CN216915018U - Double wire feeding wheel wire feeding structure for binding machine head, binding machine head and binding machine - Google Patents

Double wire feeding wheel wire feeding structure for binding machine head, binding machine head and binding machine Download PDF

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Publication number
CN216915018U
CN216915018U CN202220237511.5U CN202220237511U CN216915018U CN 216915018 U CN216915018 U CN 216915018U CN 202220237511 U CN202220237511 U CN 202220237511U CN 216915018 U CN216915018 U CN 216915018U
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wire feeding
wire
wheel
intermediate gear
power
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CN202220237511.5U
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Chinese (zh)
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傅合义
傅宏烨
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Tianjin Xinbiao Packaging Machinery Manufacturing Co ltd
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Tianjin Xinbiao Packaging Machinery Manufacturing Co ltd
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Abstract

The utility model discloses a double wire feeding wheel wire feeding structure for a head of a binding machine, the head of the binding machine and the binding machine. The double-wire-feeding-wheel wire feeding structure for the binding machine head comprises a first wire feeding wheel wire feeding mechanism, a second wire feeding wheel wire feeding mechanism, a wire leading mechanism and a power mechanism, wherein the first wire feeding wheel wire feeding mechanism and the second wire feeding wheel wire feeding mechanism are matched for use and are arranged at an upper interval and a lower interval, the power mechanism is used for providing power for the first wire feeding wheel wire feeding mechanism and the second wire feeding wheel wire feeding mechanism, the wire leading mechanism comprises a wire leading block and a middle wire leading block arranged between the first wire feeding wheel wire feeding mechanism and the second wire feeding wheel wire feeding mechanism, and a flat wire sequentially penetrates through the wire leading block, the first wire feeding wheel wire feeding mechanism, the middle wire leading block and the second wire feeding wheel wire feeding mechanism. The application provides a two send a silk wheel to send a structure and has replaced the single silk wheel of sending of traditional technology and send a structure, can effectively solve when the book-binding machine aircraft nose operates to high-speed, the silk that appears send and skid, the stall scheduling problem, has improved the efficiency of processing.

Description

Double-wire-feeding-wheel wire feeding structure for head of binding machine, head of binding machine and binding machine
Technical Field
The utility model relates to the technical field of carton binding machine structures, in particular to a double wire feeding wheel wire feeding structure for a binding machine head, the binding machine head and a binding machine.
Background
A binding machine is a commonly used carton binding apparatus. At present, the full-automatic binding machine uses the working speed of the head of the binding machine to balance the working speed of the whole binding machine. However, when the current binding machine head is operated to a high speed, the problems of wire feeding slipping, stalling and the like generally occur, and the flat wire with a fixed length cannot be accurately fed into the formed bending wire rod, so that the binding failure is caused, and the binding efficiency is seriously influenced.
SUMMERY OF THE UTILITY MODEL
In order to solve the related technical problems, the application aims to provide a double wire feeding wheel wire feeding structure for a binding machine head, the binding machine head and the binding machine.
In order to achieve the purpose of the application, the technical scheme provided by the application is as follows:
first aspect
The application provides a book-binding machine aircraft nose is with two wire feeding wheel wire feed structures of sending, send wire feeding wheel wire feed mechanism, fuse mechanism, power unit including the first wire feeding wheel wire feed mechanism and the second that cooperate to use, upper and lower interval set up, power unit be used for to first wire feeding wheel wire feed mechanism and second send wire feeding wheel wire feed mechanism to provide power, fuse mechanism include the fuse block and set up in first wire feeding wheel wire feed mechanism and second send the middle fuse block between the wire feeding wheel wire feed mechanism, the flat silk passes the fuse block in proper order first wire feeding wheel wire feed mechanism, middle fuse block, second send wire feeding wheel wire feed mechanism.
The first wire feeding wheel wire feeding mechanism and the second wire feeding wheel wire feeding mechanism are identical in structure.
The first wire feeding wheel wire feeding mechanism comprises a first passive wire pressing wheel and a first power wire feeding wheel which are matched with each other, the first passive wire pressing wheel is pressed on the first power wire feeding wheel, and a flat wire penetrates between the first passive wire pressing wheel and the first power wire feeding wheel; the second wire feeding wheel wire feeding mechanism comprises a second passive wire pressing wheel and a second power wire feeding wheel which are matched with each other, the second passive wire pressing wheel is pressed on the second power wire feeding wheel, and the flat wire penetrates between the second passive wire pressing wheel and the second power wire feeding wheel.
The power mechanism comprises a first intermediate gear and a motor, the motor drives the first intermediate gear to rotate, the first intermediate gear is in transmission connection with a second power wire feeding wheel, and the second power wire feeding wheel is in transmission connection with the first power wire feeding wheel through a first synchronous belt.
The power mechanism comprises a first intermediate gear, a second intermediate gear, a third intermediate gear and a motor, the motor drives the first intermediate gear to rotate, the first intermediate gear is in transmission connection with the second power wire feeding wheel and the second intermediate gear, the second intermediate gear is in transmission connection with the third intermediate gear, and the third intermediate gear is in transmission connection with the first power wire feeding wheel.
The power mechanism comprises a first intermediate gear, a motor and a synchronous belt intermediate gear, the motor drives the first intermediate gear to rotate, the first intermediate gear is connected with the second power wire feeding wheel and the synchronous belt intermediate gear in a transmission manner, and the synchronous belt intermediate gear is connected with the first power wire feeding wheel through a second synchronous belt in a transmission manner.
And a wire feeding bent rail is arranged below the second wire feeding wheel wire feeding mechanism.
The wire feeding device is characterized in that a buffering cover plate is arranged on one side of the wire feeding bent rail, the lower end of the buffering cover plate is hinged with the wire feeding bent rail, and the upper end of the buffering cover plate is connected with an elastic component used for resetting the buffering cover plate.
Second aspect of the utility model
The application provides a book-binding machine aircraft nose, the book-binding machine aircraft nose include foretell arbitrary any the book-binding machine aircraft nose send a structure with two wire feed wheel.
Third aspect of the utility model
The application provides a binding machine, binding machine includes foretell binding machine aircraft nose.
Compared with the prior art, the double-wire-feeding-wheel wire feeding structure has the advantages that the double-wire-feeding-wheel wire feeding structure provided by the utility model replaces a single-wire-feeding-wheel wire feeding structure in the traditional technology, the problems of wire feeding slipping, stalling and the like when the head of the binding machine runs to a high speed can be effectively solved, the processing efficiency is improved, and the double-wire-feeding-wheel wire feeding structure is convenient to popularize and use in industry.
Drawings
Fig. 1 is a schematic structural diagram of a first embodiment of the present application;
FIG. 2 is a schematic structural diagram of a second embodiment of the present application;
FIG. 3 is a schematic structural diagram of a third embodiment of the present application;
FIG. 4 is a schematic structural diagram of a wire feeding curved rail according to an embodiment of the present disclosure;
in the figure, a first intermediate gear 1, a first synchronous belt 2, a panel 3, a first power wire feeding wheel 4, a wire guiding block 5, a first driven wire pressing wheel frame 6, a first driven wire pressing wheel 7, a middle wire guiding block 8, a second driven wire pressing wheel frame 9, a second driven wire pressing wheel 10, a second power wire feeding wheel 11, a wire feeding bent rail 12, a second intermediate gear 13, a third intermediate gear 14, a synchronous belt intermediate gear 15, a second synchronous belt 16, a return spring 17, a sensor 18 and a buffer cover plate 19.
Detailed Description
It should be noted that the embodiments and features of the embodiments in the present application may be combined with each other without conflict.
The utility model is described in further detail below with reference to the figures and specific examples. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
It is noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of example embodiments according to the present application. As used herein, the singular forms "a", "an" and "the" are intended to include the plural forms as well, and it should be understood that when used in this specification the singular forms "a", "an" and/or "the" include "specify the presence of stated features, steps, operations, elements, or modules, components, and/or combinations thereof, unless the context clearly indicates otherwise.
As used herein, the singular forms "a," "an," "the," and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise.
It will be understood that when an element is referred to herein as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
Example one
As shown in fig. 1, the double wire feeding wheel wire feeding structure for the head of the binding machine provided in this embodiment includes a first wire feeding wheel wire feeding mechanism and a second wire feeding wheel wire feeding mechanism, a wire guiding mechanism, and a power mechanism, which are installed on the panel 3, used in cooperation, and disposed at an upper and lower interval, wherein the power mechanism is used for providing power to the first wire feeding wheel wire feeding mechanism and the second wire feeding wheel wire feeding mechanism, the wire guiding mechanism includes a wire guiding block 5 and a middle wire guiding block 8 disposed between the first wire feeding wheel wire feeding mechanism and the second wire feeding wheel wire feeding mechanism, and a flat wire sequentially passes through the wire guiding block 5, the first wire feeding wheel wire feeding mechanism, the middle wire guiding block 8, and the second wire feeding wheel wire feeding mechanism.
The first wire feeding wheel wire feeding mechanism comprises a first passive wire pressing wheel 7 and a first power wire feeding wheel 4 which are matched with each other, the first passive wire pressing wheel 7 is pressed on the first power wire feeding wheel 4, a flat wire penetrates between the first passive wire pressing wheel 7 and the first power wire feeding wheel 4, and wire feeding is carried out through friction force; the second wire feeding wheel wire feeding mechanism comprises a second driven wire pressing wheel 10 and a second power wire feeding wheel 11 which are matched with each other, the second driven wire pressing wheel 10 is pressed on the second power wire feeding wheel 11, and a flat wire penetrates through the second driven wire pressing wheel and the second power wire feeding wheel to be fed through friction force. The first driven wire pressing wheel 7 is connected with the panel through a first driven wire pressing wheel frame 6; the second driven wire pressing wheel 10 is connected with the panel through a second driven wire pressing wheel frame 9.
The power mechanism comprises a first intermediate gear 1 and a motor, the motor can adopt a servo motor, the motor drives the first intermediate gear 1 to rotate, the first intermediate gear 1 is in transmission connection with a second power wire feeding wheel 11, and the second power wire feeding wheel 11 is in transmission connection with a first power wire feeding wheel 4 through a first synchronous belt 2.
As shown in fig. 4, a wire feeding curved rail 12 is arranged below the second wire feeding wheel wire feeding mechanism, a buffering cover plate 19 is arranged on one side of the wire feeding curved rail 12, the lower end of the buffering cover plate 19 is hinged to the wire feeding curved rail 12, and the upper end of the buffering cover plate is connected to an elastic component for resetting the buffering cover plate 19. The buffer cover plate 19 can rotate a certain angle around the hinge joint and can be automatically reset by an elastic component such as a reset spring 17.
When the wire feeding device is used, after the flat wire is fully fed, the excess length flat wire is subjected to the clamping force of the first wire feeding wheel wire feeding mechanism and the second wire feeding wheel wire feeding mechanism, so that the excess length flat wire is deformed into an arc shape, the buffer cover plate is pushed to rotate for a certain angle around the hinged joint by the force generated by the arc-shaped flat wire, and the excess length flat wire is not extruded and rubbed by the wire feeding wheel and the driven wire pressing wheel any more. After the wire feeding is finished, the wire feeding device enters a non-wire feeding state, the buffering cover plate automatically restores the original position through the force generated by the elastic component, and the flat wire reversely moves for a certain distance to finish the whole wire feeding process. In the process, the extrusion friction between the wire feeding wheel and the driven wire pressing wheel does not exist.
In addition, the buffer cover plate is connected with the sensor 18 through a connecting piece, and the buffer cover plate and the sensor are matched for use. In the binding process, if the conveying flat wire fails, the buffer cover plate cannot reset automatically, and the flat wire conveying mechanism still works, the sensor 18 collects signals at the moment, outputs signals for alarming, and the control mechanism controls the whole machine to stop automatically after receiving the signals, so that the flat wire can be effectively prevented from being bent and rolled.
In addition, in the embodiment, the first wire feeding wheel wire feeding mechanism and the second wire feeding wheel wire feeding mechanism are provided with the same structure.
In addition, this embodiment still provides a book-binding machine aircraft nose, the book-binding machine aircraft nose includes book-binding machine aircraft nose is with two wire feeding wheel send a structure.
In addition, the embodiment also provides the binding machine, and the binding machine comprises the binding machine head.
The binder and the binder head of the present embodiment, which are not described in the present embodiment, may employ a known technique.
Example two
Fig. 2 is a schematic structural diagram of the second embodiment. The difference between the present embodiment and the first embodiment is that the present embodiment provides another power mechanism, where the power mechanism includes a first intermediate gear 1, a second intermediate gear 13, a third intermediate gear 14, and a motor, where the motor may adopt a servo motor, the motor drives the first intermediate gear 1 to rotate, the first intermediate gear 1 is simultaneously in transmission connection with the second power wire feeding wheel 11 and the second intermediate gear 13, the second intermediate gear 13 is in transmission connection with the third intermediate gear 14, and the third intermediate gear 14 is in transmission connection with the first power wire feeding wheel 4.
EXAMPLE III
Fig. 3 is a schematic structural diagram of the third embodiment. The difference between the present embodiment and the first embodiment is that the present embodiment provides another power mechanism, the power mechanism includes a first intermediate gear 1, a motor (not shown in the figure), and a synchronous belt intermediate gear 15, the motor drives the first intermediate gear 1 to rotate, the first intermediate gear 1 is simultaneously in transmission connection with the second power wire feeding wheel 11 and the synchronous belt intermediate gear 15, and the synchronous belt intermediate gear 15 is in transmission connection with the first power wire feeding wheel 4 through a second synchronous belt 16.
It should be noted that, in the prior art, the single wire feeding structure: when the transmission speed of the wire feeding wheel is higher than 450 rpm, a stall slip condition begins to appear, the stall slip condition is gradually increased when the transmission speed of the wire feeding wheel is 450 rpm-600 rpm, and when the transmission speed of the wire feeding wheel is higher than 600 rpm, the wire feeding process cannot be completed, and the machine cannot complete work.
The wire feeding structure in the application has the advantages that when the revolution number is 600-900 rpm, the wire feeding process can be well completed, the normal stable height of a machine can be guaranteed, and the effect is good.
The technical means not described in detail in the present application are known techniques.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, many modifications and adaptations can be made without departing from the principle of the present invention, and such modifications and adaptations should also be considered as the scope of the present invention.

Claims (10)

1. The utility model provides a book-binding machine aircraft nose is with two wire feed wheel wire feeding mechanism that send, its characterized in that, including cooperate the first wire feed wheel wire feeding mechanism and the second wire feed wheel wire feeding mechanism that use, upper and lower interval set up, silk guide mechanism, power unit be used for to first wire feed wheel wire feeding mechanism and second send wire feed wheel wire feeding mechanism to provide power, silk guide mechanism include draw silk piece (5) and set up in first wire feed wheel wire feeding mechanism and second send middle draw silk piece (8) between the wire feed wheel wire feeding mechanism, the flat silk passes in proper order draw silk piece (5) first wire feed wheel wire feeding mechanism, middle draw silk piece (8), second send wire wheel wire feeding mechanism.
2. The dual wire feed wheel feed arrangement for a head of a stapler of claim 1 wherein the first wire feed wheel feed mechanism and the second wire feed wheel feed mechanism are identical in construction.
3. The double wire feeding wheel wire feeding structure for the head of the binding machine according to claim 1, wherein the first wire feeding wheel wire feeding mechanism comprises a first passive wire pressing wheel (7) and a first power wire feeding wheel (4) which are matched with each other, the first passive wire pressing wheel (7) is pressed on the first power wire feeding wheel (4), and a flat wire passes through the first passive wire pressing wheel and the first power wire feeding wheel; the second wire feeding wheel wire feeding mechanism comprises a second passive wire pressing wheel (10) and a second power wire feeding wheel (11) which are matched with each other, the second passive wire pressing wheel (10) is pressed on the second power wire feeding wheel (11), and the flat wire penetrates between the second passive wire pressing wheel and the second power wire feeding wheel.
4. The double wire feeding wheel wire feeding structure for the machine head of the binding machine according to claim 3, wherein the power mechanism comprises a first intermediate gear (1) and a motor, the motor drives the first intermediate gear (1) to rotate, the first intermediate gear (1) is in transmission connection with a second power wire feeding wheel (11), and the second power wire feeding wheel (11) is in transmission connection with the first power wire feeding wheel (4) through a first synchronous belt (2).
5. The double wire feeding wheel wire feeding structure for the machine head of the binding machine according to claim 3, wherein the power mechanism comprises a first intermediate gear (1), a second intermediate gear (13), a third intermediate gear (14) and a motor, the motor drives the first intermediate gear (1) to rotate, the first intermediate gear (1) is in transmission connection with the second power wire feeding wheel (11) and the second intermediate gear (13), the second intermediate gear (13) is in transmission connection with the third intermediate gear (14), and the third intermediate gear (14) is in transmission connection with the first power wire feeding wheel (4).
6. The dual wire feeding wheel structure for the head of a binding machine of claim 3, wherein the power mechanism comprises a first intermediate gear (1) and a motor, a synchronous belt intermediate gear (15), the motor drives the first intermediate gear (1) to rotate, the first intermediate gear (1) is in transmission connection with the second power wire feeding wheel (11) and the synchronous belt intermediate gear (15), and the synchronous belt intermediate gear (15) is in transmission connection with the first power wire feeding wheel (4) through a second synchronous belt (16).
7. The double wire feeding wheel wire feeding structure for the head of the bookbinding machine according to claim 1, wherein a wire feeding curved rail (12) is provided below the second wire feeding wheel wire feeding mechanism.
8. The double wire feeding wheel wire feeding structure for the machine head of the binding machine according to claim 7, wherein a buffering cover plate (19) is arranged on one side of the wire feeding curved rail (12), the lower end of the buffering cover plate (19) is hinged with the wire feeding curved rail (12), and the upper end of the buffering cover plate is connected with an elastic component for resetting the buffering cover plate (19).
9. A stapler head, characterized in that the stapler head comprises a double wire feeding wheel wire feeding structure for stapler heads according to any one of claims 1-8.
10. -binding machine, characterised in that it comprises a binding machine head according to claim 9.
CN202220237511.5U 2022-01-28 2022-01-28 Double wire feeding wheel wire feeding structure for binding machine head, binding machine head and binding machine Active CN216915018U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220237511.5U CN216915018U (en) 2022-01-28 2022-01-28 Double wire feeding wheel wire feeding structure for binding machine head, binding machine head and binding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220237511.5U CN216915018U (en) 2022-01-28 2022-01-28 Double wire feeding wheel wire feeding structure for binding machine head, binding machine head and binding machine

Publications (1)

Publication Number Publication Date
CN216915018U true CN216915018U (en) 2022-07-08

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220237511.5U Active CN216915018U (en) 2022-01-28 2022-01-28 Double wire feeding wheel wire feeding structure for binding machine head, binding machine head and binding machine

Country Status (1)

Country Link
CN (1) CN216915018U (en)

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