Application of smart material in block calorimeters experiment

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dc.contributor.author Suryantari, Risti
dc.contributor.author Flaviana
dc.date.accessioned 2019-01-11T04:08:49Z
dc.date.available 2019-01-11T04:08:49Z
dc.date.issued 2018
dc.identifier.uri http://hdl.handle.net/123456789/7231
dc.description Makalah dipresentasikan pada The 3rd International Conference on Composite Materials and Material Engineering (ICCMME 2018). National University of Singapore. Singapore, 26-28 January 2018. en_US
dc.description.abstract A Smart material can adapt to the external influences such as pressure, temperature, humidity, pH, electric or magnetic fields, an example is liquid crystal. Liquid crystal materials also can be applied for thermal mapping such as thermochromic liquid crystals (TLC) sheet. TLC sheet has a good response to the temperature changes which is shown by color play. This special characteristic of TLC can be used to explain some theoretical aspects of heat transfer on metals. The metals surface images during heating will be processed by converting the RGB images to the HSV images and then applied an edge detection method on hue images. From the thermal visualization, it can be shown that the largest heat exchange to the environment occurs at metal edges, so it is necessary to apply the heat insulator during the process of collecting data in block calorimeter experiments. The brass metal has the highest heat transfer rate, followed by copper and brass. It corresponds to the specific heat (c) of metals which csteel>ccopper>cbrass. Furthermore, it can be shown that since the heat starts to be evenly distributed until 300 seconds, the increasing of metals temperature is obtained ΔTsteel en_US
dc.language.iso en en_US
dc.publisher National University of Singapore en_US
dc.subject SMART MATERIAL en_US
dc.subject THERMOCHROMIC LIQUID CRYSTALS (TLC) en_US
dc.subject BLOCK CALORIMETERS en_US
dc.title Application of smart material in block calorimeters experiment en_US
dc.type Conference Papers en_US


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