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- W2154737869 abstract "There are growing interests on the study of positivetemperature coefficient (PTC) polymeric materials. ThePTC composites of semi-crystalline polyolefin and car-bon black (CB) were studied extensively because of theireasy processing and low resistivity at room temperature[1–4]. As it can be expected, CB particles usually accom-modate in amorphous region. The melt of crystallinephase would dramatically increase the volume and leadto the disconnection of CB conductive channels [1,3–6].The semi-crystalline polymers studied focus on polyeth-ylene (PE) [4–11], polypropylene (PP) [12,13] and theircopolymers or blends [2,3,9,12,14]. According to themechanism mentioned above, the PTC transformationis triggered by the melting of crystalline phase, therefore,the critical transformation temperatures are near themelt points of these polymers. In literature the lowestcritical transformation temperature was reported to be110 C [1–14]. The PTC intensity is defined as the ratioof peak resistivity to the room temperature resistivity.According to previous studies, the PTC intensity ofsemi-crystalline polymeric composites ranges from 10" @default.
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- W2154737869 date "2005-07-01" @default.
- W2154737869 modified "2023-09-25" @default.
- W2154737869 title "Polyurethane/carbon black composites with high positive temperature coefficient and low critical transformation temperature" @default.
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- W2154737869 doi "https://doi.org/10.1016/j.carbon.2005.02.001" @default.
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