A multi-chamber fermentation mixing device for fermented meat strips

The circulating fermentation mechanism and anti-sticking design of the multi-chamber fermentation mixing device solve the problems of uneven temperature and humidity and adhesion during the fermentation of meat strips, realize the dynamic interaction and uniform distribution of the fermentation medium, and improve the quality and appearance of fermented meat strips.

CN120192829BActive Publication Date: 2025-10-03GUANGDONG ZHENMEI FOOD CO LTD
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Patent Information

Application Number
CN202510668023.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-23
Publication Date
2025-10-03
Estimated Expiration
2045-05-23

AI Technical Summary

Technical Problem

The spatial position of meat strips in existing multi-chamber fermentation and mixing devices is fixed, resulting in uneven temperature and humidity distribution and insufficient interaction of fermentation media, which can easily cause the meat strips to stack, squeeze and stick together, affecting product quality and appearance.

Method used

A multi-chamber fermentation and mixing device is used, which includes a circulating fermentation mechanism, an anti-sticking mechanism and a lifting control mechanism. Through the combination of driving sprockets, chains and dust-proof discs, dynamic circulation and anti-sticking separation of meat strips are achieved. Combined with temperature and humidity sensors and wind control, fermentation uniformity is ensured and adhesion is prevented.

Benefits of technology

It realizes dynamic interaction and uniform distribution of temperature and humidity during the fermentation process of meat strips, avoids stacking, squeezing and adhesion of meat strips, improves the shaping effect and aesthetics of the product, and improves fermentation efficiency and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of food processing technology, and discloses a multi-cavity fermentation mixing device for fermented meat strips, comprising a multi-cavity fermentation mixing mechanism, wherein two movable bin mechanisms are slidingly provided inside the multi-cavity fermentation mixing mechanism, and four circulating fermentation mechanisms are connected to the middle position of the movable bin mechanism, and the bottom ends of the plurality of circulating fermentation mechanisms are fixedly provided with anti-sticking mechanisms. The present invention drives the first control disk to rotate through the first fixed column and the first control column, so that the circulating fermentation mechanism performs a time cycle during the fermentation process, so that the meat strips are dynamically circulated during the fermentation process, and the meat strips are increased to realize dynamic interaction of the fermentation medium, resulting in uniform temperature and humidity distribution, and improving fermentation efficiency; and the operation of the circulating fermentation mechanism avoids the stacking and squeezing of the meat strips, reduces the uneven penetration of the leavening agent and the local adhesion phenomenon, and improves the product shaping effect and the aesthetics of the product.
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Description

Technical Field

[0001] The invention belongs to the technical field of food processing, and in particular relates to a multi-cavity fermentation and mixing device for strips of dried meat. Background Art

[0002] Fermented meat strips are a specialty of traditional Taiwanese meat products. Their unique flavor, high nutritional value, and portability have made them popular among consumers of all ethnicities. As a representative of ready-to-eat meat products, the fermentation and mixing steps in their processing directly impact product quality and appearance.

[0003] In the existing technology, the multi-chamber fermentation and mixing device commonly used in the current industry usually adopts a flat-layout operation mode: the meat strips are horizontally arranged on a multi-layer static support frame and fermented through a fixed cavity structure; however, this traditional process has significant technical bottlenecks: first, the static layered layout leads to the fixed spatial position of the meat strips, and the dynamic interaction of the fermentation medium cannot be achieved, resulting in uneven temperature and humidity distribution; second, the flat-layout process easily causes the stacking and squeezing of the meat strips, resulting in uneven penetration of the fermentation agent and local adhesion, which not only affects the fermentation uniformity, but also causes problems such as shape collapse and texture disorder in the finished product, seriously affecting the product shaping effect and commodity aesthetics.

[0004] Therefore, it is necessary to invent a multi-chamber fermentation mixing device for fermented meat strips to solve the above problems. It can realize intelligent displacement and medium interaction in the three-dimensional space of meat strips, which is of great industrial upgrading significance for improving product quality consistency and optimizing appearance characteristics. Summary of the Invention

[0005] In view of the above problems, the present invention provides a multi-chamber fermentation and mixing device for fermented meat strips to solve the problems raised in the above background technology.

[0006] To achieve the above object, the present invention provides the following technical solution: a multi-chamber fermentation and mixing device for fermented meat strips, comprising a multi-chamber fermentation and mixing mechanism, wherein two movable bin mechanisms are slidably provided inside the multi-chamber fermentation and mixing mechanism, four circulating fermentation mechanisms are connected to the middle position of the movable bin mechanism, and the bottom ends of the plurality of circulating fermentation mechanisms are fixed with anti-sticking mechanisms, wherein:

[0007] The circulating fermentation mechanism includes a positioning frame, a plurality of fixing frames are fixedly provided on both sides of the positioning frame, wherein the top ends of the plurality of fixing frames are rotatably provided with a driving sprocket, the outer walls of the plurality of driving sprockets are engaged with a driving chain, and the bottom ends of the plurality of fixing frames are rotatably provided with an auxiliary sprocket, the outer walls of the plurality of auxiliary sprockets are engaged with the driving chain, the bottom ends of the plurality of driving chains are rotatably provided with a plurality of dustproof discs, and the bottom ends of the plurality of dustproof discs are fixed with a hanging ring;

[0008] The anti-sticking mechanism includes a positioning gear, the bottom end of the positioning gear is fixed with a first helical gear through a positioning shaft, the tooth surface of the first helical gear is meshed with a second helical gear, one end of the second helical gear is fixed with a positioning plate, and both ends of the positioning plate are fixed with anti-sticking strips.

[0009] Preferably, a limit frame is fixedly provided on one side of one of the fixed frames, a driving gear is fixedly provided on the top of one of the driving sprockets, a connecting gear is meshed with the tooth surface of the driving gear, the tooth surface of the connecting gear is meshed with the tooth surface of the positioning gear, a control frame is fixedly provided at one end of the bottom of the limit frame, and the second bevel gear and the positioning plate rotate on both sides of the bottom of the control frame respectively.

[0010] Preferably, auxiliary frames are fixedly provided on the top ends of the plurality of positioning frames.

[0011] Preferably, the mobile warehouse mechanism includes a mobile base, a first mobile frame is fixedly provided at one end of the top of the mobile base, a second mobile frame is fixedly provided on one side of the first mobile frame, universal wheels are fixedly provided on the four sides of the bottom of the mobile base, and positioning handles are fixedly provided at both ends of one side of the two second mobile frames.

[0012] Preferably, the multi-cavity fermentation mixing mechanism includes a multi-cavity fermentation mixing box, a gas furnace is fixedly provided at the middle position of the bottom of the inner wall of the multi-cavity fermentation mixing box, a charcoal basin groove is fixedly provided at both ends of the bottom of the inner wall of the multi-cavity fermentation mixing box, a main circulation fan is fixedly provided at the middle position of the multi-cavity fermentation mixing box, a charcoal basin fan is fixedly provided on both sides of the inner wall of the multi-cavity fermentation mixing box, a control cabinet is fixedly provided on one side of the multi-cavity fermentation mixing box, an exhaust fan is fixedly provided at the top of the multi-cavity fermentation mixing box, a temperature and humidity sensor is fixedly provided at the middle position of the top of the multi-cavity fermentation mixing box, and protective doors are rotatably provided at both ends of one side of the multi-cavity fermentation mixing box.

[0013] Preferably, the inner wall of the multi-cavity fermentation mixing box is connected to a linkage control mechanism, and the linkage control mechanism includes linkage gear columns rotating on both sides of the inner walls of the two second movable frames, the top ends of the four linkage gear columns are fixed with a first control disk through the second movable frame, the two ends of the top of the multi-cavity fermentation mixing box are fixed with a first motor, the output ends of the two first motors are fixed with a first fixed column through the multi-cavity fermentation mixing box, and one end of the bottom of the two first fixed columns is fixed with a first control column.

[0014] Preferably, a control gear is fixedly provided on the top of each of the plurality of driving sprockets, and the tooth surfaces of the plurality of control gears are respectively meshed with the tooth surfaces of the two linkage gear columns.

[0015] Preferably, the inner wall of the multi-chamber fermentation mixing box is connected to a lifting control mechanism, and the lifting control mechanism includes three positioning screws rotating in the middle position of the first movable frame, positioning rods are fixed at both ends of the inner walls of the two first movable frames, and a lifting frame is slidably provided on the inner walls of the two first movable frames, and the middle positions of the three lifting frames are respectively fixedly connected to one end of three of the positioning frames, and one end of another positioning frame is fixedly connected to the middle position of the top of the first movable frame, and the top ends of the three positioning screws are fixed with a second control disk through the first movable frame, and six second motors are fixed at one end of the top of the multi-chamber fermentation mixing box, and the output ends of the six second motors are fixed with a second fixed column through the multi-chamber fermentation mixing box, and the bottom ends of multiple second fixed columns are fixed with a second control column.

[0016] Preferably, sliding grooves are provided on both sides of the bottom of the inner wall of the multi-cavity fermentation mixing box, and the two movable bases are slidably connected to the sliding grooves via universal wheels.

[0017] Preferably, an intelligent control panel is fixedly provided on one side of the multi-chamber fermentation mixing box, and the first motor and the second motor are both electrically connected to an external power supply through the intelligent control panel.

[0018] Technical effects and advantages of the present invention:

[0019] The present invention drives the first control disk to rotate by the first fixed column and the first control column, so that the circulating fermentation mechanism performs a time cycle during the fermentation process, so that the meat strips are dynamically circulated during the fermentation process, and the meat strips are increased to achieve dynamic interaction with the fermentation medium, resulting in uniform temperature and humidity distribution, thereby improving fermentation efficiency; and the operation of the circulating fermentation mechanism avoids stacking and squeezing of the meat strips, reduces uneven penetration of the starter and local adhesion, and improves product shaping effect and commodity aesthetics;

[0020] The present invention rotates a control gear fixed to the top of one of the driving sprockets, so that the driving sprocket drives the driving chain to engage with the auxiliary sprocket for transmission, so that the dustproof plate connected to the bottom of the driving chain drives the hanging ring to perform circular transmission, and the fermented dried meat is independently hung on the corresponding hanging ring through the hook, and the driving chain is circulated until the hanging ring is fully loaded, so that the feeding of the multi-chamber fermentation mixing device is more convenient, and it is avoided to reach into the interior of the fermentation device to load the material, thereby reducing the possibility of internal contamination of the fermentation device;

[0021] The present invention moves the lifting frame which is threadedly connected to the bottom end of the corresponding positioning screw rod, so that the lifting frame drives the circulating fermentation mechanism at the bottom end to rise and fall, and in turn drives the corresponding positioning screw rod to rotate, thereby driving multiple circulating fermentation mechanisms to move downward from bottom to top, so that the height of the circulating fermentation mechanism during loading is controlled, avoiding the hidden danger of muscle fatigue of workers during loading due to too low a height, and improving the convenience of loading.

[0022] The present invention drives the positioning gear to mesh and rotate through a driving gear fixed to the top of one of the driving sprockets via a connecting gear, so that the positioning gear passes through the limit frame to drive the positioning shaft and the first bevel gear to rotate, and the first bevel gear and the second bevel gear are meshed, so that the second bevel gear passes through the control frame to drive the positioning plate and the anti-sticking strip to rotate. By adjusting the coefficients of the driving gear, the connecting gear and the positioning gear, when the circulating fermentation mechanism is circulating, the anti-sticking strip rotates just in the circulation gap between the two dustproof plates, so that the anti-sticking strip separates adjacent meat strips to prevent the meat strips from sticking together during loading and fermentation, and also to prevent sticking that reduces the fermentation efficiency, thereby increasing the circulation efficiency of the circulating fermentation mechanism.

[0023] Other features and advantages of the present invention will be described in the following description, and in part will become apparent from the description, or will be understood by practicing the present invention. The purpose and other advantages of the present invention can be realized and obtained by the structures pointed out in the description, claims and drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following is a brief introduction to the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0025] Figure 1 This is a schematic diagram of a state 1 of a multi-chamber fermentation mixing device of the present invention;

[0026] Figure 2 This is a schematic diagram of the second state of the multi-chamber fermentation mixing device of the present invention;

[0027] Figure 3 This is a schematic diagram of the multi-chamber fermentation mixing mechanism of the present invention;

[0028] Figure 4 This is a schematic diagram of the distribution of the mobile bin mechanism, circulating fermentation mechanism, linkage control mechanism, lifting control mechanism, and anti-sticking mechanism of the present invention;

[0029] Figure 5 This is a schematic diagram of the mobile bin mechanism of the present invention;

[0030] Figure 6 This is a second schematic diagram of the mobile bin mechanism of the present invention;

[0031] Figure 7 It is a schematic diagram of the mobile bin mechanism of the present invention;

[0032] Figure 8 This is a schematic diagram of the distribution of the mobile bin mechanism and the anti-sticking mechanism of the present invention;

[0033] Figure 9 It is a schematic diagram of the mobile bin mechanism of the present invention;

[0034] Figure 10 Schematic diagram of the anti-sticking mechanism of the present invention;

[0035] Figure 11 It is a schematic diagram of the linkage control mechanism of the present invention;

[0036] Figure 12 It is a schematic diagram of the lifting control mechanism of the present invention.

[0037] In the figure: 1. Multi-chamber fermentation mixing mechanism; 101. Multi-chamber fermentation mixing box; 102. Protective door; 103. Control cabinet; 104. Sliding slot; 105. Charcoal basin slot; 106. Gas furnace; 107. Main circulation fan; 108. Charcoal basin fan; 109. Exhaust fan; 110. Temperature and humidity sensor; 2. Mobile warehouse mechanism; 201. First mobile rack; 202. Second mobile rack; 203. Mobile base; 204. Universal wheel; 205. Positioning handle; 3. Circulating fermentation mechanism; 301. Positioning rack; 302. Auxiliary rack; 303. Fixed rack; 304. Driving chain; 305. Driving sprocket; 306. Auxiliary sprocket; 307. Dustproof disc; 308. Hanging ring; 4 , linkage control mechanism; 401, linkage gear column; 402, control gear; 403, first control disk; 404, first fixed column; 405, first control column; 406, first motor; 5, lifting control mechanism; 501, positioning screw; 502, positioning rod; 503, lifting frame; 504, second control disk; 505, second fixed column; 506, second control column; 507, second motor; 6, anti-sticking mechanism; 601, limiting frame; 602, driving gear; 603, connecting gear; 604, positioning gear; 605, control frame; 606, positioning disk; 607, anti-sticking strip; 608, positioning shaft; 609, first bevel gear; 610, second bevel gear. DETAILED DESCRIPTION

[0038] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts shall fall within the scope of protection of the present invention.

[0039] The present invention provides Figure 1-12 The multi-chamber fermentation and mixing device for fermented meat strips shown in the figure comprises a multi-chamber fermentation and mixing mechanism 1, two movable bin mechanisms 2 are slidably provided inside the multi-chamber fermentation and mixing mechanism 1, four circulating fermentation mechanisms 3 are connected to the middle position of the movable bin mechanism 2, and the bottom ends of the plurality of circulating fermentation mechanisms 3 are fixed with anti-sticking mechanisms 6, wherein,

[0040] The circulating fermentation mechanism 3 includes a positioning frame 301, and a plurality of fixing frames 303 are fixedly provided on both sides of the positioning frame 301, wherein the top ends of the plurality of fixing frames 303 are rotatably provided with drive sprockets 305, and the outer walls of the plurality of drive sprockets 305 are meshed with drive chains 304, and the bottom ends of the plurality of fixing frames 303 are rotatably provided with auxiliary sprockets 306, and the outer walls of the plurality of auxiliary sprockets 306 are meshed with the drive chains 304, and the bottom ends of the drive chains 304 are rotatably provided with a plurality of dustproof discs 307, and the bottom ends of the plurality of dustproof discs 307 are fixed with suspension rings 308;

[0041] Auxiliary frames 302 are fixed on the top of the multiple positioning frames 301;

[0042] The inner wall of the multi-chamber fermentation mixing box 101 is connected to a linkage control mechanism 4, which includes linkage gear columns 401 rotating on both sides of the inner walls of the two second mobile frames 202. The top ends of the four linkage gear columns 401 pass through the second mobile frames 202 and are fixed with first control disks 403. Both ends of the top of the multi-chamber fermentation mixing box 101 are fixed with first motors 406. The output ends of the two first motors 406 pass through the multi-chamber fermentation mixing box 101 and are fixed with first fixed columns 404. One end of the bottom of the two first fixed columns 404 is fixed with a first control column 405.

[0043] The tops of the multiple driving sprockets 305 are all fixed with control gears 402, and the tooth surfaces of the multiple control gears 402 are respectively meshed with the tooth surfaces of the two linkage gear columns 401;

[0044] When the multi-chamber fermentation mixing device is needed, the movable chamber mechanism 2 in the multi-chamber fermentation mixing device is pulled out to the position with the help of the positioning handle 205. Figure 2In the state shown, the plurality of second fixed columns 505 and the second control columns 506 in the lifting control mechanism 5 are respectively in contact with the outer walls of the plurality of second control disks 504. At the same time, the first fixed column 404 and the first control column 405 in the linkage control mechanism 4 are respectively in contact with the outer walls of the first control disk 403 distributed on the inner side of the mobile bin mechanism 2. By controlling the first motor 406 to work, the first fixed column 404 and the first control column 405 fixed at the output end of the first motor 406 are rotated, so that the first control disk 403 contacting the outer wall of the first control column 405 drives the linkage gear column 401 to rotate. Through meshing transmission, the control gear 402 fixed on the top of one of the driving sprockets 305 rotates, so that the driving sprocket 305 drives the driving chain 304 to mesh transmission through the assistance of the auxiliary sprocket 306, so that the dustproof plate 307 connected to the bottom end of the driving chain 304 drives the hanging ring 308 to perform a circular transmission, and the fermented dried meat is independently hung on the corresponding hanging ring 308 through the hook, and the driving chain 304 is circulated until the hanging ring 308 is fully loaded, making the feeding of the multi-cavity fermentation mixing device more convenient, avoiding reaching into the interior of the fermentation device to load the material, and reducing the possibility of internal contamination of the fermentation device.

[0045] As a specific embodiment of the present invention, the inner wall of the multi-chamber fermentation mixing box 101 is connected to a lifting control mechanism 5, which includes three positioning screw rods 501 rotating in the middle position of the first movable frame 201, positioning rods 502 are fixed at both ends of the inner walls of the two first movable frames 201, and lifting frames 503 are slidably provided on the inner walls of the two first movable frames 201, and the middle positions of the three lifting frames 503 are respectively fixedly connected to one end of three of the positioning frames 301, and one end of another positioning frame 301 is fixedly connected to the middle position of the top of the first movable frame 201, and the top ends of the three positioning screw rods 501 are all fixed with a second control disk 504 through the first movable frame 201, and one end of the top of the multi-chamber fermentation mixing box 101 is fixed with six second motors 507, and the output ends of the six second motors 507 are all fixed with second fixed columns 505 through the multi-chamber fermentation mixing box 101, and the bottom ends of the multiple second fixed columns 505 are all fixed with second control columns 506;

[0046] like Figure 7 As shown, three positioning screw rods 501 are arranged side by side, the outer wall of the positioning screw rod 501 in the middle position is threadedly connected to the middle position of the top lifting frame 503, and the positioning screw rods 501 on both sides are threadedly connected to the middle lifting frame 503 and the bottom lifting frame 503 respectively, and each lifting frame 503 does not contact the positioning screw rod 501 that is not threadedly connected, and both ends of the multiple lifting frames 503 are interlaced with two positioning rods 502;

[0047] By controlling the corresponding second motor 507 to work, the lifting frame 503 threadedly connected to the bottom end of the corresponding positioning screw rod 501 is moved, so that the lifting frame 503 drives the circulating fermentation mechanism 3 at the bottom end to rise and fall, and in turn rotates through the corresponding positioning screw rod 501, driving multiple circulating fermentation mechanisms 3 to move downward from bottom to top, so that the height of the circulating fermentation mechanism 3 during loading is controlled, avoiding the hidden danger of muscle fatigue of the staff during loading due to the height being too low, and improving the convenience of loading.

[0048] As a specific embodiment of the present invention, the mobile warehouse mechanism 2 includes a mobile base 203, a first mobile frame 201 is fixedly provided at one end of the top of the mobile base 203, a second mobile frame 202 is fixedly provided on one side of the first mobile frame 201, universal wheels 204 are fixedly provided on the four sides of the bottom of the mobile base 203, and positioning handles 205 are fixedly provided at both ends of one side of the two second mobile frames 202;

[0049] The mobile bin mechanism 2 is pushed into the interior of the multi-chamber fermentation mixing box 101 via the universal wheel 204. Figure 1 In the state shown, the protective door 102 is closed, and the first control disk 403 located outside the movable chamber mechanism 2 is in contact with the first fixed column 404 and the first control column 405, so that when the movable chamber mechanism 2 is located inside the multi-chamber fermentation mixing box 101, the first motor 406 can still easily drive the circulating fermentation mechanism 3 to circulate;

[0050] The charcoal basin 105 is filled with flavored charcoal and ignited, the protective door 102 is closed, and the gas furnace 106, charcoal basin fan 108, and main circulation fan 107 are activated through the control cabinet 103. The jerky strips are roasted under the different heat generated by the gas furnace 106 and the charcoal basin 105, and the different wind speeds of the main circulation fan 107 and the charcoal basin fan 108, to produce a specific fermentation process. When the temperature and humidity sensor 110 detects that the temperature and humidity in the cabinet meet the process requirements, the exhaust fan 109 is turned on to adjust the temperature and humidity in the cabinet to the process balance, completing the fermentation process.

[0051] As a specific embodiment of the present invention, the multi-chamber fermentation mixing mechanism 1 includes a multi-chamber fermentation mixing box 101, a gas furnace 106 is fixedly provided at the middle position of the bottom of the inner wall of the multi-chamber fermentation mixing box 101, charcoal basin grooves 105 are fixedly provided at both ends of the bottom of the inner wall of the multi-chamber fermentation mixing box 101, a main circulation fan 107 is fixedly provided at the middle position of the multi-chamber fermentation mixing box 101, charcoal basin fans 108 are fixedly provided on both sides of the inner wall of the multi-chamber fermentation mixing box 101, a control cabinet 103 is fixedly provided on one side of the multi-chamber fermentation mixing box 101, an exhaust fan 109 is fixedly provided at the top of the multi-chamber fermentation mixing box 101, a temperature and humidity sensor 110 is fixedly provided at the middle position of the top of the multi-chamber fermentation mixing box 101, and protective doors 102 are rotatably provided at both ends of one side of the multi-chamber fermentation mixing box 101;

[0052] Sliding grooves 104 are provided on both sides of the bottom of the inner wall of the multi-cavity fermentation mixing box 101 , and the two movable bases 203 are slidably connected to the sliding grooves 104 via universal wheels 204 .

[0053] The first control disk 403 is driven to rotate by the first fixed column 404 and the first control column 405, so that the circulating fermentation mechanism 3 performs a time cycle during the fermentation process, so that the meat strips are dynamically circulated during the fermentation process, and the dynamic interaction of the meat strips with the fermentation medium is increased, resulting in a uniform distribution of temperature and humidity, thereby improving the fermentation efficiency; and the operation of the circulating fermentation mechanism 3 avoids the stacking and squeezing of the meat strips, reduces the uneven penetration of the leavening agent and the local adhesion phenomenon, and improves the product shaping effect and the aesthetics of the product.

[0054] like Figure 10 As shown, the anti-sticking mechanism 6 includes a positioning gear 604, the bottom end of which is fixedly provided with a first bevel gear 609 via a positioning shaft 608, the tooth surface of the first bevel gear 609 is meshed with a second bevel gear 610, one end of the second bevel gear 610 is fixedly provided with a positioning plate 606, and both ends of the positioning plate 606 are fixedly provided with anti-sticking strips 607;

[0055] A limiting frame 601 is fixed to one side of one of the fixing frames 303, a driving gear 602 is fixed to the top of one of the driving sprockets 305, the tooth surface of the driving gear 602 is meshed with a connecting gear 603, and the tooth surface of the connecting gear 603 is meshed with the tooth surface of the positioning gear 604. A control frame 605 is fixed to one end of the bottom of the limiting frame 601, and a second bevel gear 610 and a positioning plate 606 rotate on both sides of the bottom of the control frame 605 respectively;

[0056] When the circulating fermentation mechanism 3 is circulating, the driving gear 602 fixed on the top of one of the driving sprockets 305 drives the positioning gear 604 to mesh and rotate through the connecting gear 603, so that the positioning gear 604 passes through the limit frame 601 to drive the positioning shaft 608 and the first bevel gear 609 to rotate, and the first bevel gear 609 and the second bevel gear 610 are meshed, so that the second bevel gear 610 passes through the control frame 605 to drive the positioning plate 606 and the anti-sticking strip 607 to rotate. By adjusting the coefficient of the driving gear 602, the connecting gear 603 and the positioning gear 604, when the circulating fermentation mechanism 3 is circulating, the anti-sticking strip 607 rotates just in the circulation gap between the two dustproof plates 307, so that the anti-sticking strip 607 separates the adjacent meat strips to prevent the meat strips from sticking together during loading and fermentation, and also to prevent sticking from reducing the fermentation efficiency, thereby increasing the circulation efficiency of the circulating fermentation mechanism 3.

[0057] The distribution of the first motor 406 and the second motor 507 is as follows Figure 3 and Figure 4 As shown, the circulating fermentation mechanism 3 is always circulated, and when the mobile bin mechanism 2 moves to the outside for loading and unloading, the single circulating fermentation mechanism 3 is controlled to rise and fall by the lifting control mechanism 5. This arrangement can avoid redundant motors being located inside the multi-cavity fermentation mixing box 101, avoid oil smoke interfering with the operation of the motor, increase the heat dissipation efficiency of the motor, and improve the service life of the motor.

[0058] As a specific embodiment of the present invention, an intelligent control panel is fixedly provided on one side of the multi-chamber fermentation mixing box 101, and the first motor 406 and the second motor 507 are both electrically connected to an external power supply through the intelligent control panel.

[0059] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A multi-chamber fermentation and mixing device for dried meat strips, comprising a multi-chamber fermentation and mixing mechanism (1), characterized in that: Two movable bin mechanisms (2) are slidably provided inside the multi-chamber fermentation mixing mechanism (1), and four circulating fermentation mechanisms (3) are connected to the middle position of the movable bin mechanism (2). The bottom ends of the plurality of circulating fermentation mechanisms (3) are fixedly provided with anti-sticking mechanisms (6), wherein: The circulating fermentation mechanism (3) includes a positioning frame (301), and a plurality of fixing frames (303) are fixedly provided on both sides of the positioning frame (301), wherein the top ends of the plurality of fixing frames (303) are rotatably provided with a driving sprocket (305), and the outer walls of the plurality of driving sprockets (305) are engaged with a driving chain (304), and the bottom ends of the plurality of fixing frames (303) are rotatably provided with an auxiliary sprocket (306), and the outer walls of the plurality of auxiliary sprockets (306) are engaged with the driving chain (304), and the bottom ends of the plurality of driving chains (304) are rotatably provided with a plurality of dustproof discs (307), and the bottom ends of the plurality of dustproof discs (307) are fixed with a hanging ring (308); The anti-sticking mechanism (6) includes a positioning gear (604), a first bevel gear (609) is fixedly provided at the bottom end of the positioning gear (604) via a positioning shaft (608), a second bevel gear (610) is meshed with the tooth surface of the first bevel gear (609), a positioning plate (606) is fixedly provided at one end of the second bevel gear (610), and anti-sticking strips (607) are fixedly provided at both ends of the positioning plate (606); A limiting frame (601) is fixedly provided on one side of one of the fixing frames (303), a driving gear (602) is fixedly provided on the top of one of the driving sprockets (305), a connecting gear (603) is meshed with the tooth surface of the driving gear (602), and the tooth surface of the connecting gear (603) is meshed with the tooth surface of the positioning gear (604), a control frame (605) is fixedly provided on one end of the bottom of the limiting frame (601), and the second bevel gear (610) and the positioning plate (606) are respectively rotated on both sides of the bottom of the control frame (605); The mobile warehouse mechanism (2) comprises a mobile base (203), a first mobile frame (201) is fixedly provided at one end of the top of the mobile base (203), a second mobile frame (202) is fixedly provided at one side of the first mobile frame (201), universal wheels (204) are fixedly provided at four sides of the bottom of the mobile base (203), and positioning handles (205) are fixedly provided at both ends of one side of the two second mobile frames (202); The multi-chamber fermentation mixing mechanism (1) comprises a multi-chamber fermentation mixing box (101), a gas furnace (106) is fixedly provided at the middle position of the bottom of the inner wall of the multi-chamber fermentation mixing box (101), a charcoal basin groove (105) is fixedly provided at both ends of the bottom of the inner wall of the multi-chamber fermentation mixing box (101), a main circulation fan (107) is fixedly provided at the middle position of the multi-chamber fermentation mixing box (101), a charcoal basin fan (108) is fixedly provided at both sides of the inner wall of the multi-chamber fermentation mixing box (101), a control cabinet (103) is fixedly provided on one side of the multi-chamber fermentation mixing box (101), an exhaust fan (109) is fixedly provided at the top of the multi-chamber fermentation mixing box (101), a temperature and humidity sensor (110) is fixedly provided at the middle position of the top of the multi-chamber fermentation mixing box (101), and protective doors (102) are rotatably provided at both ends of one side of the multi-chamber fermentation mixing box (101); The inner wall of the multi-chamber fermentation mixing box (101) is connected to a linkage control mechanism (4), the linkage control mechanism (4) comprising linkage gear columns (401) rotating on both sides of the inner walls of the two second movable frames (202), the top ends of the four linkage gear columns (401) passing through the second movable frames (202) and fixedly provided with a first control disk (403), the two ends of the top of the multi-chamber fermentation mixing box (101) are fixedly provided with a first motor (406), the output ends of the two first motors (406) pass through the multi-chamber fermentation mixing box (101) and are fixedly provided with a first fixed column (404), and one end of the bottom of the two first fixed columns (404) is fixedly provided with a first control column (405); The top ends of the plurality of driving sprockets (305) are all fixedly provided with control gears (402), and the tooth surfaces of the plurality of control gears (402) are respectively meshed with the tooth surfaces of the two linkage gear columns (401).

2. The multi-chamber fermentation and mixing device for dried meat strips according to claim 1, characterized in that: An auxiliary frame (302) is fixedly provided on the top of each of the plurality of positioning frames (301).

3. The multi-chamber fermentation and mixing device for dried meat strips according to claim 1, characterized in that: The inner wall of the multi-chamber fermentation mixing box (101) is connected to a lifting control mechanism (5), and the lifting control mechanism (5) includes three positioning screws (501) that rotate in the middle position of the first movable frame (201), and positioning rods (502) are fixedly provided at both ends of the inner walls of the two first movable frames (201). The inner walls of the two first movable frames (201) are slidably provided with lifting frames (503), and the middle positions of the three lifting frames (503) are respectively fixedly connected to one end of three positioning frames (301), and the other positioning frame (301) is fixedly connected to the inner wall of the two first movable frames (201). 01) is fixedly connected to the middle position of the top of the first movable frame (201), the top ends of the three positioning screws (501) pass through the first movable frame (201) and are fixedly provided with a second control disk (504), one end of the top of the multi-cavity fermentation mixing box (101) is fixedly provided with six second motors (507), the output ends of the six second motors (507) pass through the multi-cavity fermentation mixing box (101) and are fixedly provided with second fixed columns (505), and the bottom ends of the plurality of second fixed columns (505) are fixedly provided with second control columns (506).

4. The multi-chamber fermentation and mixing device for dried meat strips according to claim 1, characterized in that: Sliding grooves (104) are provided on both sides of the bottom of the inner wall of the multi-chamber fermentation mixing box (101), and the two movable bases (203) are slidably connected to the sliding grooves (104) via universal wheels (204).

5. The multi-chamber fermentation and mixing device for dried meat strips according to claim 3, characterized in that: An intelligent control panel is fixedly provided on one side of the multi-chamber fermentation mixing box (101), and the first motor (406) and the second motor (507) are both electrically connected to an external power supply via the intelligent control panel.

Citation Information

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