Characteristic of Color-Play on Liquid Crystal Sheet Based on Image Analysis

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In this research, we compare two samples of Liquid Crystal sheet (LCs), R30C5W and R35C5W to get information about the characteristic of LCs based on the color-play of the LCs surface caused by increasing of temperature. We analize the color-play of the samples quantitatively by image analysis using hue parameter, texture analysis method by choosing entropy and energy parameter, and color-play area measurement. According to the experiment results, both samples show the similar characteristic in color-play behaviour, illustrated by similar curve for each sample, the different only in the starting temperature of the color-play and the clearing point temperature. The samples also show the same behavior in increasing of the color-play area linearly by increasing of temperature. Based on the graph of hue, entropy and energy parameters, it can be measured the clearing-point temperature of samples at 43 °C and 49 °C for LCs R30C5W and LCs R35C5W respectively. Moreover, the changes of color from red to blue cause the irregularity of pattern illustrated by increasing of entropy values and decreasing of energy values. Study the characteristic of LCs in various types is important particularly before it is used for many application purposes, for instance in heat transfer observation.

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114-119

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September 2020

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© 2020 Trans Tech Publications Ltd. All Rights Reserved

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[1] D. K. Yang, S. T. Wu, Fundamentals of Liquid Crystal Devices, John Wiley & Son Ltd. (2006).

Google Scholar

[2] M, Parsley, The Hallcrest Handbook of Thermochromic Liquid Crystal Technology, Hallcrest, Glenview, (1991).

Google Scholar

[3] M. Bharara, Liquid Crystal Thermography in Neuropathic Assessment of Diabetic Foot, PhD Thesis, Bournemouth University, (2007).

Google Scholar

[4] K. S. Cheng, et al. The Application of Thermal Image Analysis to Diabetic Foot Diagnosis, J. Med. Biomed. Eng. 22(2) (2002) 75-82.

Google Scholar

[5] C. He, S. Korposh, R. Correia, B. R. Hayes-Gill, S. P. Morgan, Optical fibre temperature sensor based on thermochromic liquid crystal, Proc. SPIE 11199, Seventh European Workshop on Optical Fibre Sensors, (2019) 1119908.

DOI: 10.1117/12.2539566

Google Scholar

[6] J. Stasiek, T. A. Kowalewski, Thermochromic Liquid Crystals Applied for Heat Transfer Research, Opto-Electron. Rev. 10(1) (2002) 1-10.

Google Scholar

[7] R. C. Gonzalez, R. E. Woods, S. L. Eddins, Digital Image Processing Using MATLAB, New Jersey, Prentice Hall, (2003).

Google Scholar

[8] Information on https://ch.mathworks.com/help/images/texture-analysis-1.html?s_tid=CRUX_ lftnav.

Google Scholar