Double-track double-section detection connection table
The dual-track, dual-section interface platform with adjustable height and stabilizing features addresses the inefficiencies in device handling by ensuring stable transportation and preventing belt slippage, enhancing operational efficiency and safety.
Patent Information
- Application Number
- CN202421816042.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-07-30
AI Technical Summary
When the existing connecting stations convey equipment of different specifications and models, the equipment placement angle is prone to change and needs to be manually adjusted, which affects the detection efficiency.
A dual-rail and double-section inspection connection table is designed, using structures such as shock absorbers, guide plates, guide wheels and guide shafts, and is combined with structures such as return springs, sliding discs, sliding holes, adjustment rods and tensioning wheels to ensure stable conveying of the equipment and height adjustment.
It realizes stable conveying and height adjustment of equipment of different sizes, prevents conveyor belts from slack, and improves the safety and operational convenience of equipment detection.
Smart Images

Figure CN223101703U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of connection tables, in particular to a double-track and double-section detection connection table. Background Art
[0002] A connection table is an integrated platform for connecting different devices and systems. Its main function is to connect and interact devices with different protocols or interfaces, realize data transmission and sharing, and at the same time can detect the interactive devices, thereby improving the production efficiency and quality of enterprises. In practical applications, the role of the connection table is becoming more and more important and has become a key technology for enterprises to realize intelligent production and management.
[0003] The patent specification with the publication number of CN202122320313.3 discloses a printed circuit board detection connection table, which "comprises a base, a U-shaped frame is fixedly installed on the top of the base, a limiting plate is fixedly installed inside the U-shaped frame, a U-shaped rod is slidably connected to the limiting plate, the top end of the U-shaped rod extends above the U-shaped frame and is fixedly installed with a table board, a moving ring is slidably sleeved on the U-shaped rod, and a rotating rod is rotatably connected to the rear side of the moving ring. By rotating the screw rod, the rotating rod can be driven to rotate to the left, so as to lift the height of the table board, and thus the height of the table board can be adjusted as needed, which is convenient for operators to operate, so it has good practicability".
[0004] However, it is found that the above-mentioned connection table has the following problems in the implementation of related technologies: since the specifications and models of the devices to be interactively detected are different, there are large differences in their volumes. When they are transported by a conveyor belt during the transportation and detection process, the placement angle of the devices is extremely likely to change, and it is necessary to manually repeatedly adjust the angle of the devices to be tested to achieve the connection and interaction of the devices to be detected. In view of this, a double-track and double-section detection connection table is provided to overcome the above defects. Summary of the Utility Model
[0005] The purpose of the utility model is to propose a double-track and double-section detection connection table to solve the deficiencies existing in the prior art.
[0006] To achieve the above object, the utility model adopts the following technical solution: a double-track double-section detection and connection table, including a base, wherein a cavity is provided in the inner wall of the top end of the base, an adjustment component is arranged inside the cavity, a cross plate is slidably connected to the top end of the base, bases are fixedly arranged on both sides of the cross plate, two driving rollers are rotatably connected to the inside of each of the two bases through bearings, conveyor belts are connected in transmission between every two adjacent driving rollers, fixing plates are fixedly arranged on both sides of the top ends of the two bases, guiding components are arranged on the inner walls of the four fixing plates, driving motors are fixedly arranged on the top of one side of the back surfaces of the two bases, and the transmission shafts of the two driving motors are respectively fixedly connected to one ends of two of the driving rollers, and a workbench is fixedly arranged between the two bases.
[0007] As a further description of the above technical solution: the adjustment component includes two first chutes, a moving seat, a connecting lead screw, a lead screw nut, two slide bars and two slide holes, the two first chutes are respectively arranged on both sides of the inner wall of the cavity, a moving seat is slidably connected between the two first chutes, a connecting lead screw is rotatably connected to the middle of the cavity through a bearing, a lead screw nut threadedly connected to the connecting lead screw is fixedly arranged on the inner wall of the moving seat, slide bars are fixedly arranged on both sides of the top end of the moving seat, the two slide holes are respectively arranged on both sides of the top end of the base, the two slide bars are respectively slidably connected to the two slide holes, and the top ends of the two slide bars are fixedly connected to the cross plate.
[0008] As a further description of the above technical solution: each of the plurality of guiding components includes a second chute, a guiding plate and a plurality of shock absorbers, the plurality of second chutes are respectively arranged on the inner walls of the plurality of fixing plates, guiding plates are slidably connected to the inner walls of the plurality of second chutes, a plurality of shock absorbers are fixedly arranged on one side of the inner walls of the plurality of second chutes, and one ends of the plurality of shock absorbers are respectively fixedly connected to the plurality of guiding plates. The elasticity of the plurality of shock absorbers enables the two guiding plates to slide on the inner walls of the two second chutes respectively, so as to stably transport the devices to be detected with different sizes, and at the same time prevent the devices from tipping over during the movement.
[0009] As a further description of the above technical solution: a first bevel gear is fixedly arranged on the surface of the connecting lead screw, a control shaft is rotatably connected to the inner wall of the back surface of the cavity through a bearing, a second bevel gear is fixedly arranged at one end of the control shaft, the second bevel gear is meshed with the first bevel gear, a disc is fixedly arranged at the other end of the control shaft. After the control shaft rotates, the second bevel gear is driven to rotate. After the second bevel gear rotates, the first bevel gear and the connecting lead screw are driven to rotate. After the connecting lead screw rotates, the moving seat slides between the two first chutes, and at the same time the two slide bars slide on the inner walls of the two slide holes respectively, so that the cross plate can drive the two bases and the workbench to move upward, so as to adjust the height of the connection table according to the height of the staff.
[0010] As a further description of the above technical solution: Pillars are fixedly provided at the bottoms inside the two bases. Through holes are provided in the inner walls of the two pillars. Slide plates are slidably connected to the inner walls of the two through holes. Return springs are fixedly provided at the bottoms inside the two through holes. The tops of the two return springs are fixedly connected to the two slide plates respectively.
[0011] As a further description of the above technical solution: Adjusting rods are fixedly provided at the tops of the two slide plates. Movable plates are fixedly provided at the tops of the two adjusting rods. Auxiliary shafts are rotatably connected to the tops on both sides of the two movable plates through bearings. Tension wheels are fixedly provided at one ends of the four auxiliary shafts. The downward movement of the four tension wheels can effectively prevent the two conveyor belts from becoming loose after long-term use, which affects the safety of the equipment to be detected.
[0012] As a further description of the above technical solution: A switch panel is fixedly provided on one side of the base. A driving motor switch is provided on the surface of the switch panel. The two driving motors are electrically connected to the power supply through the driving motor switch.
[0013] A number of guide grooves are provided in the inner walls on one side of the four guide plates. Guide shafts are rotatably connected to the inner walls of the number of guide grooves through bearings. Guide wheels are fixedly provided on the surfaces of the number of guide shafts.
[0014] The utility model has the following beneficial effects:
[0015] The double-track double-section detection and connection table designed by the utility model, through the cooperation of structures such as shock absorbers, guide plates, second chutes, guide wheels and guide shafts, enables the connection table to stably convey and connect equipment to be detected with different sizes. And through the cooperation of structures such as return springs, slide plates, slide holes, adjusting rods, movable plates and tension wheels, it can effectively prevent the two conveyor belts from becoming loose after long-term use, which affects the safety of the equipment to be detected.
[0016] The double-track double-section detection and connection table designed by the utility model, through the cooperation of structures such as discs, control shafts, second helical gears, first helical gears, connection lead screws, moving seats, first chutes and slide rods, enables the connection table to adjust the height of the connection table according to the height of the staff, which is convenient for operators to operate and has good practicability. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is the overall structural schematic diagram of the utility model;
[0018] Figure 2 is the cross-sectional structural schematic diagram of the base of the utility model;
[0019] Figure 3 It is a partial structural schematic diagram of the utility model;
[0020] Figure 4 It is a cross-sectional enlarged structural schematic diagram of the support column of the utility model;
[0021] Figure 5 It is a cross-sectional enlarged structural schematic diagram of the fixing plate of the utility model;
[0022] Figure 6 It is a schematic diagram of the cross-sectional structure of the base of the utility model;
[0023] Figure 7 For this utility model Figure 6 A is an enlarged structural diagram of FIG.
[0024] Legend:
[0025] 1. Base; 2. Cavity; 3. Adjustment assembly; 4. Cross plate; 5. Base; 6. Drive roller; 7. Conveyor belt; 8. Fixed plate; 9. Guide assembly; 10. Drive motor; 11. Workbench; 12. Pillar; 13. Through hole; 14. Slide plate; 15. Reset spring; 16. Adjustment rod; 17. Movable plate; 18. Auxiliary shaft; 19. Tensioner; 20. Switch panel; 23. Guide groove; 24. Guide shaft; 25. Guide wheel; 31. First slide groove; 32. Moving seat; 33. Connecting screw rod; 34. Screw rod nut; 35. Slide rod; 36. Slide hole; 331. First bevel gear; 332. Control shaft; 333. Second bevel gear; 334. Disc; 91. Second slide groove; 92. Guide plate; 93. Shock absorber. DETAILED DESCRIPTION
[0026] Reference Figures 1-7 The double-track double-section detection docking platform provided by the utility model includes: a base 1, a cavity 2 is opened on the inner wall of the top of the base 1, an adjustment component 3 is arranged inside the cavity 2, a cross plate 4 is slidably connected to the top of the base 1, a base 5 is fixedly arranged on both sides of the cross plate 4, two drive rollers 6 are rotatably connected to the inside of the two bases 5 through bearings, a conveyor belt 7 is transmission-connected between every two adjacent drive rollers 6, fixed plates 8 are fixed on both sides of the top of the two bases 5, guide components 9 are arranged on the inner walls of the four fixed plates 8, drive motors 10 are fixedly arranged on the top of one side of the back of the two bases 5, and the transmission shafts of the two drive motors 10 are respectively fixedly connected to one end of two of the drive rollers 6, and a workbench 11 is fixedly arranged between the two bases 5.
[0027] As a further implementation of the above technical solution: The adjustment component 3 includes two first sliding grooves 31, a moving seat 32, a connecting lead screw 33, a lead screw nut 34, two slide bars 35 and two slide holes 36. The two first sliding grooves 31 are respectively opened on both sides of the inner wall of the cavity 2. A moving seat 32 is slidably connected between the two first sliding grooves 31. The middle of the cavity 2 is rotatably connected with a connecting lead screw 33 through a bearing. The inner wall of the moving seat 32 is fixedly provided with a lead screw nut 34 threadedly connected with the connecting lead screw 33. Both sides of the top end of the moving seat 32 are fixedly provided with slide bars 35. The two slide holes 36 are respectively opened on both sides of the top end of the base 1. The two slide bars 35 are respectively slidably connected with the two slide holes 36. The top ends of the two slide bars 35 are fixedly connected with the cross plate 4;
[0028] A first bevel gear 331 is fixedly provided on the surface of the connecting lead screw 33. The inner wall of the back surface of the cavity 2 is rotatably connected with a control shaft 332 through a bearing. A second bevel gear 333 is fixedly provided at one end of the control shaft 332. The second bevel gear 333 is meshed and connected with the first bevel gear 331. A disc 334 is fixedly provided at the other end of the control shaft 332. By rotating the disc 334, the control shaft 332 rotates. After the control shaft 332 rotates, it drives the second bevel gear 333 to rotate. Since the second bevel gear 333 is meshed and connected with the first bevel gear 331, after the second bevel gear 333 rotates, it drives the first bevel gear 331 and the connecting lead screw 33 to rotate. After the connecting lead screw 33 rotates, the moving seat 32 slides between the two first sliding grooves 31. At the same time, the two slide bars 35 respectively slide on the inner walls of the two slide holes 36. Furthermore, the cross plate 4 can drive the two bases 5 to move upward with the workbench 11, so as to facilitate adjusting the height of the docking station according to the height of the staff.
[0029] As a further implementation of the above technical solution: Each of the plurality of guiding components 9 includes a second sliding groove 91, a guiding plate 92 and a plurality of shock absorbers 93. The plurality of second sliding grooves 91 are respectively opened on the inner walls of the plurality of fixing plates 8. A guiding plate 92 is slidably connected to the inner walls of the plurality of second sliding grooves 91. A plurality of shock absorbers 93 are fixedly provided on one side of the inner walls of the plurality of second sliding grooves 91. One ends of the plurality of shock absorbers 93 are respectively fixedly connected with the plurality of guiding plates 92;
[0030] A plurality of guiding grooves 23 are respectively opened on the inner walls of one sides of the four guiding plates 92. A guiding shaft 24 is rotatably connected to the inner walls of the plurality of guiding grooves 23 through a bearing. A guiding wheel 25 is fixedly provided on the surface of each of the plurality of guiding shafts 24. Due to the elasticity of the plurality of shock absorbers 93, the two guiding plates 92 slide outward along the inner walls of the two second sliding grooves 91 respectively. When the plurality of guiding wheels 25 are stressed, they are in contact with both sides of the device to be detected. While the device is moving, the plurality of guiding wheels 25 respectively rotate on the surfaces of the plurality of guiding shafts 24, so that the docking station can stably convey and connect devices to be detected with different sizes.
[0031] As a further implementation scheme of the above technical scheme: pillars 12 are fixedly provided at the bottom ends of the two bases 5, through holes 13 are provided on the inner walls of the two pillars 12, sliding plates 14 are slidably connected to the inner walls of the two through holes 13, and return springs 15 are fixedly provided at the bottom ends of the two through holes 13, and the top ends of the two return springs 15 are fixedly connected to the two sliding plates 14 respectively;
[0032] An adjusting rod 16 is fixed to the top of the two sliding plates 14, and a movable plate 17 is fixed to the top of the two adjusting rods 16. The tops of both sides of the two movable plates 17 are rotatably connected to auxiliary shafts 18 through bearings, and one end of the four auxiliary shafts 18 is fixed with a tensioning wheel 19. The sliding plate 14 slides downward along the through hole 13 due to the elasticity of the reset spring 15, and the adjusting rod 16, the movable plate 17 and the two tensioning wheels 19 move downward at the same time, thereby effectively preventing the conveyor belt 7 from loosening during the equipment transportation inspection of the docking station.
[0033] As a further implementation scheme of the above technical scheme: a switch panel 20 is fixedly provided on one side of the base 1, a drive motor switch is provided on the surface of the switch panel 20, and both drive motors 10 are electrically connected to the power supply through the drive motor switch.
[0034] Working principle: first, rotate the disc 334 to rotate the control shaft 332. After the control shaft 332 rotates, it drives the second bevel gear 333 to rotate. Since the second bevel gear 333 is meshed and connected with the first bevel gear 331, the second bevel gear 333 drives the first bevel gear 331 and the connecting screw 33 to rotate after the rotation. After the connecting screw 33 rotates, the movable seat 32 slides between the two first slide grooves 31. At the same time, the two slide bars 35 slide on the inner walls of the two slide holes 36 respectively, so that the cross plate 4 can drive the two bases 5 and the workbench 11 to move up, so as to adjust the height of the docking platform according to the height of the staff. Then, the equipment to be connected and tested is placed on the surfaces of the two conveyor belts 7 respectively, and the drive motor switches on the surface of the switch panel 20 are turned on at the same time. The two drive motors are After the machine 10 is started, the two conveyor belts 7 are respectively transmitted between every two adjacent driving rollers 6, so that the equipment to be connected moves relatively, and at the same time, the elasticity of the plurality of shock absorbers 93 makes the two guide plates 92 slide outward along the inner walls of the two second slide grooves 91 respectively. When the plurality of guide wheels 25 are subjected to force, they fit with the two sides of the equipment to be tested. While the equipment moves, the plurality of guide wheels 25 respectively rotate on the surfaces of the plurality of guide shafts 24, so as to facilitate the stable transportation of equipment to be tested of different sizes, and the elasticity of the reset spring 15 makes the sliding plate 14 slide downward along the through hole 13, and at the same time, the adjusting rod 16, the movable plate 17 and the two tensioning wheels 19 move downward, thereby effectively preventing the conveyor belt 7 from loosening during the equipment transportation and testing process of the docking station.
[0035] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. Double-track double-section detection and connection table, including a base (1), characterized in that: The inner wall of the top of the base (1) is provided with a cavity (2). An adjusting component (3) is arranged inside the cavity (2). A cross plate (4) is slidably connected to the top of the base (1). Bases (5) are fixedly arranged on both sides of the cross plate (4). Two driving rollers (6) are rotatably connected to the inside of each of the two bases (5) through bearings. A conveyor belt (7) is drivingly connected between every two adjacent driving rollers (6). Fixed plates (8) are fixedly arranged on both sides of the top of each of the two bases (5). A guiding component (9) is arranged on the inner wall of each of the four fixed plates (8). Driving motors (10) are fixedly arranged on the top of one side of the back of each of the two bases (5). The transmission shafts of the two driving motors (10) are respectively fixedly connected to one ends of two of the driving rollers (6). A workbench (11) is fixedly arranged between the two bases (5).
2. The double-track double-segment detection and connection table according to claim 1, characterized in that: The adjusting component (3) includes two first chutes (31), a moving seat (32), a connecting lead screw (33), a lead screw nut (34), two slide bars (35) and two slide holes (36). The two first chutes (31) are respectively arranged on both sides of the inner wall of the cavity (2). A moving seat (32) is slidably connected between the two first chutes (31). A connecting lead screw (33) is rotatably connected to the middle of the cavity (2) through a bearing. A lead screw nut (34) threadedly connected to the connecting lead screw (33) is fixedly arranged on the inner wall of the moving seat (32). Slide bars (35) are fixedly arranged on both sides of the top of the moving seat (32). The two slide holes (36) are respectively arranged on both sides of the top of the base (1). The two slide bars (35) are respectively slidably connected to the two slide holes (36). The top ends of the two slide bars (35) are fixedly connected to the cross plate (4).
3. The double-track double-section detection and connection table according to claim 1, characterized in that: Each of the several guiding components (9) includes a second chute (91), a guiding plate (92) and several shock absorbers (93). The several second chutes (91) are respectively arranged on the inner walls of the several fixed plates (8). Guiding plates (92) are slidably connected to the inner walls of the several second chutes (91). Several shock absorbers (93) are fixedly arranged on one side of the inner walls of the several second chutes (91). One ends of the several shock absorbers (93) are respectively fixedly connected to the several guiding plates (92).
4. The double-track and double-section detection and connection table according to claim 2, characterized in that: A first helical gear (331) is fixedly arranged on the surface of the connecting lead screw (33). A control shaft (332) is rotatably connected to the inner wall of the back of the cavity (2) through a bearing. A second helical gear (333) is fixedly arranged at one end of the control shaft (332). The second helical gear (333) is meshed and connected with the first helical gear (331). A disc (334) is fixedly arranged at the other end of the control shaft (332).
5. The double-track double-section detection and connection table according to claim 1, characterized in that: At the bottom ends inside both of the two bases (5), there are fixedly provided struts (12). Through holes (13) are opened on the inner walls of both of the two struts (12). Slide plates (14) are slidably connected to the inner walls of both of the two through holes (13). At the bottom ends inside both of the two through holes (13), there are fixedly provided return springs (15). The top ends of both of the two return springs (15) are fixedly connected to both of the two slide plates (14) respectively.
6. The double-track double-section detection and connection platform according to claim 5, characterized in that: At the top ends of both of the two slide plates (14), there are fixedly provided adjusting rods (16). At the top ends of both of the two adjusting rods (16), there are fixedly provided movable plates (17). At the top ends on both sides of both of the two movable plates (17), there are rotatably connected auxiliary shafts (18) through bearings. At one end of each of the four auxiliary shafts (18), there is fixedly provided a tension pulley (19).
7. The double-track double-section detection and connection table according to claim 1, wherein: On one side of the base (1), there is fixedly provided a switch panel (20). On the surface of the switch panel (20), there is a driving motor switch. Both of the two driving motors (10) are electrically connected to the power supply through the driving motor switch.
8. The double-track double-section detection and connection table according to claim 3, wherein: On the inner walls on one side of the four guide plates (92), there are opened a number of guide grooves (23). Guide shafts (24) are rotatably connected to the inner walls of the number of guide grooves (23) through bearings. Guide wheels (25) are fixedly provided on the surfaces of the number of guide shafts (24).
Citation Information
Patent Citations
Printed circuit board detection connection table
CN215812935U