Multi-shaft rotation and extrusion molding three-dimensional net-shaped structure product and molding method and equipment
A technology of three-dimensional mesh and molding equipment, which is applied in the fields of multi-axis rotation, extrusion molding three-dimensional mesh structure products and molding, which can solve the problems of product comfort reduction, messy filaments and disordered adhesion, etc., to improve adhesion, The unit is light in weight, easy to store and move
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Embodiment 1
[0023] figure 1 Forming equipment for three-dimensional network structure products 14
[0024] Including: gear motor 1, crank eccentric shaft 2, rotating body transmission plate 3, cross transition device 4, slider 5, slide rail 6, upper rotating body 7, lower rotating body 8, mold body 9, and discharge port 10.
[0025] The connection method of the three-dimensional network structure product forming equipment is: geared motor 1 links crank eccentric shaft 2, crank eccentric shaft 2 and rotating body transmission plate 3 are linked by flat keys, and rotating body transmission plate 3 passes through the horizontal openings on both sides of the rotating body transmission plate 3 The groove is connected with the upper pin of the cross transition device 4, and the longitudinal slider 5 and the slide rail 6 are installed under the cross transition device 4. The slider 5 is connected to the lower surface of the cross transition device 4, and the slide rail 6 is embedded in the upper...
Embodiment 2
[0028] multi-axis rotation technology
[0029] The upper discharge port 10 of the lower rotating body 9 is evenly distributed on the side of the lower rotating body 9, each rotating body is connected through the discharge port 10 to form a node, and through the action of gravity and downward traction, it rotates continuously and cross-transposes to form a three-dimensional network structure, the cross-section is a regular polygon.
[0030] There are 6 outlets for the lower rotating body ( Figure 4 ):
[0031] There are 6 outlets evenly distributed on the side of each lower rotating body, namely outlet a101, outlet b102, outlet c103, outlet d104, outlet e105, outlet f106, two adjacent The outlets of the rotating body meet at the tangent point to form a connection node, such as Figure 4 As shown, discharge port a101 is connected to discharge port d104, discharge port b102 is connected to discharge port e105, discharge port c103 is connected to discharge port f106, and disch...
Embodiment 3
[0034] multi-axis rotation technology
[0035] The upper discharge port 10 of the lower rotating body 9 is evenly distributed on the side of the lower rotating body 9, each rotating body is connected through the discharge port 10 to form a node, and through the action of gravity and downward traction, it rotates continuously and cross-transposes to form a three-dimensional network structure, the cross-section is a regular polygon.
[0036] There are 4 outlets of the lower rotating body ( Figure 5 ):
[0037] Four outlets are evenly distributed on the side of each lower rotating body, namely outlet g107, outlet h108, outlet i109, outlet j110, two different outlets of rotating body g107 are connected to the outlet i109, the discharge port h108 is connected to the discharge port j110, the discharge port 10 meets to form a node, each rotating body rotates counterclockwise, and the discharge port 10 meets once every time it rotates 90°, and each point rotates around the center o...
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