Attapulgite composite material and preparation method thereof
A technology of attapulgite and composite material, which is applied in the field of attapulgite, can solve the problems that the antioxidant capacity needs to be further improved, the dispersibility has not been improved, etc., and achieves the effects of excellent mechanical and mechanical properties, improved antistatic properties, and large chemical bond energy.
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Embodiment 1
[0026] An attapulgite composite material is characterized in that it is made of the following raw materials in parts by weight: 15 parts of triethoxysilylpropyl maleic acid modified attapulgite, fluorobenzene ionized modified poly 3, 50 parts of 6-diaminocarbazole terephthalic acid amide, 2 parts of polyaramid fiber, 10100.5 parts of antioxidant, 3 parts of methyl vinyl silicone rubber.
[0027] The preparation method of the modified attapulgite with triethoxysilyl propyl maleic acid comprises the steps of: dispersing 300 g of attapulgite in 1000 g of ethanol, and then adding triethoxy propyl maleic acid thereto 100 g, stirred and reacted at 30°C for 4 hours, then suction filtered, washed with ethanol for 3 times, and then rotary evaporated to remove the ethanol to obtain triethoxysilylpropylmaleic acid modified attapulgite.
[0028]The preparation method of the fluorobenzene ionized modified poly 3,6-diaminocarbazole terephthalic acid amide comprises the following steps: 3,6-...
Embodiment 2
[0031] An attapulgite composite material is characterized in that it is made of the following raw materials in parts by weight: 20 parts of triethoxysilylpropyl maleic acid modified attapulgite, fluorobenzene ionized modified poly 3, 55 parts of 6-diaminocarbazole terephthalic acid amide, 3 parts of polyaramid fiber, 1070.7 parts of antioxidant, 4 parts of methyl vinyl silicone rubber.
[0032] The preparation method of the modified attapulgite with triethoxysilyl propyl maleic acid comprises the following steps: dispersing 350 g of attapulgite in 1100 g of acetone, and then adding triethoxy silyl propyl maleic acid 100 g, stirred and reacted at 32°C for 4.5 hours, then filtered with suction, washed with ethanol for 4 times, and then evaporated to remove ethanol to obtain triethoxysilylpropylmaleic acid-modified attapulgite.
[0033] The preparation method of the fluorobenzene ionized modified poly 3,6-diaminocarbazole terephthalic acid amide comprises the following steps: 3,6...
Embodiment 3
[0036] An attapulgite composite material is characterized in that it is made of the following raw materials in parts by weight: 23 parts of triethoxysilylpropyl maleic acid modified attapulgite, fluorobenzene ionized modified poly 3, 60 parts of 6-diaminocarbazole terephthalic acid amide, 3.5 parts of polyaramid fiber, 17901 parts of antioxidant, 4.5 parts of methyl vinyl silicone rubber.
[0037] The preparation method of the triethoxysilyl propyl maleic acid modified attapulgite comprises the following steps: dispersing 400 g of attapulgite in 1300 g of ethyl acetate, and then adding triethoxysilyl propyl maleic acid thereto 100 g of formic acid was stirred and reacted at 35° C. for 5 hours, then suction filtered, washed 5 times with ethanol, and then rotary evaporated to remove ethanol to obtain triethoxysilylpropyl maleic acid modified attapulgite.
[0038] The preparation method of the fluorobenzene ionized modified poly 3,6-diaminocarbazole terephthalic acid amide compri...
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Abstract
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