Riveting equipment of anti-disassembly device
By designing riveting equipment for tamper-proof devices, and utilizing automatic feeding units and detection sensors to achieve automated assembly of the tamper-proof devices, the problems of low quality reliability and low degree of mechanization in existing riveting technologies have been solved, and efficient automated production has been achieved.
Patent Information
- Application Number
- CN202520302016.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-02-25
AI Technical Summary
Existing riveting technology suffers from low quality reliability, high manual labor intensity, and low degree of mechanization, making it difficult to meet the needs of efficient and automated production.
A riveting device for tamper-proof devices was designed, including an automatic feeding unit, a riveting platform unit, and a lifting and positioning unit. The device achieves automated conveying, assembly, and limiting of the tamper-proof devices through cylinders and sensors, and combines multiple detection sensors for real-time detection.
It has enabled automated mass production of anti-tamper devices, improved riveting quality and efficiency, reduced labor costs, and avoided the problem of missing parts.
Smart Images

Figure CN223862776U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of riveting equipment technology, specifically to a riveting device for an anti-tamper device. Background Technology
[0002] Riveting is a common connection method used to fix two or more parts together, often used in the production of mechanical parts, such as anti-tamper devices. However, in existing technologies, the riveting head is usually placed first, then the key part to be riveted is manually placed in the riveting position, then placed on the riveting fixture, and finally the riveting part is pressed with a press. Although this method can meet the group requirements, it has objective problems such as low reliability and poor riveting process in terms of riveting quality. Secondly, the whole process is basically done manually, which is inefficient and has a low degree of mechanization. Therefore, reducing manual labor and improving the degree of mechanization is a technical problem faced by those skilled in the art. After multiple studies and experiments, the applicant will provide a riveting equipment for anti-tamper devices to solve the problems existing in the prior art. Utility Model Content
[0003] To address the shortcomings of existing technologies, this utility model provides a riveting device for anti-tamper devices, which solves the problems mentioned in the background section.
[0004] This utility model provides the following technical solution: a riveting device for an anti-tamper device, comprising a support frame, an anti-tamper device body, an anti-tamper device bracket, and anti-tamper device screws. A support platform is housed inside the support frame. An automatic feeding unit, a first side output unit, and a riveting platform unit are provided on one side of the support platform. A second side output unit is provided on the other side of the support platform. The outlet of the automatic feeding unit is aligned with the output structure of the first side output unit. A cross-shaped assembly space is provided inside the riveting platform unit. The output structures of the first and second side output units can be respectively driven and output to both sides of the cross-shaped assembly space. The anti-tamper device body is placed in the cross-shaped assembly space, and the anti-tamper device bracket is placed inside the automatic feeding unit. A lifting and positioning unit is installed in the middle of the support platform. The output structure of the lifting and positioning unit is aligned with the cross-shaped assembly space and can be driven and output to the cross-shaped assembly space.
[0005] Specifically, the automatic feeding unit includes a vibratory feeder, a feeding channel structure, a first cylinder, and a first pusher. The feeding channel structure has an inlet and an outlet on both sides, respectively. The output port of the vibratory feeder is aligned with the inlet on one side of the feeding channel structure. The first cylinder is installed at the bottom of the other side of the feeding channel structure, and the output end of the first cylinder is drivenly connected to the first pusher. One end of the first pusher is fitted into the outlet of the feeding channel structure and can drive the anti-tamper bracket in the outlet of the feeding channel structure to output power. The automatic feeding unit automatically reciprocates to transport the anti-tamper bracket, meeting the needs of batch assembly.
[0006] Specifically, the top of the discharge port of the feeding channel structure is fitted with a first sensor, and there is a clearance between the first sensor and the anti-tamper bracket conveyed inside the feeding channel structure to avoid structural interference. The vibratory feeder device, the feeding channel structure and the first cylinder are all installed on the top of one side of the support platform.
[0007] Specifically, the first side output unit includes a second cylinder, a fixing block, and an assembly piece. The output end of the second cylinder is connected to one end of the assembly piece. The assembly piece serves as the output structure of the first side output unit and is mounted on the top of the fixing block. The bottom of the second cylinder is mounted on the top of one side of the support platform. An anti-retraction hole is opened in one end of the assembly piece. The first side output unit serves as the initial output structure, enabling the anti-tamper bracket to automatically enter the anti-tamper body for assembly.
[0008] The riveting platform unit comprises a platform plate, a fixing column, and a third cylinder. The cross-shaped assembly space is located inside the platform plate, and a stepped hole is provided on one side of the platform plate. The output end of the third cylinder is connected to one end of the fixing column and is respectively fitted inside the top of the support platform and inside the stepped hole. The other end of the fixing column can penetrate through the top of the stepped hole and protrude under the output drive of the third cylinder. The riveting platform unit provides basic positioning for the subsequent assembly of the anti-tamper device body, and initially ensures the stability of the anti-tamper device body during the assembly process.
[0009] Specifically, the front end of the platform plate is equipped with a second sensor. The detection end of the second sensor can contact and detect the anti-tamper screws installed inside the anti-tamper body to avoid the problem of missing the screws.
[0010] Specifically, the second side output unit includes a fourth cylinder, a first floating joint, a sliding block, and a clamping block. The two ends of the first floating joint are respectively installed between the output end of the fourth cylinder and one side of the sliding block. The clamping block, as the output structure of the second side output unit, is installed on the top of the sliding block and can transmit the output to the interior of the cross-shaped assembly space. The second side output unit, as the pressure structure in the later stage of the assembly of the anti-tamper bracket and the anti-tamper body, can ensure that the anti-tamper bracket can automatically deform to be riveted and limited with the anti-tamper body.
[0011] The bottom of the clamping block is fitted with a slide rail, and both the slide rail and the fourth cylinder are mounted on the top of the other side of the support platform. The slide rail is used to guide and constrain the movement of the clamping block, ensuring the stability of the movement of the clamping block.
[0012] Specifically, the lifting and positioning unit includes a bracket, a fifth cylinder, a second floating joint, and a positioning column. The housing of the fifth cylinder is fitted inside the top front end of the bracket. The two ends of the second floating joint are respectively installed between the output end of the fifth cylinder and one end of the positioning column. The positioning column, as the output end of the lifting and positioning unit, can transmit power to the interior of the tamper-proof device body. The bottom of the bracket is fixedly installed on the top surface of the middle part of the support platform. The lifting and positioning unit serves as a top limiting condition during the assembly process of the tamper-proof device body, ensuring the stability of the tamper-proof device body during assembly.
[0013] Specifically, the first material box and the second material box are connected to the two sides of the front end of the middle part of the support frame, respectively. The first material box and the second material box serve as temporary storage space for the anti-tamper device body and the anti-tamper device screws, thereby improving the convenience.
[0014] Compared with the prior art, the present invention has the following beneficial effects:
[0015] 1. This utility model achieves automated conveying of assembly materials by using an automatic feeding unit, which solves the problem of small products being difficult to handle, and can also meet the needs of batch processing.
[0016] 2. The automatic feeding unit, the first side output unit, the riveting platform unit, the second side output unit, the support frame and the lifting and positioning unit set up in this utility model form an automated riveting equipment. In the subsequent process of assembling the anti-tamper body, the anti-tamper screws and the anti-tamper bracket, a series of operations such as automatic feeding, automatic pressure limiting and automatic side assembly can be realized. The degree of automation is high and labor costs are saved.
[0017] 3. The automated riveting equipment of this utility model is equipped with multiple detection sensors, which can detect the assembly status at different stages in real time and avoid product defects caused by omissions. Attached Figure Description
[0018] Figure 1 This is a front view schematic diagram of the structure of this utility model;
[0019] Figure 2 This is an enlarged schematic diagram of the structural riveting platform unit of this utility model;
[0020] Figure 3 This is an enlarged schematic diagram of the material feeding channel structure of this utility model;
[0021] Figure 4 This is an enlarged schematic diagram of the structural fixing column of this utility model;
[0022] Figure 5 This is an enlarged schematic diagram of the structural lifting and positioning unit of this utility model;
[0023] Figure 6 This is an enlarged schematic diagram of the main body of the anti-tamper device of this utility model.
[0024] In the diagram: 1. Support frame; 2. Anti-tamper body; 3. Anti-tamper bracket; 4. Anti-tamper screw; 5. Automatic feeding unit; 51. Vibratory feeder device; 52. Feeding channel structure; 53. First cylinder; 54. First sensor; 55. First push block; 6. First side output unit; 61. Second cylinder; 62. Fixing block; 63. Assembly piece; 7. Riveting platform unit; 71. Platform plate; 72. Fixing column; 73. Third cylinder; 74. Second sensor; 8. Second side output unit; 81. Fourth cylinder; 82. First floating joint; 83. Sliding block; 84. Clamping block; 9. Lifting and positioning unit; 91. Bracket; 92. Fifth cylinder; 93. Second floating joint; 94. Positioning column; 10. First material box; 11. Second material box; 12. Support platform; 13. Slide rail. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] Please see Figure 1-6A riveting device for an anti-tamper device includes a support frame 1, an anti-tamper device body 2, an anti-tamper device bracket 3, and anti-tamper device screws 4. A support platform 12 is internally housed within the support frame 1. An automatic feeding unit 5, a first side output unit 6, and a riveting platform unit 7 are located on one side of the support platform 12. A second side output unit 8 is located on the other side of the support platform 12. The outlet of the automatic feeding unit 5 is aligned with the output structure of the first side output unit 6. The automatic feeding unit 5 includes a vibratory feeder 51, a feeding channel structure 52, a first cylinder 53, and a first pusher 55. An inlet and an outlet are located on both sides of the feeding channel structure 52. The output outlet of the vibratory feeder 51 is aligned with the inlet on one side of the feeding channel structure 52. A cylinder 53 is installed at the bottom of the other side of the feeding channel structure 52, and the output end of the first cylinder 53 is connected to a first push block 55. One end of the first push block 55 is fitted into the outlet of the feeding channel structure 52 and can transmit the anti-tamper bracket 3 in the outlet of the feeding channel structure 52. The anti-tamper bracket 3 is automatically conveyed back and forth by the automatic feeding unit 5 to meet the needs of batch assembly. The top of the outlet of the feeding channel structure 52 is fitted with a first sensor 54. There is a clearance between the first sensor 54 and the anti-tamper bracket 3 conveyed in the inside of the feeding channel structure 52 to avoid structural interference. The vibratory feeder device 51, the feeding channel structure 52 and the first cylinder 53 are all installed on the top of one side of the support platform 12.
[0027] The riveting platform unit 7 has a cross-shaped assembly space inside. The output structure of the first side output unit 6 and the output structure of the second side output unit 8 can be driven to the two sides of the cross-shaped assembly space respectively. The first side output unit 6 includes a second cylinder 61, a fixing block 62 and an assembly piece 63. The output end of the second cylinder 61 is drivenly connected to one end of the assembly piece 63. The assembly piece 63 serves as the output structure of the first side output unit 6 and is installed on the top of the fixing block 62. The bottom of the second cylinder 61 is installed on the top of one side of the support platform 12. An anti-retraction hole is opened in one end of the assembly piece 63. The first side output unit 6 serves as the initial output structure, enabling the anti-tamper bracket 3 to enter the anti-tamper body 2 for assembly in an automated manner.
[0028] The riveting platform unit 7 includes a platform plate 71, a fixing post 72, and a third cylinder 73. A cross-shaped assembly space is set inside the platform plate 71, and a stepped hole is provided on one side of the platform plate 71. The output end of the third cylinder 73 is connected to one end of the fixing post 72 and is respectively fitted inside the top of the support platform 12 and inside the stepped hole. The other end of the fixing post 72 can penetrate through the top of the stepped hole and protrude under the output drive of the third cylinder 73. The riveting platform unit 7 provides basic positioning for the subsequent assembly of the anti-tamper body 2, and initially ensures the stability of the anti-tamper body 2 during the assembly process. A second sensor 74 is fitted at the front end of the platform plate 71. The detection end of the second sensor 74 can contact the anti-tamper screw 4 fitted inside the anti-tamper body 2 for detection, so as to avoid the problem of missing screws.
[0029] The anti-tamper body 2 is placed in the cross-shaped assembly space, the anti-tamper bracket 3 is placed inside the automatic feeding unit 5, and the middle of the support platform 12 is equipped with a lifting and positioning unit 9. The output structure of the lifting and positioning unit 9 is aligned with the cross-shaped assembly space and can transmit the output to the cross-shaped assembly space.
[0030] The second side output unit 8 includes a fourth cylinder 81, a first floating joint 82, a sliding block 83, and a clamping block 84. The two ends of the first floating joint 82 are respectively installed between the output end of the fourth cylinder 81 and one side of the sliding block 83. The clamping block 84, as the output structure of the second side output unit 8, is installed on the top of the sliding block 83 and can transmit the output to the interior of the cross-shaped assembly space. The second side output unit 8 serves as the pressure structure after the anti-tamper bracket 3 and the anti-tamper body 2 are assembled. It can ensure that the anti-tamper bracket 3 can automatically deform to be riveted and limited with the anti-tamper body 2. The bottom of the clamping block 84 is clamped with a slide rail 13. The slide rail 13 and the fourth cylinder 81 are both installed on the top of the other side of the support platform 12. The slide rail 13 is used to guide and constrain the movement of the clamping block 84 to ensure the stability of the movement of the clamping block 84.
[0031] The lifting and positioning unit 9 includes a bracket 91, a fifth cylinder 92, a second floating joint 93, and a positioning column 94. The housing of the fifth cylinder 92 is fitted inside the top front end of the bracket 91. The two ends of the second floating joint 93 are respectively installed between the output end of the fifth cylinder 92 and one end of the positioning column 94. The positioning column 94, as the output end of the lifting and positioning unit 9, can transmit power to the interior of the anti-tamper body 2. The bottom of the bracket 91 is fixedly installed on the top surface of the middle part of the support platform 12. The lifting and positioning unit 9 serves as the top limiting condition during the assembly process of the anti-tamper body 2, ensuring the stability of the anti-tamper body 2 during assembly. The two sides of the middle front end of the support frame 1 are respectively connected to the first material box 10 and the second material box 11. The first material box 10 and the second material box 11 serve as temporary placement spaces for the anti-tamper body 2 and the anti-tamper screws 4, improving convenience.
[0032] Working principle: When in use, the anti-tamper screw 4 is placed in the second material box 11 and taken out, and the anti-tamper body 2 is placed in the first material box 10 and taken out. Before assembly, the anti-tamper body 2 is placed in the cross-shaped assembly space in the platform plate 71. The operator turns on the power of the equipment, and the vibrating plate device 51 moves, conveying the anti-tamper bracket 3 inside itself into the feeding channel structure 52 with the corner facing forward. The first sensor 54 is set at the discharge port of the feeding channel structure 52 to detect the movement of the anti-tamper bracket 3 to the discharge port and output data.
[0033] When the tamper bracket 3 is detected by the first sensor 54, the first cylinder 53 drives the first push block 55 to move, pushing the corresponding tamper bracket 3 into the internal space of the cross-shaped assembly space on one side of the platform plate 71. At the same time, the operator places the tamper screw 4 inside the tamper body 2.
[0034] Next, the fifth cylinder 92 is activated, causing its output end to drive the positioning pin 94 downward through the second floating joint 93 until the bottom of the positioning pin 94 is inserted into the top of the anti-tamper body 2 and presses it firmly. Then, the second cylinder 61 is activated, and its output end drives the fixing block 62 and the assembly piece 63 to move synchronously. Then, the anti-tamper bracket 3 is sent from one side of the cross-shaped assembly space into the bracket slot of the anti-tamper body 2 and held still.
[0035] Activate the third cylinder 73, which drives the fixed column 72 upward until its top end is inserted into the anti-retraction hole at one end of the assembly piece 63. Then, activate the fourth cylinder 81, which drives the sliding block 83 and the clamping block 84 forward through the first floating joint 82. This causes the clamping block 84 to expand the locking angle on one side of the anti-tamper bracket 3 and fix it in the groove of the anti-tamper body 2. Then, close the fourth cylinder 81, and the clamping block 84 retracts from the anti-tamper body 2. Close the third cylinder 73, which drives the fixed column 72 downward, and the platform plate 71 retracts from the anti-retraction hole. Then, close the second cylinder 61, which resets the assembly piece 63 and the fixed block 62. Finally, the operator removes the riveted anti-tamper body 2 from the cross-shaped assembly space in the platform plate 71. Repeat the above operations for subsequent steps.
[0036] It should be noted that, in this document, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Additionally, in the accompanying drawings of this utility model, the fill patterns are merely for distinguishing layers and do not constitute any other limitation.
[0037] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A riveting device for an anti-tamper device, comprising a support frame (1), an anti-tamper device body (2), an anti-tamper device bracket (3), and anti-tamper device screws (4), characterized in that: The support frame (1) is internally fitted with a support platform (12). One side of the support platform (12) is provided with an automatic feeding unit (5), a first side output unit (6), and a riveting platform unit (7). The other side of the support platform (12) is provided with a second side output unit (8). The discharge port of the automatic feeding unit (5) is aligned with the output structure of the first side output unit (6). The riveting platform unit (7) is internally provided with a cross-shaped assembly space. The output structures of the first side output unit (6) and the second side output unit (8) can be driven and output to both sides of the cross-shaped assembly space respectively. The anti-tamper body (2) is placed in the cross-shaped assembly space. The anti-tamper bracket (3) is placed inside the automatic feeding unit (5). The middle of the support platform (12) is equipped with a lifting and positioning unit (9). The output structure of the lifting and positioning unit (9) is aligned with the cross-shaped assembly space and can be driven and output to the cross-shaped assembly space.
2. The riveting equipment for an anti-tamper device according to claim 1, characterized in that: The automatic feeding unit (5) includes a vibratory feeder device (51), a feeding channel structure (52), a first cylinder (53), and a first pusher block (55). The feeding channel structure (52) has an inlet and an outlet on both sides. The output port of the vibratory feeder device (51) is aligned with the inlet on one side of the feeding channel structure (52). The first cylinder (53) is installed at the bottom of the other side of the feeding channel structure (52), and the output end of the first cylinder (53) is connected to the first pusher block (55). One end of the first pusher block (55) is fitted into the outlet of the feeding channel structure (52) and can be driven to output to the anti-tamper bracket (3) in the outlet of the feeding channel structure (52).
3. The riveting equipment for an anti-tamper device according to claim 2, characterized in that: The top of the discharge port of the feeding channel structure (52) is fitted with a first sensor (54). There is a clearance between the first sensor (54) and the anti-tamper bracket (3) conveyed inside the feeding channel structure (52). The vibratory plate device (51), the feeding channel structure (52) and the first cylinder (53) are all installed on the top of one side of the support platform (12).
4. The riveting equipment for an anti-tamper device according to claim 1, characterized in that: The first side output unit (6) includes a second cylinder (61), a fixing block (62), and an assembly piece (63). The output end of the second cylinder (61) is connected to one end of the assembly piece (63). The assembly piece (63) serves as the output structure of the first side output unit (6) and is mounted on the top of the fixing block (62). The bottom of the second cylinder (61) is mounted on the top of one side of the support platform (12). An anti-retraction hole is opened in one end of the assembly piece (63).
5. The riveting equipment for an anti-tamper device according to claim 1, characterized in that: The riveting platform unit (7) includes a platform plate (71), a fixing column (72), and a third cylinder (73). The cross-shaped assembly space is located inside the platform plate (71), and a stepped hole is provided on one side of the platform plate (71). The output end of the third cylinder (73) is connected to one end of the fixing column (72) and is respectively fitted inside the top of the support platform (12) and inside the stepped hole. The other end of the fixing column (72) can penetrate through the top of the stepped hole and protrude under the output drive of the third cylinder (73).
6. The riveting equipment for an anti-tamper device according to claim 5, characterized in that: The front end of the platform plate (71) is fitted with a second sensor (74), and the detection end of the second sensor (74) can contact the anti-tamper screw (4) fitted inside the anti-tamper body (2) for detection.
7. The riveting equipment for an anti-tamper device according to claim 1, characterized in that: The second side output unit (8) includes a fourth cylinder (81), a first floating joint (82), a sliding block (83), and a clamping block (84). The two ends of the first floating joint (82) are respectively installed between the output end of the fourth cylinder (81) and one side of the sliding block (83). The clamping block (84) is installed on the top of the sliding block (83) as the output structure of the second side output unit (8) and can transmit the output to the interior of the cross-shaped assembly space.
8. The riveting equipment for an anti-tamper device according to claim 7, characterized in that: The bottom of the clamping block (84) is engaged with a slide rail (13), and the slide rail (13) and the fourth cylinder (81) are both installed on the top of the other side of the support platform (12).
9. The riveting equipment for an anti-tamper device according to claim 1, characterized in that: The lifting and positioning unit (9) includes a bracket (91), a fifth cylinder (92), a second floating joint (93), and a positioning column (94). The housing of the fifth cylinder (92) is fitted inside the top front end of the bracket (91). The two ends of the second floating joint (93) are respectively installed between the output end of the fifth cylinder (92) and one end of the positioning column (94). The positioning column (94) serves as the output end of the lifting and positioning unit (9) and can transmit power to the interior of the anti-tamper body (2). The bottom of the bracket (91) is fixedly installed on the top surface of the middle part of the support platform (12).
10. The riveting equipment for an anti-tamper device according to claim 1, characterized in that: The first material box (10) and the second material box (11) are respectively connected to the two sides of the front end of the middle part of the support frame (1).