Crawler powder distribution equipment
The pressing storage cylinder and elastic pressing mechanism of the reptile powder dispensing device solve the problems of precise control and contamination in traditional powder supplement feeding, realize quantitative feeding and reduce contamination, and are suitable for simple and efficient feeding of multiple reptiles.
Patent Information
- Application Number
- CN202520543739.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-26
AI Technical Summary
Traditional powdered supplements are difficult to control precisely, often resulting in over-scooping or spillage, and the powder is easily contaminated, especially when feeding multiple reptiles.
The design of the reptile powder dispensing device uses a combination of a pressing storage cylinder and an elastic pressing mechanism to achieve quantitative feeding. The sealing sleeve reduces the contact between the powder and the outside environment, thus avoiding contamination.
It achieves quantitative feeding, avoids over-scooping or spilling, ensures that reptiles obtain adequate nutrition, reduces the risk of powder contamination, and is simple and efficient to operate.
Smart Images

Figure CN223900056U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of dispensing equipment, in particular to a reptile powder dispensing equipment. BACKGROUND
[0002] In the current booming reptile breeding market, in order to ensure the healthy growth of reptiles and meet their needs for various nutrients at different growth stages, powder supplements have the characteristics of precise matching of trace element components, and can be customized according to the unique physiological needs of different reptiles. Therefore, powder supplements are increasingly popular in the reptile breeding field and have become the preferred solution for many reptile enthusiasts to maintain the health of reptiles. Traditional powder supplements are usually fed to reptiles in time intervals using a spoon.
[0003] Traditional powder supplement feeding requires constant use of a spoon to dispense powder supplements to reptiles during the feeding process. During manual operation, it is difficult to accurately control the amount of powder supplements, which may result in over scooping or spilling, especially when feeding multiple reptiles. At the same time, the powder supplements are exposed to the air for a long time, which may cause contamination by adsorbing dust and impurities in the air.
[0004] Therefore, in view of the above-mentioned traditional powder supplement feeding, which is difficult to accurately control and prone to contamination of the powder supplements, a reptile powder dispensing equipment can be designed to press the powder supplements into the reptiles in a quantitative manner and reduce the frequency of contact between the powder supplements and the outside environment to avoid contamination, thereby solving the above-mentioned problems. CONTENT OF THE INVENTION
[0005] In order to overcome the shortcomings of traditional powder supplement feeding, which requires constant use of a spoon to dispense powder supplements to reptiles during the feeding process. During manual operation, it is difficult to accurately control the amount of powder supplements, which may result in over scooping or spilling, especially when feeding multiple reptiles. At the same time, the powder supplements are exposed to the air for a long time, which may cause contamination by adsorbing dust and impurities in the air.
[0006] The technical scheme is as follows: a reptile powder dispensing device comprises a reptile cylinder, a dispensing cylinder, a pressing storage cylinder, a discharging slope, an elastic pressing mechanism and an upper cover; the inside of the reptile cylinder is provided with a reptile chamber for breeding reptiles; the upper part of the reptile cylinder is provided with the dispensing cylinder for dispensing powder; the upper end surface of the dispensing cylinder is provided with an annular pressing groove; the center of the dispensing cylinder is provided with a dispensing chamber; the bottom of the dispensing chamber is provided with a strip-shaped dispensing groove; the upper part of the dispensing cylinder is provided with the pressing storage cylinder for storing powder; the pressing storage cylinder comprises an inner cylinder; the inside of the inner cylinder is provided with a powder chamber for containing powder; the lower part of the inner cylinder is provided with a discharging slope corresponding to the strip-shaped dispensing groove; the outer end of the inner cylinder is provided with an outer sleeve; the upper end of the outer sleeve is connected with the upper end of the inner cylinder; the lower end of the outer sleeve is provided with four sets of elastic pressing mechanisms; the lower end of the elastic pressing mechanism extends to the bottom of the annular pressing groove.
[0007] Further, the lower end of the inner cylinder extends to the inside of the dispensing chamber; the lower end of the outer sleeve extends to the inside of the annular pressing groove; the lower end of the inner cylinder is provided with a hopper-shaped discharging sleeve for concentrating powder; the discharging slope is located below the hopper-shaped discharging sleeve; the discharging slope and the hopper-shaped discharging sleeve are communicated through the extension pipe.
[0008] Further, the inside of the hopper-shaped discharging sleeve is provided with a hopper groove; the bottom of the hopper groove is provided with a discharging hole; the discharging hole penetrates through the hopper-shaped discharging sleeve and the extension pipe; the hopper groove and the powder chamber are communicated with each other.
[0009] Further, the upper end of the strip-shaped dispensing groove is provided with a sealing plate; one end of the sealing plate is provided with a movable hole; the discharging slope is located in the inside of the strip-shaped dispensing groove; the extension pipe is located in the inside of the movable hole.
[0010] Further, the elastic pressing mechanism comprises two sets of connecting blocks; one set of connecting blocks is connected with the bottom of the outer sleeve; the other set of connecting blocks is connected with the bottom of the annular pressing groove; the two sets of connecting blocks are provided with a pressing spring; the center of the pressing spring is provided with a damper.
[0011] Further, a plurality of air holes are arranged around the upper end of the reptile cylinder; the plurality of air holes penetrate through the reptile cylinder; the upper end of the reptile cylinder is provided with a butt joint sleeve opening connected with the bottom of the dispensing cylinder.
[0012] Further, the upper cover is matched and buckled with the pressing storage cylinder; the lower end of the upper cover is provided with a sealing sleeve for sealing the powder chamber.
[0013] The beneficial effect is that compared with traditional powder supplement feeding, it is difficult to accurately control and the powder supplement is easy to be contaminated. The application can realize quantitative feeding by pressing the outer sleeve of the storage cylinder and cooperating with the elastic pressing mechanism, solve the problem that traditional manual feeding is difficult to accurately control the amount, avoid the situation of scooping or spilling, ensure that the reptile obtains the appropriate amount of nutritional supplement, reduce the contact frequency of the powder supplement with the outside world through the connection design of the sealing sleeve of the upper cover, the distribution cylinder and the pressing storage cylinder, reduce the risk of supplement contamination, and compared with the traditional constant spoon distribution method, the pressing operation is more simple and efficient, saves the user's time and energy, and is especially suitable for the case of feeding multiple reptiles. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a three-dimensional structure schematic diagram of the reptile powder dispensing device of the application.
[0015] Figure 2 It is a three-dimensional structure schematic diagram of the reptile cylinder of the application.
[0016] Figure 3 It is a three-dimensional structure schematic diagram of the distribution cylinder of the application.
[0017] Figure 4 It is a three-dimensional structure schematic diagram of the pressing storage cylinder and the elastic pressing mechanism combination of the application.
[0018] Figure 5 It is a three-dimensional structure schematic diagram of the powder bin and the bucket combination of the application.
[0019] BRIEF DESCRIPTION OF DRAWINGS: 1, reptile cylinder; 101, reptile bin; 102, butt joint socket; 103, air hole; 2, distribution cylinder; 3, annular pressing groove; 4, pressing storage cylinder; 401, powder bin; 402, inner cylinder; 403, outer sleeve; 404, bucket type discharging sleeve; 405, extension pipe; 406, discharging ramp; 407, bucket; 408, discharging hole; 5, upper cover; 501, sealing sleeve; 6, elastic pressing mechanism; 601, connecting block; 602, damper; 603, pressing spring; 7, discharging ramp; 8, distribution bin; 9, strip-shaped distribution groove; 10, sealing plate; 11, movable hole. DETAILED DESCRIPTION
[0020] The application will be specifically introduced below in combination with the drawings and specific embodiments.
[0021] Embodiment 1
[0022] As Figures 1-5As shown, the crawler powder dispensing device comprises a crawler cylinder 1, a dispensing cylinder 2, a pressing storage cylinder 4, a discharging slope 406, an elastic pressing mechanism 6 and an upper cover 5. The inside of the crawler cylinder 1 is provided with a crawler bin 101 for breeding crawlers. The upper part of the crawler cylinder 1 is provided with the dispensing cylinder 2 for dispensing powder. The upper end surface edge of the dispensing cylinder 2 is provided with an annular pressing groove 3. The center of the dispensing cylinder 2 is provided with a dispensing bin 8. The bottom of the dispensing bin 8 is provided with a strip-shaped dispensing groove 9. The upper part of the dispensing cylinder 2 is provided with the pressing storage cylinder 4 for storing powder. The pressing storage cylinder 4 comprises an inner cylinder 402. The inside of the inner cylinder 402 is provided with a powder bin 401 for containing powder. The lower part of the inner cylinder 402 is provided with a discharging slope 7 corresponding to the strip-shaped dispensing groove 9. The outer end of the inner cylinder 402 is sleeved with an outer sleeve 403. The upper end of the outer sleeve 403 is connected with the upper end of the inner cylinder 402. The lower end of the outer sleeve is surrounded by four sets of elastic pressing mechanisms 6. The lower end of the elastic pressing mechanism 6 extends to the bottom of the annular pressing groove 3.
[0023] The lower end of the inner cylinder 402 extends to the inside of the dispensing bin 8. The lower end of the outer sleeve extends to the inside of the annular pressing groove 3. The lower end of the inner cylinder 402 is provided with a hopper-shaped discharging sleeve 404 for concentrating powder. The discharging slope 7 is located below the hopper-shaped discharging sleeve 404. The discharging slope 7 and the hopper-shaped discharging sleeve 404 are connected through an extension pipe 405. The discharging slope 7 and the hopper-shaped discharging sleeve 404 are communicated through the extension pipe 405. The extension pipe 405 cooperates with the discharging slope 7 to have sufficient pressing length. When pressed, the discharging slope 7 can enter the crawler bin 101.
[0024] The inside of the hopper-shaped discharging sleeve 404 is provided with a hopper groove 407. The bottom of the hopper groove 407 is provided with a discharging hole 408. The discharging hole 408 penetrates the hopper-shaped discharging sleeve 404 and the extension pipe 405. The hopper groove 407 is communicated with the powder bin 401. The hopper-shaped structure of the hopper-shaped discharging sleeve 404 can concentrate the dispersed powder so that it can enter the extension pipe 405 through the discharging hole 408 more efficiently.
[0025] The upper end of the strip-shaped dispensing groove 9 is provided with a sealing plate 10. One end of the sealing plate 10 is provided with a movable hole 11. The discharging slope 7 is located inside the strip-shaped dispensing groove 9. The extension pipe 405 is located inside the movable hole 11. The sealing plate 10 cooperates with the inner wall of the strip-shaped dispensing groove 9 to effectively close the discharging slope 7.
[0026] The elastic pressing mechanism 6 comprises two sets of connecting blocks 601. One set of connecting blocks 601 is connected with the bottom of the outer sleeve. The other set of connecting blocks 601 is connected with the bottom of the annular pressing groove 3. The two sets of connecting blocks 601 are provided with a pressing spring 603. The center of the pressing spring 603 is provided with a damper 602. The pressing spring 603 cooperates with the damper 602 to ensure smooth pressing.
[0027] A plurality of groups of air holes 103 are arranged around the outer end of the crawling cylinder 1, and the plurality of groups of air holes 103 penetrate the crawling cylinder 1. The upper end of the crawling cylinder 1 is provided with a butt joint sleeve 102 connected to the bottom of the distribution cylinder 2. The plurality of groups of air holes 103 provide a good breathing environment for the crawling insects, ensuring their comfort in the breeding environment.
[0028] The upper cover 5 is matched and buckled with the pressing storage cylinder 4. The lower end of the upper cover 5 is provided with a sealing sleeve 501 for sealing the powder bin 401. By matching the sealing sleeve 501 with the upper cover 5, the moisture absorption of the supplement can be effectively prevented, and the shelf life of the supplement is prolonged.
[0029] When working, the user first breeds the crawling insects in the crawling bin 101 of the crawling cylinder 1, then opens the upper cover 5, pours the prepared powder supplement into the powder bin 401 of the inner cylinder 402 of the pressing storage cylinder 4, seals the powder bin 401 by the sealing sleeve 501 at the lower end of the upper cover 5, reduces the contact of the supplement with the outside world, buckles the upper cover 5 with the pressing storage cylinder 4, and ensures that the crawling cylinder 1 is stably connected with the distribution cylinder 2 through the butt joint sleeve 102 at the upper end, and the air holes 103 at the outer end of the crawling cylinder 1 are kept unobstructed, providing a good breathing environment for the crawling insects.
[0030] When feeding, the user presses the outer sleeve 403 of the pressing storage cylinder 4. The outer sleeve 403 is connected with the annular pressing groove 3 of the distribution cylinder 2 through the four groups of elastic pressing mechanisms 6. With the pressing action, the pressing spring 603 in the elastic pressing mechanism 6 is compressed, and the damper 602 ensures the stability of the pressing process. At this time, the extension pipe 405 moves downward in the discharging hole 408 under pressure, and pushes the discharging ramp 7 away from the strip-shaped distribution groove 9, so that the powder supplement in the cylinder powder bin 401 is concentrated through the bucket-shaped discharging sleeve 404, flows into the extension pipe 405 through the discharging hole 408 at the bottom of the bucket groove 407, and then falls into the crawling insects in the crawling bin 101 through the discharging ramp 7. When the user stops pressing, the pressing spring 603 resets. At this time, the discharging ramp 7 resets to the strip-shaped distribution groove 9, and the inner wall of the strip-shaped distribution groove 9 cooperates with the sealing plate 10 to block the discharging ramp 7, thereby stopping the feeding.
[0031] The working principle is that the inner cylinder 402 of the pressing storage cylinder 4 stores the powder supplement, the bucket-shaped discharging sleeve 404 concentrates the powder, when the outer sleeve 403 is pressed, the elastic pressing mechanism 6 works, driving the inner cylinder 402 to move downward, the discharging ramp 7 moves in the strip-shaped distribution groove 9, and the powder in the powder bin 401 enters the crawling bin 101 through the bucket groove 407, the discharging hole 408, the extension pipe 405, and the discharging ramp 7 in sequence. The design of the sealing plate 10 and the movable hole 11 not only ensures the normal work of the discharging ramp 7, but also reduces the entry of foreign matter into the distribution bin 8. The pressing spring 603 in the elastic pressing mechanism 6 cooperates with the damper 602 to provide stable pressing reset.
[0032] Its beneficial effect is remarkable, through pressing the outer sleeve 403 of the storage cylinder 4 and cooperating with the elastic pressing mechanism 6, the quantitative feeding can be realized, the problem that the traditional manual feeding is difficult to control the amount accurately is solved, the situation of scooping too much or spilling is avoided, the reptile obtains the appropriate amount of nutritional supplement, through the sealing sleeve 501 of the upper cover 5, the connection design of the distribution cylinder 2 and the pressing storage cylinder 4, the contact frequency of the powder supplement with the outside world is reduced, the risk of supplement pollution is reduced, and compared with the traditional constant spoon distribution mode, the pressing operation is more simple and efficient, saves the user's time and energy, especially suitable for the case of feeding many reptiles.
Claims
1. A reptile powder dispensing device, comprising a reptile cylinder (1); characterized in that, It also includes a distribution cylinder (2), a pressing storage cylinder (4), a discharge ramp (406), an elastic pressing mechanism (6), and a top cover (5); the inside of the reptile cylinder (1) is provided with a reptile chamber (101) for raising reptiles, the top of the reptile cylinder (1) is provided with a distribution cylinder (2) for distributing powder, the upper surface edge of the distribution cylinder (2) is provided with an annular pressing groove (3), the center of the distribution cylinder (2) is provided with a distribution chamber (8), the bottom of the distribution chamber (8) is provided with a strip-shaped distribution groove (9), and the top of the distribution cylinder (2) is provided with a storage mechanism for powder. The pressing storage cylinder (4) includes an inner cylinder (402), and a powder hopper (401) for containing powder is opened inside the inner cylinder (402). A discharge ramp (7) corresponding to the strip distribution groove (9) is provided below the inner cylinder (402). An outer sleeve (403) is fitted on the outer end of the inner cylinder (402). The upper end of the outer sleeve (403) is connected to the upper end of the inner cylinder (402). Four sets of elastic pressing mechanisms (6) are arranged around the lower end of the outer cylinder. The lower end of the elastic pressing mechanism (6) extends to the bottom of the annular pressing groove (3).
2. The reptile powder dispensing device according to claim 1, characterized in that, The lower end of the inner cylinder (402) extends into the interior of the distribution bin (8), and the lower end of the outer cylinder extends into the interior of the annular pressing groove (3). The lower end of the inner cylinder (402) is provided with a hopper-shaped feeding sleeve (404) for concentrating powder. The discharge ramp (7) is located below the hopper-shaped feeding sleeve (404). An extension pipe (405) is provided between the discharge ramp (7) and the hopper-shaped feeding sleeve (404). The discharge ramp (7) and the hopper-shaped feeding sleeve (404) are connected through the extension pipe (405).
3. The reptile powder dispensing device according to claim 2, characterized in that, The hopper-shaped feeding sleeve (404) has a hopper groove (407) inside, and a feeding hole (408) is provided at the bottom of the hopper groove (407). The feeding hole (408) passes through the hopper-shaped feeding sleeve (404) and the extension pipe (405). The hopper groove (407) is connected to the powder hopper (401).
4. The reptile powder dispensing device according to claim 3, characterized in that, The upper end of the strip distribution trough (9) is provided with a sealing plate (10), and one end of the sealing plate (10) is provided with a movable hole (11). The discharge ramp (7) is located inside the strip distribution trough (9), and the extension pipe (405) is located inside the movable hole (11).
5. The reptile powder dispensing device according to claim 1, characterized in that, The elastic pressing mechanism (6) includes two sets of connecting blocks (601), one set of connecting blocks (601) is connected to the bottom of the outer cylinder, and the other set of connecting blocks (601) is connected to the bottom of the annular pressing groove (3). A pressing spring (603) is provided between the two sets of connecting blocks (601), and a damper (602) is provided at the center of the pressing spring (603).
6. The reptile powder dispensing device according to claim 1, characterized in that, Multiple sets of ventilation holes (103) are arranged around the upper outer end of the crawler tube (1), and the multiple sets of ventilation holes (103) penetrate the crawler tube (1). The upper end of the crawler tube (1) is provided with a docking sleeve (102) for connecting the bottom of the distribution tube (2).
7. The reptile powder dispensing device according to claim 1, characterized in that, The upper cover (5) is matched and fastened with the pressing storage cylinder (4), and the lower end of the upper cover (5) is provided with a sealing sleeve (501) for sealing the powder hopper (401).