Outer sleeve feeding device
By designing the support sheet and clamping mechanism of the jacket loading device, the problem of the jacket opening closure and artificial loading efficiency caused by the robotic arm loading is solved, and an efficient jacket loading process is achieved.
Patent Information
- Application Number
- CN202421812858.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-07-30
AI Technical Summary
In the existing automatic assembly equipment of atomized core, the top opening is easily closed due to excessive clamping force, while manual loading will be low in production efficiency and waste of labor.
A jacket loading device is designed, including a feeding assembly, a feeding plate, a transmission assembly, a cutting assembly, a feeding assembly and a positioning assembly. The outer jacket opening is supported by the support piece, and combined with the lifting mechanism and the clamping mechanism to avoid the opening closure caused by the squeeze of the clamp and increase the feeding speed.
While ensuring the integrity of the jacket, the feeding speed is improved, the opening closure problem caused by excessive force clamping of the robotic arm is avoided, the production efficiency is improved, and labor waste is reduced.
Smart Images

Figure CN223162734U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of atomizing core assembly, and particularly relates to an outer sleeve feeding device. Background Art
[0002] An electronic cigarette is an electronic product that imitates a cigarette and has the same appearance, smoke, taste and feeling as a cigarette. It is a product that allows users to inhale by means of atomization and turns nicotine and the like into vapor. Among them, the atomizing core is an important component inside the electronic cigarette, which is used to atomize the e-liquid inside the electronic cigarette to produce smoke.
[0003] The atomizing core is assembled by a sponge, a cotton-wrapped rod, a heating wire, an outer sleeve and a buckle. Existing automated equipment mostly uses complex robotic arms or manual feeding for the automatic feeding of the above components. The overall shape of the outer sleeve is a ring with an opening at the top. When using a robotic arm for feeding, the opening at the top of the outer sleeve is likely to close due to excessive clamping force. When using manual feeding, the production efficiency is slow and labor is wasted.
[0004] Therefore, it is necessary to provide a technical solution to solve the above problems. Content of the Utility Model
[0005] The utility model provides an outer sleeve feeding device, aiming to solve the problems that in the existing atomizing core automatic assembly equipment, when using a robotic arm to feed the outer sleeve, the opening at the top of the outer sleeve is likely to close due to excessive clamping force, while when using manual feeding, the production efficiency is slow and labor is wasted.
[0006] To achieve the above problems, the utility model provides an outer sleeve feeding device, including a main frame, a feeding component, a feeding plate, a transmission component, a cutting component, a feeding component and a positioning component; wherein:
[0007] The feeding component is installed on the main frame and is used for placing the outer sleeve material sheet; the feeding plate is arranged on the right side of the feeding component and is installed on the main frame. A feeding channel is opened at the top of the feeding plate; the transmission component is installed on the feeding plate and is used for driving the outer sleeve material sheet to be conveyed to the right; the cutting component is arranged on the feeding plate and is used for cutting out the outer sleeve from the outer sleeve material sheet; the positioning component is arranged on the front side of the feeding plate and includes a station plate installed on the main frame and a positioning fixture installed on the station plate; the feeding component includes a driving mechanism, a lifting mechanism and a clamping mechanism; the driving mechanism is installed on the feeding plate and is used for driving the lifting mechanism to slide back and forth; the lifting mechanism is used for driving a mounting block to slide up and down; the clamping mechanism includes a finger cylinder, two clamping blocks and a support piece. The finger cylinder is installed on the mounting block, the two clamping blocks are respectively installed on the two output pieces of the finger cylinder, and the support piece is arranged between the two clamping blocks and is installed on the mounting block.
[0008] More specifically, the feeding component includes a feeding rack, a winding shaft, a first motor, a limiting roller, a material supporting track and a guiding roller; the feeding rack is fixedly connected to the main frame; the winding shaft is rotatably connected to the feeding rack, and circular baffles are respectively installed on both sides thereof; the outer sleeve material sheet is arranged between the two circular baffles and wound around the winding shaft; the first motor is installed on the feeding rack and is used to drive the winding shaft to rotate; the limiting roller is arranged outside the circular baffle, is in contact with the circular baffle and is rotatably connected to the feeding rack; the material supporting track is arranged below the circular baffle and is fixedly connected to the feeding rack; the guiding roller is fixedly connected to one end of the material supporting track close to the feeding plate.
[0009] More specifically, a first sensor is installed at one end of the feeding plate close to the feeding component.
[0010] More specifically, the transmission component includes a first cylinder, a first guide rail, a first slider and a transmission block; the first guide rail is installed on the feeding plate; the first slider is slidably connected to the first guide rail and can slide left and right along the first guide rail. An installation groove is formed on the first slider; the first cylinder is installed on the feeding plate and is used to drive the first slider to move left and right; the transmission block is arranged above the feeding channel and arranged in the installation groove, and is rotatably connected to the first slider. The top of the transmission block includes a flat surface and an inclined surface arranged on the right side of the flat surface. A triangular plate extends downward from the bottom of the transmission block, and a pushing angle is formed at the lowermost position in the triangular plate; a first spring is arranged at a position corresponding to the inclined surface of the transmission block, and the top of the first spring is in contact with the inner wall of the installation groove; a matching hole is formed on the outer sleeve material sheet; an extending hole is formed on the feeding plate at a position corresponding to the transmission block; when the pushing angle extends into the matching hole, the flat surface is in contact with the wall surface of the installation groove.
[0011] More specifically, a baffle is installed on the feeding plate. The baffle is located above the outer sleeve material sheet. An extending hole is formed on the baffle at a position corresponding to the transmission block, and the transmission block extends along the extending hole.
[0012] More specifically, the cutting component includes a movable block, a second cylinder and a pressing block; a sliding hole is formed on the feeding plate, and the movable block is slidably connected in the sliding hole; the second cylinder is installed on the feeding plate and is used to drive the movable block to lift and slide; the pressing block is above the feeding channel and above the material sheet body in the outer sleeve material sheet, and is installed on the movable block; a downward pressing groove is arranged at the bottom of the feeding channel at a position corresponding to the pressing block.
[0013] More specifically, the driving mechanism includes a mounting frame, a sliding rod, a second slider, and a third air cylinder; the mounting frame is mounted on the feeding plate; the sliding rod is fixedly connected to the mounting frame, the second slider is slidably connected to the sliding rod, and it can slide back and forth along the sliding rod; the third air cylinder is mounted on the mounting frame and is used to drive the second slider to slide back and forth.
[0014] More specifically, the lifting mechanism includes a lifting seat and a fourth air cylinder; a chute adapted to the lifting seat is formed on the second slider, and the lifting seat is slidably connected in the chute; the fourth air cylinder is mounted on the second slider and is used to drive the lifting seat to lift and slide; the mounting block is fixedly connected to the lifting seat.
[0015] More specifically, a slot hole adapted to the support piece is provided at the bottom of the mounting block, and the support piece is slidably connected in the slot hole; a second spring is provided on the outer side of the support piece, the top of the second spring is fixedly connected to the mounting block, and the bottom of the second spring is fixedly connected to the support piece.
[0016] More specifically, a divider is provided at the bottom of the station disk, and the divider is used to drive the station disk to rotate; a fixed disk is provided on the top of the station disk, the fixed disk is fixedly connected to the divider, and a second sensor is provided on the fixed disk.
[0017] The technical effect of an outer coat feeding device related to the present utility model is as follows:
[0018] In this application, the design of the support piece is adopted. When the lifting mechanism drives the mounting block to move downward, the support piece extends into the opening of the outer coat at its bottom. Subsequently, the finger air cylinder drives the two clamping blocks to move towards each other to clamp the outer coat. In cooperation with the lifting mechanism and the driving mechanism, the outer coat can be brought to the positioning fixture. This design forms a support for the opening of the outer coat through the support piece, thereby avoiding the situation that the opening at the top of the outer coat will close under the extrusion of the clamping blocks. In this way, while ensuring the integrity of the outer coat, the feeding speed of the outer coat is improved. Description of the Drawings
[0019] Figure 1 is a schematic structural diagram of an outer coat feeding device related to the present utility model;
[0020] Figure 2 is Figure 1 an enlarged schematic diagram of part A in
[0021] Figure 3 is a schematic structural diagram of another perspective of an outer coat feeding device related to the present utility model;
[0022] Figure 4Structural schematic diagram of a transmission component in a jacket loading device related to the present utility model;
[0023] Figure 5 Connection structure diagram of a transmission block and a jacket material sheet in a jacket loading device related to the present utility model;
[0024] Figure 6 Structural schematic diagram of a loading component in a jacket loading device related to the present utility model;
[0025] Figure 7 is Figure 6 Enlarged schematic diagram at position B in
[0026] Figure 8 Partial schematic diagram of a cutting component in a jacket loading device related to the present utility model.
[0027] Markings in the figure:
[0028] 1 - Unloading component; 2 - Feeding plate; 3 - Transmission component; 4 - Cutting component; 5 - Loading component; 6 - Positioning component; 7 - Jacket material sheet;
[0029] 11 - Unloading rack; 12 - Rewinding shaft; 13 - First motor; 14 - Limiting roller; 15 - Material supporting track; 16 - Guide roller; 17 - Circular baffle;
[0030] 21 - Feeding channel; 22 - First sensor; 23 - Baffle; 24 - Insertion hole;
[0031] 31 - First cylinder; 32 - First guide rail; 33 - First slider; 331 - Installation groove; 34 - Transmission block; 341 - Plane; 342 - Inclined plane; 343 - Triangular plate; 344 - Pushing angle;
[0032] 41 - Movable block; 42 - Second cylinder; 43 - Pressing block; 44 - Pressing groove;
[0033] 51 - Driving mechanism; 511 - Mounting frame; 512 - Slide bar; 513 - Second slider; 514 - Third cylinder; 52 - Lifting mechanism; 521 - Lifting seat; 522 - Fourth cylinder; 53 - Clamping mechanism; 531 - Mounting block; 532 - Finger cylinder; 533 - Clamping block; 534 - Support sheet; 535 - Second spring;
[0034] 61 - Stationary disk; 62 - Positioning fixture; 63 - Divider; 64 - Fixed disk; 65 - Second sensor;
[0035] 71 - Jacket; 72 - Main body of the material sheet; 73 - Fitting hole; Detailed implementation manners
[0036] In order to make the objectives, technical solutions and advantages of the present utility model more clear and understandable, the present utility model will be further described in detail below in conjunction with 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.
[0037] It should be noted that when an element is referred to as "fixed to" or "disposed on" another element, it can be directly on the other element or there may be an intermediate element at the same time; when an element is referred to as "connected to" another element, it can be directly connected to the other element or there may be an intermediate element at the same time.
[0038] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, "a plurality of" means two or more, unless otherwise specifically defined.
[0039] In the description of the embodiments of the present invention, it should be understood that the orientation or positional relationship indicated by "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the embodiments of the present invention and simplifying the description, rather than indicating or implying that the indicated device or element must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be understood as a limitation of the present invention.
[0040] In order to more clearly illustrate the technical solution of the present invention, a preferred embodiment is provided below. Specifically, refer to Figures 1 to 8 , an outer sleeve feeding device, including a main frame, a feeding component 1, a feeding plate 2, a transmission component 3, a cutting component 4, a feeding component 5 and a positioning component 6; wherein:
[0041] The feeding component 1 is installed on the main frame and is used to place the outer sleeve material sheet 7; the feeding plate 2 is arranged on the right side of the feeding component 1 and is installed on the main frame. A feeding channel 21 is opened at the top of the feeding plate 2; the transmission component 3 is installed on the feeding plate and is used to drive the outer sleeve material sheet 7 to be conveyed to the right; the cutting component 4 is arranged on the feeding plate 2 and is used to cut out the outer sleeve 71 on the outer sleeve material sheet 7; the positioning component 6 is arranged on the front side of the feeding plate 2 and includes a station plate 61 installed on the main frame and a positioning fixture 62 installed on the station plate 61; the feeding component 5 includes a driving mechanism 51, a lifting mechanism 52 and a clamping mechanism 53; the driving mechanism 51 is installed on the feeding plate and is used to drive the lifting mechanism 52 to slide back and forth; the lifting mechanism 52 is used to drive a mounting block 531 to lift and slide; the clamping mechanism 53 includes a finger cylinder 532, two clamping blocks 533 and a support piece 534. The finger cylinder 532 is installed on the mounting block 531, and the two clamping blocks 533 are respectively installed on the two output pieces of the finger cylinder 532. The support piece 534 is arranged between the two clamping blocks 533 and is installed on the mounting block 531.
[0042] It should be noted that the outer sleeve material sheet 7 is formed by riveting a sheet material with a stamping die, and it includes a connected outer sleeve 71 and a material sheet body 72.
[0043] The working process of the outer sleeve feeding device involved in the present utility model is as follows: the outer sleeve material sheet 7 placed on the feeding component 1 is led to the feeding plate 2, and the transmission component 3 drives the outer sleeve material sheet 7 to be conveyed to the right. When the outer sleeve material sheet 7 moves to the outside of the cutting component 4, the cutting component 4 presses the material sheet body 72 to separate from the outer sleeve 71. Subsequently, the lifting mechanism 52 drives the mounting block 531 to descend, and then the support piece 534 is driven to descend until it extends into the opening at the top of the outer sleeve 71. Then the finger cylinder 532 drives the two clamping blocks 533 to move towards each other to clamp the outer sleeve 71. Under the action of the driving mechanism 51 and the lifting mechanism 52, the outer sleeve 71 can be driven to the positioning fixture 62 on the front side of the feeding plate 2 to be assembled and cooperated with components such as a sponge, a heating wire, a cotton-covered stick and a buckle. This design forms a support for the opening of the outer sleeve 71 through the support piece 534, thereby avoiding the situation that the opening at the top of the outer sleeve 71 will close under the extrusion of the clamping blocks 533. In this way, while ensuring the integrity of the outer sleeve 71, the feeding speed of the outer sleeve 71 is improved.
[0044] Further, arc-shaped plates that bend outward are provided on both sides of the opening at the top of the outer sleeve 71. Therefore, in this embodiment, arc-shaped surfaces corresponding to the two arc-shaped plates are respectively provided on the opposite surfaces of the two clamping blocks 533. In this way, it can be ensured that the clamping blocks 533 clamp the outer sleeve 71 more firmly.
[0045] As a preferred solution of this embodiment, the feeding assembly 1 includes a feeding rack 11, a winding shaft 12, a first motor 13, a limiting roller 14, a material supporting track 15 and a guiding roller 16; the feeding rack 11 is fixedly connected to the main frame; the winding shaft 12 is rotatably connected to the feeding rack 11, and circular baffles 17 are respectively installed on both sides thereof; the outer sleeve material sheet 7 is arranged between the two circular baffles 17 and wound around the winding shaft 12; the first motor 13 is installed on the feeding rack 11 and is used to drive the winding shaft 12 to rotate; the limiting roller 14 is arranged outside the circular baffle 17, is in contact with the circular baffle 17 and is rotatably connected to the feeding rack 11; the material supporting track is arranged below the circular baffle 17 and is fixedly connected to the feeding rack 11; the guiding roller 16 is fixedly connected to one end of the material supporting track close to the feeding plate. The first motor 13 is used to drive the winding shaft 12 to rotate, so as to cooperate with the transmission assembly 3 to prevent the pulling force generated by the transmission assembly 3 from breaking the outer sleeve material sheet 7; the limiting roller 14 is used to prevent the outer sleeve material sheet 7 from slipping out of the circular baffle 17; the material supporting track is used to support the outer sleeve material sheet 7, thereby preventing the outer sleeve material sheet 7 from sagging due to gravity. If there is an excessive angle between the input of the outer sleeve material sheet 7 and the feeding plate 2, it is easy for the outer sleeve 71 to separate from the material sheet main body 72, resulting in waste of materials.
[0046] As a preferred solution of this embodiment, a first sensor 22 is installed at one end of the feeding plate 2 close to the feeding assembly 1. The first sensor 22 is used to detect whether the outer sleeve material sheet 7 is normally input on the feeding plate 2.
[0047] As a preferred solution of this embodiment, the transmission assembly 3 includes a first cylinder 31, a first guide rail 32, a first slider 33 and a transmission block 34; the first guide rail 32 is installed on the feeding plate 2; the first slider 33 is slidably connected to the first guide rail 32 and can slide left and right along the first guide rail 32. An installation groove 331 is formed on the first slider 33; the first cylinder 31 is installed on the feeding plate 2 and is used to drive the first slider 33 to move left and right; the transmission block 34 is arranged above the feeding chute 21 and is arranged in the installation groove 331. It is rotatably connected to the first slider 33. The top of the transmission block 34 includes a flat surface 341 and an inclined surface 342 arranged on the right side of the flat surface 341. A triangular plate 343 extends downward from the bottom of the transmission block 34. A pushing angle 344 is formed at the lowermost position of the triangular plate 343; a first spring is arranged at the position of the transmission block 34 corresponding to the inclined surface 342, and the top of the first spring is in contact with the inner wall of the installation groove 331; a matching hole 73 is arranged on the outer sleeve material sheet 7; the feeding plate 2 is provided with a protruding hole at the position corresponding to the transmission block 34; when the pushing angle 344 extends into the matching hole 73, the flat surface 341 is in contact with the wall surface of the installation groove 331. Since the flat surface 341 is in contact with the wall surface of the installation groove 331 when the pushing angle 344 extends into the matching hole 73, when the first cylinder 31 drives the first slider 33 to slide to the right along the first guide rail 32, the pushing angle 344 cannot retreat, and then the transmission block 34 pushes the outer sleeve material sheet 7 to move one station to the right. Subsequently, the cutting assembly 4 can cut and separate the outer sleeve 71 and the material sheet body 72. At this time, when the first cylinder 31 drives the first slider 33 to move left along the first guide rail 32, due to the action of the cutting assembly 4, the overall position of the outer sleeve material sheet 7 is fixed. Therefore, when the first slider 33 moves left, the pushing angle 344 is stressed to cause the entire transmission block 34 to rotate, so that the pushing angle 344 exits the matching hole 73. When the pushing angle 344 moves to the next matching hole 73, under the action of the first spring, the pushing angle 344 snaps into the matching hole 73, and then the above steps can be repeated to push the outer sleeve material sheet 7 one station to the right again. This design realizes the automatic feeding of the outer sleeve material sheet 7.
[0048] As a preferred solution of this embodiment, a baffle 23 is installed on the feeding plate 2. The baffle 23 is located above the outer sleeve material sheet 7. An insertion hole 24 is formed in the baffle 23 at the position corresponding to the transmission block 34, and the transmission block 34 extends along the insertion hole 24. The design of the baffle 23 limits the upward movement range of the outer sleeve material sheet 7 and prevents the outer sleeve material sheet 7 from exiting the feeding plate 2.
[0049] As a preferred solution of this embodiment, the cutting assembly 4 includes a movable block 41, a second cylinder 42 and a pressure block 43; a sliding hole is provided on the feed plate 2, and the movable block 41 is slidably connected in the sliding hole; the second cylinder 42 is mounted on the feed plate, and is used to drive the movable block 41 to rise and fall and slide; the pressure block 43 is arranged in the feed trough, and is located above the material sheet main body 72 in the jacket material sheet 7, and is mounted on the movable block 41; a lower pressing groove 44 is provided at the bottom of the feed trough 21 at a position corresponding to the pressure block 43. When the transmission assembly 3 conveys the jacket material sheet 7 to the bottom of the pressure block 43, the second cylinder 42 drives the movable block 41 downward, and the pressure block 43 then descends to press the material sheet main body 72 into the lower pressing groove 44, thereby realizing the cutting and separation of the jacket 71 and the material sheet main body 72.
[0050] As a preferred solution of this embodiment, the driving mechanism 51 includes a mounting frame 511, a sliding rod 512, a second slider 513 and a third cylinder 514; the mounting frame 511 is installed on the feeding plate 2; the sliding rod 512 is fixedly connected to the mounting frame 511, and the second slider 513 is slidably connected to the sliding rod 512, and can slide back and forth along the sliding rod 512; the third cylinder 514 is installed on the mounting frame 511, and is used to drive the second slider 513 to slide back and forth.
[0051] As a preferred solution of this embodiment, the lifting mechanism 52 includes a lifting seat 521 and a fourth cylinder 522; the second slider 513 is provided with a sliding groove adapted to the lifting seat 521, and the lifting seat 521 is slidably connected in the sliding groove; the fourth cylinder 522 is installed on the second slider 513, and is used to drive the lifting seat 521 to move up and down and slide; the mounting block 531 is fixedly connected to the lifting seat 521.
[0052] Furthermore, a limit block is provided on the outer side of the lifting seat 521 , and the limit block is used to limit the downward range of the lifting seat 521 .
[0053] As a preferred solution of this embodiment, a slot hole adapted to the support piece 534 is provided at the bottom of the mounting block 531, and the support piece 534 is slidably connected in the slot hole; a second spring 535 is provided on the outer side of the support piece 534, the top of the second spring 535 is fixedly connected to the mounting block 531, and its bottom is fixedly connected to the support piece 534. When the position of the outer sleeve 71 is deviated, the support piece 534 will collide with the outer sleeve 71 during the downward movement. To ensure that the outer sleeve 71 is not damaged, the design of the second spring 535 is adopted. Even if the support piece 534 has a certain downward pressure, it can ensure that it extends into the opening of the outer sleeve 71. At the same time, when the support piece 534 collides with the outer sleeve 71, the support piece 534 slides upward to avoid damaging the outer sleeve 71 by pressing.
[0054] Further, an arc surface is provided at the bottom of the support piece 534, and the arc surface is used to make it easier for the support piece 534 to extend into the opening at the top of the outer sleeve 71.
[0055] As a preferred solution of this embodiment, a waste material collection channel is provided on the side of the feeding plate 2 away from the discharging assembly 1 of the loading assembly 5, and the waste material collection channel is used to collect the material sheet cones separated from the outer sleeve.
[0056] As a preferred solution of this embodiment, a divider 63 is provided at the bottom of the workbench 61, and the divider 63 is used to drive the workbench 61 to rotate; a fixed disk 64 is provided on the top of the workbench 61, the fixed disk 64 is fixedly connected to the divider 63, and a second sensor 65 is provided on the fixed disk 64. The positioning fixture 62 on the workbench 61 is driven by the divider 63 to rotate to the corresponding positions of the outer semi-finished product feeding device and the buckle feeding device on the outside in turn to perform the feeding work of the atomization core semi-finished product and the buckle, so as to complete the assembly of the atomization core.
[0057] As a preferred solution of this embodiment, there are two lifting mechanisms 52, two clamping mechanisms 53 and two cutting assemblies 4, and two corresponding positioning fixtures 62 are provided. In this way, the feeding work of the previous outer sleeve 71 can be carried out simultaneously, improving the production efficiency. Specifically, in this embodiment, the distance between the two clamping mechanisms 53 is the same as the combined length of five outer sleeves 71 on the outer sleeve material sheet 7. In this way, each time the transmission assembly 3 drives the outer sleeve material sheet 7 to move forward by the length of two workstations, the two clamping mechanisms 53 can convey the outer sleeves 71 on the outer sleeve material sheet 7 in a staggered manner.
[0058] An outer sleeve feeding device involved in the present utility model solves the problems that in the existing atomization core automatic assembly equipment, when the outer sleeve is fed by a robotic arm, the opening at the top of the outer sleeve is easily closed due to excessive clamping force, while when manual feeding is used, the production efficiency is slow and labor is wasted through reasonable structural settings.
[0059] The above are only the preferred embodiments of the present utility model, and its structure is not limited to the shapes listed above. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present utility model shall be included in the protection scope of the present utility model.
Claims
1. A coat feeding device, characterized in that: It includes a main frame, a material feeding component, a feeding plate, a transmission component, a cutting component, a loading component and a positioning component; among which: The material feeding component is installed on the main frame and is used for placing the outer sleeve material sheet; the feeding plate is arranged on the right side of the material feeding component and is installed on the main frame. A feeding channel is opened at the top of the feeding plate; the transmission component is installed on the feeding plate and is used for driving the outer sleeve material sheet to be conveyed to the right; the cutting component is arranged on the feeding plate and is used for cutting out the outer sleeve from the outer sleeve material sheet; the positioning component is arranged on the front side of the feeding plate and includes a working station disk installed on the main frame and a positioning fixture installed on the working station disk; the loading component includes a driving mechanism, a lifting mechanism and a clamping mechanism; the driving mechanism is installed on the feeding plate and is used for driving the lifting mechanism to slide back and forth; the lifting mechanism is used for driving a mounting block to lift and slide; the clamping mechanism includes a finger cylinder, two clamping blocks and a support piece. The finger cylinder is installed on the mounting block, the two clamping blocks are respectively installed on the two output pieces of the finger cylinder, and the support piece is arranged between the two clamping blocks and is installed on the mounting block.
2. The outer coat feeding device according to claim 1, characterized in that: The material feeding component includes a material feeding frame, a winding shaft, a first motor, a limiting roller, a material supporting track and a guiding roller; the material feeding frame is fixedly connected to the main frame; the winding shaft is rotatably connected to the material feeding frame, and circular baffles are respectively installed on both sides thereof; the outer sleeve material sheet is arranged between the two circular baffles and is wound around the winding shaft; the first motor is installed on the material feeding frame and is used for driving the winding shaft to rotate; the limiting roller is arranged outside the circular baffle, is in contact with the circular baffle and is rotatably connected to the material feeding frame; the material supporting track is arranged below the circular baffle and is fixedly connected to the material feeding frame; the guiding roller is fixedly connected to one end of the material supporting track close to the feeding plate.
3. The outer jacket feeding device according to claim 2, wherein: A first sensor is installed at one end of the feeding plate close to the material feeding component.
4. The feeding device for an overcoat according to claim 1, characterized in that: The transmission component includes a first cylinder, a first guide rail, a first slider and a transmission block; the first guide rail is installed on the feeding plate; the first slider is slidably connected to the first guide rail and can slide left and right along the first guide rail. An installation groove is opened on the first slider; the first cylinder is installed on the feeding plate and is used for driving the first slider to move left and right; the transmission block is arranged above the feeding channel and is arranged in the installation groove and is rotatably connected to the first slider. The top of the transmission block includes a flat surface and an inclined surface arranged on the right side of the flat surface. A triangular plate extends downward from the bottom of the transmission block, and a pushing angle is formed at the lowest position in the triangular plate; a first spring is arranged at a position corresponding to the inclined surface of the transmission block, and the top of the first spring is in contact with the inner wall of the installation groove; a matching hole is arranged on the outer sleeve material sheet; an extending hole is opened on the feeding plate at a position corresponding to the transmission block; when the pushing angle extends into the matching hole, the flat surface is in contact with the wall surface of the installation groove.
5. The feeding device for an outer coat according to claim 4, wherein: A baffle is installed on the feeding plate. The baffle is located above the outer sleeve material sheet. An insertion hole is formed in the baffle at a position corresponding to the transmission block, and the transmission block extends into the insertion hole along the insertion hole.
6. The feeding device for an overcoat according to claim 1, wherein: The cutting assembly includes a movable block, a second cylinder, and a pressing block. A sliding hole is formed in the feeding plate, and the movable block is slidably connected in the sliding hole. The second cylinder is installed on the feeding plate and is used to drive the movable block to lift and slide. The pressing block is arranged above the feeding channel and above the material sheet body in the outer sleeve material sheet, and is installed on the movable block. A downward pressing groove is arranged at the bottom of the feeding channel at a position corresponding to the pressing block.
7. The feeding device for an outer garment according to claim 1, wherein: The driving mechanism includes a mounting frame, a sliding rod, a second slider, and a third cylinder. The mounting frame is installed on the feeding plate. The sliding rod is fixedly connected to the mounting frame, and the second slider is slidably connected to the sliding rod and can slide back and forth along the sliding rod. The third cylinder is installed on the mounting frame and is used to drive the second slider to slide back and forth.
8. The outer coat loading device according to claim 7, characterized in that: The lifting mechanism includes a lifting seat and a fourth cylinder. A sliding groove adapted to the lifting seat is formed in the second slider, and the lifting seat is slidably connected in the sliding groove. The fourth cylinder is installed on the second slider and is used to drive the lifting seat to lift and slide. The mounting block is fixedly connected to the lifting seat.
9. The feeding device for an overcoat according to claim 1, wherein: A slot hole adapted to the support piece is formed at the bottom of the mounting block, and the support piece is slidably connected in the slot hole. A second spring is arranged outside the support piece. The top of the second spring is fixedly connected to the mounting block, and the bottom of the second spring is fixedly connected to the support piece.
10. The outer coat feeding device according to claim 1, characterized in that: A divider is arranged at the bottom of the work station disk, and the divider is used to drive the work station disk to rotate. A fixed disk is arranged at the top of the work station disk, and the fixed disk is fixedly connected to the divider. A second sensor is arranged on the fixed disk.