Novel charging tray capable of automatically adjusting discharging amount
By designing a new type of material tray that automatically adjusts the amount of excretion of the material, composed of a chassis, hanger, fixing sleeve and adjustment sleeve, the adjustment sleeve is used to control the sliding of the adjustment sleeve up and down, the problem of low efficiency of manual adjustment of the amount of excretion of the existing broiler material tray is solved, and the effect of automatic adjustment and precise material control is achieved.
Patent Information
- Application Number
- CN202421516165.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-29
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-06-29
AI Technical Summary
The existing broiler feed trays need to manually rotate gears one by one when adjusting the feeding volume, which is very labor-intensive and inefficient.
A new type of material tray consisting of a chassis, hanger, fixing sleeve and adjustment sleeve is designed to automatically adjust the amount of material tray. The adjustment sleeve is controlled to slide up and down through a nylon rope to adjust the gap between the adjustment sleeve and the chassis, thereby automatically adjusting the amount of material tray.
Automatically adjust the discharge volume, reduce the labor intensity and time of manual operation, improve efficiency, and achieve precise material control through the three gears on the hanger.
Smart Images

Figure CN223025213U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a broiler feeding system, in particular to a novel feeding tray with automatic adjustment of the feeding amount. Background Art
[0002] At present, when raising broilers, it is necessary to adjust the feeding amount of the feeding tray according to the feeding days. At present, when designing broiler feeding trays at home and abroad, they are all designed with gears to control the feeding amount. When adjusting the feeding amount, it is necessary to manually rotate the gears of the broiler feeding trays one by one to control the feeding amount of the trays, which not only has a large labor intensity but also very low efficiency. Content of the Utility Model
[0003] The purpose of the utility model is to solve the above problems existing in the prior art, and provide a novel feeding tray with automatic adjustment of the feeding amount.
[0004] The technical scheme adopted by the utility model is as follows:
[0005] A novel feeding tray with automatic adjustment of the feeding amount, which is characterized by being composed of a chassis, a hanging rack, a fixed sleeve and an adjusting sleeve connected in sequence;
[0006] The chassis is a cylindrical body, and a hollow upward convex first conical platform is arranged at the center of the bottom surface of the cylindrical body, and an inner cylinder is arranged at the upper end of the first conical platform;
[0007] The main body of the hanging rack is cylindrical. A positioning hole is respectively arranged at the symmetric positions on both sides of the upper part, and feeding windows are respectively arranged on both sides of the middle and lower parts. A second conical platform with an upward cone surface is arranged at the lower part of the hanging rack. A thimble column is arranged at the upper end of the second conical platform. The thimble column and the second conical platform disperse the falling feed and flow out from the feeding windows on both sides. A third conical platform is arranged at the lower end of the hanging rack. The hanging rack passes through the upper end of the first conical platform, and the third conical platform forms a positioning fit with the inner cavity of the first conical platform. The lower end of the hanging rack forms a connection fit with the inner cylinder;
[0008] The fixed sleeve includes two semi-horizontal sleeves. The lower end of each semi-horizontal sleeve is connected with a semi-vertical sleeve. The inner cavity of each semi-horizontal sleeve is a semi-step hole, and a semi-discharge hole is formed at the connection of the middle semi-step hole and the semi-vertical sleeve;
[0009] Two semi-horizontal sleeves with the same structure and the semi-vertical sleeves connected to their lower ends are combined and connected into an integral horizontal sleeve and vertical sleeve. In addition, an arc-shaped opening groove is arranged at the middle position of one of the semi-horizontal sleeves. An arc-shaped baffle is arranged in the step hole in the middle of the horizontal sleeve. A wrench is arranged on the outer side of the arc-shaped baffle and is slidably matched with the opening groove. An arc-shaped gate plate is arranged on the arc-shaped baffle, and the arc-shaped gate plate is slidably matched with the middle step hole and the discharge hole;
[0010] Two opening grooves are arranged on the semi-vertical sleeve, and a positioning boss is arranged on the semi-vertical sleeve between the two opening grooves;
[0011] The adjusting sleeve is in sliding fit with the hanging rack to adjust the feed discharge amount. The lower end of the adjusting sleeve is successively connected with two tapered platforms with variable diameters, and a group of legs are provided on the lowermost tapered platform.
[0012] On the basis of the above technical solution, there are the following further technical solutions:
[0013] The upper part of the hanging rack is provided with a positioning groove for adjusting the height. A positioning block is arranged in the inner cylinder of the upper part of the adjusting sleeve. The positioning block is matched with the positioning groove to adjust the height of the adjusting sleeve in the chassis.
[0014] The lower part of the hanging rack is provided with a wedge-shaped positioning block, and the wedge-shaped positioning block forms a positioning fit with the upper end of the inner cylinder of the chassis.
[0015] A hook groove is arranged in the inner cylinder of the adjusting sleeve. A hook is connected in the hook groove, and a nylon rope is connected above the hook.
[0016] Advantages and effects of the present utility model:
[0017] The present utility model controls the up and down sliding of the adjusting sleeve through a nylon rope, adjusts the gap between the adjusting sleeve and the chassis, and thus automatically adjusts the feeding amount of the feed tray. It solves the problems that when manually rotating the gears of the broiler feed trays one by one to control the feeding amount of the feed trays, the labor intensity is large and the efficiency is very low. Three gears are designed on the hanging rack, and the position of the adjusting sleeve on the hanging rack can be manually adjusted to achieve precise feeding control. Description of the drawings
[0018] Figure 1 is a perspective view of a novel feed tray with automatic feeding amount adjustment of the present utility model;
[0019] Figure 2 is Figure 1 a perspective view of removing the left half horizontal sleeve 2, adjusting sleeve 6 and chassis 7 on the basis of
[0020] Figure 3 is a perspective view of installing the chassis 7;
[0021] Figure 4 is a perspective view of the adjusting sleeve 6;
[0022] Figure 5 is a perspective view of the fixed sleeve 1 and the chassis 7. Specific embodiments
[0023] As Figure 1 described, a novel feed tray with automatic feeding amount adjustment provided by the present utility model is characterized in that it is composed of a chassis 7, a hanging rack 5, a fixed sleeve 1 and an adjusting sleeve 6 which are successively connected;
[0024] As shown in Figure 5, the chassis 7 is a cylindrical body. At the center of the bottom surface of the cylindrical body, there is a hollow upwardly convex first conical platform 7a. At the upper end of the first conical platform 7a, there is a short-height inner cylindrical body 7b. The space between the cylindrical body and the first conical platform 7a is the space for storing feed;
[0025] Combined with Figure 1-3 , the main body of the hanging rack 5 is a cylinder. At symmetric positions on both sides of the upper part of the hanging rack 5, there is a positioning opening 5b respectively. At both sides of the middle and lower parts, there are relatively long blanking windows 5d respectively. At the lower part of the hanging rack 5, there is a second conical platform 5f with an upward cone surface. At the upper end of the second conical platform, there is a thimble column 5c. The thimble column and the second conical platform are located at the middle position of the blanking window, and the feed falling from above the hanging rack 5 is dispersed and flows out from the blanking windows on both sides; At the lower end of the hanging rack 5, there is a third conical platform 5g. At the lower part of the hanging rack 5, there is a wedge-shaped positioning block 5h. As Figure 3 shown, the hanging rack 5 passes through the upper end of the first conical platform 7a. The third conical platform 5g forms a positioning fit with the inner cavity of the first conical platform 7a. The lower end of the hanging rack 5 forms a connection fit with the inner cylindrical body 7b. The wedge-shaped positioning block forms a positioning fit with the upper end of the inner cylindrical body 7b of the chassis 7.
[0026] As Figure 1 , Figure 2 , Figure 3 and Figure 5 shown, the fixed sleeve 1 includes two semi-horizontal sleeves 2. The lower end of each semi-horizontal sleeve is connected to a semi-vertical sleeve 2b. The inner cavity of each semi-horizontal sleeve is a semi-step hole. The semi-step hole 2a in the middle forms a semi-discharge hole 2e at the connection with the semi-vertical sleeve;
[0027] Two semi-horizontal sleeves 2 with the same structure and the semi-vertical sleeve b connected to their lower ends are combined into an integral horizontal sleeve and vertical sleeve, and they are connected into one body by a pin shaft 3 at the upper end. In addition, at the middle position of one of the semi-horizontal sleeves 2, there is an arc-shaped opening groove 2f. In the step hole 2a formed in the middle of the horizontal sleeve, there is an arc-shaped baffle 4 in sliding fit. On the outer side of the arc-shaped baffle, there is a wrench 4c in sliding fit with the opening groove 2a. On the arc-shaped baffle 4, there is an arc-shaped gate plate 4a. The arc-shaped gate plate 4a is in sliding fit with the middle step hole and the discharge hole, that is, when the arc-shaped gate plate slides to the position of the discharge hole 2e, the discharge port is closed;
[0028] As Figure 5 shown, there are two opening grooves 2c on each semi-vertical sleeve 2b. There is a positioning boss 2d on the semi-vertical sleeve between the two opening grooves. The semi-horizontal sleeve 2 and the semi-vertical sleeve 2b are combined into an integral fixed sleeve 1 and inserted into the hanging rack 5 in a sliding fit. The positioning boss 2d on the semi-vertical sleeve 2b is stuck in the positioning openings 5b on both sides of the hanging rack 5;
[0029] As Figure 1 , Figure 4As shown, the adjusting sleeve 6 is slidably engaged with the hanging bracket 5 to adjust the feed discharge amount. The lower end of the adjusting sleeve 6 is successively connected with two reducing frustums 6d with gradually increasing diameters. A set of legs 6e are provided on the lowermost frustum 6d. A hook groove 6b is provided in the inner cylinder of the adjusting sleeve 6. A hook 8a is connected in the hook groove, and a nylon rope 8 is connected above the hook.
[0030] See Figure 1 , Figure 2 , Figure 3 and Figure 4 , a positioning groove 5a for adjusting the height in 1 - 3 gears is provided on the upper part of the hanging bracket 5. A positioning block 6c is provided in the upper inner cylinder of the adjusting sleeve 6. The positioning block 6c cooperates with the positioning groove 5a to adjust the height of the adjusting sleeve 6 in the chassis 7.
[0031] The working process of the present utility model is as follows:
[0032] The feed is transported through the auger in the feed pipe. The feed tray is installed in the feed pipe. When feeding is not required, the baffle 4 is pulled downwards, and the baffle 4 blocks the feed outlet of the fixed sleeve 1, so that the feed cannot fall. When feeding is required, the baffle 4 is pulled upwards, and the feed enters the hanging bracket 5 through the feed outlet of the fixed sleeve 1, and falls into the chassis 7 through the hanging bracket 5 and the adjusting sleeve 6. When it is necessary to adjust the feed discharge amount, the drive of the main steel wire rope is started, the drive drives the main steel wire rope to move, the main steel wire rope drives the nylon rope 8 to move up and down, the nylon rope 8 pulls the adjusting sleeve 6 to move up and down in the groove of the hanging bracket 5 through the hook, the adjusting sleeve 6 is controlled to slide up and down by the nylon rope 8, and the gap between the adjusting sleeve 6 and the chassis 7 is adjusted, so as to automatically adjust the feed discharge amount of the feed tray. There are 3 gears designed on the hanging bracket. When precise feed control is required, the gears 1, 2, and 3 of the adjusting sleeve 6 on the hanging bracket are manually adjusted to achieve precise feed control.
Claims
1. A new type of tray that automatically adjusts the amount of material discharged, characterized in that It is composed of a chassis (7), a hanger (5), a fixing sleeve (1) and an adjusting sleeve (6) which are connected in sequence; The chassis (7) is a cylindrical body, a hollow first cone-shaped platform (7a) protruding upward is provided at the center of the bottom surface of the cylindrical body, and an inner cylinder (7b) is provided at the upper end of the first cone-shaped platform (7a); The upper part of the hanger (5) is provided with a positioning opening (5b) at symmetrical positions on both sides, and the lower part is provided with a feeding window (5d) on both sides. The lower part of the hanger (5) is provided with a second conical platform (5f) with a conical surface facing upward. The upper end of the second conical platform is provided with an ejector column (5c). The ejector column and the second conical platform disperse the fallen feed to flow out from the feeding windows on both sides. The lower end of the hanger (5) is provided with a third conical platform (5g). The hanger (5) passes through the upper end of the first conical platform (7a). The third conical platform (5g) forms a positioning fit with the inner cavity of the first conical platform (7a). The lower end of the hanger (5) forms a connection fit with the inner cylinder (7b). The fixed sleeve (1) comprises two semi-horizontal sleeves (2), the lower end of each semi-horizontal sleeve being connected to a semi-vertical sleeve (2b), the inner cavity of each semi-horizontal sleeve being a semi-step hole, and the connection between the middle semi-step hole (2a) and the semi-vertical sleeve forming a semi-discharging hole (2e); Two semi-horizontal sleeves of the same structure and a semi-vertical sleeve connected at their lower ends are combined and connected to form an integral horizontal sleeve and a vertical sleeve. In addition, an arc-shaped opening groove (2f) is provided in the middle of the semi-horizontal sleeve (2) on one side. A sliding arc-shaped baffle (4) is provided in the semi-step hole (2a) in the middle of the horizontal sleeve. A wrench (4c) is provided on the outer side of the arc-shaped baffle to slide with the opening groove (2f). An arc-shaped gate plate (4a) is provided on the arc-shaped baffle plate (4). The arc-shaped gate plate (4a) slides with the step hole in the middle and the feed hole. Two opening grooves (2c) are provided on the semi-vertical sleeve (2b), and a positioning boss (2d) is provided on the semi-vertical sleeve between the two opening grooves; The adjustment sleeve (6) is slidably matched with the hanger (5) to adjust the feed discharge amount. The lower end of the adjustment sleeve (6) is connected to two tapered cones (6d) in sequence, and a group of supporting legs (6e) is provided on the lowermost tapered cone (6d).
2. According to claim 1, a new type of material tray with automatic adjustment of material feeding amount is characterized in that: A positioning groove (5a) for adjusting the height is provided on the upper part of the hanger (5), and a positioning block (6c) is provided in the inner cylinder of the upper part of the adjustment sleeve (6). The positioning block (6c) cooperates with the positioning groove (5a) to adjust the height of the adjustment sleeve (6) in the chassis (7).
3. A new type of material tray according to claim 1 or 2, which automatically adjusts the amount of material discharged, characterized in that: A wedge-shaped positioning block (5h) is provided at the lower part of the hanging bracket (5), and the wedge-shaped positioning block forms a positioning fit with the upper end of the inner cylinder (7b) of the chassis (7).
4. A new type of material tray according to claim 1 or 2, which automatically adjusts the amount of material discharged, characterized in that: A hook groove (6b) is provided in the inner cylinder of the adjustment sleeve (6), a hook (8a) is connected in the hook groove, and a nylon rope (8) is connected to the hook.
Citation Information
Cited By
Novel charging tray capable of automatically adjusting discharging amount
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