Material vibrating device for toad breeding
By designing a vibrating feed device that uses a flexible drive shaft to rotate a fixed tube inside a sleeve, the problems of damage to the screen window and feed platform and toads falling off caused by prolonged operation of the vibrating motor in toad farming were solved, thus reducing risks and the number of replacements.
Patent Information
- Application Number
- CN202520207116.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-02-10
AI Technical Summary
In existing toad farming, the long-term operation of the vibrating motor poses a risk of burning out the screen window feeding platform and the toads falling off, and the screen window feeding platform needs to be replaced frequently, which is inconvenient.
Design a vibrating device that includes a first rotating mechanism and a driving mechanism. The device drives the fixed tube to rotate inside the sleeve through a transmission flexible shaft, generating vibration to induce toads to eat and avoid damage caused by long-term operation.
This reduces the risk of the screen window material platform burning out and the toad falling off, decreases the frequency of screen window material platform replacement, and improves ease of use.
Smart Images

Figure CN223745566U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the toad breeding technical field, especially a kind of material vibrating device for toad breeding. BACKGROUND
[0002] Currently, when artificial toad is bred, since toad is mostly time to crawl and is not good at jumping, and toad likes to catch live food, so in prior art, usually, feed is directly poured on screen material table, and multiple vibration motors are set on screen material table along the length direction of screen material table, when using, under the action of vibration motor vibration, feed on screen material table can be made to jump up, to lure toad to eat, but using the above setting mode, since toad is not regular to eat, vibration motor needs to keep open state for a long time, and the heat generated in the process of long time running of vibration motor sometimes can burn screen material table, so there is the risk that toad falls off from screen material table, and screen material table needs to be frequently replaced, it is more troublesome, therefore, there are still defects and deficiencies in prior art. SUMMARY
[0003] The utility model aims at providing a kind of material vibrating device for toad breeding to solve the problems raised in the above background.
[0004] To solve the above problems, the technical scheme adopted by the utility model is as follows:
[0005] A kind of material vibrating device for toad breeding, including first rotating mechanism and drive mechanism with output shaft, the first rotating mechanism includes horizontally distributed and can rotate first rotation shaft, the first rotation shaft is drivingly connected with the output shaft of drive mechanism, and vibration mechanism is installed on the first rotation shaft, the vibration mechanism includes transmission flexible shaft arranged in parallel with the first rotation shaft, one end of the transmission flexible shaft is connected with the first rotation shaft, and a plurality of fixed tubes distributed along the length direction of transmission flexible shaft are sleeved on the transmission flexible shaft, the axial line of both ends of each fixed tube is not on the same horizontal line to form S-shaped tube, and sleeve pipe is slidably sleeved between a plurality of fixed tubes.
[0006] Further, the two sides of the first rotating mechanism are provided with the second rotating mechanism distributed side by side with the first rotating mechanism, the second rotating mechanism includes the second rotation shaft arranged in parallel with the first rotation shaft and can rotate, the second rotation shaft is drivingly connected between the first rotation shaft, and the vibration mechanism is installed on each second rotation shaft.
[0007] Further, the number of second rotating mechanism located on the same side of the first rotating mechanism is multiple groups, multiple groups of second rotating mechanism are arranged side by side, and the second rotation shaft between every two adjacent second rotating mechanisms of each group of second rotating mechanism is drivingly connected, and the vibration mechanism is also installed on the second rotation shaft of each group of second rotating mechanism.
[0008] Further, the first rotating mechanism further comprises a first casing with a cavity structure, the first rotating shaft is located in the first casing and rotationally connected with the first casing, and one end of the first rotating shaft is connected with the transmission soft shaft after penetrating through the first casing.
[0009] Further, the first rotating shaft is detachably fixedly connected with the transmission soft shaft.
[0010] Further, the second rotating mechanism further comprises a second casing with a cavity structure, the second rotating shaft is rotationally connected with the second casing, and one end of the second rotating shaft is connected with the transmission soft shaft after penetrating through the second casing, and the other end of the second rotating shaft is transmissionally connected with the first rotating shaft.
[0011] Further, the second rotating shaft is detachably fixedly connected with the transmission soft shaft.
[0012] Further, the first casing located on both sides of the first rotating shaft is rotationally connected with a third rotating shaft horizontally distributed, the third rotating shaft is parallel to the first rotating shaft in the horizontal direction, and the first bevel gear transmissionally connects between the end of the third rotating shaft close to the first rotating shaft and the first rotating shaft, and the other end of the third rotating shaft penetrates through the first casing, the second casing is rotationally connected with a fourth rotating shaft parallel to and oppositely arranged to the third rotating shaft, the fourth rotating shaft is connected with the third rotating shaft through a first transmission shaft, and the fourth rotating shaft is transmissionally connected with the second rotating shaft through a second bevel gear.
[0013] Further, the fourth rotating shaft of every two groups of adjacent second rotating mechanisms is connected through a second transmission shaft.
[0014] Further, the rotating speed of the first rotating shaft is less than the rotating speed of the output shaft of the driving mechanism.
[0015] By adopting the technical scheme, the beneficial effects of the utility model are as follows:
[0016] In use, the first rotating mechanism and the driving mechanism are installed at one end outside of the screen material table, the material vibrating mechanism is laid on the screen material table along the length direction of the screen material table, then when the driving mechanism is started, the first rotating shaft is driven to rotate, the fixed pipe of the S-shaped pipe is driven to rotate in the sleeve pipe through the transmission soft shaft in the process of rotation of the first rotating shaft, and the fixed pipe frequently collides with the sleeve pipe to generate vibration, so that the feed on the screen material table is jumped up to induce the toad to eat, compared with the prior art, the material vibrating mechanism will not burn the screen material table in the process of long time operation, so as to reduce the risk of the toad falling off the screen material table, and the frequency of replacing the screen material table is reduced, so as to facilitate use. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1The utility model discloses a structure schematic drawing one of the utility model;
[0018] Figure 2 For Figure 1 The structure schematic drawing of partial amplification in A place in the middle;
[0019] Figure 3 The structure schematic drawing of part device of the utility model;
[0020] Figure 4 The structure schematic drawing two of the utility model;
[0021] Figure 5 The structure schematic drawing of the utility model in use state.
[0022] Reference signs: 1, first rotating mechanism;11, first rotating shaft;12, first machine shell;13, first jacking bolt;14, third rotating shaft;15, first bevel gear;2, second rotating mechanism;21, second rotating shaft;22, second machine shell;23, second jacking bolt;24, fourth rotating shaft;25, second bevel gear;3, material vibrating mechanism;31, transmission flexible shaft;32, fixed pipe;33, sleeve;4, driving mechanism;5, transmission mechanism;51, first transmission wheel;52, second transmission wheel;53, transmission belt;6, first transmission shaft;7, second transmission shaft;8, base;9, inverted U-shaped support;10, screen material table. DETAILED DESCRIPTION
[0023] In order to make the purpose, technical scheme and beneficial effect of the utility model more clear, the utility model embodiment is further described in detail below in conjunction with the drawings.
[0024] For example Figures 1 to 5The utility model provides a kind of material vibrating device for toad breeding, including first rotating mechanism 1 with driving mechanism 4 with output shaft, driving mechanism 4 is drive motor, when using, first rotating mechanism 1 with driving mechanism 4 is installed in one end outside of screen material table 10;First rotating mechanism 1 includes horizontally distributed and can rotate first shaft 11, first shaft 11 is drivingly connected with the output shaft of driving mechanism 4, i.e.
[0025] Specifically, in use, the material vibrating mechanism 3 is laid on the screen material table 10 along the length direction of the screen material table 10, then when the driving mechanism 4 is started, it can drive the first shaft 11 to rotate, and in the process of rotating, the first shaft 11 can drive the fixed tube 32 of the S-shaped tube through the transmission soft shaft 31 to rotate in the sleeve tube 33, and make the fixed tube 32 frequently impact the sleeve tube 33 to produce vibration, so that the feed on the screen material table 10 can be jumped up to attract toads to eat.
[0026] Further, as Figure 4As shown, the two sides of the first rotating mechanism 1 are provided with the second rotating mechanism 2 which is distributed side by side with the first rotating mechanism 1, and specifically, the second rotating mechanism 2 located on the two sides of the first rotating mechanism 1 can be symmetrically arranged; the second rotating mechanism 2 includes the second rotating shaft 21 which is arranged in parallel with the first rotating shaft 11 and can rotate, and the second rotating shaft 21 and the first rotating shaft 11 are in transmission connection, that is, the second rotating shaft 21 and the first rotating shaft 11 can rotate synchronously; and each second rotating shaft 21 is installed with the material vibrating mechanism 3, and specifically, in use, the second rotating mechanism 2 is installed outside one end of the screen material table 10, and then when the driving mechanism 4 is started, the second rotating shaft 21 can rotate synchronously with the first rotating shaft 11 to make the material vibrating mechanism 3 vibrate, so that one set of driving mechanism 4 can drive three sets of material vibrating mechanism 3 to vibrate at the same time, which is convenient to use.
[0027] Further, as shown in Figure 4 , the number of the second rotating mechanism 2 located on the same side of the first rotating mechanism 1 is multiple groups, and the multiple groups of second rotating mechanism 2 are arranged side by side, and the second rotating shaft 21 of every two adjacent second rotating mechanism 2 is in transmission connection, that is, the second rotating shaft 21 of the multiple groups of second rotating mechanism 2 can rotate synchronously; the second rotating shaft 21 of each second rotating mechanism 2 is also installed with the material vibrating mechanism 3, so that when the driving mechanism 4 is started, one set of driving mechanism 4 can drive more groups of material vibrating mechanism 3 to vibrate at the same time, which is convenient to use.
[0028] The specific arrangement mode of the first rotating shaft 11 which can rotate is as follows: as shown in Figure 1 , Figures 3 to 5 , the first rotating mechanism 1 further includes the first machine shell 12 with a cavity structure, the first rotating shaft 11 is located in the first machine shell 12 and is in rotating connection with the first machine shell 12 through a bearing, and one end of the first rotating shaft 11 passes through the first machine shell 12 and is connected with the transmission flexible shaft 31, so that the first rotating shaft 11 can rotate.
[0029] In order to facilitate the disassembly and assembly of the material vibrating mechanism 3 on the first rotating shaft 11, therefore, as shown in Figures 1 to 5As shown, the first rotating shaft 11 and the transmission flexible shaft 31 are detachably fixedly connected. Specifically, one end of the first rotating shaft 11 passes through the first housing 12 and has a first slot coaxially formed therein. The end of the transmission flexible shaft 31 near the first rotating shaft 11 is located in the first slot, and a first tightening bolt 13 is installed between the transmission flexible shaft 31 and the first rotating shaft 11, penetrating the first rotating shaft 11. The first tightening bolt 13 is threadedly connected to the first rotating shaft 11, and the first tightening bolt 13 is radially parallel to the first rotating shaft 11. Specifically, when a... When installing the vibrating mechanism 3, one end of the transmission flexible shaft 31 can be inserted into the first slot. Then, by rotating the first tightening bolt 13 until the screw end of the first tightening bolt 13 is pressed against the transmission flexible shaft 31 in the first slot, the transmission flexible shaft 31 can be installed on the first rotating shaft 11. When disassembling the vibrating mechanism 3, by rotating the first tightening bolt 13 in the opposite direction to separate the screw end of the first tightening bolt 13 from the transmission flexible shaft 31, the vibrating mechanism 3 can be removed. This makes it easy to install and remove the vibrating mechanism 3 on the first rotating shaft 11.
[0030] The specific configuration of the rotatable second rotating shaft 21 is as follows: (e.g.) Figure 4 As shown, the second rotating mechanism 2 also includes a second housing 22 with a cavity structure, a second rotating shaft 21 rotatably connected to the second housing 22, and one end of the second rotating shaft 21 passes through the second housing 22 and is connected to the transmission flexible shaft 31, while the other end of the second rotating shaft 21 is connected to the first rotating shaft 11 for transmission. In this way, the second rotating shaft 21 can rotate synchronously with the rotation of the first rotating shaft 11.
[0031] To facilitate the installation and removal of the vibrating mechanism 3 on the second rotating shaft 21, therefore, as Figures 1 to 5 As shown, the second rotating shaft 21 and the transmission flexible shaft 31 are detachably fixedly connected. Specifically, one end of the second rotating shaft 21 passes through the second housing 22 and has a second slot coaxially formed. The end of the transmission flexible shaft 31 near the second rotating shaft 21 is located in the second slot, and a second tightening bolt 23 is installed between the transmission flexible shaft 31 and the second rotating shaft 21, penetrating the second rotating shaft 21. The second tightening bolt 23 is threadedly connected to the second rotating shaft 21, and the second tightening bolt 23 is radially parallel to the second rotating shaft 21. Specifically, when a... When installing the vibrating mechanism 3, one end of the transmission flexible shaft 31 can be inserted into the second slot. Then, by rotating the second tightening bolt 23 until the screw end of the second tightening bolt 23 is pressed against the transmission flexible shaft 31 in the second slot, the transmission flexible shaft 31 can be installed on the second rotating shaft 21. When disassembling the vibrating mechanism 3, by rotating the second tightening bolt 23 in the opposite direction, the screw end of the second tightening bolt 23 can be separated from the transmission flexible shaft 31, and the vibrating mechanism 3 can be removed. This makes it easy to install and remove the vibrating mechanism 3 on the second rotating shaft 21.
[0032] The specific configuration of the transmission connection between the second rotating shaft 21 and the first rotating shaft 11 is as follows: (e.g.) Figure 1 , Figures 3 to 5 As shown, horizontally distributed third rotating shafts 14 are rotatably connected inside the first housings 12 on both sides of the first rotating shaft 11. The third rotating shafts 14 are parallel to the first rotating shaft 11 in the horizontal direction, and their ends near the first rotating shaft 11 are connected to it via first bevel gears 15, meaning the third rotating shaft 14 can rotate synchronously with the first rotating shaft 11. The other ends of the third rotating shafts 14 pass through the first housings 12. A fourth rotating shaft 24, parallel to and opposite to the third rotating shaft 14, is rotatably connected inside the second housing 22. The fourth rotating shaft 24 is connected to the third rotating shaft 14 via a first transmission shaft 6, meaning the fourth rotating shaft 24 can rotate synchronously with the third rotating shaft 11. The third rotating shaft 14 rotates synchronously. Specifically, the first transmission shaft 6 and the transmission flexible shaft 31 have the same structure, and the connection methods between the two ends of the first transmission shaft 6 and the fourth rotating shaft 24 and the third rotating shaft 14 are the same as the connection methods between the transmission flexible shaft 31 and the first rotating shaft 11. This facilitates the disassembly and assembly of the first transmission shaft 6. The fourth rotating shaft 24 and the second rotating shaft 21 are connected by a second bevel gear 25, that is, the fourth rotating shaft 24 can rotate synchronously with the second rotating shaft 21. Since the fourth rotating shaft 24 can rotate synchronously with the third rotating shaft 14 and the third rotating shaft 14 can rotate synchronously with the first rotating shaft 11, the second rotating shaft 21 and the first rotating shaft 11 can rotate synchronously.
[0033] In addition, the top surfaces of the first housing 12 and the second housing 22 can both be opened, and a detachable top cover can be fastened at the opening. This not only seals the first housing 12 and the second housing 22, but also facilitates the maintenance of the various transmission components inside the first housing 12 and the second housing 22.
[0034] Furthermore, such as Figure 1 , Figures 3 to 5 As shown, the drive mechanism 4 and the first rotating mechanism 1 can be mounted together on the base 8 to facilitate the simultaneous movement of the drive mechanism 4 and the first rotating mechanism 1; furthermore, when the drive mechanism 4 and the first rotating mechanism 1 are distributed on the base 8 as follows... Figure 4 As shown, an inverted U-shaped bracket 9 can be installed between the drive mechanism 4 and the base 8, so that... Figure 4 For example, when the second rotating mechanism 2 located on the right side of the first rotating mechanism 1 is connected to the first rotating mechanism 1 by the first transmission shaft 6, the first transmission shaft 6 can pass through the inverted U-shaped bracket 9 for easy connection.
[0035] The specific configuration of the transmission connection between the second rotating shafts 21 of every two adjacent sets of the second rotating mechanisms 2 is as follows: (e.g.) Figure 4As shown in the figure, each two groups of adjacent second rotating mechanism 2 are connected by a second transmission shaft 7, specifically, the second transmission shaft 7 is the same as the transmission flexible shaft 31 in structure, and the connection mode of the two ends of the second transmission shaft 7 and the fourth rotating shaft 24 is the same as the connection mode of the transmission flexible shaft 31 and the first rotating shaft 11, so that the second transmission shaft 7 can be conveniently disassembled; and under the action of the second transmission shaft 7, the second rotating shaft 21 of the plurality of groups of second rotating mechanism 2 can be synchronously rotated.
[0036] The specific setting mode of the transmission connection between the first rotating shaft 11 and the output shaft of the driving mechanism 4 is as follows: Figure 1 、 Figures 3 to 5 As shown in the figure, the first rotating shaft 11 and the output shaft of the driving mechanism 4 are connected through a transmission mechanism 5, the transmission mechanism 5 includes oppositely arranged first transmission wheel 51 and second transmission wheel 52, the second transmission wheel 52 is sleeved on the output shaft of the driving mechanism 4, the first transmission wheel 51 is sleeved on the first rotating shaft 11, the first transmission wheel 51 and the second transmission wheel 52 are connected through a transmission belt 53, and the wheel diameter of the first transmission wheel 51 is greater than that of the second transmission wheel 52, so that in use, the rotating speed of the first rotating shaft 11 is less than that of the output shaft of the driving mechanism 4, which is a speed reduction transmission, so as to ensure the stable operation of the vibrating mechanism 3.
[0037] The basic principle, main features and advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principle of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed application. The scope of protection of the present application is defined by the appended claims and equivalents.
Claims
1. A material agitating device for breeding of toad, characterized by comprising: The first rotating mechanism comprises a horizontally distributed and rotatable first rotating shaft, the first rotating shaft is in transmission connection with the output shaft of the driving mechanism, and a material vibrating mechanism is mounted on the first rotating shaft, the material vibrating mechanism comprises a transmission flexible shaft arranged in parallel with the first rotating shaft, one end of the transmission flexible shaft is connected with the first rotating shaft, and a plurality of fixed tubes are sleeved on the transmission flexible shaft and distributed along the length direction of the transmission flexible shaft, the axial lines of the two ends of each fixed tube are not on the same horizontal line to form a S-shaped tube, and a sleeve tube is sleeved and slidably arranged between the plurality of fixed tubes.
2. The material agitating device for breeding of toad according to claim 1, wherein: The second rotating mechanism is arranged in parallel with the first rotating mechanism on both sides of the first rotating mechanism, and each second rotating mechanism comprises a second rotating shaft arranged in parallel with the first rotating shaft and capable of rotating, the second rotating shaft is in transmission connection with the first rotating shaft, and the material vibrating mechanism is mounted on each second rotating shaft.
3. The material agitating device for breeding of toad according to claim 2, characterized in that: The number of the second rotating mechanisms on the same side of the first rotating mechanism is multiple groups, the multiple groups of second rotating mechanisms are arranged in parallel, the second rotating shafts of every two adjacent second rotating mechanisms are in transmission connection, and the material vibrating mechanism is mounted on the second rotating shaft of each group of second rotating mechanisms.
4. The material agitating device for breeding of toad according to claim 3, wherein: The first rotating mechanism further comprises a first machine shell with a cavity structure, the first rotating shaft is located in the first machine shell and is in rotational connection with the first machine shell, and one end of the first rotating shaft penetrates through the first machine shell and is connected with the transmission flexible shaft.
5. The material agitating device for breeding of toad according to claim 4, wherein: The first rotating shaft and the transmission flexible shaft are in detachable fixed connection.
6. The material agitating device for breeding of toad according to claim 4, wherein: The second rotating mechanism further comprises a second machine shell with a cavity structure, the second rotating shaft is in rotational connection with the second machine shell, one end of the second rotating shaft penetrates through the second machine shell and is connected with the transmission flexible shaft, and the other end of the second rotating shaft is in transmission connection with the first rotating shaft.
7. The material agitating device for breeding of toad according to claim 6, wherein: The second rotating shaft and the transmission flexible shaft are in detachable fixed connection.
8. The material agitating device for breeding of toad according to claim 6, wherein: The third rotating shaft is in rotational connection with the first machine shell on both sides of the first rotating shaft, the third rotating shaft is parallel to the first rotating shaft in the horizontal direction, one end of the third rotating shaft close to the first rotating shaft is in transmission connection with the first rotating shaft through a first bevel gear, the other end of the third rotating shaft penetrates through the first machine shell, the fourth rotating shaft is in rotational connection with the third rotating shaft in the second machine shell and is arranged opposite to the third rotating shaft, the fourth rotating shaft is connected with the third rotating shaft through a first transmission shaft, and the fourth rotating shaft is in transmission connection with the second rotating shaft through a second bevel gear.
9. The material agitating device for breeding of toad according to claim 8, wherein: The fourth rotating shafts of every two adjacent second rotating mechanisms are connected through a second transmission shaft.
10. The material agitating device for breeding of toad according to claim 1, wherein: The rotating speed of the first rotating shaft is less than the rotating speed of the output shaft of the driving mechanism.