Special high-viscosity high-strength rubber powder for polyethylene polypropylene fiber, and preparation and application method thereof
A high-strength polyethylene and polyvinyl alcohol technology, applied in the field of material manufacturing, can solve problems such as inconvenient transportation, low cement strength, and poor actual bonding effect, and achieve the effects of increasing corporate profits, increasing final strength, and increasing cement strength
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0026] A special rubber powder for high-viscosity and high-strength polyethylene polypropylene fiber, which is characterized in that: according to the weight ratio, it includes 6 parts of polyethylene oxide, 2 parts of polyacrylamide, 20 parts of carboxymethyl cellulose, 15 parts of modified starch, instant polymer 13 parts of vinyl alcohol, 17 parts of calcium formate and 3 parts of metakaolin are mixed.
[0027] Add the components in the above claim 1 into a double-helix mixer, and stir to make special rubber powder for high-viscosity and high-strength polyethylene polypropylene fiber.
[0028] Specific steps are as follows:
[0029] (1) Add half of the metered carboxymethyl cellulose and half of the metered modified starch to the twin-screw mixer;
[0030] (2) Manually mix polyacrylamide, instant polyvinyl alcohol and metakaolin into a double-helix mixer;
[0031] (3) Add all the calcium formate, remaining carboxymethyl cellulose and modified starch into the double-helix ...
Embodiment 2
[0045] A special rubber powder for high-viscosity and high-strength polyethylene polypropylene fiber, which is characterized in that: according to the weight ratio, it includes 7 parts of polyethylene oxide, 3 parts of polyacrylamide, 28 parts of carboxymethyl cellulose, 23 parts of modified starch, instant polymer 18 parts of vinyl alcohol, 22 parts of calcium formate and 8 parts of metakaolin are mixed.
[0046] Add the components in the above claim 1 into a double-helix mixer, and stir to make special rubber powder for high-viscosity and high-strength polyethylene polypropylene fiber.
[0047] Specific steps are as follows:
[0048] (1) Add half of the metered carboxymethyl cellulose and half of the metered modified starch to the twin-screw mixer;
[0049] (2) Manually mix polyacrylamide, instant polyvinyl alcohol and metakaolin into a double-helix mixer;
[0050] (3) Add all the calcium formate, remaining carboxymethyl cellulose and modified starch into the double-helix ...
Embodiment 3
[0064]A special rubber powder for high-viscosity and high-strength polyethylene polypropylene, which is characterized in that: according to the weight ratio, it includes 10 parts of polyethylene oxide, 5 parts of polyacrylamide, 40 parts of carboxymethyl cellulose, 30 parts of modified starch, instant poly 25 parts of vinyl alcohol, 32 parts of calcium formate and 10 parts of metakaolin are mixed.
[0065] Add the components in the above claim 1 into a double-helix mixer, and stir to make special rubber powder for high-viscosity and high-strength polyethylene polypropylene fiber.
[0066] Specific steps are as follows:
[0067] (1) Add half of the metered carboxymethyl cellulose and half of the metered modified starch to the twin-screw mixer;
[0068] (2) Manually mix polyacrylamide, instant polyvinyl alcohol and metakaolin into a double-helix mixer;
[0069] (3) Add all the calcium formate, remaining carboxymethyl cellulose and modified starch into the double-helix mixer; ...
PUM
| Property | Measurement | Unit |
|---|---|---|
| compressive strength | aaaaa | aaaaa |
| flexural strength | aaaaa | aaaaa |
| pressure | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
Login to View More 