Annular track device convenient to position and used for manufacturing atomization assembly
By designing a combination of slide rail components and positioning components, the problem of unstable sliding of fixtures in the manufacturing of atomization components is solved, stable positioning and high-precision processing of atomization fixtures are achieved, and the efficiency of automated production is improved.
Patent Information
- Application Number
- CN202422505507.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-16
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-10-16
AI Technical Summary
During the existing manufacturing process of atomizer components, it is difficult to position the sliding device at the processing station, resulting in unstable sliding of the jig and affecting the processing accuracy.
A ring rail device including a slide rail assembly, a positioning assembly and a central control module was designed. Through the sliding connection between the slide table and the slide rail, combined with the sliding connection between the positioning slide groove and the positioning slide rail, the driving device is used to achieve stable positioning and movement of the atomizing fixture to ensure processing accuracy.
The stable positioning of the atomizing fixture during the processing is achieved, which improves the processing accuracy and automated production efficiency.
Smart Images

Figure CN223365029U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of atomization component manufacturing, in particular to a ring rail device for manufacturing atomization components which is convenient for positioning. Background Art
[0002] An electronic cigarette is an electronic device that generates an inhalable aerosol by heating a liquid containing nicotine, flavorings, and other ingredients. An electronic cigarette primarily consists of a battery, an atomizer, an electronic liquid, and a liquid storage tank. The atomizer primarily atomizes the liquid by absorbing the cotton, heating the coil, and letting air out of the mouthpiece. The manufacture of an atomizer requires multiple steps, and most industrial assembly line production uses an atomizer jig that moves on a track and undergoes different processing steps in sequence.
[0003] In the "annular guide rail" published in patent document "CN113803609A", it discloses several straight segments 10, several arc segments 20 and a sliding device 30. Several straight segments 10 and several arc segments 20 are connected in sequence at intervals to form an annular structure, and the sliding device 30 can slide in an annular structure along the annular structure formed by several straight segments 10 and several arc segments 20 connected in sequence at intervals.
[0004] In this patent, the sliding device slides on the sliding structure, which makes it difficult to position it at the processing station, and easily causes the jig to slide during processing, making it difficult to perform normal processing. Utility Model Content
[0005] The purpose of the present utility model is to provide a ring rail device for manufacturing an atomizing assembly that is easy to position, so as to solve the problems raised in the above background technology.
[0006] To achieve the above objectives, the present invention provides the following technical solutions:
[0007] A ring track device for manufacturing an atomizing component that is easy to position, comprising
[0008] A slide rail assembly, wherein a slide is provided on the slide rail assembly, and the slide is slidably connected to the slide rail assembly. The slide is used to install an atomizing fixture;
[0009] A positioning assembly, the positioning assembly includes a positioning slide, a positioning rail and a positioning block, the positioning slide is slidably connected to the positioning rail, the positioning block is installed on the positioning slide, a positioning groove is provided on the side of the slide close to the positioning assembly, the positioning block is engaged with the positioning groove, the length direction of the positioning rail is the same as the direction in which the positioning block moves relative to the positioning groove, and the positioning slide is further provided with a first driving device, the first driving device is used to drive the positioning slide to move;
[0010] A central control module is connected to the slide and the first driving device respectively.
[0011] A further technical solution is that the slide rail assembly includes two parallel first long slide rails, a second long slide rail, and a first movable rail and a second movable rail that can move in a direction perpendicular to the length direction of the first long slide rail, and the first movable rail and the second movable rail are respectively located at the two ends of the first long slide rail and the second long slide rail.
[0012] A further technical solution is that the slide includes a slide groove part, a slide plate part and a side shifter, the slide groove part is fixedly connected to the slide plate part, the slide groove part is slidably connected to the first long slide rail and the second long slide rail, the slide plate part is connected to the atomization fixture, the side shifter is connected to the central control module, and the side shifter is used to drive the slide plate part to move.
[0013] A further technical solution is that the number of side shifters is two, and the side shifters include a side-loaded movable plate and a second driving device. The two side-loaded movable plates are respectively located on both sides of the first long slide rail and the second long slide rail. The length direction of the side-loaded movable plate is consistent with the length direction of the first long slide rail. The second driving device is used to drive the side-loaded movable plate to move along its length direction. The second driving device is connected to the central control module, and the side-loaded movable plate drives the slide to move through the driving component.
[0014] According to a further technical solution, the second driving device includes a second cylinder, which is provided with a fixing bracket, and the fixing bracket is used to fix the second cylinder to the workbench, and the second cylinder is fixedly connected to the side load movable plate through a cylinder connecting plate.
[0015] According to a further technical solution, two buffer mounting plates are respectively provided at both ends of the side-load movable plate, and buffers are installed on the buffer mounting plates.
[0016] A further technical solution is that the driving assembly includes a positioning plate and a first cam follower, the first cam follower is fixedly connected to the positioning plate, a follower groove is opened on the side of the slide close to the first cam follower, the side-loaded movable plate is slidingly connected to the positioning plate along a direction perpendicular to the first long slide rail, the first cam follower can be engaged with the follower groove, and the driving assembly also includes a third drive device, the third drive device is used to drive the positioning plate to slide along a direction perpendicular to the first long slide rail, and the third drive device is connected to the central control module.
[0017] According to a further technical solution, the third driving device includes a third cylinder, and the piston shaft of the third cylinder is fixedly connected to the positioning plate via a floating joint.
[0018] A further technical solution is that the atomization fixture includes two parallel modules, and a plurality of mounting positions are formed between the two modules. The mounting positions are used to shape the atomization assembly, and the two modules can move away from each other and reset to open and close the mounting positions.
[0019] A further technical solution is that module 1 includes a sliding frame, several semi-tools and springs, several of the semi-tools are connected to the sliding frame, a sliding groove is provided under the sliding frame, a short slide rail is provided on the slide plate part, the sliding groove is slidably connected to the short slide rail, and a spring fixing block is also provided on the slide plate part, one end of the spring is sleeved on the spring fixing block, the other end of the spring is connected to one end of the sliding frame, and a pin is provided at the other end of the sliding frame.
[0020] A further technical solution is that a paddle is provided on the slide portion, and a second cam follower is rotatably provided at the middle position of the slide portion, the paddle is rotatably connected to the second cam follower, two sliding grooves are respectively provided at both ends of the paddle, and a third cam follower, a fourth cam follower and a cam hole are provided on the sliding frame, one end of the third cam follower and the fourth cam follower are respectively located in the two sliding grooves, and the other ends of the third cam follower and the fourth cam follower respectively pass through the cam hole of the module one and the cam hole of the module two.
[0021] According to a further technical solution, two limit blocks are fixedly provided on the slide portion, and the two limit blocks are respectively located at the two ends of the module one and the module two, and the two limit blocks are used to limit the distance that the module one and the module two move toward each other.
[0022] According to a further technical solution, a plurality of positioning posts are installed on the semi-jig, and the positioning posts are used to limit the position of the filter cotton.
[0023] Beneficial effects of the utility model:
[0024] The utility model is connected by sliding the slide table and the slide rail assembly, so that the atomizing jig can slide relative to the slide rail assembly, so that the atomizing jig can be moved to different processing devices for processing; the positioning slide is slidably connected to the positioning slide, and the positioning block is installed on the positioning slide, so that the positioning block can slide relative to the positioning slide, and the length direction of the positioning slide is the same as the direction of movement of the positioning block relative to the positioning groove, so that the positioning block can be engaged with and separated from the positioning groove. When the atomizing jig needs to be fixed, the positioning slide can be controlled by the central control module to move in the direction of the positioning groove, thereby driving the positioning block to move in the direction of the positioning groove until the positioning groove and the positioning block are engaged, thereby fixing the atomizing jig; when the external processing device processes the atomizing jig, the atomizing jig can remain stable, thereby improving the accuracy of the external processing device in processing the material on the atomizing jig.
[0025] Other features and advantages of the present invention will be described in detail in the subsequent detailed description of the embodiments. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 : Overall structure diagram of the utility model.
[0027] Figure 2 : The utility model Figure 1 Magnified image of .
[0028] Figure 3 : Schematic diagram of the side shifting and driving assembly of the present invention.
[0029] Figure 4 : Schematic diagram of the driving component, slide, atomizing fixture and positioning component of the utility model.
[0030] Figure 5 : Exploded view of the slide and atomizing fixture of the present invention.
[0031] 1. The cam follower of the second cylinder is provided with a plurality of movable members, each of which is provided with a plurality of movable members, and a plurality of movable members are provided with a plurality of movable members. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention.
[0033] Please refer to Figure 1-5 ;
[0034] A ring rail device for manufacturing an atomizing component that is easy to position includes a slide rail assembly 1. The slide rail assembly 1 can be long or circular. Generally, in order to facilitate automated industrial production, the slide rail assembly 1 is often a circular slide rail. The circular slide rail can be an arc-shaped guide rail. Accordingly, a slide 2 is provided on the slide rail assembly 1. The slide 2 is slidably connected to the slide rail assembly 1. The number of slides 2 is not limited, and the slide 2 is sufficient to enable the processing device of the processing station to be processed to be in a working state at the same time; an atomizing fixture 3 is installed on the slide 2, and the atomizing fixture 3 is connected to the slide 2. The specific connection method includes fixed connection, one-piece molding and other stable connection methods. The atomizing fixture 3 is used to place filter cotton 6, coils and auxiliary rods. It should be noted that the filter cotton 6, coil and auxiliary rod are placed in this order; in order for the filter cotton 6, coil and auxiliary rod on the atomizing jig 3 to be processed by a processing device when the atomizing jig 3 is moved to the processing station, the filter cotton 6, coil and auxiliary rod can remain fixed relative to the processing device, the slide 2 is also provided with a positioning component 7, and the positioning component 7 is used to locate the position of the slide 2, thereby locating the position of the atomizing jig 3, and further fixing the position of the atomizing jig 3; in order to enable the ring track device to be automatically produced, it also includes a central control module, which is respectively connected to the slide 2 and the positioning component 7, and the central control module is used to control the movement of the slide 2 and the positioning and separation of the slide 2 by the positioning component 7.
[0035] Specifically, the operator first controls the slide 2 to slide relative to the slide rail assembly 1 to the station to be loaded through the central control module, and then drives the atomizing fixture 3 to slide to the station to be loaded, and then the operator places the prepared filter cotton 6, coil and auxiliary rod on the atomizing fixture 3; then the central control module controls the slide 2 to slide relative to the slide rail assembly 1 to the station to be processed, and uses the processing device at the station to be processed to perform the first processing on the material on the atomizing fixture 3, so that the filter cotton 6 is embedded in the installation position 5; then the central control module controls The positioning component 7 disengages from the slide 2, allowing the slide 2 to slide to the next station to be processed under the control of the central control module, and then the positioning component 7 is used to perform a second processing on the material of the atomizing fixture 3 on the slide 2; this cycle continues until the product is processed and formed, and then the slide 2 is slid to the station to be unloaded to complete the unloading. At the same time, the operator removes the formed product and then puts the raw material to be processed, that is, the station to be unloaded is the same as the station to be loaded, and then the previous processing step is repeated until the product is processed and formed again.
[0036] In this embodiment, the slide rail assembly 1 includes two parallel first long slide rails 11, a second long slide rail 12 and a first movable rail 13 and a second movable rail 14 that can move along a direction perpendicular to the length direction of the first long slide rail 11. The length direction of the first movable rail 13 and the second movable rail 14 is consistent with the length direction of the first long slide rail 11 and the second long slide rail 12. The cross-sectional area of the first movable rail 13 and the second movable rail 14 is the same as the cross-sectional area of the first long slide rail 11 and the second long slide rail 12 and the shape is the same. It is worth noting that the first long slide rail 11, the second long slide rail 12 and the first movable rail 13, the second movable rail 14 are all dovetail slide rails, and the corresponding slide 2 is provided with a dovetail groove. The first movable rail 13 and the second movable rail 14 are respectively located at the two ends of the first long slide rail 11 and the second long slide rail 12. The length of the first movable rail 13 and the second movable rail 14 should be greater than the length of the slide 2.
[0037] Specifically, the slide 2 slides to the edge on the first long slide rail 11, and the operator can slide the second movable rail 14 until one end of the second movable rail 14 abuts against one end of the first long slide rail 11, so that the slide 2 can slide to the second movable rail 14, and then the operator can slide the second movable rail 14 until one end of the second movable rail 14 abuts against one end of the second long slide rail 12, so that the slide 2 can slide to the second long slide rail 12 in the opposite direction of sliding of the first long slide rail 11, and the slide 2 slides to the edge on the second long slide rail 12 and repeats the above process to complete the cycle of the slide 2 on the first long slide rail 11 and the second long slide rail 12.
[0038] In this embodiment, the slide 2 includes a slide groove portion 21, a slide plate portion 22 and a side shifter 23. The slide groove portion 21 is fixedly connected to the slide plate portion 22, and the slide groove portion 21 is slidably connected to the first long slide rail 11 and the second long slide rail 12. The number of the slide groove portions 21 can be several. In this embodiment, the number of the slide groove portions 21 is two, and the slide groove portions 21 are located at both ends of the slide plate portion 22. On the one hand, the weight of the slide 2 is reduced, and on the other hand, the stability of the slide groove portion 21 sliding with the first long slide rail 11 and the second long slide rail 12 is improved; the slide plate portion 22 is connected to the atomizing fixture 3, and a positioning groove 221 is provided on the side of the slide plate portion 22 close to the positioning component 7. The positioning groove 221 is a horizontally placed "U-shaped groove", and the opening direction of the "U-shaped groove" is toward the positioning component 7. The positioning component 7 includes a positioning block that can move relative to the positioning groove 221, and the positioning block can be engaged with the positioning groove 221; the side shifter 23 is connected to the central control module, and the side shifter 23 is used to drive the slide 2 to move.
[0039] Specifically, the operator controls the movement of the side shifter 23 through the central control module. After the side shifter 23 moves and drives the slide 2 to the processing station, the central control module controls the side shifter 23 to stop driving the slide 2 to move, and then the positioning block of the positioning assembly 7 can move relative to the direction of the positioning groove 221 until the positioning block is engaged with the positioning groove 221, thereby fixing the slide plate portion 22 of the slide plate 2, so that the processing device of the processing station can process the raw materials on the atomizing jig 3 on the slide plate portion 22.
[0040] In this embodiment, the positioning assembly 7 includes a positioning slide and a positioning slide rail, the positioning slide is slidably connected to the positioning slide rail, the length direction of the positioning slide rail is the same as the direction of movement of the positioning block relative to the positioning slide 221, in this embodiment, the length direction of the positioning slide rail is perpendicular to the length direction of the first long slide rail 11, the positioning block is installed on the upper surface of the positioning slide, and the positioning slide is also provided with a first driving device, the first driving device is used to drive the positioning slide to move, the first driving device can be a driving motor, or a first cylinder 8, or a hydraulic cylinder. In this embodiment, the first driving device is preferably the first cylinder 8, and the piston shaft of the first cylinder 8 is fixedly connected to the positioning slide through a cylinder connecting plate.
[0041] Specifically, when the central control module controls the slide 2 to move to the processing station, the piston shaft of the first cylinder 8 is extended and retracted to drive the positioning slide groove to move along the length direction of the positioning slide rail, and then drives the positioning block to move along the length direction of the positioning slide rail. The positioning block moves until the positioning block is engaged with the positioning groove 221, and then fixes the slide plate portion 22 of the slide 2, so that the processing device of the processing station can process the raw materials on the atomizing fixture 3 on the slide plate portion 22. After the processing is completed, the piston shaft of the first cylinder 8 is extended and retracted to drive the positioning slide groove to move in the opposite direction to the previous direction, so that the positioning block disengages from the positioning groove 221.
[0042] In this embodiment, the number of side shifters 23 is two, and the side shifters include a side-loaded movable plate 231 and a second driving device. The two side-loaded movable plates 231 are respectively located on both sides of the first long slide rail 11 and the second long slide rail 12. The length direction of the side-loaded movable plate 231 is consistent with the length direction of the first long slide rail 11. The second driving device is used to drive the side-loaded movable plate 231 to move along its length direction. The second driving device is connected to the central control module, and the side-loaded movable plate 231 drives the slide 2 to move through the driving component 9. It is worth noting that the driving component 9 and the slide 2 can be integrally formed, fixedly connected, or detachably connected; the second driving device includes a second cylinder 232, and the second cylinder 232 is provided with a fixing frame, which is used to fix the second cylinder 232 to the workbench, and the second cylinder 232 is fixedly connected to the side-loaded movable plate 231 through a cylinder connecting plate.
[0043] Specifically, when loading and unloading, the operator fixes the second cylinder 232 and the workbench together through the fixing frame, and then drives the side load movable plate 231 to move by the extension and retraction of the piston shaft of the second cylinder 232, thereby driving the slide 2 to move; when the driving component 9 is detachably connected to the slide 2, the driving component 9 is first connected to the slide 2, and the central control module controls the second cylinder 232 to extend and retract to drive the side load movable plate 231 to move, thereby driving the slide 2 to move. When the slide 2 moves to the workstation to be processed for processing, the driving component 9 is separated from the slide 2, and the central control module controls the second cylinder 232 to extend and retract to drive the side load movable plate 231 to move to other slides 2, and then the driving component 9 is connected to the other slides 2, so that when the number of driving components 9 and slides 2 is the same, the side load movable plate 231 can drive multiple slides 2 to move at the same time, and the driving component 9 can be connected to different slides 2.
[0044] In order to realize the automated production of this device, the driving component 9 includes a positioning plate 91 and a first cam follower 92. The first cam follower 92 is fixedly connected to the positioning plate 91. A follower groove 223 is provided on the slide 2 on the side close to the first cam follower 92. The side-loaded movable plate 231 is slidably connected to the positioning plate 91 along the direction perpendicular to the first long slide rail 11. The first cam follower 92 can be engaged with the follower groove 223. The driving component 9 also includes a third driving device. The third driving device is used to drive the positioning plate 91 to slide along the direction perpendicular to the first long slide rail 11. The third driving device is connected to the central control module; the third driving device includes a third cylinder 93. The piston shaft of the third cylinder 93 is fixedly connected to the positioning plate 91 through a floating joint.
[0045] Specifically, when the driving assembly 9 is connected to the slide 2, the piston shaft of the third cylinder 93 is extended and retracted to drive the positioning plate 91 to move in the direction toward the follower groove 223, and the positioning plate 91 drives the first cam follower 92 to move in the direction toward the follower groove 223, and the first cam follower 92 moves until the first cam follower 92 is engaged with the follower groove 223, and then the central control module controls the second cylinder 232 to extend and retract to drive the side load moving plate 231 to move, thereby driving the slide 2 to move; when the driving assembly 9 is disconnected from the slide 2, the piston shaft of the third cylinder 93 is extended and retracted to drive the positioning plate 91 to move in the opposite direction, and then the positioning plate 91 drives the first cam follower 92 to move in the opposite direction, so that the first cam follower 92 is separated from the follower groove 223, and further the central control module controls the second cylinder 232 to extend and retract to drive the side load moving plate 231 to drive other slides 2 to move.
[0046] In this embodiment, two buffer mounting plates 10 are respectively provided at both ends of the side load movable plate 231. The buffer mounting plates 10 are "L-shaped plates". Buffers 15 are installed on the buffer mounting plates 10. The buffers 15 are placed horizontally, and the buffers 15 are collinear with the side load movable plate 231.
[0047] Specifically, when the side load movable plate 231 moves to the edge, the end surface of the side load movable plate 231 abuts against the buffer 15. The buffer 15 can buffer the impact of the side load movable plate 231 and better protect the side load movable plate 231.
[0048] In this embodiment, the atomizer fixture 3 includes two parallel modules 31, and the two modules 31 are staggered. The atomizer fixture 3 is used to place raw materials, and the two modules 31 can move toward each other or reset. An installation position 5 is formed between the two modules 31. In this embodiment, the raw materials include filter cotton 6, coils and auxiliary rods. In order to fix the position of the filter cotton 6, several positioning columns 32 are installed on the module 31. In this embodiment, the number of positioning columns 32 is four, and the four positioning columns 32 are placed on the two modules 31 respectively, and the filter cotton 6 is placed between the positioning columns 32.
[0049] Specifically, in the initial state, the two modules 31 are abutted, and an installation position 5 is formed between the two modules 31. The operator places the filter cotton 6 between the positioning columns 32 on the fixture, and then puts in the coil and the auxiliary rod. It is worth noting that the position of the auxiliary rod is between the two modules 31, and the length direction of the auxiliary rod is the same as the length direction of the first long slide rail 11. After that, the operator controls the slide 2 to move to the work station to be processed through the central control module, and uses an external device to apply downward pressure in the direction between the two fixtures to squeeze the filter cotton 6, so that the two fixtures are separated, so that the filter cotton 6, the coil and the auxiliary rod are trapped in the installation position 5, and then the two modules 31 are reset, thereby fixing the filter cotton 6, the coil and the auxiliary rod at the installation position 5.
[0050] In order to facilitate the reset movement of the two modules 31, in the present embodiment, the module 31 is slidably connected to the slide plate portion 22, and the slide plate portion 22 is fixedly provided with a short slide rail, and the bottom surface of the module 31 is fixedly provided with a module 31 groove, and the module 31 groove is slidably connected to the short slide rail. In the present embodiment, the number of the module 31 groove and the short slide rail is four, and two of the four short slide rails are distributed on both sides of the atomizing fixture 3, and a paddle 19 is provided between the two short slide rails on the same side. The paddle 19 and the slide plate portion 22 are rotatably connected to the slide plate portion 22 through the second cam follower 20. The paddle 19 is rotatably connected to the second cam follower 20. Two sliding grooves 27 are respectively provided at both ends of the paddle 19. The module 31 is provided with a third cam follower 25 and a fourth cam follower 26. The third cam follower 25 and the fourth cam follower 26 are respectively located in the two sliding grooves 27. A spring 28 and a spring fixing block 29 are provided on the slide portion 22 . One end of the spring 28 is sleeved on the spring fixing block 29 , and the other end of the spring 28 is connected to one end of the module 31 . A pin 30 is provided on the other end of the module 31 .
[0051] Specifically, when the external device applies downward pressure in the direction between the two clamps to squeeze the filter cotton 6, the two modules 31 separate, and the two modules 31 will compress the spring 28. The compression of the spring 28 generates elastic force, and at the same time the filter cotton 6, the coil and the auxiliary rod are sunk into the installation position 5. When the filter cotton 6, the coil and the auxiliary rod complete the process of being sunk into the installation position 5, the pressure of the external device disappears, and then the spring 28 recovers its deformation, releasing the pressure, causing the two modules 31 to reset, thereby fixing the filter cotton 6, the coil and the auxiliary rod in the installation position 5.
[0052] In this embodiment, two limit blocks 33 are fixedly provided on the slide portion 22. The two limit blocks 33 are respectively located at the two ends of the module 31. The two limit blocks 33 are used to limit the distance of the two modules 31 moving toward each other to prevent the two clamps from moving too far toward each other, causing the filter cotton 6, coil and auxiliary rod to pass through the installation position 5.
[0053] It is worth noting that, in some embodiments, the position of one module 31 is kept fixed, and the other module 31 moves toward and resets relative to the fixed module 31 .
[0054] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.
[0055] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementations that can be understood by those skilled in the art.
Claims
1. A ring track device for manufacturing an atomizing assembly that is easy to position, characterized in that: include: A slide rail assembly (1), wherein a slide platform (2) is provided on the slide rail assembly (1), the slide platform (2) is slidably connected to the slide rail assembly (1), and an atomizing fixture (3) is mounted on the slide platform (2); A positioning assembly (7), wherein the positioning assembly (7) comprises a positioning slide, a positioning rail and a positioning block, wherein the positioning slide is slidably connected to the positioning rail, and the positioning block is mounted on the positioning slide. A positioning groove (221) is provided on a side of the slide (2) close to the positioning assembly (7), and the positioning block is engaged with the positioning groove (221). The length direction of the positioning rail is the same as the direction in which the positioning block moves relative to the positioning groove (221). The positioning slide is further provided with a first driving device, and the first driving device is used to drive the positioning slide to move. A central control module (31), wherein the central control module (31) is respectively connected to the slide (2) and the first drive device.
2. The ring track device for manufacturing an atomizer assembly that is easy to position according to claim 1, characterized in that: The slide rail assembly (1) comprises two parallel first long slide rails (11), a second long slide rail (12), and a first movable rail (13) and a second movable rail (14) movable in a direction perpendicular to the length direction of the first long slide rail (11); the first movable rail (13) and the second movable rail (14) are respectively located at the two ends of the first long slide rail (11) and the second long slide rail (12).
3. The ring track device for manufacturing an atomizer assembly that facilitates positioning according to claim 2, characterized in that: The slide (2) comprises a slide groove portion (21), a slide plate portion (22) and a side shifter (23); the slide groove portion (21) is fixedly connected to the slide plate portion (22); the slide groove portion (21) is slidably connected to the first long slide rail (11) and the second long slide rail (12); the slide plate portion (22) is connected to the atomizing fixture (3); the side shifter (23) is connected to the central control module (31); and the side shifter (23) is used to drive the slide plate portion (22) to move.
4. The ring track device for manufacturing an atomizer assembly that facilitates positioning according to claim 3, characterized in that: The number of the side shifters (23) is two, and the side shifters include a side load movable plate (231) and a second driving device. The two side load movable plates (231) are respectively located on both sides of the first long slide rail (11) and the second long slide rail (12). The length direction of the side load movable plate (231) is consistent with the length direction of the first long slide rail (11). The second driving device is used to drive the side load movable plate (231) to move along its length direction. The second driving device is connected to the central control module (31). The side load movable plate (231) drives the slide (2) to move through the driving component (9).
5. The ring track device for manufacturing an atomizer assembly that facilitates positioning according to claim 4, characterized in that: The second driving device comprises a second cylinder (232), the second cylinder (232) is provided with a fixing frame, the fixing frame is used to fix the second cylinder (232) to the workbench, and the second cylinder (232) is fixedly connected to the side load movable plate (231) through a cylinder connecting plate.
6. The ring track device for manufacturing an atomizer assembly that facilitates positioning according to claim 5, characterized in that: Two buffer mounting plates (10) are respectively provided at both ends of the side-loading movable plate (231), and buffers (15) are mounted on the buffer mounting plates.
7. The ring track device for manufacturing an atomizer assembly that facilitates positioning according to claim 4, characterized in that: The driving assembly (9) includes a positioning plate (91) and a first cam follower (92), the first cam follower (92) is fixedly connected to the positioning plate (91), a follower groove (223) is provided on the side of the slide (2) close to the first cam follower (92), the side load movable plate (231) is slidably connected to the positioning plate (91) along a direction perpendicular to the first long slide rail (11), the first cam follower (92) can be engaged with the follower groove (223), and the driving assembly (9) also includes a third driving device, the third driving device is used to drive the positioning plate (91) to slide along a direction perpendicular to the first long slide rail (11), and the third driving device is connected to the central control module (31).
8. The ring track device for manufacturing an atomizer assembly that facilitates positioning according to claim 7, characterized in that: The third driving device comprises a third cylinder (93), and the piston shaft of the third cylinder (93) is fixedly connected to the positioning plate (91) via a floating joint.
Citation Information
Patent Citations
Annular guide rail
CN113803609A