Application of hyperbranched polyester in PA6 (polyamide 6)
A hyperbranched polyester and hydroxyl terminal hyperbranched technology, applied in the field of hyperbranched polyester, can solve problems such as uneven dispersion, high PA6 processing temperature, and poor PA6 fluidity, so as to reduce processing temperature, improve mechanical properties, and improve fluidity sexual effect
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Embodiment 1
[0037] (1) Dry the hydroxyl-terminated hyperbranched polyester Boltorn H20 in a vacuum oven at room temperature for 5 hours, and store it in a dry and sealed space;
[0038] (2) Put pure PA6 in a blast oven at 110°C for 6 hours, and place it in a dry and sealed space to cool to room temperature;
[0039] (3) Put the dried hydroxyl-terminated hyperbranched polyester Boltorn H20 obtained in step (1) and the dried pure PA6 obtained in step (2) in a high-speed mixer, mix for 3 minutes, and then introduce into a sealed and dry lower hopper spare;
[0040] (4) Heat the 10 temperature control zones of the twin-screw extruder to 230°C, and after preheating for 1 hour, the material is extruded and pelletized;
[0041] (5) Then dry the produced particles in a blast oven at 110°C for 6 hours to obtain PA6 / hydroxy-terminated hyperbranched polyester particles.
[0042] Among them, the mass of the hydroxyl-terminated hyperbranched polyester Boltorn H20 is 1% of the mass of pure PA6.
Embodiment 2-4
[0044] The conditions of Example 2-4 are the same as those of Example 1, with the only difference: the mass of the hydroxyl-terminated hyperbranched polyester Boltorn H20 in Example 2-4 is 2%, 5% and 10% of pure PA6 mass, respectively.
[0045] Physical performance tests were performed on the PA6 / hydroxy-terminated hyperbranched polyester particles prepared in Examples 1-4 and ordinary commercially available pure PA6. The test results are shown in Table 1.
[0046] Table 1 Physical properties of PA6 / hydroxy-terminated hyperbranched polyester prepared in Examples 1-4 and pure PA6
[0047] Test items
[0048] Tensile strength MPa
Embodiment 5
[0050] (1) Dry the hydroxyl-terminated hyperbranched polyester Boltorn H20 in a vacuum oven at room temperature for 5 hours, and store it in a dry and sealed space;
[0051] (2) Put pure PA6 and long glass fiber in a blast oven at 110℃ to dry for 6 hours, and cool to room temperature in a dry and sealed space;
[0052] (3) Put the dried hydroxyl-terminated hyperbranched polyester Boltorn H20 obtained in step (1) and the dried pure PA6 obtained in step (2) in a high-speed mixer, mix for 3 minutes, and then introduce into a sealed and dry lower hopper spare;
[0053] (4) Heat the 10 temperature control zones of the twin-screw extruder to 230°C. After preheating for 1 hour, the material is extruded and granulated; the long glass fiber is added in the fourth zone of the twin-screw extruder, and the long glass fiber The added amount is 25% of the mass of pure PA6;
[0054] (5) Then dry the produced particles in a blast oven at 110°C for 6 hours to obtain long glass fiber reinforced PA6 / hy...
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