Horizontal feed mixing equipment and feed production line
By setting a mixing assembly consisting of a spiral plow blade and a spiral blade on the mixing roller, the problem of dead zones in the existing equipment is solved, and a better feed mixing effect is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-03-24
AI Technical Summary
Existing feed mixing equipment has dead zones during the mixing process, especially at the edges and bottom of square mixing boxes, where powder tends to accumulate and cannot be fully mixed.
A horizontal feed mixing device is designed, in which multiple first mixing components and second mixing components are arranged on the mixing roller. The first mixing components are spirally distributed and have plow blade mixing parts, while the second mixing components are spaced apart along the axis of the mixing roller and have spiral blades. The two are staggered and combined with the columnar mixing chamber of the main body of the device to achieve longitudinal and transverse mixing of the feed.
It effectively avoids dead corners during the mixing process, improves the uniformity of feed mixing, reduces accumulation at the edges and bottom, and enhances the mixing effect.
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Figure CN224024751U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to feed processing equipment technical field especially relates to a horizontal feed mixing equipment, feed production line. BACKGROUND
[0002] In the modern feed production process, the mixing process of feed is an important link to ensure the quality of feed. Feed is mainly divided into two forms of powder feed and granular feed, and the feed mixing equipment mainly adopts the mechanical stirring mode, wherein the design of the stirring mechanism and the mixing effect play a key role.
[0003] The utility model discloses a kind of feed mixing equipment for livestock breeding, including box, two discharge plates are movably installed in the bottom of the box, two stirring rollers are movably installed in the inside of the box by bearing, realize the automatic mixing of feed.
[0004] Research finds that the stirring mechanism of the existing feed mixing equipment adopts two stirring rollers, multiple rectangular stirring blades are arranged on the stirring roller, and there are dead angles in the actual stirring process, especially at the edge and bottom area of the square mixing box, and powder is easy to accumulate and cannot be fully mixed. UTILITY MODEL CONTENTS
[0005] To solve the technical problems existing in the above-mentioned prior art, the purpose of the utility model is to provide a horizontal feed mixing equipment and feed production line, and the design of the stirring mechanism of the horizontal feed mixing equipment avoids the problem of dead angles caused by the single layout of stirring blades of the traditional stirring roller.
[0006] The purpose of the utility model is achieved by the following technical solutions:
[0007] In the first aspect, the utility model provides a horizontal feed mixing equipment, which comprises:
[0008] A device main body has a stirring barrel, and a cylindrical stirring cavity is formed in the stirring barrel;
[0009] A stirring roller is rotatably arranged in the stirring barrel, and the stirring roller has multiple first stirring components and multiple second stirring components located in the cylindrical stirring cavity;
[0010] A driving component is connected with the stirring roller, and the driving component drives the stirring roller to rotate;
[0011] Among them, multiple first stirring components are spaced apart in a spiral shape on the outer peripheral surface of the stirring roller, and the first stirring component has a plow stirring piece;
[0012] A plurality of second stirring assemblies are arranged at intervals along the axis of the stirring roller, the plurality of second stirring assemblies and the plurality of first stirring assemblies are distributed staggeredly, and the second stirring assembly has a spiral blade.
[0013] In combination with the first aspect, the utility model provides a first specific implementation of the first aspect, and specifically, the ploughshare stirring part comprises a ploughshare main body, the ploughshare main body is in wedge structure, and the outer diameter of the ploughshare main body gradually expands from the front end to the rear end.
[0014] In combination with the first aspect, the utility model provides a second specific implementation of the first aspect, and specifically, the two side walls of the ploughshare main body of the ploughshare stirring part are connected with two ploughshare side plates respectively, and the two ploughshare side plates are in V-shaped distribution.
[0015] The side wall of the ploughshare side plate facing the inner wall of the stirring barrel is in matched arc structure.
[0016] In combination with the first aspect, the utility model provides a third specific implementation of the first aspect, and specifically, the first stirring assembly comprises a mounting seat, one side end of the mounting seat is adapted to be welded on the outer circumferential surface of the stirring roller.
[0017] The ploughshare main body has a connecting portion, and the connecting portion is bolted with the other side end of the mounting seat.
[0018] In combination with the first aspect, the utility model provides a fourth specific implementation of the first aspect, and specifically, the second stirring assembly comprises a plurality of connecting plates, the plurality of connecting plates are radially distributed and welded on the outer circumferential surface of the stirring roller, and the plurality of connecting plates are connected with the spiral blade.
[0019] In combination with the first aspect, the utility model provides a fifth specific implementation of the first aspect, and specifically, the outer contour of the spiral blade is matched with the inner wall of the stirring barrel.
[0020] In combination with the first aspect, the utility model provides a sixth specific implementation of the first aspect, and specifically, the materials of the ploughshare stirring part and the spiral blade are both stainless steel materials.
[0021] In combination with the first aspect, the utility model provides a seventh specific implementation of the first aspect, and specifically, the driving component comprises a driving motor and a chain transmission mechanism, and the chain transmission mechanism is connected with the driving motor and the stirring roller respectively.
[0022] In combination with the first aspect, the utility model provides an eighth specific implementation of the first aspect, and specifically, the equipment main body comprises a left side support and a right side support, the stirring barrel is suspendedly installed between the left side support and the right side support, and the driving component is arranged on the right side support.
[0023] The top of the stirring barrel is provided with a feeding port, and the bottom of the stirring barrel is provided with a discharging port.
[0024] In a second aspect, the utility model provides a feed production line, including the horizontal feed mixing equipment of first aspect.
[0025] Compared with the prior art, the utility model has at least the following beneficial effects:
[0026] (1) The utility model provides a horizontal feed mixing equipment, the horizontal feed mixing equipment includes equipment main part, stirring roller and drive part. The equipment main part has a stirring barrel, and the stirring barrel is hollow to form a cylindrical stirring cavity. The stirring roller is rotatably arranged in the stirring barrel, and the stirring roller has a plurality of first stirring components and a plurality of second stirring components located in the cylindrical stirring cavity. The drive part is connected with the stirring roller, and the drive part drives the stirring roller to rotate. Wherein, the plurality of first stirring components are spaced apart in a spiral shape on the outer circumferential surface of the stirring roller, and the first stirring components have plough blades. The plurality of second stirring components are arranged along the axis of the stirring roller, and the plurality of second stirring components and the plurality of first stirring components are distributed staggeredly, and the second stirring components have spiral blades.
[0027] The utility model is provided with a plurality of first stirring components and second stirring components on the stirring roller. The first stirring components are spaced apart in a spiral shape and are equipped with plough blades, which can effectively push the feed to move along the axial and radial directions of the stirring roller, realizing longitudinal mixing of the feed. The second stirring components are arranged along the axis of the stirring roller and are equipped with spiral blades, which are mainly used for lifting and turning the feed to promote the transverse mixing of the feed. The first stirring components and the second stirring components are distributed staggeredly, and the design of this stirring mechanism makes the feed receive different directional shearing force and pushing force during mixing, avoiding the dead angle problem caused by the single layout of the stirring blades of the traditional stirring roller. The cylindrical stirring cavity formed by the stirring barrel of the equipment main part can better adapt to the movement of the stirring roller and reduce the accumulation of the feed at the edge and the bottom.
[0028] The utility model also provides a feed production line, which has the horizontal feed mixing equipment described above and has the better feed mixing technical effect of the horizontal feed mixing equipment. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 It is a perspective view of the horizontal feed mixing equipment of the utility model;
[0030] Figure 2 It is a sectional view of the horizontal feed mixing equipment of the utility model;
[0031] Figure 3 It is a structure schematic view of the stirring roller of the horizontal feed mixing equipment.
[0032] Figure 4 It is a structure schematic view of the ploughshare stirring part of the utility model.
[0033] In the drawing,
[0034] 100 - equipment main body, 110 - stirring barrel, 120 - left side support, 130 - right side support;
[0035] 200 - stirring roller, 210 - first stirring assembly, 211 - ploughshare stirring part, 2212 - ploughshare side plate, 212 - mounting seat; 220 - second stirring assembly, 221 - spiral blade.
[0036] 300 - driving part. DETAILED DESCRIPTION
[0037] In order to facilitate understanding of the utility model, the technical scheme and advantages of the utility model are further described in detail below in combination with the drawings and examples. The mechanisms or methods not described in the utility model can refer to the prior art. The specific structure and characteristics of the utility model are described below in an exemplary manner, which should not constitute any limitation on the utility model. At the same time, any one of the technical features mentioned below (including implied or disclosed), as well as any one of the technical features directly shown or implied in the drawings, can be arbitrarily combined or deleted between these technical features, thereby forming more other embodiments that can not be directly or indirectly mentioned in the utility model. The preferred embodiments of the utility model are shown in the drawings. However, the utility model can be realized in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive.
[0038] As shown in the drawing, Figures 1-4 The embodiment provides a preferred structure of a horizontal feed mixing equipment and a feed production line.
[0039] As shown in the drawing, Figure 1 The utility model provides a horizontal feed mixing equipment, and the horizontal feed mixing equipment comprises an equipment main body 100, a stirring roller 200 and a driving part 300. The equipment main body 100 is provided with a stirring barrel 110, and a cylindrical stirring cavity is formed in the stirring barrel 110. The stirring roller 200 is rotatably arranged in the stirring barrel 110, the driving part 300 is connected with the stirring roller 200, and the driving part 300 drives the stirring roller 200 to rotate.
[0040] In the present technology, the device body 100 is the basic framework of the horizontal feed mixing device, mainly composed of a stirring barrel 110, a support structure, and an in-out material device, etc. The stirring barrel 110 is the core part of the device, which forms a cylindrical stirring cavity inside, used to contain feed raw materials. The stirring barrel 110 usually adopts high-strength steel or stainless steel materials to ensure durability and corrosion resistance. The stirring roller 200 is the key component to realize feed mixing, installed in the stirring barrel 110 and can rotate around the central shaft. The driving component 300 provides power for the rotation of the stirring roller 200, and different power and speed can be selected according to actual needs to adapt to different scales of production.
[0041] In the core innovation of the present technology, the stirring roller 200 has a plurality of first stirring assemblies 210 and a plurality of second stirring assemblies 220 located in the cylindrical stirring cavity. The driving component 300 is connected with the stirring roller 200, and the driving component 300 drives the stirring roller 200 to rotate. Among them, the plurality of first stirring assemblies 210 are spaced apart in a spiral shape on the outer peripheral surface of the stirring roller 200, and the first stirring assembly 210 has a plow stirring piece 211. The plurality of second stirring assemblies 220 are arranged along the axis of the stirring roller 200, and the plurality of second stirring assemblies 220 and the plurality of first stirring assemblies 210 are distributed staggered with each other, and the second stirring assembly 220 has a spiral blade 221.
[0042] In the embodiment, the plurality of first stirring assemblies 210 are spaced apart in a spiral shape on the outer peripheral surface of the stirring roller 200, and have the plow stirring piece 211. This design can effectively push the material to move in the axial and radial directions in the stirring cavity, realizing the turning and shearing of the material. At the same time, combined with the plurality of second stirring assemblies 220 arranged along the axis of the stirring roller 200, and the second stirring assembly 220 has the spiral blade 221, which is staggered with the first stirring assembly 210. This spiral blade 221 design can further enhance the mixing effect of the material, making the material form complex shearing motion in the stirring process.
[0043] Through the cooperation of the plow stirring piece 211 and the spiral blade 221 on the stirring roller 200, the material forms a complex motion trajectory in the stirring cavity. The plow stirring piece 211 disperses the material through shearing and turning; the spiral blade 221 further promotes the mixing of the material through axial and radial movement. Combined with the cylindrical stirring cavity formed by the stirring barrel 110 of the device body 100, this structure can better adapt to the movement of the stirring roller 200, reducing the accumulation of feed at the edge and bottom. The combination of multiple technical means can effectively reduce the dead angle of the material in the stirring process and improve the mixing uniformity.
[0044] In a specific implementation, the plough blade stirring piece 211 includes a plough blade body 2111, which is wedge-shaped, and the outer diameter of the plough blade body 2111 gradually increases from the front end to the rear end.
[0045] In the present technology, the main body of the plough blade stirring piece 211 is wedge-shaped, and the outer diameter gradually increases from the front end to the rear end. This wedge-shaped design enables the plough blade to better cut into the material during stirring, increasing the pushing force and shearing force on the material, thereby improving the mixing efficiency. Moreover, the wedge-shaped structure enables the wedge-shaped plough blade stirring piece 211 to push the material to both ends of the stirring roller 200 during stirring, while forming complex convection movements in the stirring cavity, reducing dead angles of the material during stirring.
[0046] In a specific implementation, the two side walls of the plough blade body 2111 of the plough blade stirring piece 211 are respectively connected to two plough blade side plates 2112, which are in V-shaped distribution. The side wall of the plough blade side plate 2112 facing the inner wall of the stirring barrel 110 is in arc-shaped structure.
[0047] It can be understood that the side wall of the plough blade side plate 2112 facing the inner wall of the stirring barrel 110 is designed in arc-shaped structure that is adapted to the inner wall of the stirring barrel 110. This arc-shaped design has the following advantages: the arc-shaped side wall has higher adhesion to the inner wall of the stirring barrel 110, reducing the friction between the plough blade side plate 2112 and the inner wall of the stirring barrel 110 during stirring.
[0048] In a specific implementation, the first stirring assembly 210 includes a mounting seat 212, one side end of which is adapted to be welded on the outer peripheral surface of the stirring roller 200; the plough blade body 2111 has a connecting portion that is bolted to the other side end of the mounting seat 212. The mounting seat 212 is a fixed component of the plough blade stirring piece 211, and one end thereof is designed to be adapted to the shape of the outer peripheral surface of the stirring roller 200, and is firmly connected to the stirring roller 200 by welding. This welding method ensures high-strength connection between the mounting seat 212 and the stirring roller 200, which can withstand the shearing force and torque generated during stirring.
[0049] In a specific implementation, the second stirring assembly 220 includes a plurality of connecting plates that are radially distributed and welded on the outer peripheral surface of the stirring roller 200, and are connected to the helical blades 221.
[0050] In a specific implementation, the second stirring assembly 220 includes a plurality of connecting plates that are radially distributed and welded on the outer peripheral surface of the stirring roller 200, and are connected to the helical blades 221. The radially distributed connecting plates can uniformly disperse the stress generated during stirring, enhancing the overall structural stability of the second stirring assembly 220.
[0051] In a specific implementation, the outer contour of the spiral blade 221 is adapted to the inner wall of the stirring barrel 110. The outer contour of the spiral blade 221 is adapted to the inner wall of the stirring barrel 110, which means that the blade can adapt to the inner wall of the stirring barrel 110 during rotation, reducing the dead angle of feed mixing and meeting the mixing needs of powder feed.
[0052] In a preferred implementation, the plough blade stirring part 211 and the spiral blade 221 are made of stainless steel. Selecting stainless steel as the material of the plough blade stirring part 211 and the spiral blade 221 can not only improve the durability and corrosion resistance of the equipment, but also ensure the hygiene and safety of the stirring process.
[0053] In a preferred implementation, the equipment body 100 includes a left support 120 and a right support 130, the stirring barrel 110 is suspended between the left support 120 and the right support 130, and the driving component 300 is arranged on the right support 130. The top of the stirring barrel 110 is provided with a feeding port, and the bottom of the stirring barrel 110 is provided with a discharging port. The feeding port and the discharging port are both provided with valves, and the valves are in a closed state during the mixing of the feed, so as to close the stirring barrel 110.
[0054] In a specific implementation, the driving component 300 includes a driving motor and a chain transmission mechanism, and the chain transmission mechanism is connected to the driving motor and the stirring roller 200, respectively.
[0055] It can be understood that the left support 120 and the right support 130 need to be flat and firm as a mounting base to bear the weight of the stirring barrel 110 and the stirring roller 200. The stirring barrel 110 is suspended between the two supports and is fixed by bolts or welding. The positions of the feeding port and the discharging port of the stirring barrel 110 are ensured to be appropriate, facilitating the feeding and discharging of materials. The driving motor is installed on the right support 130, and the position of the motor is adjusted so that the output shaft is aligned with the driving sprocket of the chain transmission mechanism. The chain transmission mechanism is installed, and the tension of the chain is adjusted to ensure stable operation of the transmission system.
[0056] The utility model also provides a kind of feed production line, and feed production line has the horizontal mixing equipment described above.
[0057] The above-described embodiments are only preferred embodiments of the present utility model, and cannot be used to limit the scope of protection of the present utility model. For those skilled in the art, it can be understood that the embodiments can be changed, modified, replaced and modified in various ways without departing from the principles and spirits of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.
Claims
1. A horizontal feed mixing apparatus, characterized by, The horizontal feed mixing device comprises: a device body having a stirring barrel in which a cylindrical stirring cavity is hollow formed; a stirring roller rotatably arranged in the stirring barrel, the stirring roller having a plurality of first stirring components and a plurality of second stirring components located in the cylindrical stirring cavity; a driving component connected with the stirring roller, the driving component driving the stirring roller to rotate; wherein the plurality of first stirring components are spaced apart in a spiral shape on the outer periphery of the stirring roller, the first stirring components having a plough stirring piece; the plurality of second stirring components are arranged along the axis of the stirring roller, the plurality of second stirring components and the plurality of first stirring components being distributed staggeredly, the second stirring components having spiral blades.
2. The horizontal feed mixing device according to claim 1, wherein: the plough stirring piece comprises a plough body, the plough body being in a wedge-shaped structure, the outer diameter of the plough body gradually expanding from the front end to the rear end.
3. The horizontal feed mixing device according to claim 2, wherein: the plough body of the plough stirring piece has two side walls respectively connected with two plough side plates, the two plough side plates being in a V-shaped distribution; wherein the side wall of the plough side plate facing the inner wall of the stirring barrel is in a matching arc-shaped structure.
4. The horizontal feed mixing device according to claim 3, wherein: the first stirring component comprises a mounting seat, one side end of the mounting seat being adapted to be welded on the outer periphery of the stirring roller; the plough body has a connecting portion, the connecting portion being bolted with the other side end of the mounting seat.
5. The horizontal feed mixing device according to claim 1, wherein: the second stirring component comprises a plurality of connecting plates, the plurality of connecting plates being radially distributed and welded on the outer periphery of the stirring roller, the plurality of connecting plates connecting the spiral blades.
6. The horizontal feed mixing device according to claim 5, wherein: the outer contour of the spiral blade is matched with the inner wall of the stirring barrel.
7. The horizontal feed mixing device according to claim 1, wherein: the materials of the plough stirring piece and the spiral blade are both stainless steel materials.
8. The horizontal feed mixing device according to claim 1, wherein: the driving component comprises a driving motor and a chain transmission mechanism, the chain transmission mechanism being connected with the driving motor and the stirring roller respectively.
9. A horizontal feed mixing apparatus as claimed in claim 8, characterised in that : the device body comprises a left side support and a right side support, the stirring barrel being suspendedly installed between the left side support and the right side support, the driving component being arranged on the right side support; wherein the top of the stirring barrel is provided with a feeding port, and the bottom of the stirring barrel is provided with a discharging port in the middle.
10. A feed production line, characterized in that, a horizontal feed mixing device comprising any one of claims 1 to 9.
Citation Information
Patent Citations
Feed mixing equipment for livestock breeding
CN222324849U