Superfine long bamboo filament feeding method and production
Abstract
A superfine long bamboo filament production device comprises a bamboo filament processing machine, a baseplate, a material placement box and a material pushing box, wherein the bamboo filament processing machine is arranged on a left side of the baseplate, the material placement box is arranged above the baseplate, two mounting blocks are fixedly connected to front and rear outer side walls symmetrically, and a telescopic rod is fixedly connected to a bottom of each of the mounting blocks; the material pushing box is arranged between the baseplate and the material placement box, a discharge port is formed in a bottom of the material placement box, and is located directly above the material pushing box, a plurality of L-shaped rods are fixedly connected to an outer side wall of the material pushing box symmetrically, and the other end of each of the L-shaped rods is fixedly connected to the baseplate.
Claims
exact text as granted — not AI-modified1 . A superfine long bamboo filament production device, comprising a bamboo filament processing machine ( 24 ), a baseplate ( 1 ), a material placement box ( 2 ) and a material pushing box ( 3 ), wherein the bamboo filament processing machine ( 24 ) is arranged on a left side of the baseplate ( 1 ), the material placement box ( 2 ) is arranged above the baseplate ( 1 ), two mounting blocks ( 4 ) are fixedly connected to front and rear outer side walls symmetrically, and a telescopic rod ( 5 ) is fixedly connected to a bottom of each of the mounting blocks ( 4 ); the material pushing box ( 3 ) is arranged between the baseplate ( 1 ) and the material placement box ( 2 ), a discharge port is formed in a bottom of the material placement box ( 2 ), the discharge port is located directly above the material pushing box ( 3 ), a plurality of L-shaped rods ( 7 ) are fixedly connected to an outer side wall of the material pushing box ( 3 ) symmetrically, and the other end of each of the L-shaped rods ( 7 ) is fixedly connected to the baseplate ( 1 ); a discharge hole is formed in a left end of the material pushing box ( 3 ), a strip-shaped port is formed in a bottom of the material pushing box ( 3 ), a left end of the strip-shaped port is communicated with the discharge hole, and a push rod ( 8 ) is arranged slidably inside the strip-shaped port; a first driving mechanism is arranged on an upper surface of the baseplate ( 1 ), and the first driving mechanism is transmission-connected with the push rod ( 8 ); a plurality of connecting rods ( 9 ) are fixedly connected to the bottom of the material placement box ( 2 ), and lower ends of the plurality of connecting rods ( 9 ) are fixedly connected to a connecting plate ( 10 ) jointly; a second driving mechanism is arranged on the upper surface of the baseplate ( 1 ), and the second driving mechanism is transmission-connected with the connecting plate ( 10 ); a transmission mechanism is arranged between the first driving mechanism and the second driving mechanism, and the first driving mechanism is transmission-connected with the second driving mechanism through the transmission mechanism.
2 . The superfine long bamboo filament production device according to claim 1 , wherein the first driving mechanism comprises a lead screw ( 11 ), a motor ( 12 ), a sliding block ( 14 ) and two mounting plates ( 15 ), wherein the two mounting plates ( 15 ) are fixedly connected to the upper surface of the baseplate ( 1 ) symmetrically; the motor ( 12 ) is fixedly connected to a side wall of one of the mounting plates ( 15 ); the lead screw ( 11 ) is rotationally connected between the two mounting plates ( 15 ), and one end of the lead screw ( 11 ) passes through the corresponding mounting plate ( 15 ) and is fixedly connected to an output end of the motor ( 12 ); the sliding block ( 14 ) is thread-sheathed with a wall of the lead screw ( 11 ), and a lower end of the push rod ( 8 ) is fixedly connected to a side wall of the sliding block ( 14 ); a limiting mechanism is arranged between the two mounting plates ( 15 ), and the sliding block ( 14 ) is transmission-connected with the limiting mechanism.
3 . The superfine long bamboo filament production device according to claim 1 , wherein the second driving mechanism comprises a rotating rod ( 16 ) and a plurality of cams ( 17 ), wherein the rotating rod ( 16 ) is arranged between the two mounting plates ( 15 ) and walls at both ends are rotationally connected with the corresponding mounting plates ( 15 ) respectively; the plurality of cams ( 17 ) are fixedly sheathed with the wall of the rotating rod ( 16 ), and a side wall of each of the cams ( 17 ) is contact-connected with a lower surface of the connecting plate ( 10 ); a spring ( 18 ) is movably sheathed with a wall of each of the telescopic rods ( 5 ), and both ends of each of the springs ( 18 ) are fixedly connected to the baseplate ( 1 ) and side walls of the corresponding mounting blocks ( 4 ).
4 . The superfine long bamboo filament production device according to claim 1 , wherein the transmission mechanism comprises a belt ( 19 ) and two pulleys ( 20 ), wherein the two pulleys ( 20 ) are fixedly connected to one end of the reciprocating lead screw and the rotating rod ( 16 ) respectively, and the two pulleys ( 20 ) are transmission-connected through the belt ( 19 ).
5 . The superfine long bamboo filament production device according to claim 2 , wherein the limiting mechanism comprises a limiting rod ( 21 ) and a limiting block ( 22 ), wherein the limiting rod ( 21 ) is fixedly connected between the two mounting plates ( 15 ), and the limiting block ( 22 ) is fixedly connected to a bottom of the sliding block ( 14 ) and movably sheathed with a wall of the limiting rod ( 21 ).
6 . The superfine long bamboo filament production device according to claim 1 , wherein a first triangular block ( 23 ) is fixedly installed inside the material placement box ( 2 ), and two second triangular blocks ( 13 ) are fixedly connected inside the material pushing box ( 3 ) symmetrically.
7 . The superfine long bamboo filament production device according to claim 1 , wherein a baffle ( 6 ) is fixedly connected to a top of the push rod ( 8 ), a through hole is formed in a right end of the material pushing box ( 3 ), and the baffle ( 6 ) is matched with the discharge port and the through hole.
8 . The superfine long bamboo filament production device according to claim 2 , wherein the lead screw ( 11 ) is a reciprocating lead screw.
9 . A superfine long bamboo filament preparation method, comprising the following steps:
step 1, a plurality of bamboo pieces are placed inside a material placement box ( 2 ) and a motor ( 12 ) is started; a lead screw ( 11 ) is driven to rotate in the operation process of the motor ( 12 ), a sliding block ( 14 ) is driven to move through movable sheathing between a limiting block ( 22 ) and a limiting rod ( 21 ) in the rotation process of the lead screw ( 11 ), and a push rod ( 8 ) is driven to move in the movement process of the sliding block ( 14 ), so that the bamboo pieces inside the material placement box ( 2 ) can be pushed out to facilitate slitting operation; a baffle ( 6 ) is driven to move to the left as the push rod ( 8 ) moves to the left, so that the bamboo pieces in the material pushing box can be prevented from falling, to avoid affecting a normal processing state when the processing of the bamboo pieces in the material pushing box ( 3 ) is not completed; step 2, a rotating rod ( 16 ) is driven to rotate through transmission connection between a belt ( 19 ) and two pulleys ( 20 ) in the rotation process of the lead screw ( 11 ), a plurality of cams ( 17 ) are driven to rotate in the rotation process of the rotating rod ( 16 ), a connecting plate ( 10 ) can be driven to move up and down in the rotation process of the plurality of cams ( 17 ), and the material placement box ( 2 ) is driven to shake up and down through a plurality of connecting rods ( 9 ) and an elastic action of a plurality of springs ( 18 ) in the movement process of the connecting plate ( 10 ); and step 3, when the baffle ( 6 ) moves to a right end of a discharge port in the process of the material placement box ( 2 ) shaking up and down, a bamboo piece at the lowest level of the material pushing box ( 2 ) is completely moved out from the material pushing box ( 2 ) to ensure normal processing of bamboo filaments, and the bamboo pieces are pushed out for slitting operation continuously as the push rod ( 8 ) moves to the right.Join the waitlist — get patent alerts
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