A substrate paper pot production forming apparatus

CN224805633UActive Publication Date: 2026-09-29SHANJIA CLASSIC (BEIJING) TECH CO LTD
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Patent Information

Application Number
CN202522335954.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-04
Publication Date
2026-09-29
Estimated Expiration
2035-11-04

AI Technical Summary

Technical Problem

[0003]本实用新型所要解决的技术问题是提供一种基质纸钵生产成型设备,以解决背景技术中描述的现有技术中基质纸钵生产成型设备末端的纸钵需要人工手动放入培养钵中的问题

Benefits of technology

本申请将营养钵放在定位盒内,然后通过横移板和纵移板的移动,能够将营养钵的槽穴依次移动至导管的正下方,来接收纸钵,本申请中的纸钵会沿着设备出料板进入导管,然后被挡板阻挡,然后推板贯穿槽口,并伸入最下端的两个纸钵之间,然后挡板离开导管,旋转柱转动,使得推板能够推动纸钵向下移动落在营养钵的槽穴内,相比于现有的手动操作更加的节省人力成本。

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Abstract

The utility model discloses a substrate paper pot production forming equipment relates to substrate paper pot production forming equipment's technical field, including the pipe, and the one port is connected with equipment discharge plate, and the other port's inner side wall is opened and has the notched groove on the opening, receive the material platform, be located the lowermost part of the pipe's lower port, the rotary column, rotatable set up on the receiving material platform, the rotating plate, set up on the rotary column, the pneumatic cylinder, set up on the rotating plate, the push board, set up on the output of pneumatic cylinder, and this push board is used to penetrate the notched groove and follow rotary column rotation to push the paper pot after cutting to the groove hole in the culture pot, the crossbeam board, set up on the outer wall of pipe, the rotating column, rotatable set up on the crossbeam board, a plurality of baffle, evenly set up on the outer side wall of rotating column, and this baffle is used to follow rotating column rotation to block the lower port of pipe, the utility model discloses can reduce manpower cost and so on advantage.
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Description

Technical Field

[0001] This utility model relates to the technical field of substrate paper pot production and molding equipment, and in particular to a substrate paper pot production and molding equipment. Background Technology

[0002] Existing substrate paper pot production equipment produces paper rolls into tubes, injects substrate into them, cuts the substrate into small segments, and then workers can place the paper pots into culture pots. However, this existing substrate paper pot production equipment still requires manual labor to place the substrate-filled paper pots into the culture pots, which is inefficient and labor-intensive. Summary of the Invention

[0003] The technical problem to be solved by this utility model is to provide a substrate paper pot production and molding equipment to solve the problem that the paper pots at the end of the substrate paper pot production and molding equipment described in the background art need to be manually placed into the culture pots.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a substrate paper pot production and molding equipment, comprising... Equipment discharge plate; The guide tube is a quarter-circle arc shape, with one end connected to the equipment's discharge plate and the other end having a groove on its inner wall. The receiving platform is located directly below the lower end of the conduit. A transverse slide plate is installed on the receiving platform that can move laterally; The positioning plate is U-shaped and is set on the transverse sliding plate; The longitudinal sliding plate is mounted on the positioning plate and can move longitudinally. The positioning box is mounted on the horizontal sliding plate; A rotating column is rotatably mounted on the receiving platform; A rotating plate is mounted on a rotating column; The cylinder is mounted on the rotating plate; A pusher plate, located at the output end of the cylinder, is used to pass through the slot and rotate with the rotating column to push the cut paper bowl into the groove of the cultivation bowl. A crossbeam plate is installed on the outer wall of the conduit; A rotating column is rotatably mounted on a crossbeam plate; Several baffles are evenly arranged on the outer wall of the rotating column. These baffles are used to follow the rotation of the rotating column to block the lower port of the conduit.

[0005] Preferably, a first servo motor is provided on the crossbeam plate, and the output end of the first servo motor is connected to the rotating shaft of the rotating column.

[0006] Preferably, the receiving platform is provided with a support plate, the rotating column is rotatably mounted on the support plate, and the support plate is also provided with a second servo motor for driving the rotating column to rotate.

[0007] Preferably, the receiving platform is provided with a transverse ball screw module, the ball screw of the transverse ball screw module passes through the transverse plate and is threadedly connected to the transverse plate, and the lower surface of the transverse plate is in surface-to-surface sliding contact with the receiving platform.

[0008] Preferably, longitudinal ball screw modules are provided on the two side walls of the positioning plate. The ball screw of the longitudinal ball screw module passes through the longitudinal transfer plate and is threadedly connected to the longitudinal transfer plate. The lower surface of the longitudinal transfer plate and the middle plate of the positioning plate are in surface-to-surface sliding contact.

[0009] Preferably, the receiving platform is also equipped with a control panel, which is used to control the opening and closing of the transverse ball screw module, the longitudinal ball screw module, the first servo motor, the cylinder, and the second servo motor.

[0010] The beneficial effects of adopting the above technical solutions are: This application places the nutrient pots in a positioning box, and then moves the slots of the nutrient pots sequentially to the bottom of the guide tube by moving the horizontal and vertical moving plates to receive the paper pots. The paper pots in this application enter the guide tube along the discharge plate of the equipment, are blocked by the baffle, and then the push plate passes through the slot and extends between the two bottom paper pots. Then the baffle leaves the guide tube, the rotating column rotates, and the push plate can push the paper pots downward to fall into the slots of the nutrient pots. Compared with the existing manual operation, it saves more labor costs. Attached Figure Description

[0011] Figure 1 This is a front view of a substrate paper pot production molding equipment according to this utility model.

[0012] Figure 2 This is a front view of the catheter of this utility model.

[0013] Figure 3 This is a cross-sectional view of the catheter of this utility model.

[0014] The components include: receiving platform 10, control panel 20, transverse plate 30, transverse ball screw module 31, longitudinal plate 40, longitudinal ball screw module 41, positioning plate 42, positioning box 50, guide tube 60, slot 61, baffle 70, rotating column 71, first servo motor 72, crossbeam plate 73, push plate 80, cylinder 81, rotating plate 82, rotating column 83, second servo motor 84, support plate 85, and equipment discharge plate 90. Detailed Implementation

[0015] The embodiments of this utility model are described in detail below with reference to the accompanying drawings.

[0016] like Figure 1-3 In this first embodiment, a substrate paper pot production molding device includes... The equipment discharge plate is 90mm. The guide tube 60 is a quarter-circle arc shape, with one end connected to the equipment discharge plate 90 and the other end having a groove 61 on its inner side wall. The receiving platform 10 is located directly below the lower end of the guide tube 60; A transverse sliding plate 30 is mounted on the receiving platform 10 and can move laterally. The positioning plate 42 is U-shaped and is set on the transverse sliding plate 30; The longitudinal sliding plate 40 is mounted on the positioning plate 42 and can move longitudinally. Positioning box 50 is set on transverse plate 30; The rotating column 83 is rotatably mounted on the receiving platform 10; A rotating plate 82 is mounted on a rotating column 83; Cylinder 81 is mounted on rotating plate 82; A pusher plate 80 is located at the output end of the cylinder 81. The pusher plate 80 is used to pass through the slot 61 and rotate with the rotating column 83 to push the cut paper bowl into the groove of the cultivation bowl. A crossbeam plate 73 is disposed on the outer wall of the guide tube 60; The rotating column 71 is rotatably mounted on the crossbeam plate 73; Several baffles 70 are evenly arranged on the outer side wall of the rotating column 71. The baffles 70 are used to follow the rotation of the rotating column 71 to block the lower port of the conduit 60.

[0017] This embodiment is implemented as follows: When using this application, the nutrient pot is first placed in the positioning box 50, and the size of the nutrient pot matches the groove on the positioning box 50. Then, the positioning plate 42 is moved laterally by the horizontal moving plate 30, and the positioning box 50 is moved longitudinally by the vertical moving plate 40, thereby realizing the horizontal movement of the nutrient pot, so that the groove on the nutrient pot can move sequentially to the position facing the lower end of the guide tube 60, so as to receive the falling paper pot. Initially, the baffle 70 is located at the lower end of the guide tube 60 to block the paper bowls. As the paper bowls are continuously pushed on the discharge plate 90 of the equipment, they move into the guide tube 60. The paper bowls move to the baffle 70 at the lower end of the guide tube 60. Then, the cylinder 81 drives the push plate 80 to move, so that the push plate 80 passes through the slot 61 and enters the gap between the two lowest paper bowls. Then, the rotating column 71 rotates, so that the baffle 70 moves away from the bottom of the guide tube 60. At this time, the rotating column 83 drives the rotating plate 82 to rotate, so that the push plate 80 pushes the lowest paper bowl downwards, and the paper bowl can fall directly into the trough of the nutrient pot. Then, the baffle 70 moves back to the bottom of the guide tube 60, and then the push plate 80 returns to its original position. Due to the movement of the paper bowls, the lowest paper bowl moves to the baffle 70. At this time, the nutrient pot moves, and the new trough moves to the bottom of the guide tube 60. In this way, the paper bowls can be placed in the trough of the nutrient pot.

[0018] Please see Figure 1 A first servo motor 72 is installed on the crossbeam plate 73, and the output end of the first servo motor 72 is connected to the rotating shaft of the rotating column 71.

[0019] This application uses a first servo motor 72 on the crossbeam plate 73 to drive the rotating column 71 to rotate.

[0020] Please see Figure 1 The receiving platform 10 is provided with a support plate 85, and the rotating column 83 is rotatably mounted on the support plate 85. The support plate 85 is also provided with a second servo motor 84 for driving the rotating column 83 to rotate.

[0021] This application uses a second servo motor 84 to drive the rotating column 83 to rotate on the support plate 85.

[0022] Please see Figure 1 A transverse ball screw module 31 is provided on the receiving platform 10. The ball screw of the transverse ball screw module 31 passes through the transverse plate 30 and is threadedly connected to the transverse plate 30. The lower surface of the transverse plate 30 and the receiving platform 10 are in surface-to-surface sliding contact.

[0023] This application uses a transverse ball screw module 31 to drive the transverse plate 30 to move laterally on the processing table 10.

[0024] Please see Figure 1 The positioning plate 42 has longitudinal ball screw modules 41 on its two side walls. The ball screw of the longitudinal ball screw module 41 passes through the longitudinal transfer plate 40 and is threadedly connected to the longitudinal transfer plate 40. The lower surface of the longitudinal transfer plate 40 and the middle plate of the positioning plate 42 are in surface-to-surface sliding contact.

[0025] The longitudinal ball screw module 41 provided in this application can drive the longitudinal transfer plate 40 to move on the positioning plate 42.

[0026] Please see Figure 1 The receiving platform 10 is also equipped with a control panel 20, which is used to control the opening and closing of the transverse ball screw module 31, the longitudinal ball screw module 41, the first servo motor 72, the cylinder 81, and the second servo motor 84.

[0027] This application uses a control panel to control the opening and closing of electrical components.

[0028] The above are merely preferred embodiments of this utility model. It should be noted that, for those skilled in the art, several modifications and improvements can be made without departing from the inventive concept of this utility model, and these all fall within the protection scope of this utility model.

Claims

1. A substrate paper pot production and molding equipment, characterized in that, include Equipment discharge plate; The guide tube is a quarter-circle arc shape, with one end connected to the equipment's discharge plate and the other end having a groove on its inner wall. The receiving platform is located directly below the lower end of the conduit. A transverse slide plate is installed on the receiving platform that can move laterally; The positioning plate is U-shaped and is set on the transverse sliding plate; The longitudinal sliding plate is mounted on the positioning plate and can move longitudinally. The positioning box is mounted on the horizontal sliding plate; A rotating column is rotatably mounted on the receiving platform; A rotating plate is mounted on a rotating column; The cylinder is mounted on the rotating plate; A pusher plate, located at the output end of the cylinder, is used to pass through the slot and rotate with the rotating column to push the cut paper bowl into the groove of the cultivation bowl. A crossbeam plate is installed on the outer wall of the conduit; A rotating column is rotatably mounted on a crossbeam plate; Several baffles are evenly arranged on the outer wall of the rotating column. These baffles are used to follow the rotation of the rotating column to block the lower port of the conduit.

2. The substrate paper pot production and molding equipment according to claim 1, characterized in that, The crossbeam plate is equipped with a first servo motor, the output end of which is connected to the rotating shaft of the rotating column.

3. The substrate paper pot production and molding equipment according to claim 1, characterized in that, The receiving platform is equipped with a support plate, and the rotating column is rotatably mounted on the support plate. The support plate is also equipped with a second servo motor for driving the rotating column to rotate.

4. The substrate paper pot production and molding equipment according to claim 1, characterized in that, The receiving platform is equipped with a transverse ball screw module. The ball screw of the transverse ball screw module passes through the transverse plate and is threadedly connected to the transverse plate. The lower surface of the transverse plate is in surface-to-surface sliding contact with the receiving platform.

5. The substrate paper pot production and molding equipment according to claim 1, characterized in that, The positioning plate has longitudinal ball screw modules on its two side walls. The ball screws of the longitudinal ball screw modules pass through the longitudinal transfer plate and are threadedly connected to the longitudinal transfer plate. The lower surface of the longitudinal transfer plate and the middle plate of the positioning plate are in surface-to-surface sliding contact.