Automatic packaging stock bin mechanism
By designing an automatic packaging hopper mechanism and using an inclined seat plate, limiting side plates and a paper separation mechanism, the problem of paper cards being easily disrupted when the robot suction cup takes the cards is solved, and orderly and continuous paper card removal is achieved.
Patent Information
- Application Number
- CN202423301342.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-12-31
AI Technical Summary
The existing knitted sock packaging paper cards are easily disrupted when being removed by the robot suction cup, affecting the continuous removal operation.
An automatic packaging silo mechanism was designed, including an inclined seat plate, a limiting side plate, a paper card pressing mechanism and a paper separating mechanism. The inclined silo is formed by the inclined support rod and the limiting side plate. The bottom baffle and side baffle are used to block the paper cards. The paper separating strip plate is combined to avoid the influence of friction and ensure that the robot suction cup can pick up the cards in an orderly manner.
The robot suction cup can remove the knitted sock packaging paper cards in an orderly and smooth manner, avoiding the confusion caused by friction between the paper cards and improving the continuity and efficiency of card removal.
Smart Images

Figure CN223341038U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of paper card silos for knitted socks, in particular to an automatic packaging silo mechanism. Background Art
[0002] Currently, knitted socks are packaged with paper cards, so an automatic packaging device for knitted socks paper cards is needed. During packaging, the knitted socks packaging paper cards need to be supplied, and then a robotic arm suction cup is used to place the knitted socks packaging paper cards one by one on the packaging table of the automatic packaging device for knitted socks paper cards. The existing knitted socks packaging paper cards are in stacks, and when the robotic arm suction cup takes away a knitted socks packaging paper card, the remaining knitted socks packaging paper cards are easily disturbed, affecting the continuous removal of the knitted socks packaging paper cards. Utility Model Content
[0003] The technical problem to be solved by the present invention is to overcome the existing defects and provide an automatic packaging hopper mechanism. When the robot suction cup takes away a knitted sock packaging paper card, it will not disrupt the remaining knitted sock packaging paper cards, which is conducive to the robot suction cup taking away the knitted sock packaging paper cards one by one in an orderly manner, and can effectively solve the problems in the background technology.
[0004] To achieve the above-mentioned object, the present invention provides the following technical solution: an automatic packaging silo mechanism, comprising a silo bracket, wherein the silo bracket comprises an inclined seat plate and a support rod, wherein the inclined seat plate is tilted with the front lower and the rear higher, and two vertical support rods are connected to both sides of the rear end of the inclined seat plate, and further comprising:
[0005] The paper card limiting mechanism includes a transverse adjustment component, an oblique support rod and a limiting side plate. The upper middle part of the oblique seat plate is fixedly connected to the oblique support rod, and the two sides of the oblique support rod are respectively connected to the two limiting side plates through two transverse adjustment components;
[0006] The paper card shielding assembly at the bottom of the bin includes a side baffle, a bottom baffle and a vertical adjustment assembly. Two vertical adjustment assemblies are provided on the side away from each other at the front ends of the two limiting side plates. Two side baffles are respectively installed on the two vertical adjustment assemblies. The front end of the oblique support rod is installed with a bottom baffle;
[0007] The paper card pressing mechanism is installed on the upper side of the oblique support rod;
[0008] The paper separation mechanism is installed at the front end of one of the limiting side plates.
[0009] The support rod is used to prop up the rear end of the inclined seat plate, so that the inclined seat plate maintains an inclined state with the front lower and the back higher. The inclined support rod on the inclined seat plate and the two limit side plates form an inclined material bin. The knitted sock packaging paper cards are stacked in the material bin, and the paper card pressing mechanism presses the stacked knitted sock packaging paper cards to the front end of the material bin. The bottom of the first knitted sock packaging paper card at the front end is blocked by the bottom baffle, and the tops of the knitted sock packaging paper cards on both sides are blocked by the two side baffles. The vertical adjustment component can drive the two limit side plates to move left and right, thereby changing the distance between the two limit side plates. It is suitable for knitted sock packaging paper cards of different widths. The vertical adjustment component can drive the side baffles to move up and down, thereby adapting to knitted sock packaging paper cards of different heights. A paper separation mechanism that adapts to the shape of knitted sock packaging paper cards is provided. When the robot suction cup takes away the first knitted sock packaging paper card at the front end upward, it can block the second knitted sock packaging paper card to prevent the friction between the rear side of the first knitted sock packaging paper card and the second knitted sock packaging paper card from lifting the second knitted sock packaging paper card upward, which is conducive to the robot suction cup to take away the knitted sock packaging paper cards one by one in an orderly manner.
[0010] Furthermore, the silo support further includes an inner support plate, screw 1, and screw 2. The two inner support plates are fixedly connected to each other on the sides of the two support rods that are close to each other via screw 1. The tops of the two inner support plates respectively abut the left and right sides of the rear end bottom of the inclined seat plate, and the tops of the inner support plates are fixedly connected to the inclined seat plate via screw 2. Screw 1 is used to connect the support rods and the inner support plates, and the inner support plates are used to stably support the rear end of the inclined seat plate.
[0011] Furthermore, the lateral adjustment assembly includes a transverse guide rod, a sliding sleeve, a lead screw nut, a lead screw, an end frame and a knob 1, wherein the middle portions of both sides of the oblique support rod are rotatably connected to one end of two transverse lead screws, two lead screw nuts are respectively inlaid and installed on the lower middle portions of the two limiting side plates, and the lead screw nuts are matched with the corresponding lead screws, the side portions of the oblique support rod are respectively fixedly connected to one end of the two transverse guide rods at positions in front and behind the lead screws, and the other ends of the two transverse guide rods are fixedly connected to the two ends of the end frame, the middle portion of the end frame is rotatably connected to the corresponding lead screws through a bearing, and the end of the lead screw away from the oblique support rod is fixedly connected to the knob 1, and the bottom of the limiting side plate is fixedly connected to a sliding sleeve slidably connected to the transverse guide rod. By rotating the lead screw by the knob 1, the threaded action of the lead screw and the lead screw nut can drive the limiting side plate to move left and right along the transverse guide rod through the sliding sleeve, thereby changing the distance between the limiting side plate and the oblique support rod, and also changing the distance between the two limiting side plates. The provision of the end frame can make the lead screw more stably installed, and can also prevent the sliding sleeve from being separated from the transverse guide rod.
[0012] Furthermore, the vertical adjustment assembly includes a vertical plate, an upper seat, a stud, a second knob, an adjustment block, a vertical guide rail, and a middle seat. The two side plates are fixedly connected to the sides of the front ends of the two limiting side plates that are away from each other. The top of each vertical plate is fixedly connected to the upper seat, the middle of each vertical plate is fixedly connected to the middle seat, a vertical stud is rotatably connected between the middle seat and the upper seat, and the portion of each vertical plate located between the middle seat and the upper seat is fixedly connected to the vertical guide rail. The vertical guide rail is vertically slidably connected to the adjustment block. The screw holes on the adjustment block are threadedly connected to the corresponding studs, and the top of the stud is fixedly connected to the second knob. The front side of the adjustment block is fixedly connected to the side block. By rotating the stud clockwise by the second knob, the threaded action of the stud and the adjustment block drives the adjustment block to move upward along the vertical guide rail. By rotating the stud counterclockwise by the second knob, the threaded action of the stud and the adjustment block drives the adjustment block to move downward along the vertical guide rail, thereby changing the height of the side block so that the two side block can block the top two sides of the knitted sock packaging paper card.
[0013] Furthermore, the paper card pressing mechanism includes an inclined guide rail, a slider, and a weight block. The inclined guide rail is fixedly connected to the upper side of the inclined support rod, and the slider is slidably connected to the inclined guide rail. The top of the slider is connected to the bottom end of the weight block. The slider can slide freely forward and backward along the inclined guide rail. Due to the gravity of the weight block, the weight block and slider slide forward along the inclined guide rail, thereby pressing the knitted sock packaging paper cards stacked in the hopper toward the front end.
[0014] Furthermore, the paper card pressing mechanism further includes a reset wrench, which is threadedly connected to one side of the top of the weight block. When the knitted sock packaging paper cards in the hopper are removed by the robot suction cup, the reset wrench pushes the weight block backward to replace the knitted sock packaging paper cards in the hopper.
[0015] Furthermore, the paper separation mechanism includes a bent plate, three screws and a paper separation strip, wherein the front end of one of the limiting side plates is fixedly connected to the bent plate, the front end of the bent plate is fixedly connected to one end of the paper separation strip by three screws, the paper separation strip and the inclined seat plate are arranged parallel to each other, and the other end of the paper separation strip extends to the upper side of the front end of the inclined support rod. The main body of the knitted sock packaging paper card is rectangular, and a notch is provided at the right end of the bottom of the knitted sock packaging paper card corresponding to the position of the paper separating mechanism, and a protrusion is provided at the bottom of the left end of the notch. The bent plate and screw three are used to install the paper separating strip, and the left end of the paper separating strip extends into the notch of the stacked knitted sock packaging paper cards. The left end of the paper separating strip is located on the upper side of the protrusion, and the front edge of the paper separating strip corresponds to the back side of the first knitted sock packaging paper card at the front end of the hopper. The robot suction cup moves to the front side of the hopper, and then the robot suction cup sucks the first knitted sock packaging paper card at the front end of the hopper, and then the robot suction cup moves upward a short distance first. At this time, since the front edge of the paper separating strip corresponds to the back side of the first knitted sock packaging paper card at the front end of the hopper, the paper separating The paper strip board will not block the protrusion of the first knitted sock packaging paper card at the front end of the hopper, and will not interfere with the upward movement of the first knitted sock packaging paper card at the front end of the hopper, but will block the protrusion top of the second knitted sock packaging paper card at the front end of the hopper, preventing the friction between the back side of the first knitted sock packaging paper card and the second knitted sock packaging paper card from lifting the second knitted sock packaging paper card upward. Since the first knitted sock packaging paper card moves upward, the bottom of the first knitted sock packaging paper card is no longer blocked by the bottom baffle, and then the robot suction cup moves forward, and the top of the first knitted sock packaging paper card that is sucked is deformed until it is separated from the two side baffles, and the knitted sock packaging paper card is successfully removed. The above steps can be repeated to remove the knitted sock packaging paper cards one by one in an orderly manner.
[0016] Compared with the existing technology, the beneficial effects of this automatic packaging silo mechanism are:
[0017] 1. The oblique support rod on the inclined seat plate and the two limiting side plates form an inclined silo. The knitted sock packaging paper cards are stacked in the silo. The pressure of the pressure block slides to the front end of the silo. The bottom of the knitted sock packaging paper cards is blocked by the bottom baffle, and the tops of the knitted sock packaging paper cards on both sides are blocked by the two side baffles. The distance between the two limiting side plates is adjustable, which is suitable for different types of knitted sock packaging paper cards. The robot suction cup sucks the first knitted sock packaging paper card at the front end of the silo and moves upward first. The bottom of the first knitted sock packaging paper card is no longer blocked by the bottom baffle. Then it moves forward. The top of the first knitted sock packaging paper card is deformed, thereby disengaging from the two side baffles. The process of removing the knitted sock packaging paper cards from the silo can be completed smoothly and quickly.
[0018] 2. A paper separation mechanism adapted to the shape of the knitted sock packaging paper card is provided. When the robot suction cup takes away the first knitted sock packaging paper card at the front end, it can block the second knitted sock packaging paper card, preventing the friction between the rear side of the first knitted sock packaging paper card and the second knitted sock packaging paper card from lifting the second knitted sock packaging paper card upward, which is conducive to the robot suction cup to take away the knitted sock packaging paper cards one by one in an orderly manner. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a schematic diagram of the structure of the utility model;
[0020] Figure 2 This is a side view structural diagram of the utility model;
[0021] Figure 3 This is a schematic diagram of the rear structure of the utility model;
[0022] In the figure: 1 silo bracket, 11 oblique seat plate, 12 support rod, 13 inner support plate, 14 screw one, 15 screw two, 2 paper card limiting mechanism, 21 oblique support rod, 22 cross guide rod, 23 sliding sleeve, 24 limiting side plate, 25 screw nut, 26 screw, 27 end frame, 28 knob one, 3 paper card pressing mechanism, 31 oblique guide rail, 32 slider, 33 pressure block, 34 reset wrench, 4 bin bottom paper card shielding assembly, 41 vertical plate, 42 upper seat, 43 stud, 44 knob two, 45 adjustment block, 46 vertical guide rail, 47 side baffle, 48 middle seat, 49 bottom baffle, 5 paper separating mechanism, 51 bent plate, 52 screw three, 53 paper strip plate, 6 knitted socks packaging paper card. DETAILED DESCRIPTION
[0023] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0024] For example 1, please refer to Figures 1 to 3 The utility model provides a technical solution: an automatic packaging silo mechanism, comprising a silo bracket 1, the silo bracket 1 comprising an inclined seat plate 11 and a support rod 12, the inclined seat plate 11 being tilted with the front lower and the rear higher, and two vertical support rods 12 are connected to both sides of the rear end of the inclined seat plate 11;
[0025] The silo bracket 1 also includes an inner support plate 13, screw 14, and screw 2 15. The two inner support plates 13 are fixedly connected to each other on the side of the two support rods 12 that are close to each other via screw 14. The tops of the two inner support plates 13 respectively abut the left and right sides of the rear end bottom of the inclined seat plate 11, and the tops of the inner support plates 13 are fixedly connected to the inclined seat plate 11 via screw 2 15. Screw 14 is used to connect the support rods 12 and the inner support plates 13, and the inner support plates 13 are used to stably support the rear end of the inclined seat plate 11.
[0026] It also includes a paper card limiting mechanism 2, a paper card blocking component 4 at the bottom of the bin, a paper card pressing mechanism 3 and a paper separating mechanism 5;
[0027] The paper card limiting mechanism 2 includes a transverse adjustment component, an inclined support rod 21 and a limiting side plate 24. The inclined support rod 21 is fixedly connected to the upper middle side of the inclined seat plate 11. The two sides of the inclined support rod 21 are connected to the two limiting side plates 24 through two transverse adjustment components.
[0028] The lateral adjustment assembly includes a transverse guide rod 22, a sleeve 23, a screw nut 25, a screw 26, an end frame 27 and a knob 28. The middle parts of both sides of the oblique support rod 21 are rotatably connected to one end of the two transverse screws 26, and two screw nuts 25 are respectively inlaid and installed on the lower middle sides of the two limiting side plates 24. The screw nuts 25 are cooperated with the corresponding screws 26 to be connected. The side surfaces of the oblique support rod 21 are located at the front and rear sides of the screw 26 and are respectively fixedly connected to one end of the two transverse guide rods 22. The other ends of the two transverse guide rods 22 are fixedly connected to the two ends of the end frame 27. The middle part of the end frame 27 is rotatably connected to the corresponding screw 26 through a bearing, and the end of the screw 26 away from the oblique support rod 21 is fixedly connected to a knob 28. The bottom of the limiting side plate 24 is fixedly connected to a sleeve 23 slidably connected to the transverse guide rod 22. By rotating the lead screw 26 through the knob 28, the threaded action of the lead screw 26 and the lead screw nut 25 can drive the limiting side plate 24 to move left and right along the cross guide rod 22 through the sliding sleeve 23, thereby changing the distance between the limiting side plate 24 and the oblique support rod 21, and also changing the distance between the two limiting side plates 24. The setting of the end frame 27 can make the lead screw 26 more stable. It can also prevent the sliding sleeve 23 from being separated from the cross guide rod 22.
[0029] The paper card shielding assembly 4 at the bottom of the bin includes a side baffle 47, a bottom baffle 49 and a vertical adjustment assembly. Two vertical adjustment assemblies are provided on the side away from each other at the front ends of the two limiting side plates 24. Two side baffles 47 are respectively installed on the two vertical adjustment assemblies. The bottom baffle 49 is installed at the front end of the oblique support rod 21.
[0030] The vertical adjustment assembly includes a vertical plate 41, an upper seat 42, a stud 43, a second knob 44, an adjustment block 45, a vertical guide rail 46 and a middle seat 48. The front ends of the two limiting side plates 24 are fixedly connected to the two vertical plates 41 on the side away from each other. The top of each vertical plate 41 is fixedly connected to the upper seat 42, and the middle of each vertical plate 41 is fixedly connected to the middle seat 48. A vertical stud 43 is rotatably connected between the middle seat 48 and the upper seat 42. The part of each vertical plate 41 located between the middle seat 48 and the upper seat 42 is fixedly connected to the vertical guide rail 46. The vertical guide rail 46 is vertically slidably connected to the adjustment block 45. The screw holes on the adjustment block 45 are threadedly connected to the corresponding studs 43, and the top of the stud 43 is fixedly connected to the second knob 44, and the front side of the adjustment block 45 is fixedly connected to the side baffle 47. By rotating the stud 43 clockwise through the second knob 44, the screw thread of the stud 43 and the adjusting block 45 drives the adjusting block 45 to move upward along the vertical guide rail 46. By rotating the stud 43 counterclockwise through the second knob 44, the screw thread of the stud 43 and the adjusting block 45 drives the adjusting block 45 to move downward along the vertical guide rail 46, thereby changing the height of the side baffles 47 so that the two side baffles 47 can block the top two sides of the knitted sock packaging paper card 6.
[0031] The paper card pressing mechanism 3 is installed on the upper side of the oblique support rod 21;
[0032] The paper separation mechanism 5 is mounted at the front end of one of the limiting side plates 24 .
[0033] When in use, the support rod 12 is used to prop up the rear end of the inclined seat plate 11, so that the inclined seat plate 11 maintains an inclined state with the front lower and the back higher. The inclined support rod 21 on the inclined seat plate 11 and the two limiting side plates 24 constitute an inclined material bin, and the knitted sock packaging paper cards 6 are stacked in the material bin. The paper card pressing mechanism 3 presses the stacked knitted sock packaging paper cards 6 to the front end of the material bin. The bottom of the first knitted sock packaging paper card 6 at the front end is blocked by the bottom baffle 49, and the tops of the knitted sock packaging paper card 6 on both sides are blocked by the two side baffles 47. The vertical adjustment component can drive the two limiting side plates 24 to move left and right, thereby changing the two limiting side plates The distance between 24 is suitable for knitted socks packaging paper cards 6 of different widths. The vertical adjustment component can drive the side baffles 47 to move up and down, thereby adapting to knitted socks packaging paper cards 6 of different heights. A paper separation mechanism 5 that adapts to the shape of the knitted socks packaging paper cards 6 is provided. When the robot suction cup takes away the first knitted socks packaging paper card 6 at the front end upward, it can block the second knitted socks packaging paper card 6 to avoid the friction between the rear side of the first knitted socks packaging paper card 6 and the second knitted socks packaging paper card 6 from lifting the second knitted socks packaging paper card 6 upward, which is conducive to the robot suction cup to take away the knitted socks packaging paper cards 6 one by one in an orderly manner.
[0034] For example 2, please refer to Figures 1 to 3, the utility model provides a technical solution: automatic packaging silo mechanism, this embodiment is a further explanation of the structure of embodiment 1;
[0035] The paper card pressing mechanism 3 comprises an inclined guide rail 31, a slider 32, and a weight block 33. The inclined guide rail 31 is fixedly connected to the upper side of the inclined support rod 21. The slider 32 is slidably connected to the inclined guide rail 31, and the top of the slider 32 is connected to the bottom end of the weight block 33. The slider 32 can slide freely forward and backward along the inclined guide rail 31. Due to the weight of the weight block 33, the weight block 33 and the slider 32 slide forward along the inclined guide rail 31, thereby pressing the knitted sock packaging paper cards 6 stacked in the hopper toward the front.
[0036] The paper card pressing mechanism 3 also includes a reset wrench 34, which is threadedly connected to one side of the top of the weight block 33. When the knitted sock packaging paper cards 6 in the hopper are removed by the robot suction cup, the reset wrench 34 pushes the weight block 33 backward to replace the knitted sock packaging paper cards 6 in the hopper.
[0037] For example three, please refer to Figures 1 to 3 , the utility model provides a technical solution: automatic packaging silo mechanism, this embodiment is a further explanation of the structure of embodiment 2;
[0038] The paper separation mechanism 5 includes a bent plate 51, screw three 52 and a paper separation strip plate 53. The front end of one of the limiting side plates 24 is fixedly connected to the bent plate 51. The front end of the bent plate 51 is fixedly connected to one end of the paper separation strip plate 53 by screw three 52. The paper separation strip plate 53 and the inclined seat plate 11 are arranged parallel to each other, and the other end of the paper separation strip plate 53 extends to the upper side of the front end of the inclined support rod 21. The main body of the knitted sock packaging paper card 6 is rectangular, and a notch is provided at the right end of the bottom of the knitted sock packaging paper card 6 corresponding to the position of the paper separating mechanism 5, and a protrusion is provided at the bottom of the left end of the notch. The bent plate 51 and the screw three 52 are used to install the paper separating strip plate 53, and the left end of the paper separating strip plate 53 extends into the notch of the stacked knitted sock packaging paper card 6, and the left end of the paper separating strip plate 53 is located on the upper side of the protrusion, and the front edge of the paper separating strip plate 53 corresponds to the back side of the first knitted sock packaging paper card 6 at the front end of the hopper. The manipulator suction cup moves to the front side of the hopper, and then the manipulator suction cup sucks the first knitted sock packaging paper card 6 at the front end of the hopper, and then the manipulator suction cup first moves upward a short distance. At this time, since the front edge of the paper separating strip plate 53 corresponds to the back side of the first knitted sock packaging paper card 6 at the front end of the hopper Therefore, the paper dividing strip plate 53 will not block the protrusion of the first knitted socks packaging paper card 6 at the front end of the hopper, and will not interfere with the upward movement of the first knitted socks packaging paper card 6 at the front end of the hopper, but will block the protruding top of the second knitted socks packaging paper card 6 at the front end of the hopper, preventing the friction between the rear side of the first knitted socks packaging paper card and the second knitted socks packaging paper card from lifting the second knitted socks packaging paper card upward. Since the first knitted socks packaging paper card 6 moves upward, the bottom of the first knitted socks packaging paper card is no longer blocked by the bottom baffle 49, and then the robot suction cup moves forward, and the top of the first knitted socks packaging paper card 6 that is sucked is deformed until it is separated from the two side baffles 47, and the knitted socks packaging paper card 6 is successfully removed. The above steps can be repeated to remove the knitted socks packaging paper cards 6 one by one in an orderly manner.
[0039] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.
[0040] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An automatic packaging silo mechanism, comprising a silo bracket (1), wherein the silo bracket (1) comprises an inclined seat plate (11) and a support rod (12), wherein the inclined seat plate (11) is tilted with the front lower and the rear higher, and two vertical support rods (12) are connected to both sides of the rear end of the inclined seat plate (11), characterized in that: Also includes: The paper card limiting mechanism (2) comprises a transverse adjustment component, an inclined support rod (21) and a limiting side plate (24), wherein the upper middle side of the inclined seat plate (11) is fixedly connected to the inclined support rod (21), and the two sides of the inclined support rod (21) are respectively connected to the two limiting side plates (24) via two transverse adjustment components; The paper card shielding assembly (4) at the bottom of the bin comprises a side baffle (47), a bottom baffle (49) and a vertical adjustment assembly. Two vertical adjustment assemblies are provided on the side of the front ends of the two limiting side plates (24) that are away from each other. Two side baffles (47) are respectively installed on the two vertical adjustment assemblies. The front end of the oblique support rod (21) is installed with a bottom baffle (49); A paper card pressing mechanism (3) is mounted on the upper side of the oblique support rod (21); The paper separation mechanism (5) is mounted on the front end of one of the limiting side plates (24).
2. The automatic packaging silo mechanism according to claim 1, characterized in that: The silo bracket (1) further comprises an inner support plate (13), screw one (14) and screw two (15), and the two sides of the two support rods (12) close to each other are fixedly connected to the two inner support plates (13) by screw one (14), and the tops of the two inner support plates (13) respectively abut against the left and right sides of the rear end bottom of the inclined seat plate (11), and the tops of the inner support plates (13) are fixedly connected to the inclined seat plate (11) by screw two (15).
3. The automatic packaging silo mechanism according to claim 1, characterized in that: The lateral adjustment assembly includes a transverse guide rod (22), a sliding sleeve (23), a screw nut (25), a screw (26), an end frame (27) and a knob (28). The middle of both sides of the inclined support rod (21) is rotatably connected to one end of two transverse screws (26), and the lower middle sides of the two limiting side plates (24) are respectively inlaid with two screw nuts (25). The screw nuts (25) are connected with the corresponding screws (26). The side of the inclined support rod (21) is The surfaces are respectively fixedly connected to one end of two transverse guide rods (22) at the front and rear sides of the lead screw (26), and the other ends of the two transverse guide rods (22) are fixedly connected to the two ends of the end frame (27). The middle part of the end frame (27) is rotatably connected to the corresponding lead screw (26) through a bearing, and the end of the lead screw (26) away from the oblique support rod (21) is fixedly connected to a knob (28), and the bottom of the limiting side plate (24) is fixedly connected to a sliding sleeve (23) that is slidably connected to the transverse guide rod (22).
4. The automatic packaging silo mechanism according to claim 1, characterized in that: The vertical adjustment assembly comprises a vertical plate (41), an upper seat (42), a stud (43), a second knob (44), an adjustment block (45), a vertical guide rail (46) and a middle seat (48). The front ends of the two limiting side plates (24) are fixedly connected to the two vertical plates (41) on the sides away from each other. The top of each vertical plate (41) is fixedly connected to the upper seat (42). The middle of each vertical plate (41) is fixedly connected to the middle seat (48). The middle seat (48) and the upper seat (42) are fixedly connected. 2) are rotatably connected with a vertical stud (43), and a portion of each vertical plate (41) located between the middle seat (48) and the upper seat (42) is fixedly connected with a vertical guide rail (46), and the vertical guide rail (46) is vertically slidably connected to the adjustment block (45), and the screw hole on the adjustment block (45) is threadedly connected to the corresponding stud (43), and the top of the stud (43) is fixedly connected with a knob 2 (44), and the front side of the adjustment block (45) is fixedly connected with a side baffle (47).
5. The automatic packaging silo mechanism according to claim 1, characterized in that: The paper card pressing mechanism (3) comprises an inclined guide rail (31), a slider (32) and a weight block (33); the upper side of the inclined support rod (21) is fixedly connected to the inclined guide rail (31); the slider (32) is slidably connected to the inclined guide rail (31); and the top of the slider (32) is connected to the bottom end of the weight block (33).
6. The automatic packaging silo mechanism according to claim 5, characterized in that: The paper card pressing mechanism (3) further comprises a reset wrench (34), and a top side of the weight block (33) is threadedly connected to the reset wrench (34).
7. The automatic packaging silo mechanism according to claim 1, characterized in that: The paper separation mechanism (5) comprises a bent plate (51), three screws (52) and a paper separation strip plate (53), wherein the front end of one of the limiting side plates (24) is fixedly connected to the bent plate (51), and the front end of the bent plate (51) is fixedly connected to one end of the paper separation strip plate (53) by means of three screws (52), and the paper separation strip plate (53) and the inclined seat plate (11) are arranged parallel to each other, and the other end of the paper separation strip plate (53) extends to the upper side of the front end of the inclined support rod (21).