Surplus material cutting device is used in bicycle tire production
Technical Field
The utility model relates to the technical field of tire production, in particular to a residual material cutting device for bicycle tire production.
Background
At present, most solid tires are produced through a pouring process, and a material port is arranged on a production die for pouring production raw materials, so that after the product is molded, the product can leave residual materials at the material port, the joint of an upper die and a lower die and the like, and the functions and the appearance of the product are affected.
Publication number CN211640698U discloses a tire residue cutting device, and it can realize automatic cutout tire residue to use manpower sparingly, raise the efficiency, but in the in-process of using, according to the bicycle of different producer and the wheel hub of different models, need remove the deckle edge to the tire of different sizes, so it has certain limitation when using. Therefore, we propose a surplus material cutting device for bicycle tire production.
Disclosure of utility model
Aiming at the problems in the prior art, the utility model provides a surplus material cutting device for bicycle tire production.
The utility model solves the technical problem that the technical scheme adopted by the utility model is that the excess material cutting device for bicycle tire production comprises a main frame, wherein an extension bracket is integrally constructed on one side of the main frame, a first hydraulic rod is arranged at the middle of the top end of the extension bracket, a rotary connecting frame is arranged at the extension end of the first hydraulic rod through a buckle structure, and a driven wheel is rotatably connected between two inner walls at the top end of the rotary connecting frame through a rotating shaft;
The main frame is towards all having seted up first lift spout at one side both ends of extension support, two the inside sliding connection of first lift spout has first lift slider, the top center of first lift slider is link up and the spiro union is connected with drive screw, drive screw's bottom is assembled in drive motor's power take off end, the one end integrated construction of first lift slider has the regulation base, first regulation spout has been seted up to one side that first lift slider was kept away from on the top of regulation base, the inside sliding connection of first regulation spout has first regulation slider, just one side of first regulation slider is equipped with the electric putter who is used for the transmission, the top fixedly connected with movable cutter of first regulation slider.
By adopting the technical scheme, the driven wheel drives the rotating connecting frame to adjust the height by pushing the rotating connecting frame through the operation of the first hydraulic rod, so that the driven wheel is suitable for tires with different sizes, can be matched with the driving wheel and the driven wheel with the same structure above to drive the tires to rotate, can be suitable for tires with various different specifications, and improves the application range;
when the tire size is not required to be adjusted, the electric push rod in the adjusting base moves to push the first adjusting slide block to horizontally displace in the first adjusting slide groove, so that the distance between the movable cutter and the fixed cutter is adjusted to adapt to tires with different sizes, and meanwhile, the transmission motor in the first lifting slide groove moves to drive the transmission screw to rotate, so that the first lifting slide block is driven to vertically displace under the limitation of the first lifting slide groove, and the heights of the movable cutter and the fixed cutter are adjusted.
Specifically, the equal fixedly connected with auxiliary stand in surface both ends of extension support, the top of auxiliary stand is equipped with the rotation connecting piece, one side of rotation connecting piece is equipped with the action wheel, just the other end of action wheel rotates through the rotation connecting piece and connects in the lateral wall of main frame, just the lateral wall of keeping away from action wheel one end of main frame is provided with and is used for driven step motor.
Through adopting above-mentioned technical scheme, through step motor operation drive two highly the same, there is the action wheel rotation of certain interval to drive the tire rotation, and then make edge contact cutter remove deckle edge.
Specifically, one side of the top end of the adjusting base, which is far away from the movable cutter, is fixedly connected with a fixed cutter.
Through adopting above-mentioned technical scheme, cooperate movable cutter to adjust the interval between the cutter through the cutter of fixed position to can remove deckle edge to the tire of different diameter types.
Specifically, the transmission motor is arranged in a motor bin integrally extending from the main frame.
Through adopting above-mentioned technical scheme, install fixed transmission motor through the motor storehouse.
Specifically, a plurality of screw holes for fixing are formed in one side, away from the extension bracket, of the main frame.
By adopting the technical scheme, the main frame is arranged on the device main body through a plurality of screw holes.
Compared with the prior art, the utility model has the following beneficial effects:
According to the technical scheme, the driven wheel is driven to rotate through the first hydraulic rod to push the rotary connecting frame to adjust the height, so that the driven wheel is suitable for tires with different sizes, the driven wheel with the same structure above and capable of adjusting the height can be matched with the driving wheel to drive the tires to rotate, the driven wheel can be suitable for tires with various different sizes, and the application range is improved;
when the tire size is not required to be adjusted, the electric push rod in the adjusting base moves to push the first adjusting slide block to horizontally displace in the first adjusting slide groove, so that the distance between the movable cutter and the fixed cutter is adjusted to adapt to tires with different sizes, and meanwhile, the transmission motor in the first lifting slide groove moves to drive the transmission screw to rotate, so that the first lifting slide block is driven to vertically displace under the limitation of the first lifting slide groove, and the heights of the movable cutter and the fixed cutter are adjusted.
Drawings
The utility model will be further described with reference to the drawings and examples.
FIG. 1 is an isometric view of the present utility model;
FIG. 2 is a schematic view of the top connection structure of the extension bracket of the present utility model;
FIG. 3 is a schematic view of the connection structure between the main frame and the adjustment base of the present utility model;
the cutting machine comprises a main frame 1, an extension bracket 2, a first hydraulic rod 3, a rotary connecting frame 4, a driven wheel 5, an auxiliary bracket 6, an auxiliary bracket 7, a rotary connecting piece 8, a driving wheel 9, a first lifting sliding chute 10, a first lifting sliding block 11, a transmission screw rod 12, a transmission motor 13, an adjusting base 14, a first adjusting sliding chute 15, a first adjusting sliding block 16, an electric push rod 17, a movable cutter 18 and a fixed cutter.
Detailed Description
The utility model is further described in connection with the following detailed description in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the utility model easy to understand.
Referring to fig. 1-3, an embodiment of the utility model provides a technical scheme that a residual material cutting device for bicycle tire production comprises a main frame 1, wherein an extension bracket 2 is integrally constructed on one side of the main frame 1, a first hydraulic rod 3 is arranged at the center of the top end of the extension bracket 2, a rotary connecting frame 4 is arranged at the extension end of the first hydraulic rod 3 through a buckle structure, and a driven wheel 5 is rotatably connected between two inner walls at the top end of the rotary connecting frame 4 through a rotating shaft;
The main frame 1 has all seted up first lift spout 9 towards one side both ends that extend support 2, the inside sliding connection of two first lift spouts 9 has first lift slider 10, the top center of first lift slider 10 is link up and the spiro union is connected with drive screw 11, drive screw 11's bottom is assembled in drive motor 12's power take off end, first lift slider 10's one end integration structure has regulation base 13, first regulation spout 14 has been seted up to one side that first lift slider 10 was kept away from on regulation base 13's top, first regulation spout 14's inside sliding connection has first regulation slider 15, and one side of first regulation slider 15 is equipped with and is used for driven electric putter 16, the top fixedly connected with movable cutter 17 of first regulation slider 15.
When the tire is used, the driven wheel 5 drives the rotation connecting frame 4 to adjust the height by pushing the first hydraulic rod 3, so that the tire is suitable for tires with different sizes, the driven wheel 5 with the same structure above and the driving wheel 8 can be matched for height adjustment to drive the tire to rotate, the tire can be suitable for tires with various different sizes, and the application range is improved;
When the tire size is not required to be adjusted, the electric push rod 16 in the adjusting base 13 operates to push the first adjusting slide block 15 to horizontally displace in the first adjusting slide groove 14, so that the distance between the movable cutter 17 and the fixed cutter 18 is adjusted to adapt to tires with different sizes, and meanwhile, the transmission motor 12 in the first lifting slide groove 9 operates to drive the transmission screw 11 to rotate, so that the first lifting slide block 10 is driven to vertically displace under the limitation of the first lifting slide groove 9, and the heights of the movable cutter 17 and the fixed cutter 18 are adjusted.
As shown in the figure, both ends of the surface of the extension bracket 2 are fixedly connected with an auxiliary bracket 6, the top end of the auxiliary bracket 6 is provided with a rotating connecting piece 7, one side of the rotating connecting piece 7 is provided with a driving wheel 8, the other end of the driving wheel 8 is rotationally connected to the side wall of the main frame 1 through the rotating connecting piece 7, and the side wall of the main frame 1 far away from one end of the driving wheel 8 is provided with a stepping motor for transmission.
When the automatic tyre cutting machine is used, the stepping motor is used for driving the two driving wheels 8 with the same height and a certain interval to rotate, so that the tyre is driven to rotate, and the edge is contacted with the cutter to remove burrs.
As shown in the figure, a fixed cutter 18 is fixedly connected to one side of the top end of the adjustment base 13 away from the movable cutter 17.
When the tire deburring device is used, the distance between the cutters is adjusted by matching the fixed cutters with the movable cutters 17, so that burrs can be removed for tires with different diameter types.
As shown, the drive motor 12 is mounted in a motor compartment integrally extending with the main frame 1.
In use, the fixed drive motor 12 is mounted through the motor housing.
As shown in the figure, a plurality of screw holes for fixing are formed on one side of the main frame 1 away from the extension bracket 2.
In use, the main frame 1 is mounted to the apparatus body through a plurality of screw holes.
The main frame 1 is arranged on a device main body through a plurality of screw holes, the driven wheel 5 drives the rotary connecting frame 4 to adjust the height through the operation of the first hydraulic rod 3, so that the device is suitable for tires with different sizes, the driven wheel 5 with the same structure and adjustable height above the driving wheel 8 can be matched to drive the tires to rotate, the device can be suitable for tires with different specifications, the application range is improved, when the sizes of the tires are not required to be adjusted, the electric push rod 16 in the adjusting base 13 operates, the first adjusting slide block 15 is pushed to horizontally displace in the first adjusting slide groove 14, the distance between the movable cutter 17 and the fixed cutter 18 is adjusted to adapt to the tires with different sizes, and meanwhile, the transmission motor 12 in the first lifting slide groove 9 drives the transmission screw 11 to rotate, so that the first lifting slide block 10 is driven to vertically displace under the limitation of the first lifting slide groove 9, and the heights of the movable cutter 17 and the fixed cutter 18 are adjusted.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the foregoing examples, and that the foregoing description and description are merely illustrative of the principles of this utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.