A fixing device for automobile tire detection
Through auxiliary tire unloading and tire limiting mechanisms, the problem of tire rotation damage detection device and size difference is solved, and fast and accurate dynamic balance detection in emergencies is achieved.
Patent Information
- Application Number
- CN202411883554.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2044-12-19
AI Technical Summary
In the prior art, the inertia of the rotation of the tire will damage the dynamic balance detection device, and the difference in tire sizes of different vehicles leads to inconvenience in fixing, affecting detection efficiency and vehicle usage.
The auxiliary tire unloading mechanism and tire limiting mechanism are adopted, including the central shaft, inner arc plate and outer arc plate. The vehicle is lifted through a jack, combined with the drive test mechanism and limit insertion rod, and the stable fixation and dynamic balance detection of tires of different sizes is achieved.
Quickly disassemble tires in emergency situations, reduce vibration damage, improve detection accuracy and adaptability, and are suitable for tires of different sizes to ensure the stability and efficiency of dynamic balance detection.
Smart Images

Figure CN119779705B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of tire detection, in particular to a fixing device for detecting automobile tires. Background Art
[0002] When a car is driven for a long time, the tires may be deformed or stuck with stones because they are made of rubber. If the wheels are driven again, it will affect the stability of the vehicle and there may even be a risk of a blowout. Therefore, it is necessary to perform a dynamic balance test on the car tires. Tire dynamic balance test is an important task in car maintenance. It is used to ensure that the tires will not be unbalanced when rotating, thereby avoiding shaking, noise or abnormal wear of the vehicle during driving. The tire dynamic balance test is to rotate the car tire at high speed and observe whether the tire rotation shape is displaced.
[0003] At present, the dynamic balance detection device in the existing technology is not suitable for detecting automobile tires in emergency situations, resulting in the tires being unable to be used in time, affecting the vehicle utilization rate. At the same time, during the dynamic balance detection process of the automobile tire, the tire rotation will cause deviation. If the detection tire is not limited and shock-absorbing, it will cause damage to the dynamic balance detection device and affect the accuracy of the dynamic balance detection of the automobile tire. In addition, in the face of the requirements of different vehicle tire sizes, it is inconvenient to fix tires of different sizes, affecting the practicality of the dynamic balance detection device. Therefore, the present invention proposes a fixing device for automobile tire detection. Summary of the Invention
[0004] The purpose of the present invention is to solve the shortcomings of the prior art, such as the inertia of tire rotation may damage the mounting shaft of the dynamic balance detection device, and the inconvenience of fixing tires of different sizes due to the different sizes of tires used on different vehicles, which affects both the tire detection efficiency and the vehicle utilization rate.
[0005] In order to achieve the above-mentioned purpose, the present invention adopts the following technical solutions: a fixing device for automobile tire testing, comprising an auxiliary tire unloading mechanism, an auxiliary support mechanism being installed on the auxiliary tire unloading mechanism, a tire limiting mechanism being installed in the auxiliary support mechanism, the tire limiting mechanism comprising a central axis and an inner arc plate, the tire limiting mechanism can also drive the inner arc plate to rotate around the central axis to achieve angle adjustment according to the position of the tire during the process of limiting the wheel hub, the auxiliary support mechanism can also lock the movement of the inner arc plate when supporting it, and a driving test mechanism is installed on the tire limiting mechanism; the auxiliary tire unloading mechanism comprises a mounting block and an outer arc plate, mounting side plates are fixedly connected on both sides of the mounting block, wheels are installed at the four corners of the mounting side plate, and a jack body is rotatably installed on one side of the mounting block; the tire limiting mechanism comprises two fixed plates, the two fixed plates are fixedly connected to the upper and lower ends of the middle part of the inner arc plate, the two ends of the inner arc plate are fixedly connected to the central axis, and the central axis is rotatably installed on the inner wall of the outer arc plate.
[0006] In at least some embodiments, an upper protective plate is fixedly connected to the upper surface of the mounting side plate, a No. 1 connecting seat is fixedly connected to the upper surface of the mounting block, a push handle is rotatably mounted on the No. 1 connecting seat, two mounting sheet metals are rotatably mounted on the upper end of the jack body, and a connecting piece is rotatably mounted on the upper end of the mounting sheet metal.
[0007] In at least some embodiments, a support rod is rotatably installed in the middle of the connecting member, a No. 2 connecting seat is fixedly connected to the lower end of the support rod, the No. 2 connecting seat is fixedly connected to the upper surface of the jack body, one side of the connecting member is fixedly connected to the outer arc plate, pads are fixedly connected at both ends of the outer arc plate, and a main slide rail is fixedly connected to the middle of the inner wall of the outer arc plate.
[0008] In at least some embodiments, mounting grooves are provided on both sides of the middle portion of the inner arc plate, a fixed sheet metal is fixedly connected to the surface of one side of the inner arc plate, a No. 1 rotating shaft is rotatably installed in the fixed sheet metal, a No. 1 driving gear is fixedly connected to both ends of the No. 1 rotating shaft, a lower gear is fixedly connected to the middle portion of the No. 1 rotating shaft, connecting sheet metals are provided on both sides of the lower gear, the connecting sheet metal is rotatably installed on the No. 1 rotating shaft, and a driving gear plate is meshed and connected below the lower gear.
[0009] In at least some embodiments, an upper gear is meshedly connected above the lower gear, a telescopic rod is provided on one side of the inner arc plate, the upper gear is rotatably mounted on one end of the telescopic shaft of the telescopic rod, both ends of the telescopic shaft of the telescopic rod are fixedly connected to extension shafts, the connecting sheet metal is rotatably mounted on the extension shaft, and one end of the telescopic rod is fixedly connected to a slider.
[0010] In at least some embodiments, the slider is installed in the main slide rail, the slider is engaged and connected with a No. 1 screw rod, the No. 1 screw rod is rotatably installed between the inner walls of the main slide rail, and the upper end of the No. 1 screw rod is fixedly connected to a rotating handle, and the rotating handle is rotatably installed on the upper end of the main slide rail.
[0011] In at least some embodiments, one side of the No. 1 driving gear is meshedly connected to the No. 1 driven gear, and the center of the No. 1 driven gear is fixedly connected to a No. 2 screw rod, one end of the No. 2 screw rod is rotatably mounted with a mounting piece, and the mounting piece is fixedly connected to one side of the inner wall of the mounting groove, and the No. 2 screw rod is meshedly connected to an L-shaped movable block, one end of the L-shaped movable block is provided with a mounting hole, and the mounting hole is sleeved on the No. 1 rotating shaft, one end of the L-shaped movable block is fixedly connected to an arc plate, and one end of the arc plate is fixedly connected to a limiting clamp.
[0012] In at least some embodiments, the drive testing mechanism includes an L-shaped assembly plate, one side of the L-shaped assembly plate is fixedly connected to a drive tooth plate, the drive tooth plate is movably installed in the middle of the inner arc plate, the upper surface of the L-shaped assembly plate is fixedly connected to a drive motor, the output shaft of the drive motor is fixedly connected to a No. 2 drive gear, the lower end of the No. 2 drive gear is meshed and connected to a No. 2 driven gear, the No. 2 driven gear is rotatably installed on the front surface of the L-shaped assembly plate, the center of the No. 2 driven gear is fixedly connected to a No. 2 rotating shaft, one end of the No. 2 rotating shaft is fixedly connected to a connecting block, one side of the connecting block is fixedly connected to a fixed bracket, and one side of the fixed bracket is fixedly connected to five evenly distributed limiting rods.
[0013] In at least some embodiments, the auxiliary support mechanism includes a mounting rod, which is rotatably mounted at the four corners of the main slide rail surface, and an L-shaped transmission rod is rotatably mounted on one end of each mounting rod, and a sliding seat is rotatably mounted on one end of the L-shaped transmission rod, and a secondary slide rail is movably mounted on the lower end of the sliding seat, and each secondary slide rail is fixedly connected to the upper and lower surfaces of the inner arc plate, and each sliding seat is fixedly connected to a side matching plate on one side, and each side matching plate is provided with a plurality of evenly distributed slots on one side.
[0014] In at least some embodiments, a movable tooth plate is provided on one side of each of the secondary slide rails, and a limit seat is provided on both sides of each of the movable tooth plate. Each of the limit seats is fixedly connected to the upper surface of the inner arc plate, and a central gear is rotatably installed between every two of the limit seats. The upper end of the central gear is fixedly connected to a pressure plate, and the teeth of the central gear are set to half. The central gear is meshed and connected to the movable tooth plate, and one end of the movable tooth plate is fixedly connected to a clamping block, and the clamping block is clamped and connected to the clamping slot.
[0015] Compared with the prior art, the advantages and positive effects of the present invention are:
[0016] In the present invention, the car is lifted by pushing the handle and the jack body to drive the outer arc plate and the pad to assist in removing the car tire. Lifting the car can also assist the subsequent limit rod to directly perform dynamic balance rotation test on the tire, so as to avoid disassembling the car tire and save detection efficiency. It is more suitable for tire detection in emergency situations. During the dynamic balance rotation test, since the inner arc plate and the outer arc plate are connected by the central axis, the L-shaped transmission rod can support the arc plate and the outer arc plate, thereby strengthening the firmness between the fixing device structure and reducing the vibration during the rotation test. The pressure plate drives the block of the movable tooth plate to be inserted into the slot of the side matching block, which can lock the movement of the inner arc plate and facilitate the dynamic balance rotation test. In the present invention, the rotating handle drives the slider to rise and fall along the No. 1 screw. By raising and lowering the No. 1 screw and cooperating with the telescopic rod, the inner arc plate can be driven to rotate around the central axis. The angle can be adjusted according to the lifting height of the car, and the No. 1 rotating shaft can be driven to rotate synchronously at the same time. The rotation of the No. 1 rotating shaft can, on the one hand, drive the two L-shaped movable blocks to move inward or outward, and on the other hand, push the L-shaped assembly plate to move horizontally, and then cooperate with the limiting clamp to limit the two sides of the tire. The limiting plug can also be driven by the driving motor to rotate to drive the tire to rotate, so that tires of different sizes can be fixed and subjected to dynamic balance rotation testing, ensuring the stability of dynamic balance detection and improving the accuracy of tire detection.
[0017] Figure 1 This is a schematic perspective view of the overall structure of one side of a fixing device for automobile tire inspection proposed by the present invention;
[0018] Figure 2 This is a schematic perspective view of the other side of the overall structure of a fixing device for automobile tire inspection proposed by the present invention;
[0019] Figure 3 This is a schematic perspective view of the overall structure of an auxiliary tire removal mechanism of a fixing device for automobile tire inspection proposed by the present invention;
[0020] Figure 4 This is a schematic three-dimensional diagram of the structure of the outer arc plate, auxiliary support mechanism and tire limiting mechanism of a fixing device for automobile tire testing proposed by the present invention;
[0021] Figure 5 This is a schematic three-dimensional diagram of the overall structure of a tire limiting mechanism of a fixing device for automobile tire detection proposed by the present invention;
[0022] Figure 6 A schematic three-dimensional diagram of the combined structure of the outer arc plate and the auxiliary support mechanism of a fixing device for automobile tire inspection proposed by the present invention;
[0023] Figure 7This is a schematic perspective view of the overall structure of an auxiliary support mechanism of a fixing device for automobile tire inspection proposed by the present invention;
[0024] Figure 8 A schematic perspective view of the cross-sectional structure of the inner arc plate of a fixing device for automobile tire inspection proposed by the present invention;
[0025] Figure 9 This is a schematic three-dimensional diagram of the partial structure of a tire limiting mechanism of a fixing device for automobile tire inspection proposed by the present invention;
[0026] Figure 10 The present invention proposes a fixing device for automobile tire detection Figure 9 The enlarged structural schematic diagram at a in the middle;
[0027] Figure 11 The present invention provides a schematic three-dimensional diagram of the L-shaped assembly plate, the second rotating shaft and the arc-shaped plate structure of a fixing device for automobile tire detection.
[0028] Legend: 100, auxiliary tire unloading mechanism; 200, auxiliary support mechanism; 300, tire limiting mechanism; 400, drive test mechanism; 101, mounting side plate; 102, mounting block; 103, No. 1 connecting seat; 104, push handle; 105, upper protective plate; 106, wheel; 107, jack body; 108, No. 2 connecting seat; 109, support rod; 110, mounting sheet metal; 111, outer arc plate; 112, spacer; 113, main slide rail; 114, connector; 201, mounting rod; 202, L-shaped transmission rod; 203, sliding seat; 204, secondary slide rail; 205, side matching plate; 206, slot; 207, limiting seat; 208, center gear; 209, pressure plate; 210, clamping block; 211, movable tooth plate; 301, center shaft; 302. Inner arc plate; 303. Fixed plate; 304. Mounting slot; 305. Screw rod No. 1; 306. Rotating handle; 307. Slider; 308. Telescopic rod; 309. Arc plate; 310. Limit clamp; 311. Lower gear; 312. L-shaped movable block; 313. Rotating shaft No. 1; 314. Driving gear No. 1; 315. Driven gear No. 1; 316. Mounting hole; 317. Screw rod No. 2; 318. Fixed sheet metal; 319. Mounting part; 320. Connecting sheet metal; 321. Extension shaft; 322. Upper gear; 401. Driving motor; 402. Driving gear No. 2; 403. Rotating shaft No. 2; 404. Fixed bracket; 405. Limiting rod; 406. Driven gear No. 2; 407. Connecting block; 408. L-shaped assembly plate; 409. Driving gear plate. DETAILED DESCRIPTION
[0029] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention is further described below in conjunction with the accompanying drawings and embodiments. It should be noted that, in the absence of conflict, the embodiments of the present application and the features therein can be combined with each other.
[0030] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways than those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0031] Embodiment, according to Figures 1-11 ,like Figure 1-Figure 2 As shown, an embodiment of the present invention provides a fixing device for automobile tire testing, including an auxiliary tire unloading mechanism 100, on which an auxiliary support mechanism 200 is installed, and a tire limiting mechanism 300 is installed in the auxiliary support mechanism 200, wherein the tire limiting mechanism 300 includes a central axis 301 and an inner arc plate 302, and the tire limiting mechanism 300 can also drive the inner arc plate 302 to rotate around the central axis 301 during the process of limiting the wheel hub to achieve angle adjustment according to the position of the tire, and the auxiliary support mechanism 200 can support the inner arc plate 302 and lock its movement, and the tire limiting mechanism 300 is installed with a drive test mechanism 400; as shown Figure 3 As shown, the auxiliary tire removal mechanism 100 includes a mounting block 102 and an outer arc plate 111. The mounting block 102 is fixedly connected to mounting side plates 101 on both sides. Wheels 106 are installed at the four corners of the mounting side plates 101. A jack body 107 is rotatably installed on one side of the mounting block 102. The device can be pushed to the side of the car and the vehicle can be lifted up with the jack body 107 to assist in tire removal or dynamic balancing detection. Figure 5 As shown, the tire limiting mechanism 300 includes two fixed plates 303, which are fixedly connected to the upper and lower ends of the middle part of the inner arc plate 302. The two ends of the inner arc plate 302 are fixedly connected to the central shaft 301, and the central shaft 301 is rotatably mounted on the inner wall of the outer arc plate 111. The inner arc plate 302 rotates around the central shaft 301 to achieve synchronous movement according to the tire inclination angle.
[0032] like Figure 3-Figure 4As shown, the upper surface of the mounting side plate 101 is fixedly connected to an upper protective plate 105, which can protect the jack body 107 from collision. The upper surface of the mounting block 102 is fixedly connected to a No. 1 connecting seat 103, and a push handle 104 is rotatably mounted on the No. 1 connecting seat 103. Two mounting sheet metals 110 are rotatably mounted on the upper end of the jack body 107. A connecting piece 114 is rotatably mounted on the upper end of the mounting sheet metal 110. A support rod 109 is rotatably mounted in the middle of the connecting piece 114. The jack body 107, the connecting piece 114 and the support rod 109 are rotatably mounted. A stable triangular support relationship can be formed to support the outer arc plate 111. The lower end of the support rod 109 is fixedly connected to the No. 2 connecting seat 108, and the No. 2 connecting seat 108 is fixedly connected to the upper surface of the jack body 107. One side of the connecting piece 114 is fixedly connected to the outer arc plate 111. The two ends of the outer arc plate 111 are fixedly connected to the pads 112. The middle part of the inner wall of the outer arc plate 111 is fixedly connected to the main slide rail 113. The pads 112 at both ends of the outer arc plate 111 support the chassis on both sides of the vehicle tires and thus lift the vehicle. When the tires are off the ground, dynamic balancing test or tire removal can be carried out;
[0033] like Figure 4 and Figure 8As shown, mounting grooves 304 are provided on both sides of the middle of the inner arc plate 302, and a fixed sheet metal 318 is fixedly connected to the surface of one side of the inner arc plate 302. A No. 1 rotating shaft 313 is rotatably installed in the fixed sheet metal 318, and a No. 1 driving gear 314 is fixedly connected to both ends of the No. 1 rotating shaft 313. A lower gear 311 is fixedly connected to the middle of the No. 1 rotating shaft 313, and connecting sheet metal 320 is provided on both sides of the lower gear 311. The connecting sheet metal 320 is rotatably installed on On the first rotating shaft 313, the lower part of the lower gear 311 is meshed with a driving tooth plate 409. When the inner arc plate 302 rotates around the central axis 301, the upper gear 322 and the lower gear 311 are coordinated to drive the first rotating shaft 313 to rotate briefly. The first rotating shaft 313 drives the lower gear 311 to push the driving tooth plate 409 to move horizontally, thereby pushing the driving test mechanism 400 to connect to the tire. The upper part of the lower gear 311 is meshed with an upper gear 322. The inner arc plate 302 rotates around the central axis 301, and the upper gear 322 and the lower gear 311 are coordinated to drive the first rotating shaft 313 to rotate briefly. The first rotating shaft 313 drives the lower gear 311 to push the driving tooth plate 409 to move horizontally, thereby pushing the driving test mechanism 400 to connect to the tire. The cam 308 is fixed on the upper end of the cam 308 so that the cam 308 can be adjusted by the upper end of the cam 308.
[0034] like Figure 9-10As shown, one side of the No. 1 driving gear 314 is meshed with the No. 1 driven gear 315, and the center of the No. 1 driven gear 315 is fixedly connected to the No. 2 screw rod 317. During the angle adjustment process, the rotation of the No. 1 rotating shaft 313, in conjunction with the No. 1 driving gear 314 and the No. 1 driven gear 315, can drive the No. 2 screw rod 317 to rotate. One end of the No. 2 screw rod 317 is rotatably mounted with a mounting member 319, and the mounting member 319 is fixedly connected to one side of the inner wall of the mounting groove 304. The No. 2 screw rod 317 is meshed with an L-shaped movable block 312, and one end of the L-shaped movable block 312 A mounting hole 316 is provided, and the mounting hole 316 is sleeved on the No. 1 rotating shaft 313. One end of the L-shaped movable block 312 is fixedly connected to the arc plate 309, and one end of the arc plate 309 is fixedly connected to the limiting clamp 310. Since the two No. 2 screw rods 317 are threaded in opposite directions and meshed with the L-shaped movable block 312, the mounting hole 316 at one end of the L-shaped movable block 312 is sleeved on the No. 1 rotating shaft 313, which can drive the L-shaped movable block 312 to move horizontally, and can drive the two L-shaped movable blocks 312 to move inward synchronously, and limit the tire through the limiting clamp 310;
[0035] like Figure 11 As shown, the drive test mechanism 400 includes an L-shaped assembly plate 408, one side of the L-shaped assembly plate 408 is fixedly connected to a drive tooth plate 409, and the L-shaped assembly plate 408 and the drive tooth plate 409 are fixedly connected so that the two can move synchronously. The drive tooth plate 409 is movably installed in the middle of the inner arc plate 302, and the upper surface of the L-shaped assembly plate 408 is fixedly connected to a drive motor 401, and the output shaft of the drive motor 401 is fixedly connected to a No. 2 drive gear 402, and the lower end of the No. 2 drive gear 402 is meshedly connected to the No. 2 driven gear 406, and the No. 2 driven gear 406 is rotatably installed on the front surface of the L-shaped assembly plate 408. The center of the driven gear 406 is fixedly connected to the second rotating shaft 403, one end of the second rotating shaft 403 is fixedly connected to a connecting block 407, and one side of the connecting block 407 is fixedly connected to a fixing bracket 404. Starting the drive motor 401 in conjunction with the second driving gear 402 and the second driven gear 406 can drive the second rotating shaft 403 and the fixing bracket 404 to rotate, driving the tire to rotate and provide driving force for the balance test. Five evenly distributed limiting rods 405 are fixedly connected to one side of the fixing bracket 404. The L-shaped assembly plate 408 drives the fixing bracket 404 and the limiting rods 405 to be inserted into the screw holes of the tire, so that the tire can be fixed and driven more quickly.
[0036] like Figure 7As shown, the auxiliary support mechanism 200 includes a mounting rod 201, which is rotatably mounted at the four corners of the main slide rail 113. An L-shaped transmission rod 202 is rotatably mounted on one end of each mounting rod 201. A sliding seat 203 is rotatably mounted on one end of the L-shaped transmission rod 202. A secondary slide rail 204 is movably mounted on the lower end of the sliding seat 203. Each secondary slide rail 204 is fixedly connected to the upper and lower surfaces of the inner arc plate 302. When the inner arc plate 302 When the angle is adjusted by rotating around the central axis 301, the L-shaped transmission rod 202 rotates around the mounting rod 201, and the sliding seat 203 moves along the secondary slide rail 204. The L-shaped transmission rod 202 can support the inner arc plate 302 and the fixed plate 303, thereby strengthening the firmness of the connection between the inner arc plate 302 and the outer arc plate 111. Each side of the sliding seat 203 is fixedly connected to a side matching plate 205. Each side of the side matching plate 205 is provided with a plurality of evenly distributed card slots 206. Each side of the secondary slide rail 204 is provided with a movable tooth plate 211. Each movable tooth plate 211 is provided with a limiting seat 207 on both sides. Each limiting seat 207 is fixedly connected to the upper surface of the inner arc plate 302. A central gear 208 is rotatably installed between each two limiting seats 207. The upper end of the central gear 208 is fixedly connected to a pressure plate 209. The teeth of the central gear 208 are set to half. 08 is meshed and connected to the movable tooth plate 211. One end of the movable tooth plate 211 is fixedly connected to a clamping block 210. The clamping block 210 is clamped and connected to the clamping slot 206. Pressing the pressure plate 209 can cooperate with the central gear 208 to drive the movable tooth plate 211 to move horizontally. The clamping block 210 at one end of the movable tooth plate 211 is inserted into the clamping slot 206 of the side matching plate 205, thereby locking the movement of the sliding seat 203. After locking, the inner arc plate 302 cannot rotate around the central axis 301.
[0037] The working principle of the present invention is as follows: first, push the pushing handle 104 to drive the mounting side plate 101, the mounting block 102 and the jack body 107 to move to one side of the vehicle, start the jack body 107 to drive the outer arc plate 111 and the pad 112 to press against the chassis on both sides of the vehicle tire and thus lift the vehicle, then rotate the rotating handle 306 to drive the slider 307 and the telescopic rod 308 to move up and down along the main slide rail 113, and the inner arc plate 302 is driven to rotate around the central axis 301 through the lifting of the telescopic rod 308, driving the limiting plug rod 405 to adjust the angle, and at the same time, during the rotation of the inner arc plate 302 around the central axis 301, the second screw rod 317 can drive the limiting clamps 310 on both sides to clamp one side of the tire, so as to achieve the purpose of tire adjustment. The limiting effect is achieved, and then the driving gear plate 409 can be used to drive the limiting rod 405 to be inserted into the screw hole of the tire. The limiting rod 405 and the limiting clamp 310 can fix both sides of the tire. This fixing method is faster and can be adjusted according to the size and angle of the tire. After fixing the tire, the pressure plate 209 can be dialed to lock the L-shaped transmission rod 202. After locking, the inner arc plate 302 cannot rotate around the central axis 301. At the same time, the L-shaped transmission rod 202 can support the inner arc plate 302 and the fixed plate 303, thereby strengthening the firmness of the connection between the inner arc plate 302 and the outer arc plate 111. Finally, the driving motor 401 is started to drive the limiting rod 405 to rotate, driving the tire to rotate to achieve dynamic balance detection.
[0038] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention in any other form. Any person skilled in the art may use the technical contents disclosed above to change or modify them into equivalent embodiments with equivalent changes for application in other fields. However, any simple modification, equivalent change and modification of the above embodiments made in accordance with the technical essence of the present invention without departing from the technical solution of the present invention shall still fall within the scope of protection of the technical solution of the present invention.
Claims
1. A fixing device for automobile tire inspection, comprising an auxiliary tire removal mechanism (100), characterized in that: The auxiliary tire unloading mechanism (100) is equipped with an auxiliary support mechanism (200), and a tire limiting mechanism (300) is installed in the auxiliary support mechanism (200). The tire limiting mechanism (300) includes a central axis (301) and an inner arc plate (302). When the tire limiting mechanism (300) limits the wheel hub, it can also drive the inner arc plate (302) to rotate around the central axis (301) to achieve angle adjustment according to the position of the tire. The auxiliary support mechanism (200) can also lock the movement of the inner arc plate (302) while supporting it. The tire limiting mechanism (300) is equipped with a drive test mechanism (400); The auxiliary tire removal mechanism (100) comprises a mounting block (102) and an outer arc plate (111); mounting side plates (101) are fixedly connected to both sides of the mounting block (102); wheels (106) are mounted at the four corners of the mounting side plates (101); and a jack body (107) is rotatably mounted on one side of the mounting block (102); The tire limiting mechanism (300) comprises two fixing plates (303), the two fixing plates (303) being fixedly connected to the upper and lower ends of the middle portion of the inner arc plate (302), the two ends of the inner arc plate (302) being fixedly connected to a central shaft (301), and the central shaft (301) being rotatably mounted on the inner wall of the outer arc plate (111).
2. The fixing device for automobile tire inspection according to claim 1, characterized in that: An upper protective plate (105) is fixedly connected to the upper surface of the mounting side plate (101), a No. 1 connecting seat (103) is fixedly connected to the upper surface of the mounting block (102), a push handle (104) is rotatably mounted on the No. 1 connecting seat (103), two mounting sheet metals (110) are rotatably mounted on the upper end of the jack body (107), and a connecting piece (114) is rotatably mounted on the upper end of the mounting sheet metal (110).
3. The fixing device for automobile tire inspection according to claim 2, characterized in that: A support rod (109) is rotatably mounted in the middle of the connecting member (114), a lower end of the support rod (109) is fixedly connected to a second connecting seat (108), the second connecting seat (108) is fixedly connected to the upper surface of the jack body (107), one side of the connecting member (114) is fixedly connected to the outer arc plate (111), both ends of the outer arc plate (111) are fixedly connected to cushion blocks (112), and the middle of the inner wall of the outer arc plate (111) is fixedly connected to a main slide rail (113).
4. The fixing device for automobile tire inspection according to claim 1, characterized in that: Mounting grooves (304) are provided on both sides of the middle of the inner arc plate (302), a fixed sheet metal (318) is fixedly connected to the surface of one side of the inner arc plate (302), a No. 1 rotating shaft (313) is rotatably installed in the fixed sheet metal (318), both ends of the No. 1 rotating shaft (313) are fixedly connected to a No. 1 driving gear (314), a lower gear (311) is fixedly connected to the middle of the No. 1 rotating shaft (313), connecting sheet metals (320) are provided on both sides of the lower gear (311), the connecting sheet metal (320) is rotatably installed on the No. 1 rotating shaft (313), and a driving gear plate (409) is meshedly connected below the lower gear (311).
5. The fixing device for automobile tire inspection according to claim 4, characterized in that: An upper gear (322) is meshedly connected above the lower gear (311), a telescopic rod (308) is provided on one side of the inner arc plate (302), the upper gear (322) is rotatably mounted on one end of the telescopic shaft of the telescopic rod (308), both ends of the telescopic shaft of the telescopic rod (308) are fixedly connected to an extension shaft (321), the connecting sheet metal (320) is rotatably mounted on the extension shaft (321), and one end of the telescopic rod (308) is fixedly connected to a slider (307).
6. The fixing device for automobile tire inspection according to claim 5, characterized in that: The slider (307) is installed in the main slide rail (113), and the slider (307) is engaged with a first screw rod (305). The first screw rod (305) is rotatably installed between the inner walls of the main slide rail (113). The upper end of the first screw rod (305) is fixedly connected to a rotating handle (306), and the rotating handle (306) is rotatably installed on the upper end of the main slide rail (113).
7. The fixing device for automobile tire inspection according to claim 4, characterized in that: One side of the No. 1 driving gear (314) is meshedly connected to the No. 1 driven gear (315), and the center of the No. 1 driven gear (315) is fixedly connected to the No. 2 screw rod (317), and one end of the No. 2 screw rod (317) is rotatably mounted with a mounting member (319), and the mounting member (319) is fixedly connected to one side of the inner wall of the mounting groove (304). The No. 2 screw rod (317) is meshedly connected to an L-shaped movable block (312), and one end of the L-shaped movable block (312) is provided with a mounting hole (316), and the mounting hole (316) is sleeved on the No. 1 rotating shaft (313). One end of the L-shaped movable block (312) is fixedly connected to an arc plate (309), and one end of the arc plate (309) is fixedly connected to a limiting clamp (310).
8. The fixing device for automobile tire inspection according to claim 1, characterized in that: The driving test mechanism (400) includes an L-shaped assembly plate (408), one side of the L-shaped assembly plate (408) is fixedly connected to a driving tooth plate (409), the driving tooth plate (409) is movably mounted on the middle part of the inner arc plate (302), the upper surface of the L-shaped assembly plate (408) is fixedly connected to a driving motor (401), the output shaft of the driving motor (401) is fixedly connected to a No. 2 driving gear (402), and the lower end of the No. 2 driving gear (402) is meshedly connected to A second driven gear (406) is rotatably mounted on the front surface of the L-shaped assembly plate (408); a second rotating shaft (403) is fixedly connected to the center of the second driven gear (406); one end of the second rotating shaft (403) is fixedly connected to a connecting block (407); one side of the connecting block (407) is fixedly connected to a fixing bracket (404); and one side of the fixing bracket (404) is fixedly connected to five evenly distributed limiting rods (405).
9. The fixing device for automobile tire inspection according to claim 1, characterized in that: The auxiliary support mechanism (200) includes a mounting rod (201), the mounting rod (201) is rotatably mounted at the four corners of the surface of the main slide rail (113), one end of each mounting rod (201) is rotatably mounted with an L-shaped transmission rod (202), one end of the L-shaped transmission rod (202) is rotatably mounted with a sliding seat (203), the lower end of the sliding seat (203) is movably mounted with a secondary slide rail (204), each of the secondary slide rails (204) is fixedly connected to the upper surface and the lower surface of the inner arc plate (302), one side of each sliding seat (203) is fixedly connected with a side matching plate (205), and one side of each side matching plate (205) is provided with a plurality of evenly distributed card slots (206).
10. The fixing device for automobile tire inspection according to claim 9, characterized in that: A movable tooth plate (211) is provided on one side of each secondary slide rail (204), and a limiting seat (207) is provided on both sides of each movable tooth plate (211). Each limiting seat (207) is fixedly connected to the upper surface of the inner arc plate (302). A central gear (208) is rotatably installed between each two limiting seats (207). A pressure plate (209) is fixedly connected to the upper end of the central gear (208). The teeth of the central gear (208) are set to half. The central gear (208) is meshed and connected to the movable tooth plate (211). A clamping block (210) is fixedly connected to one end of the movable tooth plate (211), and the clamping block (210) is clamped and connected to the clamping slot (206).
Citation Information
Patent Citations
Automobile tire grinding and grooving integrated device
CN111702575A
Tire testing equipment
CN112964485A