A mixing device for processing feed in an agricultural and pastoral farm
Patent Information
- Application Number
- CN202522221406.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-21
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-10-21
AI Technical Summary
有鉴于此,本实用新型的目的在于提出一种农牧场养殖饲料加工用混合装置,以解决物料进料的堆叠和堵塞的问题
从上面所述可以看出,本实用新型提供的一种农牧场养殖饲料加工用混合装置通过设置多个进料管令原料能够同时进料,减少了原料在混合罐内的堆叠情况,利于搅拌的混合均匀性;
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Figure CN224736214U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of feed processing technology, and in particular to a mixing device for processing feed for farms and ranches. Background Technology
[0002] Feed consists of a variety of raw materials, such as energy raw materials (corn, wheat), protein raw materials (soybean meal, fish meal) and trace additives. During processing, it is often necessary to use a mixing device to stir and mix them so that the raw materials can be evenly distributed, which helps to ensure product quality and nutritional balance when animals ingest them.
[0003] Existing mixing devices often use a single feed port for feeding, and different types of raw materials are often added sequentially, which can easily cause stacking inside the mixing tank, affecting the mixing effect, and can also easily cause blockages during feeding. Utility Model Content
[0004] (a) Technical problems to be solved In view of this, the purpose of this utility model is to propose a mixing device for processing feed for farms and ranches to solve the problems of material stacking and blockage during feeding.
[0005] (II) Technical Solution To achieve the above objectives, this utility model provides a mixing device for processing feed for farms and ranches, including a mixing tank, a top plate assembly on the mixing tank, and a motor for providing mixing driving force installed on the top plate assembly; The top plate assembly is equipped with two or more feed pipes, and the feed pipes are in active cooperation with the top plate assembly through an anti-clogging drive assembly; The anti-clogging drive assembly includes a control board fixedly connected to all feed pipes and a drive assembly that drives the control board to reciprocate along the axial direction of the mixing tank. The drive assembly is driven by a motor.
[0006] As an optional implementation, the top plate assembly includes a bottom cover fixed above the mixing tank, a control plate movably mounted on the bottom cover, a groove provided on the bottom cover, and the outside of the feed pipe slidably connected to the groove.
[0007] As an optional implementation, the control board includes a plate that can move linearly up and down on the bottom cover. The plate is fixedly connected to the outside of the feed pipe, and the bottom of the plate is connected to the drive assembly. An elastic element is provided at the bottom of the plate to help it reset after movement.
[0008] As an optional implementation, the drive assembly includes a main drive structure and a driving component. The main drive structure drives the driving component to move. A driven component is provided on the plate body to drive the driving component. The plate body moves through the drive component and the driven component.
[0009] As an optional implementation, the main drive structure includes a drive gear coaxially connected to the motor rotor and a gear ring coaxially disposed outside the drive gear. The drive gear and the gear ring are connected by a driven gear. The drive gear, gear ring and driven gear are all rotatably mounted on the bottom cover.
[0010] As an optional implementation, the driving component is a plate fixedly installed on the gear ring. The plate has an arc-shaped structure coaxial with the gear ring, and the upper surface of the plate has a semi-circular structure. The driven component is a rod fixed to the bottom side of the plate. The bottom end of the rod has a spherical structure, and the rod slides in contact with the upper surface of the plate through the spherical structure. Under normal conditions, the height of the bottom end of the rod is lower than the highest horizontal height of the upper surface of the plate.
[0011] As an optional implementation, the plate has an opening through which the motor rotor passes, a limiting member is fixedly installed on the bottom cover, and a sliding opening is provided on the plate to slide vertically along the surface of the limiting member.
[0012] As an optional implementation, the gear ring has a mounting groove on its outer side, and a mounting bracket that slides with the inner wall of the mounting groove is fixedly installed on the bottom cover.
[0013] As an optional implementation, the upper part of the bottom cover is bolted to the top cover, the motor is fixedly installed on the top cover, and the top cover has an opening for the feed pipe to protrude.
[0014] As an optional implementation, the mixing tank is provided with a stirring rod, the top of which protrudes through the bottom cover and is fixed coaxially with the drive gear.
[0015] (III) Beneficial Effects As can be seen from the above, the mixing device for processing feed for farms and ranches provided by this utility model allows raw materials to be fed at the same time by setting multiple feed pipes, reducing the stacking of raw materials in the mixing tank and facilitating the uniformity of mixing. In addition, all feed pipes can achieve synchronous vibration feeding mode through the transmission cooperation of the control board and drive components, which is closer to the traditional static feeding method. This can effectively reduce the blockage of raw materials during feeding and improve processing efficiency. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0017] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of the internal structure of the top plate assembly of this utility model; Figure 3 This is a schematic diagram of the anti-blocking drive component structure of this utility model; In the diagram: 1. Mixing tank; 2. Top plate assembly; 3. Feed pipe; 4. Control panel; 5. Drive assembly; 6. Elastic component; 11. Motor; 12. Support frame; 13. Side plate; 21. Bottom cover; 22. Top cover; 211. Slide groove; 212. Limiting component; 41. Plate body; 42. Through opening; 43. Follower; 411. Slide opening; 51. Driving gear; 52. Gear ring; 53. Driven gear; 54. Mounting bracket; 521. Driving component; 522. Mounting slot. Detailed Implementation
[0018] To make the objectives, technical solutions, and advantages of this utility model clearer, the following describes specific embodiments and refers to the appendix. Figure 1-3 The present invention will be further described in detail below.
[0019] To achieve the above objectives, this utility model provides a mixing device for processing feed in farms and ranches, including a mixing tank 1. The mixing tank 1 is equipped with a top plate assembly 2, and a motor 11 that provides stirring driving force is installed on the top plate assembly 2. The mixing tank 1 is a commonly used mixing component in existing feed processing, and it has a discharge valve at the bottom. After the feed raw materials are mixed inside, they can be discharged from the discharge valve at the bottom. The mixing tank 1 can be placed in the production workshop in a conventional manner. In this embodiment, the outside of the mixing tank 1 is fixedly connected to a support frame 12, and the support frame 12 is fixed on the placement surface so that the discharge port of the mixing tank 1 forms a certain height difference with the ground through the support frame 12, which facilitates the placement of the receiving container.
[0020] The top plate assembly 2 is equipped with two or more feed pipes 3. The feed pipes 3 are in active cooperation with the top plate assembly 2 through an anti-blocking drive component. By setting multiple feed pipes 3, different types of feed raw materials can be fed into the mixing tank 1 at the same time for simultaneous mixing. This reduces the impact of single-layer material stacking caused by the traditional single feed port, which makes it difficult to mix different raw materials at different mixing heights. The simultaneous feeding of different raw materials through the corresponding feed pipes 3 can ensure that the height difference after falling into the mixing tank 1 is reduced, thereby improving the mixing effect. In addition, the anti-blocking drive component can keep the feed pipes 3 active when conveying raw materials, so as to avoid the situation where the raw materials are easily blocked due to the static state.
[0021] Specifically, the anti-clogging drive assembly includes a control board 4 fixedly connected to all feed pipes 3 and a drive assembly 5 that drives the control board 4 to reciprocate along the axial direction of the mixing tank 1. The drive assembly 5 provides driving force through a motor 11. When the motor 11 provides stirring drive for the mixing tank 1, it can also drive the control board 4 to move through the drive assembly 5, so as to meet the usage needs of the control board 4 with simple transmission cooperation.
[0022] Furthermore, the top plate assembly 2 includes a bottom cover 21 fixed above the mixing tank 1. In this embodiment, a side plate 13 is fixed to the outside of the mixing tank 1. The bottom periphery of the bottom cover 21 is bolted to the side plate 13, and the upper part of the bottom cover 21 is bolted to the top cover 22. This allows the top cover 22 to provide dustproof and impact-proof protection for the components installed inside the bottom cover 21 during daily use. The top cover 22 can be removed by rotating the bolts, making it easy to detach the top cover 22 from the bottom cover 21. In this embodiment, both the bottom cover 21 and the top cover 22 are tubular structures with one end closed. The motor 11 is fixedly installed on the top cover 22. The top cover 22 has an opening for the feed pipe 3 to be exposed, so as to facilitate the feeding of raw materials into the feed pipe 3.
[0023] The control plate 4 is movably mounted on the bottom cover 21. The bottom cover 21 has a sliding groove 211. The outer side of the feed pipe 3 is slidably connected to the sliding groove 211, so that when the feed pipe 3 moves synchronously with the control plate 4, its outer side can slide vertically up and down along the sliding groove 211, thereby driving the raw material inside to move up and down slightly.
[0024] It is worth noting that the vibration stroke range of the control plate 4 is smaller than the depth of the chute 211, so that the feed pipe 3 can form a small-stroke vibration mode, which can reduce the blockage of the raw material during feeding.
[0025] Specifically, the control board 4 includes a plate 41 that can move linearly up and down on the bottom cover 21. The plate 41 is fixedly connected to the outside of the feed pipe 3, so that when the plate 41 moves, it can drive all the feed pipes 3 to move synchronously. The bottom of the plate 41 is connected to the drive assembly 5. The bottom end of the plate 41 is provided with an elastic element 6 to help it reset after movement. When the plate 41 moves upward, the elastic element 6 provides an elastic reset force to facilitate the downward reset of the plate 41. In this embodiment, the elastic element 6 is a spring, and the upper and lower ends of the spring are fixedly connected to the plate 41 and the bottom cover 21, respectively.
[0026] Furthermore, the drive assembly 5 includes a main drive structure and an active component 521. The main drive structure drives the active component 521 to move, so that the active component 521 can move through the main drive structure. The plate 41 is provided with a driven component 43 that is in transmission cooperation with the active component 521. The plate 41 moves through the transmission cooperation between the active component 521 and the driven component 43. When the active component 521 moves, it will drive the plate 41 to move along the axial direction of the mixing tank 1 through the driven component 43 that cooperates with it, providing driving force for the movement of the plate 41.
[0027] Specifically, the main drive structure includes a drive gear 51 coaxially connected to the rotor of the motor 11 and a gear ring 52 coaxially disposed outside the drive gear 51. In practice, in order to facilitate the quick separation of the rotor of the motor 11 from the drive gear 51 after the top cover 22 is separated from the bottom cover 21, in this embodiment, a drive rod with a semi-circular hole at the top is coaxially fixed at the top of the drive gear 51. The bottom of the rotor of the motor 11 is a structure that matches the shape of the opening at the top of the drive rod, so that after the rotor of the motor 11 is inserted into the hole of the drive rod, it can drive the drive rod to rotate circumferentially, so that the drive gear 51 rotates circumferentially. At the same time, the motor 11 can also move up and down along the axial direction of the mixing tank 1 to separate from the drive rod. For those skilled in the art, the relevant implementation means are common mechanical knowledge in the industry, so they will not be described in detail here.
[0028] The driving gear 51 and the gear ring 52 are connected by a driven gear 53, which enables the driving gear 51 to rotate. The driving gear 51, the gear ring 52 and the driven gear 53 are all rotatably mounted on the bottom cover 21 to meet the stability requirements during rotation.
[0029] Furthermore, the driving component 521 is a plate fixedly installed on the gear ring 52. The plate has an overall arc-shaped structure coaxial with the gear ring 52, and the upper surface of the plate has a semi-circular structure, while the outer surface of the plate has a smooth surface.
[0030] The driven member 43 is a rod fixed to the bottom side of the plate 41. The bottom end of the rod is a spherical structure, and the rod slides in contact with the upper surface of the plate through the spherical structure. Under normal conditions, the height of the bottom end of the rod is lower than the highest horizontal height of the upper surface of the plate. The axis of the rod intersects perpendicularly with the moving path of the plate, so that when the gear ring 52 rotates, it will drive the plate to move along a circular moving path coaxial with the gear ring 52. This will cause the bottom end of the rod to receive an upward thrust and move up along the arc surface of the plate until the highest point. At this time, the plate 41 moves up accordingly, driving the feed pipe 3 to move up.
[0031] Subsequently, as the plate continues to move, the thrust on the rod is canceled, allowing the plate 41 to quickly reset downwards through the elastic force of the elastic element 6, thereby resetting the feed pipe 3. This achieves an upward and downward reset, and after repeating this process, the raw material in the feed pipe 3 can be slightly vibrated, reducing the risk of blockage.
[0032] Specifically, the plate 41 has an opening 42 through which the rotor of the motor 11 passes to facilitate the installation and engagement of the motor 11 and the drive gear 51. A limiting member 212 is fixedly installed on the bottom cover 21. The plate 41 has a sliding opening 411 that slides vertically along the surface of the limiting member 212. By limiting the plate 41, the plate 41 can only move along the axial direction of the mixing tank 1. In this embodiment, the limiting member 212 is a round rod fixed on the bottom cover 21. The inner wall of the sliding opening 411 matches the outer contour of the limiting member 212 so that the plate 41 can move stably.
[0033] The gear ring 52 has an outer mounting groove 522, and the bottom cover 21 is fixedly provided with a mounting bracket 54 that slides with the inner wall of the mounting groove 522. The top of the mounting bracket 54 slides along the three sides of the inner wall of the mounting groove 522, and there are two or more mounting brackets 54 equidistantly arranged along the circumference of the gear ring 52, so that the gear ring 52 can rotate stably on the bottom cover 21.
[0034] In practice, a stirring rod is installed inside the mixing tank 1. The top of the stirring rod passes through the bottom cover 21 and is coaxially fixed with the drive gear 51. This allows the motor 11 to drive the stirring rod to rotate and mix the raw materials while providing a drive for the small vibration of the feed pipe 3. This saves the limited installation space at the top of the mixing tank 1 and avoids structural complexity, thus saving costs.
[0035] Those skilled in the art should understand that this utility model is an improved device. Its innovation lies in the collaborative layout and specific structural relationship of the components, rather than the way the basic functions are implemented. The connection between the existing parts, the operating parameters and control logic are all common knowledge and conventional design choices in the field. Technical personnel can determine the appropriate specific implementation method by conducting limited experiments or referring to technical manuals according to the overall design requirements of the equipment, or by having a qualified professional manufacturer standardize and guide the operation according to mature industry standards. No creative labor is required.
[0036] The control method of this utility model is to control the device by manually starting and stopping the switch. The wiring diagram of the power element and the supply of power are common knowledge in the field. Since this utility model is mainly used to protect mechanical devices, the control method and wiring layout will not be explained in detail.
[0037] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It will be apparent to those skilled in the art that this utility model is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model. Therefore, the embodiments should be considered exemplary and non-limiting in all respects. The scope of this utility model is defined by the appended claims rather than the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0038] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A mixing device for processing feed for livestock and poultry farming, comprising a mixing tank (1), a top plate assembly (2) provided on the mixing tank (1), and a motor (11) for providing mixing driving force installed on the top plate assembly (2). Its features are: The top plate assembly (2) is provided with two or more feed pipes (3), and the feed pipes (3) are in active cooperation with the top plate assembly (2) through the anti-blocking drive assembly; The anti-clogging drive assembly includes a control board (4) fixedly connected to all feed pipes (3) and a drive assembly (5) that drives the control board (4) to reciprocate along the axial direction of the mixing tank (1). The drive assembly (5) is driven by a motor (11).
2. The mixing device for processing feed for livestock and poultry farming according to claim 1, characterized in that: The top plate assembly (2) includes a bottom cover (21) fixed above the mixing tank (1), a control plate (4) is movably mounted on the bottom cover (21), and a groove (211) is provided on the bottom cover (21). The outside of the feed pipe (3) is slidably connected to the groove (211).
3. The mixing device for processing feed for livestock and poultry farming according to claim 2, characterized in that: The control board (4) includes a plate (41) that can move linearly up and down on the bottom cover (21). The plate (41) is fixedly connected to the outside of the feed pipe (3). The bottom of the plate (41) is connected to the drive assembly (5). An elastic element (6) is provided at the bottom of the plate (41) to help it reset after movement.
4. The mixing device for processing feed for livestock and poultry farming according to claim 3, characterized in that: The drive assembly (5) includes a main drive structure and an active component (521). The main drive structure drives the active component (521) to move. The plate (41) is provided with a driven component (43) that is in transmission cooperation with the active component (521). The plate (41) moves through the transmission cooperation between the active component (521) and the driven component (43).
5. The mixing device for processing feed for livestock and poultry farming according to claim 4, characterized in that: The main drive structure includes a drive gear (51) coaxially connected to the rotor of the motor (11) and a gear ring (52) coaxially located outside the drive gear (51). The drive gear (51) and the gear ring (52) are connected by a driven gear (53). The drive gear (51), the gear ring (52) and the driven gear (53) are all rotatably mounted on the bottom cover (21).
6. The mixing device for processing feed for livestock and poultry farming according to claim 5, characterized in that: The active component (521) is a plate fixedly installed on the gear ring (52). The plate has an arc-shaped structure coaxial with the gear ring (52) and the upper surface of the plate has a semi-circular structure. The driven component (43) is a rod fixed to the bottom side of the plate (41). The bottom end of the rod has a spherical structure and the rod slides in contact with the upper surface of the plate through the spherical structure. Under normal conditions, the bottom height of the rod is lower than the highest horizontal height of the upper surface of the plate.
7. A mixing device for processing feed for livestock and poultry farming according to claim 6, characterized in that: The plate (41) has an opening (42) through which the rotor of the motor (11) passes. A limiting member (212) is fixedly installed on the bottom cover (21). The plate (41) has a sliding opening (411) that slides vertically along the surface of the limiting member (212).
8. A mixing device for processing feed for livestock and poultry farming according to claim 7, characterized in that: The toothed ring (52) has an installation groove (522) on its outer side, and the bottom cover (21) is fixedly provided with an installation bracket (54) that slides with the inner wall of the installation groove (522).
9. A mixing device for processing feed for livestock and poultry farming according to claim 8, characterized in that: The bottom cover (21) is bolted to the top cover (22), and the motor (11) is fixedly installed on the top cover (22). The top cover (22) has an opening for the feed pipe (3) to be exposed.
10. A mixing device for processing feed for livestock and poultry farming according to claim 9, characterized in that: The mixing tank (1) is equipped with a stirring rod. The top of the stirring rod passes through the bottom cover (21) and is fixed coaxially with the drive gear (51).