Ultrasonic cleaning integrated production line
The unified ultrasonic cleaning production line simplifies motion and control complexity by using adjustable distance cylinders and a single drive mechanism, improving efficiency and reducing fault rates while maintaining adaptability.
Patent Information
- Application Number
- CN202422248761.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-13
AI Technical Summary
Existing ultrasonic cleaning production lines for optical glass require complex and numerous motion components, leading to increased control difficulty and fault rates due to multiple dual-directional motion components at each station, which complicates the overall system design.
A unified ultrasonic cleaning production line design featuring adjustable distance cylinders and a single drive mechanism for multiple carriers, simplifying the motion and control complexity by using a single drive to manage multiple carrier movements across stations.
This design reduces control complexity and fault rates while enhancing efficiency, achieving a 50% reduction in personnel and a 50% increase in drying efficiency, with improved adaptability and compatibility for future line adjustments.
Smart Images

Figure CN223097516U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of cleaning equipment, and particularly relates to an ultrasonic cleaning integrated production line. Background Art
[0002] In the field of optical glass processing, it is necessary to clean glass products after polishing. The traditional cleaning method is to use ultrasonic waves for cleaning. After cleaning, the products need to be dried, generally by centrifugal drying or baking. Conventional drying machines are independent devices, and the drying process of the wafers is carried out by heating clean air. During the processing, the wafers need to be transferred, which appears relatively backward in a workshop with a fully automatic cleaning machine. Therefore, it is necessary to develop a cleaning system that combines all processes.
[0003] Chinese patent document with publication number CN219401408U discloses an optical glass ultrasonic cleaning production line, including: a rack, including a support plate and a limiting rod; a feeding machine, including a first rack, a first conveyor belt driving device and a first lifting platform; an ultrasonic cleaning machine, including a cleaning rack and a cleaning device, and the cleaning device includes a cleaning tank, a cleaning support arm and a cleaning lifting rod; a rack transfer machine, including a transfer rack and a rack transfer device, and the rack transfer device includes a transfer support, a transfer support arm and a bidirectional movement control component; an unloading machine, including a second rack, a second conveyor belt driving device and a second lifting platform. The support plate of the rack has a shoulder. The feeding machine transports the rack to the ultrasonic cleaning machine. The two transfer support arms of the rack transfer machine can automatically transfer the rack between each cleaning tank in sequence through cooperation with the cleaning support arm of the ultrasonic cleaning machine, and then transfer the rack to the unloading machine, improving the efficiency.
[0004] In the above patent solution, a bidirectional movement control component is correspondingly arranged at each working station to control the clamping action of the transfer support arm. There are multiple working stations in a production line, and the large number of bidirectional movement control components increases the wiring difficulty and control difficulty of the production line. At the same time, the increase in the number of components also means an increase in the failure rate. Summary of the Invention
[0005] In order to overcome the technical problem that in the prior art, a motion component for moving a tooling basket is respectively arranged at each working station on the production line, resulting in a large number of motion components and a complex structure; an object of the utility model is to provide an ultrasonic cleaning integrated production line. By respectively arranging a plurality of support rods for moving the tooling basket on two mounting rods, and simultaneously arranging a spacing adjustment cylinder for driving the relative movement of the two mounting rods on a driving seat, when the spacing adjustment cylinder moves, the fixing and loosening of a plurality of tooling baskets are completed simultaneously, and when the driving seat moves, a plurality of tooling baskets are moved simultaneously. Therefore, the motion mechanism and control difficulty are greatly simplified.
[0006] To achieve the above object, the utility model adopts the following technical solutions: An integrated ultrasonic cleaning production line includes a feeding station, a combined cleaning station, a drying station, and at least one transplanting component arranged on the production line in sequence along the conveying direction of the production line; the transplanting component includes two mounting rods slidably connected to the production line, a driving seat slidably connected to the production line, two spacing adjustment cylinders mounted on the driving seat, and a transplanting motor arranged on the production line for driving the driving seat to slide; the sliding ends of the two spacing adjustment cylinders are respectively arranged on the two mounting rods; the relative movement directions of the two mounting rods are always opposite; wherein, a plurality of support rods are arranged on the mounting rod; the support rods can be selectively inserted into the lower end of the tooling basket.
[0007] Further, the combined cleaning station includes four chemical ultrasonic cleaning stations, seven ultra-pure water ultrasonic cleaning stations, a spraying station, a slow pulling station, and a buffering station arranged in sequence along the conveying direction of the production line; each of the chemical ultrasonic cleaning stations and each of the ultra-pure water ultrasonic cleaning stations respectively includes an ultrasonic water tank arranged on the production line and a plurality of ultrasonic generators arranged at the inner bottom of the ultrasonic water tank; the spraying station and the slow pulling station respectively include a common water tank arranged on the production line.
[0008] Driven by the spacing adjustment cylinder, the support rod is inserted into the lower end of the tooling basket corresponding to each station, and then driven by the transplanting motor, each tooling basket is driven to move between the corresponding stations, reducing the structural complexity and control difficulty.
[0009] Specifically, the first three chemical ultrasonic cleaning stations arranged in sequence along the conveying direction of the production line are respectively provided with independent chemical liquid storage tanks; a chemical liquid circulation pipeline is arranged between the chemical liquid storage tank and the corresponding ultrasonic water tank.
[0010] Specifically, an ultra-pure water circulation pipeline is arranged between the seven ultra-pure water ultrasonic cleaning stations; the ultra-pure water circulation pipeline sequentially communicates with each corresponding ultrasonic water tank; the flowing direction of the ultra-pure water in the ultra-pure water circulation pipeline is opposite to the conveying direction of the production line; the ultra-pure water circulation pipeline is used to make the ultra-pure water flow in from the side close to the spraying station and flow out from the side close to the chemical ultrasonic cleaning station.
[0011] Specifically, the spraying station includes a spray pipe horizontally slidably connected to the upper end of the corresponding common water tank and a spray driving module arranged on the outer wall of the common water tank; a plurality of uniformly distributed spray heads are arranged at the lower end of the spray pipe.
[0012] Through the combination of the above-mentioned reasonable number of workstations, the best cleaning effect can be achieved on the premise of low cost and high efficiency.
[0013] Specifically, the drying workstation includes a drying chamber arranged on the production line, and a conveying rail arranged between the drying chamber and the buffer workstation; entrances and exits are respectively arranged at both ends of the drying chamber; a sliding door is longitudinally slidably connected in the entrances and exits; the conveying rail passes through between the two entrances and exits.
[0014] The tooling basket is slowly conveyed into the drying chamber through the conveying cabinet. Through a clean design, it is ensured that the product is clean and dry; sliding doors arranged on the left and right sides of the drying workstation can seal the drying chamber to ensure the drying temperature and internal cleanliness.
[0015] Furthermore, longitudinal movement components are respectively arranged on each workstation in the combined cleaning workstation and the feeding workstation; the longitudinal movement component includes a bracket longitudinally slidably connected to the production line; the bracket is located between two adjacent and relatively movable support rods.
[0016] Specifically, the bracket is L-shaped, a hook is arranged at the end of the upper end of the bracket; an anti-hook is arranged at the end of the lower end of the bracket; a plurality of uniformly distributed insertion plates are arranged on one side of the support rod facing the adjacent bracket; a plurality of uniformly distributed limit slots are arranged at the lower end of the tooling basket; the insertion plates can be selectively located in the limit slots.
[0017] Preferably, a pull door panel group is longitudinally slidably connected to the front end of the production line; a constant force spring coil group is arranged on the upper part of the production line; a tension belt is wound around the outer periphery of the constant force spring coil group; the end of the tension belt is arranged at the lower end of the pull door panel group.
[0018] The pull door panel group can slide upwards to open, thus providing sufficient space for corresponding operations in the production and assembly links of the production line.
[0019] Preferably, there are two transplanting components; a connecting rod is arranged between two mounting rods with the same movement direction; the connecting rod includes an intermediate pipe body and two adjusting rods respectively slidably connected to both ends of the intermediate pipe body; the extending length of the adjusting rod can be adjusted.
[0020] Setting one transplanting component to control the movement of multiple mounting rods at the same time, in order to control the positioning accuracy of each workstation, a very high assembly accuracy is required between the mounting rods. In addition, when adjusting the number and position of workstations according to specific work tasks, the content that needs to be adjusted and changed also relatively increases, and the compatibility is poor; setting multiple groups of transplanting components and arranging connecting rods with adjustable lengths between adjacent transplanting components can avoid the above problems.
[0021] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0022] 1. An integrated structure design is adopted. There are a total of 14 workstations on the cleaning production line. The transfer assembly is used to carry the tooling baskets. It is a brand-new ultrasonic cleaning line, combined with a through-type hot air drying workstation. After cleaning, the drying efficiency is increased by 50%, and the number of workers on the production line is reduced by 50%.
[0023] 2. On the premise of ensuring the cleaning effect, the number and layout of workstations are optimized, and the motion mechanism and cleaning units are streamlined. At the same time, each tooling basket between the 14 workstations is carried, greatly simplifying the motion mechanism and reducing the control difficulty and failure rate.
[0024] 3. A modular design scheme is adopted. Each workstation cooperates with each other and can be separated and recombined, which is convenient for later production line adjustment and has high compatibility with the cleaning products. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 、 Figure 2 、 Figure 3 is a schematic structural diagram of the production line of the present utility model;
[0026] Figure 4 is a schematic structural diagram of the feeding workstation and the pharmaceutical ultrasonic cleaning workstation of the present utility model;
[0027] Figure 5 is a schematic structural diagram of the ultra-pure water ultrasonic cleaning workstation of the present utility model;
[0028] Figure 6 is a schematic structural diagram of the transfer assembly of the present utility model;
[0029] Figure 7 is a schematic structural diagram of the spraying workstation and the slow pulling workstation of the present utility model;
[0030] Figure 8 is a schematic structural diagram of the drying workstation and the buffer workstation of the present utility model;
[0031] Figure 9 is a schematic structural diagram of the spray pipe and the spray driving module of the present utility model;
[0032] Figure 10 is a schematic structural diagram of the constant force spring coil group and the pull door panel group of the present utility model;
[0033] Figure 11 is a schematic structural diagram of the tooling basket of the present utility model;
[0034] Figure 12 is a schematic structural diagram of the bracket of the present utility model.
[0035] In the figure: 1. Feeding station; 11. Feeding tray; 12. Transverse movement assembly; 2. Chemical ultrasonic cleaning station; 3. Ultra-pure water ultrasonic cleaning station; 4. Spraying station; 41. Spraying pipe; 42. Spraying driving module; 5. Slow pulling station; 6. Buffer station; 7. Drying station; 71. Drying chamber; 72. Sliding door; 73. Conveyor track; 74. Sliding door cylinder; 8. Transplanter assembly; 81. Driving seat; 82. Spacing adjustment cylinder; 83. Mounting rod; 831. Supporting rod; 832. Inserting plate; 84. Connecting rod; 85. Transplanting motor; 86. Guide rail; 91. Tooling basket; 911. Limiting groove; 92. Glass wafer; 101. Chemical liquid storage tank; 102. Ultra-pure water storage tank; 103. Longitudinal movement assembly; 104. Ultrasonic water tank; 105. Ordinary water tank; 106. Bracket; 1061. Hook; 1062. Anti-disengagement hook; 107. Pulling door plate group; 108. Constant force spring coil group. Specific embodiments
[0036] Next, in combination with the accompanying drawings and specific embodiments, the present invention will be further described. It should be noted that, on the premise of no conflict, any combination of the following-described embodiments or technical features can form a new embodiment.
[0037] In the description of the present invention, it should be noted that for orientation terms, such as the terms "center", "horizontal", "longitudinal", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc., the indicated orientation and position relationship are based on the orientation or position relationship shown in the accompanying drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and should not be construed as limiting the specific protection scope of the present invention.
[0038] In addition, such terms as "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of technical features. Thus, the features defined as "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, the meaning of "several" is two or more, unless otherwise specifically defined.
[0039] In the present utility model, unless otherwise clearly defined and limited, terms such as "arranged", "installed", etc. shall be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may also be a mechanical connection; it may be directly connected, or connected through an intermediate medium, and may be internally connected and communicated between two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0040] See Figures 1-12 , an integrated ultrasonic cleaning production line, including a feeding station 1, a combined cleaning station, and a drying station 7 arranged in sequence along the conveying direction of the production line; the combined cleaning station includes four chemical agent ultrasonic cleaning stations 2, seven ultrapure water ultrasonic cleaning stations 3, a spraying station 4, a slow pulling station 5, and a buffer station 6 arranged in sequence along the conveying direction of the production line; two transfer components 8 are arranged at the front end of the production line.
[0041] Each of the chemical agent ultrasonic cleaning stations 2 and each of the ultrapure water ultrasonic cleaning stations 3 respectively include an ultrasonic water tank 104 arranged on the production line and a plurality of ultrasonic generators arranged at the inner bottom of the ultrasonic water tank 104; the spraying station 4 and the slow pulling station 5 respectively include a common water tank 105 arranged on the production line.
[0042] The first three chemical agent ultrasonic cleaning stations 2 arranged in sequence along the conveying direction of the production line are respectively provided with independent chemical agent storage tanks 101; a chemical agent circulation pipeline is arranged between the chemical agent storage tank 101 and the corresponding ultrasonic water tank 104; a circulation pump is arranged between the chemical agent circulation pipelines.
[0043] An ultrapure water circulation pipeline is arranged between the seven ultrapure water ultrasonic cleaning stations 3; the ultrapure water circulation pipeline sequentially communicates with each corresponding ultrasonic water tank 104; the flowing direction of the ultrapure water in the ultrapure water circulation pipeline is opposite to the conveying direction of the production line; the ultrapure water circulation pipeline is used to make the ultrapure water flow in from the side close to the spraying station 4 and flow out from the side close to the chemical agent ultrasonic cleaning station 2.
[0044] The spraying station 4 includes a spraying pipe 41 horizontally slidably connected to the upper end of the corresponding common water tank 105 and a spraying driving module 42 arranged on the outer wall of the common water tank 105; a plurality of uniformly distributed spray heads are arranged at the lower end of the spraying pipe 41; the spraying driving module 42 is a lead screw module.
[0045] The feeding station 1, the four medicament ultrasonic cleaning stations 2, the seven ultrapure water ultrasonic cleaning stations 3, the spraying station 4, the slow pulling station 5, and the buffer station 6 are respectively provided with longitudinal moving components 103; the longitudinal moving component 103 includes a bracket 106 longitudinally slidably connected in the ultrasonic water tank 104 or the ordinary water tank 105, and a longitudinal lead screw module arranged at the rear end of the production line for driving the bracket 106 to longitudinally slide.
[0046] A cross bar is horizontally arranged on the slider of the longitudinal lead screw module; the bracket 106 is L-shaped, and a hook 1061 is arranged at the end of the upper end of the bracket 106; the hook 1061 is arranged on the cross bar; according to specific situations, a plurality of the brackets 106 can be arranged on the cross bar; an anti-disengagement hook 1062 is arranged at the end of the lower end of the bracket 106.
[0047] The slow pulling station 5 slowly lifts the tooling basket 91 out of the water in a slow movement lifting manner to achieve the purpose of drying.
[0048] Four ultrapure water storage tanks 102 are arranged on the production line. Among them, one ultrapure water storage tank 102 is communicated with the ordinary water tank 105 of the slow pulling station 5, and one ultrapure water storage tank 102 is communicated with the spray pipe 41 of the spraying station 4; the other two ultrapure water storage tanks 102 are communicated with the ultrapure water circulation pipeline.
[0049] The drying station 7 includes a drying chamber 71 arranged on the production line, and a conveying rail 73 arranged between the drying chamber 71 and the buffer station 6; entrances and exits are respectively arranged at the left and right ends of the drying chamber 71; a sliding door 72 is longitudinally slidably connected in the entrances and exits; two sliding door cylinders 74 for driving the sliding door 72 to longitudinally slide are respectively arranged at the upper end of the drying chamber 71; the conveying rail 73 passes through between the two entrances and exits; circulation ports are respectively arranged at the upper and lower ends of the drying chamber 71, and the heated hot air circulates from top to bottom in the drying chamber 71.
[0050] The transplanting component 8 includes a guide rail 86 arranged at the front end of the production line in the left-right direction, two mounting rods 83 slidably connected on the guide rail 86, a driving seat 81 slidably connected on the mounting seat, two spacing adjusting cylinders 82 mounted on the driving seat 81, and a transplanting motor 85 arranged on the production line for driving the driving seat 81 to slide; the sliding ends of the two spacing adjusting cylinders 82 are respectively arranged on the two mounting rods 83; the relative movement directions of the two mounting rods 83 are always opposite.
[0051] A connecting rod 84 is arranged between two of the mounting rods 83 with the same movement direction; the connecting rod 84 includes an intermediate pipe body and two adjusting rods respectively slidably connected to both ends of the intermediate pipe body; the extending length of the adjusting rod can be adjusted; the adjusting rod is threadedly connected to the intermediate pipe body; the end of the adjusting rod is rotatably connected to the adjacent mounting rod 83.
[0052] A plurality of supporting rods 831 are arranged on the mounting rod 83; the bracket 106 is located between two adjacent supporting rods 831 that can move relative to each other; a plurality of uniformly distributed inserting plates 832 are arranged on one side of the supporting rod 831 facing the adjacent bracket 106; a plurality of uniformly distributed limiting slots 911 are arranged at the lower end of the tooling basket 91; the inserting plates 832 can be selectively located in the limiting slots 911.
[0053] The feeding station 1 includes a feeding tray 11 slidably connected to the production line in the front-rear direction and a cross-moving assembly 12 arranged on the production line for driving the feeding tray 11 to slide; the tooling basket 91 is placed on the upper end of the feeding tray 11; the bracket 106 can be selectively inserted into the lower end of the tooling basket 91.
[0054] A plurality of supporting rods are arranged on the tooling basket 91; the glass wafers 92 are placed on the upper ends of the respective supporting rods.
[0055] A plurality of pull door plate groups 107 are longitudinally slidably connected to the front end of the production line; a constant force spring coil group 108 is arranged above the production line; a tension belt is wound around the outer circumference of the constant force spring coil group 108; the end of the tension belt is arranged at the lower end of the pull door plate group 107.
[0056] Turnover process of the tooling basket 91: Each longitudinal movement assembly 103 drives the bracket 106 to move upward, and moves each tooling basket 91 to the upper end of the ultrasonic water tank 104 or the ordinary water tank 105. The two spacing adjusting cylinders 82 move to drive the mounting rod 83, so that the supporting rods 831 on both sides of the tooling basket 91 move towards each other to the lower end of the corresponding tooling basket 91, and the inserting plates 832 enter the limiting slots 911. Subsequently, the bracket 106 moves downward, the tooling basket 91 falls on the supporting rods 831, and the transplanting motor 85 drives the driving seat 81 to slide, and further drives the spacing adjusting cylinder 82 to drive the mounting rod 83 to move synchronously, and moves the tooling basket 91 to the next station.
[0057] The longitudinal movement assembly 103 drives the bracket 106 to move upward until it abuts against the lower end of the corresponding tooling basket 91, the spacing adjusting cylinder 82 drives the supporting rod 831 to slide until the inserting plate 832 leaves the limiting slot 911, the bracket 106 moves downward, and moves the tooling basket 91 to the bottom end of the ultrasonic water tank 104 or the ordinary water tank 105. The transplanting motor 85 drives the driving seat 81 to return to the original position, and so on.
[0058] Production line cleaning process: Place the tooling basket on the feeding tray 11. The transverse movement component 12 drives the feeding tray 11 to slide until it is directly opposite the corresponding longitudinal movement component 103, and the bracket 106 is inserted into the lower end of the tooling basket 91. After the bracket 106 moves the tooling basket 91 to the upper end of the transfer component 8, according to the above-mentioned turnover process, the tooling basket 91 sequentially passes through the chemical ultrasonic cleaning station 2, the ultra-pure water ultrasonic cleaning station 3, and the spraying station 4. When the tooling basket 91 moves to the inner bottom end of the spraying station 4, the spraying drive module 42 drives the spraying pipe 41 to slide horizontally back and forth to spray the glass wafers 92 in the tooling basket 91. Subsequently, when the tooling basket 91 moves to the slow pulling station 5, the corresponding longitudinal movement component 103 slowly moves the tooling basket 91 upward to achieve the purpose of drying. Then, the transfer component 8 moves the tooling basket 91 to the upper end of the conveying rail 73 of the buffer station 6, and the conveying rail 73 conveys the tooling 91 into the drying chamber 71 to be dried, and then outputs it from the other side of the drying chamber 71.
[0059] The above are only specific embodiments of the present invention, but the technical features of the present invention are not limited thereto. Any changes or modifications made by those skilled in the art within the scope of the present invention are covered by the patent scope of the present invention.
Claims
1. An integrated ultrasonic cleaning production line, characterized in that: It includes a feeding station, a combined cleaning station, a drying station, and at least one transplanting component arranged on the production line in sequence along the conveying direction of the production line; the transplanting component includes two mounting rods slidably connected to the production line, a driving seat slidably connected to the production line, two spacing adjustment cylinders mounted on the driving seat, and a transplanting motor arranged on the production line for driving the driving seat to slide; the sliding ends of the two spacing adjustment cylinders are respectively arranged on the two mounting rods; the relative movement directions of the two mounting rods are always opposite; wherein, a plurality of support rods are arranged on the mounting rods; the support rods can be selectively inserted into the lower end of the tooling basket.
2. The production line according to claim 1, wherein: The combined cleaning station includes four medicament ultrasonic cleaning stations, seven ultra-pure water ultrasonic cleaning stations, one spraying station, one slow pulling station, and one buffering station arranged in sequence along the conveying direction of the production line; each of the medicament ultrasonic cleaning stations and each of the ultra-pure water ultrasonic cleaning stations respectively includes an ultrasonic water tank arranged on the production line and a plurality of ultrasonic generators arranged at the inner bottom of the ultrasonic water tank; the spraying station and the slow pulling station respectively include a common water tank arranged on the production line.
3. The production line according to claim 2, characterized in that: The first three medicament ultrasonic cleaning stations arranged in sequence along the conveying direction of the production line are respectively provided with independent medicament storage tanks; a medicament circulation pipeline is arranged between the medicament storage tank and the corresponding ultrasonic water tank.
4. The production line according to claim 2, characterized in that: An ultra-pure water circulation pipeline is arranged between the seven ultra-pure water ultrasonic cleaning stations; the ultra-pure water circulation pipeline sequentially communicates with each corresponding ultrasonic water tank; the flowing direction of the ultra-pure water in the ultra-pure water circulation pipeline is opposite to the conveying direction of the production line; the ultra-pure water circulation pipeline is used to make the ultra-pure water flow in from the side close to the spraying station and flow out from the side close to the medicament ultrasonic cleaning station.
5. The production line according to claim 2, characterized in that: The spraying station includes a spraying pipe horizontally slidably connected to the upper end of the corresponding common water tank and a spraying driving module arranged on the outer wall of the common water tank; a plurality of uniformly distributed spray heads are arranged at the lower end of the spraying pipe.
6. The production line according to any one of claims 2-5, characterized in that: The drying station includes a drying chamber arranged on the production line and a conveying track arranged between the drying chamber and the buffering station; entrances and exits are respectively arranged at both ends of the drying chamber; a sliding door is longitudinally slidably connected in the entrances and exits; the conveying track passes through between the two entrances and exits.
7. The production line according to any one of claims 2-5, characterized in that: Vertical moving components are respectively arranged on each station in the combined cleaning station and the feeding station; the vertical moving component includes a bracket longitudinally slidably connected to the production line; the bracket is located between two adjacent support rods that can move relatively.
8. The production line according to claim 7, characterized in that: The bracket is L-shaped, a hook is arranged at the end of the upper end of the bracket; an anti-hook is arranged at the end of the lower end of the bracket; a plurality of uniformly distributed inserting plates are arranged on the side of the support rod facing the adjacent bracket; a plurality of uniformly distributed limiting grooves are arranged at the lower end of the tooling basket; the inserting plates can be selectively located in the limiting grooves.
9. The production line according to any one of claims 1-5, characterized in that: A pull door panel group is longitudinally and slidably connected to the front end of the production line; a constant force spring roll group is arranged above the production line; a tension belt is wound around the outer periphery of the constant force spring roll group; the end of the tension belt is arranged at the lower end of the pull door panel group.
10. The production line according to any one of claims 1-5, characterized in that: There are two transplanting components; a connecting rod is arranged between two mounting rods with the same movement direction; the connecting rod includes an intermediate pipe body and two adjusting rods respectively slidably connected to both ends of the intermediate pipe body; the extending length of the adjusting rod can be adjusted.
Citation Information
Patent Citations
Ultrasonic cleaning production line for optical glass
CN219401408U