A kind of high wear-resistant bio-based polyamide composite material and preparation method thereof
A technology of bio-based polyamide and composite materials, which is applied in the field of modified polyamide composite materials and its preparation, can solve the problems that the wear resistance of polyamide modified materials cannot be maintained for a long time, and achieve good mechanical properties and low cost Low, the effect of reducing production costs
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[0037] The preparation method of the high wear-resistant bio-based polyamide composite material of the present invention comprises the following steps:
[0038] (1) Add polyamide resin, high molecular weight amino polysiloxane resin, dispersant and anti-aging agent into a high-speed mixer according to a certain proportion, and mix uniformly at room temperature to obtain a mixture;
[0039] (2) Using a twin-screw extruder to extrude the mixture obtained in step (1) to pelletize at 220-300° C., cool and dry to obtain a high wear-resistant bio-based polyamide composite material.
[0040] The following examples have adopted the following characterization methods to characterize the performance of the high wear-resistant bio-based polyamide composite:
[0041] 1. Tensile strength: measured according to ISO 527-2 method.
[0042] 2. Bending strength: measured according to ISO178 method.
[0043] 3. Izod notched impact strength: measured according to ISO 1791eA method.
[0044] 4....
Embodiment 1
[0061] In this embodiment, the molecular weight of the aminopolysiloxane resin used is 1 million, and the viscosity number of PA56 is 2.8. The preparation method of the high wear-resistant bio-based polyamide composite material in this embodiment is as follows:
[0062] (1) The ratio shown in Table 1, the polyamide 56 (PA56) of 100 parts by weight, the dispersant EBS of 0.5 parts by weight and the antiaging agent HS-03 of 1.5 parts by weight are blended by a high-speed mixer, and The mixture obtained after blending was supplied to a ZSK 40 mm twin-screw extruder manufactured by Keya (set temperature: a temperature based on the melting point of polyamide resin about 30° C. higher, screw rotation speed 300 rpm) from the top feed port.
[0063] (2) Add 0.5 parts by weight of anti-wear agent aminopolysiloxane resin into the twin-screw extruder from the side feed port.
[0064] (3) Cool the molten kneaded product extruded from the outlet of the die in the form of strands, and pell...
Embodiment 2
[0067] In this embodiment, the molecular weight of the aminopolysiloxane resin used is 1 million, and the viscosity number of PA56 is 2.2. The preparation method of the high wear-resistant bio-based polyamide composite material in this embodiment is as follows:
[0068] (1) The ratio shown in Table 1, the polyamide 56 (PA56) of 100 parts by weight, the dispersant EBS of 0.5 parts by weight and the antiaging agent HS-03 of 1.5 parts by weight are blended by a high-speed mixer, and The mixture obtained after blending was supplied to a ZSK 40 mm twin-screw extruder manufactured by Keya (set temperature: a temperature based on the melting point of polyamide resin about 30° C. higher, screw rotation speed 300 rpm) from the top feed port.
[0069] (2) Add 12 parts by weight of anti-wear agent aminopolysiloxane resin into the twin-screw extruder from the side feed port.
[0070] (3) Cool the molten kneaded product extruded from the outlet of the die in the form of strands, and pelle...
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