Outfeed feed shaker dehumidifier

By using a conveyor-type feed shaking dehumidification device with a shaking plate and a material blocking plate structure, the problems of uneven dehumidification and breakage of pelleted feed are solved, achieving uniform drying and debris collection, thus improving feed quality and resource utilization.

CN120831001BActive Publication Date: 2025-11-21WUWEI TIANKANG FEED CO LTD
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Patent Information

Application Number
CN202511346422.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-19
Publication Date
2025-11-21
Estimated Expiration
2045-09-19

AI Technical Summary

Technical Problem

In existing technologies, pelleted feed is not dehumidified evenly and is easily broken, resulting in a decline in quality. Furthermore, damp feed is prone to clumping, which affects feeding equipment and animal health.

Method used

The feed shaking dehumidification device adopts an outward-type feed shaking dehumidification device. Through the inclined shaking plate and material blocking plate structure, combined with heating components and residue recovery components, it can achieve uniform drying of feed and collection of debris. The shaking mechanism can be used to improve feed mobility, and the angle of the material blocking plate can be adjusted to control the residence time.

Benefits of technology

It achieves uniform drying of feed, improves dehumidification efficiency, reduces debris generation, enhances feed quality, and improves resource utilization through residue recycling components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an outgoing type feed shaking and dehumidifying device, which comprises a rack and a box body, an inside of the box body is provided with a shaking plate for conveying feed and is inclined, a heating assembly is arranged at an upper end of the box body, a residue recycling assembly is arranged at a bottom of the box body, a plurality of material resisting plates for slowing down the moving speed of the feed are arranged above the shaking plate, the material resisting plates are controlled in the inclination angle through an angle adjusting mechanism, and the shaking plate is controlled in shaking in the box body through a shaking mechanism. The shaking plate is driven to reciprocatingly shake through the shaking mechanism, the activity of the feed particles can be improved, and the feed is prevented from being accumulated on the shaking plate. The moving speed of the feed on the shaking plate can be slowed down through the two groups of the material resisting plates with the adjustable inclination angle, the residence time of the feed in the box body is improved, the drying efficiency of the feed is improved, and the size of the box body can be reduced. The residue recycling assembly can collect the residue, and the feed quality is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of feed production, in particular to an outgoing type feed shaking and dehumidifying device. BACKGROUND

[0002] Feed is an important source of nutrition for farmed animals, and its quality directly affects animal growth, health and breeding efficiency. When the humidity of feed is too high, it is easy to cause mold breeding (such as aflatoxin), so that the feed deteriorates, and after the animals eat it, problems such as diarrhea, liver and kidney damage may occur. In addition, high moisture content can accelerate fat oxidation and vitamin degradation, reducing the nutritional value of the feed. In addition, moist feed is easy to clump, affecting palatability and feeding efficiency, and even blocking the feeding equipment. Therefore, during feed production or storage, it is necessary to ensure the dryness of the feed. Feed dehumidification is a key link to ensure the quality of the feed. A humid environment can easily cause feed to mold, lose nutrients, and even produce toxins, affecting animal health.

[0003] When existing granular feed is dehumidified, the feed is transported into the oven through a conveying line, and the oven dehumidifies the feed in a static state. This method can dehumidify the surface layer of the feed on the conveying line. The lower layer of the feed is less affected by the oven than the upper layer, which can cause uneven dehumidification. In addition, there is also a stirring device for stirring the feed. While stirring, high-temperature gas is blown into the feed to dry and dehumidify the feed. Although this method of stirring the feed can achieve uniform dehumidification, the stirring device can easily crush the feed, resulting in a large amount of debris, which affects the quality and appearance of the feed and causes economic losses to the enterprise. SUMMARY

[0004] The purpose of the present application is to provide an outgoing type feed shaking and dehumidifying device to solve the problems raised in the background.

[0005] To achieve the above-mentioned purpose, the present application provides the following technical scheme: an outgoing type feed shaking and dehumidifying device, comprising a rack and a box body, the box body is fixed on the upper end of the rack and is open at both ends;

[0006] The high end of the box body is a feed inlet, and the low end is a discharge port;

[0007] The inside of the box body is inclined and provided with a shaking plate for conveying feed, the shaking plate is uniformly provided with a plurality of through holes, and the shaking plate is an arc structure;

[0008] The upper end of the box body is provided with a heating assembly, and the bottom of the box body is provided with a residue recycling assembly, and the shaking plate is located between the heating assembly and the residue recycling assembly;

[0009] The upper side of the blocking plate is provided with a rotating shaft, and the rotating shaft is rotationally connected with the serpentine plate.

[0010] The two ends of the rocking plate extend to the outside of the openings of the box body, the bottom of the rocking plate is movably connected with the rack near the two ends, and the rocking plate is controlled to rock in the box body through a rocking mechanism.

[0011] Preferably, the rocking mechanism comprises an arc-shaped plate fixed at the two ends of the rack, an arc-shaped sliding groove is arranged on the inner arc surface of the arc-shaped plate, and an arc-shaped sliding rail is arranged on the outer arc surface of the rocking plate near the two ends and is slidably connected with the arc-shaped sliding groove.

[0012] One end of the outer arc surface of the rocking plate is provided with a swing rod, a sliding ring is sleeved on the swing rod, and the sliding ring is slidably connected with the swing rod, and the sliding ring is provided with a fixing column in the radial direction.

[0013] A motor one is fixedly installed on the rack, and a rotating plate is fixedly connected with the output end of the motor one.

[0014] Preferably, the angle adjusting mechanism comprises a serpentine plate arranged above the blocking plate, and the serpentine plate is fixedly connected with the box body through a plurality of vertical rods.

[0015] One end of the upper side of the blocking plate is provided with a rotating shaft, and the rotating shaft is rotationally connected with the serpentine plate.

[0016] The other end of the upper side of the blocking plate is provided with an adjusting column, an adjusting rod is arranged above the adjusting column, and the adjusting rod is provided with two adjusting rods, each adjusting rod is used for adjusting each group of blocking plates.

[0017] The radial direction of the adjusting rod is provided with two limiting columns matched with the adjusting column, and the adjusting column is located between the two limiting columns.

[0018] The adjusting rod is slidably connected with a drooping plate fixedly connected with the box body.

[0019] One end of the adjusting rod is provided with a cylindrical gear rack, two cylindrical gear racks are meshingly connected with a gear, the gear is controlled to rotate through a driving rod, the driving rod is rotationally installed on a fixed plate on one side of the drooping plate, an outer side of the fixed plate is provided with a motor two, and an output end of the motor two is connected with the driving rod.

[0020] Preferably, the bottom of the blocking plate is provided with an arc surface structure matched with the inner arc surface of the rocking plate, and the bottom of the blocking plate and the inner arc surface of the rocking plate have a gap.

[0021] Preferably, the heating assembly comprises a heating bin at the upper end of the box body, the heating bin is internally provided with an electric heater, the upper end of the electric heater is provided with a plurality of fans, the upper end of the fan is provided with an air filtering sponge and a detachable ventilation mesh plate.

[0022] Preferably, the residue recycling assembly comprises a residue recycling plate at the bottom of the box body, the residue recycling plate is provided with openings at both ends for exhaust, and the openings are provided with baffle plates for shielding residues;

[0023] The two sides of the residue recycling plate are connected to the two sides of the box body through guide plates one, and the guide plates one are inclined structures;

[0024] The bottom of the residue recycling plate is provided with a residue recycling opening near one end of the discharge opening for discharging residues.

[0025] Preferably, the discharge opening is provided with a material collecting assembly for collecting feed, and the material collecting assembly is fixedly connected to the box body.

[0026] Preferably, the material collecting assembly comprises two material collecting plates, and one end of each of the two material collecting plates is provided with a guide plate two for guiding the feed to flow between the two material collecting plates, and the guide plate two is an inclined structure.

[0027] Preferably, the bottom of the residue recycling plate is provided with a plurality of knocking hammers.

[0028] Preferably, the feeding opening and the discharge opening are each provided with a curtain for preventing heat loss.

[0029] Compared with the prior art, the present application has the following advantages:

[0030] By setting the shaking plate to be an inclined structure, the feed moves from the feeding opening to the discharge opening under the action of gravity, and the feed is always in a moving and rolling state on the shaking plate, so that the feed can be uniformly dried and dehumidified when the heating assembly at the upper end of the box body dries and dehumidifies the feed on the shaking plate;

[0031] By setting two groups of inclined material blocking plates, the moving speed of the feed on the shaking plate can be slowed down, the residence time of the feed in the box body can be prolonged, and the drying efficiency of the feed can be improved, and the size of the box body can be reduced.

[0032] The material blocking plates can block high-temperature gas, prevent the high-temperature gas from flowing out from the two sides of the feeding opening and the discharge opening, make the high-temperature air enter the lower part of the shaking plate through the through holes on the shaking plate, and then be discharged through the two ends of the residue recycling assembly.

[0033] In the process of feed moving and rolling, the chippings and powder attached to the feed particles are dried and then fall down through the through holes, improving the quality of the feed, and the residual recovery assembly can collect the residual, and the collected feed residual can be reproduced;

[0034] In the drying and dehumidifying process, the reciprocating swing of the swing plate driven by the swing mechanism can improve the activity of the feed particles and prevent the feed from accumulating on the swing plate. BRIEF DESCRIPTION OF DRAWINGS

[0035] Figure 1 For the overall structure of the present application Figure 1 ;

[0036] Figure 2 For the overall structure of the present application Figure 2 ;

[0037] Figure 3 For the side view of the present application

[0038] Figure 4 For the internal structure of the present application Figure 1 ;

[0039] Figure 5 For the internal structure of the present application Figure 2 ;

[0040] Figure 6 For the internal structure of the present application Figure 3 ;

[0041] Figure 7 For the Figure 6 of the present application is enlarged at A;

[0042] Figure 8 For the box structure of the present application

[0043] In the figure: 1, rack; 11, feed inlet; 12, discharge port; 13, curtain; 2, box; 3, shaking plate; 31, through hole; 4, heating assembly; 41, heating bin; 42, electric heater; 43, fan; 44, air filter sponge; 45, ventilation mesh plate; 5, residue recovery assembly; 51, residue recovery plate; 52, guide plate one; 53, residue recovery port; 54, baffle; 55, knocking hammer; 6, blocking plate; 7, angle adjusting mechanism; 71, serpentine plate; 72, vertical rod; 73, rotating shaft; 74, adjusting column; 75, adjusting rod; 76, limiting column; 77, drooping plate; 78, cylindrical rack; 79, gear; 710, drive rod; 711, motor two; 8, shaking mechanism; 81, arc plate; 82, arc-shaped sliding groove; 83, arc-shaped sliding rail; 84, swinging rod; 85, sliding ring; 86, fixed column; 87, motor one; 88, rotating plate; 9, material collecting assembly; 91, material collecting plate; 92, guide plate two. DETAILED DESCRIPTION

[0044] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0045] Please refer to Figures 1-8 The present application provides a technical solution: an outgoing type feed shaking and dehumidifying device, which comprises a rack 1 and a box 2. The box 2 is fixedly inclined at the upper end of the rack 1, and the two ends of the box 2 are open structures. The end of the box 2 at the high position is a feed inlet 11, and the end at the low position is a discharge port 12. An inclined shaking plate 3 for conveying feed is arranged in the box 2. The shaking plate 3 is uniformly distributed with a plurality of through holes 31, and the shaking plate 3 is in an arc-shaped structure. A heating assembly 4 is arranged at the upper end of the box 2. A residue recovery assembly 5 is arranged at the bottom of the box 2. The shaking plate 3 is located between the heating assembly 4 and the residue recovery assembly 5. A plurality of blocking plates 6 for slowing down the moving speed of the feed are arranged above the shaking plate 3. The blocking plates 6 are divided into two groups, and the two groups of blocking plates 6 are staggered and inclined. The angle adjusting mechanism 7 is used to control the inclination angle of the blocking plates 6.

[0046] When the dehumidification work is carried out, the pellet feed is thrown from the feeding port 11 to the inner arc surface of the shaking plate 3, the shaking plate 3 is in an inclined structure, that is, the feeding port 11 is high at one end and the discharging port 12 is low at one end, so that the feed moves from the feeding port 11 to the discharging port 12 by gravity, the heating assembly 4 at the upper end of the box body 2 sends high-temperature gas to the inside of the box body 2, which can dry and dehumidify the feed on the shaking plate 3, and the feed is always in a moving and rolling state on the shaking plate 3, so that the feed can be uniformly dried and dehumidified, the setting of the two groups of inclined material blocking plates 6 can slow down the moving speed of the feed on the shaking plate 3, increase the residence time of the feed in the box body 2, thereby improving the drying efficiency of the feed, and the size of the box body 2 can be reduced, if the humidity of the feed discharged from the discharging port 12 does not meet the requirement, the inclination angle of the material blocking plate 6 can be adjusted through the angle adjusting mechanism 7, so that the inclination angle of the material blocking plate 6 can be increased or decreased, so that the blocking and slowing down ability of the material blocking plate 6 to the feed is increased or decreased, so that the time for the feed to stay in the box body 2 is lengthened or shortened, thereby adjusting the drying and dehumidifying effect of the feed, in addition, the material blocking plate 6 can block the high-temperature gas, prevent the high-temperature gas from flowing out from the two sides of the feeding port 11 and the discharging port 12, make the high-temperature air enter the lower part of the shaking plate 3 through the through hole 31 on the shaking plate 3, and then be discharged from the two ends of the residue recovery assembly 5, in the process of moving and rolling of the feed, the debris and powder attached to the feed particles will fall down after being dried through the through hole 31, the residue recovery assembly 5 can collect the residues, and the collected feed residues can be reproduced.

[0047] The two ends of the shaking plate 3 extend to the outside of the two end openings of the box body 2, the bottom of the shaking plate 3 is movably connected to the rack 1 near the two ends, and the shaking plate 3 is controlled to shake in the box body 2 by the shaking mechanism 8;

[0048] The shaking mechanism 8 comprises arc-shaped plates 81 fixed at the two ends of the rack 1, the inner arc surfaces of the arc-shaped plates 81 are provided with arc-shaped sliding grooves 82, the outer arc surfaces of the shaking plate 3 are provided with arc-shaped sliding rails 83 near the two ends, the arc-shaped sliding rails 83 are slidably connected with the arc-shaped sliding grooves 82, one end of the outer arc surface of the shaking plate 3 is provided with a swing rod 84, a sliding ring 85 is sleeved on the swing rod 84, and the sliding ring 85 is slidably connected with the swing rod 84, the radial direction of the sliding ring 85 is provided with a fixed column 86, a motor one 87 is fixedly installed on the rack 1, a rotating plate 88 is fixedly connected to the output end of the motor one 87, and the fixed column 86 is rotatably connected with the rotating plate 88.

[0049] Wherein, in the drying and dehumidifying process, the activity of the feed particles can be improved by driving the reciprocating swing of the swing plate 3 through the swing mechanism 8, and the feed is prevented from accumulating on the swing plate 3. The bottom of the blocking plate 6 and the inner arc surface of the swing plate 3 are provided with a certain gap, and the two will not interfere or rub when the swing plate 3 swings. The output end of the motor 87 is provided with a speed reducer (not shown in the figure), and the rotating plate 88 is driven to rotate by the motor 87, so that the fixed column 86 rotates in the rotating plate 88, the sliding ring 85 slides on the swing rod 84, and the swing rod 84 reciprocating swings, so that the swing plate 3 can reciprocating swing, and the two arc-shaped sliding rails 83 on the bottom of the swing plate 3 slide in the arc-shaped sliding groove 82.

[0050] The angle adjusting mechanism 7 includes a serpentine plate 71 above the blocking plate 6, the serpentine plate 71 is fixedly connected to the box body 2 through a plurality of vertical rods 72, one end of the upper side of the blocking plate 6 is provided with a rotating shaft 73, the rotating shaft 73 is rotatably connected to the serpentine plate 71, the other end of the upper side of the blocking plate 6 is provided with an adjusting column 74, an adjusting rod 75 is arranged above the adjusting column 74, and the adjusting rod 75 is provided with two adjusting rods 75, each adjusting rod 75 is used for adjusting each group of blocking plates 6, the radial direction of the adjusting rod 75 is provided with two limiting columns 76 matched with the adjusting column 74, the adjusting column 74 is located between the two limiting columns 76, the box body 2 is fixedly connected with a drooping plate 77, the adjusting rod 75 is slidably connected with the drooping plate 77, one end of the adjusting rod 75 is provided with a cylindrical gear rack 78, the two cylindrical gear racks 78 are all meshingly connected with a gear 79, the gear 79 is controlled to rotate through a driving rod 710, the driving rod 710 is rotatably installed on a fixed plate on one side of the drooping plate 77, the outer side of the fixed plate is provided with a motor 711, the output end of the motor 711 is connected with the driving rod 710, and the bottom of the blocking plate 6 is provided with an arc surface structure matched with the inner arc surface of the swing plate 3, and the bottom of the blocking plate 6 and the inner arc surface of the swing plate 3 have a gap.

[0051] Wherein, when the inclination angle of the blocking plate 6 is adjusted, the motor 711 drives the driving rod 710 to rotate, so that the two gears 79 rotate, the two adjusting rods 75 move, the two limiting columns 76 on the adjusting rod 75 move, and the adjusting column 74 moves, so that the rotating shaft 73 at the other end of the blocking plate 6 rotates on the serpentine plate 71, thereby realizing the inclination angle adjustment of the two groups of blocking plates 6 at the same time. The serpentine structure of the serpentine plate 71 can reduce the blockage of high-temperature air.

[0052] The heating assembly 4 includes a heating bin 41 located at the upper end of the box body 2, the heating bin 41 is internally provided with an electric heater 42, the upper end of the electric heater 42 is provided with a plurality of fans 43, the upper end of the fan 43 is provided with an air filtering sponge 44 and a detachable ventilation mesh plate 45, and the feeding port 11 and the discharging port 12 are both provided with a curtain 13 for preventing heat loss.

[0053] The air filter sponge 44 is used to filter dust impurities in the air, preventing dust impurities from entering the box 2 to affect the service life of the electric heater 42 and the quality of the feed. The ventilation screen plate 45 with a detachable structure can facilitate the disassembly and cleaning of the air filter sponge 44. The curtain 13 is made of high-temperature-resistant soft material to prevent excessive heat loss from the feed inlet 11 and the discharge port 12.

[0054] The residue recovery assembly 5 includes a residue recovery plate 51 located at the bottom of the box 2. The residue recovery plate 51 is provided with openings at both ends for exhaust, and the openings are provided with baffle plates 54 for shielding residues. The residue recovery plate 51 is provided with a plurality of knocking hammers 55 at the bottom. The residue recovery plate 51 is connected to the two sides of the box 2 through guide plates one 52, and the guide plates one 52 are inclined. The residue recovery plate 51 is provided with a residue recovery port 53 for discharging residues at the bottom near one end of the discharge port 12.

[0055] The residue recovery assembly 5 can recover and reproduce the feed residues, thereby improving the quality of the feed. After the feed residues fall through the through holes 31 of the shaking plate 3, they fall onto the residue recovery plate 51 through the guide plates one 52 on both sides. The residue recovery plate 51 is inclined, and the knocking hammers 55 at the bottom intermittently knock the residue recovery plate 51, causing the residues to fall into the residue recovery port 53. By placing a container at the bottom of the residue recovery port 53, the feed residues can be recovered.

[0056] The discharge port 12 is provided with a material collecting assembly 9 for collecting feed. The material collecting assembly 9 is fixedly connected to the box 2. The material collecting assembly 9 includes two material collecting plates 91, each provided with a guide plate two 92 at one end for guiding the feed between the two material collecting plates 91. The guide plate two 92 is inclined.

[0057] The inclined guide plate two 92 can collect the dehumidified feed on the shaking plate 3, allowing the feed to enter between the two material collecting plates 91 and then be transported to the next process for packaging.

[0058] The working principle and use process of the present application: when carrying out the dehumidification work, the heating assembly 4 is started, the heating assembly 4 generates high-temperature gas and blows into the inside of the box 2, which is used for drying and dehumidifying the feed particles, the rocking mechanism 8 is started to drive the rocking plate 3 to reciprocate, which is used for improving the activity of the pellet feed and preventing the feed from piling up on the rocking plate 3, then the pellet feed is put into the inner arc surface of the rocking plate 3 from the feeding port 11, the rocking plate 3 is inclined, that is, the feeding port 11 is high at one end and the discharging port 12 is low at one end, so the feed moves from the feeding port 11 to the discharging port 12 by gravity, the high-temperature gas generated by the heating assembly 4 can dry and dehumidify the feed on the rocking plate 3, the feed is always in a moving and rolling state on the rocking plate 3, so the feed can be uniformly dried and dehumidified, the two groups of inclined blocking plates 6 can slow down the moving speed of the feed on the rocking plate 3, improve the residence time of the feed in the box 2, thereby improving the drying efficiency of the feed, and the size of the box 2 can be reduced, the angle adjusting mechanism 7 can adjust the inclination angle of the blocking plate 6, so that the inclination angle of the blocking plate 6 can be increased or decreased, so that the time of the feed staying in the box 2 can be lengthened or shortened, thereby adjusting the drying and dehumidifying effect of the feed, in addition, the blocking plate 6 can block the high-temperature gas, prevent the high-temperature gas from flowing out from the two sides of the feeding port 11 and the discharging port 12, so that the high-temperature air enters the lower part of the rocking plate 3 through the through hole 31 on the rocking plate 3, and then is discharged from the two ends of the residue recovery assembly 5, in the process of moving and rolling of the feed, the debris and powder attached to the feed particles will fall down through the through hole 31 after being dried, thereby improving the quality of the pellet feed, the residue recovery assembly 5 can collect the residues, and the collected feed residues can be reproduced.

[0059] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A feed shaking dehumidification device for outgoing feed, comprising a frame (1) and a housing (2), characterized in that: The box (2) is fixed at an angle to the upper end of the frame (1), and the two ends of the box (2) are open structures; The higher end of the box (2) is the feed inlet (11), and the lower end is the discharge outlet (12). The box (2) is inclined inside and has a rocking plate (3) for conveying feed. The rocking plate (3) has several through holes (31) evenly distributed on it, and the rocking plate (3) has an arc-shaped structure. The upper end of the box (2) is provided with a heating component (4), the bottom of the box (2) is provided with a residue recycling component (5), and the rocking plate (3) is located between the heating component (4) and the residue recycling component (5); Above the rocking plate (3) are several material blocking plates (6) for slowing down the movement speed of the feed. The material blocking plates (6) are divided into two groups. The two groups of material blocking plates (6) are staggered and inclined. The tilt angle of the material blocking plates (6) is controlled by the angle adjustment mechanism (7). The two ends of the rocking plate (3) extend to the outside of the openings at both ends of the box (2). The bottom of the rocking plate (3) is movably connected to the frame (1) near both ends. The rocking plate (3) is controlled to rock inside the box (2) by the rocking mechanism (8). The angle adjustment mechanism (7) includes a serpentine plate (71) located above the material blocking plate (6), and the serpentine plate (71) is fixedly connected to the box body (2) by multiple uprights (72); The upper end of the material blocking plate (6) is provided with a rotating shaft (73), which is rotatably connected to the serpentine plate (71); The other end of the upper side of the material blocking plate (6) is provided with an adjustment column (74), and an adjustment rod (75) is provided above the adjustment column (74). There are two adjustment rods (75), and each adjustment rod (75) is used to adjust the material blocking plate (6) of each group. The adjusting rod (75) is provided with two limiting posts (76) in the radial direction that match the adjusting post (74), and the adjusting post (74) is located between the two limiting posts (76); The box body (2) is fixedly connected to a pendant plate (77), and the adjusting rod (75) is slidably connected to the pendant plate (77); One end of the adjusting rod (75) is provided with a cylindrical rack (78), and both cylindrical racks (78) are meshed with gears (79). The gears (79) are controlled to rotate by a drive rod (710). The drive rod (710) is rotatably mounted on a fixed plate on one side of the hanging plate (77). A second motor (711) is provided on the outside of the fixed plate. The output end of the second motor (711) is connected to the drive rod (710).

2. The feed shaking and dehumidification device according to claim 1, characterized in that: The rocking mechanism (8) includes an arc plate (81) fixed at both ends of the frame (1). The inner arc surface of the arc plate (81) is provided with an arc groove (82). The outer arc surface of the rocking plate (3) is provided with an arc rail (83) near both ends. The arc rail (83) is slidably connected to the arc groove (82). The rocking plate (3) has a rocking rod (84) at one end of its outer arc surface. A sliding ring (85) is fitted on the rocking rod (84) and is slidably connected to the rocking rod (84). A fixing post (86) is provided in the radial direction of the sliding ring (85). A motor (87) is fixedly installed on the frame (1), and a rotating plate (88) is fixedly connected to the output end of the motor (87). The fixed column (86) is rotatably connected to the rotating plate (88).

3. The feed shaking and dehumidification device according to claim 1, characterized in that: The bottom of the resist plate (6) is provided with an arc surface structure that matches the inner arc surface of the rocking plate (3), and there is a gap between the bottom of the resist plate (6) and the inner arc surface of the rocking plate (3).

4. The feed shaking and dehumidification device according to claim 1, characterized in that: The heating assembly (4) includes a heating chamber (41) located at the upper end of the housing (2). An electric heater (42) is provided inside the heating chamber (41). Multiple fans (43) are provided at the upper end of the electric heater (42). An air filter sponge (44) and a detachable ventilation mesh plate (45) are provided at the upper end of the fans (43).

5. The feed shaking and dehumidification device according to claim 1, characterized in that: The residue recycling assembly (5) includes a residue recycling plate (51) located at the bottom of the box (2). The residue recycling plate (51) has openings for venting at both ends, and baffles (54) for blocking residue at the openings. The residue recycling plate (51) is connected to the two sides of the box body (2) through the first guide plate (52), and the first guide plate (52) is an inclined structure; The bottom of the residue recovery plate (51) near the discharge port (12) is provided with a residue recovery port (53) for discharging residue.

6. The feed shaking and dehumidification device according to claim 1, characterized in that: The discharge port (12) is provided with a feed collection component (9) for collecting feed, and the feed collection component (9) is fixedly connected to the box body (2).

7. The feed shaking and dehumidification device according to claim 6, characterized in that: The material collection assembly (9) includes two material collection plates (91), and each of the two material collection plates (91) is provided with a guide plate (92) at one end for guiding the feed to the space between the two material collection plates (91). The guide plate (92) is an inclined structure.

8. The feed shaking and dehumidification device according to claim 5, characterized in that: The bottom of the residue recycling plate (51) is provided with multiple hammers (55).

9. The feed shaking and dehumidification device according to claim 1, characterized in that: Both the feed inlet (11) and the discharge outlet (12) are equipped with baffles (13) to prevent heat loss.

Citation Information

Patent Citations

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