Farm pig feed mixing equipment

By designing pig feed mixing equipment for intermittent feed discharge and reverse rotation of the mixing paddle, the problem that existing equipment needs to be conveyed before stirring is solved, synchronizing mixing and discharge is achieved, and working efficiency is improved.

CN120381779AInactive Publication Date: 2025-07-29TONGHUA TIANYAN BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510873209.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-27
Publication Date
2025-07-29
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing pig feed mixing equipment in the breeding farm needs to wait until the stirring is completed before the feed can be conveyed, resulting in low working efficiency and inability to operate in parallel.

Method used

A device including a cylinder, a driving chamber, a rotary drum, agitator paddle, gear and a sealing member is designed. Through intermittent discharge and inclined cylinder structure, the raw materials can be intermittently entered and quickly mixed. At the same time, the mixing is accelerated by using the reverse-rotating agitator pad, and the stirring and discharge are synchronized through the support bar and the deflector.

Benefits of technology

The mixing efficiency is improved, the mixing process and discharge are synchronized, and the integrity and working efficiency of the equipment are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the invention provides pig feed mixing equipment for a farm, and relates to the field of feed mixing equipment. Comprising a cylinder body, a driving cavity, a first bevel gear ring, a rotating cylinder, a first stirring paddle, a rotating disc, a gear, a torsional spring, a blocking piece and a feeding port, the cylinder body is downwards obliquely arranged from left to right, the driving cavity is formed in the cylinder body and is independent of an inner cavity of the cylinder body, the first bevel gear ring is rotationally installed in the driving cavity, and the rotating cylinder is arranged in the rotating disc. The rotary drum is a hollow cylinder, one end of the rotary drum is connected with the first bevel gear ring, and the other end of the rotary drum extends into an inner cavity of the drum body. Raw materials can discontinuously enter the barrel, a small amount of raw materials are mixed every time, rapid mixing can be achieved, and the efficiency is improved; the inclined barrel body enables the mixed feed to slowly move along the inclined direction, and the newly entering raw materials can be synchronously mixed; the first stirring paddle and the third stirring paddle rotate reversely to accelerate raw material mixing; stirring and discharging can be synchronized, and the integrity of the equipment is improved.
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Description

Technical Field

[0001] The present invention relates to the field of feed mixing equipment, and specifically refers to a pig feed mixing equipment for a farm. Background Art

[0002] In the daily operation of a farm, the fattening pig feed is usually prepared by mixing corn, soybean meal, wheat bran, vitamins and various other additives. And to perfectly blend these ingredients, the horizontal mixing equipment plays a key role. Such equipment generally presents in a long cylindrical shape, and its large internal volume endows it with a powerful raw material processing capacity, enabling it to accommodate a large amount of raw materials at one time, which greatly meets the needs of large-scale production in the farm.

[0003] In terms of structural composition, it mainly includes core parts such as a power drive system, a stirring device, a feeding and discharging component, etc. After turning on the external power supply, the power drive system starts to operate, driving the stirring device to rotate at a high speed, thereby carrying out the mixing process on the ingredients.

[0004] However, there are obvious efficiency shortcomings in this type of mixing equipment widely used at the present stage. Since in the operation process, it is necessary to pre-place all the raw materials into the cylinder for mixing first, and then carry out stirring. Coupled with the large amount of materials piled up in the cylinder, the stirring process takes a long time. And it is necessary to wait until the stirring is all completed and the ideal uniformity is achieved before the feed can be conveyed out to feed the fattening pigs. The intermediate links cannot be operated in parallel, which undoubtedly greatly restricts the overall working efficiency of the farm and also gives rise to an urgent need for a more efficient mixing equipment.

[0005] Based on this, the present invention is proposed. Summary of the Invention

[0006] According to an embodiment of the present invention, there is provided a pig feed mixing equipment for a farm. It is used to solve the problem that the existing equipment restricts the overall working efficiency of the farm because it is necessary to wait until the stirring is all completed and the ideal uniformity is achieved before the feed can be conveyed out to feed the fattening pigs.

[0007] In the first aspect of the present invention, there is provided an array-type flexible stretchable temperature sensor.

[0008] The pig feed mixing equipment in this farm includes: a cylinder body, a driving cavity, a first bevel gear ring, a rotating cylinder, a first stirring paddle, a turntable, a gear, a torsion spring, a sealing member and a feed inlet. The cylinder body is inclined downward from left to right. The driving cavity is arranged on the cylinder body, and the driving cavity is independent of the inner cavity of the cylinder body. The first bevel gear ring is rotatably installed in the driving cavity. The rotating cylinder is a hollow cylinder. One end of the rotating cylinder is connected to the first bevel gear ring, and the other end extends into the inner cavity of the cylinder body. There are two first stirring paddles, which are symmetrically installed on the rotating cylinder respectively. The controlled rotation of the first bevel gear ring can make the rotating cylinder and the first stirring paddle rotate; The feed inlet is installed on the cylinder body; The turntable is installed on the outer wall of the part of the rotating cylinder located in the inner cavity of the cylinder body. A number of teeth are installed on the turntable. The gear is rotatably installed on the inner wall of the cylinder body. The gear is meshed and connected with the teeth. The torsion spring is installed between the gear and the inner wall of the cylinder body. The sealing member is installed on the gear. The sealing member corresponds to the position of the feed inlet, and a channel is opened on the sealing member.

[0009] Preferably, there are a base, a first bracket, a second bracket, a feed box, a connecting pipe and a wheel. The cylinder body is installed on the base through the first bracket. The second bracket is installed on the base. A number of feed boxes are installed on the second bracket. The feed box is a hollow structure with an open top. There are a number of connecting pipes, and both ends of the number of connecting pipes are installed between the number of feed boxes and the feed inlet respectively; The wheel is installed on the base.

[0010] Preferably, the bottom end of the inner cavity of the feed box is inclined downward towards the direction close to the feed inlet.

[0011] Preferably, the length of the part of the rotating cylinder extending into the inner cavity of the cylinder body is half of the length of the inner cavity of the cylinder body.

[0012] Preferably, a motor is installed on the cylinder body. The output end of the motor extends into the driving cavity. One end of a rotating shaft is installed at the output end of the motor. The other end of the rotating shaft passes through the inner cavity of the rotating cylinder and is rotatably installed on the inner wall of the cylinder body. Two second stirring paddles are symmetrically installed at the end of the rotating shaft extending out of the rotating cylinder; A linkage part is installed in the driving cavity. The linkage part can make the first stirring paddle and the second stirring paddle rotate synchronously and in opposite directions.

[0013] Preferably, the linkage part includes: a second bevel gear ring and a bevel gear. The second bevel gear ring is installed on the rotating shaft. The bevel gear is rotatably installed in the driving cavity. The bevel gear is meshed and connected with the first bevel gear ring and the second bevel gear ring respectively.

[0014] Preferably, a third stirring paddle is installed on the second stirring paddle, and the position of the third stirring paddle corresponds to that of the first stirring paddle.

[0015] Preferably, a discharge port is provided on the outer wall of the cylinder away from the rotating cylinder, and a guide plate is installed on the cylinder, the bottom end of the guide plate is connected to the cylinder, the guide plate corresponds to the position of the discharge port, and the discharge port and the guide plate are both located above the axis of the cylinder; A plurality of strip plates are equidistantly installed on the guide plate; A plurality of supporting bars are equidistantly mounted on the second stirring paddle, the supporting bars are made of rubber material, and the plurality of supporting bars and the plurality of strip plates are staggered.

[0016] Preferably, a material guide bin is also installed on the base, and the material guide bin is C-shaped. The discharge port is located in the material guide bin, and a through groove is provided at the bottom of the material guide bin. A discharge trough is installed at the bottom of the material guide bin, and the discharge trough corresponds to the position of the through groove. The discharge trough is tilted from top to bottom in the direction away from the cylinder.

[0017] One or more technical solutions provided in this application have at least the following technical effects or advantages: 1. The present invention provides a pig feed mixing equipment for farms. The first stirring paddle can stir the feed raw materials in the cylinder through the rotation of the rotating drum. At the same time, the sealing member is rotated by the turntable and the teeth on the gear. When the channel corresponds to the feed inlet, the raw materials in the feed box can enter the cylinder. Through intermittent discharge, the raw materials can be intermittently entered into the cylinder, ensuring that less raw materials are mixed each time, the raw materials can be mixed quickly, and the mixing efficiency is improved.

[0018] 2. The present invention provides a pig feed mixing equipment for farms. The inclined cylinder can slowly move the mixed feed along the inclined direction, thereby allowing the mixed feed to move in a directional manner while allowing the newly entered raw materials to be mixed.

[0019] 3. The present invention provides a pig feed mixing equipment for a farm, which can accelerate the mixing of raw materials and improve the mixing efficiency by rotating the first stirring paddle and the third stirring paddle in opposite directions.

[0020] 4. The present invention provides a pig feed mixing equipment for a farm. Through the setting of support bars, the mixed feed can be lifted upward, and the mixed feed can be pushed out of the cylinder through the discharge port, thereby realizing automatic output of the mixed feed, improving the integrity of the equipment, and thus achieving simultaneous mixing of raw materials and output of feed.

[0021] In summary, the present invention enables the raw materials to enter the cylinder intermittently, with less mixed raw materials each time, which can be quickly mixed to improve efficiency; the inclined cylinder allows the mixed feed to slowly move along the inclined direction, and the newly entered raw materials can be mixed synchronously; the first stirring paddle and the third stirring paddle rotate in opposite directions to accelerate the mixing of the raw materials; and it can also achieve synchronous stirring and discharging, enhancing the integrity of the equipment.

[0022] It should be understood that the content described in the Summary of the Invention section is not intended to limit the key or important features of the embodiments of the present invention, nor is it used to limit the scope of the present invention. Other features of the present invention will become easily understood through the following description. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] With reference to the accompanying drawings and the following detailed description, the above and other features, advantages, and aspects of the embodiments of the present invention will become more apparent. In the drawings, the same or similar reference numerals denote the same or similar elements, where: Figure 1 shows a schematic structural diagram of a pig feed mixing device in a farm according to an embodiment of the present invention; Figure 2 shows a front view of a pig feed mixing device in a farm according to an embodiment of the present invention; Figure 3 shows a rear view of a pig feed mixing device in a farm according to an embodiment of the present invention; Figure 4 shows a sectional view of a pig feed mixing device in a farm according to an embodiment of the present invention; Figure 5 shows a top sectional view of a pig feed mixing device in a farm according to an embodiment of the present invention; Figure 6 shows an exploded schematic structural diagram of a pig feed mixing device in a farm according to an embodiment of the present invention; Figure 7 shows an exploded schematic structural diagram of the rotating cylinder and the rotating shaft in a separated state of a pig feed mixing device in a farm according to an embodiment of the present invention; Figure 8 shows a schematic structural diagram of the cooperation state of the turntable and the gear of a pig feed mixing device in a farm according to an embodiment of the present invention; Figure 9 shows a schematic diagram of the separated state of the material guiding bin and the cylinder of a pig feed mixing device in a farm according to an embodiment of the present invention; Figure 10 shows a right sectional structural diagram of a pig feed mixing device in a farm according to an embodiment of the present invention; Figure 11 shows a right sectional view of a pig feed mixing device in a farm according to an embodiment of the present invention.

[0024] The reference numerals are as follows, 1. Cylinder body, 101. Deflector, 102. Discharge port, 103. Strip plate, 2. Drive cavity, 3. First bevel gear ring, 4. Rotary drum, 5. First stirring paddle, 6. Turntable, 601. Teeth, 7. Gear, 8. Torsion spring, 9. Plugging member, 901. Channel, 10. Feed port, 11. Base, 12. First support, 13. Second support, 14. Feed bin, 15. Connecting pipe, 16. Motor, 17. Rotating shaft, 18. Second bevel gear ring, 19. Bevel gear, 20. Second stirring paddle, 21. Third stirring paddle, 22. Supporting strip, 23. Material guiding bin, 24. Through slot, 25. Discharge chute, 26. Wheel. Detailed implementation manners

[0025] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Apparently, the described embodiments are some but not all of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0026] In addition, the term "and / or" in this article is only a relational description of associated objects, indicating that three relationships may exist. For example, A and / or B may represent: A exists alone, A and B exist simultaneously, and B exists alone. In addition, the character " / " in this article generally represents an "or" relationship between the associated objects before and after.

[0027] Such as Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 and Figure 8As shown in the figure, the pig feed mixing equipment of this farm includes: a cylinder 1, a drive chamber 2, a first bevel gear ring 3, a rotary drum 4, a first stirring paddle 5, a turntable 6, a gear 7, a torsion spring 8, a sealing member 9, a feed inlet 10, a base 11, a first support 12, a second support 13, a feed bin 14, a connecting pipe 15, and a wheel 26. The wheel 26 is installed on the base 11. The base 11 is the overall base of the equipment, and installing the wheel 26 can facilitate the movement of the overall equipment. The cylinder 1 is installed on the base 11 through the first support 12. The cylinder 1 is a cylindrical hollow cavity structure, and the cylinder 1 is arranged obliquely downward from left to right. The cylinder 1 is used for loading feed raw materials and stirring and mixing feed raw materials. The drive chamber 2 is arranged on the cylinder 1, and the drive chamber 2 is independent of the inner cavity of the cylinder 1. The first bevel gear ring 3 is rotatably installed in the drive chamber 2. The rotary drum 4 is a hollow cylinder. One end of the rotary drum 4 is connected to the first bevel gear ring 3, and the two can rotate synchronously. The other end extends into the inner cavity of the cylinder 1. There are two first stirring paddles 5, which are symmetrically installed on the rotary drum 4 respectively. The controlled rotation of the first bevel gear ring 3 can make the rotary drum 4 and the first stirring paddle 5 rotate. Through the rotation of the first stirring paddle 5, the feed raw materials in the cylinder 1 can be stirred. In this embodiment, the length of the part of the rotary drum 4 extending into the inner cavity of the cylinder 1 is half of the length of the inner cavity of the cylinder 1. The length of the first stirring paddle 5 is the same as the length of the rotary drum 4. The area covered by the rotation of the first stirring paddle 5 in the cylinder 1 is the feed raw material stirring and mixing area. The stirred and mixed feed gradually moves downward along the inclined direction of the cylinder 1. The feed inlet 10 is installed on the cylinder 1. The feed inlet 10 is located at the top of the cylinder 1 and is used to put feed raw materials into the cylinder 1. The second support 13 is installed on the base 11. A number of feed bins 14 are installed on the second support 13. The feed bin 14 is a hollow structure with an open top. The bottom end of the inner cavity of the feed bin 14 is arranged obliquely downward towards the direction close to the feed inlet 10. The feed bin 14 is used for loading feed raw materials. A number of feed bins 14 are respectively filled with corn, soybean meal, wheat bran, and vitamin additives. There are a number of connecting pipes 15. The two ends of the number of connecting pipes 15 are respectively installed between the number of feed bins 14 and the feed inlet 10. The inclined plane in the inner cavity of the feed bin 14 makes the feed raw materials have a tendency to move obliquely downward, so that the raw materials can enter the feed inlet 10 through the connecting pipe 15. The turntable 6 is installed on the outer wall of the part of the rotary drum 4 located in the inner cavity of the cylinder 1. The turntable 6 can rotate together with the rotary drum 4. A number of teeth 601 are installed on the turntable 6. The gear 7 is rotatably installed on the inner wall of the cylinder 1. The gear 7 is meshed with the teeth 601. When the turntable 6 rotates, the gear 7 can be rotated by the meshing of the teeth 601. When the teeth 601 are disengaged from the meshing, the gear 7 stops rotating. The torsion spring 8 is installed between the gear 7 and the inner wall of the cylinder 1. When the gear 7 is forced to rotate, the torsion spring 8 can be deformed. Removing the external force and using the elastic force of the torsion spring 8 can make the gear 7 rotate reversely and reset.The plugging member 9 is installed on the gear 7. The plugging member 9 corresponds to the feed inlet 10 in position. The plugging member 9 is of a spherical structure. A channel 901 is provided on the plugging member 9. When the outer wall of the plugging member 9 corresponds to the feed inlet 10, it can block the feed inlet 10 to prevent the feed raw materials from entering the cylinder 1 through the feed inlet 10. When the plugging member 9 rotates to align the channel 901 with the feed inlet 10, the feed raw materials can enter the cylinder 1 through the feed inlet 10.

[0028] When the above structure is in use, driving the first bevel gear ring 3 to rotate can drive the rotating cylinder 4 and the first stirring paddle 5 to rotate. When the rotating cylinder 4 rotates, it can make the turntable 6 rotate. When the tooth teeth 601 start to mesh with the gear 7, the gear 7 will be forced to rotate, so that the plugging member 9 rotates to align the channel 901 with the feed inlet 10. At this time, the feed raw materials will enter the cylinder 1 through the feed inlet 10 and the channel 901 and be mixed by the rotation of the first stirring paddle 5. At the same time, the torsion spring 8 is deformed. When the tooth teeth 601 are disengaged from the gear 7 due to the rotation of the turntable 6, the gear 7 is reversely reset under the action of the elastic force of the torsion spring 8, and the input of the feed raw materials is stopped by the blockage of the outer wall of the plugging member 9.

[0029] Through the intermittent driving of the gear 7 by the tooth teeth 601 and the cooperation of the torsion spring 8, this structure can intermittently open and close the input channel of the feed raw materials, so as to ensure that the amount of raw materials flowing into the cylinder 1 each time is small and can be quickly mixed. At the same time, with the inclined setting of the cylinder 1, the feed can be gradually and directionally moved while being mixed, the mixed feed is removed, and the subsequent input feed raw materials are stirred, improving the working efficiency.

[0030] In order to further improve the mixing efficiency of the feed raw materials, the following scheme is proposed: Refer to Figure 4 、 Figure 5 、 Figure 6 and Figure 7, a motor 16 is installed on the cylinder body 1. The output end of the motor 16 extends into the driving cavity 2. One end of a rotating shaft 17 is installed at the output end of the motor 16. Starting the motor 16 can drive the rotating shaft 17 to rotate. The other end of the rotating shaft 17 passes through the inner cavity of the rotating cylinder 4 and is rotatably installed on the inner wall of the cylinder body 1. The rotating shaft 17 and the rotating cylinder 4 can rotate relative to each other without interference. Two second stirring paddles 20 are symmetrically installed at one end of the rotating shaft 17 extending out of the rotating cylinder 4. A third stirring paddle 21 is installed on the second stirring paddle 20. The position of the third stirring paddle 21 corresponds to that of the first stirring paddle 5. When the rotating shaft 17 and the rotating cylinder 4 rotate in opposite directions, by using the relative rotation of the third stirring paddle 21 and the first stirring paddle 5, the feed raw materials in the cylinder body 1 can be quickly stirred and mixed. The opposite rotation of the rotating cylinder 4 and the rotating shaft 17 is realized through a linkage part. The linkage part is installed in the driving cavity 2. The linkage part can make the first stirring paddle 5 and the second stirring paddle 20 rotate synchronously and in opposite directions. The linkage part includes: a second bevel gear ring 18 and a bevel gear 19. The second bevel gear ring 18 is installed on the rotating shaft 17. The bevel gear 19 is rotatably installed in the driving cavity 2. The bevel gear 19 is meshed and connected with the first bevel gear ring 3 and the second bevel gear ring 18 respectively.

[0031] When the above structure is in use, start the motor 16 to drive the rotating shaft 17 to rotate. At this time, the second bevel gear ring 18 rotates synchronously, driving the bevel gear 19 to rotate. The bevel gear 19 drives the first bevel gear ring 3 to rotate, and the rotation direction is opposite to that of the second bevel gear ring 18. At this time, the rotating shaft 17 and the rotating cylinder 4 can rotate in opposite directions. Use the first stirring paddle 5 and the third stirring paddle 21 to quickly stir and mix the feed raw materials.

[0032] Through the cooperation of the first bevel gear ring 3, the second bevel gear ring 18 and the bevel gear 19, this structure can realize the reverse rotation of the first stirring paddle 5 and the third stirring paddle 21. Through the reverse rotation, the stirring of the feed raw materials can be accelerated.

[0033] At the present stage, the mixing equipment in use needs to finish mixing before discharging the feed separately. The scale of the pig farm is large, and the pig trough is long. The feed discharged uniformly needs to be continuously fed manually, with slow efficiency. In order to continuously feed the material, the following scheme is proposed: Refer to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 9 、 Figure 10 and Figure 11, a discharge port 102 is provided on the outer wall of the cylinder 1 on the side away from the rotating drum 4, and a guide plate 101 is installed on the cylinder 1. The position of the guide plate 101 corresponds to the position of the discharge port 102. The bottom end of the guide plate 101 is connected to the cylinder 1, and the straight-line distance between the top end of the guide plate 101 and the axis of the cylinder 1 is less than the radius of the cylinder 1. A number of strip plates 103 are equidistantly installed on the guide plate 101. A number of supporting bars 22 are equidistantly installed on the second stirring paddle 20. The supporting bars 22 are made of rubber material and have flexible properties. They will deform when subjected to force and can return to their original shape when the external force is removed. A number of supporting bars 22 and a number of strip plates 103 are staggered. Figure 11 When the support bar 22 rotates counterclockwise, the portion of the feed in the cylinder 1 corresponding to the position of the second stirring paddle 20 can be lifted upward along the inner wall of the cylinder 1. When the feed moves to a high position, the support bar 22 and the strip plate 103 are plugged into each other. When the second stirring paddle 20 continues to rotate, the support bar 22 deforms and bends, thereby sliding along the guide plate 101 toward the inner cavity of the cylinder 1 until it breaks contact with the guide plate 101 and returns to its original shape. In this process, the feed is transferred to the side of the guide plate 101 away from the inner cavity of the cylinder 1. In this embodiment, the discharge port 102 and the guide plate 101 are both located above the axis of the cylinder 1; this ensures that the feed can only be discharged through the discharge port 102 if it is supported by the second stirring paddle 20 and the support bar 22, and that the feed will not be discharged by gravity, thereby ensuring that the amount of feed discharged each time is balanced. A C-shaped guide bin 23 is also mounted on the base 11. The discharge port 102 is located within the guide bin 23 and covers the discharge port 102. After the feed is discharged through the discharge port 102, it slides along the outer wall of the guide plate 101 into the guide bin 23. A through slot 24 is defined at the bottom of the guide bin 23. A discharge chute 25 is mounted at the bottom of the guide bin 23. The discharge chute 25 corresponds to the through slot 24 and is tilted from top to bottom, away from the cylinder 1. The feed is discharged through the through slot 24 and then discharged in a directionally directed manner through the discharge chute 25.

[0034] When the above structure is used, Figure 11 With the direction of rotation as a reference, when the rotating shaft 17 drives the second stirring paddle 20 and the supporting bar 22 to rotate counterclockwise, the feed gathered at the bottom of the inner cavity of the cylinder 1 will be lifted upward along the inner wall of the cylinder 1. When the supporting bar 22 is plugged into the strip plate 103, the feed flows along the guide plate 101 through the discharge port 102 into the guide bin 23, and is finally discharged through the through groove 24 and the discharge chute 25. At the same time, the supporting bar 22 continues to rotate counterclockwise, utilizing the limited deformation of the guide plate 101 to bend, and after continuing to rotate out of contact with the guide plate 101, the supporting bar 22 recovers. When the entire device moves along the pig trough, the feed can be gradually added.

[0035] This structure can achieve automatic discharge of feed, and can discharge the mixed feed quantitatively and evenly at a fixed point. When the whole equipment is operating, there is no need to wait until all the feed is mixed before starting to discharge. It can discharge the mixed feed while mixing the subsequent input raw materials, and can ensure the balance of the discharge amount each time.

[0036] The above specific embodiments do not constitute a limitation to the protection scope of the present invention. Those skilled in the art should understand that various modifications, combinations, sub-combinations and substitutions can be made according to design requirements and other factors. Any modifications, equivalent substitutions and improvements made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A pig feed mixing equipment for a farm, characterized in that, include: A cylinder (1), a driving chamber (2), a first bevel gear ring (3), a rotating drum (4), a first stirring paddle (5), a rotating disk (6), a gear (7), a torsion spring (8), a blocking member (9) and a feed port (10), wherein the cylinder (1) is tilted downward from left to right, the driving chamber (2) is arranged on the cylinder (1), and the driving chamber (2) and the inner chamber of the cylinder (1) are independent of each other, the first bevel gear ring (3) is rotatably mounted in the driving chamber (2), the rotating drum (4) is a hollow cylinder, one end of the rotating drum (4) is connected to the first bevel gear ring (3), and the other end extends into the inner chamber of the cylinder (1), there are two first stirring paddles (5), which are symmetrically mounted on the rotating drum (4), and the controlled rotation of the first bevel gear ring (3) can rotate the rotating drum (4) and the first stirring paddle (5); The feed port (10) is mounted on the barrel (1); The turntable (6) is mounted on the outer wall of the rotating cylinder (4) located in the inner cavity of the cylinder (1), and a plurality of teeth (601) are mounted on the turntable (6). The gear (7) is rotatably mounted on the inner wall of the cylinder (1), and the gear (7) is meshedly connected with the teeth (601). The torsion spring (8) is mounted between the gear (7) and the inner wall of the cylinder (1). The blocking member (9) is mounted on the gear (7), and the blocking member (9) corresponds to the position of the feed port (10). A channel (901) is provided on the blocking member (9).

2. The pig feed mixing equipment for farms according to claim 1, characterized in that: Also includes: A base (11), a first bracket (12), a second bracket (13), a material box (14), a connecting pipe (15) and a wheel (26), wherein the cylinder (1) is mounted on the base (11) via the first bracket (12), the second bracket (13) is mounted on the base (11), a plurality of material boxes (14) are mounted on the second bracket (13), the material boxes (14) are hollow structures with an open top, a plurality of connecting pipes (15) are provided, and the ends of the plurality of connecting pipes (15) are respectively mounted between the plurality of material boxes (14) and the feed port (10); The wheel (26) is mounted on the base (11).

3. The pig feed mixing equipment for a farm according to claim 2, characterized in that The bottom end of the inner cavity of the material box (14) is tilted downward in a direction close to the feed port (10).

4. The pig feed mixing equipment for a farm according to claim 2, characterized in that, The length of the portion of the rotating drum (4) extending into the inner cavity of the cylinder (1) is half the length of the inner cavity of the cylinder (1).

5. The pig feed mixing equipment for a farm according to claim 4, characterized in that, A motor (16) is mounted on the cylinder (1), the output end of the motor (16) extends into the drive cavity (2), one end of a rotating shaft (17) is mounted on the output end of the motor (16), the other end of the rotating shaft (17) passes through the inner cavity of the rotating cylinder (4) and is rotatably mounted on the inner wall of the cylinder (1), and two second stirring paddles (20) are symmetrically mounted on one end of the rotating shaft (17) extending out of the rotating cylinder (4); A linkage portion is installed in the driving chamber (2), and the linkage portion can enable the first stirring paddle (5) and the second stirring paddle (20) to rotate synchronously and in opposite directions.

6. The pig feed mixing equipment for a farm according to claim 5, characterized in that, The linkage part includes: a second bevel gear ring (18) and a bevel gear (19). The second bevel gear ring (18) is installed on the rotating shaft (17), the bevel gear (19) is rotatably installed in the driving cavity (2), and the bevel gear (19) is meshed and connected with the first bevel gear ring (3) and the second bevel gear ring (18) respectively.

7. The pig feed mixing equipment for a farm according to claim 6, characterized in that, A third stirring paddle (21) is installed on the second stirring paddle (20), and the position of the third stirring paddle (21) corresponds to that of the first stirring paddle (5).

8. The pig feed mixing equipment for a farm according to claim 7, characterized in that, A discharge port (102) is formed in the outer wall of one side of the cylinder body (1) far away from the rotating cylinder (4). A flow guide plate (101) is installed on the cylinder body (1). The bottom end of the flow guide plate (101) is connected to the cylinder body (1). The position of the flow guide plate (101) corresponds to that of the discharge port (102). Both the discharge port (102) and the flow guide plate (101) are located above the axis of the cylinder body (1); A plurality of strip plates (103) are equidistantly installed on the flow guide plate (101); A plurality of supporting strips (22) are equidistantly installed on the second stirring paddle (20). The supporting strips (22) are made of rubber material, and the plurality of supporting strips (22) and the plurality of strip plates (103) are arranged in a staggered manner.

9. The pig feed mixing equipment for farms according to claim 8, characterized in that: A material guiding bin (23) is further installed on the base (11). The material guiding bin (23) is arranged in a C shape. The discharge port (102) is located in the material guiding bin (23). A through groove (24) is formed in the bottom of the material guiding bin (23). A discharge chute (25) is installed at the bottom of the material guiding bin (23). The position of the discharge chute (25) corresponds to that of the through groove (24). The discharge chute (25) is inclined downward from top to bottom in a direction away from the cylinder body (1).

Citation Information

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