A mixer for processing noodle products with a water-powder ratio structure
By designing a mixer for surface products processing similar to traditional rod scales, the movable batching rack and adjustment mount are used to achieve flexibility and stability of gouache ratio, which strengthens mixing uniformity and operation convenience, and solves the problems of traditional low operating efficiency and inconsistent proportions.
Patent Information
- Application Number
- CN202411723775.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2044-11-28
AI Technical Summary
During the processing of dough products, the traditional gouache ratio operation efficiency is low, making it difficult to ensure mixing uniformity and consistency. Especially in large-scale production, sensor parameters need to be frequently adjusted to achieve accurate proportions.
A mixer for processing surface products with gouache ratio structure was designed. A mixer for processing surface products was combined with the actual process of processing surface products' gouache ratio in a manner similar to traditional rod scales, and flexible and stable gouache ratio and feed mixing was achieved through a movable batching rack and an adjusting mount.
While achieving uniform mixing of gouache and ensuring production quality, the operation method is simple and convenient, saving time and effort, and can be used by any operator to meet the needs of consistent gouache ratio products on the market.
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Figure CN119214179B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field related to noodle product processing, in particular to a mixer for noodle product processing with a water-powder ratio structure. Background Art
[0002] When processing noodle products, a large amount of flour is needed, and then the flour and water are evenly mixed. However, direct manual mixing is inefficient and labor-intensive. In order to improve work efficiency and reduce labor intensity, corresponding noodle machines are usually used for auxiliary operations, such as common dough mixers. At the same time, there are many types of such mixing equipment, including horizontal, vertical, single-axis, double-axis, semi-axis, etc., but the main function is to evenly mix the ingredients of flour and water.
[0003] When processing flour products, the water-to-powder ratio needs to be adjusted according to the water absorption of the flour. Generally speaking, high-gluten flour has stronger water absorption, while low-gluten flour has weaker water absorption. The common ratio of flour to water is about 2:1. But if it is multi-grain flour, such as cornmeal or buckwheat flour, slightly more water is needed, for example, 500g of multi-grain flour requires 300g of water. When making pancakes, the water-to-powder ratio is about 70%, that is, 200g of water corresponds to 300g of flour. The water-to-powder ratio of pasta such as steamed buns and steamed buns is generally between 50%-60%, and the specific ratio is adjusted according to the water absorption of the flour.
[0004] At the same time, in the process of making pastries, accurate ratio of water, flour and other ingredients is one of the key factors to ensure the taste and texture of the product. In the traditional pastry making process, the addition of water and other ingredients is usually a manual and experience-based process, which requires manual observation of the ratio of flour and water to add water and flour, resulting in increased work intensity of personnel, and the results are often difficult to ensure consistency and accuracy. There is also an automatic ratio dough mixer such as CN220211659U, including a support frame, a mixing barrel is fixedly installed on the top of the support frame, and a water volume control device is fixedly installed on the top of the mixing barrel. The staff manually pours the flour into the flour barrel. When the weight of the poured flour reaches a certain amount, the weight of the poured flour can be sensed by the weight sensor. The bottom cover connected by rotation at the bottom of the flour barrel can be controlled by the weight sensor to open and close the bottom cover, so that the amount of flour can be easily controlled. The flow meter and the solenoid valve fixed on the outer wall of the water inlet barrel can control the added water. When the added water reaches a certain amount, the solenoid valve works to send the water into the mixing barrel, so as to achieve the purpose of facilitating the control of the ratio of the dough and reducing the work intensity of the staff.
[0005] In the actual large-scale production process, the taste, flavor and texture of the pastries can be improved by quantitatively adding flour and water. However, if all the water powder is added to the mixing device at one time and stirred quickly, it may cause uneven mixing of water and flour, which may lead to uneven distribution of clumps in the dough, thus affecting the taste and texture of the finished pastries and sales. At the same time, in the production process, water powder only needs to be added according to the corresponding proportion, and it is not necessary to add the rated amount of ingredients each time. This leads to the need to frequently adjust the sensor control parameters. Proportioning only through weight sensors puts high requirements on operators and sensors. Therefore, in the context of mass production, a simple, stable and easy-to-use water powder proportioning mixing device for pasta products is needed to meet the market demand for products with consistent water powder proportioning of pasta products. In view of this, in-depth research was conducted on the above-mentioned problems, and this case came into being. Summary of the invention
[0006] The object of the present invention is to provide a mixer for processing noodle products with a water-powder ratio structure, so as to solve the problem proposed in the above background technology that in the context of mass production, a simple, stable and easy-to-use noodle product water-powder ratio mixing device is needed to meet the market demand for noodle product water-powder ratio consistent products.
[0007] To achieve the above object, the present invention provides the following technical solution: a mixer for processing noodle products with a water-powder ratio structure, comprising a mixer body and a mixing chamber in the middle of the mixer body, wherein the mixing chamber is horizontally arranged, and a stirring main shaft is horizontally penetrated in the middle of the mixing chamber;
[0008] The mixing bin as a whole uses the stirring main shaft as the rotating shaft to form a turning and discharging structure, and a fixed handle is installed on the front of the mixing bin;
[0009] A loading bin is arranged directly above the mixing bin, and a lifting bracket is installed between the loading bin and the mixer body, and the loading bin forms a lifting movable fitting structure at the upper end of the mixing bin through the lifting bracket;
[0010] The interior of the feeding bin is provided with a first batching bin and a second batching bin for adding water and flour, respectively, and a movable batching rack is provided between the first batching bin and the second batching bin;
[0011] A support shaft is provided between the movable batching rack and the upper material bin, and the movable batching rack forms a lever movable structure with the support shaft as a fulcrum, and the first batching bin and the second batching bin are respectively located on the left and right sides of the movable batching rack, and the support shaft is located close to the second batching bin;
[0012] The lower surface of the upper material bin is integrally provided with a fixing frame, and a sealing gasket is provided at the joint between the fixing frame and the upper end of the mixing bin;
[0013] A water outlet is provided at the lower end of the first batching bin, a piston plate is provided inside the water outlet, and a water injection port is provided on the upper surface of the upper batching bin at a position corresponding to the first batching bin;
[0014] A material discharge port is provided at the lower end of the second material dispensing bin, and a material discharge baffle is provided at the material discharge port, and a material feed port is provided on the upper surface of the upper material dispensing bin at a position corresponding to the second material dispensing bin.
[0015] Preferably, the left and right ends of the movable batching rack are divided into movable guide rails and fixed racks, and an adjustable mounting seat is movably provided on the inner side of the movable guide rail;
[0016] The top end of the first batching bin is movably hinged to the adjustment mounting seat, and the top end of the second batching bin is movably hinged to the fixing frame.
[0017] By adopting the above technical solution, the movable guide rail and the fixed frame correspond to the lever arms of the first batching bin and the second batching bin respectively. The lever arm ratio of the two can be adjusted by adjusting the setting of the mounting seat, so as to maintain an appropriate ratio of moisture in the first batching bin and the second batching bin.
[0018] Preferably, the first batching bin and the adjustment mounting seat as a whole form a sliding adjustment structure along the movable guide rail, and fastening bolts are installed between the adjustment mounting seat and the movable guide rail, and scale markings are evenly distributed on the surface of the movable guide rail.
[0019] By adopting the above technical solution, the installation position of the first ingredient bin is adjusted by adjusting the mounting seat, and the lever arm ratio is changed accordingly, so that the moisture ratio can be adjusted accordingly according to the requirements of different pastries, and accurate and stable balancing adjustment can be facilitated by observing the scale markings.
[0020] Preferably, the piston plate is movably arranged inside the water outlet, and a support spring is provided between the piston plate and the first batching bin, and the piston plate is elastically supported by the support spring to fit with the water outlet to form a sealing structure.
[0021] By adopting the above technical solution, the piston plate elastically supported by the support spring can maintain the normally closed state of the water outlet, without affecting the normal water filling of the first batching bin.
[0022] Preferably, a movable touch rod is arranged below the piston plate, and the lower end of the movable touch rod protrudes from the water outlet, and the movable touch rod and the piston plate as a whole form a lifting and fitting structure at the water outlet.
[0023] By adopting the above technical solution, the trigger mechanism for the piston plate is formed by the cooperation of the movable touch rod. When the water injection in the first ingredient bin reaches the corresponding proportion, the first ingredient bin moves downward with its own weight deflection, and the movable touch rod contacts the fixed frame to lift the piston plate, thereby opening the water outlet.
[0024] Preferably, the material discharge baffle is movably hinged to the material discharge port, and the material discharge baffle is movably fitted with the fixed frame, so that when the second material distribution bin is at the lowest point, the material discharge baffle fits the fixed frame and maintains a closed state.
[0025] By adopting the above technical solution, when the second batching bin is in a low position, the discharge baffle fits with the fixed frame to keep the discharge port closed, and does not affect the addition of flour into the second batching bin. When the first batching bin is filled with water to increase weight and deflects downward, the second batching bin moves upward synchronously, and the discharge baffle is deflected and opened under the influence of the weight of the flour to pour the flour material into the mixing bin.
[0026] Preferably, the middle portion of the fixed frame includes a limiting beam and a water guide groove, and the water guide groove is distributed in a "well" shape, and the unloading baffle is movably fitted with the limiting beam.
[0027] By adopting the above technical solution, a limiting structure is formed by cooperating with the limiting beam and the unloading baffle at the second batching bin. At the same time, the water guide groove cooperates with the piston plate and the movable touch rod at the first batching bin to carry out water injection, so that the structural parts have good synchronization correlation, without the need for additional control mechanisms, and convenient operation and adjustment.
[0028] Preferably, the water guide groove is located below the water outlet, and water distribution outlets are evenly distributed on the lower surface of the water guide groove.
[0029] By adopting the above technical solution, the water outlet of the second batching bin corresponds to the water guide groove, and water is evenly distributed through the water guide groove and the water distribution port, so that the gouache is distributed more evenly, which helps to improve the mixing efficiency and mixing effect.
[0030] Preferably, a feed cover is provided above the feed port, and a movable shaft is provided at the connection between the feed cover and the feed port, and the feed cover forms a rotating opening and closing structure with the movable shaft as the axis.
[0031] By adopting the above technical solution, the feed cover plate is used to seal the feed port, which helps to reduce external dust emission and external pollution during mixing.
[0032] Preferably, the feed cover plate has a downward pressure end and an outer cover plate at the left and right ends of the movable axis respectively, the outer cover plate is movably fitted with the upper end of the feed port, the downward pressure end constitutes a movable deflection structure inside the upper material bin, and the downward pressure end constitutes a movable downward pressure structure for the movable batching frame above the second batching bin.
[0033] By adopting the above technical solution, the feed cover plate can be linked with the movable batching rack through the downward pressing end. When the feed cover plate is opened to load flour, the downward pressing end simultaneously presses down the fixed frame of the movable batching rack, so that the second batching bin moves downward, and the feed baffle plate is closed by fitting with the limiting beam, so that flour loading can be carried out normally.
[0034] Compared with the prior art, the beneficial effects of the present invention are as follows: the mixer for processing flour products with a water-powder ratio structure is optimized in a similar way to a traditional steelyard in combination with the actual process of flour product water-powder ratio processing, and realizes flexible and stable water-powder ratio feeding and mixing, while ensuring stable feeding and uniform water-powder mixing, ensuring production quality, and the operation method is simple and convenient, saving time and effort, and any operator can use it. The specific structural advantages include:
[0035] 1. A movable batching rack structure is provided, which can be flexibly and stably adjusted in proportion through fool-proof operation. The movable batching rack uses the support shaft as the fulcrum to form a proportioning weighing structure similar to a traditional beam balance. By adjusting the mounting seat along the movable guide rail, the lever length corresponding to the first batching bin and the second batching bin can be changed, so that any amount of gouache in the first batching bin and the second batching bin can be stably loaded at the rated proportion. At the same time, the simple sliding adjustment structure similar to the beam balance is also convenient for operators to operate and the proportion is stable;
[0036] 2. A feeding cover plate is provided to cooperate with the second batching bin for feeding flour. On the one hand, the feeding cover plate can cooperate with the feeding bin to maintain the basic closed structure. On the other hand, the lower part of the feeding cover plate can also cooperate with the second batching bin to press down through the pressing end to facilitate stable flour feeding. In the initial state, since the water-powder ratio is less than one, the initial state of the movable batching rack as a lever is that one side of the second batching bin is lifted up, and the feeding port is in an open state. When feeding, the feeding cover plate is first opened to feed flour, and the pressing end presses down the second batching bin, so that the second batching bin can be directly in a stable feeding state, without the need for additional control opening and closing equipment such as solenoid valves, and the equipment structure is simple and stable;
[0037] 3. A material discharge baffle structure is provided to further cooperate with the material discharge port of the second batching bin. The material discharge baffle can cooperate with the limit beam during the flour feeding process, that is, when the second batching bin moves downward under the action of the lower pressure end, the material discharge baffle at the material discharge port automatically fits the limit beam to keep the second batching bin in a closed state, so that stable flour feeding can be carried out. After water is injected and weighted, the second batching bin is lifted, and the material discharge baffle can also be opened automatically without additional control and adjustment. It has good equipment linkage and a stable structure without the need for additional operation.
[0038] 4. A piston plate structure is provided to cooperate with the water outlet at the first batching bin. In the process of water-powder feeding ratio, flour is fed first, the second batching bin is pressed down, and the first batching bin is lifted. At this time, the piston plate at the water outlet at the lower end of the first batching bin fits the water outlet under the action of the supporting spring to keep it sealed. After the flour is added, water is injected for weight balance. After reaching the corresponding proportion weight, the first batching bin moves down and the second batching bin is lifted up to feed flour. The protruding active touch rod at the water outlet at the lower end of the first batching bin contacts the water guide groove synchronously to lift the piston plate. Water from the water outlet enters the water guide groove and is evenly distributed through the water distribution port to ensure uniform mixing. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0040] Figure 2 It is a schematic diagram of the front structure of the present invention;
[0041] Figure 3 This is a schematic diagram of the internal structure of the loading bin of the present invention;
[0042] Figure 4 This is a schematic diagram of the internal structure of the loading bin of the present invention from another perspective;
[0043] Figure 5 This is a schematic diagram of the internal structure of the loading bin when loading materials in the present invention;
[0044] Figure 6 This is a schematic diagram of the internal structure of the loading bin from another perspective when loading materials in the present invention;
[0045] Figure 7 This is a structural schematic diagram of the movable batching rack of the present invention;
[0046] Figure 8 This is a schematic diagram of the structure of the adjustable mounting seat of the present invention;
[0047] Fig. 9 It is a schematic diagram of the fixed frame structure of the present invention;
[0048] Fig.10 It is a schematic diagram of the structure of the piston plate and the movable contact rod of the present invention;
[0049] Fig.11 It is a schematic diagram of the structure of the feed cover plate of the present invention.
[0050] In the figure: 1. mixer body; 2. mixing chamber; 3. stirring main shaft; 4. fixed handle; 5. loading chamber; 6. lifting bracket; 7. first batching chamber; 8. second batching chamber; 9. movable batching rack; 91. movable guide rail; 92. fixed rack; 93. adjustment mounting seat; 94. fastening bolts; 95. scale markings; 10. support shaft; 11. fixed frame; 111. limit beam; 112. water guide groove; 113. water distribution port; 12. sealing gasket; 13. water outlet; 14. piston plate; 15. water injection port; 16. discharge port; 17. discharge baffle; 18. feed port; 19. support spring; 20. movable touch rod; 21. feed cover plate; 211. outer cover plate; 212. lower pressure end; 22. movable shaft. DETAILED DESCRIPTION
[0051] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions 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 creative work are within the scope of protection of the present invention.
[0052] See also Figure 1-11 The present invention provides a technical solution: a mixer for processing flour products with a water-powder ratio structure, comprising a mixer body 1 and a mixing bin 2 in the middle of the mixer body 1, wherein the mixing bin 2 is arranged horizontally, and a stirring main shaft 3 is arranged horizontally through the middle of the mixing bin 2; the mixing bin 2 as a whole forms a turning and discharging structure with the stirring main shaft 3 as a rotating shaft, and a fixed handle 4 is installed on the front of the mixing bin 2; a feeding bin 5 is arranged directly above the mixing bin 2, and a lifting bracket 6 is installed between the feeding bin 5 and the mixer body 1, and the feeding bin 5 forms a lifting and movable fitting structure at the upper end of the mixing bin 2 through the lifting bracket 6; a first ingredient bin 7 and a second ingredient bin 8 are arranged inside the feeding bin 5 for adding water and flour ingredients respectively, and a movable ingredient rack 9 is arranged between the first ingredient bin 7 and the second ingredient bin 8;
[0053] Combination Figure 3-8 As shown, a support shaft 10 is provided between the movable batching rack 9 and the upper material bin 5, and the movable batching rack 9 forms a lever movable structure with the support shaft 10 as a fulcrum, and the first batching bin 7 and the second batching bin 8 are respectively located on the left and right sides of the movable batching rack 9, and the support shaft 10 is located on the side close to the second batching bin 8; the left and right ends of the movable batching rack 9 are divided into a movable guide rail 91 and a fixed frame 92, and an adjustable mounting seat 93 is movably provided on the inner side of the movable guide rail 91; the top end of the first batching bin 7 is movably hinged with the adjustable mounting seat 93, and the top end of the second batching bin 8 is movably hinged with the fixed frame 92, the movable guide rail 91 and the fixed frame 92 correspond to the lever arm of the first batching bin 7 and the second batching bin 8 respectively, and the ratio of the lever arm of the two can be adjusted by adjusting the setting of the mounting seat 93, so as to facilitate the first batching bin 7 and the second batching bin 8 to maintain a suitable ratio of moisture. The first ingredient bin 7 and the adjustment mounting seat 93 as a whole form a sliding adjustment structure along the movable guide rail 91, and a fastening bolt 94 is installed between the adjustment mounting seat 93 and the movable guide rail 91, and scale markings 95 are evenly distributed on the surface of the movable guide rail 91. The installation position of the first ingredient bin 7 is adjusted by adjusting the mounting seat 93, and the force arm ratio is changed accordingly, so as to facilitate the corresponding adjustment of the moisture ratio according to different pastry requirements, and accurate and stable balancing adjustment is conveniently performed by observing the scale markings 95.
[0054] Combination Figure 3-6 and Fig. 9As shown, a fixing frame 11 is integrally provided on the lower surface of the loading bin 5, and a sealing gasket 12 is provided at the fitting position of the fixing frame 11 and the upper end of the mixing bin 2; the middle part of the fixing frame 11 includes a limiting beam 111 and a water guide groove 112, and the water guide groove 112 is distributed in a "well" shape, and the unloading baffle 17 is movably fitted with the limiting beam 111, and the limiting beam 111 cooperates with the unloading baffle 17 at the second batching bin 8 to form a matching limiting structure, and at the same time, the water guide groove 112 cooperates with the piston plate 14 and the movable touch rod 20 at the first batching bin 7 to perform water injection, so that the structural parts have good synchronization correlation, no additional control mechanism is required, and operation and adjustment are convenient. The water guide groove 112 is located below the water outlet 13, and water distribution ports 113 are evenly distributed on the lower surface of the water guide groove 112. The water outlet 13 of the second batching bin 8 corresponds to the water guide groove 112. Water is evenly distributed through the water guide groove 112 and the water distribution ports 113, making the gouache material more evenly distributed, which helps to improve the mixing efficiency and mixing effect.
[0055] Combination Figure 4 , Figure 6 and Fig.10 As shown, a water outlet 13 is provided at the lower end of the first batching bin 7, and a piston plate 14 is provided inside the water outlet 13, and a water injection port 15 is provided on the upper surface of the upper batching bin 5 at a position corresponding to the first batching bin 7; the piston plate 14 is movably arranged inside the water outlet 13, and a support spring 19 is provided between the piston plate 14 and the first batching bin 7, and the piston plate 14 is elastically supported by the support spring 19 to fit with the water outlet 13 to form a sealing structure, and the piston plate 14 elastically supported by the support spring 19 can maintain the normally closed state of the water outlet 13, and does not affect the normal water injection of the first batching bin 7. A movable touch rod 20 is arranged below the piston plate 14, and the lower end of the movable touch rod 20 protrudes from the water outlet 13, and the movable touch rod 20 and the piston plate 14 as a whole form a lifting and fitting structure at the water outlet 13. The cooperation of the movable touch rod 20 constitutes a trigger mechanism for the piston plate 14. When the water injection in the first ingredient bin 7 reaches a corresponding proportion, the first ingredient bin 7 moves downward with its own weight deflection, and the movable touch rod 20 contacts the fixed frame 11 to lift the piston plate 14, thereby opening the water outlet 13.
[0056] Combination Figure 4 , Figure 6 and Figure 7As shown, a feed opening 16 is provided at the lower end of the second batching bin 8, and a feed opening baffle 17 is provided at the feed opening 16, and a feed opening 18 is provided on the upper surface of the upper bin 5 at the corresponding second batching bin 8. The feed opening baffle 17 is movably hinged with the feed opening 16, and the feed opening baffle 17 is movably fitted with the fixed frame 11, so that when the second batching bin 8 is at the lowest point, the feed opening baffle 17 fits with the fixed frame 11 to maintain a closed state, and when the second batching bin 8 is at a low position, the feed opening 16 is fitted with the fixed frame 11 to maintain the closed state, which does not affect the addition of flour in the second batching bin 8, and when the first batching bin 7 is deflected downward due to water injection and weight increase, the second batching bin 8 moves upward synchronously, and the feed opening baffle 17 is deflected and opened under the influence of the weight of the flour to pour the flour material into the mixing bin 2.
[0057] Combination Figure 4 , Figure 6 and Fig.11 As shown, a feed cover plate 21 is provided above the feed port 18, and a movable shaft 22 is provided at the connection between the feed cover plate 21 and the feed port 18. The feed cover plate 21 forms a rotating opening and closing structure with the movable shaft 22 as the axis. The feed cover plate 21 is used to close the feed port 18, which helps to reduce external dust emission and external pollution during mixing. The feed cover plate 21 has a downward pressing end 212 and an outer cover plate 211 at the left and right ends of the movable shaft 22, respectively. The outer cover plate 211 is movably fitted with the upper end of the feed port 18, and the downward pressing end 212 forms an active deflection structure inside the upper material bin 5, and the downward pressing end 212 forms an active downward pressing structure for the active batching frame 9 above the second batching bin 8. The feed cover plate 21 can be linked with the movable batching rack 9 through the pressing end 212. When the feed cover plate 21 is opened to load flour, the pressing end 212 simultaneously presses down the fixed frame 92 of the movable batching rack 9, so that the second batching bin 8 moves downward, and the feed baffle 17 is closed in contact with the limiting beam 111, so that flour loading can be carried out normally.
[0058] Working principle: When using the mixer for processing flour products with a water-powder mixing structure, first adjust the ratio of the stress arms of the first batching bin 7 and the second batching bin 8 by adjusting the mounting seat 93 along the movable guide rail 91. After the adjustment is appropriate, tighten the fastening bolts 94 to fix it. In the initial state, the movable batching frame 9 as a lever is lifted up on one side of the second batching bin 8. When adding materials and mixing, the staff first opens the feed cover 21, and the pressing end 212 presses down the fixed frame 92 synchronously, and the second batching bin 8 moves down, and the feed baffle 17 is closed in contact with the limit beam 111, and then the flour can be added normally. After the flour is added, even if the feed cover 21 is closed and the pressing end 212 is removed, the second batching bin 8 will keep the feed baffle 17 and the limit beam 111 in contact and sealed under the action of its own weight. The first batching bin 7 is in a closed state, and then water is injected into the first batching bin 7 for weight matching through the water injection port 15. At this time, due to the downward pressure of the second batching bin 8 due to its own weight, the first batching bin 7 is in a lifted state. When the water injected into the first batching bin 7 reaches the corresponding proportion weight, the first batching bin 7 moves down while the second batching bin 8 is lifted. The unloading baffle 17 at the second batching bin 8 opens to pour out the powder, and the first batching bin 7 moves down, so that the movable touch rod 20 contacts the water guide groove 112, and the piston plate 14 at the water outlet 13 is lifted up. The first batching bin 7 is then supplied with water, and the water flow is guided by the water guide groove 112, which can be evenly distributed in conjunction with the water distribution port 113, so as to facilitate the uniform mixing of the water powder after being sent into the mixing bin 2. Not only is the mixing effect uniform, but also the purpose of facilitating the control of the dough ratio is achieved, thereby reducing the workload of the staff.
[0059] Contents not described in detail in this specification belong to the prior art known to professional and technical personnel in the field. Although the embodiments of the present invention have been shown and described, it is understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the attached claims and their equivalents.
Claims
1. A mixer for processing noodle products with a water-powder ratio structure, comprising a mixer body (1) and a mixing chamber (2) in the middle of the mixer body (1), wherein the mixing chamber (2) is arranged horizontally, and a stirring main shaft (3) is arranged to penetrate the middle of the mixing chamber (2) horizontally, characterized in that: The mixing bin (2) as a whole is configured with a turning and discharging structure with the stirring main shaft (3) as a rotating shaft, and a fixed handle (4) is installed on the front of the mixing bin (2); A loading bin (5) is arranged directly above the mixing bin (2), and a lifting bracket (6) is installed between the loading bin (5) and the mixer body (1), and the loading bin (5) forms a lifting movable fitting structure at the upper end of the mixing bin (2) through the lifting bracket (6); The interior of the feeding bin (5) is provided with a first batching bin (7) and a second batching bin (8) for adding water and flour, respectively, and a movable batching rack (9) is provided between the first batching bin (7) and the second batching bin (8); A support shaft (10) is provided between the movable batching rack (9) and the upper material bin (5), and the movable batching rack (9) forms a lever movable structure with the support shaft (10) as a fulcrum, and the first batching bin (7) and the second batching bin (8) are respectively located on the left and right sides of the movable batching rack (9), and the support shaft (10) is located on a side close to the second batching bin (8); A fixing frame (11) is integrally provided on the lower surface of the loading bin (5), and a sealing gasket (12) is provided at the joint between the fixing frame (11) and the upper end of the mixing bin (2); A water outlet (13) is provided at the lower end of the first batching bin (7), a piston plate (14) is provided inside the water outlet (13), and a water injection port (15) is provided on the upper surface of the upper bin (5) at a position corresponding to the first batching bin (7); A material discharge port (16) is provided at the lower end of the second material distribution bin (8), and a material discharge baffle (17) is provided at the material discharge port (16); and a material feed port (18) is provided on the upper surface of the material supply bin (5) at a position corresponding to the second material distribution bin (8); The piston plate (14) is movably arranged inside the water outlet (13), and a support spring (19) is arranged between the piston plate (14) and the first batching bin (7). The piston plate (14) is elastically supported by the support spring (19) and fits with the water outlet (13) to form a sealing structure; A movable touch rod (20) is arranged below the piston plate (14), and the lower end of the movable touch rod (20) protrudes from the water outlet (13), and the movable touch rod (20) and the piston plate (14) as a whole form a lifting and fitting structure at the water outlet (13); The material discharge baffle (17) is movably hinged to the material discharge port (16), and the material discharge baffle (17) is movably fitted to the fixed frame (11), so that when the second material distribution bin (8) is at the lowest point, the material discharge baffle (17) fits the fixed frame (11) and maintains a closed state; The middle part of the fixed frame (11) comprises a limiting beam (111) and a water guide groove (112), and the water guide groove (112) is distributed in a "well" shape, and the unloading baffle plate (17) is movably fitted with the limiting beam (111); A feed cover plate (21) is arranged above the feed opening (18), and a movable shaft (22) is arranged at the connection between the feed cover plate (21) and the feed opening (18), and the feed cover plate (21) forms a rotating opening and closing structure with the movable shaft (22) as the axis; The feed cover plate (21) comprises a downward pressing end (212) and an outer cover plate (211) at the left and right ends of the movable shaft (22), respectively; the outer cover plate (211) is movably fitted with the upper end of the feed port (18); the downward pressing end (212) forms a movable deflection structure inside the upper material bin (5); and the downward pressing end (212) forms a movable downward pressing structure for the movable batching rack (9) above the second batching bin (8).
2. A mixer for processing noodle products with a water-powder ratio structure according to claim 1, characterized in that: The left and right ends of the movable batching rack (9) are divided into movable guide rails (91) and fixed racks (92), and an adjustable mounting seat (93) is movably provided inside the movable guide rail (91); The top end of the first batching bin (7) is movably hinged to the adjustment mounting seat (93), and the top end of the second batching bin (8) is movably hinged to the fixing frame (92).
3. A mixer for processing noodle products with a water-powder ratio structure according to claim 2, characterized in that: The first batching bin (7) and the adjustment mounting seat (93) as a whole form a sliding adjustment structure along the movable guide rail (91), and a fastening bolt (94) is installed between the adjustment mounting seat (93) and the movable guide rail (91), and scale markings (95) are evenly distributed on the surface of the movable guide rail (91).
4. A mixer for processing noodle products with a water-powder ratio structure according to claim 1, characterized in that: The water guide groove (112) is located below the water outlet (13), and water distribution ports (113) are evenly distributed on the lower surface of the water guide groove (112).
Citation Information
Patent Citations
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