Stabilizer bar clamp press-fitting mechanism

By combining the guide and the striker, rivetless clamp pressing is achieved, solving the problems of deformation and inaccurate positioning during rivet pressing, and improving the pressing effect and service life of the stabilizer bar.

CN224011632UActive Publication Date: 2026-03-20MUBEA AUTOMOTIVE COMPONENTS TAICANG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

In the existing technology, deformation caused by overpressure or underpressure during the rivet pressing process affects the service life of the stabilizer bar, and inaccurate positioning or displacement of the rivet and clamp affects the performance of the vehicle stabilizer bar.

Method used

A rivetless stabilizer clamp press-fitting mechanism is adopted, which uses guides and strikers for positioning and guidance. The clamp is deformed by the striker, thus completing the press-fitting and riveting.

Benefits of technology

Ensuring accurate press-fitting points prevents clamp displacement, improves press-fitting effectiveness and stabilizer bar lifespan, and enhances the performance of the vehicle suspension system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model is suitable for the technical field of press fitting of automobile parts, and provides a stabilizer bar clamp press fitting mechanism which comprises an upper pressing assembly and a lower pressing assembly. The upper pressing assembly comprises a connecting plate connected with the driving assembly, a buffering mechanism arranged at the bottom of the connecting plate, a guiding mechanism arranged in the buffering mechanism and an upper pressing die arranged at the bottom of the buffering mechanism, and the guiding mechanism comprises a firing pin penetrating through the buffering mechanism and guiding pieces symmetrically arranged on the two sides of the buffering mechanism; the bottom of the upper pressing die is provided with an upper clamp cavity matched with an upper pressing clamp of the stabilizer bar in shape. The device solves the problem that the performance of the stabilizer bar is affected by the reasons such as rivet deformation caused by overpressure or underpressure and the like, inaccurate positioning of the rivet and the hoop and displacement of the rivet due to pressure when the rivet is adopted for crimping, and achieves the effects that the hoop press-fitting is completed without adopting the rivet, and meanwhile, the hoop is positioned and guided, so that the stability of the stabilizer bar is improved. And the influence on the performance of the stabilizer bar due to displacement in the press-fitting process is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to automobile parts press -mounting technical field more specifically, it relates to a stabilizer bar clamp press -mounting mechanism. BACKGROUND

[0002] Stabilizer bar clamp press -mounting refers to the process that clamp is press -mounted to stabilizer bar in automobile manufacturing process. Stabilizer bar is the important part in automobile suspension system, and is used to reduce the body roll of vehicle when turning or driving on uneven road. Clamp is used to fix stabilizer bar on vehicle body or other parts, and ensures the normal work of stabilizer bar.

[0003] In the clamp press -mounting process, rivet is generally placed in the connecting part of clamp and stabilizer bar, and rivet is riveted by using press -mounting device. In the rivet press -mounting process, the deformation caused by overpressure or underpressure and other reasons affects the press -mounting effect and service life of stabilizer bar. Secondly, whether the positioning of rivet and clamp is accurate and the displacement of rivet under pressure can affect the performance of automobile stabilizer bar after riveting. UTILITY MODEL CONTENT

[0004] In view of the deficiencies of prior art, the utility model aims at providing a stabilizer bar clamp press -mounting mechanism which does not need to use rivet to complete clamp press -mounting, and simultaneously positions and guides clamp, so that displacement in press -mounting process is avoided and the performance of stabilizer bar is affected.

[0005] To achieve the above -mentioned purpose, the utility model provides the following technical scheme:

[0006] A stabilizer bar clamp press -mounting mechanism, including upper pressure subassembly and lower pressure subassembly, the upper pressure subassembly includes the connecting plate that is connected with the drive assembly, the buffer mechanism that sets up at the bottom of connecting plate, the guide mechanism that sets up in buffer mechanism and the upper pressure mould that sets up at the bottom of buffer mechanism, the guide mechanism includes the striker that sets up through buffer mechanism and the guide piece that sets up symmetrically at the both sides of buffer mechanism, the upper pressure mould bottom is provided with the upper clamp cavity that is shaped with stabilizer bar upper press -mounting clamp.

[0007] The utility model further sets up that the striker is symmetrically set up about buffer mechanism, and the wedge slot is gradually reduced in section near the center side of buffer mechanism.

[0008] The utility model further sets up that the support plate is sleeved in each striker middle part, and two abutting springs are symmetrically set up on the support plate.

[0009] The utility model further sets up that the guide piece includes the guide arm that sets up symmetrically, the righting block that sets up in the middle part of guide arm and the wedge strip that sets up at the top of guide arm, and the wedge strip shape is shaped with the wedge slot shape adaptation.

[0010] By adopting the technical scheme, the wedge-shaped strip can be inserted into the wedge-shaped groove, and the movement of the wedge-shaped strip in the wedge-shaped groove can drive the striker to move.

[0011] The utility model further sets up: the righting block sets up in the guide arm one side near the buffer mechanism center, the guide groove is set up in the guide arm one side far from the upper pressure subassembly center along the vertical direction.

[0012] The utility model further sets up: the buffer mechanism includes the backplate connected with the connecting plate, the oil pressure buffer connected with the backplate and the floating plate of oil pressure buffer and sets up, oil pressure buffer is along the backplate axis symmetry and sets up.

[0013] The utility model further sets up: the floating plate bottom is connected with the upper pressure mould, the floating plate can move relative to oil pressure buffer.

[0014] The utility model further sets up: the upper pressure mould both sides symmetry are provided with a plurality of guide needles, the guide needle swing installation is in the upper pressure mould inside.

[0015] The utility model further sets up: the upper clamp hoop type cavity middle part is provided with the upper magnetic suction piece that can adsorb pressure equipment clamp hoop, the striker sets up in the upper clamp hoop type cavity both sides.

[0016] The utility model further sets up: the lower pressure subassembly includes the bottom plate, sets up in the butt joint mechanism of bottom plate, sets up in the lower pressure mould of butt joint mechanism inside, the lower pressure mould top is provided with the lower clamp hoop type cavity with the lower pressure equipment clamp hoop shape of stable rod adaptation.

[0017] The utility model has the advantages of:

[0018] In the process of pressing, first, the guide piece is used to position and guide the pressure equipment clamp hoop, so that the pressure equipment point is accurate, and displacement of the pressure equipment clamp hoop is avoided, then the striker is used to extrude the pressure equipment clamp hoop to produce deformation, and riveting of the pressure equipment clamp hoop can be completed without pressing in the rivet. BRIEF DESCRIPTION OF DRAWINGS

[0019] The utility model will be further described below in combination with the drawings and examples.

[0020] Figure 1 It is the structure schematic drawing of the utility model stable rod clamp hoop pressing mechanism assembly.

[0021] Figure 2 It is Figure 1 The explosion map shown in the figure.

[0022] Figure 3 It isFigure 1 The state diagram of the upper pressing assembly, the lower pressing assembly and the stabilizing rod when being pressed.

[0023] Figure 4 The left view is shown. Figure 3 The left view is shown.

[0024] Figure 5 The left view is shown. Figure 1 The structural diagram of the upper pressing assembly is shown.

[0025] Figure 6 The front view is shown. Figure 5 The front view is shown.

[0026] Figure 7 The structural diagram of the upper pressing assembly is shown. Figure 5 The structural diagram of the upper pressing assembly is shown.

[0027] Figure 8 The structural diagram of the guiding mechanism in the matching state is shown. Figure 7 The structural diagram of the guiding mechanism in the matching state is shown.

[0028] Figure 9 The structural diagram of the upper pressing assembly in another state (the hammer is extended) is shown. Figure 5 The structural diagram of the upper pressing assembly in another state (the hammer is extended) is shown.

[0029] Figure 10 The structural diagram of the lower pressing assembly is shown. Figure 1 The structural diagram of the lower pressing assembly is shown.

[0030] Figure 11 The structural diagram of the lower pressing assembly is shown. Figure 10 The structural diagram of the lower pressing assembly is shown.

[0031] Figure 12 The structural diagram of the lower pressing assembly in another state (the holding state) is shown. Figure 11 The structural diagram of the lower pressing assembly in another state (the holding state) is shown.

[0032] Figure 13 The structural diagram of the upper pressing assembly and the lower pressing assembly before being pressed is shown. Figure 1 The structural diagram of the upper pressing assembly and the lower pressing assembly before being pressed is shown.

[0033] Figure 14 The structural diagram of the upper pressing assembly and the lower pressing assembly after being pressed is shown. Figure 1 The structural diagram of the upper pressing assembly and the lower pressing assembly after being pressed is shown.

[0034] Figure 15 The structural diagram of the stabilizing rod and the clamp is shown. Figure 3 The structural diagram of the stabilizing rod and the clamp is shown.

[0035] The structural diagram of the stabilizing rod and the clamp is shown.

[0036] 2, upper pressing assembly; 21, connecting plate; 22, buffer mechanism; 221, back plate; 222, oil buffer; 223, floating plate; 224, striker hole; 225, guide hole; 23, guide mechanism; 231, striker; 2311, wedge-shaped groove; 2312, support plate; 2313, abutting spring; 232, guide; 2321, guide arm; 2322, guide groove; 2323, centralizing block; 2324, wedge-shaped strip; 24, upper pressing die; 241, guide pin; 242, upper magnetic block; 243, upper clamp cavity;

[0037] 3, lower pressing assembly; 31, bottom plate; 32, docking mechanism; 321, docking plate; 322, guide block; 323, plug-in cavity; 33, clamping mechanism; 331, clamping piece; 3311, pivot; 3312, clamping block; 3313, compression spring; 332, alignment piece; 3321, alignment block; 3322, alignment hole; 34, lower pressing die; 341, compression part; 342, lower magnetic block; 343, lower clamp cavity;

[0038] 4, support assembly; 41, base; 42, support slide rail; 43, support block; 431, support groove; 44, first support spring;

[0039] 20, stabilizer bar; 202, main body; 201, end; 203, rubber sleeve;

[0040] 30, press-fit clamp; 301, upper clamp; 302, lower clamp. DETAILED DESCRIPTION

[0041] In order to make the technical problems, technical solutions and beneficial effects of the utility model clearer, the utility model will be described in detail in conjunction with the drawings. The drawing is a simplified schematic diagram, which only schematically illustrates the basic of the utility model, and therefore only shows the relevant components of the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the utility model.

[0042] Please refer to Figures 1-9 A stabilizer bar clamp press-fit mechanism for press-fitting the clamp assembly 30 onto the stabilizer bar 20, comprising an upper pressing assembly 2 and a lower pressing assembly 3 for press-fitting the stabilizer bar 20, the upper pressing assembly 2 is connected with the driving assembly 1, and the driving assembly 1 can drive the upper pressing assembly 2 to move. The lower pressing assembly 3 is arranged at the bottom of the upper pressing assembly 2. Before press-fitting, the stabilizer bar 20 is placed on the lower pressing assembly 3, the driving assembly 1 drives the upper pressing assembly 2 to press down, the upper pressing assembly 2 is attached to the lower pressing assembly 3, and then the press-fit clamp 30 on the stabilizer bar 20 is press-fitted, and the riveting of the press-fit clamp 30 is completed.

[0043] Please refer to Figures 1-2 The driving assembly 1 is symmetrically arranged, and each driving assembly 1 is provided with an upper pressing assembly 2 at the bottom. The driving assembly 1 comprises a driving cylinder 11, guide rails 12 arranged on both sides of the driving cylinder 11, and a first fixed plate 13 arranged below the driving cylinder 11. The first fixed plate 13 can be fixed on an operation station to realize positioning of the driving assembly 1. The second fixed plate 14 is connected with the connecting plate 21, and the driving cylinder 11 can drive the connecting plate 21 to move by extension and contraction. The guide rails 12 are connected with the second fixed plate 14, and the guide rails 12 are arranged through the first fixed plate 13 and can slide relative to the first fixed plate 13, so as to realize movement of the second fixed plate 14 relative to the first fixed plate 13 under the driving of the driving cylinder 11.

[0044] Please refer to Figures 1-4 and Figure 15 The stabilizing rod 20 comprises a main body 201 and end portions 202 arranged on both sides of the main body 201, and rubber sleeves 203 are arranged on both ends of the main body 201. Each rubber sleeve 203 is provided with a press-fitting clamp 30 on the outer wall. The press-fitting clamp 30 comprises an upper clamp 301 fitted with the upper portion of the rubber sleeve 203 and a lower clamp 302 fitted with the lower portion of the rubber sleeve 203.

[0045] Please refer to Figures 1-9 The buffer mechanism 22 comprises a back plate 221 connected with the connecting plate 21, an oil pressure buffer 222 connected with the back plate 221, and a floating plate 223 sleeved on the oil pressure buffer 222, and the oil pressure buffer 222 is symmetrically arranged along the axis of the back plate 221. The floating plate 223 is connected with the upper pressing die 24 at the bottom, and the floating plate 223 can move relative to the oil pressure buffer 222. The floating plate 223 can drive the upper pressing die 24 to move synchronously during the movement of the floating plate 223. During the process that the upper pressing die 24 presses the press-fitting clamp 30, the floating plate 223 and the upper pressing die 24 always maintain the state of abutting against the press-fitting clamp 30. By adjusting the oil pressure buffer 222, the distance between the floating plate 223 and the back plate 221 is changed, so as to achieve the purpose of applying pressure to the press-fitting clamp 30 to complete riveting.

[0046] Please refer to Figures 1-9The guiding mechanism 23 comprises a striker 231 penetrating through the buffer mechanism 22 and guiding pieces 232 symmetrically arranged on both sides of the buffer mechanism 22, the striker 231 penetrates through a floating plate 223, the floating plate 223 is provided with a striker hole 224 for mounting the striker 231, and the striker 231 is symmetrically arranged relative to the oil pressure buffer 222. The striker 231 can be guided by abutting with the press fitting clamp 30 during the press fitting process, and the guiding pieces 232 can be guided by abutting with the lower pressing assembly 3 during the press fitting process. The strikers 231 are symmetrically arranged relative to the buffer mechanism 22, and a wedge-shaped groove 2311 is formed in the upper portion of each striker 231, the cross section of the wedge-shaped groove 2311 gradually decreases near the center of the buffer mechanism 22. A support plate 2312 is sleeved in the middle of each striker 231, and two abutting springs 2313 are symmetrically arranged on the support plate 2312. The support plate 2312 is arranged at the bottom of the back plate 221, and the abutting springs 2313 are arranged inside the back plate 221, so that the striker 231 and the back plate 221 always abut during the extension of the striker 231.

[0047] Please refer to Figures 1-9 The guiding piece 232 comprises symmetrically arranged guiding arms 2321, a righting block 2323 arranged in the middle of the guiding arm 2321, and a wedge-shaped strip 2324 arranged at the top of the guiding arm 2321, the wedge-shaped strip 2324 is arranged near the center of the buffer mechanism 22, and the shape of the wedge-shaped strip 2324 is matched with the shape of the wedge-shaped groove 2311. The wedge-shaped strip 2324 can be inserted into the wedge-shaped groove 2311, and the movement of the wedge-shaped strip 2324 in the wedge-shaped groove 2311 can drive the striker 231 to move. When the wedge-shaped strip 2324 moves towards the center of the buffer mechanism 22, the striker 231 moves downward along the vertical direction and extends, and when the wedge-shaped strip 2324 moves away from the center of the buffer mechanism 22, the striker 231 moves downward along the vertical direction and retracts. The righting block 2323 is arranged near the center of the buffer mechanism 22, and a guiding groove 2322 is formed in the guiding arm 2321 away from the center of the upper pressing assembly 2 along the vertical direction.

[0048] Please refer to Figures 1-9The upper mold 24 has an upper clamp cavity 243 at its bottom that matches the shape of the upper clamp 30 on the stabilizer 20. More specifically, the shape of the upper clamp cavity 243 matches the shape of the upper clamp 301, allowing it to fit snugly against the upper clamp 301 during pressing. Multiple guide pins 241 are symmetrically arranged on both sides of the upper mold 24. The guide pins 241 are movably installed inside the upper mold 24. More specifically, the guide pins 241 are located inside the floating plate 223, which has guide holes 225 for mounting the guide pins 241. An upper magnetic block 242 is located in the center of the upper clamp cavity 243 to attract the upper clamp 30. During pressing, the magnetic block 242 attracts the upper clamp 301, ensuring that it does not shift due to force.

[0049] Please refer to Figures 1-4 and Figures 10-14 The pressing assembly 3 includes a base plate 31, a docking mechanism 32 disposed on the base plate 31, a pressing mold 34 disposed inside the docking mechanism 32, and clamping mechanisms 33 disposed on both sides of the pressing mold 34. The docking mechanism 32 includes a hollow docking plate 321 with a top opening, and an insertion cavity 323 is formed inside the docking plate 321. The pressing mold 34 is located at the center of the hollow docking plate 321, and the insertion cavity 323 is formed between the clamping mechanism 33 and the inner wall of the docking plate 321. A guide block 322 is disposed on the inner wall of the docking plate 321, and the guide block 322 is disposed vertically. The shape of the guide block 322 is adapted to the guide groove 2322 on the guide arm 2321. When the guide arm 2321 is inserted into the insertion cavity 323, the guide block 322 fits into the guide groove 2322.

[0050] Please refer to Figures 1-4 and Figures 10-14The holding mechanism 33 comprises a holding piece 331 rotationally connected with the bottom plate 31 and a positioning piece 332 arranged on the top of the holding piece 331. After the guide arm 2321 is inserted into the insertion cavity 323, the holding piece 331 can be pressed tightly, and the positioning piece 332 on the top of the holding piece 331 can be butt-jointed with the guide needle 241. The holding piece 331 comprises a rotating shaft 3311 rotationally installed on the butt-joint plate 321 and a holding block 3312 sleeved on the rotating shaft 3311, and the rotating shaft 3311 is symmetrically arranged relative to the lower pressing die 34. After the guide arm 2321 is inserted into the insertion cavity 323, the righting block 2323 abuts against the holding block 3312, so as to drive the rotating shaft 3311 to rotate, and the holding block 3312 is rotated to the vertical state. The holding block 3312 is arranged on the side wall close to the lower pressing die 34 and is provided with a pressing spring 3313. The pressing spring 3313 abuts against the lower pressing die 34. In the initial state, the holding block 3312 is kept in the inclined state under the action of the elastic force of the pressing spring 3313. After the holding block 3312 is rotated to the vertical state, the elastic force of the pressing spring 3313 can always keep the holding block 3312 abutting against the lower pressing die 34. The positioning piece 332 comprises a positioning block 3321 installed on the top of the holding block 3312, and the positioning block 3321 extends to the center of the lower pressing die 34 from the end portion close to the lower pressing die 34. The two positioning blocks 3321 are symmetrically arranged relative to the lower pressing die 34, and the top of each positioning block 3321 is provided with a positioning hole 3322. The shape and position of the positioning hole 3322 are adapted to the guide needle 241. During the butt-joint of the upper pressing die 24 and the lower pressing die 34 for the pressing assembly, the guide needle 241 can be inserted into the positioning hole 3322 to guide and position the pressing clamp 30.

[0051] Please refer to Figures 1-4 and Figures 10-14 The top of the lower pressing die 34 is provided with a lower clamp-shaped cavity 343 adapted to the shape of the pressing clamp 30 of the stabilizing rod 20. More specifically, the shape of the lower clamp-shaped cavity 343 is adapted to the shape of the lower clamp 302, and the lower clamp-shaped cavity 343 can be attached to the lower clamp 302 during the pressing assembly. The two sides of the top of the lower pressing die 34 are symmetrically provided with pressing portions 341, and the pressing portions 341 are higher than the edges of the lower clamp-shaped cavity 343. The pressing portions 341 can be attached to the positioning piece 332 and embedded with the lower clamp 302 during the pressing assembly. The positions of the pressing portions 341 correspond to the positions of the striking pins 231. During the pressing assembly of the upper pressing die 24 and the lower pressing die 34, the striking pins 231 are extended to be attached to the pressing portions 341, so as to apply pressure to the pressing clamp 30 and complete the riveting of the pressing clamp 30. The middle of the lower clamp-shaped cavity 343 is provided with a lower magnetic suction block 342 for suctioning the pressing clamp 30. During the pressing assembly, the suction of the lower clamp 302 by the lower magnetic suction block 342 can ensure that the lower clamp 302 will not be displaced due to stress during the pressing assembly.

[0052] Please refer to Figures 1-2 Figures 1-2The lower pressing assembly 3 is provided with a supporting assembly 4 on both sides, the supporting assembly 4 comprises a base 41, a supporting slide rail 42 provided on the top of the base 41, a supporting block 43 provided on one side of the supporting slide rail 42, and a first supporting spring 44 provided on the other side of the supporting slide rail 42. The supporting block 43 and the first supporting spring 44 are connected, the top of the supporting block 43 is provided with a supporting groove 431 which is matched with the upper end 202 of the stabilizing rod 20, and the stabilizing rod 20 can be positioned by the supporting block 43 before pressing.

[0053] Specifically, before pressing, the stabilizing rod 20 is first placed in the lower clamping ring cavity 343 on the top of the lower pressing die 34, the supporting slide rail 42 drives the supporting block 43 to move in the vertical direction, the end 202 of the stabilizing rod 20 is placed in the supporting groove 431, at this time the lower magnetic block 343 adsorbs the lower clamping ring 302, and the lower clamping ring 302 on the main body 201 is attached to the lower clamping ring cavity 343.

[0054] When the pressing starts, the upper pressing assembly 2 is driven by the driving cylinder 11 to move downward in the vertical direction, when the upper pressing die 24 is attached to the lower pressing die 34, the upper magnetic block 242 on the top of the upper pressing die 24 adsorbs the upper clamping ring 301, and the upper clamping ring 301 is attached to the upper clamping ring cavity 243.

[0055] The driving cylinder 11 continues to drive the upper pressing assembly 2 to move downward, the guide block 322 is attached to the guide groove 2322, the guide arm 2321 is inserted into the insertion cavity 323, at this time the righting block 2323 on one side of the guide arm 2321 abuts against the holding block 3312, the holding block 3312 is driven to rotate by the pressure applied to the holding block 3312, until the holding block 3312 is rotated to the vertical state and attached to the pressing part 341.

[0056] After the holding piece 331 is locked, the upper pressing assembly 2 continues to move downward, under the adjustment of the oil buffer 222, the relative floating plate 223 moves, the striker 231 and the guide needle 241 are respectively extended, the guide needle 241 is used to position the pressing clamping ring 30, and in the process of the striker 231 being attached to the pressing part 341, the striker 231 is used to extrude the upper clamping ring 301 and the lower clamping ring 302 to generate deformation, so as to realize the pressing without rivets. After the pressing is completed, the driving cylinder 11 drives the upper pressing assembly 2 to reset upward, and the striker 231 is withdrawn from the pressing clamping ring 30.

[0057] During the pressing process, the pressing clamping ring 30 is first positioned and guided by the guide piece 232 to ensure the accuracy of the pressing point and avoid displacement of the pressing clamping ring 30, and then the pressing clamping ring 30 is deformed by the striker 231, so that the riveting of the pressing clamping ring 30 can be completed without pressing the rivet.

[0058] In the description of the utility model, it is necessary to explain that, unless another explicit provision and limit term "installation", "link", "connection" should be broad sense understanding, for example, can be fixed connection, also can be detachable connection or integral connection, can be mechanical connection, can be direct connection also can pass through intermediate medium indirectly connect, can be two element inside's intercommunication or two element's mutual action relation. For ordinary skilled person in the art, can understand the concrete meaning of above-mentioned term in the utility model according to specific circumstances.

[0059] It needs to be understood that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front and back", "left and right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like is based on the orientation or positional relationship shown in the drawings, and is merely for the convenience of describing the utility model and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model.

[0060] The above is according to the ideal embodiment of the utility model for the inspiration, through the above-mentioned description, relevant staff can be diversified change and modification without deviating from the scope of the utility model. The technical scope of the utility model is not limited to the content in the specification, and the technical scope must be determined according to the scope of claims.

Claims

1. A stabilizer bar clamp pressing mechanism, comprising an upper pressing assembly (2) and a lower pressing assembly (3), characterized in that: The upper pressure assembly (2) includes a connecting plate (21) connected to the drive assembly (1), a buffer mechanism (22) disposed at the bottom of the connecting plate (21), a guide mechanism (23) disposed inside the buffer mechanism (22), and an upper pressure mold (24) disposed at the bottom of the buffer mechanism (22). The guide mechanism (23) includes a striker (231) disposed through the buffer mechanism (22) and guide members (232) symmetrically disposed on both sides of the buffer mechanism (22). The bottom of the upper pressure mold (24) is provided with an upper clamp cavity (243) adapted to the shape of the upper clamp (30) of the stabilizer bar (20).

2. The stabilizer bar clamp pressing mechanism according to claim 1, characterized in that: The striker (231) is symmetrically arranged about the buffer mechanism (22). Each striker (231) has a wedge-shaped groove (2311) on its upper part. The cross section of the wedge-shaped groove (2311) gradually decreases on the side closer to the center of the buffer mechanism (22).

3. The stabilizer bar clamp pressing mechanism according to claim 2, characterized in that: Each of the firing pins (231) is fitted with a support plate (2312) in the middle, and two abutment springs (2313) are symmetrically arranged on the support plate (2312).

4. The stabilizer bar clamp pressing mechanism according to claim 2, characterized in that: The guide member (232) includes a symmetrically arranged guide arm (2321), a straightening block (2323) disposed in the middle of the guide arm (2321), and a wedge-shaped strip (2324) disposed on the top of the guide arm (2321). The shape of the wedge-shaped strip (2324) is adapted to the shape of the wedge-shaped groove (2311).

5. The stabilizer bar clamp pressing mechanism according to claim 4, characterized in that: The straightening block (2323) is located on the side of the guide arm (2321) near the center of the buffer mechanism (22), and the guide arm (2321) is provided with a guide groove (2322) in the vertical direction on the side away from the center of the upper pressure assembly (2).

6. The stabilizer bar clamp pressing mechanism according to claim 1, characterized in that: The buffer mechanism (22) includes a back plate (221) connected to the connecting plate (21), a hydraulic buffer (222) connected to the back plate (221), and a floating plate (223) sleeved on the hydraulic buffer (222). The hydraulic buffer (222) is symmetrically arranged along the axis of the back plate (221).

7. The stabilizer bar clamp pressing mechanism according to claim 6, characterized in that: The bottom of the floating plate (223) is connected to the upper pressure mold (24), and the floating plate (223) can move relative to the hydraulic buffer (222).

8. The stabilizer bar clamp pressing mechanism according to claim 1, characterized in that: Multiple guide pins (241) are symmetrically arranged on both sides of the upper mold (24), and the guide pins (241) are movably installed inside the upper mold (24).

9. The stabilizer bar clamp pressing mechanism according to claim 8, characterized in that: The upper clamp cavity (243) is provided with an upper magnetic block (242) that can attract the press-fit clamp (30) in the middle, and the impact pin (231) is provided on both sides of the upper clamp cavity (243).

10. A stabilizer bar clamp pressing mechanism according to claim 1, characterized in that: The pressing assembly (3) includes a base plate (31), a docking mechanism (32) disposed on the base plate (31), and a pressing mold (34) disposed inside the docking mechanism (32). The top of the pressing mold (34) is provided with a lower clamp cavity (343) that is adapted to the shape of the clamp (30) on the stabilizer bar (20).