• Title/Summary/Keyword: Elevated structure

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A Study on HEMT Device Process (Part I. Lift-off Process for the Metallization) (HEMT 소자 공정 연구 (Part 1. 금속박막 형성을 위한 Lift-off 공정연구))

  • 이종람;박성호;김진섭;마동성
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.26 no.10
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    • pp.1535-1544
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    • 1989
  • The overhang structure of photoresist in optical lithography was studied for the metallization of GaAs-related devices throughout lift-off method. Optical contact aligner with a dose of 8.5 m J/cm\ulcornerand with a wavelength of 300mm was used for ultraviolet exposure of single layer of S1400-27 photoresist. The overhang thickness shows a linear relationship with the soaking time in monochlorobenzene, which its magnitude becomes high at elevated softbake temperature. Such process conditions as a low softbake temperature, a long monochlorohbenzene soaking time and a little exposed energy make the development rate of photoresist lower. The optimum process conditions to obtain a target line-width, which include an appropriate overhang structure such as complete separation between the sidewall of photoresist pattern and the deposited metal edge, are determined as the softbake temperature of 64-74\ulcornerC, the monochlorobenzene soaking time of 10-15min, the ultraviolet exposure time of 70-100sec and the development time of 50-80sec.

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Evaluation of Strength Characteristics of HoneyComb Sandwitch Structure Due to the Repeated Curing Cycle in Repair Process (하니콤 샌드위치 구조물의 수리 시 반복 경화에 따른 강도 특성 평가)

  • 손영준;이기현;김국진;한중원;김윤해
    • Proceedings of the Korean Society For Composite Materials Conference
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    • 2002.10a
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    • pp.83-87
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    • 2002
  • Aerospace industries are widely using honeycomb sandwich structures that it has high specific strength and stiffness, chemical material resistance and fatigue resistance. But, in repairing process of damaged areas, one of the problems is that delamination can be occurred in the sound areas during and/or after the exposure to the elevated curing temperature in case that the repair process is repeated. Therefore, this study was conducted Flatwise tensile, Drum peel and Long beam flexural strength tests to evaluate the degree of degradation of mechanical properties of the honeycomb sandwich structures by affecting thermal aging. As the results, the decrease of mechanical strength was observed at the specific specimen which is exposed over 50hrs at $127^{\circ}C$.

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Microstructural Observation of Cu/Cr Multilayers by Heat Treatment (열처리에 따른 Cu/Cr 다층 박막의 미세 조직 관찰)

  • 양혁수;김기범
    • Journal of Surface Science and Engineering
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    • v.28 no.6
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    • pp.376-385
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    • 1995
  • Copper-chromium multilayers with a nominal bilayer thickness of about 400 $\AA$ (200 $\AA$ each) were prepared by dc magnetron sputtering and the evolution of microstructure during heat treatment was investigated by using x-ray diffractometry(XRD), Auger electron spectroscopy(AES) and transmission electron microscopy(TEM). It was observed that an amorphous phase with a thickness of about 40 $\AA$ was formed at the interfaces of the as-deposited Cu/Cr multilayered film using cross-sectional TEM. At elevated temperatures, the Cu(111) reflection showed increasing intensity and decreasing line-width as a result of copper grain growth. The intermixed amorphous phase disappeared after annealing at $250^{\circ}C$ for 1 h and the multilayer structure was stable up to $400^{\circ}C$ for 1 h annealing. At $600^{\circ}C$ annealing, it was observed that the multilayer structure was completely destroyed and copper and chromium phases were fully intermixed.

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Synthesis, Thermal Property and Crystal Structure of Poly(1,4-cyclohexanediyldimethy lone 2,6-naphthalate) (Poly(1,4-cyclohexanediyldimethy lone 2,6- naphthalate)의 합성, 열적성질 및 결정구조)

  • Jeong, Young-Gyu;Jo, Won-Ho;Lee, Sang-Cheol
    • Proceedings of the Korean Fiber Society Conference
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    • 2001.10a
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    • pp.87-90
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    • 2001
  • Engineering thermoplastics with useful properties at elevated temperatures usually contain aromatic units in its chemical structure, especially symmetrical aryl groups such as 1, 4-phenylene, 4, 4'-biphenylene, and 2, 6-naphthalene. Aromatic groups often impart molecular rigidity, which contributes to high glass transition temperature and good thermal stability, and also to high melting point in semicrystalline polymers. (omitted)

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Molecular Dynamics Simulation of Intercalation of Benzopyrene Motif in DNA (핵산의 분자역학적 모의실험을 통한 벤조피렌 층상구조의 발현)

  • Park, Kyung-Lae;Santos, Carlos De Los
    • YAKHAK HOEJI
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    • v.54 no.1
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    • pp.62-66
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    • 2010
  • Benzopyrene is known to be one of the most powerful carcinogens which can build intercalated motif between base pairs in damaged DNA. The dimension of benzopyrene itself is much bigger than any of the DNA bases and thus the question whether the lesion of some base pair by insertion of benzopyrene can happen with or without a dramatic distortion of the helical structure is a highly interesting theme. In this work we used a molecular mechanics simulation using AMBER program package to go into the conformational characteristics. The condition of the insertion process of the benzopyrene motif from minor groove of the starting structure between the base pairs in the internal area of double helix was investigated using the molecular dynamics simulation at elevated temperature.

Temperature-time analysis for steel structures under fire conditions

  • Wong, M.B.;Ghojel, J.I.;Crozier, D.A.
    • Structural Engineering and Mechanics
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    • v.6 no.3
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    • pp.275-289
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    • 1998
  • The objective of the paper is to present a method whereby the time required for a steel structure to sustain the effects of a prescribed temperature rise according to real fire curves can be calculated. The method is divided into two parts. The first part deals with the post-yield behaviour of steel structures at elevated temperatures. It takes into account the variation of the properties of steel material with temperature in an incremental elastoplastic analysis so that the safety factor of the structure under certain fire conditions can be assessed. The second part deals with the heat transfer problem of bare steel members in real fire. Factors affecting the heat transfer process are examined and a model for predicting the temperature variation with time under real fire conditions is proposed. This model results in more accurate temperature predictions for steel members than those obtained from previously adopted model.

Numerical frequency analysis of skew sandwich layered composite shell structures under thermal environment including shear deformation effects

  • Katariya, Pankaj V.;Panda, Subrata K.
    • Structural Engineering and Mechanics
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    • v.71 no.6
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    • pp.657-668
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    • 2019
  • The numerical thermal frequency responses of the skew sandwich shell panels structure are investigated via a higher-order polynomial shear deformation theory including the thickness stretching effect. A customized MATLAB code is developed using the current mathematical model for the computational purpose. The finite element solution accuracy and consistency have been checked via solving different kinds of numerical benchmark examples taken from the literature. After confirming the standardization of the model, it is further extended to show the effect of different important geometrical parameters such as span-to-thickness ratios, aspect ratios, curvature ratios, core-to-face thickness ratios, skew angles, and support conditions on the frequencies of the sandwich composite flat/curved panel structure under elevated temperature environment.

Effect of wet treatment on the structure of various silkworm strain cocoons with different rearing seasons

  • Lee, Hye Gyeoung;Bae, Do Gyu;Um, In Chul
    • International Journal of Industrial Entomology and Biomaterials
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    • v.44 no.1
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    • pp.4-11
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    • 2022
  • In this study, cocoons from different silkworm strains and rearing seasons were collected and immersed in water at elevated temperatures to investigate the effect of a wet treatment on their morphology and crystallinity. Untreated cocoons exhibited different crystallinities depending on the silkworm strain and rearing season; however, no distinct changes in their morphological structure were observed. Furthermore, after wet treatment, the differences in the crystallinities of cocoons disappeared. In addition, wet treatment of degummed silk (i.e., fibroin) did not change its crystallinity. These results indicate that different crystallinities of the untreated cocoons collected from various silkworm strains and rearing seasons are due to the different characteristics of sericin in the cocoons.

Effects of Ca/Si Molar Ratio on the Interatomic Distance of Synthetic Calcium Silicate Hydrate (C-S-H) at Elevated Temperature (고온 가열시 Ca/Si 몰비율에 따른 합성 칼슘 실리케이트 수화물(C-S-H)의 구성 원자간 거리 변화)

  • Im, Su-Min;Bae, Sung Chul
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2021.05a
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    • pp.144-145
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    • 2021
  • Calcium silicate hydrate(C-S-H) is the principal binding phase that controls the strength and thermal stability of concrete. However, the effects of high temperature on the lattice structure and interatomic structure of C-S-H remains poorly understood due to its nanocrystallinity. This study aims to elucidate the change in interatomic distance of synthetic C-S-H with different Ca/Si molar ratios after exposure to high temperature via high energy X-ray scattering experiment which is a powerful analytical tool for amorphous materials.

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Computational approaches for molecular characterization and structure-based functional elucidation of a hypothetical protein from Mycobacterium tuberculosis

  • Abu Saim Mohammad, Saikat
    • Genomics & Informatics
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    • v.21 no.2
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    • pp.25.1-25.12
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    • 2023
  • Adaptation of infections and hosts has resulted in several metabolic mechanisms adopted by intracellular pathogens to combat the defense responses and the lack of fuel during infection. Human tuberculosis caused by Mycobacterium tuberculosis (MTB) is the world's first cause of mortality tied to a single disease. This study aims to characterize and anticipate potential antigen characteristics for promising vaccine candidates for the hypothetical protein of MTB through computational strategies. The protein is associated with the catalyzation of dithiol oxidation and/or disulfide reduction because of the protein's anticipated disulfide oxidoreductase properties. This investigation analyzed the protein's physicochemical characteristics, protein-protein interactions, subcellular locations, anticipated active sites, secondary and tertiary structures, allergenicity, antigenicity, and toxicity properties. The protein has significant active amino acid residues with no allergenicity, elevated antigenicity, and no toxicity.