-house wiring; and radiofrequencies (RFs; 30 kHz to 300 GHz), involving mobile phones, smart devices, base stations, WiFi, and 5G technologies. The biological effects of EMFs on humans include stimulation, thermal, and nonthermal, the latter of which is the least known. Among the various health issues related to EMFs, the most important issue is human carcinogenicity. According to the International Agency for Research on Cancer's (IARC's) evaluation of carcinogenic risks to humans, ELFs and RFs were evaluated as possible human carcinogens (Group 2B). However, the World Health Organization's (WHO's) view of EMFs remains undetermined. This article reviews the current knowledge of EMF exposure on humans, specifically children. EMF exposure sources, biological effects, current WHO and IARC opinions on carcinogenicity, and effects of EMF exposures on children will be discussed. As well-controlled EMF experiments in children are nearly impossible, scientific knowledge should be interpreted objectively. Precautionary approaches are recommended for children until the potential health effects of EMF are confirmed.

Stability Assessment of Lead Sulfide Colloidal Quantum Dot Based Schottky Solar Cell

  • Song, Jung-Hoon;Kim, Jun-Kwan;An, Hye-Jin;Choi, Hye-Kyoung;Jeong, So-Hee
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.413-413
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    • 2012
  • Lead sulfide (PbS) Colloidal quantum dots (CQDs) are promising material for the photovoltaic device due to its various outstanding properties such as tunable band-gap, solution processability, and infrared absorption. More importantly, PbS CQDs have large exciton Bohr radius of 20 nm due to the uniquely large dielectric constants that result in the strong quantum confinement. To exploit desirable properties in photovoltaic device, it is essential to fabricate a device exhibiting stable performance. Unfortunately, the performance of PbS NQDs based Schottky solar cell is considerably degraded according to the exposure in the air. The air-exposed degradation originates on the oxidation of interface between PbS NQDS layer and metal electrode. Therefore, it is necessary to enhance the stability of Schottky junction device by inserting a passivation layer. We investigate the effect of insertion of passivation layer on the performance of Schottky junction solar cells using PbS NQDs with band-gap of 1.3 eV. Schottky solar cell is the simple photovoltaic device with junction between semiconducting layer and metal electrode which a significant built-in-potential is established due to the workfunction difference between two materials. Although the device without passivation layer significantly degraded in several hours, considerable enhancement of stability can be obtained by inserting the very thin LiF layer (<1 nm) as a passivation layer. In this study, LiF layer is inserted between PbS NQDs layer and metal as an interface passivation layer. From the results, we can conclude that employment of very thin LiF layer is effective to enhance the stability of Schottky junction solar cells. We believe that this passivation layer is applicable not only to the PbS NQDs based solar cell, but also the various NQDs materials in order to enhance the stability of the device.

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Feasibility of Using the Clamp Meter in Measuring X-Ray Tube Current

  • Kim, Sung-Chul
    • International Journal of Contents
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    • 제9권1호
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    • pp.38-41
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    • 2013
  • The clamp meter maintains electric safety as a non-invasive method while measuring the absolute value of tube current with it has been recently developed for an X-ray high-tension cable. Especially this can show high accuracy at short X-ray exposure time. Considering such a condition, this study is to evaluate the feasibility of a clamp meter in measuring X-ray tube current by taking the measurements and comparing with those of the Dynalyzer III which has been considered as a standard measuring device. From measuring the tube current accuracy depending on changes in tube voltage and exposure time, the clamp meter showed higher accuracy rate which was -1.3~4.2% difference. Thus clamp meter can be used for clinical radiologists who are not familiar electric circuit to manage X-ray devices easily and correctly in the future.

Characteristics of Organic Thin Film Transistors with UVtreated Surface of Synthesized Gate Insulator

  • Bong, Kang-Wook;Park, Jae-Hoon;Kang, Jong-Mook;Kim, Hye-Min;Lee, Hyun-Jung;Yi, Mi-Hye;Choi, Jong-Sun
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2007년도 7th International Meeting on Information Display 제7권2호
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    • pp.1295-1297
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    • 2007
  • In this study, we report that the characteristics of OTFTs can be improved by the UV exposure of the surface of the synthesized photo-reactive gate insulator, and be optimized by controlling the exposure time. As a gate dielectric, the modified PVP was prepared by substituting hydroxyl group in PVP with cinnamoyl group. The synthesis details and the effects of the modified PVP on the device performance are discussed.

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