Processing method for improving performance of 3D printed polymer material component
A polymer material and 3D printing technology, applied in the field of processing to improve the performance of 3D printed polymer material parts, to achieve the effects of improved mechanical properties, improved wear resistance, and smaller grain size
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Embodiment 1
[0021] Secondary cryogenic treatment Put the naturally cooled 3D printed polymer material parts into the cryogenic device again, control the cooling rate to 4.5-7.5°C / min, the cooling temperature is -155--205°C, and keep warm for 16-22 hours.
[0022] Tempering treatment is to raise the metal parts after the second cryogenic treatment to room temperature at a heating rate of 8-16°C / min, and then perform tempering treatment within a time interval of less than 25 minutes. The heating temperature during tempering treatment is set at 150- 180°C, keep warm for 2 to 5 hours, and finally place the 3D printed metal parts in the air, and cool to room temperature naturally.
[0023] Put the 3D printed parts using polyvinyl alcohol (PVA) into the cryogenic treatment device, cool down to -196°C and keep the temperature constant for 18 hours. After the cryogenic treatment, place the parts in the air, and naturally cool to room temperature. 0.5°C / min.
[0024] Put the naturally cooled meta...
Embodiment 2
[0028] The 3D printed parts made of nylon (PA) were placed in a cryogenic treatment device with liquid nitrogen, and the temperature was lowered from room temperature to -185°C at 10°C / min and kept at a constant temperature for 12 hours.
[0029] Then the polymer material is placed in the air, naturally cooled and warmed up to room temperature.
[0030] Put the naturally cooled metal parts into the cryogenic device again, control the cooling rate at 6°C / min, the cooling temperature at -185°C, and keep warm for 18h.
[0031] Raise the metal parts after the secondary cryogenic treatment to room temperature at a heating rate of 13°C / min, and then perform tempering treatment within a time interval of less than 25 minutes. Set the heating temperature during tempering treatment to between 168°C and keep warm for 3.5 hours , and finally place the 3D printed metal parts in the air and cool down to room temperature naturally.
[0032] Based on this embodiment, the friction resistance ...
Embodiment 3
[0034] Put the acrylonitrile-butadiene-styrene copolymer (ABS) into the cryogenic treatment equipment, cool down to -190°C at a rate of 0.5°C / min, keep the temperature constant for 23 hours, and then cool naturally to room temperature.
[0035] Put the naturally cooled metal parts into the cryogenic device again, control the cooling rate to 7.5°C / min, the cooling temperature is -205°C, and keep warm for 22h.
[0036] Raise the metal parts after the secondary cryogenic treatment to room temperature at a heating rate of 16°C / min, and then perform tempering treatment within a time interval of less than 25 minutes. Set the heating temperature during tempering treatment to between 180°C and keep it warm for 5 hours. Finally, the 3D printed metal parts are placed in the air and cooled to room temperature naturally.
[0037] Based on the treated ABS in this embodiment, it can be seen from the tensile test and bending test that its tensile strength and bending resistance have been inc...
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