• 제목/요약/키워드: Thermal stability and mechanical analysis

검색결과 241건 처리시간 0.027초

$\cdot$저준위 방사성폐기물 유리화 시설의 차폐해석에 관한 연구 (A Study on the Shielding Analysis in Vitrification Facility of Low-and Intermediate Level Radioactive Wastes)

  • 이창민;이건재;지평국;박종길;하종현;송명재
    • 한국방사성폐기물학회:학술대회논문집
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    • 한국방사성폐기물학회 2003년도 가을 학술논문집
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    • pp.524-531
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    • 2003
  • $\cdot$저준위 방사성폐기물의 유리화 기술은 체적감소비, 유리고화체의 기계적 및 화학적 안전성 등으로 그 유용성이 입증되어 현재 울진 5,6호기에 상용시설의 건설이 추진되고 있다. 유리화시설은 대상폐기물의 높은 방사능 준위로 인해 방사선 안전 설계를 위해서는 차폐해석이 수반되어야 한다. 그러나 국내에서는 유리화 시설의 건설 및 운영 경험이 없으므로, 본 연구에서는 유리화 시설의 향후 상세 설계와 운영계획에 도움을 줄 수 있는 자료를 얻고자 유리화 실증시설의 구조를 따라 기존의 방사선원항을 이용하여 기기별 선량계산을 통해 방사선 차폐 해석을 수행하였다. 차폐체로서는 경제성과 열저항성이 뛰어난 콘크리트를 고려하였다.

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SR-Ivocap resin system의 물리적 특성과 체적 안정성에 관한 연구 (A STUDY ON THE PHYSICAL PROPERTIES AND VOLUMETRIC STABILITY OF SR-IVOCAP RESIN SYSTEM)

  • 은성식;권혁신;정재헌
    • 대한치과보철학회지
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    • 제36권3호
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    • pp.453-467
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    • 1998
  • This study helps to clarify conflicting reports by comparing the physical properties and accuracy of complete denture processed by the pack and press technique, continuous- pressure injection technique(SR-Ivocap system) and Mark press technique. The 6 different specimens have been evaluated using the SEM, Impact test, DSC (Differential Scanning Calorimetry) and DMTA (Dynamic Mechanical Thermal Analysis). Each sample was made of SR-Ivocap resin and QC-20 resin by different processing methods. The results were as follows ; 1. As the result of the observation on the fracture surface of resin by use of SEM, sample SR-Ivocap resin cured by continuous pressure injection method showed the most homogeneous structure. This is why molecules in SR-Ivocap resin have no orientation. 2. As the result of the Impact test in order to measure the deformity, fracture energy and impact resistance of resin, the samples with QC-20 acrylic resin and SR-Ivocap resin cured by continuous pressure injection method were exellent. 3. In consequence of measuring ${\alpha}$-glass transition temperature by use of DSC on the basis of temperature change, the glass transition temperatures of sample QC-20 resin cured by pack and press method and sample SR-Ivocap resin cured by continuous pressure injection method were very similar. Thus volumetric stability could not be evaluated only by glass transition temperature. 4. In comparing volumetric stability data by DMTA, the glass transition temperature(Tg) showed $137.88^{\circ}C$ at sample QC-20 resin cured by pack and press method and $139.78^{\circ}C$ at sample SR-Ivocap resin cured by continuous pressure injection method. Therefore sample SR-Ivocap resin cured by continuous pressure injection method seems to be superior to sample QC-20 resin cured by pack and press method in the dimensional stability at high temperature. 5. In comparing storage modulus data by DMTA, the storage modulus of sample SR-Ivocap resin cured by continuous pressure injection method was higher than that of sample QC-20 resin cured by pack and press method. So. sample SR-Ivocap resin cured by continuous pressure injection method seems to be superior to sample QC-20 resin cured by pack and press method in impact strength.

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다양한 구조의 방향족 아민으로 개질된 친유기성 MMT의 제조와 이를 이용한 폴리이미드 나노복합필름의 특성 (Preparation of Organophilic MMT Modified with Various Aromatic Amines and Characterization of Polyimide Nanocomposite Films)

  • 한승산;최길영;임승순;김용석
    • 공업화학
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    • 제17권2호
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    • pp.177-182
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    • 2006
  • 본 연구는 층상 실리케이트의 한 종류인 MMT (Montmorillonite) 표면의 금속이온을 이온 교환반응에 의해 다양한 구조를 가지고 있는 방향족 암모늄염으로 치환함으로써 내열성이 우수한 친유기성 MMT의 제조 및 이를 이용한 폴리이미드(polyimide) 나노복합재의 특성에 관한 것이다. 도입된 개질제의 구조는 내열성 및 반응성을 고려하여 아민기 및 서로 다른 종류의 알킬기가 도입된 방향족 아민을 설계하였으며, 이를 효과적으로 합성하였다. 합성된 개질제와 MMT와의 이온교환반응을 통하여 표면이 유기화된 친유기성 MMT를 제조하였다. 합성된 친유기성 MMT의 XRD 분석으로부터 층간 거리가 최대 $3.3{\AA}$ 증가된 것을 확인할 수 있었으며, 초기 열분해 온도는 $275^{\circ}C$로서 우수한 내열성을 나타내었다. 폴리아믹산과 제조된 친유기성 MMT와의 복합화를 통하여 폴리아믹산 나노복합용액을 제조하였으며, 이를 탈수 고리화하여 폴리이미드/친유기성 MMT 나노복합필름을 제조하였다. WAXD를 통하여 친유기성 MMT의 분산도를 파악하였으며 또한 친유기성 MMT의 함량에 따른 폴리이미드 나노복합필름의 기계적 특성 변화를 연구하였다.

폴리이미드의 합성과 필름의 물성에 미치는 디아민과 용매의 효과 (The Effect of Diamine and Solvent on The Synthesis of Polyimides and Their Film Properties)

  • 최형기;이호식;정창남;김점식
    • 공업화학
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    • 제2권3호
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    • pp.253-261
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    • 1991
  • 폴리이미드의 전구체인 폴리아믹산을 benzophenone tetracarboxylic dianhydride (BTDA)와 4, 4'-diamino diphenyl methane (MDA) 혹은 MDA와 3, 3'-dimethyl benzidine (OTB)의 혼합디아민과 용액축중합반응에 의하여 합성하였다. 반응용매로는 m-cresol과 m-cresol/xylene의 혼합용매를 사용하였다. TGA 분석 결과 폴리이미드 필름은 초기분해 온도가 $540^{\circ}C-590^{\circ}C$의 범위로서 내열성이 우수하였다. DSC 분석으로 중합체의 유리전이온도는 $340^{\circ}$ 이상임을 확인하였다. 폴리이미드 필름은 양호한 기계적, 전기적 물성값을 갖는 시료에서 인장강도가 $16Kg/mm^2$ 이상이었고, 절연파괴전압이 200 KV/mm 정도였다. 대체로 MDA 만을 디아민으로 사용한 단일중합체보다 MDA/OTB 공중합체의 물성이 우수하였고, m-cresol에서 합성한 중합체보다 m-cresol/xylene 혼합용매계에서 합성한 중합체의 물성값이 우수하였다.

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문화재 복원용 속(速)경화형 Epoxy계 수지의 가속열화시험 및 고장분석 연구 (Accelerated Degradation Test and Failure Analysis of Rapid Curing Epoxy Resin for Restoration of Cultural Heritage)

  • 남병직;장성윤
    • 보존과학회지
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    • 제33권6호
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    • pp.467-483
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    • 2017
  • 본 연구에서는 문화재 복원용 속(速)경화형 Epoxy계 수지인 $Araldite^{(R)}$ rapid의 온도 스트레스에 의한 열화 특성을 분석하였다. 인장강도 및 접착강도는 $40{\sim}60^{\circ}C$에서 12,624시간까지 감소하여 내구성 및 접착특성의 미약한 열화가 발생하였다. 외부 응력 및 온도에 대한 안정성은 속(速)경화형에 비해 일반 경화형 Epoxy계 수지가 우수하여, 복원부의 강도 특성 및 응력 상태를 고려한 복원재료의 적절한 선택과 적용이 요구된다. $40{\sim}60^{\circ}C$에서 12,624시간까지 색차의 증가와 광택도의 감소 등 색상 및 광택 안정성은 취약하여, 향후 광학특성의 개선을 위한 안정성 향상 연구가 필요하다. 특히 접착제의 열적 특성(중량감소량, 열분해온도, 유리전이온도)은 기계적 물성 변화에 부분적으로 관여하였고, 피착재의 계면 특성 및 접착제의 기체투과특성(수분투과도)은 접착성능의 중요인자로 작용하였다. 따라서 도자기, 벽돌 및 석재와 같은 다공성 재질의 경우 항온항습에 의한 보존환경 관리가 중요하며, 옥외 전시유물의 경우 노출환경에 의한 물성 변화를 최소화할 수 있는 보존대책의 수립이 절실하다. 향후 이러한 결과는 문화재에 사용된 Epoxy계 수지의 열화속도 및 수명예측 자료로 활용될 것으로 기대된다.

전도성 복합필름의 기상중합과 특성에 대한 연구 (Studies on the Preparation of Conducting Composite Film by a Vapor Phase in situ Polymerization)

  • 박준서;박장우
    • 공업화학
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    • 제10권6호
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    • pp.902-906
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    • 1999
  • 메틸셀루로스를 호스트고분자로 하고 copper(II) percolate를 산화제로 사용하여 기상상태에서 직접중합방법으로 전도성 복합필름을 합성하였다. 필름으로서 우수한 성형성과 기계강도를 갖고 있는 메틸셀루로즈는 PVA와 키토산과는 달리 피롤에 대하여 높은 친화성을 나타내어서 기상중합시 호스트고분자로 적합하였다. 기상중합법으로 합성된 폴리피롤은 복합재료 내에서 전도성네트워크를 형성하여 전도성 복합필름의 전기전도도는 $10^{-1}-10^{-7}S/cm$를 나타내었다. 피롤이 호스트고분자 내에서의 폴리피롤로 중합이 되는 정도를 UV-vis분광계로 확인하였다. 전도성 복합필름의 전기전도도와 기계강도는 산화제의 농도와 합성시간에 크게 의존하였다. TGA분석결과는 호스트고분자 내에 형성된 폴리피롤은 복합재료의 열적 안정성에 영향을 미치지 않는다. 전자현미경 분석결과 폴리피롤이 복합재료 내에 균일하게 침투하여 분산되어 있음을 나타내었다. DMA를 사용하여 폴리피롤과 호스트고분자와의 상용성을 조사하였으며 dynamic mechanical analysis(DMA) 분석결과 복합재료 내에서 폴리피롤의 함량이 증가되면서 상용성이 점진적으로 저하되었다.

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인공위성 반작용휠 미소진동 감쇠기의 성능 측정 (Performance Test of Isolator for Reaction Wheel Micro-Vibration)

  • 오시환;서현호;임조령;이승우
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2006년도 춘계학술대회논문집
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    • pp.376-379
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    • 2006
  • Reaction Wheel Assembly (RWA) is one of the major disturbance sources that have influence upon the Line of Sight (LOS) of payload. A micro-vibration induced by RWA is propagated through the satellite structure and decrease the LOS stability performance of payload. This effect shall be analyzed through the jitter analysis. If a requirement or specification of payload jitter level is found to be not satisfied according to the jitter analysis campaign, some modification or redesign should be done on the satellite structure or a couple of isolator should be attached on the RWA interface in order to reduce the transmitted vibration level of RWA. The purpose of ???RWA isolator test? is to roughly evaluate the performance of vibration suppression level with a passive RWA isolator made of rubber. For this test, actual RWA is used as a vibration source and a couple of cube-shaped rubber mount designed for satellite is used as a passive isolator. There may be several considerations in order to accommodate RWA isolator to spacecraft such as not only vibration reduction performance but also thermal conduction problem, mechanical size, RWA alignment problem, etc. But in this report the feasibility of RWA isolator is analyzed only in a vibration suppression point of view. As a result, high frequency vibration of RWA above 50Hz is perfectly attenuated with isolators, however, first harmonic components below 50Hz became larger due to the additional low frequency resonance modes of roll, pitch, yaw rigid body motion of RWA+bracket.

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적층 제조된 H13 공구강의 미세조직과 기계적 특성간의 상관관계 (Correlation between Microstructure and Mechanical Properties of the Additive Manufactured H13 Tool Steel)

  • 안우진;박준혁;이정섭;최중호;정임두;유지훈;김상식;성효경
    • 한국재료학회지
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    • 제28권11호
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    • pp.663-670
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    • 2018
  • H13 tool steels are widely used as metallic mold materials due to their high hardness and thermal stability. Recently, many studies are undertaken to satisfy the demands for manufacturing the complex shape of the mold using a 3D printing technique. It is reported that the mechanical properties of 3D printed materials are lower than those of commercial forged alloys owing to micropores. In this study, we investigate the effect of microstructures and defects on mechanical properties in the 3D printed H13 tool steels. H13 tool steel is fabricated using a selective laser melting(SLM) process with a scan speed of 200 mm/s and a layer thickness of $25{\mu}m$. Microstructures are observed and porosities are measured by optical and scanning electron microscopy in the X-, Y-, and Z-directions with various the build heights. Tiny keyhole type pores are observed with a porosity of 0.4 %, which shows the lowest porosity in the center region. The measured Vickers hardness is around 550 HV and the yield and tensile strength are 1400 and 1700 MPa, respectively. The tensile properties are predicted using two empirical equations through the measured values of the Vickers hardness. The prediction of tensile strength has high accuracy with the experimental data of the 3D printed H13 tool steel. The effects of porosities and unmelted powders on mechanical properties are also elucidated by the metallic fractography analysis to understand tensile and fracture behavior.

HDPE/EPDM/Boron Carbide/Triphenyl Phosphate 블렌드의 상용화제 첨가에 따른 난연성 및 기계적 물성 연구 (A Study on Flammability and Mechanical Properties of HDPE/EPDM/Boron Carbide/Triphenyl Phosphate Blends with Compatibilizer)

  • 신범식;정승태;전준표;김현빈;오승환;강필현
    • 폴리머
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    • 제36권5호
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    • pp.549-554
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    • 2012
  • 난연제 triphenyl phosphate는 HDPE(high-density polyethylene)/EPDM(ethylene-propylene diene monomer)/boron carbide 내에서 miscibility가 좋지 못하여 고분자의 기계적 물성을 크게 저하시킨다. HDPE/EPDM/boron carbide/triphenyl phosphate 블렌드의 분산성을 향상시키기 위해서 상용화제로 PE-g-MAH(polyethylene-graft-maleic anhydride)를 사용하여 블렌딩하였다. Triphenyl phosphate 함량이 증가할수록 인장강도를 크게 저하시킴을 확인하였다. 하지만 상용화제 첨가로 인하여 기계적 물성이 향상되는 것을 확인하였다. Triphenyl phosphate의 분산성의 향상은 SEM 분석을 통해서 확인하였다. HDPE/EPDM/boron carbide/triphenyl phosphate의 내열성과 난연성을 측정하기 위해서 TGA 분석과 LOI 분석을 진행하였다. 분산성이 향상됨에 따라서 triphenyl phosphate 첨가제의 기본적인 특성인 내열성과 난연성이 향상되었으며, 그 결과로 자기 소화성인 21% 이상의 한계산소지수(LOI)를 가지는 HDPE/EPDM/boron carbide/triphenyl phosphate 블렌드를 얻을 수 있었다.

유청단백질로 만들어진 식품포장재에 관한 연구

  • 김성주
    • 한국유가공학회:학술대회논문집
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    • 한국유가공기술과학회 2002년도 제54회 춘계심포지움 - 우유와 국민건강
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    • pp.59-60
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    • 2002
  • Edible films such as wax coatings, sugar and chocolate covers, and sausage casings, have been used in food applications for years$^{(1)}$ However, interest in edible films and biodegradable polymers has been renewed due to concerns about the environment, a need to reduce the quantity of disposable packaging, and demand by the consumer for higher quality food products. Edible films can function as secondary packaging materials to enhance food quality and reduce the amount of traditional packaging needed. For example, edible films can serve to enhance food quality by acting as moisture and gas barriers, thus, providing protection to a food product after the primary packaging is opened. Edible films are not meant to replace synthetic packaging materials; instead, they provide the potential as food packagings where traditional synthetic or biodegradable plastics cannot function. For instance, edible films can be used as convenient soluble pouches containing single-servings for products such as instant noodles and soup/seasoning combination. In the food industry, they can be used as ingredient delivery systems for delivering pre-measured ingredients during processing. Edible films also can provide the food processors with a variety of new opportunities for product development and processing. Depends on materials of edible films, they also can be sources of nutritional supplements. Especially, whey proteins have excellent amino acid balance while some edible films resources lack adequate amount of certain amino acids, for example, soy protein is low in methionine and wheat flour is low in lysine$^{(2)}$. Whey proteins have a surplus of the essential amino acid lysine, threonine, methionine and isoleucine. Thus, the idea of using whey protein-based films to individually pack cereal products, which often deficient in these amino acids, become very attractive$^{(3)}$. Whey is a by-product of cheese manufacturing and much of annual production is not utilized$^{(4)}$. Development of edible films from whey protein is one of the ways to recover whey from dairy industry waste. Whey proteins as raw materials of film production can be obtained at inexpensive cost. I hypothesize that it is possible to make whey protein-based edible films with improved moisture barrier properties without significantly altering other properties by producing whey protein/lipid emulsion films and these films will be suitable far food applications. The fellowing are the specific otjectives of this research: 1. Develop whey protein/lipid emulsion edible films and determine their microstructures, barrier (moisture and oxygen) and mechanical (tensile strength and elongation) properties. 2. Study the nature of interactions involved in the formation and stability of the films. 3. Investigate thermal properties, heat sealability, and sealing properties of the films. 4. Demonstrate suitability of their application in foods as packaging materials. Methodologies were developed to produce edible films from whey protein isolate (WPI) and concentrate (WPC), and film-forming procedure was optimized. Lipids, butter fat (BF) and candelilla wax (CW), were added into film-forming solutions to produce whey protein/lipid emulsion edible films. Significant reduction in water vapor and oxygen permeabilities of the films could be achieved upon addition of BF and CW. Mechanical properties were also influenced by the lipid type. Microstructures of the films accounted for the differences in their barrier and mechanical properties. Studies with bond-dissociating agents indicated that disulfide and hydrogen bonds, cooperatively, were the primary forces involved in the formation and stability of whey protein/lipid emulsion films. Contribution of hydrophobic interactions was secondary. Thermal properties of the films were studied using differential scanning calorimetry, and the results were used to optimize heat-sealing conditions for the films. Electron spectroscopy for chemical analysis (ESCA) was used to study the nature of the interfacial interaction of sealed films. All films were heat sealable and showed good seal strengths while the plasticizer type influenced optimum heat-sealing temperatures of the films, 130$^{\circ}$C for sorbitol-plasticized WPI films and 110$^{\circ}$C for glycerol-plasticized WPI films. ESCA spectra showed that the main interactions responsible for the heat-sealed joint of whey protein-based edible films were hydrogen bonds and covalent bonds involving C-0-H and N-C components. Finally, solubility in water, moisture contents, moisture sorption isotherms and sensory attributes (using a trained sensory panel) of the films were determined. Solubility was influenced primarily by the plasticizer in the films, and the higher the plasticizer content, the greater was the solubility of the films in water. Moisture contents of the films showed a strong relationship with moisture sorption isotherm properties of the films. Lower moisture content of the films resulted in lower equilibrium moisture contents at all aw levels. Sensory evaluation of the films revealed that no distinctive odor existed in WPI films. All films tested showed slight sweetness and adhesiveness. Films with lipids were scored as being opaque while films without lipids were scored to be clear. Whey protein/lipid emulsion edible films may be suitable for packaging of powder mix and should be suitable for packaging of non-hygroscopic foods$^{(5,6,7,8,)}$.

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