Timing electric turnover device for silkworm breeding paper cocooning frame
By designing a timed electric flipping device for silkworm rearing square clusters with a support frame, rotating frame, and limiting components, the problem of inconvenient disassembly of square clusters is solved, enabling convenient disassembly and stable flipping of square clusters, which is suitable for the growth needs of silkworms.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GENGSHENGJI (CHONGQING) ECOLOGICAL AGRI CO LTD
- Filing Date
- 2025-05-23
- Publication Date
- 2026-04-17
AI Technical Summary
In existing technologies, the disassembly and replacement of grid clusters are inconvenient, requiring sequential disassembly and assembly, which leads to cumbersome operations.
A timed electric flipping device for silkworm rearing square clusters was designed, including a support, a rotating frame, and limiting components. The square clusters are stably placed in a holding component by multiple limiting components and fixed by a cover plate. Combined with a stepper motor, the timed flipping is achieved, ensuring the stability of the square clusters and easy disassembly.
It enables convenient disassembly and replacement of the grid clusters, adapts to the growth needs of silkworms, and ensures the stability and synchronization of the flipping process.
Smart Images

Figure CN224125016U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of aquaculture equipment technology, specifically to a timed electric flipping device for silkworm rearing grid clusters. Background Technology
[0002] A square cocoon is a porous silkworm cocoon made of cardboard with rectangular perforations. To ensure that the silkworms can evenly distribute themselves within the square cocoon to spin their cocoons, the squares need to be rotated.
[0003] Chinese patent document CN216415694U discloses a timed electric flipping device for silkworm rearing square clusters, including a lifting platform. One end of the lifting platform is fixedly connected to a lifting lubrication hoop, and a lifting slide rod is movably connected to the inner side of the lifting lubrication hoop. The bottom end of the lifting slide rod is fixedly connected to a lifting base, and the top end of the lifting base is fixedly connected to a lifting bracket. A first steering wheel is movably connected to the top end of the lifting bracket, a second steering wheel is movably connected to one end of the lifting bracket, and a lifting stepper motor is movably connected to one side of the lifting bracket.
[0004] However, in the above solution, by clamping the rotating shaft through the grid cluster and inserting it into the hole of the closing rotating hoop, the rotating stepper motor rotates the grid cluster on the rotating bracket through the cooperation of the clamping rotating shaft and the closing rotating hoop. In use, the method of fixing through the grid cluster requires the disassembly and assembly of multiple grid clusters in sequence, which makes the disassembly and replacement of the grid clusters inconvenient. Utility Model Content
[0005] The purpose of this invention is to address the problems existing in the background technology by proposing a timed electric flipping device for silkworm rearing grid clusters.
[0006] The technical solution of this utility model is: a timed electric flipping device for silkworm rearing square clusters, including a support, a rotating frame and a limiting component;
[0007] The rotating frame is rotatably mounted on the top of the bracket, and the end of the bracket is equipped with a stepper motor for driving the rotating frame to rotate on the bracket at regular intervals during use;
[0008] There are multiple limiting components, all of which are fitted in the middle of the rotating frame. The side of the limiting components is provided with a holding component for placing the grid clusters in the use state.
[0009] The cover is positioned at the top of the container and connected to the top of the grid cluster.
[0010] Preferably, the rotating frame includes a mounting plate and a square rod;
[0011] There are two mounting plates, both of which are rotatably mounted on the top of the bracket;
[0012] There are four square bars, each positioned between two mounting plates and located at a corner of the mounting plates.
[0013] Preferably, the end of the square rod extends through the mounting plate to the side of the mounting plate and the end face is flush with the side of the mounting plate. A threaded joint is provided at the end of the square rod and on the side of the mounting plate, and a nut connected to the mounting plate is sleeved on the outside of the threaded joint of the square rod.
[0014] Preferably, the limiting assembly includes a second bolt and a sleeve;
[0015] There are multiple sleeves, all of which are fitted onto the outside of the square rod, and four sleeves are grouped together.
[0016] The second bolt is threaded onto the side of the sleeve and its end passes through the sleeve to connect with the square rod.
[0017] Preferably, the holding component includes a support shell and a connecting shell;
[0018] There are two support shells, which are symmetrically installed on the side of the sleeve and wrapped around the bottom of the square cluster.
[0019] There are two connecting shells, with the two supporting shells symmetrically installed on the side of the sleeve and wrapped around the top side of the square cluster.
[0020] Preferably, each of the four sides of the grid cluster is provided with a connecting rod, and the ends of the connecting rods are respectively connected to the support shell, the cover plate and the connecting shell.
[0021] Preferably, a first bolt is threaded to one side of the top of the cover plate, and the bottom end of the first bolt passes through the cover plate and is inserted into the side of the connecting shell and threadedly connected to the connecting shell.
[0022] Preferably, it also includes a base, rollers, and a connecting ring;
[0023] The connecting rings are fitted onto the outside of the four square rods;
[0024] The base is located below the connecting ring;
[0025] There are two rollers, both of which are rotatably mounted on the top of the base and are tactilely connected to the connecting ring.
[0026] Compared with the prior art, the above-mentioned technical solution of this utility model has the following beneficial technical effects:
[0027] This invention sets up multiple holding components and uses a limiting component to adapt the spacing of the multiple holding components to the growth needs of silkworms. At the same time, the square clusters are placed in each holding component and fixed to the top of the holding component by a cover plate, ensuring that the square clusters are stably placed in the holding component, making the disassembly and replacement of the square clusters more convenient. Attached Figure Description
[0028] Figure 1 This is a perspective view of one embodiment of the present invention.
[0029] Figure 2 This is an exploded view of the rotating frame structure in one embodiment of the present invention.
[0030] Figure 3 This is a schematic diagram of the grid cluster installation structure in one embodiment of the present invention.
[0031] Figure 4 This is an exploded view of the connection structure between the holding component and the cover plate in one embodiment of the present invention.
[0032] Figure 5 This is a schematic diagram of the support component structure in one embodiment of the present invention.
[0033] Reference numerals: 1. Bracket; 2. Stepper motor; 3. Mounting plate; 4. Square rod; 5. Grid cluster; 6. Support shell; 7. Base; 8. Roller; 9. Connecting ring; 10. Cover plate; 11. Nut; 12. First bolt; 13. Second bolt; 14. Sleeve; 15. Connecting rod; 16. Connecting shell. Detailed Implementation
[0034] Example 1
[0035] like Figure 1-4 As shown, the present invention proposes a timed electric flipping device for silkworm rearing square clusters, which includes a support 1, a rotating frame, and a limiting component.
[0036] The rotating frame is rotatably mounted on the top of the bracket 1. The end of the bracket 1 is provided with a stepper motor 2 for driving the rotating frame to rotate on the bracket 1 at a time during use. The stepper motor 2 is connected to the rotating frame through a transmission structure, and the transmission structure can be selected from one of the following: chain drive, synchronous belt drive, and gear drive. Furthermore, during use, the stepper motor 2 can be controlled by an electrical control box so that the start of the stepper motor 2 can be timed, which is not shown in the prior art diagram.
[0037] There are multiple limiting components, all of which are fitted in the middle of the rotating frame. The side of the limiting components is provided with a holding component for placing the grid cluster 5 in the use state.
[0038] The cover plate 10 is disposed at the top of the holding component and connected to the top of the grid cluster 5, and is used to seal the top of the holding component during use, so that the grid cluster 5 is fixed in the holding component.
[0039] In this embodiment, the positions of multiple holding components are adjusted by the limiting component to make them evenly distributed on the rotating frame, ensuring that the spacing is adapted to the growth needs of silkworms. The square clusters 5 are placed in each holding component, and the cover plate 10 is fixed to the top of the holding component to ensure that the square clusters 5 are stably placed in the holding component. Under the control of the electrical control box, the stepper motor 2 drives the rotating frame to rotate at regular intervals, so that the rotating frame rotates multiple holding components synchronously through the limiting component, thereby causing multiple square clusters 5 to rotate synchronously.
[0040] Example 2
[0041] like Figure 2 As shown, the present invention proposes a timed electric rotating device for silkworm rearing square clusters. Compared with the first embodiment, the difference in this embodiment is that the rotating frame includes a mounting plate 3 and a square rod 4.
[0042] There are two mounting plates 3, and both mounting plates 3 are rotatably mounted on the top of the bracket 1;
[0043] There are four square rods 4, and each of the four square rods 4 is positioned between two mounting plates 3 and at the corner of the mounting plates 3.
[0044] In an optional embodiment, the end of the square rod 4 extends through the mounting plate 3 to the side of the mounting plate 3 and the end face is flush with the side of the mounting plate 3. A threaded joint is provided at the end of the square rod 4 and on the side of the mounting plate 3. A nut 11 connected to the mounting plate 3 is sleeved on the outside of the threaded joint of the square rod 4, so that the mounting plate 3 and the square rod 4 can be detachably connected through the cooperation of the threaded joint and the nut 11 during use.
[0045] In this embodiment, the mounting plate 3 is rotatably mounted on the top of the bracket 1, and after the square rod 4 is connected to the limiting component, four square rods 4 are respectively inserted into the corners of the mounting plate 3, so that the two mounting plates 3 are connected through the square rods 4. At the same time, the nut 11 is connected to the threaded joint of the square rod 4 on the side of the mounting plate 3, so that the square rod 4 is limited on the mounting plate 3, so that the square rod 4 supports the limiting component and the holding component, and so that the mounting plate 3 on the bracket 1 drives the square cluster 5 to rotate stably through the square rod 4.
[0046] Example 3
[0047] like Figure 3 As shown, the present invention proposes a timed electric flipping device for silkworm rearing square clusters. Compared with the first embodiment, the difference in this embodiment is that the limiting component includes a second bolt 13 and a sleeve 14.
[0048] There are multiple sleeves 14, and multiple sleeves 14 are all sleeved on the outside of the square rod 4, and four sleeves 14 are grouped together.
[0049] The second bolt 13 is threaded onto the side of the sleeve 14 and its end passes through the sleeve 14 to connect with the square rod 4.
[0050] In this embodiment, by sleeve 14 being fitted onto the outside of square rod 4 and connected to the holding component, the holding component can be adjusted in position by sliding on square rod 4 via sleeve 14. The second bolt 13 is threadedly connected to sleeve 14, and the end of the second bolt 13 passes through sleeve 14 and is connected to square rod 4, thereby fixing the position of sleeve 14 and fixing the holding component to square rod 4, ensuring that the holding component remains stable during the flipping process.
[0051] Example 4
[0052] like Figure 4 As shown, the present invention proposes a timed electric flipping device for silkworm rearing square clusters. Compared with the first embodiment, the difference in this embodiment is that the holding component includes a support shell 6, a cover plate 10, and a connecting shell 16.
[0053] There are two support shells 6, which are symmetrically installed on the side of the sleeve 14 and wrapped around the bottom of the square cluster 5.
[0054] There are two connecting shells 16, and the two supporting shells 6 are symmetrically installed on the side of the sleeve 14 and wrapped around the top side of the square cluster 5.
[0055] The cover plate 10 is located at the top of the connecting shell 16 and is connected to the top of the grid cluster 5.
[0056] In an optional embodiment, each of the four sides of the grid cluster 5 is provided with a connecting rod 15. The ends of the connecting rods 15 are respectively connected to the support shell 6, the cover plate 10, and the connecting shell 16. During use, the connecting rods 15 connect the connecting shell 16 and the support shell 6 into one unit, and also connect the two cover plates 10 into one unit. This ensures that when the cover plates 10 are installed on the connecting shell 16, the connecting rods 15 support the four sides of the grid cluster 5, ensuring the grid cluster 5 remains stable during flipping.
[0057] In an optional embodiment, a first bolt 12 is threaded to one side of the top of the cover plate 10, and the bottom end of the first bolt 12 passes through the cover plate 10 and is inserted into the side of the connecting shell 16 and threadedly connected to the connecting shell 16.
[0058] In this embodiment, two supporting shells 6 wrap around the bottom corners of the grid cluster 5, and a connecting shell 16 wraps around the top corners of the grid cluster 5. The grid cluster 5 connects the two supporting shells 6 and the connecting shell 16 into a single unit, so that the grid cluster 5, the supporting shells 6 and the connecting shell 16 are connected to form a holding frame with an opening at the top, which facilitates the replacement of the grid cluster 5 and effectively supports the four sides of the grid cluster 5 to ensure that it does not shift during the flipping process.
[0059] Example 5
[0060] like Figure 5 As shown, the present invention proposes a timed electric flipping device for silkworm rearing square clusters. Compared with Embodiment 1, this embodiment also includes a base 7, rollers 8 and connecting rings 9.
[0061] The connecting ring 9 is fitted onto the outside of the four square rods 4;
[0062] The base 7 is located below the connecting ring 9;
[0063] There are two rollers 8, both of which are rotatably mounted on the top of the base 7 and are rotatably connected to the connecting ring 9.
[0064] In this embodiment, the connecting ring 9 is connected to the square rod 4, and the base 7 mounts the roller 8 at the bottom of the connecting ring 9 and rolls it in connection with the connecting ring 9. When the mounting plate 3 drives the square rod 4 to rotate, the connecting ring 9 rotates synchronously on the roller 8. During the rotation of the connecting ring 9, the base 7 and the roller 8 cooperate to support it, thereby supporting the square rod 4 and preventing the square rod 4 from bending due to its long length.
[0065] In this invention, the second bolt 13 is rotated on the side of the sleeve 14, causing the sleeve 14 to move synchronously with the support shell 6 and the connecting shell 16 via the connecting rod 15. This adjusts the sleeve 14 to a preset position. The second bolt 13 extends into the sleeve 14 to fix the sleeve 14 to the square rod 4. The square cluster 5 is placed into the connecting shell 16 and slides into the support shell 6 from the connecting shell 16, supporting the bottom of the square cluster 5. The cover plate 10 is placed on the top of the support shell 6, and the first bolt 12 fixes the cover plate 10 to the connecting shell 16, thus fixing the position of the square cluster 5. Under the control of the electrical control box, the stepper motor 2 drives the mounting plate 3 to rotate on the bracket 1, and the mounting plate 3 drives the sleeve 14 to rotate via the square rod 4. At the same time, the sleeve 14 drives the square cluster 5 to rotate via the support shell 6 and the connecting shell 16, causing multiple square clusters 5 to rotate synchronously.
[0066] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.
Claims
1. A timing electric flip device for silkworm rearing square cluster, characterized in that, Includes a bracket (1), a rotating frame, and a limiting assembly; The rotating frame is rotatably mounted on the top of the bracket (1), and the end of the bracket (1) is provided with a stepper motor (2) for driving the rotating frame to rotate on the bracket (1) at a time during use; The number of limiting components is multiple, and multiple limiting components are all sleeved in the middle of the rotating frame. The side of the limiting components is provided with a holding component for placing the grid cluster (5) in the use state. The cover plate (10) is set on the top of the container and connected to the top of the grid cluster (5).
2. The timing electric flip device for silkworm rearing square cluster according to claim 1, characterized in that, The rotating frame includes a mounting plate (3) and a square rod (4); There are two mounting plates (3), and both mounting plates (3) are rotatably mounted on the top of the bracket (1); There are four square bars (4), and each of the four square bars (4) is positioned between two mounting plates (3) and at the corner of the mounting plate (3).
3. The timed electric flipping device for silkworm rearing grids according to claim 2, characterized in that, The end of the square rod (4) extends through the mounting plate (3) to the side of the mounting plate (3) and the end face is flush with the side of the mounting plate (3). A threaded joint is provided at the end of the square rod (4) and on the side of the mounting plate (3). A nut (11) connected to the mounting plate (3) is sleeved on the outside of the threaded joint of the square rod (4).
4. The timing electric flip device for silkworm rearing according to claim 2, wherein, The limiting assembly includes a second bolt (13) and a sleeve (14); There are multiple sleeves (14), and multiple sleeves (14) are all sleeved on the outside of the square rod (4), and four sleeves (14) are grouped together. The second bolt (13) is threaded onto the side of the sleeve (14) and its end passes through the sleeve (14) to connect with the square rod (4).
5. The timing electric flip device for silkworm rearing according to claim 4, wherein The holding assembly includes a support shell (6) and a connecting shell (16); There are two support shells (6), which are symmetrically installed on the side of the sleeve (14) and wrapped around the bottom of the square cluster (5). There are two connecting shells (16), and the two supporting shells (6) are symmetrically installed on the side of the sleeve (14) and wrapped around the top side of the square cluster (5).
6. The timing electric flip device for silkworm rearing according to claim 5, wherein The four sides of the square cluster (5) are provided with connecting rods (15), and the ends of the connecting rods (15) are connected to the support shell (6), the cover plate (10) and the connecting shell (16) respectively.
7. The timing electric flip device for silkworm rearing according to claim 6, wherein, The top side of the cover plate (10) is threaded with a first bolt (12), and the bottom end of the first bolt (12) passes through the cover plate (10) and is inserted into the side of the connecting shell (16) and threadedly connected to the connecting shell (16).
8. The timing electric flip device for silkworm rearing according to claim 2, wherein, It also includes a base (7), rollers (8) and a connecting ring (9); The connecting ring (9) is sleeved on the outside of the four square rods (4); The base (7) is located below the connecting ring (9); There are two rollers (8), both of which are rotatably mounted on the top of the base (7) and are tumbledly connected to the connecting ring (9).
Citation Information
Patent Citations
Timing electric turnover device for silkworm breeding paper cocooning frame
CN216415694U