• 제목/요약/키워드: thermal humidity

검색결과 645건 처리시간 0.029초

Reliable Anisotropic Conductive Adhesives Flip Chip on Organic Substrates For High Frequency Applications

  • Paik, Kyung-Wook;Yim, Myung-Jin;Kwon, Woon-Seong
    • 한국마이크로전자및패키징학회:학술대회논문집
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    • 한국마이크로전자및패키징학회 2001년도 Proceedings of 6th International Joint Symposium on Microeletronics and Packaging
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    • pp.35-43
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    • 2001
  • Flip chip assembly on organic substrates using ACAs have received much attentions due to many advantages such as easier processing, good electrical performance, lower cost, and low temperature processing compatible with organic substrates. ACAs are generally composed of epoxy polymer resin and small amount of conductive fillers (less than 10 wt.%). As a result, ACAs have almost the same CTE values as an epoxy material itself which are higher than conventional underfill materials which contains lots of fillers. Therefore, it is necessary to lower the CTE value of ACAs to obtain more reliable flip chip assembly on organic substrates using ACAs. To modify the ACA composite materials with some amount of conductive fillers, non-conductive fillers were incorporated into ACAs. In this paper, we investigated the effect of fillers on the thermo-mechanical properties of modified ACA composite materials and the reliability of flip chip assembly on organic substrates using modified ACA composite materials. Contact resistance changes were measured during reliability tests such as thermal cycling, high humidity and temperature, and high temperature at dry condition. It was observed that reliability results were significantly affected by CTEs of ACA materials especially at the thermal cycling test. Results showed that flip chip assembly using modified ACA composites with lower CTEs and higher modulus by loading non-conducting fillers exhibited better contact resistance behavior than conventional ACAs without non-conducting fillers. Microwave model and high-frequency measurement of the ACF flip-chip interconnection was investigated using a microwave network analysis. ACF flip chip interconnection has only below 0.1nH, and very stable up to 13 GHz. Over the 13 GHz, there was significant loss because of epoxy capacitance of ACF. However, the addition of $SiO_2filler$ to the ACF lowered the dielectric constant of the ACF materials resulting in an increase of resonance frequency up to 15 GHz. Our results indicate that the electrical performance of ACF combined with electroless Wi/Au bump interconnection is comparable to that of solder joint.

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Long-Term Tropical Residency Diminishes Central Sudomotor Sensitivities in Male Subjects

  • Lee, Jeong-Beom;Bae, Jun-Sang;Shin, Young-Oh;Kang, Jong-Chul;Matsumoto, Takaaki;Toktasynovna, Aliopva Aziza;Kaimovich, Alipov Gabit;Kim, Wan-Jong;Min, Young-Ki;Yang, Hun-Mo
    • The Korean Journal of Physiology and Pharmacology
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    • 제11권6호
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    • pp.233-237
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    • 2007
  • Tropical natives (TROP) are capable of tolerating tropical heat because of their long-term adaptation to tropical environments. When exposed to heat stress, these natives tend to respond with lower sweat output, which is generally thought to be the result of heat acclimatization. The main objective of this study was to clarify central mechanisms inherent to suppressed thermal sweating in tropical natives (Malaysians) by comparing their sweating responses to those of temperate native (TEMP) (Koreans). This experiment was conducted in a thermoneutral climatic chamber ($24{\pm}0.5^{\circ}C,\;40{\pm}3%$ relative humidity). Heat loads were applied to each subject by the immersion of their lower legs in a hot water bath ($43^{\circ}C$ for 30 min). Sweat onset-time and sweat volume were compared between TROP and TEMP. The sweat onset-times on four selected points on the body ranged from 10.25 to 13.47 min in TEMP subjects, and from 16.24 to 17.83 min in TROP subjects (p<0.001). The local sweat volumes at the same sites ranged from 4.30 to $9.74 mg/cm^2$ in TEMP subjects, and from between 1.80 to $4.40mg/cm^2$ in TROP subjects (p<0.001). These results demonstrated a significant difference between TROP and TEMP subjects with regard to the manner in which they regulate their body temperatures when exposed to heat loads, and verified that long-term thermal adaptation blunts sweating sensitivities.

Proton Conducting Crosslinked Membranes by Polymer Blending of Triblock Copolymer and Poly(vinyl alcohol)

  • Lee, Do-Kyoung;Park, Jung-Tae;Choi, Jin-Kyu;Roh, Dong-Kyu;Lee, Jung-Hyun;Shul, Yong-Gun;Kim, Jong-Hak
    • Macromolecular Research
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    • 제16권6호
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    • pp.549-554
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    • 2008
  • Proton conducting crosslinked membranes were prepared using polymer blends of polystyrene-b-poly(hydroxyethyl acrylate)-b-poly(styrene sulfonic acid) (PS-b-PHEA-b-PSSA) and poly(vinyl alcohol) (PVA). PS-b-PHEA-b-PSSA triblock copolymer at 28:21:51 wt% was synthesized sequentially using atom transfer radical polymerization (ATRP). FT-IR spectroscopy showed that after thermal ($120^{\circ}C$, 2 h) and chemical (sulfosuccinic acid, SA) treatments of the membranes, the middle PHEA block of the triblock copolymer was crosslinked with PVA through an esterification reaction between the -OH group of the membrane and the -COOH group of SA. The ion exchange capacity (IEC) decreased from 1.56 to 0.61 meq/g with increasing amount of PVA. Therefore, the proton conductivity at room temperature decreased from 0.044 to 0.018 S/cm. However, the introduction of PVA resulted in a decrease in water uptake from 87.0 to 44.3%, providing good mechanical properties applicable to the membrane electrode assembly (MEA) of fuel cells. Transmission electron microscopy (TEM) showed that the membrane was microphase-separated with a nanometer range with good connectivity of the $SO_3H$ ionic aggregates. The power density of a single $H_2/O_2$ fuel cell system using the membrane with 50 wt% PVA was $230\;mW/cm^2$ at $70^{\circ}C$ with a relative humidity of 100%. Thermogravimetric analysis (TGA) also showed a decrease in the thermal stability of the membranes with increasing PVA concentration.

고체 추진제 장시간 물성거동 반응 연구 (A Study of Thermo-rheological Behaviour from Long Term Responses of Solid Composite Propellant)

  • 류태하;김낙현;길태옥;최용규
    • 한국추진공학회지
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    • 제21권1호
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    • pp.8-16
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    • 2017
  • 고체 추진기관이 노즐마개에 의해 외기와의 교환이 완벽히 차단된다면, 구조적 안정성은 제작초기 조건인 내부조성간의 잔류반응(Post Cure, Migration etc.), 그리고 자유공간 내의 산소(또는 산화방지제)와 습기(제습제)와의 반응에 종속된다. 이로부터 발생하는 혼합형 고체추진제의 기계적 특성은 매우 복잡하며, 추진기관은 발사직전까지 일교차/년교차의 끊임없는 열하중을 받게 된다. 본 연구에서는 고체 추진기관의 제조공정인 성형오븐에서 출고 후 저장안정화까지의 거동을 고체추진제의 열유변학적 단순특성을 적용하여 신속하게 산출할 수 있는 방법을 제시하였다. 이를 위해 온도제어 가능한 Endurance Test 장치를 고안 제작하였으며, 추가적으로 점진적 응력과 변형율 증가에 따른 비선형 특성도 검토한다.

준실시간 소형 풍동 시스템을 이용한 화학작용제(HD) 증발특성 연구 (A Near Real-Time Wind Tunnel System for Studying Evaporation of Chemical Agents(HD))

  • 가동하;정현숙;서지윤;이준오;이해완
    • 한국군사과학기술학회지
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    • 제22권1호
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    • pp.135-140
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    • 2019
  • Upon chemical agent release, it is of importance to study the characteristic persistence and evaporation of chemical agents from surfaces for the prediction of dispersion hazard. We have recently developed a fast and near real-time wind tunnel system proving the controlled environment(air flow, temperature, and humidity), continuously collects agent vapor and analyzes it. A thermal sorber/desorber is unnecessary to collect the vapor in the system we have developed. Instead, a tandem thermal sorber collects the vapor, which is then directly transferred to a fast gas chromatography(GC) for analysis. As a proof of concept, the evaporation of sulfur mustard agent(HD) was studied from glass, sand and concrete. The results were in an excellent agreement with those obtained from the conventional wind tunnel system.

기온 70℃의 복사열 노출 환경에서 건조와 젖은 상태의 소방용 보호장갑 착용 시 쾌적성 평가 (Wear Comfort of Firefighters Protective Gloves in Dry and Wet Conditions at 70℃ Air Temperature with Radiant Heat)

  • 김다미;김도형;이주영
    • 한국생활환경학회지
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    • 제24권1호
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    • pp.95-106
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    • 2017
  • The purpose of this study was to evaluate comfort functions while wearing firefighters' protective gloves in dry and wet conditions at $70^{\circ}C$ air temperature with radiant heat. Four types of firefighting gloves from Korea, Germany, United States, and Japan were evaluated in both dry and wet conditions by eight male firefighters. Firefighters put their hands and forearms wearing gloves into a hands-radiant chamber that maintained at an air temperature of $70{\pm}2^{\circ}C$ ($T_a$) and globe temperature $106^{\circ}C$ ($T_g$). During the exposure, subjects followed a fixed protocol of manual movements and stopped the exposure when they felt being intolerable. Results showed that completion time was extended by 6 min on average when gloves got wet and 15 min for the Japanese gloves was extended when compared to its dry condition (p<.001); microclimate humidity on the palm at the last stage was greater for wet conditions than dry conditions in the all gloves; and skin temperatures on mid-fingertip, palm, and hand were significantly lower for wet conditions than dry conditions especially for Japanese gloves (p<.001). These results indicate that the exposure time without thermal pain to radiant heat could be extended by wetting gloves during the low radiant heat exposure.

Effects of Pasternak foundation on the bending behavior of FG porous plates in hygrothermal environment

  • Bot, Ikram Kheira;Bousahla, Abdelmoumen Anis;Zemri, Amine;Sekkal, Mohamed;Kaci, Abdelhakim;Bourada, Fouad;Tounsi, Abdelouahed;Ghazwani, M.H.;Mahmoud, S.R.
    • Steel and Composite Structures
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    • 제43권6호
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    • pp.821-837
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    • 2022
  • This research is devoted to study the effects of humidity and temperature on the bending behavior of functionally graded (FG) ceramic-metal porous plates resting on Pasternak elastic foundation using a quasi-3D hyperbolic shear deformation theory developed recently. The present plate theory with only four unknowns, takes into account both transverse shear and normal deformations and satisfies the zero traction boundary conditions on the surfaces of the functionally graded plate without using shear correction factors. Material properties of porous FG plate are defined by rule of the mixture with an additional term of porosity in the through-thickness direction. The governing differential equations are obtained using the "principle of virtual work". Analytically, the Navier method is used to solve the equations that govern a simply supported FG porous plate. The obtained results are checked by comparing the results determined for the perfect and imperfect FG plates with those available in the scientific literature. Effects due to material index, porosity factors, moisture and thermal loads, foundation rigidities, geometric ratios on the FG porous plate are all examined. Finally, this research will help us to design advanced functionally graded materials to ensure better durability and efficiency for hygro-thermal environments.

감염병 대응 개인보호복의 동작성 및 열적 쾌적성: 보호 수준 및 여성 착용자 체격의 영향 (Mobility and Thermal Comfort Assessment of Personal Protective Equipment for Female Healthcare Workers: Impact of Protective Levels and Body Mass Index )

  • 김도희;전영민;이호준;강경리;이초은;이주영
    • 한국의류산업학회지
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    • 제26권1호
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    • pp.123-136
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    • 2024
  • This study aimed to assess the mobility and thermal comfort of personal protective equipment (PPE) among female healthcare workers, taking into account wearers' physique and PPE protection levels. A total of 16 participants (age: 26.3 ± 8.3 y, height: 161.5 ± 7.3 cm, body weight: 57.1 ± 11.0 kg, BMI: 21.9 ± 3.6), representing diverse body types, underwent four PPE conditions: L (Low_Plastic gown ensemble), M (Medium_Tyvek 400), H (High_Tyvek 800J with Powered Air Purifying Respirator [PAPR]), and E (Extremely high_Tychem 2000 with PAPR, Bib apron, and Chemical-resistant gloves). The mobility protocol consisted of 10 different tasks in addition to donning and doffing. The 10 tasks were repeated twice at an air temperature of 24.3 ± 0.1℃, 59±4%RH. Findings revealed a disproportionate relationship between PPE protection and wearer discomfort. Significant differences in clothing microclimate and total sweat rate were observed between the lowest (L) and highest (E) protection levels (p < 0.01), while distinctions among medium levels were inconclusive. Subjective evaluations favored conditions H and L over M and E (p < 0.05), indicating reduced heat, and humidity, increased comfort, and lower exertion. Instances of mobility discomfort, specially in the small body type group, underscored the need for a suitable PPE size system for Korean adult female medical workers. Furthermore, enhancements in gloves, shoe cover, and PAPR hood designs are essential for improving ease of movement and preventing hindrance.

ENVI-Met 시뮬레이션을 통한 도로 방향별 가로수 식재 형태에 따른 여름철 열환경 개선 효과 분석 (Analysis of Thermal Environment Modification Effects of Street Trees Depending on Planting Types and Street Directions in Summertime Using ENVI-Met Simulation)

  • 임현우;조상만;박수국
    • 한국조경학회지
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    • 제50권2호
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    • pp.1-22
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    • 2022
  • 컴퓨터 시뮬레이션 프로그램인 ENVI-met을 활용하여 여름철 도로 방향과 가로수 식재형태에 따른 도시공간의 열환경 개선 효과를 분석하였다. 수목 식재 시 낮 시간 동안의 기온과 풍속은 감소하고 상대습도는 증가하였다. 평균복사온도와 인간 열환경지수 PET(physiological equivalent temperature), UTCI(universal thermal climate index)는 수목 식재 시 감소하는 경향을 보였다. 수목 식재 시 가장 큰 변화를 보인 기상요소는 평균복사온도로, PET와 UTCI 변화량 또한 평균복사온도와 유사한 패턴을 보였다. 가장 큰 저감효과를 보인 수목식재방법은 수고가 낮고, 수관폭이 넓고, 엽면적지수가 높은 수목을 좁은 간격으로 식재하는 시나리오(LWDN)였다. 평균복사온도, PET, UTCI는 태양의 고도 및 방위와 건물의 위치에 따른 그림자 형성 조건에 따라 큰 차이를 보였으며, 건물에 의한 태양복사에너지 차단이 클수록 수목에 의한 영향이 줄어들었다. 특히, 동측과 서측 보도에서는 시간대별 저감량에서 큰 차이를 보였다. 가장 저감효과가 큰 수목식재 시나리오인 LWDN으로 식재하였을 때 서측 방면에 위치한 북서, 서, 남서측 보도는 오전 시간대인 10:00에 수목이 없는 경우에 비해 PET 8.6-12.3℃, UTCI 4.2-4.5℃, 동측 방면에 위치한 북동, 동, 남동측 보도는 오후 시간대인 16:00에 PET 8.1-11.8℃, UTCI 4.4-5.0℃로 큰 저감효과를 보였다. 반면, 가장 저감효과가 적었던 수고가 높고, 수관폭이 좁으며, 엽면적지수가 낮은 수목을 넓은 간격으로 식재하였을 때 최대 저감량은 동측 방면 보도에서 PET 1.8℃, UTCI 0.9℃ 이하, 서측 방면 보도에서 PET 3℃, UTCI 0.9℃ 이하로 적은 저감효과를 보였다. 또한, 건물에 의한 영향으로 인해 수목영향이 적은 시간대에는 수목식재 시나리오 간 평균복사온도, PET, UTCI 저감효과의 차이가 크지 않았다. 이 연구결과는 가로수 식재 시 여름철 도시 열환경 저감을 위한 모델 개발에 기초자료로서 활용가능할 것이다.

도심재생하천 내 수리적 특성이 열환경 변화에 미치는 영향 평가: 청계천을 대상으로 (Impact Assessment on the Change of Thermal Environment, According to the Hydraulic Characteristic Urban Regeneration Stream: Cheonggyecheon Case Study)

  • 김정호;이주승;윤용한
    • 환경정책연구
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    • 제14권2호
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    • pp.3-25
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    • 2015
  • 도심재생하천 내부의 수리적 특성이 열환경 변화에 미치는 영향을 알아보고자 하천의 물리적 구조와 수리적 특성, 기상요소, 온열환경을 분석하였다. 연구 대상지는 복원된 도시하천으로서 큰 의의를 가지는 청계천을 선정하였다. 유형은 물리적 구조별 녹피율의 차이에 따라 유형 I(0.0%)과 유형 II(20.2%)로 구분하였다. 여울이 끝나는 Ba지점에서 수온은 $0.2^{\circ}C$ 감소, 유속은 0.7~0.9m/s 증가, 용존산소량은 0.5~0.6mg/L 증가하였으며, 기온은 평균 $1.1{\sim}1.4^{\circ}C$ 감소, 상대습도는 평균 6.6~8.7% 증가, 풍속은 불규칙한 변화를 보였다. 습구흑구온도지수 분석결과, 유형에 따른 상류부의 하천 내부와 수면 외부의 값의 차이는 미비하였으나, 유형 I의 하류부에서 감소폭은 $0.3{\sim}0.6^{\circ}C$, 유형 II는 $0.8^{\circ}C$ 등이었다. 기온저감의 효과는 수직높이로 유형 I의 경우 120cm, 유형 II는 140cm까지 영향이 있었으며, 거리별 기온저감의 효과는 유형 I의 경우 여울이 끝나는 Ba지점 이후로 증가하였고, 유형 II의 경우 지속해서 감소하였다.

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