• Title/Summary/Keyword: Coating stain

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Structural Development of Scalp Hair in Children and Effects of Cosmetologic Physico-Chemical Treatments on Adult Scalp Hair (어린아이 머리털의 구조 변화 및 물리화학적 미용기법이 어른 머리털에 미치는 영향)

  • Park, Chang-Hyun;Choi, Ki-Ju;Moon, Sung-Jin;Uhm, Chang-Sub
    • Applied Microscopy
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    • v.32 no.4
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    • pp.339-344
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    • 2002
  • Recently, there has been an increase in the cosmetologic treatments on hair in Korea. To investigate the time when morphological characteristics of human scalp hair take mature form, hairs of 0, 3, 6, 12, 24 months, and of adult scalp hair were compared. Also, the physico-chemical effects of commonly used cosmetological treatments; hair-dryed, dye coated, stained and permanent waved scalp hairs were observed by scanning electron microscopy. Two year-old hair was similar to the adult hair, and all hairs received cosmetologic treatments except for coated hair showed various degree of deformation and damage. These results suggest that routinely used cosmetologic treatments may give harmful effects on hairs. More detailed studies in large scale may be necessary.

Strain Transmission Ratio of a Distributed Optical Fiber Sensor with a Coating Layer (코팅된 분포형 광섬유 센서의 변형률 전달률)

  • Yoon, S.Y.;Kown, I.B.;Yu, H.S.;Kim, E.
    • Composites Research
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    • v.31 no.6
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    • pp.429-434
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    • 2018
  • We investigate strain transmissions of a surface bonded distributed optical fiber sensor considering strain variation according to positions. We first derive a strain transmission ratio depending on a wavelength of a strain distribution of the host structure from an analysis model. The strain transmission ratio is compared with numerical results obtained from the finite element method using ABAQUS. We find that the analytical results agree well with the numerical results. The strain transmission ratio is a function of a wavelength, i.e. the strain transmission ratio decreases (increases) as the wavelength of the host strain decreases (increases). Therefore, if an arbitrary strain distribution containing various wavelengths is given to a host structure, a distorted strain distribution will be observed in the distributed optical fiber sensor compare to that of the host structure, because each wavelength shows different strain transmission ratio. The strain transmission ratio derived in this study will be useful for accurately identifying the host strain distribution based on the signal of a distributed optical fiber sensor.

The Development of Fiber-Optic Hydrogen Gas Sensor for Non-Destructive Test Application (비파괴 검사 응용을 위한 광섬유 수소 가스 센서의 개발)

  • 윤의중;정명희
    • Journal of the Korean Magnetics Society
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    • v.8 no.6
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    • pp.380-387
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    • 1998
  • In this paper, a sensor material with Fe/Zr multilayer thin film, in which the change in the magnetization and strain with hydrogenation is maximized, were developed. Compositionally modulated (CM) Fe/Zr multilayers with a $Fe_{80}Zr_{20}$ composition and modulation wavelengths ($\lambda$) $3~50{\AA}$ were deposited by sequentially sputtering (RF diode) elemental Fe and Zr targets. The films were electrolytically hydrogenated to select the optimum Fe/Zr multilayers that show the maximum increases in the magnetization and strain with hydrogenation. The changes in the magnetic properties of the thin films after hydrogenation, were measured using a hysteresis graph and a vibrating sample magnetometer (VSM), and the strains induced in the films by hydrogenation were also measured using a laser heterodyne interferometer (LHI). The optimum sensor material selected was incorporated in a fiber-optic hydrogen sensor (that can sense indirectly amount of hydrogen injected) by depositing it directly on the sensing arm of a single-mode fiber Michelson interferometer. The developed sensor holds significant promise for non-destructive test evaluation (NDE) applications because it is expected to be useful for detecting easily and accurately the subsurface corrosion in structural systems.

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