Wood-plastic composite material and preparation method thereof
A technology of wood-plastic composite materials and waste plastics, which is applied in the field of polymer processing and can solve the problems of low bonding strength of the phase interface between wood powder and plastics
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Embodiment 1
[0027] Embodiment 1 Wood-plastic composite material preparation
[0028] Use a mill to grind the wood fiber into a fine powder with a fineness of 60 meshes, and then dry it with an infrared dryer to control its moisture content below 2.0%;
[0029] Add 100kg of dried wood fiber powder to the high-speed mixer and mix to 90°C (depending on the friction between the material and the stirring paddle and the pot wall to increase the temperature, the speed of high-speed stirring is: 1470r / min, and then add 6Kg of industrial white oil Mix with the stearic acid of 8Kg to 120 ℃ and complete.
[0030] Add 100Kg of waste plastics, 2Kg of maleic anhydride grafted high-density polyethylene, 8Kg of lubricant (calcium stearate: 4Kg, polyethylene wax: 4Kg), and 0.1Kg of anti-ultraviolet agent to the high-mixer to make the system evenly mixed.
[0031] Mixing and pre-plasticizing: Add the mixed materials to the mixing and extruding head of the flat double granulator, and the extruded rubber bl...
Embodiment 2
[0034] Example 2 Preparation of wood-plastic composite material
[0035] Use a mill to grind the wood fiber into a fine powder with a fineness of 40 meshes, and then dry it with an infrared dryer to control its moisture content below 2.0%;
[0036] Take 120Kg of the dried wood fiber powder and add it to the high-speed mixer to mix at a high speed to 90°C (rely on the friction between the material and the stirring paddle and the pot wall to heat up, the speed of high-speed stirring is: 1470r / min, and then add 8Kg of 10# industrial The stearic acid of white oil and 8Kg is mixed to 120 ℃ and completes.
[0037] Add 60Kg of waste Japanese plastics, 6Kg of maleic anhydride grafted PP, 6Kg of lubricant (zinc stearate: 3Kg, polyethylene wax: 3Kg), and 0.1Kg of UV-531 into the high mixer to make the system evenly mixed.
[0038] Following steps are with embodiment 1.
Embodiment 3
[0039] Embodiment 3 wood-plastic composite material preparation
[0040] Use a mill to grind the wood fiber into a fine powder with a fineness of 80 meshes, and then dry it with an infrared dryer to control its moisture content below 2.0%;
[0041] Take 100Kg of the dried wood fiber powder and add it to the high-speed mixer to mix at a high speed to 90°C (depending on the friction between the material and the stirring paddle and the pot wall to increase the temperature, the speed of high-speed stirring is: 1470r / min, and then add 8Kg of 10# industrial The stearic acid of white oil and 8Kg is mixed to 120 ℃ and completes.
[0042] Add 200Kg of waste plastics, 5Kg of maleic anhydride grafted PP, 4Kg of zinc stearate, 0.2Kg of UV-531, and 0.1Kg of iron oxide red into the high-mixer to make the system evenly mixed.
[0043] Following steps are with embodiment 1.
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