High-density intelligent carbon skateboard framework manufacturing equipment and manufacturing method thereof
A technology for manufacturing equipment and carbon skateboards, which is applied to intelligent carbon skateboard skeleton manufacturing equipment and its manufacturing field, can solve the problems that pure carbon skateboards cannot meet the requirements, reduce the resistivity of carbon strips, and complex equipment operation, etc., to ensure batch production and The effect of improving quality, reducing labor burden, and improving production efficiency
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Embodiment 1
[0031] Embodiment 1: see Figure 1-4 , for high-density intelligent carbon skateboard skeleton manufacturing equipment, including a base plate 1, the base plate 1 is a rectangular long plate placed horizontally and vertically; A rectangular plate-shaped pressing plate 13 is suspended in the middle of the U-shaped plate 11, and a stamping mechanism is arranged inside the U-shaped plate 11. The telescopic cylinder 12 in the stamping mechanism is flexibly connected with the top surface of the pressing plate 13; Rectangular plate-shaped formwork 2 is provided behind the top surface of the base plate 1, and a linkage mechanism is provided on the top surface of the base plate 1, and the T-shaped slide rail 21 in the linkage mechanism is slidably connected with the template 2; Each corner is provided with a rectangular block-shaped base 17, and the base 17 plays a role in supporting and stabilizing the entire device; the front end of the base 17 located on the front end side of the b...
Embodiment 2
[0036] Example 2: see Figure 5 , in this embodiment, the present invention also proposes a manufacturing method for high-density smart carbon skateboard skeleton manufacturing equipment, including the following steps:
[0037] Step 1, the worker puts the carbon skateboard mixture into the stamping groove 22 on the top surface of the template 2, and controls the motor shaft of the motor 12 to rotate in the forward direction through the second switch; the motor shaft of the motor 12 drives the drive shaft to rotate in the forward direction through the coupling, Then the drive shaft drives the first bevel gear 26 to rotate forward;
[0038] Step 2, the first bevel gear 26 drives the second bevel gear 27 to rotate forward through engagement, and then the second bevel gear 27 drives the worm 28 to rotate forward; the worm 28 drives the two worm gears 24 to rotate forward respectively through engagement; The worm gear 24 respectively drives the threaded rod 23 to rotate forwardly;...
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