• Title/Summary/Keyword: color temperature

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Experimental Study on the Basic Properties of Concrete Composition Mixed with Pigments Having been Color Changed by the Temperature (감온성 안료의 혼입에 따른 온도반응 색변환 콘크리트의 기초물성에 관한 실험적 연구)

  • Lee, Joo-Hun;Park, Yong-Kyu;Jeon, In-Ki;Yoon, Ki-Won
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2009.11a
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    • pp.149-152
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    • 2009
  • Recent trends show an increased usage of 'colored concrete', a inorganic pigmented concrete mix, especially in smalll to large scale buildings. However, due to lack of varieties, current usage of colored concrete is limited to the one or two simple color of the time in construction work. so, this study is to investigate the properties of concrete adding temperature reactive pigment. The results of the experiment, the basic material characteristics of concrete such as of compressive strength and slump is affected by the amount rate of adding the temperature reactive pigment. And, it showed the excellent color expression and changing with temperature reactive pigment.

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Analysis for luminescence property about an increase quantity of silicate phosphor and reliability (Silicate 형광체 증가에 대한 발광 특성 및 신뢰성 분석)

  • Yoon, Yanggi;Jang, Joongsoon
    • Journal of Applied Reliability
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    • v.12 no.4
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    • pp.275-285
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    • 2012
  • This paper presents a changes of luminescence property for converted white LEDs with the commercially available silicate phosphor. If silicate phosphor's quantity increase step by step. luminescence property will be changing. we analyze luminescence property for these change and carry out the high temperature aging test for 7,000 hours, the high temperature and humidity aging test for 7,000 hours for reliability. LED degradation not only results in reduced light output but also in color changes. so we monitor correlated color temperature (CCT), chromaticity coordinates(x, y) and spectrum intensity. Those results suggest that humidity factor more bad effect in color changes than temperature factor and Lighting quality is related with quantity of phosphor.

Dyeing Properties of Silk Fabric with Alnus Firma Extracts (오리나무 열매 추출물에 의한 견직물의 염색성 연구)

  • 손보현;장지혜
    • Journal of the Korean Home Economics Association
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    • v.40 no.12
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    • pp.109-118
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    • 2002
  • The Purpose of this study was to investigate dyeing properties and color fastness of Ainus firma sieb. et Zucc. Fruit, according to dyeing temperature, dyeing time, dyeing concentrations and various mordants. The results were as follows ; 1. The dyeabilities of the natural colorants extracted from Alnus firma fruit were investigated under various dyeing temperature, dyeing time and dyeing concentration. As a result, the optimum dyeing temperature, time and concentration of silk fabric with Alnus firma fruit were $60^{\circ}C$, 60min and 100%(o.w.f.) respectively. 2. Alnus firma fruit extract dyed reddish purple (RP hue) on the Fe-mordanted silk fabric. In the case of other mordants, silk fabrics dyed yellow (Y hue). 3. Generally, the light color fastness was relatively fair in the silk fabric dyed with the Alnus firma fruit and Fe mordant. The washing color fastness of color change of silk dyeings mordanted with Al, Sn showed 4 grade. However, the dry cleaning color fastness of the silk fabric was fastness was excellent. The rubbing color fastness showed 4 grade at the most of mordants except Cu.

Effect of Glass Composition on the Optical Properties of Color Conversion Glasses for White LED (유리조성에 따른 백색 LED용 색변환 유리의 광특성)

  • Huh, Cheolmin;Hwang, Jonghee;Lim, Tae-Young;Kim, Jin-Ho;Lee, MiJai;Yoo, Jong-Sung;Park, Tae-Ho;Moon, Jooho
    • Korean Journal of Materials Research
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    • v.22 no.12
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    • pp.669-674
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    • 2012
  • Yellow phosphor dispersed color conversion glasses are promising phosphor materials for white LED applications because of their good thermal durability, chemical stability, and anti-ultraviolet property. Six color conversion glasses were prepared with high Tg and low Tg specimens of glass. Luminous efficacy, luminance, CIE (Commission Internationale de l'Eclairage) chromaticity, CCT (Correlated Color Temperature), and CRI (Color Rendering Index) of the color conversion glasses were analyzed according to the PL spectrum. Color conversion glasses with high Tg glass frit, sintered at higher temperature, showed better luminous properties than did color conversion glasses with low Tg glass frit. The characteristics of the color conversion glass depended on the glass composition rather than on the sintering temperature. The XRD peaks of the YAG phosphor disappeared in the color conversion glass with major components of $B_2O_3$-ZnO-$SiO_2$-CaO and, in the XRD results, new crystalline peaks of $BaSi_2O_5$ appeared in the color conversion glass with major components of $Bi_2O_3$-ZnO-$B_2O_3$-MgO. The characteristics of CIE chromaticity, CCT, and the CRI of low Tg color conversion glasses showed worse color properties than those of high Tg color conversion glasses. However, these color characteristics of low Tg glasses were improved by thickness variation. So color conversion glasses with good characteristics of both luminous and color properties were attained.

Development of Two-color Radiation Thermometer for Harsh Environments

  • Mohammed, Mohammed Ali Alshaikh;Kim, Ki-Seong
    • Journal of ILASS-Korea
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    • v.21 no.4
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    • pp.184-194
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    • 2016
  • Many industrial processes require reliable temperature measurements in harsh environments with high temperature, dust, humidity, and pressure. However, commercially-available conventional temperature measurement devices are not suitable for use in such conditions. This study thus proposes a reliable, durable two-color radiation thermometer (RT) for harsh environments that was developed by selecting the appropriate components, designing a suitable mechanical structure, and compensating environmental factors such as absorption by particles and gases. The two-color RT has a simple, compactly-designed probe with a well-structured data acquisition system combined with efficient LabVIEW-based code. As a result, the RT can measure the temperature in real time, ranging from 300 to $900^{\circ}C$ in extremely harsh environments, such as that above the burden zone of a blast furnace. The error in the temperature measurements taken with the proposed two-color RT compared to that obtained using K-type thermocouple readouts was within 6.1 to $1.4^{\circ}C$ at a temperature range from 200 to $700^{\circ}C$. The effects of absorption by gases including $CO_2$, CO and $H_2O$ and the scattering by fine particles were calculated to find the transmittance of the two wavelength bands of operation through the path between the measured burden surface and the two-color probe. This method is applied to determine the transmittance of the short and long wavelength bands to be 0.31 and 0.51, respectively. Accordingly, the signals that were measured were corrected, and the true burden surface temperature was calculated. The proposed two-color RT and the correction method can be applied to measure temperatures in harsh environments where light-absorbing gases and scattering particles exist and optical components can be contaminated.

The Characteristics of the Learning Performance according to the Indoor Temperature of the Learning Environment and the Color of the Learning Materials (학습 환경의 실내 온도와 학습재료의 색채에 따른 학습수행의 특성)

  • Kim, Boseong
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.14 no.2
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    • pp.681-687
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    • 2013
  • This study examined whether the combination of the indoor temperature on the learning environment and the colors of the learning materials affect the learning performance. To do this, the condition of indoor temperature was divided into three conditions: the neutral condition which is the appropriate temperature condition of the learning activities ($22.5{\sim}24^{\circ}C$), the high-temperature condition (> $24^{\circ}C$), and the low-temperature condition (< $22.5^{\circ}C$). In addition, colors of red, blue, black, and green were used as the warm, cold, and neutral colors, and the verbal-working memory task was used as the learning task. As a result, it was not significant differences in the response time of the learning task, whereas, in the accuracy rate of the learning task, the performance was more accurate in red- and black-color conditions. These results could be interpreted as the saliency and color-temperature of the red color, and the familiarity and specificity of the black color.

A Study on the Subjective Evaluation of Color Appearance under the Different LED CCT Conditions (색온도별 LED 조명에 의한 색상별 색보임에 대한 주관평가 연구)

  • Kim, Hyun-Sun;Kim, Yu-Sin;Choi, An-Seop
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.25 no.2
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    • pp.43-52
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    • 2011
  • LED lighting may cause different sensation and color appearance due to the different spectral power distributions compared to those of conventional lightings. Particularly, the CCT (Correlated Color Temperature) of LED lighting has a major effect on color appearance so that this study conducted an experiment through a subjective evaluation and luminance measurement for effective color appearance in a space. This study performed a subjective evaluation under the seven different LED CCT conditions, and color appearance was evaluated with major five colors in a customized lighting box. In addition, luminance measurement was conducted for each CCT and color condition to compare the results from a subjective evaluation. The results of this study may help to select a proper LED CCT for specific color conditions.

The effects of emotional matching between video color-temperature and scent on reality improvement (영상의 색온도와 향의 감성적 일치가 영상실감 향상에 미치는 효과)

  • Lee, Guk-Hee;Li, Hyung-Chul O.;Ahn, ChungHyun;Ki, MyungSeok;Kim, ShinWoo
    • Journal of the HCI Society of Korea
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    • v.10 no.1
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    • pp.29-41
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    • 2015
  • Technologies for video reality (e.g., 3D displays, vibration, surround sound, etc.) utilize various sensory input and many of them are now commercialized. However, when it comes to the use of olfaction for video reality, there has not been much progress in both practical and academic respects. Because olfactory sense is tightly associated with human emotion, proper use of this sense is expected to help to achieve a high degree of video reality. This research tested the effects of a video's color-temperature related scent on reality improvement when the video does not have apparent object (e.g., coffee, flower, etc.) which suggest specific smell. To this end, we had participants to rate 48 scents based on a color-temperature scale of 1,500K (warm)-15,000K (cold) and chose 8 scents (4 warm scents, 4 cold scents) which showed clear correspondence with warm or cold color-temperatures (Expt. 1). And then after applying warm (3,000K), neutral (6,500K), or cold (14,000K) color-temperatures to images or videos, we presented warm or cold scents to participants while they rate reality improvement on a 7-point scale depending on relatedness of scent vs. color-temperature (related, unrelated, neutral) (Expts. 2-3). The results showed that participants experienced greater reality when scent and color-temperature was related than when they were unrelated or neutral. This research has important practical implications in demonstrating the possibility that provision of color-temperature related scent improves video reality even when there are no concrete objects that suggest specific olfactory information.

A Method for Predicting the Color Appearance Values of Textiles Depending on Illumination (광원에 따른 텍스타일의 Color Appearance 수치 예측 방법)

  • Chae, Youngjoo
    • Journal of the Korean Society of Clothing and Textiles
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    • v.44 no.1
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    • pp.68-83
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    • 2020
  • This study suggests a method to predict the color appearance of textiles that shifts depending on illumination variations. The suggested method allows the calculations of lightness, chroma, and hue appearance values from the spectral reflectance values of the textile and illuminant. The accuracy of the method was evaluated through numerical and statistical comparisons between the predicted and the measured color appearance values of 24 fabric samples under CIE standard illuminant D65. As a result, there were excellent agreements between the two data sets with the error values close to zero. The predicted color appearance values of 24 samples under two illuminating (color temperature-luminance) conditions, 2700 K-100 cd/㎡ and 6500 K-100 cd/㎡, were then compared to prove the significant effect of illumination on the color appearance of textiles. The color appearance values were also compared with spectrophotometrically measured physical color attributes, that is, true colors of the samples. The physical color attributes of samples were unchanged; however, differences in color appearance under different conditions were generally much larger than the suprathreshold color difference tolerances discussed in the color science literature. Finally, the magnitude of the illumination effect depending on the physical color attributes of samples was also analyzed.

Change of Wood Color of Radiata Pine (Pinus radiata D.Don) by Press Temperature and Time (라디에타 소나무재의 압밀화 온도와 시간에 따른 색상의 변화)

  • Hwang, Sung-Wook;Lee, Won-Hee
    • Journal of the Korean Wood Science and Technology
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    • v.39 no.3
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    • pp.238-243
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    • 2011
  • This study was estimated the change of color of compressed wood by compression temperature and time. Wood color was measured using a colorimeter and evaluated by the NBS (National Bureau of Standards) unit. As a result, the whiteness decreased with increasing compression temperature. In contrast, redness and yellowness was increased with increasing compression temperature. All of the color difference showed the 'Very Much' by NBS unit. The whiteness decreased with increasing compression time. The redness and yellowness were insignificant effect on compression temperature. In other words, the effect of compression temperature was much greater than compression time in the change of wood color.