A kind of pvc biomass foam composite material and preparation method thereof
A composite material and biomass technology, which is applied in the field of new PVC biomass foaming composite material and its preparation, can solve the problems of irregular foaming of composite materials, complicated operation, irregular reinforcing ribs, etc.
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Embodiment 1-7
[0035] In parts by weight, the formulations of the new PVC biomass foaming profiles in Examples 1-7 of the present invention are listed in the following table according to serial numbers 1-7:
[0036] Table 1
[0037]
Embodiment 1-3
[0038] Embodiment 1-3 The process of producing novel PVC biomass foaming profiles is as follows:
[0039] Step 1, put the components in the table into the high-speed mixer and mix thoroughly at high speed, the temperature reaches 110-120°C, then the mixture is transferred from the high-speed mixer to the low-speed cold mixing pot, and the temperature is lowered to 40-60°C to obtain a mixed material;
[0040] Step 2, kneading and extruding the mixture in a counter-rotating conical twin-screw extruder;
[0041] Step 3, pass the extruded material through the heating mold (the temperature of the heating mold is 165-180°C), and then pump negative pressure to cool and shape it;
[0042] Step 4, the shaped and cooled material is drawn and cut into products of a certain size by the auxiliary machine. The working parameters of the counter-rotating conical twin-screw extruder in this embodiment are as follows: the processing temperature is 156°C in the first zone, 165°C in the second zo...
Embodiment 4-7
[0047] Embodiment 4-7 The technique of producing novel PVC biomass foamed profiles is as follows:
[0048] Step 1: Put the ingredients listed in the table into the high-speed mixer and mix them thoroughly at high speed until the temperature reaches 110-120°C, then transfer the mixture from the high-speed mixer to a low-speed cold mixing pot, and lower the temperature to 40-60°C to obtain a mixture material;
[0049] Step 2, kneading and extruding the mixture in a counter-rotating conical twin-screw extruder;
[0050] Step 3, pass the extruded material through the heated mold and then pump negative pressure to cool and shape it;
[0051] Step 4, the shaped and cooled material is drawn and cut into products of a certain size by the auxiliary machine. The process parameters of the counter-rotating conical twin-screw extruder in this example are as follows: the processing temperature is 156°C in the first zone, 165°C in the second zone, 175°C in the third zone, 180°C in the four...
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