A riveting fixture for water-cooled plate module beams
By designing the limiting plate and clamping components to work together, the problem of instability caused by manual support during the riveting process of the water-cooled plate and the module beam was solved, achieving a stable connection and efficient riveting, and improving operational safety and efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FUJIAN JUNPENG COMM TECH
- Filing Date
- 2025-05-08
- Publication Date
- 2026-05-26
AI Technical Summary
Before the water-cooled plate is riveted to the module beam, manual support is unstable, resulting in an unstable connection. Furthermore, secondary riveting wastes time and affects efficiency.
A riveting fixture for water-cooled plate module beams is designed, including a limiting plate, an L-frame, a clamping part, a general part, and a relief part. Through the synergistic effect of the adjusting part and the pressing part, the water-cooled plate and the module beam are stabilized, the riveting force is reduced, and the stability and efficiency are improved.
This achieves a stable connection between the water-cooled plate and the module beam, reduces the labor intensity of manual support, improves riveting efficiency and quality, prevents rivet deformation, and enhances operational safety.
Smart Images

Figure CN224273160U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of riveting technology, specifically to a riveting fixture for a water-cooled plate module beam. Background Technology
[0002] The water-cooled plate module beam riveting mainly involves passing a metal rivet through the metal parts to be connected, and then using a rivet gun on the other side to stretch and expand it, thereby forming a tight connection. It is suitable for spaces with limited or enclosed environments, and is simple to operate, efficient, and has reliable connection strength. This method is particularly suitable for connecting metal sheets, and its advantages are simple operation, high efficiency, and reliable connection strength.
[0003] Before the actual riveting of the water-cooled plate and the module beam, in order to ensure accurate positioning, prevent movement, and improve efficiency, it is usually necessary to manually support the water-cooled plate and the module beam. However, manual support is not stable enough and is prone to shaking as the rivet gun is pulled outward, which reduces the fixing performance of the riveting and may even make the connection point of the module beam not strong enough. Secondary riveting is relatively time-consuming. Therefore, there is an urgent need for a riveting fixture for water-cooled plate module beams. Summary of the Invention
[0004] In order to overcome the shortcomings of the prior art and solve at least one technical problem raised in the background art;
[0005] This utility model provides a riveting fixture for water-cooled plate module beams, which uses pulling force to fix the water-cooled plate module beams together, and uses this pulling force to reduce the magnitude of the riveting force at the moment of riveting, thereby improving efficiency.
[0006] To solve the above-mentioned technical problems, the technical solution of this utility model is as follows:
[0007] In a first aspect, a riveting fixture for a water-cooled plate module beam includes: a module beam workpiece and a water-cooled plate fixed on the inner side, wherein a rivet is provided between the module beam workpiece and the water-cooled plate, and one end of the rivet is connected to a rivet gun, characterized in that: a limiting plate is provided on the outer side of the rivet gun, and an L-frame is connected above the limiting plate, and the L-frame is located above the module beam workpiece.
[0008] The clamping part is located on the outside of the modular beam workpiece to ensure the stability of the modular beam workpiece during riveting;
[0009] The clamping part includes an adjusting member and a docking member. The adjusting member is disposed above the modular beam workpiece. The adjusting member and the docking member are connected, and the docking member is located inside the modular beam workpiece.
[0010] The general-purpose part is located on one side of the module beam workpiece to stabilize the rivet gun;
[0011] The general-purpose part includes an extrusion component and a relief component. The extrusion component is disposed on the outside of the rivet gun. The extrusion component is connected to the relief component and is fixedly installed on the outside of the module beam workpiece.
[0012] Furthermore, the adjusting member includes:
[0013] The buckle plate is installed at one end of the L-frame and is connected to the inside of the water-cooled plate;
[0014] The middle layer is fixedly installed on one side of the buckle plate and runs through the L-frame.
[0015] Furthermore, the adjusting member also includes:
[0016] The L-frame has a drive slot inside to allow for movement during adjustment;
[0017] The connecting strip is fixedly and symmetrically installed at one end of the middle layer plate;
[0018] The spring is fixedly installed between the two middle layers.
[0019] Furthermore, the docking component includes:
[0020] Flat blocks are installed inside the L-frame and connected to the middle shelf.
[0021] Multiple limiting grooves are evenly distributed at one end of the flat stop block to alleviate the movement of the component.
[0022] Furthermore, the docking component also includes:
[0023] An arc-shaped groove is formed on the inner top wall of the L-frame;
[0024] The connecting strip fits into the arc-shaped groove.
[0025] Furthermore, the extrusion member includes:
[0026] The inner cylinder has two parts, which are fixedly installed on the outside of the limiting plate;
[0027] The rotating drum is located on the outside of the inner drum;
[0028] The retaining shaft is fixedly connected to one side of the rotating drum;
[0029] A baffle is fixedly installed at one end of the clamping shaft, and the baffle passes through the limiting plate.
[0030] Furthermore, the extruded component also includes:
[0031] The protruding strip is fixedly installed on the outside of the rotating drum and can be matched with the limiting groove;
[0032] An elastic rubber pad is fixedly installed on the side of the baffle near the rotating drum, and the other end of the elastic rubber pad can be connected to the rivet gun.
[0033] Furthermore, the extruded component also includes:
[0034] The limiting plate has a groove to facilitate the movement of the baffle;
[0035] Friction plates are provided on the baffle.
[0036] Furthermore, mitigation measures include:
[0037] The card slot is located on the outside of the limiting plate;
[0038] The lifting plate is slidably connected inside the slot;
[0039] The guide rod is located below the lifting platform;
[0040] The movable block is fixedly installed at the bottom of the limiting plate.
[0041] Furthermore, mitigation measures also include:
[0042] The moving block has a slot inside that corresponds to the guide rod;
[0043] The lifting plate works in conjunction with the guide rod, and the guide rod extends through the moving block to the bottom wall of the limiting plate.
[0044] The above-described solution of this utility model has at least the following beneficial effects:
[0045] This utility model discloses a riveting fixture for water-cooled plate module beams. By pulling the flat stop block, the linkage middle layer plate and the connecting strip are moved, so that the module beam workpiece and the water-cooled plate are stably attached together. After being fixed, it is easy to perform auxiliary riveting processing, thereby reducing the labor required for manually supporting the module beam workpiece and the water-cooled plate and improving work efficiency. Attached Figure Description
[0046] The present invention will be further described below with reference to the accompanying drawings.
[0047] Figure 1 This is a schematic diagram of the overall three-dimensional structure provided for an embodiment of the present utility model;
[0048] Figure 2 A three-dimensional structural diagram of the rivet gun and the modular beam workpiece provided for an embodiment of this utility model;
[0049] Figure 3 A schematic diagram of the fastener and L-frame assembly provided in this embodiment of the utility model;
[0050] Figure 4 This is a schematic diagram showing the internal unfolding of the buckle plate in an embodiment of this utility model;
[0051] Figure 5 This is an embodiment of the present utility model. Figure 4Enlarged view of a portion of point A in the middle;
[0052] Figure 6 This is a schematic diagram showing the cooperation between the limiting plate and the L-frame in an embodiment of this utility model;
[0053] Figure 7 This is a top view schematic diagram of the adjusting component according to an embodiment of the present utility model;
[0054] Figure 8 This is a diagram illustrating the fit between the limiting groove in the extrusion member and the adjustment member according to an embodiment of this utility model.
[0055] Figure 9 This is a diagram illustrating the fit between the limiting plate and the relief component in an embodiment of this utility model.
[0056] Figure 10 This is a three-dimensional schematic diagram of the cooperation between the lifting plate and the guide rod in an embodiment of this utility model;
[0057] Figure 11 This is an embodiment of the present utility model. Figure 1 A magnified view of a portion of point C in the middle.
[0058] In the diagram: 1. Modular beam workpiece; 2. Water-cooled plate; 3. Rivet; 4. Riveting gun; 5. Limiting plate; 51. Rotary cylinder; 52. Inner cylinder; 53. Shaft retainer; 54. Baffle; 501. Slot; 55. Protruding strip; 502. Lifting plate; 503. Guide rod; 504. Moving block; 6. L-frame; 61. Buckle plate; 62. Middle layer plate; 63. Connecting strip; 64. Spring; 65. Arc groove; 66. Limiting groove; 67. Flat stop block. Detailed Implementation
[0059] Exemplary embodiments of the present invention will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the present invention are shown in the drawings, it should be understood that the present invention may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this invention will be thorough and complete, and will fully convey the scope of the invention to those skilled in the art.
[0060] A riveting fixture for a water-cooled plate modular beam includes: a modular beam workpiece 1 and a water-cooled plate 2 fixed on the inner side, a rivet 3 is provided between the modular beam workpiece 1 and the water-cooled plate 2, and a rivet gun 4 is connected to one end of the rivet 3. The fixture is characterized in that it further includes: a limiting plate 5 is provided on the outer side of the rivet gun 4, and an L-frame 6 is connected above the limiting plate 5, and the L-frame 6 is located above the modular beam workpiece 1.
[0061] The clamping part is located on the outside of the module beam workpiece 1 to ensure the stability of the riveting of the module beam workpiece 1;
[0062] The clamping part includes an adjusting component and a docking component. The adjusting component is located above the module beam workpiece 1. The adjusting component and the docking component are connected, and the docking component is located inside the module beam workpiece 1.
[0063] In a preferred embodiment of this utility model, the general part is provided on one side of the module beam workpiece 1 to stabilize the rivet gun 4.
[0064] The general part includes an extrusion part and a relief part. The extrusion part is located on the outside of the rivet gun 4. The extrusion part is connected to the relief part and is fixedly installed on the outside of the module beam workpiece 1.
[0065] like Figures 1 to 2 As shown, when riveting the water-cooled plate module beam, using the embodiment of the present invention, first clean the connecting surface, put the module beam workpiece 1 and the water-cooled plate 2 together, select a suitable rivet 3 and then pass it through the connected module beam workpiece 1 and water-cooled plate 2, and then use a rivet gun 4 to rivet the rivet 3.
[0066] Before riveting, first use your hand to clamp the lower surface of L frame 6 above the module beam workpiece 1, and hook the other end to the water-cooled plate 2. Start the adjustment component to move from the inside to the outside. The adjustment component pulls the water-cooled plate 2 towards the module beam workpiece 1 to form a stable structure, so as to reduce the inconvenience of manual support.
[0067] When locking is required after the module beam workpiece 1 and the water-cooled plate 2 are brought together, the adjusting component moves in conjunction with the docking component, and the docking component moves synchronously after moving and inserts into the L-frame 6 to form a lock, positioning the water-cooled plate 2 and the rivet 3 together to prevent easy separation; finally, the rivet 3 is passed through the module beam workpiece 1 and the water-cooled plate 2 to form a connection, and then the rivet gun 4 is used to dock with the rivet 3. Through the pulling action of the rivet gun 4, the rivet inside the rivet 3 is embedded into the water-cooled plate 2, thereby reducing the inconvenience of manually supporting the module beam workpiece 1 and the water-cooled plate 2, reducing labor intensity, and thus forming a stable riveting effect and improving work efficiency;
[0068] Since the size of the rivet gun 4 is not uniform, its dimensions and specifications vary depending on different usage requirements and rivet types. During use, a larger rivet gun 4 may be difficult to support and prone to wobbling, affecting the rivet quality. Therefore, after the rivet gun 4 is attached to the rivet 3, the initial position of the extrusion component is manually adjusted. The extrusion component will move from both sides towards the outside of the rivet gun 4 to clamp and position it, thereby stabilizing the rivet gun 4 and reducing the problem of wobbling outwards when holding the gun. At the same time, when the adjustment component adjusts the stability of the module beam workpiece 1 and the water-cooled plate 2, the movement of the adjustment component will trigger the work of the relief component. When the relief component works, it will move in the longitudinal direction of the rivet gun 4 to buffer the rivet force of the rivet gun 4 and reduce the problem of deformation caused by large rivet force.
[0069] The adjusting components include:
[0070] The buckle plate 61 is set at one end of the L frame 6 and is connected to the inner side of the water-cooled plate 2;
[0071] The middle layer plate 62 is fixedly installed on one side of the buckle plate 61 and passes through the L frame 6;
[0072] The connecting strip 63 is fixedly and symmetrically installed at one end of the middle layer plate 62, and the other end can penetrate through the interior of the L frame 6.
[0073] The adjusting components also include:
[0074] The L-frame 6 has a drive slot inside to allow for movement during adjustment;
[0075] Spring 64 is fixed between two connecting strips 63;
[0076] The mating parts include:
[0077] A flat stop 67 is installed inside the L-frame 6 and is connected to the middle layer plate 62;
[0078] Multiple limiting grooves 66 are evenly distributed at one end of the flat stop block 67 to alleviate the movement of the component.
[0079] The docking components also include:
[0080] An arc-shaped groove 65 is formed on the inner top wall of the L-frame 6;
[0081] The connecting strip 63 fits into the arc-shaped groove 65.
[0082] like Figures 3 to 8 As shown, during operation, when it is necessary to stabilize the module beam workpiece 1 and the water-cooled plate 2, using this embodiment of the invention, firstly, the L-frame 6 is clamped on the outside of the module beam workpiece 1, and then the flat stop 67 is pushed inward to the maximum distance, so that the buckle plate 61 exceeds the length of the water-cooled plate 2 and hooks the water-cooled plate 2. After hooking, the flat stop 67 is pulled back, and the flat stop 67 moves the water-cooled plate 2 towards the module beam workpiece 1 to form a close fit. The flat stop 67 moves in conjunction with the middle layer plate 62 and the connecting strip 63. The connecting strip 63 moves along the inside of the arc groove 65. After the connecting strip 63 moves to the appropriate locking groove of the arc groove 65, the connecting strip 63 loses the squeezing force, and the spring 64 bounces up to form a positioning, thereby preventing the module beam workpiece 1 and the water-cooled plate 2 from easily detaching, promoting the stability of the module beam workpiece 1 and the water-cooled plate 2, reducing the inconvenience of manually supporting the module beam workpiece 1 and the water-cooled plate 2, saving labor, improving the effect of auxiliary support, and thus promoting the riveting effect.
[0083] Extrusions include:
[0084] The inner cylinder 52 has two parts, which are fixedly installed on the outside of the limiting plate 5;
[0085] Rotating drum 51 is located outside the inner drum 52;
[0086] The retaining shaft 53 is fixedly connected to one side of the rotating drum 51;
[0087] The baffle 54 is fixedly installed at one end of the clamping shaft 53, and the baffle 54 passes through the limiting plate 5.
[0088] The extrusion also includes:
[0089] The protruding strip 55 is fixedly installed on the outside of the rotating cylinder 51 and can cooperate with the limiting groove 66;
[0090] An elastic rubber pad is fixedly installed on the side of the baffle 54 near the rotating cylinder 51, and the other end of the elastic rubber pad can be connected to the rivet 3.
[0091] The extrusion also includes:
[0092] The limiting plate 5 has a groove inside to facilitate the movement of the baffle 54;
[0093] Friction plates are provided on the baffle 54, which contact the rivets to reduce the speed of instantaneous movement.
[0094] like Figures 7 to 8 , Figure 11 As shown, during operation, when riveting the water-cooled plate 2 and the module beam workpiece 1, there may be problems such as cracking or deformation of the rivet due to excessive riveting force or excessive stress, which may even damage the internal structure of the module beam workpiece 1. Using the embodiment of the present invention, when the flat stop block 67 pulls the buckle plate 61 to move towards the limiting plate 5, the limiting groove 66 moves accordingly. The limiting groove 66 drives the protruding strip 55 to move. The movement of the protruding strip 55 is linked to the operation of the rotating cylinder 51. The rotating cylinder 51 tilts under the support of the inner cylinder 52, and the other side of the rotating cylinder 51 forms a swinging tendency. The rotating cylinder 51 drives the locking shaft 53 and the baffle 54 to move. The baffle 54 gradually pushes the elastic rubber pad towards the rivet. The elastic rubber pad rubs against the rivet, and the resistance increases after friction. The instantaneous movement speed of the rivet decreases, reducing the risk of deformation due to excessive riveting force and improving the safety performance during use.
[0095] The relief components include:
[0096] Card slot 501 is located on the outer side of limit plate 5;
[0097] The lifting plate 502 is slidably connected inside the slot 501;
[0098] Guide rod 503 is located below lifting plate 502;
[0099] The movable block 504 is fixedly installed at the bottom of the limiting plate 5.
[0100] The relief components also include:
[0101] The movable block 504 has a slot inside that corresponds to the guide rod 503;
[0102] The lifting plate 502 cooperates with the guide rod 503, and the guide rod 503 can extend through the moving block 504 to the inner bottom wall of the limiting plate 5.
[0103] like Figures 9 to 10 As shown, during operation, the size of the rivet gun 4 is not uniform; its dimensions and specifications vary depending on different usage requirements and rivet types. During use, the rivet gun 4 may be difficult to support and prone to wobbling, affecting the rivet quality. Using this embodiment of the invention, after attaching the rivet gun 4 to the rivet 3, one of the limiting plates 5 is pushed by hand, causing the distance between the two limiting plates 5 to gradually shorten. The movement of the two limiting plates 5 creates a clamping tendency for the rivet gun 4. Furthermore, the movement of the limiting plates 5 causes the moving block 504 to shift. When the moving block 504 moves to the appropriate position, the lifting plate 502 is pushed downwards into it and passes through the moving block 504, positioning it in the hole between the two limiting plates 5. This prevents peripheral wobbling, achieves rapid positioning, and improves versatility, facilitating stable processing. It should be noted that a horizontal plate is provided between the two limiting plates 5, and a positioning hole corresponding to the guide rod 503 is opened in the horizontal plate. This positioning hole is existing technology and will not be described in detail.
[0104] Working principle: Preparation stage: Before riveting the water-cooled plate module beam, clean the connecting surfaces of the module beam workpiece 1 and the water-cooled plate 2, and then put them together. Next, select a suitable rivet 3 and make it penetrate the module beam workpiece 1 and the water-cooled plate 2 to prepare for subsequent riveting.
[0105] Fixing before riveting:
[0106] Coordinated fixing of L-frame 6 and adjusting component: The lower surface of L-frame 6 is manually secured above module beam workpiece 1, with the other end hooked onto water-cooled plate 2. The adjusting component is activated; the latching plate 61 within the adjusting component connects to the inner side of water-cooled plate 2. The middle layer plate 62 is fixed to one side of the latching plate 61 and extends through L-frame 6. The connecting strip 63 is symmetrically installed at one end of the middle layer plate 62 and can extend through the interior of L-frame 6. When the adjusting component operates, it moves from the inside out, pulling water-cooled plate 2 towards module beam workpiece 1. During this process, the drive groove inside L-frame 6 provides space for the movement of the adjusting component, while the connecting strip 63 moves along the arc-shaped groove 65. When module beam workpiece 1 and water-cooled plate 2 are brought together, the movement of the adjusting component will synchronize with the movement of the connecting component. The flat stop 67 in the mating part is connected to the middle plate 62. When the flat stop 67 moves to the appropriate position and the connecting strip 63 moves to the appropriate locking groove of the arc groove 65, the spring 64 bounces up to position the water cooling plate 2 and the rivet 3 together to prevent them from easily separating, thereby reducing the inconvenience of manual support.
[0107] Preliminary positioning of rivet gun 4: Due to the inconsistent size and specifications of rivet guns 4, larger rivet guns 4 are prone to wobbling during use, affecting the rivet quality. Therefore, after the rivet gun 4 is attached to the rivet 3, the extrusion component is manually adjusted. The inner cylinder 52 of the extrusion component is fixedly installed on the outside of the limiting plate 5, the rotating cylinder 51 is located on the outside of the inner cylinder 52, the clamping shaft 53 is connected to the side of the rotating cylinder 51, and the baffle 54 is installed at one end of the clamping shaft 53 and passes through the limiting plate 5. During adjustment, the extrusion component moves from both sides towards the outside of the rivet gun 4 in the middle to clamp it, thereby stabilizing the rivet gun 4 and improving stability when holding the gun.
[0108] Stable riveting process:
[0109] Riveting Force Buffer: When the adjusting component adjusts the stability of the beam workpiece 1 and the water-cooled plate 2, the movement of the adjusting component will trigger the buffer component to work. The buffer component has a slot 501 located on the outside of the limiting plate 5, a lifting plate 502 slidably connected inside the slot 501, a guide rod 503 positioned below the lifting plate 502, and a moving block 504 fixed to the bottom of the limiting plate 5. When the adjusting component works, it moves the moving block 504. When the moving block 504 moves to the appropriate position, it pushes the lifting plate 502 downwards into it, and through the moving block 504, positions it in the hole between the two limiting plates 5, thus buffering the riveting force of the rivet gun 4 and reducing deformation caused by excessive riveting force.
[0110] To prevent rivet deformation: During the riveting process between the water-cooled plate 2 and the module beam workpiece 1, excessive riveting force or stress may cause the rivet to crack or deform. At this time, when the flat stop block 67 pulls the buckle plate 61 towards the limiting plate 5, the limiting groove 66 in the mating part moves accordingly. The limiting groove 66 drives the protruding strip 55 on the rotating cylinder 51 in the extrusion part to move. The movement of the protruding strip 55 is linked to the operation of the rotating cylinder 51. The rotating cylinder 51 tilts under the support of the inner cylinder 52, and forms a swinging tendency on the other side, which drives the locking shaft 53 and the baffle 54 to move. The baffle 54 pushes the elastic rubber pad towards the rivet. The elastic rubber pad rubs against the rivet, reducing the instantaneous movement speed of the rivet and reducing the risk of deformation due to excessive riveting force.
[0111] Riveting completed: The rivet inside the rivet 3 is embedded into the water-cooled plate 2 by the pulling action of the rivet gun 4, completing the riveting process and achieving a stable riveting effect, thus improving work efficiency. At the same time, the entire tooling, through the coordinated work of its various components, reduces the inconvenience of manually supporting the modular beam workpiece 1 and the water-cooled plate 2, reduces labor intensity, and improves riveting quality and safety performance.
[0112] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A riveting fixture for a water-cooled plate module beam, comprising: The modular beam workpiece (1) and the water-cooled plate (2) fixed on the inner side are provided with rivets (3) between the modular beam workpiece (1) and the water-cooled plate (2), and one end of the rivet (3) is connected to a rivet gun (4). The feature is that it further includes: a limiting plate (5) is provided on the outside of the rivet gun (4), and an L-frame (6) is connected above the limiting plate (5), and the L-frame (6) is located above the modular beam workpiece (1). The clamping part is set on the outside of the module beam workpiece (1) to ensure the stability of the module beam workpiece (1) during riveting; The clamping part includes an adjusting member and a docking member. The adjusting member is disposed above the module beam workpiece (1). The adjusting member and the docking member are connected, and the docking member is located inside the module beam workpiece (1). The general part is set on one side of the module beam workpiece (1) to stabilize the rivet gun (4). The general part includes an extrusion part and a relief part. The extrusion part is disposed on the outside of the rivet gun (4). The extrusion part is connected to the relief part and fixed on the outside of the module beam workpiece (1).
2. The riveting fixture for a water-cooled plate module beam according to claim 1, characterized in that: The adjusting element includes: The buckle plate (61) is set at one end of the L frame (6) and is connected to the inner side of the water-cooled plate (2); The middle layer (62) is fixedly installed on one side of the buckle plate (61) and passes through the L frame (6).
3. The riveting fixture for a water-cooled plate module beam according to claim 2, characterized in that: The adjusting component further includes: The L-frame (6) has a drive slot inside for adjusting the L-frame (6). There are two connecting strips (63), which are symmetrically fixed to one end of the middle layer plate (62); A spring (64) is fixedly installed between the two connecting strips (63).
4. The riveting fixture for a water-cooled plate module beam according to claim 3, characterized in that: The docking component includes: A flat stop (67) is set inside the L-frame (6) and connected to the middle layer plate (62); The limiting groove (66) has multiple grooves, which are evenly distributed at one end of the flat stop block (67).
5. The riveting fixture for a water-cooled plate module beam according to claim 2, characterized in that: The docking component also includes: Multiple arc-shaped grooves (65) are evenly distributed on the inner top wall of the L-frame (6); The connecting strip (63) is fitted with the arc groove (65).
6. The riveting fixture for a water-cooled plate module beam according to claim 1, characterized in that: The extrusion component includes: The inner cylinder (52) has two parts, which are fixedly installed on the outside of the limiting plate (5); Rotary drum (51) is located outside the inner drum (52); The retaining shaft (53) is fixedly connected to one side of the rotating drum (51); The baffle (54) is fixedly installed at one end of the clamp (53) and passes through the limiting plate (5).
7. The riveting fixture for a water-cooled plate module beam according to claim 6, characterized in that: The extrusion component also includes: The protruding strip (55) is fixedly installed on the outside of the rotating cylinder (51) and can cooperate with the limiting groove (66); An elastic rubber pad is fixedly installed on the side of the baffle (54) near the rotating cylinder (51), and the other end of the elastic rubber pad can be connected to the rivet (3).
8. The riveting fixture for a water-cooled plate module beam according to claim 6, characterized in that: The extrusion component further includes: The limiting plate (5) has a groove inside to facilitate the movement of the baffle (54); The baffle (54) is provided with friction plates.
9. The riveting fixture for a water-cooled plate module beam according to claim 1, characterized in that: The mitigation component includes: Card slot (501) is located on the outside of the limiting plate (5); The lifting plate (502) is slidably connected inside the slot (501); The guide rod (503) is located below the lifting plate (502); The movable block (504) is fixedly installed at the bottom of the limiting plate (5).
10. A riveting fixture for a water-cooled plate module beam according to claim 9, characterized in that: The mitigation component also includes: The movable block (504) has a slot inside that corresponds to the guide rod (503); The lifting plate (502) cooperates with the guide rod (503); The guide rod (503) extends through the moving block (504) to the inner bottom wall of the limiting plate (5).