Conveying device for notebook computer production

By designing the conveying mechanism, protective mechanism, and auxiliary mechanism of the conveying device, the problems of inertial slippage and shell wear of laptops during chain conveying were solved, achieving stable fixation and protection of laptops, and improving processing efficiency and yield.

CN121651084APending Publication Date: 2026-03-13SHENZHEN SHUOYING ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-26
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

During the conveyor transport of laptops, the laptops may slip due to inertia, causing them to shift in position and affecting the alignment of the processing equipment. Additionally, particles on the support plate may scratch the casing.

Method used

A conveying device including a conveying mechanism, a protective mechanism, and an auxiliary mechanism was designed. Through components such as baffles, motor drives, clamping parts, and buffer parts, a laptop computer is stably fixed and buffered for protection.

Benefits of technology

It effectively prevents laptops from slipping during transport, protects the casing from damage, reduces the workload of workers, and improves processing efficiency and yield.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a conveying device for notebook computer production, and belongs to the technical field of notebook computer conveying, the conveying device comprises a conveying mechanism, the conveying mechanism comprises a supporting rod and a supporting plate, two baffles are arranged on the supporting rod, the supporting plate is located between the two baffles, a fixing base is arranged on the side wall of each baffle, a motor is arranged on each fixing base, and the supporting plate is located between the two baffles; a driving part is arranged at the output end of the motor, a protection part is arranged on the baffle, and a storage part used for conveying notebook computers is arranged on the driving part; the protection mechanism comprises a first stop lever, a second stop lever and a strip-shaped opening which are arranged on the supporting plate, a clamping part used for preventing the notebook computer from moving is arranged in the strip-shaped opening, limiting parts are arranged on the two sides of the supporting plate, and extrusion parts are arranged on the limiting parts; the auxiliary mechanism comprises a stabilizing rod arranged at the bottom of the supporting plate. Through the arrangement of the conveying mechanism, the protection mechanism and the auxiliary mechanism, a notebook computer is more stable in the conveying process.
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Description

Technical Field

[0001] This invention belongs to the field of notebook computer conveying technology, and specifically relates to a conveying device for notebook computer production. Background Technology

[0002] Laptops, also known as portable computers, handheld computers, palmtop computers, or lap computers, are characterized by their small size. In the production process of laptops, conveyor systems are often used to transport laptops to different production equipment for processing. There are many types of conveyor systems, which can be classified into various categories according to different classification standards, such as belt conveyors, chain conveyors, and roller conveyors.

[0003] In existing technology, when using a chain conveyor to transport laptops, workers place one laptop on each support plate. During the conveyor's operation, the chain conveyor needs to be stopped to allow the processing equipment to process the laptops. After processing, the chain conveyor needs to be restarted. During the start-stop process, due to inertia and the weight of different laptops, some laptops may slide on the surface of the support plate. If there are particles on the support plate, they can easily scratch the laptop casing. If the position of the laptops shifts, the processing equipment will not be able to align the laptops, affecting subsequent processing. Summary of the Invention

[0004] The purpose of this invention is to provide a conveying device for laptop computer manufacturing, which aims to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: A conveying device for laptop computer production includes: a conveying mechanism comprising a support rod and a support plate; two baffles are provided on the support rod; the support plate is located between the two baffles; a fixed seat is provided on the side wall of each baffle; a motor is provided on the fixed seat; a drive unit is provided at the output end of the motor; a protective part is provided on the baffle; and a storage part for conveying laptop computers is provided on the drive unit; a protective mechanism comprising a first baffle, a second baffle, and a slot on the support plate; a clamping part for preventing laptop computer movement is provided inside the slot; limiting parts are provided on both sides of the support plate; and squeezing parts are provided on the limiting parts; and an auxiliary mechanism comprising a stabilizing rod at the bottom of the support plate; a buffer part is provided on the clamping part; a pushing part is provided on the protective part; and a guiding part is provided on the pushing part.

[0006] As a preferred embodiment of the conveying device for laptop computer production of the present invention, the driving unit includes a transmission rod disposed at the output end of the motor, a gear is disposed on the side wall of the transmission rod, and a rack is disposed on the gear.

[0007] As a preferred embodiment of the conveying device for producing laptops according to the present invention, the protective part includes a first fixing plate disposed on the baffle, the first fixing plate being sleeved on the side wall of the transmission rod, a second fixing plate being disposed on the side wall of the transmission rod, the gear being located between the first fixing plate and the second fixing plate, and a protective tube being connected to the side of the second fixing plate away from the gear.

[0008] As a preferred embodiment of the conveying device for laptop computer production of the present invention, the placement part includes a base disposed on the rack, a first slide groove and a second slide groove are provided on the side wall of the base, a first slider, a slide rod and a first spring are disposed inside the first slide groove, the first spring is sleeved on the side wall of the slide rod, the first slider is located on the side wall of the slide rod and is connected to the support plate, a limit rod is provided on the side wall of the support plate and the limit rod is located inside the second slide groove.

[0009] As a preferred embodiment of the conveying device for laptop computer production of the present invention, the clamping part includes a second spring and a sleeve disposed inside the strip-shaped opening, a pressing rod disposed inside the sleeve, a second slider connected to the end of the pressing rod away from the sleeve, and a clamping plate disposed on the second slider.

[0010] As a preferred embodiment of the conveying device for producing laptops according to the present invention, the limiting part includes L-shaped rods disposed on both sides of the support plate, the inner wall of the L-shaped rods contacting both sides of the support plate, a docking block disposed on the side wall of the L-shaped rods, the docking block being connected to the base, a through opening being provided on the L-shaped rods, a T-shaped block being disposed inside the through opening, and a third spring being disposed on the T-shaped block.

[0011] As a preferred embodiment of the conveying device for producing laptops according to the present invention, the extrusion section includes a first cut surface disposed on the T-shaped block, and a second cut surface disposed on the clamping plate, wherein the first cut surface and the second cut surface are parallel.

[0012] As a preferred embodiment of the conveying device for laptop computer production of the present invention, the buffer part includes an air hole disposed on the side wall of the sleeve, and a rubber conical tube is disposed inside the air hole, with the conical opening of the rubber conical tube located inside the sleeve.

[0013] As a preferred embodiment of the conveying device for producing laptops according to the present invention, the pushing part includes a groove disposed on the second fixed plate, a fixed rod and a push block disposed inside the groove, a fourth spring disposed on the push block, and the push block sleeved on the side wall of the fixed rod.

[0014] As a preferred embodiment of the conveying device for producing laptops according to the present invention, the guide portion includes a third inclined surface disposed on the push block, and a trapezoidal block is disposed on the support plate.

[0015] Compared with the prior art, the beneficial effects of the present invention are: 1. Through the setting of the conveying mechanism, protective mechanism and auxiliary mechanism, when the staff places the laptop on the support plate, the laptop's own weight can unlock the clamp, and the clamp can squeeze and fix the laptop. During the process of squeezing and fixing the laptop, the movement speed of the clamp can be gradually reduced to avoid impact on the laptop and protect the laptop to the greatest extent.

[0016] 2. During the return journey of the support plate, the push block setting can automatically re-restrain the clamping plate through the T-shaped block, so that the support plate and clamping plate return to their initial state. This makes it convenient for subsequent workers to place new laptops on the support plate for transport and processing without the need for workers to manually reset the clamping plate and support plate, reducing the workload of workers while ensuring the efficiency of placing laptops. Attached Figure Description

[0017] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the following description of the embodiments will be briefly introduced. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0018] Figure 1 A schematic diagram of the overall structure of a conveyor system used in laptop manufacturing; Figure 2 A schematic diagram of a protective tube in a conveyor system used in laptop manufacturing; Figure 3 A frontal view of the protective tube in a conveyor system used in laptop manufacturing; Figure 4 A schematic diagram of the top of a support plate in a conveyor system used in laptop manufacturing; Figure 5 This is a schematic diagram of gears in a conveyor system used in laptop manufacturing.

[0019] Figure 6This is a schematic diagram of the interior of the first chute in a conveyor system used in laptop manufacturing.

[0020] Figure 7 This is a schematic diagram of a transmission rod in a conveyor system used in laptop manufacturing.

[0021] Figure 8 This is a cross-sectional schematic diagram of the sleeve in a conveying device used in laptop manufacturing.

[0022] Figure 9 Conveying device for laptop manufacturing Figure 8 Enlarged diagram of point A in the middle.

[0023] Figure 10 This is a schematic diagram of a groove in a conveyor system used in laptop manufacturing. Figure 11 This is a schematic diagram of a pusher block in a conveyor system used in laptop manufacturing. Figure 12 This is a schematic diagram of an L-shaped block in a conveyor system used in laptop manufacturing.

[0024] In the diagram: 10. Support rod; 11. Support plate; 12. Baffle; 13. Fixing seat; 14. Motor; 15. Drive unit; 151. Transmission rod; 152. Gear; 153. Rack; 16. Protective part; 161. First fixing plate; 162. Second fixing plate; 163. Protective tube; 17. Storage part; 171. Base; 172. First slide groove; 173. Second slide groove; 174. First slider; 175. Slide rod; 176. First spring; 177. Limiting rod; 20. First stop bar; 21. Second stop bar; 22. Strip-shaped opening; 23. Clamping part; 231. Second spring; 232. Sleeve; 233. Extrusion rod; 234. Second slider; 235. Clamping plate; 24. Restriction part; 241. L-shaped rod; 242. Connecting block; 243. Through opening; 244. T-shaped block; 245. Third spring; 25. Extrusion part; 251. First cut surface; 252. Second cut surface; 30. Stabilizer bar; 31. Buffer section; 311. Air hole; 312. Rubber conical tube; 32. Pushing section; 321. Groove; 322. Fixing rod; 323. Push block; 324. Fourth spring; 33. Guide section; 331. Third inclined plane; 332. Trapezoidal block. Detailed Implementation

[0025] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

[0026] Example 1 Reference Figure 1 - Figure 12This is the first embodiment of the present invention. This embodiment provides a conveying device for laptop manufacturing, which includes a conveying mechanism, a protective mechanism, and an auxiliary mechanism. It can fix the laptop on the support plate 11, preventing the laptop on the support plate 11 from sliding on the support plate 11 due to inertia during the start and stop of the chain conveyor line. It can also prevent the laptop from sliding off the support plate 11 and prevent particles on the support plate 11 from scratching the laptop's shell. When the laptop is placed on the support plate 11, it can automatically complete the compression and limiting of the laptop. During the compression and fixing of the laptop, it can slow down the clamping speed of the clamping plate 235 on the laptop, preventing the clamping plate 235 from hitting the side wall of the laptop and causing damage to the laptop.

[0027] Furthermore, the conveying mechanism can convey multiple laptops. It includes support rods 10 and support plates 11. There are multiple support plates 11. Two baffles 12 are provided on the support rods 10. The support plates 11 are located between the two baffles 12. A fixing seat 13 is provided on the side wall of the baffle 12. A motor 14 is provided on the fixing seat 13. A drive unit 15 is provided at the output end of the motor 14. A protective part 16 is provided on the baffle 12. A storage part 17 for conveying laptops is provided on the drive unit 15.

[0028] Furthermore, the drive unit 15 includes a transmission rod 151 disposed at the output end of the motor 14. There are two transmission rods 151, which are located at both ends of the baffle 12. Gears 152 are disposed on the side walls of the transmission rods 151. There are two gears 152, which are located on both sides of the support plate 11. A rack 153 is disposed on the gears 152.

[0029] When in use, when the motor 14 starts, the motor 14 drives the transmission rod 151 to rotate, the transmission rod 151 drives the gear 152 to rotate, and the gear 152 drives the rack 153 to rotate.

[0030] Furthermore, the protective part 16 includes a first fixing plate 161 disposed on the baffle 12, the first fixing plate 161 being sleeved on the side wall of the transmission rod 151, a second fixing plate 162 being disposed on the side wall of the transmission rod 151, the gear 152 being located between the first fixing plate 161 and the second fixing plate 162, and a protective tube 163 being connected to the side of the second fixing plate 162 away from the gear 152, the protective tube 163 being sleeved on the side wall of the transmission rod 151.

[0031] It should be noted that the dimensions of the first fixing plate 161 and the second fixing plate 162 are matched, the top of the rack 153 is horizontal with the top of the first fixing plate 161, the gear 152 is protected by the first fixing plate 161 and the second fixing plate 162, and the transmission rod 151 is protected by the protective tube 163.

[0032] Furthermore, the storage unit 17 includes a base 171 mounted on a rack 153. The side wall of the base 171 is provided with a first slide groove 172 and a second slide groove 173. There are two second slide grooves 173, which are located on both sides of the first slide groove 172. The first slide groove 172 is provided with a first slider 174, a slide rod 175, and a first spring 176. The two ends of the slide rod 175 are connected to the top and bottom surfaces of the first slide groove 172, respectively. One end of the first spring 176 is connected to the bottom of the first slider 174, and the other end of the first spring 176 is connected to the bottom surface of the first slide groove 172. The first spring 176 is sleeved on the side wall of the slide rod 175. The first slider 174 is located on the side wall of the slide rod 175 and is connected to the support plate 11. The side wall of the support plate 11 is provided with a limit rod 177, which is located inside the second slide groove 173.

[0033] When in use, when the laptop is placed on the support plate 11, the laptop will cause the support plate 11 to descend. When the support plate 11 descends, it will cause the first slider 174 to descend inside the first slide groove 172. While the first slider 174 descends on the slide rod 175, it will compress the first spring 176.

[0034] Furthermore, the protective mechanism can prevent the laptop from slipping off the support plate 11 or the laptop casing from being worn during the start-up and shutdown of the motor 14. It includes a first stop bar 20, a second stop bar 21, and a slot 22 provided on the support plate 11. There are two first stop bars 20, which are located on both sides of the second stop bar 21. The slot 22 is provided with a clamping part 23 to prevent the laptop from moving. The support plate 11 is provided with a limiting part 24 on both sides, and a pressing part 25 is provided on the limiting part 24.

[0035] It should be noted that when the staff places the laptop on the support plate 11, one side of the laptop comes into contact with the second stop lever 21.

[0036] Furthermore, the clamping part 23 includes a second spring 231 and a sleeve 232 disposed inside the slot 22. The second spring 231 is sleeved on the outside of the sleeve 232. One end of the second spring 231 near the second stop 21 is connected to the inner wall of the slot 22. A pressing rod 233 is disposed inside the sleeve 232. One end of the pressing rod 233 away from the sleeve 232 is connected to a second slider 234. The other end of the second spring 231 is connected to the second slider 234. A clamping plate 235 is disposed on the second slider 234. The clamping plate 235 is located on the top of the support plate 11.

[0037] It should be noted that the outer skin of the clamp 235 and the second stop lever 21 are both made of rubber to prevent the clamp 235 and the second stop lever 21 from scratching the sides of the laptop when the laptop is picked up.

[0038] When in use, the operator first pulls the clamp 235, which drives the second slider 234 to move inside the strip opening 22. The second slider 234 drives the second spring 231 to extend, and at the same time drives the extrusion rod 233 to move together, so that the extrusion rod 233 moves into the sleeve 232.

[0039] Furthermore, the limiting part 24 includes L-shaped rods 241 disposed on both sides of the support plate 11. The inner wall of the L-shaped rods 241 contacts both sides of the support plate 11. A connecting block 242 is disposed on the side wall of the L-shaped rods 241. The connecting block 242 is connected to the base 171. A through-hole 243 is opened on the L-shaped rods 241. The through-hole 243 is located above the support plate 11. A T-shaped block 244 is disposed inside the through-hole 243. A third spring 245 is disposed on the T-shaped block 244.

[0040] It should be noted that in the initial state, the T-block 244 is located between the second stop 21 and the clamping plate 235, and the side wall of the T-block 244 is in contact with the side wall of the clamping plate 235. By setting the T-block 244, the position of the clamping plate 235 can be locked to prevent the second spring 231 from restoring and causing the clamping plate 235 to move. At this time, a space is left between the second slider 234 and the inner wall of the strip opening 22 to facilitate the continued movement of the second slider 234. The second slider 234 can move to the side away from the T-block 244, which makes it convenient for the staff to place the laptop on the support plate 11.

[0041] Furthermore, the extrusion section 25 includes a first cut surface 251 disposed on the T-shaped block 244, and a second cut surface 252 disposed on the clamping plate 235, wherein the first cut surface 251 and the second cut surface 252 are parallel.

[0042] It should be noted that when the clamping plate 235 is located between the T-shaped block 244 and the second stop 21, the movement of the clamping plate 235 toward the T-shaped block 244 will cause the second cut surface 252 on the clamping plate 235 to contact the first cut surface 251 on the T-shaped block 244. As the clamping plate 235 continues to move, it can squeeze the T-shaped block 244, causing the T-shaped block 244 to rise inside the through-hole 243. The T-shaped block 244 drives the third spring 245 to rise. When the T-shaped block 244 rises to the top of the clamping plate 235, it moves laterally at the top of the clamping plate 235. When the T-shaped block 244 has completely passed the top of the clamping plate 235, it is driven downward by the recovery of the third spring 245, so that the side wall of the T-shaped block 244 contacts the side wall of the clamping plate 235. The T-shaped block 244 restricts the position of the clamping plate 235 and restores the initial state.

[0043] Furthermore, the auxiliary mechanism can replace the staff in pulling the clamping plate 235 during the conveying process of the support plate 11, so that the position of the clamping plate 235 returns to the initial state, reducing the workload of the staff and improving the work efficiency of the staff. It includes a stabilizing rod 30 set at the bottom of the support plate 11, a buffer part 31 set on the clamping part 23, a pushing part 32 set on the protective part 16, and a guiding part 33 set on the pushing part 32.

[0044] It should be noted that the stabilizer bar 30 is installed at the bottom of the second slider 234, and the length direction of the stabilizer bar 30 is consistent with the length direction of the clamping plate 235.

[0045] When in use, the movement of the second slider 234 can drive the clamp 235 and the stabilizer 30 to move together.

[0046] Furthermore, the buffer section 31 includes a plurality of air holes 311 disposed on the side wall of the sleeve 232. The plurality of air holes 311 are evenly distributed on the side wall of the sleeve 232. A rubber conical tube 312 is disposed inside the air hole 311, and the conical opening of the rubber conical tube 312 is located inside the sleeve 232.

[0047] It should be noted that the contact surface between the extrusion rod 233 and the sleeve 232 is sealed. When the extrusion rod 233 moves inside the sleeve 232, it can squeeze the air inside the sleeve 232, allowing the air inside the sleeve 232 to be discharged to the outside of the sleeve 232 through the rubber conical tube 312. As the extrusion rod 233 gradually moves into the sleeve 232, after passing through multiple air holes 311, the number of rubber conical tubes 312 used for discharging gas is reduced, which can further slow down the sliding speed of the second slider 234 inside the strip block and prevent the second slider 234 from driving the clamping plate 235 to impact the laptop. When the sleeve 232 moves outside the extrusion rod 233, this process is similar to the process of a needle drawing air. The rubber conical tube 312 itself has a certain degree of extensibility, which makes the conical opening of the rubber conical tube 312 larger, which can make the process of the extrusion rod 233 extending to the outside of the sleeve 232 less resistant.

[0048] Furthermore, the pushing part 32 includes a groove 321 disposed on the second fixed plate 162. A fixed rod 322 and a push block 323 are disposed inside the groove 321. The top end of the fixed rod 322 is connected to the inner wall of the groove 321. A fourth spring 324 is disposed on the push block 323. The push block 323 is sleeved on the side wall of the fixed rod 322. The end of the fourth spring 324 away from the push block 323 is connected to the inner wall of the groove 321. The fourth spring 324 is sleeved on the side wall of the fixed rod 322.

[0049] When in use, when the push block 323 is subjected to an upward force, the push block 323 moves upward and at the same time drives the fourth spring 324 to contract.

[0050] Furthermore, the guide section 33 includes a third inclined surface 331 disposed on the push block 323, and a trapezoidal block 332 disposed on the support plate 11, the trapezoidal block 332 being located at both ends of the stabilizer bar 30.

[0051] It should be noted that the third inclined surface 331 is located on one side adjacent to the trapezoidal block 332, and the third inclined surface 331 is located in the moving direction of the trapezoidal block 332. During the movement of the support plate 11, part of the push block 323 contacts the stabilizer 30, the trapezoidal block 332 contacts the third inclined surface 331, and the top of the trapezoidal block 332 is horizontal with the top of the stabilizer 30.

[0052] During use, as the support plate 11 moves, it drives the sleeve 232 and trapezoidal block 332 to move. The sleeve 232 drives the second spring 231 to move, which in turn drives the second slider 234 to move. The second slider 234 then drives the stabilizer 30 and clamping plate 235 to move together. When the stabilizer 30 contacts the push block 323, the lateral position of the push block 323 cannot change, preventing the stabilizer 30 from moving with the support plate 11. Meanwhile, the support plate 11 continues to move under the influence of the rack 153. At this point, the second spring 231 extends, and the trapezoidal block 332 gradually approaches the push block 323. When the third inclined surface 331 contacts the trapezoidal block 332, the continued movement of the support plate 11 allows the trapezoidal block 332 to drive the push block 323. 3. Moving upwards, the push block 323 can cause the fourth spring 324 to contract. When the push block 323 rises to the top of the trapezoidal block 332, the push block 323 separates from the stabilizing rod 30. After both the trapezoidal block 332 and the stabilizing rod 30 have passed the push block 323, the fourth spring 324 resumes driving the push block 323 back to its initial state. At the same time, through the setting of the first cut surface 251 and the second cut surface 252, when the clamping plate 235 re-contacts the T-shaped block 244, the clamping plate 235 squeezes the T-shaped block 244, causing the T-shaped block to rise. After the clamping plate 235 passes the T-shaped block 244, the third spring 245 descends, causing the T-shaped block 244 to re-limit the position of the clamping plate 235, making it convenient for the staff to place the laptop back on the support plate 11.

[0053] Working principle: During the production process, when a laptop needs to be transported, to avoid damage during transport, the operator places the laptop on the support plate 11, making it contact the second stop bar 21. The laptop's own weight causes the support plate 11 to descend, which in turn causes the first slider 174 and clamping plate 235 to descend together. The descending first slider 174 compresses the first spring 176, and the clamping plate 235 separates from the T-block 244 during descent. When the clamping plate 235 is no longer restrained by the T-block 244, the second spring 231 located inside the slot 22 resumes its movement, causing the second slider 234 to move. The second slider 234, along with the clamping plate 235 and the stabilizing rod 30, moves closer to the laptop. As the second slider 234 moves, it also causes the extrusion rod 233 to move into the sleeve 232. The extrusion rod 233 forces the air inside the sleeve 232 out through the rubber conical tube 312, thereby slowing down the movement speed of the extrusion rod 233 inside the sleeve 232, thus allowing the second slider 234 to move further. The moving speed of slider 4 is reduced to prevent the second slider 234 from driving the clamping plate 235 to move rapidly and impact the laptop. As the extrusion rod 233 moves on the sleeve 232, the number of rubber conical tubes 312 used to discharge gas gradually decreases, further slowing down the moving speed of the second slider 234, so that the clamping plate 235 slowly approaches the laptop until it contacts the laptop. While protecting the laptop, it can prevent the laptop from sliding due to inertia during the start and stop of the chain conveyor line, reducing the possibility of wear and damage to the laptop shell and ensuring the yield rate of the laptop. Start motor 14, motor 14 drives transmission rod 151 to rotate, transmission rod 151 drives gear 152 to rotate, gear 152 drives rack 153 to move, rack 153 drives base 171 to move, base 171 drives support plate 11 on the first slider 174 to move together, support plate 11 drives laptop to move, and the laptop on support plate 11 is processed by processing equipment.

[0054] To facilitate subsequent placement of the laptop on the support plate 11, once the laptop is finished and moved to the end of the conveyor belt, the worker can remove it from the support plate 11. At this time, the second spring 231 drives the second slider 234 to move, causing the side wall of the second slider 234 to contact the end of the sleeve 232. Simultaneously, as the support plate 11 is no longer compressed, the first spring 176 returns to its original position and can drive the support plate 11 to move. At this time, the clamping plate 235 is located between the T-block 244 and the second stop bar 21. When the rack 153 drives the base... When 171 flips to the underside of the protective tube 163, as the gear 152 continues to rotate, the support plate 11 moves below the protective tube 163. During the movement of the support plate 11, it drives the trapezoidal block 332 and the stabilizing rod 30 on the second slider 234 to move together. In this process, the stabilizing rod 30 first contacts the push block 323. Under the action of the push block 323, the push block 323 prevents the stabilizing rod 30 from moving further, while the support plate 11 continues to move, causing the second spring 231 to extend. The sleeve 232 moves on the side wall of the pressing rod 233, causing... As the distance between the stabilizer bar 30 and the trapezoidal block 332 decreases, when the trapezoidal block 332 contacts the push block 323, under the action of the third inclined surface 331, the trapezoidal block 332 drives the push block 323 to move upward. The trapezoidal block 332 also causes the fourth spring 324 to contract. When the push block 323 moves to the top of the trapezoidal block 332, the push block 323 releases its restriction on the stabilizer bar 30. During this process, the support plate 11 moves, causing the L-shaped rod 241 to move. The L-shaped rod 241 drives the T-shaped block 244 to press against the clamping plate 235, passing through the first cut surface 251 and the second cut surface 252. The setup allows the T-block 244 to descend, causing the third spring 245 to extend. After the T-block 244 passes the clamping plate 235, the third spring 245 returns to its original position, causing the T-block 244 to complete the restriction on the clamping plate 235, preventing the second spring 231 from returning to its original position. At this point, the support plate 11 and the clamping plate 235 return to their initial state, and the staff can then place the laptop directly on the support plate 11. After the trapezoidal block 332 passes the push block 323, the fourth spring 324 returns to its original position, making it easier to adjust the position of the clamping plate 235 on the support plate 11.

[0055] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.

Claims

1. A conveying device for notebook computer manufacturing, characterized in that: include, The conveying mechanism includes a support rod (10) and a support plate (11). A baffle (12) is provided on the support rod (10). There are two baffles (12). The support plate (11) is located between the two baffles (12). A fixed seat (13) is provided on the side wall of the baffle (12). A motor (14) is provided on the fixed seat (13). A drive unit (15) is provided at the output end of the motor (14). A protective part (16) is provided on the baffle (12). A storage part (17) for conveying a laptop computer is provided on the drive unit (15). The protective mechanism includes a first stop (20), a second stop (21) and a strip opening (22) disposed on the support plate (11). The inside of the strip opening (22) is provided with a clamping part (23) for preventing the laptop from moving. The support plate (11) is provided with a limiting part (24) on both sides. The limiting part (24) is provided with a squeezing part (25). The auxiliary mechanism includes a stabilizing rod (30) disposed at the bottom of the support plate (11), a buffer part (31) disposed on the clamping part (23), a pushing part (32) disposed on the protective part (16), and a guiding part (33) disposed on the pushing part (32).

2. The conveying device for notebook computer production according to claim 1, characterized in that: The drive unit (15) includes a transmission rod (151) disposed at the output end of the motor (14), a gear (152) is disposed on the side wall of the transmission rod (151), and a rack (153) is disposed on the gear (152).

3. The conveying device for notebook computer production according to claim 2, characterized in that: The protective part (16) includes a first fixing plate (161) disposed on the baffle (12), the first fixing plate (161) being sleeved on the side wall of the transmission rod (151), a second fixing plate (162) being disposed on the side wall of the transmission rod (151), the gear (152) being located between the first fixing plate (161) and the second fixing plate (162), and a protective tube (163) being connected to the side of the second fixing plate (162) away from the gear (152).

4. The conveying device for notebook computer production according to claim 3, characterized in that: The storage part (17) includes a base (171) disposed on the rack (153). A first groove (172) and a second groove (173) are provided on the side wall of the base (171). A first slider (174), a slide rod (175) and a first spring (176) are disposed inside the first groove (172). The first spring (176) is sleeved on the side wall of the slide rod (175). The first slider (174) is located on the side wall of the slide rod (175). The first slider (174) is connected to the support plate (11). A limit rod (177) is provided on the side wall of the support plate (11). The limit rod (177) is located inside the second groove (173).

5. A conveying device for notebook computer production according to claim 4, characterized in that: The clamping part (23) includes a second spring (231) and a sleeve (232) disposed inside the strip opening (22). A pressing rod (233) is disposed inside the sleeve (232). A second slider (234) is connected to one end of the pressing rod (233) away from the sleeve (232). A clamping plate (235) is disposed on the second slider (234).

6. The conveying device for notebook computer production according to claim 5, characterized in that: The limiting part (24) includes an L-shaped rod (241) disposed on both sides of the support plate (11). The inner wall of the L-shaped rod (241) contacts both sides of the support plate (11). A connecting block (242) is disposed on the side wall of the L-shaped rod (241). The connecting block (242) is connected to the base (171). A through hole (243) is opened on the L-shaped rod (241). A T-shaped block (244) is disposed inside the through hole (243). A third spring (245) is disposed on the T-shaped block (244).

7. A conveying device for notebook computer production according to claim 6, characterized in that: The extrusion section (25) includes a first cut surface (251) disposed on the T-shaped block (244), and a second cut surface (252) disposed on the clamping plate (235). The first cut surface (251) and the second cut surface (252) are parallel.

8. A conveying device for notebook computer production according to claim 7, characterized in that: The buffer section (31) includes an air hole (311) disposed on the side wall of the sleeve (232), and a rubber conical tube (312) is disposed inside the air hole (311), with the conical opening of the rubber conical tube (312) located inside the sleeve (232).

9. A conveying device for notebook computer production according to claim 8, characterized in that: The pushing part (32) includes a groove (321) disposed on the second fixing plate (162). A fixing rod (322) and a push block (323) are disposed inside the groove (321). A fourth spring (324) is disposed on the push block (323). The push block (323) is sleeved on the side wall of the fixing rod (322).

10. A conveying device for notebook computer production according to claim 9, characterized in that: The guide (33) includes a third inclined surface (331) disposed on the push block (323), and a trapezoidal block (332) is disposed on the support plate (11).