A high-temperature macromolecule PTC thermal resistor and its making method
A thermistor and polymer technology, applied in the field of grades, can solve the problems of resistance value increase, limit application, influence use, etc., and achieve the effect of improving the withstand voltage level
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Embodiment 1
[0028] A high-temperature polymer PTC thermistor, which is composed of a core material, a metal foil coated on both sides of the core material, a lead-out electrode welded on the outer surface of the metal foil, and an insulating layer coated on the outside. The core material is pressed by conductive polymer material, wherein thermosetting fluororesin and surface-treated layered silicate clay are added to the conductive polymer material. Wherein, the high molecular polymer is polyvinylidene fluoride, fusible polytetrafluoroethylene, ethylene-tetrafluoroethylene copolymer, nylon 11, nylon 12, perfluoroethylene propylene, ethylene chlorotrifluoroethylene and its copolymer one or a combination thereof; the thermosetting fluororesin is in powder form, and its fluorine content is not less than 60%; the processing aids are carbon black dispersants, antioxidants, and crosslinking accelerators 1. One or a combination of coupling agents, the layered silicate clay is kaolin or montmoril...
Embodiment 2
[0040] Manufacture method is all identical with embodiment 1, just the formula of core material component is different, and this formula is: (by weight percentage %)
[0041] Polyvinylidene fluoride 40
[0042] Carbon black 40
[0043] Thermosetting fluororesin powder 1
[0044] Surface-treated layered silicate clay 10
[0045] Processing aids 9.
Embodiment 3
[0047]Manufacture method is all identical with embodiment 1, just the formula of core material component is different, and this formula is: (by weight percentage %)
[0048] Polyvinylidene fluoride 43
[0049] Carbon black 38
[0050] Thermosetting fluororesin powder 12
[0051] Surface-treated layered silicate clay 4
[0052] Processing aids 3.
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