Hydraulic riveting work station

By designing a hydraulic riveting workstation, using sliding components and auxiliary loading mechanisms, the existing manual riveting process is solved, and efficient and standardized riveting operations and improved production efficiency are achieved.

CN223012415UActive Publication Date: 2025-06-24SUZHOU SWANSEA INTELLIGENT EQUIP TECH CO LTD
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Patent Information

Application Number
CN202421306578.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-07
Publication Date
2025-06-24
Estimated Expiration
2034-06-07

AI Technical Summary

Technical Problem

The existing manual riveting process is inefficient and the riveting operation cannot be fully standardized and unified, resulting in the unsafe quality of riveting.

Method used

A hydraulic riveting workstation is designed, including a frame and a riveting mechanism arranged on the frame. Through the combination of the first sliding assembly, the second sliding assembly and the third sliding assembly, the function of the hydraulic riveting gun moving along the X, Y, and Z axes is realized, and an auxiliary loading mechanism is equipped to improve loading and unloading efficiency.

Benefits of technology

Through the use of hydraulic riveting workstations, workers can quickly and accurately complete riveting operations, which improves work efficiency, reduces production fatigue, and ensures the quality of riveting.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223012415U_ABST
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Abstract

The utility model discloses a hydraulic rivet-pulling work station which comprises a machine frame and a rivet-pulling mechanism arranged on the machine frame, the rivet-pulling mechanism comprises a first sliding assembly, a second sliding assembly, a third sliding assembly, a first operation handle and a hydraulic rivet-pulling gun, the first sliding assembly is arranged on the machine frame and can move along the X axis, and the second sliding assembly is arranged on the machine frame and can move along the X axis. The second sliding assembly is connected with the first sliding assembly and can move along the Y axis, the third sliding assembly is connected with the second sliding assembly and can move along the Z axis, the first operating handle and the hydraulic hand riveter are both connected with the third sliding assembly, and the hydraulic hand riveter can move along the X axis, the Y axis and the Z axis by pushing the first operating handle. The riveting device can improve the riveting work efficiency of workers.
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Description

Technical Field

[0001] The utility model relates to the technical field of riveting, in particular to a hydraulic riveting workstation. Background Art

[0002] Riveting nuts have been widely used in the assembly of electromechanical and light industrial products such as automobiles, aviation, instruments, furniture, and decoration. Riveting nuts are developed to solve the disadvantages of easy melting of welded nuts for thin metal sheets and thin tubes, and easy slipping of internal threads when tapping. It does not require tapping internal threads, does not require welding nuts, has firm riveting, high efficiency, and is easy to use. When performing riveting operations on riveting nuts, manual or machine methods can be used. In the existing manual riveting process, workers directly hold a riveting gun to perform riveting operations on workpieces, resulting in low work efficiency, and the riveting operations cannot be completely standardized and unified, and the riveting quality cannot be guaranteed. Content of the Utility Model

[0003] Aiming at the deficiencies of the prior art, the utility model provides a hydraulic riveting workstation, which can improve the work efficiency of workers in riveting.

[0004] The utility model is realized through the following technical solutions:

[0005] A hydraulic riveting workstation includes a frame and a riveting mechanism arranged on the frame. The riveting mechanism includes a first sliding component, a second sliding component, a third sliding component, a first operating handle, and a hydraulic riveting gun. Among them, the first sliding component is arranged on the frame and can move along the X-axis. The second sliding component is connected to the first sliding component and can move along the Y-axis. The third sliding component is connected to the second sliding component and can move along the Z-axis. Both the first operating handle and the hydraulic riveting gun are connected to the third sliding component. Pushing the first operating handle can make the hydraulic riveting gun move along the X, Y, and Z axes.

[0006] Further, the first sliding component includes a first guide rail component and a first sliding component. The first sliding component is slidably installed on the first guide rail component, and the first sliding component can move along the X-axis.

[0007] Further, the first sliding component further includes a first fixing component. The first guide rail component is fixedly connected to the first fixing component, and the first fixing component is installed on the frame along the X-axis.

[0008] Further, the second sliding component includes a second guide rail component and a second sliding component. The second sliding component is slidably installed on the second guide rail component, and the second sliding component can move along the Y-axis.

[0009] Further, the second sliding component further includes a second fixing plate. The second guide rail component is fixedly connected to the second fixing plate, and the second fixing plate is installed on the first sliding component along the Y-axis.

[0010] Further, the third sliding component includes a third fixing member, and the third fixing member is installed on the second sliding component along the Z-axis.

[0011] Further, the third sliding component further includes a third sliding member and a third guide rail member. The third sliding member is fixedly connected to the third fixing member, and the third guide rail member is slidably installed on the third sliding member.

[0012] Further, the third guide rail member is fixedly connected to both the first operating handle and the hydraulic riveting gun, and the third guide rail member, the first operating handle, and the hydraulic riveting gun can all move along the Z-axis.

[0013] Further, the hydraulic riveting workstation further includes an auxiliary feeding mechanism. The auxiliary feeding mechanism includes a first rotating component and a second rotating component. The first rotating component is fixedly connected to the frame, the first rotating component is fixedly connected to the second rotating component, and the second rotating component suspends the workpiece.

[0014] Further, the number of the auxiliary feeding mechanisms is at least one.

[0015] Compared with the prior art, the advantages of the present utility model are as follows:

[0016] 1. By providing the first sliding component, the second sliding component, and the third sliding component, when the worker is working, the first operating handle can be moved along the X, Y, and Z axes, and the hydraulic riveting gun can be quickly moved to the required riveting position of the workpiece, saving time and effort in the production process.

[0017] 2. By providing the auxiliary feeding mechanism, the feeding is more time-saving and labor-saving, reducing the production fatigue of the worker, and multiple auxiliary feeding mechanisms can be provided, with the feeding and discharging areas separated, and the efficiency of loading and unloading is improved at the same time.

[0018] 3. By providing multiple auxiliary feeding mechanisms, the feeding and discharging areas are separated, making the entire working environment cleaner, and the efficiency of loading and unloading is improved at the same time. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a three-dimensional structure diagram of the hydraulic riveting workstation of the present utility model;

[0020] Figure 2 is a schematic diagram of the riveting mechanism of the hydraulic riveting workstation of the present utility model;

[0021] Figure 3 is a partial exploded view of the riveting mechanism of the hydraulic riveting workstation of the present utility model;

[0022] Figure 4 is a schematic diagram of a part of the frame of the hydraulic riveting workstation of the present utility model;

[0023] Figure 5Schematic diagram of another frame part of the hydraulic riveting workstation of the present utility model;

[0024] Figure 6 Schematic diagram of the riveting mechanism part of the hydraulic riveting workstation of the present utility model;

[0025] Figure 7 Schematic diagram of another riveting mechanism part of the hydraulic riveting workstation of the present utility model;

[0026] Figure 8 Exploded view of the riveting mechanism part of the hydraulic riveting workstation of the present utility model;

[0027] Figure 9 Schematic diagram of the auxiliary feeding mechanism of the hydraulic riveting workstation of the present utility model;

[0028] Figure 10 Exploded view of the auxiliary feeding mechanism of the hydraulic riveting workstation of the present utility model.

[0029] In the figure: 1, riveting mechanism; 10, hydraulic riveting gun; 11, first operating handle; 110, riveting button; 2, first sliding assembly; 20, first guide rail component; 200, a guide rail; 21, first sliding part; 210, a slider; 22, first fixing part; 220, a fixing plate; 221, b fixing plate; 3, second sliding assembly; 30, second guide rail component; 300, b guide rail; 31, second sliding part; 310, b slider; 32, second fixing plate; 4, third sliding assembly; 40, third fixing part; 400, first connecting plate; 401, second connecting plate; 402, third connecting plate; 403, fourth connecting plate; 404, fifth connecting plate; 405, sixth connecting plate; 406, connecting column; 407, seventh connecting plate; 41, third sliding part; 411, c slider; 42, third guide rail component; 420, linear guide rail; 421, eighth connecting plate; 422, ninth connecting plate; 423, first limiting plate; 424, second limiting plate; 19, chain component; 190, drag chain; 191, chain plate; 192, tenth connecting plate; 193, eleventh connecting plate; 194, twelfth connecting plate; 110, connecting rod; 5, frame; 50, workbench; 51, front plate; 52, material box; 6, auxiliary feeding mechanism; 60, first rotating assembly; 600, transmission shaft; 601, bracket; 602, support block; 603, support plate; 604, bearing; 605, bearing fixing sleeve; 61, second rotating assembly; 610, rotating shaft rod; 611, fixing block; 612, copper pad; 613, copper sleeve; 62, second balancing assembly; 63, workpiece; 7, gas flow regulating device; 8, first balancing assembly; 80, balancer; 81, pulley; 82, steel wire rope; 90, controller; 91, solenoid valve. Detailed implementation manners

[0030] The technical solution of the utility model will be further described in detail and non - restrictively below in conjunction with the preferred embodiments and their accompanying drawings. In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by terms such as "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the accompanying drawings. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In the description of the present utility model, "a plurality" means at least two, such as two, three, etc., unless otherwise specifically and clearly defined. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present utility model and should not be construed as a limitation of the present utility model.

[0031] As Figure 1 shown, a hydraulic riveting workstation according to an embodiment of the present utility model includes a frame 5 and a riveting mechanism 1 provided on the frame 5. The frame 5 includes a workbench 50, and a workpiece 63 is fixedly installed on the workbench 50. The riveting mechanism 1 is suspended above the frame 5 and is used for riveting the workpiece 63.

[0032] Further referring to as Figure 2 and Figure 3 shown, the riveting mechanism 1 includes a first sliding assembly 2, a second sliding assembly 3, a third sliding assembly 4, a first operating handle 11, and a hydraulic riveting gun 10. Among them, the first sliding assembly 2 is provided on the frame 5 and can move along the X - axis. The second sliding assembly 3 is connected to the first sliding assembly 2 and can move along the Y - axis. The third sliding assembly 4 is connected to the second sliding assembly 3 and can move along the Z - axis. The first operating handle 11 and the hydraulic riveting gun 10 are both connected to the third sliding assembly 4. Pushing the first operating handle 11 can make the hydraulic riveting gun 10 move along the X, Y, and Z axes.

[0033] Specifically, the first sliding assembly 2 includes a first guide rail member 20, a first sliding member 21, and a first fixing member 22. The first guide rail member 20 is fixedly connected to the first fixing member 22. The first fixing member 22 is installed on the frame 5 along the X - axis. The first sliding member 21 is slidably installed on the first guide rail member 20, and the first sliding assembly 2 can move along the X - axis.

[0034] The first sliding assembly 2 further includes a plurality of connecting rods 110. In this embodiment, the first fixing member 22 includes an a fixing plate 220 and a b fixing plate 221. The a fixing plate 220 and the b fixing plate 221 are both arranged along the X-axis. The two ends of the a fixing plate 220 and the b fixing plate 221 are respectively fixedly connected to two identical cylindrical connecting rods 110 by screws, and the connecting rods 110 are fixedly connected to the frame 5 by screws. The first guide member 20 includes a pair of a guides 200 with equal lengths. The bottom of the a guide 200 is a plane. The two a guides 200 are respectively placed on the a fixing plate 220 and the b fixing plate 221, and are fixedly connected to the a fixing plate 220 and the b fixing plate 221 by a plurality of screws respectively, and the two a guides 200 are parallel to the X-axis. The first sliding member 21 includes four identical a sliders 210. Two a sliders 210 are slidably mounted on the two guides 200 respectively, so that the first sliding assembly 2 can move along the X-axis.

[0035] The second sliding assembly 3 includes a second guide member 30, a second sliding member 31 and a second fixing plate 32. The second guide member 30 is fixedly connected to the second fixing plate 32. The second fixing plate 32 is mounted on the first sliding member 21 along the Y-axis. The second sliding member 31 is slidably mounted on the second guide member 30, and the second sliding assembly 3 can move along the Y-axis.

[0036] In this embodiment, the second guide member 30 includes a pair of b guides 300 with equal lengths. The bottom of the b guide 300 is a plane. The second fixing plate 32 is fixedly mounted on the four a sliders 210 along the Y-axis by screws. The two b guides 300 are both fixedly mounted on the second fixing plate 32 by screws, and the two b guides 300 are both parallel to the Y-axis. The second sliding member 31 includes four identical b sliders 310. Two b sliders 310 are slidably mounted on the two b guides 300 respectively, so that the second sliding assembly 3 can move along the Y-axis.

[0037] As Figures 6 to 8 shown, the third sliding assembly 4 includes a third fixing member 40, a third sliding member 41 and a third guide member 42. The third fixing member 40 is mounted on the second sliding assembly 3 along the Z-axis. The third sliding member 41 is fixedly connected to the third fixing member 40. The third guide member 42 is slidably mounted on the third sliding member 41. The third guide member 42 is fixedly connected to both the first operating handle 11 and the hydraulic riveting gun 10. The third guide member 42, the first operating handle 11 and the hydraulic riveting gun 10 can all move along the Z-axis.

[0038] In this embodiment, the third fixing member 40 includes a first connecting plate 400, a second connecting plate 401, a third connecting plate 402, a fourth connecting plate 403, a fifth connecting plate 404, a sixth connecting plate 405, a connecting column 406 and a seventh connecting plate 407. The first connecting plate 400, the second connecting plate 401 and the third connecting plate 402 are respectively fixedly connected to the upper, left and right surfaces of the second sliding member 31 by screws. The fourth connecting plate 403 is fixedly connected to the second fixing plate 32 by screws. Both the fifth connecting plate 404 and the sixth connecting plate 405 are perpendicular to the fourth connecting plate 403 along the Z-axis and are both fixedly connected to the fourth connecting plate 403 by screws. The fifth connecting plate 404 and the sixth connecting plate 405 are parallel. The connecting column 406 is inserted between the fifth connecting plate 404 and the sixth connecting plate 405 and is fixedly connected to both the fifth connecting plate 404 and the sixth connecting plate 405 by bolts. The seventh connecting plate 407 is fixedly connected in front of the connecting column 406 by screws. The third sliding member 41 includes two identical c-sliders 411, and the two c-sliders 411 are fixedly mounted on the seventh connecting plate 407 by screws. The third guide rail member 42 includes a pair of linear guide rails 420 with equal lengths, a first limiting plate 423, a second limiting plate 424, an eighth connecting plate 421 and a ninth connecting plate 422. The two linear guide rails 420 are respectively slidably mounted on the two c-sliders 411, and the third guide rail member 42 can move along the Z-axis. The first limiting plate 423 and the second limiting plate 424 are mounted at both ends of the two linear guide rails 420. The two linear guide rails 420, the first limiting plate 423 and the second limiting plate 424 are all fixedly mounted on the eighth connecting plate 421 by screws. Limit blocks are respectively fixedly mounted on the first limiting plate 423 and the second limiting plate 424, and the limit blocks limit the stroke of the linear guide rails 420. The ninth connecting plate 422 is fixedly connected to the eighth connecting plate 421 by screws. The first operating handle 11 and the hydraulic riveting gun 10 are both fixedly mounted on the ninth connecting plate 422, so that the first operating handle 11 and the hydraulic riveting gun 10 can move along the Z-axis along with the third guide rail member 42.

[0039] Through the X-axis movement of the first sliding assembly 2, the Y-axis movement of the second sliding assembly 3 and the Z-axis movement of the third guide rail member 42, the first operating handle 11 and the hydraulic riveting gun 10 can move along the X-axis, Y-axis and Z-axis. The worker only needs to push the first operating handle 11 to move the hydraulic riveting gun 10. The operation is simple and smooth, which facilitates the riveting work of the worker and improves the working efficiency of riveting.

[0040] Such as Figures 3 to 5As shown, the riveting mechanism 1 further includes a chain component 19. The chain component 19 includes a pair of drag chains 190 with equal lengths, a chain plate 191, and a tenth connecting plate 192. The two drag chains 190 are placed on the chain plate 191 as a whole. The tenth connecting plate 192 is in an "L" shape. One end of the drag chain 190 is fixedly connected to one side of the tenth connecting plate 192 by screws, and the other side of the tenth connecting plate 192 is fixedly connected to the second fixing plate 32 by screws. When the first sliding component 21 moves on the first guide rail component 20, the second fixing plate 32 moves along with the first sliding component 21, thereby driving the two drag chains 190 to move together. The wires (not shown in the figure) and air pipes (not shown in the figure) installed in the drag chains 190 also move together, ensuring the normal progress of the riveting work.

[0041] The cross-section of the chain plate 191 is in an "L" shape. The side surface of the chain plate 191 is fixedly connected to the machine frame 5 by screws. A part of the b fixing plate 221 is placed on the chain plate 191, and the b fixing plate 221 is fixedly connected to the chain plate 191 by screws. The machine frame 5 is also provided with an eleventh connecting plate 193 and a twelfth connecting plate 194. The cross-sections of the eleventh connecting plate 193 and the twelfth connecting plate 194 are both "triangular". The eleventh connecting plate 193 and the twelfth connecting plate 194 are both fixedly connected to the machine frame 5 by screws. The chain plate 191 and the b fixing plate 221 are placed on the twelfth connecting plate 194, and the b fixing plate 221 is fixedly connected to the twelfth connecting plate 194 by screws. The a fixing plate 220 is placed on the eleventh connecting plate 193 and is fixedly connected to the eleventh connecting plate 193 by screws. By accommodating the wires and air pipes in the chain component 19, the wear of the wires and air pipes during movement is reduced, and the potential safety hazards caused by the exposure of the wires and air pipes are eliminated.

[0042] As Figure 6 shown, two operating handles are installed on the third guide rail component 42. One of them is the first operating handle 11. A riveting button 110 is provided on the first operating handle 11, and the riveting button 110 controls the riveting operation. When the worker performs riveting, pressing the riveting button 110 can rivet the workpiece, and the riveting operation is simple and convenient.

[0043] As Figure 1 shown, a controller 90 and a solenoid valve 91 are further provided under the workbench 50 of the machine frame 5. The controller 90 is electrically connected to the solenoid valve 91 to control the opening and closing of the solenoid valve 91. The hydraulic riveting gun 10 is externally connected to a gas source. The solenoid valve 91 is electrically connected to the hydraulic riveting gun 10 to realize the opening and closing of the air flow inside the gun. The riveting button 101 is electrically connected to the controller 90. During the riveting work, when the worker presses the riveting button 101, the riveting button 101 transmits an electrical signal to the controller 90. The controller 90 controls the opening of the solenoid valve 91, the air flow inside the gun is connected, and the hydraulic riveting gun 10 starts to work.

[0044] As Figure 7As shown, the riveting mechanism 1 is further provided with a first balance assembly 8, and the first balance assembly 8 is fixedly connected to the third fixed member 40. The first balance assembly 8 includes a balancer 80, two pulleys 81 and a steel wire rope 82. In this embodiment, the balancer 80 is a spring balancer. The two sides of the balancer 80 are fixed to the connecting column 406 by fixing side plates with screws and are installed behind the connecting column 406, opposite to the position of the hydraulic riveting gun. The two pulleys 81 are fixedly installed on the front and rear surfaces of the connecting column 406. The connecting column 40 is provided with through holes, and the steel wire rope 82 passes through the through holes and is wound around the two pulleys 81. One end of the steel wire rope 82 is fixedly connected to the balancer 80, and the other end is fixedly connected to the third guide rail member 42. A hydraulic riveting gun is installed on the third guide rail member 42, so that the hydraulic riveting gun and the third guide rail member 42 are in a weightless state, reducing the labor intensity of workers, improving the production efficiency, and avoiding the dropping of the hydraulic riveting gun, protecting the safety of the equipment and workers.

[0045] As Figure 1 , Figure 9 and Figure 10 shown, the hydraulic riveting workstation further includes an auxiliary feeding mechanism 6. The auxiliary feeding mechanism 6 includes a first rotating assembly 60, a second rotating assembly 61, a second balance assembly 62 and a workpiece 63. The first rotating assembly 60 includes a bracket 601, a transmission shaft 600, two support blocks 602 and a support plate 603. The bracket 601 is "triangular" and integrally formed. One end of the bracket 601 is a hollow shaft, and the hollow shaft is sleeved on the transmission shaft 600. Counterbore steps are provided at both ends of the hollow shaft. In this embodiment, two bearings 604 are sleeved on both ends of the transmission shaft 600 and embedded in the counterbore steps. There are two steps at the lower end of the transmission shaft 600. The through hole of one support block 602 is clamped between the two steps and fixed with screws. The upper end of the transmission shaft 600 is inserted into the through hole of the other support block 602 and fixed with screws. A bearing fixing sleeve 605 is used to connect between the support block 602 and the bearing 604 to protect the smooth rotation of the bearing 604. The two support blocks 602 are fixedly installed on the support plate 603, and the support plate 603 is fixedly connected to the front plate 51 of the frame 5 by screws. By sleeving bearings at both ends of the transmission shaft 600, the first rotating assembly 60 can rotate smoothly.

[0046] The second rotating assembly 61 includes a rotating shaft rod 610, a copper sleeve 613, a copper pad 612 and a fixing block 611. The rotating shaft rod 610 is "L-shaped", one end of the rotating shaft rod 610 is shaft-shaped, and the copper sleeve 613 is sleeved on one end of the rotating shaft rod 610. The other end of the bracket 601 is provided with a through hole and sleeved on the copper sleeve 613, and is fixed by screws. A countersunk head step is provided at the top of the other end of the bracket 601, the copper pad 612 is embedded in the countersunk head step and fixedly connected by screws, and the fixing block 611 is fixedly connected to the copper pad 612 by screws, so as to fixedly connect the bracket 601 and the rotating shaft rod 610. The copper sleeve 613 is used to connect between the first rotating assembly 60 and the second rotating assembly 61, and can ensure the relative rotation of the first rotating assembly 60 and the second rotating assembly 61 even under the conditions of lack of lubricant and using water-based lubricant. Through the settings of the first rotating assembly 60 and the second rotating assembly 61, the auxiliary feeding mechanism 6 can be rotated and moved in the XY plane, facilitating the handling of the workpiece 23.

[0047] The other end of the rotating shaft rod 610 is fixedly connected to the second balancing assembly 62 by screws. The second balancing assembly 62 is connected to the workpiece 23. The second balancing assembly 62 is specifically a balancer, and the balancer is used to hang the workpiece 23 to make the workpiece 23 in a weightless state, reducing the labor intensity of the feeding work and improving the production efficiency of the feeding.

[0048] The number of the auxiliary feeding mechanisms 6 is at least one. In this embodiment, two auxiliary feeding mechanisms 6 are used. One auxiliary feeding mechanism 6 is used for feeding, and the other auxiliary feeding mechanism 6 (not shown in the figure) is used for discharging, separating the feeding and discharging areas, making the working environment clean and orderly, and improving the working efficiency of loading and unloading.

[0049] As Figure 1 shown, the frame 5 is further provided with a gas flow regulating device 7. The gas flow regulating device 7 is connected to the main gas source (not shown in the figure). The gas flow of the gas flow regulating device 7 is preset before the riveting work, and the gas flow regulating device 7 provides a stable air flow for the hydraulic riveting workstation.

[0050] A material box 52 is further provided on the front plate 51. The material box 52 is used to place materials, such as riveting nuts. When the workpiece 63 lacks or urgently needs riveting nuts, the riveting nuts are taken from the material box 54 and placed at the riveting part required by the workpiece 63, making the taking of the riveting nuts very convenient and time-saving.

[0051] During operation, the worker places the rivet nut in advance at the part of the workpiece 63 to be riveted, transports the prepared workpiece 63 to the workbench 50 through the auxiliary loading mechanism 6 and installs it. Then, the worker pushes the first operation handle 11 in the X-axis, Y-axis, and Z-axis directions to drive the hydraulic riveting gun 10 to move. After the hydraulic riveting gun 10 is aligned with the rivet nut, the worker presses the riveting button 110 to complete the riveting operation. After all the riveting work is completed, the worker uses another auxiliary loading mechanism 6 to hang and unload the workpiece 23.

[0052] Through the first sliding component 2, the second sliding component 3, and the third sliding component 4 provided in the riveting mechanism 1 of the present utility model, the first sliding member 21 performs X-axis movement on the first guide member 20, the second sliding member 31 performs Y-axis movement on the second guide member 30, and the third guide member 42 performs Z-axis movement on the third sliding member 41. Thus, pushing the first operation handle 11 can enable the hydraulic riveting gun 10 to move in the X-axis, Y-axis, and Z-axis directions. The operation is simple, facilitating the riveting work and improving the working efficiency of riveting. Through the riveting button 110 provided on the first operation handle 11, the worker can perform riveting on the workpiece with one-key operation, and the riveting is simple and convenient. By providing the chain member 19, the wear of the electric wire and the air pipe during movement is reduced, and the potential safety hazards caused by the exposure of the electric wire and the air pipe are decreased. By providing the auxiliary loading mechanism 6, the loading is more time-saving and labor-saving, reducing the production fatigue of the worker. Moreover, multiple auxiliary loading mechanisms 6 can be provided, and the loading and unloading areas are separated, while improving the efficiency of loading and unloading. By providing the first balance component 8 and the second balance component 62, the hydraulic riveting gun 10 and the workpiece 63 are in a weightless state, reducing the labor intensity of the worker and improving the production efficiency.

[0053] The above embodiments only represent several implementation manners of the present utility model, and the description is relatively specific and detailed. However, it should not be construed as a limitation to the scope of the patent of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several deformations and improvements can still be made, and these all belong to the protection scope of the present utility model. Therefore, the protection scope of the patent of the present utility model shall be subject to the appended claims.

Claims

1. A hydraulic riveting workstation, characterized in that: The invention comprises a frame (5) and a riveting mechanism (1) arranged on the frame (5), wherein the riveting mechanism (1) comprises a first sliding assembly (2), a second sliding assembly (3), a third sliding assembly (4), a first operating handle (11) and a hydraulic riveting gun (10), wherein the first sliding assembly (2) is arranged on the frame (5) and can move along the X-axis, the second sliding assembly (3) is connected to the first sliding assembly (2) and can move along the Y-axis, the third sliding assembly (4) is connected to the second sliding assembly (3) and can move along the Z-axis, the first operating handle (11) and the hydraulic riveting gun (10) are both connected to the third sliding assembly (4), and pushing the first operating handle (11) can cause the hydraulic riveting gun (10) to move along the X-, Y- and Z-axes; The hydraulic riveting workstation further comprises an auxiliary loading mechanism (6), the auxiliary loading mechanism (6) comprising a first rotating assembly (60) and a second rotating assembly (61), the first rotating assembly (60) being fixedly connected to the frame (5), the first rotating assembly (60) being fixedly connected to the second rotating assembly (61), and the second rotating assembly (61) suspending a workpiece.

2. The hydraulic riveting workstation according to claim 1 is characterized in that: The first sliding component (2) comprises a first guide rail component (20) and a first sliding component (21); the first sliding component (21) is slidably mounted on the first guide rail component (20); and the first sliding component (2) is movable along an X-axis.

3. The hydraulic riveting workstation according to claim 2 is characterized in that: The first sliding assembly (2) further comprises a first fixing component (22), the first guide rail component (20) being fixedly connected to the first fixing component (22), and the first fixing component (22) being mounted on the frame (5) along the X-axis.

4. The hydraulic riveting workstation according to claim 1, characterized in that: The second sliding component (3) comprises a second guide rail component (30) and a second sliding component (31); the second sliding component (31) is slidably mounted on the second guide rail component (30); and the second sliding component (3) is movable along the Y axis.

5. The hydraulic riveting workstation according to claim 4, characterized in that: The second sliding assembly (3) further comprises a second fixing plate (32), the second guide rail component (30) being fixedly connected to the second fixing plate (32), and the second fixing plate (32) being mounted on the first sliding assembly (2) along the Y axis.

6. The hydraulic riveting workstation according to claim 1, characterized in that: The third sliding assembly (4) comprises a third fixing component (40), and the third fixing component (40) is mounted on the second sliding assembly (3) along the Z axis.

7. The hydraulic riveting workstation according to claim 6, characterized in that: The third sliding assembly (4) further comprises a third sliding component (41) and a third guide rail component (42); the third sliding component (41) is fixedly connected to the third fixed component (40); and the third guide rail component (42) is slidably mounted on the third sliding component (41).

8. The hydraulic riveting workstation according to claim 7, characterized in that: The third guide rail component (42) is fixedly connected to the first operating handle (11) and the hydraulic rivet gun (10); the third guide rail component (42), the first operating handle (11) and the hydraulic rivet gun (10) are all movable along the Z axis.

9. The hydraulic riveting workstation according to claim 6, characterized in that: The number of the auxiliary feeding mechanism (6) is at least one.