Roller bidirectional feeding horse shoe nail forming machine device

CN224750013UActive Publication Date: 2026-09-15HANGZHOU HUAYU MACHINERY
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Patent Information

Application Number
CN202521218908.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-16
Publication Date
2026-09-15
Estimated Expiration
2035-06-16

AI Technical Summary

Technical Problem

[0004]本实用新型要解决的技术问题是:现有技术中存在单向送料,回程时空转造成时间浪费的缺点,为此我们提出一种滚轮双向送料骑马钉成型机装置

Benefits of technology

[0013] In this invention, through the cooperation of components such as the motor, half gear, and straightening plate of the bidirectional feeding mechanism, when saddle stitching is required, the worker installs the material on the roller, then starts the forming assembly and motor. The half gear meshes with the control gear, causing the roller to rotate and drive the material through the straightening wheel to straighten the metal wire. The straightened material is then conveyed to the top of the forming plate, where the forming assembly bends the wire into a saddle shape and cuts it. The half gear continues to rotate, and its teeth separate from the control gear. When it meshes with another control gear, another roller conveys the metal wire. Through the continuous work of the half gear, the two sets of rollers work alternately. This design achieves the effect of bidirectional roller feeding, ensuring continuous feeding and reducing idle strokes.

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Abstract

The utility model relates to horse nail forming technical field, and disclose a kind of roller bidirectional feeding horse nail forming machine device, including forming table: the top of forming table is fixedly connected with support frame, and the bottom of support frame is provided with forming assembly, and the top of forming table is provided with bidirectional feeding mechanism.This kind of roller bidirectional feeding horse nail forming machine device, starting forming assembly and motor, by half gear and control gear between meshing, so that roller rotation drives material to pass through straightening wheel and corrects metal wire, and the material after straightening is transported to the top of forming plate, and wire is bent into horse shape by forming assembly, and cut off, when half gear continues to rotate, half gear rotation and another control gear meshing, at this moment, another roller transports metal wire, by the continuous work of half gear, so that two groups of rollers work alternately, and such design reaches the effect of roller bidirectional feeding, ensure continuous feeding, reduce idle stroke.
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Description

Technical Field

[0001] This utility model relates to the field of saddle nail forming technology, and in particular to a roller bidirectional feeding saddle nail forming machine device. Background Technology

[0002] The roller bidirectional feeding saddle nail forming machine is a special mechanical equipment used for the production and installation of saddle nails. It mainly uses a roller feeding system to ensure that the material can be accurately and efficiently fed into the nailing area, and the forming head accurately nails the saddle nails into the material.

[0003] Regarding existing related technologies, the inventors believe that the following defects often exist: traditional feeding mechanisms use unidirectional feeding, and the return stroke is idle, which wastes time and reduces work efficiency, and needs to be improved. Utility Model Content

[0004] The technical problem to be solved by this utility model is that the existing technology has the disadvantage of unidirectional feeding and idle rotation during the return trip, which causes time waste. To this end, we propose a roller bidirectional feeding saddle nail forming machine device.

[0005] To achieve the above objectives, this application adopts the following technical solution: a roller bidirectional feeding saddle nail forming machine device, comprising a forming table: a support leg is fixedly connected to the bottom of the forming table, a support frame is fixedly connected to the top of the forming table, a forming component is provided at the bottom of the support frame, and a bidirectional feeding mechanism is provided at the top of the forming table; the bidirectional feeding mechanism includes a motor, the side of the motor is fixedly connected to the side of the support frame, a rotating shaft is fixedly connected to the output end of the motor, a half gear is fixedly passed through the circumferential surface of the rotating shaft, a fixed plate is fixedly connected to the top of the forming table, a support shaft is passed through the side of the fixed plate, a control gear is fixedly passed through the circumferential surface of the support shaft, and rollers are fixedly connected to the circumferential surface of the support shaft. The purpose is to use two sets of alternately working feeding rollers to ensure continuous feeding and reduce idle strokes.

[0006] Preferably, a limiting plate is fixedly connected to the circumferential surface of the roller, a straightening plate is fixedly connected to the top of the fixed plate, and a straightening wheel is fixedly connected inside the straightening plate. The purpose is to straighten the metal wire and ensure stable feeding.

[0007] Preferably, the side of the fixed plate is fixedly connected to a fixed column, and the side of the support frame is fixedly connected to a forming plate. The purpose is to improve the stability of the metal wire conveying and to accurately form the wire.

[0008] Preferably, the circumferential surface of the half gear meshes with the circumferential surface of the control gear, and the number of support shafts, rollers and straightening wheels is set to two. The purpose is to ensure that the rotation of the half gear can drive the rotation of the control gear, and the two rollers work alternately to ensure continuous material supply.

[0009] Preferably, the top of the forming table is provided with a collecting mechanism, which includes a threaded groove. The threaded groove is formed on the circumferential surface of the rotating shaft. The threaded groove is threadedly connected to a threaded sleeve. A connecting rod is fixedly connected to the top of the threaded sleeve. A pusher plate is fixedly connected to the end of the connecting rod away from the top of the threaded sleeve. The purpose is to automatically unload the formed material.

[0010] Preferably, a conveying sloping block is fixedly connected to the top of the forming table, and a collection box is slidably connected to the top of the forming table, the purpose of which is to ensure that the material after feeding can be automatically collected.

[0011] Preferably, the circumferential surface of the rotating shaft is fixedly penetrated by a limiting plate, and the side of the connecting rod penetrates the side of the support frame. The function of the limiting plate is to limit the displacement distance of the threaded sleeve.

[0012] The technical effects and advantages of this utility model are as follows:

[0013] In this invention, through the cooperation of components such as the motor, half gear, and straightening plate of the bidirectional feeding mechanism, when saddle stitching is required, the worker installs the material on the roller, then starts the forming assembly and motor. The half gear meshes with the control gear, causing the roller to rotate and drive the material through the straightening wheel to straighten the metal wire. The straightened material is then conveyed to the top of the forming plate, where the forming assembly bends the wire into a saddle shape and cuts it. The half gear continues to rotate, and its teeth separate from the control gear. When it meshes with another control gear, another roller conveys the metal wire. Through the continuous work of the half gear, the two sets of rollers work alternately. This design achieves the effect of bidirectional roller feeding, ensuring continuous feeding and reducing idle strokes.

[0014] In this invention, through the cooperation of components such as the threaded sleeve, pusher plate, and conveying inclined block of the collection mechanism, when the forming component is lifted, the rotating shaft rotates and drives the threaded sleeve to move through the threaded groove. During the movement of the pusher plate, the formed saddle nail is pushed, and the saddle nail under force is conveyed by the conveying inclined block and slides into the collection box, thus completing the automatic collection of the formed saddle nail. This design achieves the effect of automatic collection of the formed saddle nail, reducing manual collection and improving work efficiency. Attached Figure Description

[0015] The disclosure of this utility model is illustrated with reference to the accompanying drawings. It should be understood that the drawings are for illustrative purposes only and are not intended to limit the scope of protection of this utility model. In the drawings, the same reference numerals are used to refer to the same parts:

[0016] Figure 1 This is a schematic diagram of the overall three-dimensional front view of the device of this utility model;

[0017] Figure 2 This is a three-dimensional overall cross-sectional view of the device of this utility model;

[0018] Figure 3 This is a schematic diagram of the overall three-dimensional side view of the device of this utility model;

[0019] Figure 4 For the present utility model Figure 2 A magnified structural diagram of A in the middle;

[0020] Figure 5 For the present utility model Figure 3 A magnified structural diagram of B in the diagram.

[0021] Legend: 1. Forming table; 2. Support leg; 3. Support frame; 4. Forming component; 5. Bidirectional feeding mechanism; 51. Motor; 52. Rotating shaft; 53. Half gear; 54. Fixing plate; 55. Support shaft; 56. Control gear; 57. Roller; 58. Limiting plate; 59. Straightening plate; 510. Straightening wheel; 511. Fixing column; 512. Forming plate; 6. Collection mechanism; 61. Threaded groove; 62. Threaded sleeve; 63. Connecting rod; 64. Push plate; 65. Conveying slant block; 66. Collection box; 67. Limiting plate. Detailed Implementation

[0022] It is readily understood that, based on the technical solution of this utility model, those skilled in the art can propose various interchangeable structural methods and implementations without altering the essential spirit of this utility model. Therefore, the following detailed embodiments and accompanying drawings are merely illustrative descriptions of the technical solution of this utility model and should not be considered as the entirety of this utility model or as limitations or restrictions on the technical solution of this utility model.

[0023] Reference Figures 1-5 As shown, this utility model provides a technical solution: a roller bidirectional feeding saddle nail forming machine device, including a forming table 1: the bottom of the forming table 1 is fixedly connected to a support leg 2, the top of the forming table 1 is fixedly connected to a support frame 3, the bottom of the support frame 3 is provided with a forming component 4, and the top of the forming table 1 is provided with a bidirectional feeding mechanism 5; the bidirectional feeding mechanism 5 includes a motor 51, the side of the motor 51 is fixedly connected to the side of the support frame 3, the output end of the motor 51 is fixedly connected to a rotating shaft 52, a half gear 53 is fixedly passed through the circumferential surface of the rotating shaft 52, a fixing plate 54 is fixedly connected to the top of the forming table 1, a support shaft 55 is passed through the side of the fixing plate 54, a control gear 56 is fixedly passed through the circumferential surface of the support shaft 55, and rollers 57 are fixedly connected to the circumferential surface of the support shaft 55. The purpose is to use two sets of alternately working feeding rollers 57 to ensure continuous feeding and reduce idle stroke.

[0024] The roller 57 is fixedly connected to the circumferential surface of the limiting plate 58, and the top of the fixing plate 54 is fixedly connected to the straightening plate 59. The straightening plate 59 is fixedly connected to the inside of the straightening plate 59. The purpose is to straighten the metal wire and ensure stable feeding.

[0025] The side of the fixed plate 54 is fixedly connected to the fixed column 511, and the side of the support frame 3 is fixedly connected to the forming plate 512. The purpose is to improve the stability of the metal wire conveying and to accurately form it.

[0026] The circumferential surface of the half gear 53 meshes with the circumferential surface of the control gear 56. The number of support shaft 55, roller 57 and straightening wheel 510 is set to two. The purpose is to ensure that the rotation of the half gear 53 can drive the control gear 56 to rotate. The two rollers 57 work alternately to ensure continuous feeding.

[0027] The top of the forming table 1 is provided with a collection mechanism 6. The collection mechanism 6 includes a threaded groove 61. The threaded groove 61 is opened on the circumferential surface of the rotating shaft 52. The threaded groove 61 is threadedly connected to a threaded sleeve 62. A connecting rod 63 is fixedly connected to the top of the threaded sleeve 62. A pusher plate 64 is fixedly connected to the end of the connecting rod 63 away from the top of the threaded sleeve 62. The purpose is to automatically unload the formed material.

[0028] A conveying inclined block 65 is fixedly connected to the top of the forming table 1, and a collection box 66 is slidably connected to the top of the forming table 1. The purpose is to ensure that the material after feeding can be automatically collected.

[0029] The circumferential surface of the rotating shaft 52 is fixedly penetrated by the limiting plate 67, and the side of the connecting rod 63 penetrates the side of the support frame 3. The function of the limiting plate 67 is to limit the displacement distance of the threaded sleeve 62.

[0030] Working principle: When forming saddle stitches, the operator loads the material onto roller 57, then starts the forming assembly 4 and motor 51. The output end of motor 51 rotates, driving shaft 52 to rotate. Shaft 52 then drives half gear 53 to rotate. Through the meshing of half gear 53 and control gear 56, half gear 53 rotates, driving control gear 56 to rotate. Control gear 56 rotates, driving roller 57 to rotate. The rotating roller 57 carries the material through the straightening plate 59 supported by the fixed column 511. The straightening roller 510 straightens the metal wire, and the straightened material is conveyed to the top of forming plate 512. The forming assembly 4 then bends the wire into saddle stitches. The metal wire is cut off. As the half gear 53 continues to rotate, the teeth of the half gear 53 separate from the control gear 56. When it rotates and meshes with another control gear 56, another roller 57 conveys the metal wire. Through the continuous work of the half gear 53, the two sets of rollers 57 work alternately. When the forming component 4 is formed and lifted, the rotating shaft 52 rotates and drives the threaded sleeve 62 to move through the threaded groove 61. The movement of the threaded sleeve 62 drives the pusher plate 64 to move through the connecting rod 63. During the movement of the pusher plate 64, the formed saddle nail is pushed. The saddle nail under force is conveyed through the conveying inclined block 65 and slides into the collection box 66, completing the automatic collection of the formed saddle nail.

[0031] The technical scope of this utility model is not limited to the content described above. Those skilled in the art can make various modifications and variations to the above embodiments without departing from the technical concept of this utility model, and all such modifications and variations should fall within the protection scope of this utility model.

Claims

1. A roller bidirectional feeding saddle nail forming machine device, characterized in that: The device includes a forming table, with a support leg fixedly connected to the bottom of the forming table, a support frame fixedly connected to the top of the forming table, a forming component provided at the bottom of the support frame, and a bidirectional feeding mechanism provided at the top of the forming table. The bidirectional feeding mechanism includes a motor, the side of which is fixedly connected to the side of the support frame. The output end of the motor is fixedly connected to a rotating shaft, and a half gear is fixedly passed through the circumferential surface of the rotating shaft. A fixing plate is fixedly connected to the top of the forming table, and a support shaft passes through the side of the fixing plate. A control gear is fixedly passed through the circumferential surface of the support shaft, and a roller is fixedly connected to the circumferential surface of the support shaft.

2. The roller bidirectional feeding saddle nail forming machine device according to claim 1, characterized in that: A limiting plate is fixedly connected to the circumferential surface of the roller, a straightening plate is fixedly connected to the top of the fixing plate, and a straightening wheel is fixedly connected inside the straightening plate.

3. The roller bidirectional feeding saddle nail forming machine device according to claim 2, characterized in that: The side of the fixing plate is fixedly connected to a fixing column, and the side of the support frame is fixedly connected to a forming plate.

4. The roller bidirectional feeding saddle nail forming machine device according to claim 3, characterized in that: The circumferential surface of the half gear meshes with the circumferential surface of the control gear, and the number of the support shaft, roller, and straightening wheel is set to two.

5. The roller bidirectional feeding saddle nail forming machine device according to claim 4, characterized in that: The top of the forming table is provided with a collecting mechanism, which includes a threaded groove. The threaded groove is formed on the circumferential surface of the rotating shaft. The threaded groove is threadedly connected to a threaded sleeve. A connecting rod is fixedly connected to the top of the threaded sleeve. A pusher plate is fixedly connected to the end of the connecting rod away from the top of the threaded sleeve.

6. The roller bidirectional feeding saddle nail forming machine device according to claim 5, characterized in that: A conveying slant block is fixedly connected to the top of the forming table, and a collection box is slidably connected to the top of the forming table.

7. The roller bidirectional feeding saddle nail forming machine device according to claim 6, characterized in that: The circumferential surface of the rotating shaft is fixedly penetrated by a limiting plate, and the side of the connecting rod penetrates the side of the support frame.