Anti-blocking screening machine for biological fertilizer processing
By using a rotating whip and whip rod structure to break up particles in an anti-blocking screening machine for biofertilizer processing, and combining a slide rod and a vibration motor to shake the screen, the problem of screen blockage is solved and the screening efficiency is improved.
Patent Information
- Application Number
- CN202422823213.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-11-20
AI Technical Summary
The existing screening machine is prone to clogging the screen mesh when screening biofertilizers, resulting in reduced work efficiency.
A blocking-proof screening machine for biofertilizer processing was designed. A rotating whip and whip rod structure was used to break up larger particles. The screen was shaken by a sliding rod and a vibration motor. The discharge trough and the screen were fixed as one. The rotating motor drove the gear to drive the screen and the discharge trough to shake together.
It effectively prevents screen clogging, improves screening speed and work efficiency, and ensures that biofertilizer particles pass through the screen smoothly.
Smart Images

Figure CN223393828U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of production equipment, and more specifically, relates to an anti-blocking screening machine for processing biological fertilizers. Background Art
[0002] Biofertilizer, also known as biological fertilizer, inoculant or bacterial fertilizer, refers to a type of fertilizer product that uses the life activities of microorganisms as its core to enable crops to obtain specific fertilizer effects. There is an essential difference between biofertilizer and micro-fertilizer: the former is a living organism, while the latter is a mineral element. Biological resources are abundant, with many types and functions, and can be developed into fertilizers with different functions and uses. However, biofertilizers generally have high humidity and are very easy to clump. Ordinary screening machines have simple structures and single functions. During the screening process of biofertilizers, the screen mesh is easily blocked, reducing work efficiency. Utility Model Content
[0003] In order to solve the above technical problems, the utility model provides an anti-blocking screening machine for bio-fertilizer processing, so as to solve the problem that the existing screening machine blocks the screen mesh and reduces the working efficiency.
[0004] The utility model is a blocking-proof screening machine for biofertilizer processing, which is achieved by the following specific technical means:
[0005] A blocking-proof screening machine for processing bio-fertilizers comprises: a bearing member, a feed plate, a screen, a rotating whip, a sliding rod, a gear and a discharging chute; the bearing member supports the entire fuselage, the rearmost side of the fuselage is the feed plate, baffles are provided on both sides of the feed plate, and the whole is in an inclined state with the rear higher and the front lower; the lower end of the feed plate is connected to the screen frame, and the screen frame is in a horizontal state; two rotating whips are provided inside the feed plate, six rotating whips are provided inside the screen frame, six whip rods are fixed on the rotating whip, a screen is provided below the screen frame, the screen is connected to the plate frame around, and the discharging chute is below the screen, baffles are provided around the discharging chute, and the middle of the front baffle is the discharging port, the discharging chute is in an inclined state with the front lower and the back higher as a whole, a vibration motor is provided below the left rear side of the discharging chute, and there are two sliding rods on the front and rear sides of the discharging chute respectively.
[0006] Furthermore, the two ends of the eight rotating whips pass through both sides of the screen frame, and each rotating whip is connected to a group of gears at the left end. The first and sixth groups of gears are one gear, the second group is three gears, and the remaining groups are two gears.
[0007] Furthermore, the outermost gears of the second group are connected to a rotating motor via a belt, and the rotating motor drives the gears to rotate, and the adjacent groups of gears are driven to rotate by the belt.
[0008] Furthermore, openings are provided below the points where the rotating whips on both sides of the screen frame pass through, and the screen passes through the openings on both sides. There are four fixed rods on each side of the screen frame, and the upper ends of the fixed rods are vertically connected to the sliding rods. The sliding rods are composed of two round rods. The thinner solid rod is sleeved in the thicker hollow tube, and a spring is sleeved on the outside of the solid rod. One end of the spring is connected to the hollow tube, and the other end is connected to the screen frame baffle.
[0009] Furthermore, the screen and the discharge chute are fixed into a whole by a steel plate.
[0010] Compared with the prior art, the present invention has the following beneficial effects:
[0011] 1. The utility model is provided with a rotating whip and a whip rod, which can break up larger biofertilizer particles into smaller particles, thereby effectively preventing the screen from being blocked.
[0012] 2. The utility model speeds up the screening speed and improves the working efficiency by arranging a slide bar on the screen and shaking the screen.
[0013] 3. The utility model sets the discharge chute and the screen as a whole, and the discharge chute shakes along with the frequency of the screen, which can effectively prevent the biological fertilizer particles from falling out. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a structural diagram of the present utility model.
[0015] Figure 2 This is a schematic diagram of the gear installation structure of the utility model.
[0016] Figure 3 The utility model is Figure 2 The schematic diagram of the enlarged structure of part A is presented.
[0017] Figure 4 The utility model is Figure 1 Lead to the schematic diagram of the enlarged structure of part B.
[0018] In the figure, the corresponding relationship between the component names and the drawing numbers is as follows:
[0019] 1. Bearing parts;
[0020] 2. Feed plate;
[0021] 3. Screen; 301. Plate frame; 302. Vibration motor; 303. Screen frame;
[0022] 4. Rotating whip; 401. Whip rod;
[0023] 5. Sliding rod; 501. Spring; 502. Fixed rod;
[0024] 6. Gear; 601. Rotating motor;
[0025] 7. Discharge chute; 701. Discharge port. DETAILED DESCRIPTION
[0026] The following embodiments of the present invention are described in further detail with reference to the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.
[0027] Example:
[0028] As attached Figure 1 To the attached Figure 4 As shown:
[0029] The utility model provides an anti-blocking screening machine for biofertilizer processing, which includes a bearing member 1, a feed plate 2, a screen 3, a rotating whip 4, a sliding rod 5, a gear 6 and a discharging chute 7; the bearing member 1 supports the entire machine body, and the rear side of the machine body is the feed plate 2. Baffles are provided on both sides of the feed plate 2, and the whole is in an inclined state with a rear high and a front low. The lower end of the feed plate 2 is connected to the screen frame 303, and the screen frame 303 is in a horizontal state. Two rotating whips 4 are provided inside the feed plate 2, and six rotating whips 4 are provided inside the screen frame 303. Six whip rods 401 are fixed on the rotating whip 4, and a screen 3 is provided below the screen frame 303. The screen 3 is connected to the plate frame 301 around, and the discharging chute 7 is below the screen 3. Baffles are provided around the discharging chute 7, and the middle of the front baffle is a discharging port 701. The discharging chute 7 is in an inclined state with a front low and a back high as a whole. A vibration motor 302 is provided below the left rear side of the discharging chute 7, and there are two sliding rods 5 on the front and rear sides of the discharging chute 7.
[0030] Among them, such as Figure 2 As shown, the two ends of the eight rotating whips 4 pass through both sides of the screen frame 303, and each rotating whip 4 is connected to a group of gears 6 at the left end. The first and sixth groups of gears 6 are one gear 6, the second group is three gears 6, and the remaining groups are two gears 6. This structure enables each rotating whip 4 to rotate.
[0031] Among them, such as Figure 1 As shown, the outermost gears 6 of the second group are connected to the rotating motor 601 by a belt. The rotating motor 601 drives the gears 6 to rotate, and the adjacent groups of gears 6 are driven to rotate by the belt. This structure enables each gear 6 to be driven by the rotating motor 601 to rotate, breaking larger biofertilizer particles into smaller particles, effectively preventing the screen 3 from being blocked.
[0032] Among them, such as Figure 4As shown, openings are provided below the points where the rotating whips 4 on both sides of the screen frame 303 pass through, and the screen 3 passes through the openings on both sides. There are four fixed rods 502 on each side of the screen 3 plate frame 301, and the upper ends of the fixed rods 502 are vertically connected to the sliding rods 5. The sliding rods 5 are composed of two round rods. The thinner solid rod is sleeved in the thicker hollow tube, and a spring 501 is sleeved on the outside of the solid rod. One end of the spring 501 is connected to the hollow tube, and the other end is connected to the baffle of the screen 3 plate frame 301. This structure speeds up the screening speed and improves the work efficiency by shaking the screen 3.
[0033] Among them, such as Figure 4 As shown, the screen 3 and the discharge chute 7 are fixed into a whole by steel plates, and the discharge chute 7 shakes along with the frequency of the screen 3, which can effectively prevent the biofertilizer particles from falling out.
[0034] The specific usage and function of this embodiment are as follows:
[0035] In the present utility model, the vibration motor 302 and the rotating motor 601 are started, and the biofertilizer enters the screening machine from the feed plate 2. The larger biofertilizer particles are broken into smaller particles by the whip rod 401 on the rotating whip 4 on the feed plate 2. Under the action of the inclined slope of the feed plate 2 and the rotating whip 4, the biofertilizer enters the screen frame 303. The screen frame 303 is provided with multiple groups of rotating whips 4, which perform secondary crushing on the biofertilizer particles that have not been broken or are still large after being broken. The lower screen 3 is shaken left and right under the action of the vibration motor 302, and the biofertilizer particles fall into the discharge trough 7 below the screen 3, which shakes with the shaking frequency of the screen 3. Because of the shaking of the discharge trough 7, the biofertilizer particles are discharged from the discharge port 701 and loaded into a suitable container.
[0036] Anything not described in detail in the present invention is well known to those skilled in the art.
Claims
1. A biofertilizer processing anti-blocking screening machine, comprising: The invention comprises a supporting member (1), a feed plate (2), a screen (3), a rotating whip (4), a slide bar (5), a gear (6) and a discharge trough (7); the supporting member (1) supports the entire fuselage, the rear side of the fuselage is the feed plate (2), baffles are provided on both sides of the feed plate (2), and the whole is in an inclined state with the rear higher and the front lower; the lower end of the feed plate (2) is connected to the screen frame (303), and the screen frame (303) is in a horizontal state; two rotating whips (4) are provided inside the feed plate (2), and the screen frame (303) is provided inside. Six rotating whips (4), six whip rods (401) are fixed on the rotating whips (4), a screen (3) is provided below the screen frame (303), the screen (3) is connected to the plate frame (301) on all sides, a discharge trough (7) is provided below the screen (3), baffles are provided on all sides of the discharge trough (7), a discharge port (701) is provided in the middle of the front baffle, the discharge trough (7) is in an inclined state with the front lower and the rear higher, a vibration motor (302) is provided below the left rear side of the discharge trough (7), and two slide bars (5) are provided on the front and rear sides of the discharge trough (7).
2. The anti-blocking screening machine for biofertilizer processing according to claim 1, characterized in that: The two ends of the eight rotating whips (4) pass through both sides of the screen frame (303), and the left end of each rotating whip (4) is connected to a group of gears (6), the first group and the sixth group of gears (6) are one gear (6), the second group is three gears (6), and the remaining groups are two gears (6).
3. The anti-blocking screening machine for biofertilizer processing according to claim 2, characterized in that: The outermost gears (6) of the second group are connected to a rotating motor (601) via a belt, and the rotating motor (601) drives the gears (6) to rotate, and the gears (6) of two adjacent groups are driven to rotate by the belt.
4. The anti-blocking screening machine for biofertilizer processing according to claim 1, characterized in that: The screen frame (303) has openings below the points where the rotating whips (4) pass through on both sides. The screen (3) passes through the openings on both sides. Four fixed rods (502) are respectively provided on both sides of the screen (3) plate frame (301). The upper ends of the fixed rods (502) are vertically connected to the sliding rods (5). The sliding rods (5) are composed of two round rods. The solid rods are sleeved in the hollow tube. The outer side of the solid rods is sleeved with a spring (501). One end of the spring (501) is connected to the hollow tube, and the other end is connected to the screen (3) plate frame (301) baffle.
5. The anti-blocking screening machine for biofertilizer processing according to claim 1, characterized in that: The screen (3) and the discharge chute (7) are fixed into a whole by a steel plate.