Anti-static flame-retardant steel skeleton fiber reinforced resin pipe and preparation technology thereof
A fiber-reinforced resin and preparation technology, applied in the direction of pipes, rigid pipes, mechanical equipment, etc., can solve the problems of pipe body elongation reduction, cracking, and flexural performance decline, and achieve the improvement of tensile strength and bending strength , super adsorption capacity, excellent flame retardant effect
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Embodiment 1
[0056] The steps for preparing an antistatic and flame-resistant steel skeleton fiber-reinforced resin pipe are as follows:
[0057] The first step is to manufacture the anti-seepage and flame-retardant conductive inner layer
[0058] Glass fiber direct roving and 100 parts by weight of resin glue, 7 parts by weight of flame retardant, 1 part by weight of curing agent, 2 parts by weight of accelerator, 1 part by weight of carbon nanotubes, and 31 parts by weight of nano aluminum hydroxide The mixed liquid solidifies to form a cylindrical anti-seepage and flame-retardant conductive inner lining;
[0059] The second step is to process the pressure-bearing flame-retardant conductive structure layer
[0060] Put the cylindrical anti-seepage and flame-retardant conductive inner lining on the rotating mandrel, and place the galvanized steel wire winding knife holder and the glass fiber winding knife holder in parallel up and down on the walking trolley on one side of the rotating m...
Embodiment 2
[0064] The first step is to manufacture the anti-seepage and flame-retardant conductive inner layer
[0065] Glass fiber direct roving and 100 parts by weight of resin glue, 11 parts by weight of flame retardant, 2 parts by weight of curing agent, 3 parts by weight of accelerator, 2 parts by weight of carbon nanotubes, and 35 parts by weight of nano aluminum hydroxide The mixed liquid solidifies to form a cylindrical anti-seepage and flame-retardant conductive inner lining;
[0066] The second step is to process the pressure-bearing flame-retardant conductive structure layer
[0067] Put the cylindrical anti-seepage and flame-retardant conductive inner lining on the rotating mandrel, place the galvanized steel wire winding knife holder and the glass fiber winding knife holder in parallel up and down on the walking trolley on one side of the rotating mandrel, so that the glass fiber winding knife holder The glass fiber direct roving is made of 100 parts by weight of resin glue...
Embodiment 3
[0071] The first step is to manufacture the anti-seepage and flame-retardant conductive inner layer
[0072] Glass fiber direct roving and 100 parts by weight of resin glue, 15 parts by weight of flame retardant, 3 parts by weight of curing agent, 4 parts by weight of accelerator, 3 parts by weight of carbon nanotubes, and 39 parts by weight of nano aluminum hydroxide The mixed liquid solidifies to form a cylindrical anti-seepage and flame-retardant conductive inner lining;
[0073] The second step is to process the pressure-bearing flame-retardant conductive structure layer
[0074] Put the cylindrical anti-seepage and flame-retardant conductive inner lining on the rotating mandrel, and place the galvanized steel wire winding knife holder and the glass fiber winding knife holder in parallel up and down on the walking trolley on one side of the rotating mandrel, so that the glass fiber winding knife holder The glass fiber direct roving is made of 100 parts by weight of resin ...
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