Homogenizing and mixing equipment for dried meat floss snacks

The hydraulic rod control plate retracts and drives the mixing drum to rotate and automatically adjusts the extension distance of the mixing rod, which solves the problems of low efficiency and uneven mixing of existing meat floss snack homogeneous mixing equipment when heating the mix, and achieves fast and uniform mixing and efficient production.

CN120079288AInactive Publication Date: 2025-06-03ZHEJIANG GAOSHENG FOOD TECH CO LTD
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Patent Information

Application Number
CN202510562080.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2025-06-03
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing homogenous mixing equipment for meat floss snacks cannot achieve rapid mixing by changing the stirring method when heating the mix, which takes a lot of time to fully contact and fusion between the meat floss and the seasonings. Long-term heating will cause the meat floss to become charred, resulting in uneven mixing and low processing efficiency.

Method used

The control plate is pulled by the hydraulic rod to retract, so that the control plate can drive the mixing roller to rotate with the positioning bearing as the axis, and move on the inner wall of the arc-shaped slide plate through the sliding wheel of the mixing rod, automatically adjusting the extension distance of the mixing rod in the mixing roller, thereby changing the stirring state and realizing multi-directional stirring.

Benefits of technology

It effectively solves the problems of uneven mixing and low processing efficiency caused by the equipment using only a single direction of stirring, and achieves rapid and uniform mixing when heating the mix, avoids the phenomenon of meat floss and burns, and improves product quality and production efficiency.

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Abstract

The invention discloses homogenizing and mixing equipment for dried meat floss snacks, and relates to the technical field of dried meat floss processing, the homogenizing and mixing equipment comprises an equipment shell and an arc-shaped rotating surface, the arc-shaped rotating surface is arranged on the surface of the top end of the equipment shell, a rotating groove is formed in the surface of the top end of the equipment shell, and a positioning bearing is fixedly mounted on the inner wall of the rotating groove; a positioning box is movably and rotatably mounted on the inner wall of the positioning bearing; a hydraulic rod pulls a control plate to retract, so that a positioning box drives a mixing roller to rotate by taking a positioning bearing as an axis, the mixing and stirring state of the mixing roller is changed, a sliding wheel at the bottom of a stirring rod moves along an arc-shaped sliding groove plate during rotation, and the stirring rod is pushed to move; the stretching distance of the stirring rod in the mixing roller is automatically adjusted, so that the using state of the dried meat floss mixing device is changed, and the defects that in the prior art, the stirring action of stirring equipment is single, the heating and mixing process is slow, and consequently the mixing equipment in the prior art is uneven in mixing and low in processing efficiency are overcome.
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Description

Technical Field

[0001] The present invention relates to the technical field of floss processing, and particularly to a homogenizing and mixing device for floss snacks. Background Art

[0002] The homogenizing and mixing device for floss snacks is mainly used to fully mix floss, various seasonings, additives, etc., so that the product achieves a uniform taste and quality. It is one of the key devices in the production process of floss snacks, which can improve production efficiency and product quality stability, and is widely used in floss snack manufacturers, including the production processes of various floss products such as floss cakes, floss rolls, and floss buns. At the same time, it can also be used for the mixing and processing of other similar foods, such as nut snacks, baked foods, etc.

[0003] The existing homogenizing and mixing device for floss snacks generally puts the floss raw materials into the stirring device, and through continuous stirring of the stirring device for a long time, the floss raw materials gradually become fluffy during the stirring process. After the floss raw materials become fluffy, seasonings need to be added and the floss needs to be heated. Heating can reduce the viscosity of the seasonings, making them easier to flow and disperse, thereby accelerating the mixing speed of the seasonings and the floss. However, since the device of the existing technology only adopts a single-direction stirring action, when heating and mixing are required, it is impossible to achieve rapid mixing by changing the stirring method, resulting in a large amount of time required for stirring to make the floss and the seasonings fully contact and blend. And long-term heating will cause the floss to become burnt and charred, resulting in uneven mixing of the existing mixing device and low processing efficiency. In view of the above technical defects, a solution is now proposed. Summary of the Invention

[0004] The purpose of the present invention is: by pulling the control board to retract through the hydraulic rod, the control board drives the mixing drum to rotate around the positioning bearing through the positioning box, thereby changing the mixing and stirring state of the mixing drum. At the same time, while rotating, the sliding wheel at the bottom of the stirring rod moves on the inner wall of the arc-shaped chute plate, pushing the stirring rod to move on the inner wall of the relevant components, automatically adjusting the extension distance of the stirring rod in the mixing drum, thereby changing the use state of the floss mixing device, thus making up for the defect that the device of the existing technology only adopts a single-direction stirring action, resulting in the inability to achieve rapid mixing by changing the stirring method when heating and mixing are required, resulting in a large amount of time required for stirring to make the floss and the seasonings fully contact and blend, and long-term heating will cause the floss to become burnt and charred, resulting in uneven mixing of the existing mixing device and low processing efficiency.

[0005] To achieve the above object, the present invention adopts the following technical solutions: A homogenizing and mixing device for floss snacks, including a device housing and an arc-shaped rotating surface, the arc-shaped rotating surface is arranged on the top surface of the device housing, a rotating groove is opened on the top surface of the device housing, a positioning bearing is fixedly installed on the inner wall of the rotating groove, a positioning box is rotatably installed in the inner wall of the positioning bearing, a stirring rod is inserted into the inner wall of the positioning box in a movable manner, a sliding wheel is rotatably installed on the bottom surface of the stirring rod, a positioning bracket is fixedly installed on one side surface of the inner wall of the device housing, a chute plate is installed on the bottom surface of the positioning bracket, a switching mechanism is installed on the top surface of the device housing, and a driving mechanism is installed on one side surface of the positioning bracket; The switching mechanism includes a rotating engagement component and a driving component. The rotating engagement component includes a positioning groove, a transmission gear is rotatably installed in the inner wall of the positioning groove, a mixing drum is rotatably installed on the top surface of the positioning box, and a meshing tooth is fixedly installed on the outer surface of the mixing drum. The driving component is installed on the bottom surface of the inner wall of the device housing.

[0006] Further, there are two positioning bearings, which are respectively distributed on one side and the other side surface of the inner wall of the rotating groove. The positioning box is rotatably connected with the two positioning bearings. The stirring rod is inserted into the inner wall of the positioning box in a movable manner. The stirring rod extends from the inner wall of the positioning box to the mixing drum, and the sliding wheel is in movable contact with the inner wall of the chute plate.

[0007] Further, the driving component includes a stepping motor, the stepping motor is installed on the bottom surface of the inner wall of the device housing, a driving rod is installed on the top surface of the stepping motor, an inclined gear meshing with the transmission gear is fixedly installed on the top surface of the driving rod, a hydraulic rod is rotatably installed in the inner wall of the positioning bracket, a limiting groove is opened on one side surface of the inner wall of the device housing, and a control plate is slidably installed in the inner wall of the limiting groove.

[0008] Further, one end of the driving rod is fixedly connected to the output end of the stepping motor. The outer surface of the mixing drum is in sliding contact with the inner wall of the rotating groove. The meshing tooth and the transmission gear are meshed with each other. The outer surface of the mixing drum is in movable contact with the arc-shaped rotating surface.

[0009] Further, the other end of the hydraulic rod is rotatably connected to the control plate. The inner wall of the control plate is in sliding contact with the inner wall of the limiting groove. The inner wall of the control plate is fixedly connected to the outer surface of the positioning box.

[0010] Furthermore, the driving mechanism includes a stirring assembly and a rotary heating assembly. The stirring assembly includes a setting plate fixedly installed on the bottom surface of the positioning box. A driving motor is fixedly installed on the fixed surface of one side of the positioning box. A first driving gear is installed on the bottom surface of the driving motor. A rotary bearing is fixedly installed on the bottom fixed surface of the positioning box. A second driving gear is rotatably installed on the inner wall of the rotary bearing. A chain that mutually drives with the second driving gear is installed on the outer surface of the first driving gear.

[0011] Furthermore, the first driving gear is fixedly connected to the output end of the driving motor. The stirring rod is rotatably inserted into the inner wall of the setting plate. The inner wall of the second driving gear is movably inserted with the stirring rod.

[0012] Furthermore, the rotary heating assembly includes a heating plate fixedly installed on the top surface of the equipment housing. An electromagnetic heating coil is fixedly installed on the bottom surface of the heating plate. A supporting rubber wheel is rotatably installed on the top surface of the equipment housing. A stirring shaft is fixedly installed on the outer surface of the stirring rod. A sealing cover is rotatably installed on the top surface of the mixing drum. A contact plate is fixedly installed on the inner wall of the mixing drum.

[0013] Furthermore, there are two supporting rubber wheels evenly distributed on the top surface of the equipment housing. The supporting rubber wheels are in movable contact with the outer surface of the mixing drum. The stirring shafts are several and evenly distributed in an annular array on the outer surface of the stirring rod. The contact plates are several and evenly distributed in an annular array on the inner wall of the mixing drum.

[0014] In summary, due to the adoption of the above technical solutions, the beneficial effects of the present invention are as follows: For the homogeneous mixing equipment of this meat floss snack, by pulling the control plate back through the hydraulic rod, the control plate drives the mixing drum to rotate around the positioning bearing through the positioning box, thereby changing the mixing and stirring state of the mixing drum. At the same time of rotation, the sliding wheel at the bottom of the stirring rod moves inside the inner wall of the arc-shaped chute plate, pushing the stirring rod to move inside the inner wall of the relevant components, automatically adjusting the protruding distance of the stirring rod inside the mixing drum, thereby changing the use state of the meat floss mixing device, thus making up for the defect that the equipment of the prior art only adopts a single-direction stirring action, resulting in the inability to achieve rapid mixing by changing the stirring method when heating and mixing are required, resulting in a large amount of time required for stirring to fully contact and blend the meat floss and seasonings, and the long-term heating will cause the meat floss to become burnt, resulting in uneven mixing of the mixing equipment of the prior art and low processing efficiency. Brief Description of the Drawings

[0015] Figure 1 Shows the overall external structural schematic diagram of the present invention; Figure 2 Shows the schematic diagram of the external structure of the device housing of the present invention; Figure 3 Shows the schematic diagram of the overall internal structure of the present invention; Figure 4 Shows the schematic diagram of the internal structure of the device housing of the present invention; Figure 5 Shows the schematic diagram of the overall side sectional structure of the present invention; Figure 6 Shows the schematic diagram of the overall structure of the present invention from another angle; Figure 7 Shows the present invention Figure 6 The schematic diagram of the structure at position A; Figure 8 Shows the schematic diagram of the transmission gear structure of the present invention; Figure 9 Shows the schematic diagram of the stirring assembly structure of the present invention; Figure 10 Shows the schematic diagram of the internal structure of the stirring assembly of the present invention; Figure 11 Shows the schematic diagram of the internal structure of the stirring assembly from another angle of the present invention.

[0016] Legend: 1. Device housing; 101. Arc rotation; 102. Rotation groove; 103. Positioning bearing; 104. Positioning box; 105. Stirring rod; 106. Sliding wheel; 107. Positioning bracket; 108. Chute plate; 2. Positioning groove; 201. Transmission gear; 202. Mixing drum; 203. Meshing teeth; 3. Stepper motor; 301. Driving rod; 302. Helical gear; 303. Hydraulic rod; 304. Limiting groove; 305. Control board; 4. Setting board; 401. Driving motor; 402. First driving gear; 403. Rotating bearing; 404. Second driving gear; 405. Chain; 5. Heating plate; 501. Electromagnetic heating coil; 502. Support rubber wheel; 6. Stirring shaft; 7. Sealing cover; 8. Contact plate. Detailed implementation manners

[0017] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0018] It should be noted that in the description of the present invention, it is to be understood that the orientation or positional relationships indicated by the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. are based on the orientation or positional relationships shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present invention.

[0019] As Figures 1-11 shown, the present invention discloses a surface spraying device for the production of corrosion-resistant idlers, including an equipment housing 1 and an arc-shaped rotating surface 101. The arc-shaped rotating surface 101 is arranged on the top surface of the equipment housing 1. A rotating groove 102 is opened on the top surface of the equipment housing 1. A positioning bearing 103 is fixedly installed on the inner wall of the rotating groove 102. There are two positioning bearings 103 respectively distributed on one side and the other side surface of the inner wall of the rotating groove 102. A positioning box 104 is rotatably installed in the inner wall of the positioning bearing 103. The positioning box 104 is rotatably connected to the two positioning bearings 103. A stirring rod 105 is inserted into the inner wall of the positioning box 104 in a movable manner. The stirring rod 105 is rotatably inserted into the inner wall of the positioning box 104. The stirring rod 105 extends from the inner wall of the positioning box 104 to the mixing drum 202. A sliding wheel 106 is rotatably installed on the bottom surface of the stirring rod 105. A positioning bracket 107 is fixedly installed on one side surface of the inner wall of the equipment housing 1. A hydraulic rod 303 is rotatably installed on the inner wall of the positioning bracket 107. The other end of the hydraulic rod 303 is rotatably connected to a control board 305. A limiting groove 304 is opened on one side surface of the inner wall of the equipment housing 1. A control board 305 is slidably installed on the inner wall of the limiting groove 304. The inner wall of the control board 305 is in sliding contact with the inner wall of the limiting groove 304. The inner wall of the control board 305 is fixedly connected to the outer surface of the positioning box 104. A chute plate 108 is installed on the bottom surface of the positioning bracket 107. The sliding wheel 106 is in movable contact with the inner wall of the chute plate 108. A switching mechanism is installed on the top surface of the equipment housing 1. A driving mechanism is installed on one side surface of the positioning bracket 107.

[0020] In the embodiment of the present invention, by starting the hydraulic rod 303, when the hydraulic rod 303 starts, it will pull the control plate 305 to retract. Since the control plate 305 is fixedly connected to the positioning box 104, when the hydraulic rod 303 pulls the control plate 305 to retract, the rotating control plate 305 will drive the positioning box 104 to rotate around the positioning bearing 103. The bottom surface of the positioning box 104 is fixedly connected to the setting plate 4. At this time, the setting plate 4 will drive the driving motor 401 to rotate together with the positioning box 104. During the rotation, the sliding wheel 106 installed on the bottom surface of the stirring rod 105 will move along the inner wall of the chute plate 108 due to the rotation. Since the chute plate 108 is arc-shaped, when the positioning box 104 indirectly drives the sliding wheel 106 installed at the bottom of the stirring rod 105 to rotate along the inner wall of the chute plate 108, at this time, the sliding wheel 106 will push the stirring rod 105 to move within the inner walls of the second driving gear 404, the setting plate 4 and the positioning box 104 because the distance between the sliding wheel 106 and the chute plate 108 becomes shorter. As a result, the entire stirring rod 105 automatically changes and adjusts the extending distance of the stirring rod 105 within the mixing drum 202 as the rotation angle gradually increases.

[0021] Referring to Figures 1-11 , specifically, the switching mechanism includes a rotating meshing component and a driving component. The rotating meshing component includes a positioning groove 2. A transmission gear 201 is rotatably installed on the inner wall of the positioning groove 2. The top surface of the positioning box 104 is rotatably installed with a mixing drum 202. The outer surface of the mixing drum 202 is in movable contact with the arc-shaped rotating surface 101. The outer surface of the mixing drum 202 is in sliding contact with the inner wall of the rotating groove 102. The outer surface of the mixing drum 202 is fixedly installed with a meshing tooth 203. The meshing tooth 203 meshes with the transmission gear 201. The driving component is installed on the bottom surface of the inner wall of the equipment housing 1. The driving component includes a stepping motor 3. The stepping motor 3 is installed on the bottom surface of the inner wall of the equipment housing 1. The top surface of the stepping motor 3 is installed with a driving rod 301. One end of the driving rod 301 is fixedly connected to the output end of the stepping motor 3. The top surface of the driving rod 301 is fixedly installed with a helical gear 302 that meshes with the transmission gear 201.

[0022] In an embodiment of the present invention, when the mixing drum 202 rotates 90 degrees, the mixing drum 202 will change from a vertical state to a horizontal state. At this time, the meshing teeth 203 installed on the outer surface of the mixing drum 202 will mesh with the transmission gear 201 installed on the inner wall of the positioning groove 2 due to rotation. At this time, the stepping motor 3 and the electromagnetic heating coil 501 are started. When the stepping motor 3 is started, it will drive the driving rod 301 installed at its output end to rotate. A helical gear 302 is installed on the bottom surface of the driving rod 301. The helical gear 302 meshes with the transmission gear 201 on the inner wall of the positioning groove 2. Therefore, when the helical gear 302 rotates, the transmission gear 201 meshing with it will rotate on the inner wall of the positioning groove 2. At this time, the transmission gear 201 and the meshing teeth 203 mesh with each other. Therefore, the rotating transmission gear 201 will drive the mixing drum 202 to rotate on the inner wall of the rotating groove 102 through the meshing teeth 203.

[0023] Refer to Figures 1-11 , specifically, the driving mechanism includes a stirring assembly and a rotating heating assembly. The stirring assembly includes a setting plate 4. The setting plate 4 is fixedly installed on the bottom surface of the positioning box 104. The stirring rod 105 is rotatably inserted into the inner wall of the setting plate 4. A driving motor 401 is fixedly installed on one side of the positioning box 104. A first driving gear 402 is installed on the bottom surface of the driving motor 401. The first driving gear 402 is fixedly connected to the output end of the driving motor 401. A rotating bearing 403 is fixedly installed on the bottom surface of the positioning box 104. A second driving gear 404 is rotatably installed on the inner wall of the rotating bearing 403. The inner wall of the second driving gear 404 is rotatably inserted with the stirring rod 105. A chain 405 that is mutually transmitted with the second driving gear 404 is installed on the outer surface of the first driving gear 402.

[0024] In the embodiment of the present invention, when the driving motor 401 is started, the first driving gear 402 installed at its output end is driven to rotate, and the outer surface of the first driving gear 402 is connected to the second driving gear 404 through the chain 405. Therefore, when the first driving gear 402 rotates, the second driving gear 404 will rotate along with the first driving gear 402. The inner wall of the second driving gear 404 is movably connected with the stirring rod 105. At this time, the stirring rod 105 rotates on the inner wall of the setting plate 4 and the positioning box 104, and the stirring rod One end of the stirring rod 105 extends to the inner wall of the mixing drum 202, and a stirring shaft 6 is installed on the outer surface of the stirring rod 105. Since the position of the entire stirring shaft 6 is close to the lower part of the mixing drum 202 at this time, the rotating stirring rod 105 will drive the stirring shaft 6 to rotate on the inner wall of the mixing drum 202, thereby rotating and stirring the meat floss at the bottom of the mixing drum 202, so that the rotating stirring shaft 6 and the meat floss raw materials in the mixing drum 202 are in contact with each other, thereby stirring the meat floss raw materials in the mixing drum 202 to a loose state, which is convenient for the subsequent mixing processing.

[0025] Reference Figures 1-11 Specifically, the rotary heating component includes a heating plate 5, which is fixedly mounted on the top surface of the equipment housing 1, and an electromagnetic heating coil 501 is fixedly mounted on the bottom surface of the heating plate 5. A supporting rubber wheel 502 is movably and rotatably mounted on the top surface of the equipment housing 1. The supporting rubber wheel 502 is provided with two equidistantly distributed on the top surface of the equipment housing 1, and the supporting rubber wheel 502 is in movable contact with the outer surface of the mixing drum 202. A stirring shaft 6 is fixedly mounted on the outer surface of the stirring rod 105, and the stirring shaft 6 is a plurality of equidistantly distributed on the outer surface of the stirring rod 105 in an annular array. A sealing cover 7 is movably and rotatably mounted on the top surface of the mixing drum 202, and a contact plate 8 is fixedly mounted on the inner wall of the mixing drum 202. The contact plate 8 is provided with a plurality of equidistantly distributed on the inner wall of the mixing drum 202 in an annular array.

[0026] In the embodiment of the present invention, when the electromagnetic heating coil 501 is started, the meat floss inside the mixing drum 202 is heated by the electromagnetic induction principle, and at this time the mixing drum 202 is in a rotating state. At this time, the rotating mixing drum 202 will contact the meat floss through the contact plate 8 during rotation. When the contact plate 8 rotates with the mixing drum 202, it will drive a certain amount of meat floss to move upward. As the mixing drum 202 continues to rotate, the meat floss driven by the contact plate 8 will slide off the surface of the contact plate 8 due to the gradual increase in the rotation angle, thereby During the falling process, the meat floss comes into contact with the rotating stirring rod 105. Since the mixing drum 202 rotates in the forward direction and the driving motor 401 drives the rotating stirring rod 105 to rotate in the reverse direction, the meat floss that falls at this time will come into contact with the stirring shaft 6 installed on the outer surface of the stirring rod 105, so that the meat floss comes into contact with the rotating stirring shaft 6 during the falling process. During the falling process, the meat floss is broken up by the rotating stirring shaft 6, so that the meat floss and the seasoning are fully mixed, and the fluffiness of the meat floss is further improved, thereby realizing the processing of the meat floss raw material.

[0027] Specific use process: when a homogenous mixing device for meat floss snacks is needed, the meat floss raw materials to be processed are put into the mixing drum 202, and the driving motor 401 is started. When the driving motor 401 is started, the first driving gear 402 installed at its output end is driven to rotate. The outer surface of the first driving gear 402 is connected to the second driving gear 404 through a chain 405. Therefore, when the first driving gear 402 rotates, the second driving gear 404 will rotate with the first driving gear 402. The inner wall of the second driving gear 404 is movably connected with a stirring rod 105. At this time, the stirring rod 105 is connected to the inner wall of the second driving gear 404. 05 will rotate on the inner wall of the setting plate 4 and the positioning box 104, and one end of the stirring rod 105 extends to the inner wall of the mixing drum 202, and a stirring shaft 6 is installed on the outer surface of the stirring rod 105. Since the position of the entire stirring shaft 6 is close to the lower part of the mixing drum 202 at this time, the rotating stirring rod 105 will drive the stirring shaft 6 to rotate on the inner wall of the mixing drum 202, thereby rotating and stirring the meat floss at the bottom of the mixing drum 202, so that the rotating stirring shaft 6 and the meat floss raw materials in the mixing drum 202 are in contact with each other, thereby stirring the meat floss raw materials in the mixing drum 202 to a loose state, which is convenient for the subsequent mixing processing.

[0028] When it is necessary to add seasonings and mix them with the shredded meat, the seasonings to be mixed are put into the top of the mixing drum 202 at this time. When the input is completed, the sealing cover 7 installed at the top of the mixing drum 202 is rotated at this time, so that the sealing cover 7 seals the mixing drum 202. After the sealing is completed, the hydraulic rod 303 is started. When the hydraulic rod 303 is started, it will pull the control board 305 to retract. Since the control board 305 is fixedly connected to the positioning box 104, when the hydraulic rod 303 pulls the control board 305 to retract, the rotating control board 305 will drive the positioning box 104 to rotate around the positioning bearing 103. The bottom surface of the positioning box 104 is fixedly connected to the setting board 4. At this time, the setting board 4 will drive the driving motor 401 to rotate together with the positioning box 104. During the rotation process, the sliding wheel 106 installed on the bottom surface of the stirring rod 105 will move along the inner wall of the chute board 108 due to the rotation. Since the chute board 108 is arc-shaped, when the positioning box 104 indirectly drives the sliding wheel 106 installed at the bottom of the stirring rod 105 to rotate along the inner wall of the chute board 108, at this time, the sliding wheel 106 will push the stirring rod 105 to move along the inner walls of the second driving gear 404, the setting board 4 and the positioning box 104 because the distance between the sliding wheel 106 and the chute board 108 becomes shorter. Thus, the entire stirring rod 105 automatically changes and adjusts the extending distance of the stirring rod 105 in the mixing drum 202 as the rotation angle gradually increases. At the same time that the positioning box 104 rotates, the positioning box 104 will drive the mixing drum 202 to rotate along the inner wall of the rotating groove 102, so that the entire mixing drum 202 rotates with the rotation of the positioning box 104. When the hydraulic rod 303 finishes retracting, the entire mixing drum 202 will complete a 90-degree rotation centered on the positioning box 104. At this time, the mixing drum 202 will press on the surface of the supporting rubber wheel 502 installed on the top surface of the equipment housing 1. The outer surface of the mixing drum 202 is installed with meshing teeth 203. When the mixing drum 202 rotates 90 degrees, the mixing drum 202 will change from a vertical state to a horizontal state. And at this time, the meshing teeth 203 installed on the outer surface of the mixing drum 202 will mesh with the transmission gear 201 installed on the inner wall of the positioning groove 2 due to the rotation, realizing the change of the use state of the mixing drum 202.

[0029] After the state of the mixing drum 202 is changed, the stepping motor 3 and the electromagnetic heating coil 501 are started at this time. When the stepping motor 3 is started, it will drive the driving rod 301 installed at its output end to rotate. A helical gear 302 is installed on the bottom surface of the driving rod 301, and the helical gear 302 meshes with the transmission gear 201 on the inner wall of the positioning groove 2. Therefore, when the helical gear 302 rotates, the transmission gear 201 meshing with it will rotate on the inner wall of the positioning groove 2. At this time, the transmission gear 201 meshes with the meshing teeth 203. So the rotating transmission gear 201 will drive the mixing drum 202 to rotate on the inner wall of the rotating groove 102 through the meshing teeth 203. The outer surface of the mixing drum 202 contacts the top of the supporting rubber wheel 502. The two supporting rubber wheels 502 will provide a stable rotating force for the mixing drum 202, so that the mixing drum 202 rotates stably. When the electromagnetic heating coil 501 is started, it will heat the shredded meat inside the mixing drum 202 through the principle of electromagnetic induction. At this time, the mixing drum 202 is in a rotating state. When the rotating mixing drum 202 rotates, it will contact the shredded meat through the contact plate 8. When the contact plate 8 rotates with the mixing drum 202, it will drive a certain amount of shredded meat to move upward. As the mixing drum 202 rotates continuously, the shredded meat driven by the contact plate 8 will slide off the surface of the contact plate 8 due to the gradually increasing rotation angle, and thus contact the rotating stirring rod 105 during the falling process. Since the mixing drum 202 rotates forward and the stirring rod 105 driven by the driving motor 401 rotates reversely, the shredded meat falling at this time will contact the stirring shaft 6 installed on the outer surface of the stirring rod 105, so that the shredded meat contacts the rotating stirring shaft 6 during the falling process. During the falling process, the shredded meat is scattered by the rotating stirring shaft 6, so that the shredded meat and the seasoning are fully mixed, and the fluffiness of the shredded meat is further improved, thereby realizing the processing of the shredded meat raw material.

[0030] The above are all preferred embodiments of the present invention, and the protection scope of the present invention is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present invention should be covered within the protection scope of the present invention.

Claims

1. A homogenizing and mixing device for meat floss snacks, comprising a device housing (1) and an arc-shaped rotating surface (101), wherein the arc-shaped rotating surface (101) is arranged on the top surface of the device housing (1), characterized in that: A rotating groove (102) is provided on the top surface of the device housing (1), a positioning bearing (103) is fixedly mounted on the inner wall of the rotating groove (102), a positioning box (104) is movably and rotatably mounted on the inner wall of the positioning bearing (103), a stirring rod (105) is movably inserted into the inner wall of the positioning box (104), a sliding wheel (106) is movably and rotatably mounted on the bottom surface of the stirring rod (105), a positioning bracket (107) is fixedly mounted on one side surface of the inner wall of the device housing (1), a sliding groove plate (108) is mounted on the bottom surface of the positioning bracket (107), a switching mechanism is mounted on the top surface of the device housing (1), and a driving mechanism is mounted on one side surface of the positioning bracket (107); The switching mechanism comprises a rotary meshing component and a driving component, the rotary meshing component comprising a positioning groove (2), a transmission gear (201) being movably and rotatably mounted on the inner wall of the positioning groove (2), a mixing drum (202) being movably and rotatably mounted on the top surface of the positioning box (104), a meshing tooth (203) being fixedly mounted on the outer surface of the mixing drum (202), and the driving component being mounted on the bottom end surface of the inner wall of the device housing (1).

2. The homogenizing mixing equipment for meat floss snacks according to claim 1, characterized in that: The positioning bearing (103) is provided with two surfaces respectively distributed on one side and the other side of the inner wall of the rotating groove (102); the positioning box (104) is movably and rotatably connected to the two positioning bearings (103); the stirring rod (105) is movably and rotatably plugged into the inner wall of the positioning box (104); the stirring rod (105) extends from the inner wall of the positioning box (104) to the mixing drum (202); and the sliding wheel (106) is in movably contact with the inner wall of the slide groove plate (108).

3. The homogenizing mixing equipment for meat floss snacks according to claim 1, characterized in that: The driving assembly comprises a stepper motor (3), the stepper motor (3) being mounted on the bottom surface of the inner wall of the device housing (1), a driving rod (301) being mounted on the top surface of the stepper motor (3), a bevel gear (302) being fixedly mounted on the top surface of the driving rod (301) and meshing with a transmission gear (201), a hydraulic rod (303) being movably and rotatably mounted on the inner wall of the positioning bracket (107), a limiting groove (304) being formed on one side surface of the inner wall of the device housing (1), and a control panel (305) being slidably mounted on the inner wall of the limiting groove (304).

4. The homogenizing mixing device for meat floss snacks according to claim 3, characterized in that: One end of the driving rod (301) is fixedly connected to the output end of the stepping motor (3), the outer surface of the mixing drum (202) is in sliding contact with the inner wall of the rotating groove (102), the meshing teeth (203) and the transmission gear (201) are meshed with each other, and the outer surface of the mixing drum (202) is in active contact with the arc-shaped rotating surface (101).

5. The homogenizing mixing equipment for meat floss snacks according to claim 3, characterized in that: The other end of the hydraulic rod (303) is movably and rotatably connected to the control plate (305), the inner wall of the control plate (305) is in sliding contact with the inner wall of the limiting groove (304), and the inner wall of the control plate (305) is fixedly connected to the outer surface of the positioning box (104).

6. The homogenizing mixing equipment for meat floss snacks according to claim 1, characterized in that: The driving mechanism comprises a stirring component and a rotating heating component, the stirring component comprises a setting plate (4), the setting plate (4) is fixedly mounted on the bottom surface of the positioning box (104), a driving motor (401) is mounted on a fixed surface on one side of the positioning box (104), a first driving gear (402) is mounted on the bottom surface of the driving motor (401), a rotating bearing (403) is mounted on the bottom fixed surface of the positioning box (104), a second driving gear (404) is movably and rotatably mounted on the inner wall of the rotating bearing (403), and a chain (405) for mutual transmission between the first driving gear (402) and the second driving gear (404) is mounted on the outer surface of the first driving gear (402).

7. The homogenizing mixing device for meat floss snacks according to claim 6, characterized in that: The first driving gear (402) is fixedly connected to the output end of the driving motor (401), the stirring rod (105) is movably and rotatably plugged into the inner wall of the setting plate (4), and the inner wall of the second driving gear (404) is movably plugged into the stirring rod (105).

8. The homogenizing mixing device for meat floss snacks according to claim 6, characterized in that: The rotary heating assembly comprises a heating plate (5), the heating plate (5) being fixedly mounted on the top surface of the device housing (1), an electromagnetic heating coil (501) being fixedly mounted on the bottom surface of the heating plate (5), a supporting rubber wheel (502) being movably and rotatably mounted on the top surface of the device housing (1), a stirring shaft (6) being fixedly mounted on the outer surface of the stirring rod (105), a sealing cover (7) being movably and rotatably mounted on the top surface of the mixing drum (202), and a contact plate (8) being fixedly mounted on the inner wall of the mixing drum (202).

9. The homogenizing mixing device for meat floss snacks according to claim 8, characterized in that: The supporting rubber wheel (502) is provided with two equidistantly distributed on the top surface of the device housing (1), the supporting rubber wheel (502) is in active contact with the outer surface of the mixing drum (202), the stirring shaft (6) is a plurality of equidistantly distributed in a circular array on the outer surface of the stirring rod (105), and the contact plate (8) is provided with a plurality of equidistantly distributed in a circular array on the inner wall of the mixing drum (202).