• 제목/요약/키워드: chemical and morphological change

검색결과 82건 처리시간 0.026초

일축신장흐름에서의 PS/HDPE Blend의 모폴로지 변화에 관한 연구 (Study on the Morphology Evolution of PS/HDPE Blend During Uniaxial Elongational Flow)

  • Hong, Jung-Sook;Son, Jung-Wu;Lee, Seung-Jae;Ahn, Kyung-Hyun;Lee, Seung-Jong
    • 한국유변학회:학술대회논문집
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    • 한국유변학회 2001년도 춘계 학술발표회 논문집
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    • pp.11-14
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    • 2001
  • Our study have aimed to identify the deformation and breakup mechanism of minor phase in polymer blends under uniaxial enlongational flow. Experimentally, we measured the transient elongational viscosity of PS/HDPE blends using the uniaxial elongational rheometer at two temperatures. And we observed the evolution of blend morphology with elongation time. Morphological change was observed by quenching the specimen after deformation. If the viscosity variation of PS was compared with that of HDPE at each temperature, PS showed larger temperature dependence than HDPE. At 155$^{\circ}C$, the dispersed phase of larger size were easily affected by affine deformation. The initial spherical shape changed to flat ellipsoid at first, then flat ellipsoid to bulbous shape, and bulbous to thin thread and its satellites. But dispersed phase of smaller size showed the change from sphere to ellipsoid. At 175$^{\circ}C$, the dispersed phase were mostly deformed from spherical shape to ellipsoid. As a result, the morphological change of dispersed phase in elongational deformation is affected by chain flexibility and viscosity ratio. We need to further study to make sure the mechanism of elongation of viscoelastic polymer blends.

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A Study on the Wave Type and the Damage of Hair according to Water content when Heat permanent is treated - Focus on Damaged Hair -

  • Lee, Soon-Hee;Choi, Jung-Myung
    • 패션비즈니스
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    • 제12권6호
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    • pp.11-22
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    • 2008
  • The goal of this study is to provide beauticians with the fundamental material to use effectively heat permanent wave in beauty industry as well as their customer's satisfaction. It carried out an experiment with damaged hair of a woman in her late twenties to investigate the change of physical and morphological characteristics by its water content when performing heat permanent wave. After spreading 0g, 1g, 2g, 3g, and 4g of water on damaged hair respectively, heat permanent wave was treated and the change of hair was observed. The change of physical characteristic was compared through permanent wave form of hair, tensile strength and elongation. The change of morphological characteristic was observed through Scanning Electron Microscope(SEM) and Transmission Electron Microscope(TEM). The result of experiment on the physical specificity revealed that permanent wave form was the most ideal when the water content was 2g, also 3g. Though the materials with much moisture content formed the results were not satisfied. The material with 0g of water content didn't make the wave. In terms of tensile strength and elongation, tensile strength was generally reduced as per the damaged degree of hair. On the contrary, elongation was increased. It observed the changes of morphological characteristic that the damage on hair cuticle was deepen, as its moisture content was decreased, and cuticle's surface was worn away. The observation of fine structure on hair section by transmission electronic microscope also certainly showed the result that damaged hair having experience with chemical treatment had got much damaged to hair cuticle as well as hair cortex. Generally chemical treatment makes hair damaged. Under consideration of this aspect, the ultimate goal of this thesis is to minimize the damage of hair caused by chemical treatment and get the satisfaction on the hair style. According to the result of experiment, the damaged hair whose moisture content was 3g showed the best permanent wave form.

Instrumental Analysis of the Human Hair Damaged by Bleaching Treatments - Focused on ATR FT-IRM -

  • Ha, Byung-Jo
    • 패션비즈니스
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    • 제12권6호
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    • pp.23-33
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    • 2008
  • The physico-chemical characteristics by bleaching treatments were assessed by several instrumental analyses such as surface morphology, chemical structural change, color change as well as tensile strength. The change of morphological characteristic was observed through scanning electron microscope(SEM). The observation of the fine structure on hair surface by SEM showed the bleached hair had much damaged to hair cuticle, and some of cuticle surface were worn away. To investigate the chemical structural changes in hair keratin, the cross-sections of hair samples were directly analysed using Fourier transform infrared microspectroscopy(FT-IRM). The results showed the cysteic acid S=O band intensity was distinctively increased by performing the bleaching treatment. The cleavage of cystine was appeared to proceed primarily through the sulfur-sulfur (-S-S-) fission whereby cysteic acid was formed as a principal oxidation products. The distribution of amide I band in hair keratin was determined by attenuated total reflectance(ATR) FT-IR mapping image. The results showed that the outer side of hair cortex was more damaged than the inner side of the hair cortex. Also, during chemical bleaching of the hair with alkaline peroxide, the hair was turned to reddish yellow due to the oxidative degradation of eumelanin. This means the eumelanin is more unstable than pheomelanin in chemical oxidation. With bleaching, the tensile strength was also reduced as a results of the chemical oxidation.

MORPHOLOGICAL CHARACTERISTICS OF NONLINEAR OPTICAL MOLECULES AT THE AIR/WATER INTERFACE

  • Lim, Sung-Taek;Park, Mi-Kyung;Shin, Dong-Myung;Kwon, Ohoak
    • Journal of Photoscience
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    • 제5권1호
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    • pp.11-15
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    • 1998
  • The texture change of non-linear optical molecules at the air/water interface was investigated as a function of surface pressure with Brewster angle microscopy. The texture change resulted from the aggregation of dye molecules is important to understand the film uniformity and grain formation process. The 4-Octadecylhydroxy-4'-nitrostilbene (OHNS) generated the small spots of size around 1$\mu$m. The spots exhibit high contrast with other film area and do not show angle dependent reflectivity change. It is interesting to observe that the size of the domain stays the same as the film pressure increases. At high surface pressure, the contrast ratio of domains becomes high, which means dense packing of OHNS. And, the size of domain grows. In the middle of domain, highly contrasted domains are formed. The first and the second order transitions of OHNS observed from surface pressure-area isotherm result from the two types of grains. The N,N-Dihexadecylcyanoaniline (DHCA) formed highly contrasted gains over entire region, and the grains are the double layers. The difference in Langmuir film of OHNS and DHCA at the air/water interface is consistent with the small tilt angle from the surface normal for OHNS and the large tilt angle for DHCA in the Langmuir-Blodgett films.

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온도 구배가 있는 미세유체 장치를 이용한 극지 미생물의 형태 변화 분석 (Analysis of Morphological Change of Polar Bacterium using Microfluidic Device with Temperature Gradient)

  • 정성근;박애리;정헌호;홍순규;이창수
    • KSBB Journal
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    • 제29권4호
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    • pp.278-284
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    • 2014
  • We present microfluidic method to rapidly analyze the effect of temperature on the change of morphologies of Antarctic bacteria (Pseudoalteromonas sp., Shewanella vesiculosa, Shewanella sp., and Cellulophaga sp.). The microfluidic device is able to generate stable temperature gradient from 7 to$40^{\circ}C$ and dramatically reduce the number of experiments, experimental cost and labor, and amount of sample. Based on this approach, we found that specific bacteria transforming morphology into filament or elongated body strongly depends on cultivation temperature. Interestingly, we found that the morphologies of Pseudoalteromonas sp., Shewanella vesiculosa, Shewanella sp., and Cellulophaga sp. are elongated at below $25^{\circ}C$, above $20^{\circ}C$, above $15^{\circ}C$ and above $35^{\circ}C$, respectively. We envision the microfluidic device is a useful approach to analyze biological events with a high throughput manner.

Si 기판 위에 형성된 InAs 양자점의 열처리에 의한 표면 상태의 변화 (Temperature-dependent Morphology of Self-assembled InAs Quantum Dots Grown on Si Substrates)

  • 유충현
    • 한국전기전자재료학회논문지
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    • 제20권10호
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    • pp.864-868
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    • 2007
  • Effect of high-temperature annealing on morphology of fully coherent self-assembled InAs quantum dots' grown on Si (100) substrates at $450^{\circ}C$ by atmospheric pressure metalorganic chemical vapor deposition(APMOCVD) was investigated by atomic force microscopy(AFM). When the dots were annealed at 500 - 600$^{\circ}C$ for 15 sec - 60 min, there was no appreciable change in the dot density but the heights of the dots increased along with the reduction in the diameters. In segregation from the InAs quantum dots and/or from the 2-dimensional InAs wetting layer which was not transformed into quantum dots looked responsible for this change in the dot size. However the change rates remained almost same regardless of annealing time and temperature, which may indicate that the morphological change due to thermal annealing is done instantly when the dots are exposed to high temperature annealing.

실내 보관 삼나무 목재의 재색 및 화학적·현미경적 변화 특성 (Chemical and Morphological Change and Discoloration of Cedar Wood Stored Indoor)

  • 이광호;차미영;정우양;배현종;김윤수
    • Journal of the Korean Wood Science and Technology
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    • 제37권6호
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    • pp.566-577
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    • 2009
  • 실내에서 일어나는 목재의 표면 열화특성을 재색, 화학적 및 해부학적 변화 차원에서 분석하였다. 실험대상으로는 실내에서 장기간 보관중인 삼나무 목제품을 사용하였다. 실내 보존 초기에는 황색도와 적색도가 급격히 변하였고 5년 사이에 백색도의 감소가 두드러졌다. 화학성분의 분석결과 셀룰로오스, 헤미셀룰로오스, 리그닌 성분 모두 감소하였으나 리그닌의 감소가 더 컸다. 현미경 관찰 결과 5년이 경과한 목제품에서는 목재표면에서 2~3개 층에서 리그닌이 분해되어 중간층이 분리되었다. 실내 환경조건에서 발생되는 표면 열화 특성은 야외에서 발생되는 표면열화 특성과 매우 유사하였으나 그 정도는 미약하였다.

Nano-engineering of Hybrid Titanium Oxide Structure (TiO2) using Pore-widening Concentration for Enhanced Superhydrophilicity

  • Yeji Choi;Chanyoung Jeong
    • Corrosion Science and Technology
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    • 제23권1호
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    • pp.41-53
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    • 2024
  • Titanium alloy is gaining attention in the medical industry due to its excellent biocompatibility and osteoconductivity. However, the natural oxide film on the titanium surface is insoluble, resulting in inadequate bone adhesion. Therefore, it is necessary to optimize the contact between biological tissues and implant surfaces, and alter the chemical composition and morphological characteristics of the implant surface. In this study, the anodization method was applied to titanium surface treatment to form a uniform and robust oxide film. Subsequently, a chemical process, pore-widening, was employed to change the morphological characteristics of the oxide film. The concentration of the pore-widening solution was varied at 2, 4, 6, and 8 wt% and the process time was set at 30 and 60 minutes. As the concentration of the pore-widening solution increased the pore diameter of the oxide film increased. Notably, at 6 wt% for 60 minutes, the oxide film exhibited a coexistence of pillars and pores. Based on this, it was determined that surface roughness increased with higher concentration and longer process time. Additionally, the presence of pillars and pores structures maximized hydrophilicity. This study provides insights into enhancing the surface properties of titanium for improved performance in medical implants.

Effect of carbonization temperature and chemical pre-treatment on the thermal change and fiber morphology of kenaf-based carbon fibers

  • Kim, Jin-Myung;Song, In-Seong;Cho, Dong-Hwan;Hong, Ik-Pyo
    • Carbon letters
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    • 제12권3호
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    • pp.131-137
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    • 2011
  • Kenaf fibers, cellulose-based natural fibers, were used as precursor for preparing kenafbased carbon fibers. The effects of carbonization temperature ($700^{\circ}C$ to $1100^{\circ}C$) and chemical pre-treatment (NaOH and $NH_4Cl$) at various concentrations on the thermal change, chemical composition and fiber morphology of kenaf-based carbon fibers were investigated. Remarkable weight loss and longitudinal shrinkage were found to occur during the thermal conversion from kenaf precursor to kenaf-based carbon fiber, depending on the carbonization temperature. It was noted that the alkali pre-treatment of kenaf with NaOH played a role in reducing the weight loss and the longitudinal shrinkage and also in increasing the carbon content of kenaf-based carbon fibers. The number and size of the cells and the fiber diameter were reduced with increasing carbonization temperature. Morphological observations implied that the micrometer-sized cells were combined or fused and then re-organized with the neighboring cells during the carbonization process. By the pre-treatment of kenaf with 10 and 15 wt% NaOH solutions and the subsequent carbonization process, the inner cells completely disappeared through the transverse direction of the kenaf fiber, resulting in the fiber densification. It was noticeable that the alkali pre-treatment of the kenaf fibers prior to carbonization contributed to the forming of kenaf-based carbon fibers.

ABS-g-MAH를 포함한 Poly(acrylonitrile-butadiene-styrene)과 Polycarbonate 고분자 블렌드의 유변학적, 기계적, 형태학적 물성 (Rheological, Mechanical and Morphological Properties of Poly(acrylonitrile-butadiene-styrene)/Polycarbonate Blends with ABS-g-MAH)

  • 송기헌;홍존희;승유택;김연희;한미선;윤호규;김우년
    • 폴리머
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    • 제31권4호
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    • pp.283-288
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    • 2007
  • Poly(acrylonitrile-butadiene-styrene) (ABS)/polycarbonate(PC) (70/30, wt%) 블렌드에 상용화제를 첨가하여 이축 압출기로 시편을 제조하였다. 사용된 상용화제는 ABS에 maleic anhydride(MAH)와 dicumyl peroxide(DCP)를 첨가하여 반응압출을 통하여 그래프트시킨 ABS-g-MAH이었다. ABS/PC(70/30) 블렌드에 상용화제를 5 phr 첨가한 경우 인장강도는 큰 증가는 관찰되지 않았으나, 약 52.25 MPa에서 55.03 MPa로 약간 증가하였다. ABS/PC(70/30) 블렌드의 유변학적 물성을 측정한 결과 상용화제 첨가 시 낮은 진동수 영역에서 탄성률의 증가가 관찰되었으며, 이와 같은 탄성률 증가는 손실탄성률보다 저장탄성률에서 더 잘 나타났다. 또한 ABS/PC(70/30) 블렌드에 ABS-g-MAH를 $1{\sim}10\;phr$ 첨가 시 분산상인 PC의 크기는 약 1.2에서 $1.5\;{\mu}m$로 큰 변화가 없음을 알 수 있었다. 이상의 연구 결과로서 저장탄성률 증가 및 복소점도 상승 그리고 인장강도의 증가로부터 ABS-g-MAH의 양이 5 phr일 때 ABS/PC(70/30) 블렌드에서 효과적인 상용화제로 작용함을 알 수 있었다.