Automatic steel seal machine
By designing an automatic stamping machine, using the driving components to control the position of the moving components, and achieving automated stamping, the problem of low efficiency of cylindrical workpiece stamping in the prior art is solved, and the printing efficiency and operation convenience are improved.
Patent Information
- Application Number
- CN202420873953.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-25
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-04-25
AI Technical Summary
In the prior art, the mechanized steel stamping of cylindrical workpieces is low in efficiency and inconvenient in operation, making it difficult to meet the needs of efficient steel stamping.
An automatic steel stamping machine is designed to control the position of the moving component by driving the component and push it to the guide plate or under the steel stamping assembly to realize automatic material steel stamping and improve the steel stamping efficiency.
By automating the steel stamping process, the steel stamping efficiency of the material is significantly improved, the operation process is simplified, and the production efficiency is improved.
Smart Images

Figure CN222832607U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of mechanical equipment, in particular to an automatic steel stamping machine. Background Art
[0002] Pins and other cylindrical workpieces are marked during the production process. Although there are steel stamping machines in the prior art, there are not many mechanized steel stamping machines for cylindrical workpieces. For example, in the existing patent, the application number is 202310825864.6, and the patent name is a rolling code steel stamping device for steel cylinders, including a base, a sliding frame, and a large bracket; the sliding frame is slidably connected to the base, and the large bracket is fixedly connected to the top of the base. The steel cylinder will rotate along the rolling code disk, and the rotation of the steel cylinder will print the rolling code on the rolling code disk on the bottleneck. Although this solution can achieve the purpose of steel stamping the surface of cylindrical workpieces, the efficiency of this solution is relatively low and the operation is inconvenient. Therefore, a new solution is needed to improve the efficiency of steel stamping. Utility Model Content
[0003] In order to solve the above technical problems, the utility model proposes an automatic steel stamping machine, which controls the position of the moving component through the driving component, so as to facilitate pushing the moving component to the bottom of the material guide plate or the bottom of the steel stamping component, so as to automatically stamp the material and improve the steel stamping efficiency of the material.
[0004] Specifically, the utility model provides an automatic steel stamping machine, comprising:
[0005] A feeding device, the feeding device comprising a first support and a material guide plate, the material guide plate being obliquely mounted on the first support;
[0006] A steel stamp assembly, the steel stamp assembly comprising a second support, a support plate and a driving mechanism, the support plate being fixed on the second support, the driving mechanism being installed on the upper surface of the support plate, and the driving mechanism having an output end moving in a vertical direction, and a steel stamp block being fixed on the output end of the driving mechanism via a connecting arm, and a guide opening for penetrating the connecting arm being provided on the support plate;
[0007] A moving component, wherein the moving component has a station for placing materials, and the material guide plate is used to put the materials into the station of the moving component;
[0008] A driving assembly having an output end that moves along a straight line and is used to send the moving assembly to the bottom of the support plate.
[0009] Preferably, the moving assembly comprises a moving plate, on which a rotating wheel is mounted via a third support, the rotating wheels are in two groups, and the material is located between the two groups of rotating wheels.
[0010] Preferably, the material is a cylindrical component.
[0011] Preferably, it also includes a cabinet, the interior of the cabinet is provided with a chamber, the feeding device, the steel stamping assembly, the moving assembly and the driving assembly are installed in the chamber, the cabinet is provided with a feeding port which passes through the chamber, and the upper end of the guide plate extends to the outside of the cabinet through the feeding port.
[0012] Preferably, a guard plate is vertically fixed on the material guide plate.
[0013] Preferably, the guard plates are respectively provided on both sides of the material guide plate.
[0014] Preferably, an adjustment plate is provided between the two guard plates, and the adjustment plate is mounted on the guard plates via an adjustment rod.
[0015] Preferably, a material blocking assembly is provided on the guard plate, and the material blocking assembly is used to control the movement state of the material.
[0016] Preferably, the material blocking assembly includes a rotating shaft, a material blocking rod, a rotating shaft seat and a control mechanism, the rotating shaft is installed on the guard plate through the rotating shaft seat, and the material blocking rod is fixed on the rotating shaft seat, the material blocking rod is used to press the material, and the control mechanism is used to control the reciprocating rotation of the rotating shaft.
[0017] Preferably, the control mechanism includes a driven arm, a driving arm, a magnet part and an electromagnet, the driven arm is fixed at the end of the rotating shaft, the driving arm is rotatably mounted on the guard plate, and the upper end of the driving arm is used to drive the driven arm to swing, the magnet part is fixed to the lower end of the driving arm, and the electromagnet is mounted on the bottom plate of the first support through a support. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the drawings required to be used in the embodiments or the description of the prior art will be briefly introduced below.
[0019] Figure 1 It is a front view of the automatic steel stamping machine proposed in this embodiment;
[0020] Figure 2 Schematic diagram of the internal structure of the automatic steel stamping machine in this embodiment;
[0021] Figure 3 yes Figure 2 A schematic diagram of the local enlarged structure at point A in the middle;
[0022] Figure 4 It is a schematic diagram of the three-dimensional structure of the feeding device in this embodiment.
[0023] The numbers involved in the accompanying drawings are as follows: 11-first support; 12-material guide plate; 13-second support; 14-support plate; 15-driving mechanism; 16-connecting arm; 17-moving assembly; 18-driving assembly; 19-moving plate; 20-third support; 21-rotating wheel; 22-cabinet; 23-guard plate; 24-adjusting plate; 25-rotating shaft; 26-material blocking rod; 27-rotating shaft seat; 28-driven arm; 29-driving arm; 30-magnet part; 31-electromagnet; 32-bottom plate; 33-discharging slide. DETAILED DESCRIPTION
[0024] The technical solution of the present application is further described below in conjunction with specific embodiments, but the present application is not limited to these embodiments.
[0025] like Figures 1 to 4 As shown, this embodiment provides an automatic steel stamping machine, comprising:
[0026] A feeding device, the feeding device comprising a first support 11 and a guide plate 12, wherein the guide plate 12 is obliquely mounted on the first support 11;
[0027] A steel stamp assembly, the steel stamp assembly comprising a second support 13, a support plate 14 and a driving mechanism 15, the support plate 14 being fixed on the second support 13, the driving mechanism 15 being installed on the upper surface of the support plate 14, and the driving mechanism 15 having an output end moving in a vertical direction, and a steel stamp block being fixed on the output end of the driving mechanism 15 via a connecting arm 16, and a guide opening for penetrating the connecting arm 16 being provided on the support plate 14;
[0028] A moving assembly 17, wherein the moving assembly 17 has a station for placing materials, and the material guide plate 12 is used to put the materials into the station of the moving assembly 17;
[0029] The driving assembly 18 has an output end that moves along a straight line, and the driving assembly 18 is used to send the moving assembly 17 to the bottom of the supporting plate 14 .
[0030] The technical effect of this solution is that the position of the moving component 17 is controlled by the driving component 18, so that the moving component 17 is pushed to the bottom of the material guide plate 12 or the bottom of the steel printing component, so as to automatically steel print the material, thereby improving the efficiency of steel printing the material.
[0031] The driving assembly 18 is a cylinder or a hydraulic cylinder, and the driving mechanism 15 in the steel stamp assembly is a rodless cylinder or a screw slider, and it can ensure that the driving mechanism 15 has a sliding block that can move in the vertical direction; of course, the driving mechanism 15 can also be manually adjusted. The connecting arm 16 is fixed on the sliding block, and the lower end of the connecting arm 16 is fixed with a steel stamp block, which is blocked by the support plate 14 and cannot be directly reflected in the attached drawings. The steel stamp block is in the shape of a rectangular parallelepiped, and the lower surface of the steel stamp block is a plane, and the plane is provided with graphic stripes for steel stamping.
[0032] Furthermore, the moving assembly 17 includes a moving plate 19, on which a rotating wheel 21 is mounted via a third support 20, and the rotating wheels 21 are in two groups, and the material is located between the two groups of rotating wheels 21. The material is a cylindrical component.
[0033] The rotating wheel 21 is arranged on the third support 20 through a bearing and a mounting shaft, and the purpose of arranging the rotating wheel 21 is to enable the material to rotate. When the steel stamp block is separated from the material, the material does not rotate; when the steel stamp block presses the material, under the action of the driving component 18, the moving component 17 moves and the rotating wheel 21 follows the movement, and at this time, under the action of static friction, the material and the rotating wheel 21 rotate, and during the rotation process, the curved surface of the material itself is fully squeezed and contacted with the steel stamp block, thereby completing the action of the steel stamp.
[0034] As an implementation mode of this embodiment, it also includes a cabinet 22, and a chamber is provided inside the cabinet 22, and the feeding device, the steel stamp assembly, the moving assembly 17 and the driving assembly 18 are installed in the chamber. The cabinet 22 is provided with a feeding port that passes through the chamber, and the upper end of the guide plate 12 extends to the outside of the cabinet 22 through the feeding port.
[0035] The technical effect of this solution is that the setting of the cabinet 22 isolates the entire steel stamping operation from the personnel, avoids the mechanized operation from causing harm to the personnel, and improves the safety of the workshop.
[0036] As an implementation of this embodiment, a guard plate 23 is vertically fixed on the material guide plate 12. Further, the guard plates 23 are respectively arranged on both sides of the material guide plate 12.
[0037] Furthermore, an adjustment plate 24 is provided between the two guard plates 23 , and the adjustment plate 24 is installed on the guard plates 23 through an adjustment rod.
[0038] The position of the adjusting plate 24 is adjusted according to the size of the material so that the material can move evenly on the material guide plate 12 .
[0039] As an implementation mode of this embodiment, a material blocking assembly is provided on the guard plate 23, and the material blocking assembly is used to control the movement state of the material.
[0040] As an implementation of this embodiment, the material blocking assembly includes a rotating shaft 25, a material blocking rod 26, a rotating shaft seat 27 and a control mechanism, wherein the rotating shaft 25 is mounted on the guard plate 23 through the rotating shaft seat 27, and the material blocking rod 26 is fixed on the rotating shaft seat 27, the material blocking rod 26 is used to press the material, and the control mechanism is used to control the reciprocating rotation of the rotating shaft 25. Further, the control mechanism includes a driven arm 28, a driving arm 29, a magnet portion 30 and an electromagnet 31, wherein the driven arm 28 is fixed to the end of the rotating shaft 25, the driving arm 29 is rotatably mounted on the guard plate 23, and the upper end of the driving arm 29 is used to drive the driven arm 28 to swing, the lower end of the driving arm 29 is fixed with the magnet portion 30, and the electromagnet 31 is mounted on the bottom plate 32 of the first support 11 through a support.
[0041] When the electromagnet 31 is not energized, the material blocking rod 26 presses the material under the action of gravity, and the material stops moving downward; when the electromagnet 31 is energized, it generates a magnetic field and acts on the magnet part 30 at the lower end of the driving arm 29, causing the driving part to rotate, thereby pushing the swing arm, so that the material blocking rod 26 is lifted.
[0042] Furthermore, the present solution also provides a discharge slide 33 and a push block, the push block and the discharge channel are located on both sides of the moving assembly 17, after the steel printing operation is completed, the driving assembly 18 drives the moving assembly 17 to move, and the moving assembly 17 is located between the discharge slide 33 and the push block, and the push block moves toward the discharge channel under the action of the electric cylinder, and pushes the material into the discharge channel at the same time. Among them, the driving method of the push block is not shown in the attached drawings, and there are many ways to realize the linear motion of the push block, such as directly fixing the push block on the output rod of the cylinder or electric cylinder, and the cylinder or electric cylinder is horizontally installed on the inner wall of the chamber of the cabinet 22.
[0043] Working principle:
[0044] Pins or other types of cylindrical materials are placed from the feeding port onto the guide plate 12. Under the action of the material blocking assembly, each time a material falls between the two wheels 21 of the moving assembly 17, the driving assembly 18 sends the moving assembly 17 to the bottom of the steel stamping assembly. At this time, the driving mechanism 15 drives the steel stamping block to move downward and presses the material. The driving assembly 18 moves again to achieve rolling of the material surface.
[0045] Finally, the driving assembly 18 delivers the moving assembly 17 to the unloading station, and then the push block pushes the material into the discharge channel.
[0046] For ordinary technicians in this field, several modifications and improvements can be made without departing from the creative concept of the utility model, which all fall within the protection scope of the utility model.
Claims
1. An automatic steel stamping machine, characterized in that: include: A feeding device, the feeding device comprising a first support (11) and a guide plate (12), wherein the guide plate (12) is obliquely mounted on the first support (11); A steel stamp assembly, the steel stamp assembly comprising a second support (13), a support plate (14) and a driving mechanism (15), the support plate (14) being fixed on the second support (13), the driving mechanism (15) being installed on the upper surface of the support plate (14), and the driving mechanism (15) having an output end moving in a vertical direction, and a steel stamp block being fixed on the output end of the driving mechanism (15) via a connecting arm (16), and a guide opening for penetrating the connecting arm (16) being provided on the support plate (14); A moving component (17), wherein the moving component (17) has a station for placing materials, and the material guide plate (12) is used to put the materials into the station of the moving component (17); A driving component (18) having an output end that moves along a straight line, and the driving component (18) is used to send the moving component (17) to the bottom of the support plate (14).
2. The automatic steel stamping machine according to claim 1, characterized in that: The moving assembly (17) comprises a moving plate (19), on which a rotating wheel (21) is mounted via a third support (20), the rotating wheels (21) being provided in two groups, and the material is located between the two groups of rotating wheels (21).
3. The automatic steel stamping machine according to claim 1, characterized in that: The material is a cylindrical component.
4. The automatic steel stamping machine according to claim 1 or 2, characterized in that: It also includes a cabinet (22), wherein a chamber is provided inside the cabinet (22), wherein the feeding device, the steel stamp assembly, the moving assembly (17) and the driving assembly (18) are installed in the chamber, and the cabinet (22) is provided with a feeding port that passes through the chamber, and the upper end of the guide plate (12) extends to the outside of the cabinet (22) through the feeding port.
5. The automatic steel stamping machine according to claim 4, characterized in that: A guard plate (23) is vertically fixed on the material guide plate (12).
6. The automatic steel stamping machine according to claim 5, characterized in that: The guard plates (23) are respectively arranged on both sides of the material guide plate (12).
7. The automatic steel stamping machine according to claim 6, characterized in that: An adjustment plate (24) is provided between the two guard plates (23), and the adjustment plate (24) is mounted on the guard plates (23) via an adjustment rod.
8. The automatic steel stamping machine according to claim 7, characterized in that: The guard plate (23) is provided with a material blocking assembly, and the material blocking assembly is used to control the movement state of the material.
9. The automatic steel stamping machine according to claim 8, characterized in that: The material blocking assembly comprises a rotating shaft (25), a material blocking rod (26), a rotating shaft seat (27) and a control mechanism. The rotating shaft (25) is mounted on the guard plate (23) via the rotating shaft seat (27), and the material blocking rod (26) is fixed on the rotating shaft seat (27). The material blocking rod (26) is used to press the material. The control mechanism is used to control the reciprocating rotation of the rotating shaft (25).
10. The automatic steel stamping machine according to claim 9, characterized in that: The control mechanism comprises a driven arm (28), a driving arm (29), a magnet portion (30) and an electromagnet (31); the driven arm (28) is fixed to the end of the rotating shaft (25); the driving arm (29) is rotatably mounted on the guard plate (23); the upper end of the driving arm (29) is used to drive the driven arm (28) to swing; the magnet portion (30) is fixed to the lower end of the driving arm (29); and the electromagnet (31) is mounted on the bottom plate (32) of the first support (11) through a support.
Citation Information
Patent Citations
Code rolling and steel seal device of steel cylinder
CN116619938A