Flexible polyurethane-based composite material with excellent flame retardance and electromagnetic shielding performance and preparation method thereof
A technology of flame-retardant composite materials and conductive composite materials, which is applied in the field of flexible polyurethane-based composite materials and its preparation, can solve the problems of poor flame-retardant performance and low shielding efficiency, achieve low percolation value, simple manufacturing process, and high-efficiency electrical conductivity -Effect of flame retardant network
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Embodiment 1
[0027] (1) The raw material is thermoplastic polyurethane (TPU), polybutylene succinate (PBS), carbon nanotube (CNT), intumescent flame retardant (IFR), and the conductive composite material is carbon nanotube filled polybutylene Butylene glycol ester, flame retardant composite material is thermoplastic polyurethane filled with intumescent flame retardant. The raw materials were dried in a vacuum oven at 80 °C for 24 h to remove moisture before use. First prepare conductive composite materials and flame-retardant composite materials, melt and mix the dried PBS and CNT in a twin-screw extruder at a temperature of 150°C, and prepare PBS / CNT composite masterbatches containing 6wt% CNT; Melt, mix and granulate the dried TPU and IFR in a twin-screw extruder at a temperature of 185°C to prepare a TPU / IFR composite masterbatch containing 25wt% IFR;
[0028](2) Weigh 70wt% TPU / IFR and 30wt% PBS / CNT pellets according to the proportion, then add PBS / CNT to the internal mixer and mix fo...
Embodiment 2
[0036] (1) The raw material is thermoplastic polyurethane (TPU), polybutylene succinate (PBS), carbon nanotube (CNT), intumescent flame retardant (IFR), and the conductive composite material is carbon nanotube filled polybutylene Butylene glycol ester, flame retardant composite material is thermoplastic polyurethane filled with intumescent flame retardant. The raw materials were dried in a vacuum oven at 80 °C for 24 h to remove moisture before use. First prepare conductive composite materials and flame-retardant composite materials, melt and mix the dried PBS and CNT in a twin-screw extruder at a temperature of 150°C, and prepare PBS / CNT composite masterbatches containing 10wt% CNT; Melt, mix and granulate the dried TPU and IFR in a twin-screw extruder at a temperature of 185°C to prepare a TPU / IFR composite masterbatch containing 35wt% IFR;
[0037] (2) Weigh 60wt% TPU / IFR and 40wt% PBS / CNT pellets according to the proportion, then add PBS / CNT to the internal mixer and mix ...
Embodiment 3
[0044] (1) The raw materials are thermoplastic polyurethane (TPU), polybutylene succinate (PBS), carbon nanotubes (CNT), intumescent flame retardant (IFR), and the conductive composite material is carbon nanotube filled polystyrene Butylene succinate, flame retardant composite is intumescent flame retardant filled thermoplastic polyurethane. The raw materials were dried in a vacuum oven at 80 °C for 24 h to remove moisture before use. First prepare conductive composite materials and flame-retardant composite materials, melt and mix the dried PBS and CNT in a twin-screw extruder at a temperature of 150°C, and prepare PBS / CNT composite masterbatches containing 10wt% CNT; Melt, mix and granulate the dried TPU and IFR in a twin-screw extruder at a temperature of 185°C to prepare a TPU / IFR composite masterbatch containing 30wt% IFR;
[0045] (2) Weigh 75wt% TPU / IFR and 25wt% PBS / CNT pellets according to the proportion, then add PBS / CNT to the internal mixer and mix for 2 minutes, ...
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