Efficient assembly lifting conversion streamline
By designing efficient assembly, lifting and conversion streamlines and using automated transmission and processing technology, the problems of inefficiency and high cost caused by manual material collection and loading and unloading in AR glasses are solved, and an efficient and safe production process is achieved.
Patent Information
- Application Number
- CN202421456507.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-25
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-06-25
AI Technical Summary
In the prior art, AR glasses rely on manual material collection and loading and unloading during the production process, resulting in low production efficiency and high labor costs, low transmission efficiency, easy disconnection of the fixture, resulting in product damage.
Design an efficient assembly lifting and conversion flow line, which realizes the automatic transmission and processing of vehicles and products through the combination of frame body, empty vehicle flow line, product flow line, lifting and transfer flow line, lifting and rotating mechanism and stopping mechanism, and reduces manual intervention.
The simultaneous processing of dual processing stations is achieved, which improves work efficiency and productivity, reduces labor costs, and ensures the accurate transportation and processing of vehicles, avoids product damage.
Smart Images

Figure CN222960584U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of industrial pallet transportation, and in particular to a high-efficiency assembly lifting conversion streamline. Background Art
[0002] At present, in the production process of AR glasses, materials are still picked up and unloaded manually, which seriously affects production efficiency and increases labor costs. The lifting and conversion streamline module can help on-site OPs no longer need to waste time on the journey to pick up materials as before, and can directly obtain products and vehicles transmitted by this streamline.
[0003] The main drawback of the existing technology is that after the OP takes and places the product, the fixture with the product needs to be manually taken to the next process for screw locking. Due to the uncontrollable human factors during the transfer of the product, the transfer efficiency is low, and the fixture falls to the ground, causing damage to the product. The existence of this problem seriously affects the improvement of UPH, causing the productivity and cost of the entire set of products to become uncontrollable. Utility Model Content
[0004] The purpose of the utility model is to realize the streamline that originally required a large number of manual labor for processing by lifting and replacing operations, which now only needs four workstations to realize, greatly improving work efficiency and reducing labor costs.
[0005] In order to achieve the above-mentioned purpose, the utility model provides the following technical solutions: an efficient assembly lifting and conversion streamline, comprising a frame body, and two empty carrier streamlines arranged on the frame body and a product streamline arranged above the empty carrier streamline, a plurality of first processing stations and a plurality of second processing stations are respectively arranged on both sides of the empty carrier streamline, a lifting and conveying streamline corresponding to the first processing station and the second processing station respectively is arranged on the empty carrier streamline, a carrier lifting and rotating mechanism is arranged on one side of the lifting and conveying streamline, the lifting and rotating mechanism comprises a rotating platform and a lifting cylinder arranged at the bottom of the rotating platform, the output end of the lifting cylinder and the rotating platform are fixedly arranged, an assembly streamline is also arranged on the frame body, the assembly streamline is arranged between the two empty carrier streamlines, and a plurality of lifting and rotating mechanisms are also arranged on the assembly streamline.
[0006] Preferably, the lifting and rotating mechanism further comprises a rotating cylinder, the rotating cylinder is fixedly connected to the output end of the lifting cylinder, and the rotating platform is fixedly connected to the output end of the lifting cylinder.
[0007] Preferably, the lifting conveying streamline includes a conveyor belt perpendicular to the length direction of the empty carrier streamline, and the movement direction of the conveyor belt is toward the first processing station or the second processing station.
[0008] Preferably, a lifting mechanism is provided on the frame body. The lifting mechanism includes a lifting cylinder, and the output end of the lifting cylinder is fixedly arranged below the conveyor belt.
[0009] Preferably, the lifting mechanism includes a lifting connecting plate. The bottom end of the lifting connecting plate is fixedly connected to the output end of the lifting cylinder, and the upper surface of the lifting connecting plate is fixedly arranged below the conveyor belt.
[0010] Preferably, a stopping mechanism is arranged on one side of the conveyor belt. The stopping mechanism includes a stopping cylinder and a stopping member rotatably connected to the output end of the stopping cylinder. The highest point of the stopping member protrudes from the streamline surface of the empty carrier.
[0011] The beneficial effects of the present utility model are as follows:
[0012] 1. It can realize the simultaneous processing of two processing stations. There are several processing stations in two directions, and carriers in different directions can be processed simultaneously.
[0013] 2. By setting up a lifting and rotating mechanism, the transportation of the carrier in the vertical height can be realized, achieving the effect of transporting the product to the two processing stations without causing conflicts in the processing rhythm, and ensuring that multiple carriers can be processed simultaneously.
[0014] 3. By setting up a stopping mechanism, the carrier that needs to flow into the station during movement can be stopped to ensure the accuracy of its transportation position. Description of the Drawings
[0015] Figure 1 It is a schematic structural diagram of an efficient assembly lifting and conversion streamline of the present utility model;
[0016] Figure 2 It is a schematic structural diagram of the lifting and conveying streamline part of the present utility model;
[0017] Figure 3 It is a schematic structural diagram of the lifting and rotating mechanism part of the present utility model.
[0018] In the figure:
[0019] 1. Frame body; 11. Lifting mechanism; 111. Lifting cylinder; 112. Lifting connecting plate;
[0020] 2. Empty carrier streamline; 21. First processing station; 22. Second processing station; 23. Lifting and conveying streamline; 131. Conveyor belt; 24. Lifting and rotating mechanism; 241. Rotating platform; 242. Lifting cylinder; 243. Rotating cylinder; 25. Assembly streamline; 26. Stopping mechanism; 261. Stopping cylinder; 262. Stopping member;
[0021] 3. Product flow line. Detailed implementation manners
[0022] In order to make the purpose, technical solutions and advantages of the present utility model clearer and more understandable, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.
[0023] Refer to Figures 1-3 , a frame body 1 is provided. Two empty carrier flow lines 2 and a product flow line 3 above the empty carrier flow line 2 are provided on the frame body 1. The moving direction of the empty carrier flow line 2 is opposite to the direction of the product flow line 3. Products are transported on the product flow line 3, and carriers are transported on the empty carrier flow line 2 and can be manually combined with products. Several first processing stations 21 and several second processing stations 22 are respectively arranged on both sides of the empty carrier flow line 2. According to the opening and closing direction of the carrier, it is determined whether the carrier flows into the first processing station 21 or the second processing station 22. At the first processing station 21 and the second processing station 22, operators process products and carriers.
[0024] Refer to Figures 1-3 , a lifting and conveying flow line 23 corresponding to the first processing station 21 and the second processing station 22 respectively is provided on the empty carrier flow line 2. The transmission direction of the lifting and conveying flow line 23 is perpendicular to the transmission direction of the empty carrier flow line 2, and can transmit the carriers on the empty carrier flow line 2 to the first processing station 21 or the second processing station 22. A carrier lifting and rotating mechanism 24 is arranged on one side of the lifting and conveying flow line 23. The lifting and rotating mechanism 24 can rotate the empty carrier and change the direction of the carrier to facilitate adapting to the positions of the first processing station 21 and the second processing station 22.
[0025] Refer to Figures 1-3 , the lifting and rotating mechanism 24 includes a rotating platform 241 and a lifting cylinder 242 arranged at the bottom of the rotating platform 241. The lifting cylinder 242 can drive the rotating platform 241 to move in the vertical direction. The output end of the lifting cylinder 242 is fixedly arranged with the rotating platform 241. The lifting and rotating mechanism 24 further includes a rotating cylinder 243. The rotating cylinder 243 is fixedly connected to the output end of the lifting cylinder 242. The rotating platform 241 is fixedly connected to the output end of the lifting cylinder 242. The rotating cylinder 243 can drive the rotating platform 241 to rotate, so as to achieve the effect of rising or falling and adjusting the direction of the lifting and rotating platform 241 by rotation, thereby adjusting the transportation orientation of the empty carrier.
[0026] Refer to Figures 1-3, an assembly line 25 is further provided on the frame body 1. The assembly line 25 is arranged between two empty carrier lines 2. A plurality of lifting and rotating mechanisms 24 are also provided on the assembly line 25. The assembly line 25 is connected to the first processing station 21 and the second processing station 22. It can enable the empty carriers flowing into the first processing station 21 through the empty carrier line 2 to be combined with the products flowing in through the product line 3, and then flow into the assembly line 25 through the lifting and conveying line 23. The transmission direction of the assembly line 25 is opposite to that of the empty carrier line 2. The lifting and rotating mechanism 24 can reset the direction of the assembled carrier on one side of the assembly line 25.
[0027] Reference Figures 1-3 , the lifting and conveying line 23 includes a conveyor belt 131 perpendicular to the length direction of the empty carrier line 2. The movement direction of the conveyor belt 131 faces the first processing station 21 or the second processing station 22 and can transport the empty carrier. A lifting mechanism 11 is provided on the frame body 1. The lifting mechanism 11 includes a lifting cylinder 111. The output end of the lifting cylinder 111 is fixedly arranged below the conveyor belt 131. The lifting mechanism 11 includes a lifting connecting plate 112. The bottom end of the lifting connecting plate 112 is fixedly connected to the output end of the lifting cylinder 111. The upper surface of the lifting connecting plate 112 is fixedly arranged below the conveyor belt 131 and can drive the lifting of the lifting and conveying line 23, thereby controlling the movement direction of the empty carrier and selecting to enter the first station or the second station.
[0028] Reference Figures 1-3 , a stop mechanism 26 is arranged on one side of the conveyor belt 131. The stop mechanism 26 includes a stop cylinder 261 and a stop member 262 rotatably connected to the output end of the stop cylinder 261. The highest point of the stop member 262 protrudes from the surface of the empty carrier line 2. The stop cylinder 261 can drive the stop member 262 to rotate to restrict the movement of the empty carrier on one side of the lifting mechanism 11 and achieve the effects of positioning and blocking.
[0029] The working principle of this mechanism is as follows: When production and processing are carried out on this streamline, an empty carrier is placed on the empty carrier streamline 2, and the product is placed on the product streamline 3 and started simultaneously. According to the orientation of the carrier on the empty carrier streamline 2, the lifting and rotating mechanism 24 on one side of the lifting and conveying streamline 23 is started to turn the carrier. After confirming the flow direction of each empty carrier, several lifting mechanisms 11 of the lifting and conveying streamline 23 are started to transport the carrier to the first processing station 21 or the second processing station 22. The product streamline 3 is installed at a certain height above the lifting and conveying streamline 23 and will not affect its transportation. When the empty carrier is transported to the first processing station 21 or the second processing station 22, the operator will remove the product on the product streamline 3 and combine it with the empty carrier, then place it back in place, start the lifting and conveying streamline 23 again, transport it to the lifting and rotating mechanism 24 at the assembly streamline 25 for turning, and then transport it out of this process through the assembly streamline 25, thus completing the lifting and assembly process.
[0030] The above embodiments are used to further illustrate the present invention, but do not limit the present invention to these specific embodiments. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be understood to be within the protection scope of the present invention.
Claims
1. An efficient assembly lifting conversion flow line, comprising a frame body (1), two empty carrier flow lines (2) arranged on the frame body (1), and a product flow line (3) arranged above the empty carrier flow lines (2), characterized in that: A plurality of first processing stations (21) and a plurality of second processing stations (22) are respectively arranged on both sides of the empty carrier streamline (2); a lifting and conveying streamline (23) corresponding to the first processing stations (21) and the second processing stations (22) is respectively arranged on the empty carrier streamline (2); a carrier lifting and rotating mechanism (24) is arranged on one side of the lifting and conveying streamline (23); the lifting and rotating mechanism (24) comprises a rotating platform (241) and a lifting cylinder (242) arranged at the bottom of the rotating platform (241); the output end of the lifting cylinder (242) and the rotating platform (241) are fixedly arranged; an assembly streamline (25) is also arranged on the frame body (1); the assembly streamline (25) is arranged between the two empty carrier streamlines (2); and a plurality of lifting and rotating mechanisms (24) are also arranged on the assembly streamline (25).
2. According to the high-efficiency assembly lifting conversion streamline of claim 1, it is characterized by: The lifting and rotating mechanism (24) further comprises a rotating cylinder (243), wherein the rotating cylinder (243) is fixedly connected to the output end of the lifting cylinder (242), and the rotating platform (241) is fixedly connected to the output end of the lifting cylinder (242).
3. According to the high-efficiency assembly lifting conversion streamline of claim 1, it is characterized by: The lifting conveying streamline (23) comprises a conveyor belt (131) perpendicular to the length direction of the empty carrier streamline (2), and the movement direction of the conveyor belt (131) is toward the first processing station (21) or the second processing station (22).
4. According to claim 3, the efficient assembly lifting conversion streamline is characterized by: The frame body (1) is provided with a lifting mechanism (11), the lifting mechanism (11) comprising a lifting cylinder (111), and the output end of the lifting cylinder (111) is fixedly arranged below the conveyor belt (131).
5. According to claim 4, the efficient assembly lifting conversion streamline is characterized by: The lifting mechanism (11) comprises a lifting connection plate (112), the bottom end of the lifting connection plate (112) is fixedly connected to the output end of the lifting cylinder (111), and the upper surface of the lifting connection plate (112) is fixedly arranged below the conveyor belt (131).
6. The efficient assembly lifting conversion streamline according to claim 3 is characterized by: A stop mechanism (26) is provided on one side of the conveyor belt (131), and the stop mechanism (26) comprises a stop cylinder (261) and a stop member (262) rotatably connected to the output end of the stop cylinder (261), and the highest point of the stop member (262) protrudes from the surface of the empty carrier streamline (2).