High performance polyamide 6 based friction material and preparation method thereof
A technology of friction material and polyamide, which is applied in the field of high-performance polyamide 6-based friction material and its preparation, can solve the problem of insufficient thermal and mechanical properties to cope with high-speed friction, reduced mechanical properties and friction and wear properties, and large friction coefficient and wear and other problems, to achieve the effect of cheap mechanical strength, low friction coefficient and wear rate, and excellent mechanical properties
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Embodiment 1
[0016] 1) According to polyamide 6 resin: 55% (weight), 3-5mm E glass fiber: 15% (weight), polytetrafluoroethylene: 7% (weight), POE-g-MAH: 3.5% (weight) ;Graphite: 3.5% by weight, decabromodiphenyl ether: 10% by weight, antimony trioxide: 3% by weight, ethoxylated alkylamine: 2% by weight, antioxidant 1010 : 0.5% (weight), silane coupling agent: 0.5% (weight) batching; 2) high-speed mixing for 0.5 hours, rotating speed is 300~600 rev / min mixing; 3) the temperature of the twin-screw extruder is controlled at 190~ Mix and extrude at 250°C, water-cool and cut into pellets with a specification of Φ2.5×4 through a pelletizer; 4) Dry at 100°C for 3 hours.
[0017] The materials of this formula are analyzed and evaluated, and the following basic properties are obtained. Axial tensile strength: 67MPa, notched impact strength: 27.7KJ / m 2 , flame retardant performance: V-0, surface resistance: 4.2×10 8 Ω; friction coefficient: 0.08, wear rate: 5.5×10 -6 mm 3 / Nm.
Embodiment 2
[0019] 1) According to polyamide 6 resin: 58% (weight), E glass fiber of 3 ~ 5mm: 12.5% (weight), polytetrafluoroethylene: 6% (weight), HDPE-g-MAH: 3.5% (weight) ; UHMWPE: 3% by weight, Decabromodiphenyl ether: 11% by weight, Antimony trioxide: 3.5% by weight, Ethoxylated alkylamine: 1.5% by weight, Antioxidant 1010: 0.5% (weight), silane coupling agent: 0.5% (weight) batching; 2) high-speed mixing for 0.5 hours, and the rotating speed is 300~600 rpm to mix evenly; 3) the temperature of the twin-screw extruder Mixing and extrusion controlled at 190-250°C, water-cooled and cut into pellets with a specification of Φ2.5×4 by a pelletizer; 4) Drying at 100°C for 3 hours.
[0020] The materials of this formula are analyzed and evaluated, and the following basic properties are obtained. Axial tensile strength: 65.3MPa, notched impact strength: 25.8KJ / m 2 , flame retardant performance: V-0, surface resistance: 4.4×10 8 Ω; friction coefficient: 0.1, wear rate: 4.5×10 -6 mm 3 / N...
Embodiment 3
[0022] 1) According to polyamide 6 resin: 65% (weight), E glass fiber of 3 ~ 5mm: 10% (weight), polytetrafluoroethylene: 3.5% (weight), HDPE-g-MAH: 2% (weight) , ultra-high molecular weight polyethylene: 3.5% (weight), graphite: 3.5% (weight), tetradecabromodiphenoxybenzene: 8.5% (weight), antimony trioxide: 2.5% (weight), ethoxy Alkylamine: 0.8% (weight), antioxidant 1010: 0.2% (weight), silane coupling agent: 0.5% (weight) ingredients; 2) high-speed mixing for 0.5 hours, the rotating speed is 300~600 rev / min mixing Uniform; 3) The temperature of the twin-screw extruder is controlled at 190-250°C for mixing and extrusion, water-cooled and cut into pellets with a specification of Φ2.5×4 by a pelletizer; 4) Drying at 100°C for 3 hours.
[0023] The materials of this formula are analyzed and evaluated, and the following basic properties are obtained. Axial tensile strength: 63.5MPa, notched impact strength: 27.8KJ / m 2 , flame retardant performance: V-0, surface resistance: 4.0...
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