Automatic card inserting machine for steering bulb of motor vehicle
By combining a cylindrical conveyor structure with a buffer structure, the problem of uneven bulb clamping caused by wheel conveyors was solved, realizing automated packaging of motor vehicle turn signals and improving production efficiency and yield.
Patent Information
- Application Number
- CN202520076020.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-01-14
AI Technical Summary
In the existing technology, during the automated packaging process of motor vehicle turn signals, wheeled conveyors cause uneven bulb clamping, resulting in slow production speed, high difficulty in mechanized packaging, and a high defect rate.
The system employs a combination of a cylindrical conveyor structure and a buffer structure. Through the synergistic action of the drive sprocket and the buffer sprocket, it achieves the individual placement and stable conveying of light bulbs. Combined with the processing mechanism, it automates cardboard placement, light bulb gripping, and cardboard bending, forming a fully automated packaging process.
It improved the stability and accuracy of bulb feeding, reduced production costs, and achieved fully automated operation and efficient packaging.
Smart Images

Figure CN223804545U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of bulb production technology, and specifically relates to an automatic card inserting machine for motor vehicle steering bulb. BACKGROUND
[0002] The automobile steering lamp not only plays an important role in daily driving, but also can remind other drivers in emergency, thereby improving road safety, and in the production process of the automobile steering lamp, in order to facilitate transportation and storage, it needs to be inserted into the packaging box folded by paperboard.
[0003] For the prior art, two ways are generally adopted for the above-mentioned action, one is artificial packaging, and the efficiency of this way is low, and the defective rate is high, and the other is mechanized automatic packaging, which realizes packaging through the cooperation of the transmission device and the clamping device, and the existing transmission device mostly adopts wheel type conveying, and the bulb does the circular motion, so that only one bulb can be clamped when the clamping device clamps, resulting in slow production speed, and indeed a strip-shaped guide part can be arranged at the end of the wheel type conveying equipment, but the spacing adjustment of the bulb in the strip-shaped guide part is difficult, resulting in that the bulbs to be grabbed are not evenly distributed in the process of grabbing and packaging, resulting in subsequent packaging difficulty, and even packaging failure. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing an automatic card inserting machine for motor vehicle steering bulb to solve the problems in the above background technology.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:
[0006] An automatic card inserting machine for motor vehicle steering bulb comprises:
[0007] A first supporting table is provided with a first driving sprocket, a second driving sprocket and a plurality of guide sprockets;
[0008] A buffer structure is arranged on the first supporting table, and a first buffer sprocket and a second buffer sprocket are connected to the buffer structure;
[0009] A placing cylinder is provided with a plurality of groups and is combined with a chain to form a cylinder type conveying structure, the cylinder type conveying structure is coiled in a snake shape on the first driving sprocket, the second driving sprocket, the plurality of guide sprockets, the first buffer sprocket and the second buffer sprocket and forms a straight section, and when the first driving sprocket or the second driving sprocket moves, the buffer structure can drive the first buffer sprocket and the second buffer sprocket to move;
[0010] A second supporting table is provided with four processing positions.
[0011] Processing mechanism, set up on the second support platform, the processing mechanism includes feeding assembly, material moving assembly, folding assembly and discharging assembly, the feeding assembly, material moving assembly, folding assembly and discharging assembly correspond with four groups of processing sites.
[0012] As a further scheme of the utility model: the first support platform is provided with a first motor, the output shaft of the first motor is coaxially fixedly connected with the first drive sprocket,
[0013] The first support platform is further provided with a step drive structure, and the step drive structure can drive the second drive sprocket to rotate.
[0014] The step drive structure comprises a locking disc coaxially fixedly connected with the second drive sprocket, a pushing piece arranged on the first support platform and a locking piece, and the pushing piece is connected with a first cylinder arranged on the first support platform.
[0015] As a further scheme of the utility model: the buffer structure comprises a connecting block arranged on the first support platform and rotationally connected with the first buffer sprocket and the second buffer sprocket, the connecting block is slidingly connected with a guide rod arranged on the first support platform, and the connecting block is connected with a drive cylinder arranged on the first support platform.
[0016] As a further scheme of the utility model: the feeding assembly comprises a horizontal plate connected with the second support platform and a storage piece, a connecting plate is slidingly installed on the horizontal plate, the connecting plate is connected with a fifth cylinder arranged on the horizontal plate,
[0017] A first suction accessory is slidingly installed on the connecting plate, and the first suction accessory is connected with a fourth cylinder arranged on the connecting plate.
[0018] The feeding assembly further comprises a third screw transmission device arranged on the second support platform, and a second suction accessory is connected to the action end of the third screw transmission device.
[0019] As a further scheme of the utility model: the material moving assembly comprises a mounting plate slidingly installed on the second support platform, and the mounting plate is connected with a second cylinder arranged on the second support platform.
[0020] A turnover structure is slidingly installed on the mounting plate, and a first clamping jaw is arranged on the turnover structure.
[0021] As a further scheme of the utility model: the turnover structure comprises a third cylinder fixedly installed on the mounting plate, a rack plate is connected to the output shaft of the third cylinder, and the rack plate is engaged with a gear rotatably installed on the mounting plate.
[0022] The rotation axis of the gear is fixed with a rotating plate, and the rotating plate is fixedly connected with the first clamping jaw.
[0023] As a further scheme of the utility model: the folding assembly includes a driving device fixedly installed on the second supporting table, a second clamping jaw is connected to the output shaft of the driving device through a connecting plate, and the second clamping jaw is matched with the protruding block arranged on the second supporting table.
[0024] As a further scheme of the utility model: the blanking assembly includes a supporting frame installed on the second supporting table, a side plate is slidingly installed on the supporting frame, and the side plate is connected with the first screw rod transmission device arranged on the supporting frame.
[0025] A third clamping jaw is slidingly installed on the side plate, and the third clamping jaw is connected with the second screw rod transmission device arranged on the side plate.
[0026] Compared with the prior art, the utility model has the beneficial effects that:
[0027] 1. The action of placing the bulbs in the placing cylinder one by one and the action of conveying multiple bulbs to the position of the processing mechanism for grabbing can be alternately performed, and the two actions are coordinated, so that the placing cylinder can load the bulbs accurately, and the processing mechanism can clamp multiple bulbs, thereby improving the stability and precision of the bulb feeding;
[0028] 2. The automatic paperboard placing, bulb grabbing, paperboard folding and blanking are realized, and the four actions are sequentially performed, which improves the orderliness and logicality of the packaging operation and realizes the automatic operation of the whole process, thereby reducing the production cost. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 Structure diagram of an embodiment of the automatic card inserting machine for motor vehicle turning bulb.
[0030] Figure 2 Top view of an embodiment of the automatic card inserting machine for motor vehicle turning bulb.
[0031] Figure 3 Structure diagram of the buffer structure in an embodiment of the automatic card inserting machine for motor vehicle turning bulb.
[0032] Figure 4 Structure diagram of the buffer structure in an embodiment of the automatic card inserting machine for motor vehicle turning bulb.
[0033] Figure 5This is a schematic diagram of the structure of the second drive sprocket, locking disc, pusher, locking member, and first cylinder in one embodiment of an automatic turn signal bulb insertion machine for motor vehicles.
[0034] Figure 6 This is a schematic diagram of the processing mechanism in one embodiment of an automatic turn signal bulb insertion machine for motor vehicles.
[0035] Figure 7 for Figure 6 Enlarged view of the structure at point A in the middle.
[0036] Figure 8 This is a schematic diagram of the processing mechanism from another angle in one embodiment of the automatic turn signal bulb insertion machine for motor vehicles.
[0037] Figure 9 for Figure 8 Enlarged view of the structure at point B.
[0038] Figure 10 This is a schematic diagram of the folding assembly in one embodiment of an automatic turn signal bulb insertion machine for motor vehicles.
[0039] Figure 11 This is a schematic diagram of the feeding component in one embodiment of an automatic turn signal bulb insertion machine for motor vehicles.
[0040] In the diagram: 1. First support platform; 2. Feeding device; 3. First buffer sprocket; 4. Second buffer sprocket; 5. Guide sprocket; 6. First drive sprocket; 7. First motor; 8. Second drive sprocket; 9. Locking disc; 10. Pushing component; 11. Locking component; 12. First cylinder; 13. Processing disc; 14. Second cylinder; 15. Mounting plate; 16. Third cylinder; 17. Rack plate; 18. Gear; 19. Rotating plate; 20. First clamping claw; 21. Storage component; 22. Fourth cylinder; 23. 24. First adsorption component; 25. Fifth cylinder; 26. Connecting plate; 27. Horizontal plate; 28. Drive device; 29. Connecting plate; 20. Second clamping claw; 31. Support frame; 32. First screw drive device; 33. Side plate; 34. Second screw drive device; 35. Third clamping claw; 36. Second support platform; 37. Placement cylinder; 38. Connecting block; 39. Guide rod; 40. Fourth clamping claw; 41. Second adsorption component; 42. Third screw drive device; 43. Storage platform; 44. Positioning device. Detailed Implementation
[0041] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative efforts belong to the scope of protection of the present application.
[0042] In addition, the elements in the present application are referred to as "fixed to" or "disposed on" another element, which can be directly on another element or can have a middle element. When an element is considered to be "connected" to another element, it can be directly connected to another element or can have a middle element. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only and do not represent the only implementation.
[0043] Please refer to Figures 1-11 In the embodiments of the present application, the automatic card inserting machine for motor vehicle steering bulb comprises a first supporting table 1, a buffer structure, a placing cylinder 36, a second supporting table 35 and a processing mechanism.
[0044] The first supporting table 1 is provided with a first driving sprocket 6, a second driving sprocket 8 and a plurality of guide sprockets 5, wherein the first supporting table 1 is provided with a first motor 7, and the output shaft of the first motor 7 is coaxially fixedly connected with the first driving sprocket 6.
[0045] The first supporting table 1 is further provided with a stepping driving structure, and the stepping driving structure can drive the second driving sprocket 8 to rotate.
[0046] The stepping driving structure comprises a locking disc 9 coaxially fixedly connected with the second driving sprocket 8, a pushing piece 10 and a locking piece 11 arranged on the first supporting table 1, and the pushing piece 10 is connected with a first air cylinder 12 arranged on the first supporting table 1.
[0047] In use, the first motor 7 and the first cylinder 12 act alternately, and in the process of rotation of the first motor 7, it can drive the first drive sprocket 6 to rotate to drive the cylindrical conveying structure to move a distance of multiple placing cylinders 36, so that when the processing mechanism acts, multiple bulbs placed on the cylindrical conveying structure can be grabbed at the same time, and when the first cylinder 12 acts, it can drive the second drive sprocket 8 to step rotation, and make the cylindrical conveying structure move a distance of a placing cylinder 36, and cooperate with the feeding device 2 to put the bulbs into the placing cylinder 36 one by one, so that the placing cylinder 36 moving through the lower part of the feeding device 2 can be placed with bulbs, and when the processing mechanism grabs the bulbs for packaging, the packaging box can be placed with sufficient bulbs, improving the yield rate and the accommodation rate of the packaging box.
[0048] Further, torsional springs are arranged on the rotating shafts of the pushing member 10 and the locking member 11, so that the pushing member 10 and the locking member 11 have a tendency to move towards the locking disc 9, so that the locking teeth on the pushing member 10 and the locking member 11 can enter the tooth grooves on the locking disc 9.
[0049] Further, when the first cylinder 12 drives the pushing member 10 to move away from the first cylinder 12, the locking teeth on the pushing member 10 can abut against the tooth grooves on the locking disc 9, thereby driving the locking disc 9 to rotate, and in turn driving the cylindrical conveying structure to move, and in this process, when the locking teeth on the locking member 11 combine with the tooth grooves, the locking member 11 can be deflected to give way, and when the first cylinder 12 drives the pushing member 10 to move towards the first cylinder 12, the pushing member 10 can be deflected to give way, and at this time, the locking member 11 is in abutment with the tooth grooves, thereby preventing the locking disc 9 from moving in the opposite direction during the resetting of the pushing member 10, and realizing the one-way quantitative rotation of the second drive sprocket 8, so as to ensure that when the first drive sprocket 6 rotates, the cylindrical conveying structure can displace by a distance of adjacent two placing cylinders 36, thereby putting the bulbs into the placing cylinder 36 one by one.
[0050] Please refer to Figures 2-4 , the buffering structure is arranged on the first supporting table 1, and the first buffering sprocket 3 and the second buffering sprocket 4 are connected to the buffering structure;
[0051] The buffering structure comprises a connecting block 37 arranged on the first supporting table 1 and rotationally connected with the first buffering sprocket 3 and the second buffering sprocket 4, the connecting block 37 is slidingly connected with a guide rod 38 arranged on the first supporting table 1, and the connecting block 37 is connected with a drive cylinder arranged on the first supporting table 1;
[0052] The placing cylinder 36 is provided with multiple groups and combined with the chain to form a cylinder conveying structure, which is coiled in a snake shape on the first driving sprocket 6, the second driving sprocket 8, the multiple groups of guide sprockets 5, the first buffer sprocket 3 and the second buffer sprocket 4 and forms a straight section, when the first driving sprocket 6 or the second driving sprocket 8 is actuated, the buffer structure can drive the first buffer sprocket 3 and the second buffer sprocket 4 to actuate;
[0053] Further, the first supporting table 1 is also provided with a feeding device 2 and a positioning device 43, and it is necessary to note that the feeding device 2 is internally provided with a detection mechanism, which can remove the bulb when detecting that the bulb to be loaded has a defect, so as to avoid the defective bulb from being packaged and affecting the product quality.
[0054] In use, the cylinder conveying structure can be in a taut state under the action of the first driving sprocket 6, the second driving sprocket 8, the multiple groups of guide sprockets 5, the first buffer sprocket 3 and the second buffer sprocket 4, for the convenience of understanding, please refer to Figure 2 When the second driving sprocket 8 rotates, the first driving sprocket 6 is in a locked state (the first motor 7 is a self-locking motor with a lockable rotating shaft), at this time, the lower part of the cylinder conveying structure can be pulled, and the upper part can be released, and at the same time, the driving cylinder is actuated to drive the connecting block 37 to move downward, so that the first buffer sprocket 3 and the second buffer sprocket 4 move downward, so as to release the lower part of the cylinder conveying structure and tighten the upper part of the cylinder conveying structure, at this time, the straight section on the left side of the cylinder conveying structure can remain in a stationary state, and the buffer effect of the cylinder conveying structure is realized, so that when the bulbs are placed one by one in the placing cylinder 36, the bulbs in the placing cylinder 36 on the straight section can remain stationary, so that the bulbs can have better position stability, and the success rate of the processing mechanism in grabbing the bulbs is improved.
[0055] When the first driving sprocket 6 rotates, it can drive the cylinder conveying structure to move, so that the upper part of the cylinder conveying structure is pulled and the lower part is released, at this time, the driving cylinder can move reversely, so that the first buffer sprocket 3 and the second buffer sprocket 4 move downward, and the cylinder conveying structure is buffered again.
[0056] When the processing mechanism grabs the bulb in the placing cylinder 36 in the straight section, the positioning device 43 can act to position the bulb, so as to facilitate the processing mechanism to grab it, and avoid the bulb from being offset in the placing cylinder 36, which leads to difficulty in grabbing.
[0057] Through the above setting, the action of placing the bulbs one by one in the placing cylinder 36 and the action of conveying multiple bulbs to the processing mechanism position for grabbing can be alternately carried out, and the two are coordinated to ensure the loading accuracy of the placing cylinder 36 while enabling the processing mechanism to clamp multiple bulbs, thereby improving the stability and precision of the bulb feeding.
[0058] Please refer to Figures 6-11 , the second supporting table 35 is provided with four groups of processing positions.
[0059] The processing mechanism is arranged on the second supporting table 35, and the processing mechanism comprises a feeding assembly, a material moving assembly, a folding assembly and a discharging assembly. The feeding assembly, the material moving assembly, the folding assembly and the discharging assembly correspond to the four groups of processing positions, and the material moving assembly is matched with the fourth clamping claw 39 arranged on the second supporting table 35. Specifically,
[0060] The feeding assembly comprises a transverse plate 26 connected with the second supporting table 35 and a storage part 21. A connecting plate 25 is slidably arranged on the transverse plate 26, and the connecting plate 25 is connected with a fifth cylinder 24 arranged on the transverse plate 26.
[0061] A first suction accessory 23 is slidably arranged on the connecting plate 25, and the first suction accessory 23 is connected with a fourth cylinder 22 arranged on the connecting plate 25.
[0062] The feeding assembly further comprises a third screw transmission device 41 arranged on the second supporting table 35, and a second suction accessory 40 is connected with the action end of the third screw transmission device 41.
[0063] In use, the paperboard in unfolded state (not folded) is placed in the storage part 21, at this time the fifth cylinder 24 can drive the connecting plate 25 to move along the length direction of the horizontal plate 26, to the first suction accessory 23 moving to the lower side of the storage part 21, then the fourth cylinder 22 acts, drives the first suction accessory 23 to move to the bottom of the storage part 21, then the first suction accessory 23 acts, extracts the paperboard at the bottom of the storage part 21, then the fifth cylinder 24 and the fourth cylinder 22 act in coordination, and the first suction accessory 23 moves to the directly below of the second suction accessory 40, at this time, the third screw transmission device 41 acts, and drives the second suction accessory 40 to move towards the first suction accessory 23, to the second suction accessory 40 being attached to the paperboard, the second suction accessory 40 adsorbs the paperboard, at the same time, the first suction accessory 23 releases the paperboard, and is dislocated with the second suction accessory 40, finally, the third screw transmission device 41 continues to act, and the second suction accessory 40 moves to be attached to the processing disc 13, and releases the paperboard, to realize the automatic placement of the paperboard on the processing disc 13, improve the automation and intelligentization in the process of placing the paperboard.
[0064] Please refer to Figures 8-9 The material moving assembly comprises a mounting plate 15 slidably mounted on the second supporting table 35, and the mounting plate 15 is connected with a second cylinder 14 arranged on the second supporting table 35.
[0065] A turnover structure is slidably mounted on the mounting plate 15, and a first clamping jaw 20 is arranged on the turnover structure.
[0066] A rotating plate 19 is fixedly connected to the rotating shaft of the gear wheel 18.
[0067] When the paperboard is placed on the processing disc 13, the processing disc 13 rotates by 90°, at this time, the first clamping jaw 20 can grab the bulb positioned by the positioning device 43 and placed in the placing cylinder 36, then the second cylinder 14 acts, drives the mounting plate 15 to move upwards, until the bulb is separated from the placing cylinder 36, then the third cylinder 16 acts, drives the rack plate 17 to move, at this time, the gear wheel 18 can rotate under the drive of the rack plate 17, so that the rotating plate 19 makes a circular motion, and drives the first clamping jaw 20 to make a circular motion, and when the rotating plate 19 rotates by 180°, the fourth clamping jaw 39 can grab the bulb on the first clamping jaw 20 and place it on the paperboard, to realize the automatic feeding of the bulb.
[0068] Need to explain, set in the processing disc 13 on the bump inside a plurality of through holes, and the paperboard is also provided with a through hole, through hole and channel coaxial, and the bulb can be through the through hole.
[0069] Please refer to Figure 10 , the folding assembly includes driving device 27 fixedly installed on the second supporting table 35, the output shaft of the driving device 27 is connected with the second clamping jaw 29 through the connecting plate 28, and the second clamping jaw 29 is matched with the protrusion provided on the second supporting table 35.
[0070] When the bulb is placed on the paperboard, the processing disc 13 will continue to rotate 90°, at this time the driving device 27 will act, and drive the second clamping jaw 29 to move down through the connecting plate 28, and can act on the paperboard, so that the paperboard protruding from the area of the protrusion can be bent downward, so that the paperboard forms a bracket structure, and the stability of supporting the bulb can be improved, and the automatic bending of the paperboard further improves the portability during assembly.
[0071] Please refer to Figure 11 , the blanking assembly includes a supporting frame 30 installed on the second supporting table 35, a side plate 32 is slidably installed on the supporting frame 30, and the side plate 32 is connected with the first screw transmission device 31 provided on the supporting frame 30.
[0072] The third clamping jaw 34 is slidably installed on the side plate 32, and the third clamping jaw 34 is connected with the second screw transmission device 33 provided on the side plate 32.
[0073] Further, the second supporting table 35 is provided with a storage table 42 on the side.
[0074] When the paperboard is bent, the processing disc 13 will continue to rotate 90°, and then the first screw transmission device 31 and the second screw transmission device 33 act alternately, which can drive the third clamping jaw 34 to move towards the processing disc 13 first, so as to grab the paperboard on which the bulb is placed, and then place the paperboard on the storage table 42, thereby completing the automatic blanking action.
[0075] Through the above setting, the automatic paperboard placement, bulb grabbing, paperboard bending and blanking are realized, and the four actions are performed in turn, on the one hand, the order and logic of the packaging operation are improved, and on the other hand, the automatic operation of the whole process is realized, and the production cost is reduced.
[0076] It is apparent for a person skilled in the art that the present application is not limited to the details of the above-described exemplary embodiments, but that it can be implemented in other concrete forms without departing from the spirit or the essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary and non-limiting, the scope of the present application being defined by the claims appended hereto rather than by the above description, and all the changes which fall within the meaning and the scope of the equivalent elements of the claims are intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims to the figures in which the reference signs are used.
[0077] Furthermore, it should be understood that although the present specification is described in terms of embodiments, not every embodiment according to the present specification needs to exhibit each and every characteristic specified in the present specification. The specification can also be described in terms of a single independent technical solution, but this does not mean that each embodiment only contains one independent technical solution. The specification is described in this way only for the sake of clarity, and a person skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by a person skilled in the art.
Claims
1. An automatic inserting machine for motor vehicle turn signal bulbs, characterized in that, The utility model relates to a kind of automatic processing device for the production of earphone, including: First support platform (1), first drive sprocket (6) is provided on the first support platform (1), second drive sprocket (8) and multiple groups of guide sprocket (5); Buffer structure is set on the first support platform (1), first buffer sprocket (3) and second buffer sprocket (4) are connected on the buffer structure; Place cylinder (36) is provided with multiple groups and is combined with chain to form cylinder type conveying structure, the cylinder type conveying structure is serpentine and is wound on the first drive sprocket (6), second drive sprocket (8), multiple groups of guide sprocket (5), first buffer sprocket (3) and second buffer sprocket (4) and forms a straight section, when the first drive sprocket (6) or second drive sprocket (8) is operated, the buffer structure can drive first buffer sprocket (3) and second buffer sprocket (4) to operate; Second support platform (35), processing disc (13) is rotatably installed on the second support platform (35), four groups of processing sites are provided on the processing disc (13); Processing mechanism is set on the second support platform (35), and the processing mechanism includes feeding assembly, material moving assembly, folding assembly and discharging assembly, and the feeding assembly, material moving assembly, folding assembly and discharging assembly correspond to four groups of processing sites.
2. An automatic inserting machine for motor vehicle steering lamp bulbs as claimed in claim 1, characterized in that, First motor (7) is provided on the first support platform (1), and the output shaft of the first motor (7) is coaxially fixedly connected with the first drive sprocket (6); Step drive structure is also provided on the first support platform (1), and the step drive structure can drive the second drive sprocket (8) to rotate; The step drive structure includes lock disc (9) which is coaxially fixedly connected with the second drive sprocket (8), and pusher (10) and locking member (11) provided on the first support platform (1), and the pusher (10) is connected with the first cylinder (12) provided on the first support platform (1).
3. The automatic inserting machine for motor vehicle steering lamp bulb according to claim 1, characterized in that, The buffer structure includes connecting block (37) provided on the first support platform (1) and rotatably connected with the first buffer sprocket (3) and second buffer sprocket (4), the connecting block (37) is slidably connected with the guide rod (38) provided on the first support platform (1), and the connecting block (37) is connected with the drive cylinder provided on the first support platform (1).
4. The automatic inserting machine for motor vehicle steering lamp bulb according to claim 1, characterized in that, The feeding assembly includes cross plate (26) connected with the second support platform (35) and storage part (21), the cross plate (26) is slidably installed with connecting plate (25), the connecting plate (25) is connected with the fifth cylinder (24) provided on the cross plate (26); First suction accessory (23) is slidably installed on the connecting plate (25), and the first suction accessory (23) is connected with the fourth cylinder (22) provided on the connecting plate (25); The feeding assembly further includes third screw drive (41) provided on the second support platform (35), and the second suction accessory (40) is connected on the action end of the third screw drive (41).
5. The automatic inserting machine for motor vehicle steering lamp bulb according to claim 1, characterized in that, The material moving assembly comprises a mounting plate (15) slidingly mounted on the second supporting table (35), and the mounting plate (15) is connected with a second air cylinder (14) arranged on the second supporting table (35); A turnover structure is slidingly mounted on the mounting plate (15), and a first clamping jaw (20) is arranged on the turnover structure.
6. An automatic inserting machine for motor vehicle steering lamp bulbs as claimed in claim 5, characterized in that, The turnover structure comprises a third air cylinder (16) fixedly mounted on the mounting plate (15), and a rack plate (17) is connected with an output shaft of the third air cylinder (16), and the rack plate (17) is engaged with a gear (18) rotatingly mounted on the mounting plate (15); A rotating plate (19) is fixedly arranged on a rotating shaft of the gear (18), and the rotating plate (19) is fixedly connected with the first clamping jaw (20).
7. An automatic inserting machine for motor vehicle steering lamp bulbs as defined in claim 1, characterized in that, The turnover assembly comprises a driving device (27) fixedly mounted on the second supporting table (35), and a second clamping jaw (29) is connected with an output shaft of the driving device (27) through a connecting plate (28), and the second clamping jaw (29) is matched with a protrusion arranged on the second supporting table (35).
8. An automatic inserting machine for motor vehicle steering lamp bulbs as defined in claim 1, characterized in that, The blanking assembly comprises a supporting frame (30) mounted on the second supporting table (35), and a side plate (32) is slidingly mounted on the supporting frame (30), and the side plate (32) is connected with a first screw transmission device (31) arranged on the supporting frame (30); A third clamping jaw (34) is slidingly mounted on the side plate (32), and the third clamping jaw (34) is connected with a second screw transmission device (33) arranged on the side plate (32).