Flame-retardant thermoplastic polyurethane composite material
A technology of thermoplastic polyurethane and composite materials, which is applied in the field of flame retardant materials, can solve the problems of low flame retardant efficiency of composite materials, reduced heat release and smoke release, and achieves reduced heat release rate, good flame retardant effect, and reduced Effect of total heat release
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Embodiment 1
[0030] A flame-retardant thermoplastic polyurethane composite material is prepared according to the following steps:
[0031] (1) Take 1.76 parts of copper acetate, 9 parts of melamine and 100 ml of deionized water in a 250 ml three-neck round bottom flask, install a mechanical stirrer, and stir ultrasonically at room temperature for 30 minutes.
[0032] (2) Add 20 ml of phytic acid dropwise into the above flask, and continue ultrasonic stirring at room temperature for 2 hours.
[0033] (3) The mixture was centrifuged once, washed three times with deionized water and once with absolute ethanol, and dried in vacuum at 60 degrees Celsius for 24 hours to obtain the "melamine-phytic acid-copper ion" supramolecular network flame retardant.
[0034] (4) Take 54 parts of thermoplastic polyurethane in a double-roll mill, melt it completely at 185 degrees Celsius, add 4 parts of silicon-coated ammonium polyphosphate, and 2 parts of "melamine-phytic acid-copper ion" supramolecular netwo...
Embodiment 2
[0037] A flame-retardant thermoplastic polyurethane composite material is prepared according to the following steps:
[0038] (1) Take 1.76 parts of copper acetate, 9 parts of melamine and 100 ml of deionized water in a 250 ml three-neck round bottom flask, install a mechanical stirrer, and stir ultrasonically at room temperature for 30 minutes.
[0039] (2) Add 20 ml of phytic acid dropwise into the above flask, and continue ultrasonic stirring at room temperature for 2 hours.
[0040] (3) The mixture was centrifuged once, washed three times with deionized water and once with absolute ethanol, and dried in vacuum at 60 degrees Celsius for 24 hours to obtain the "melamine-phytic acid-copper ion" supramolecular network flame retardant.
[0041] (4) Take 54 parts of thermoplastic polyurethane in a double-roller mill, melt it completely at 185 degrees Celsius, add 4.5 parts of silicon-coated ammonium polyphosphate, and 1.5 parts of "melamine-phytic acid-copper ion" supramolecular...
Embodiment 3
[0044] A flame-retardant thermoplastic polyurethane composite material is prepared according to the following steps:
[0045] (1) Take 1.76 parts of copper acetate, 9 parts of melamine and 100 ml of deionized water in a 250 ml three-neck round bottom flask, install a mechanical stirrer, and stir ultrasonically at room temperature for 30 minutes.
[0046] (2) Add 20 ml of phytic acid dropwise into the above flask, and continue ultrasonic stirring at room temperature for 2 hours.
[0047] (3) The mixture was centrifuged once, washed three times with deionized water and once with absolute ethanol, and dried in vacuum at 60 degrees Celsius for 24 hours to obtain the "melamine-phytic acid-copper ion" supramolecular network flame retardant.
[0048] (4) Take 54 parts of thermoplastic polyurethane in a double-roller mill, melt it completely at 185 degrees Celsius, add 4.8 parts of silicon-coated ammonium polyphosphate, and 1.2 parts of "melamine-phytic acid-copper ion" supramolecular n...
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