Brine recovery device for marinated product processing
By introducing a vibration mechanism and a guide channel design into the braising pot, the problem of low braising liquid recovery efficiency is solved, enabling rapid draining of ingredients and centralized recovery of braising liquid, thereby improving the production efficiency of the braising pot.
Patent Information
- Application Number
- CN202422930085.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-11-29
AI Technical Summary
In existing braising pots, the ingredients in the draining container drain only by gravity, resulting in low braising liquid recycling efficiency and affecting the processing efficiency of the braising pot.
A vibration mechanism drives the movable plate to vibrate, which quickly drains the food in the sieve tray. The brine is then collected and falls into the recycling tank through the holes on the movable plate. Combined with the design of the guide channel and the slope, the brine can be quickly recycled and processed for the next batch of braised products.
The efficiency of brine recovery has been improved, ensuring that the brine pot can continue to process the next batch of braised products during the draining process, thus increasing production efficiency. The design of rollers and guide rails has also reduced the power consumption of the vibration mechanism.
Smart Images

Figure CN223490573U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of food processing technology, specifically to a brine recovery device for processing braised products. Background Technology
[0002] In some braising processes, braising pots are used to process the products. After braising, the ingredients are removed and drained. Existing braising pots include: a frame; a pot body mounted on the frame, with an interior cavity for storing liquids; a drain container placed within the cavity, with several drain holes; and a lifting device installed at the bottom of the pot body. The lifting device includes a drive mechanism and several lifting components that extend into the cavity. The drain container is directly or indirectly supported by the lifting components, and the drive mechanism drives the lifting components to swing up and down, thus moving the drain container up and down within the cavity. The lifting device is located at the bottom of the pot body, hidden within the frame, completely freeing up space above the pot body, reducing overhead space requirements, facilitating user operation, and reducing packaging and transportation costs.
[0003] The existing braising pot has the following problems: the ingredients in the drain container are drained only by gravity, which is inefficient and results in low braising liquid recycling efficiency. During the draining process, the braising pot cannot process the next batch of braised products.
[0004] Based on the above situation, there is an urgent need for a brine recovery device for brine processing to solve the problem of low brine recovery efficiency. Utility Model Content
[0005] The purpose of this invention is to address the problem of low braising liquid recovery efficiency in existing braising pots where ingredients are drained only by gravity, resulting in low drainage efficiency and consequently, low braising liquid recovery efficiency. Furthermore, the braising pot cannot process the next batch of braised products during the drainage process.
[0006] The technical solution of this utility model is as follows:
[0007] A brine recovery device for processing braised products, comprising:
[0008] The bracket is installed on a horizontal surface;
[0009] Several recycling tanks are spaced apart on the support;
[0010] A movable plate is installed inside the recycling tank and has several holes formed on it. A sieve plate is placed on the movable plate.
[0011] A vibration mechanism is connected to and drives the movable plate to vibrate.
[0012] In existing braising pots, the ingredients in the draining container are drained only by gravity, resulting in low drainage efficiency and low braising liquid recovery efficiency. During the drainage process, the braising pot cannot process the next batch of braised products. In this solution, the braised ingredients are scooped out and placed on the sieve tray. The vibration mechanism causes the movable plate to vibrate the sieve tray, facilitating rapid drainage of the ingredients. The braising liquid falls through holes in the movable plate into the recovery trough. This solution can fully and quickly drain the ingredients and centrally recover the braising liquid, solving the problem of low braising liquid recovery efficiency. Furthermore, the braising pot can continue processing the next batch of braised products during the drainage process, improving production efficiency.
[0013] Furthermore, to facilitate the movement of the movable plate, one feasible solution is to provide a guide rail on the recycling tank and install rollers on the movable plate that contact the guide rail. With this solution, the movable plate can move along the guide rail, and since the rollers and guide rails are subject to roller friction, the power consumption of the vibration mechanism can be reduced.
[0014] Furthermore, in order to facilitate the centralized discharge of the recovered brine, one feasible solution is to form a guide channel on the recovery tank and install a valve on the recovery tank. When this solution is adopted, the brine in the recovery tank can be discharged in a centralized manner along the guide channel by opening the valve.
[0015] Furthermore, to facilitate the flow of brine falling into the recovery tank into the guide channel, one feasible solution is to form a slope at the bottom of the recovery tank. With this solution, under the action of gravity, the brine falling into the recovery tank can naturally flow into the guide channel under the action of the slope, so as to facilitate centralized discharge.
[0016] Furthermore, to prevent the brine from contacting the vibration mechanism, one feasible solution is to form a flow guide flange on the movable plate. When this solution is adopted, the brine is guided by the flow guide flange, thus preventing the brine from contacting the vibration mechanism.
[0017] Furthermore, to avoid rigid collisions between the movable plate and the recycling tank, one feasible solution is to install springs on the side walls of the movable plate. With this solution, the buffering effect of the springs can prevent rigid collisions between the movable plate and the recycling tank during vibration.
[0018] Furthermore, this solution does not exclusively limit the specific structure of the vibration mechanism. One feasible solution is that the vibration mechanism includes a vibration motor installed on the lower end face of the movable plate, and a polarizing block is installed on the output shaft of the vibration motor. When this solution is adopted, the vibration motor drives the polarizing block to rotate, thereby causing the movable plate to drive the screen plate to vibrate.
[0019] Compared with existing technologies, the beneficial effects of this utility model are:
[0020] 1. The braised ingredients are removed and placed on the sieve tray. The vibrating mechanism causes the movable plate to vibrate the sieve tray, which facilitates the rapid draining of the ingredients in the sieve tray. The brine falls into the recycling tank through the holes on the movable plate. This solution can fully and quickly drain the ingredients and collect the brine, solving the problem of low brine recycling efficiency. In addition, the braising pot can continue to process the next batch of braised products during the draining process, which improves production efficiency.
[0021] Second, since the recycling tank is equipped with a guide rail and the movable plate is equipped with rollers that contact the guide rail, the movable plate can move along the guide rail direction, and since the rollers and the guide rail are subject to roller friction, the power consumption of the vibration mechanism can be reduced.
[0022] Third, since a guide channel is formed on the recovery tank and a valve is installed on the recovery tank, and a slope is formed at the bottom of the recovery tank, under the action of gravity, the brine falling into the recovery tank can naturally flow into the guide channel under the action of the slope. Opening the valve can allow the brine in the recovery tank to be discharged in a concentrated manner along the guide channel. Attached Figure Description
[0023] Figure 1 This is a first-view structural schematic diagram of an embodiment of the present utility model;
[0024] Figure 2 This is a second-view structural schematic diagram of an embodiment of the present invention;
[0025] Figure 3 for Figure 2 Enlarged view of point A in the image;
[0026] Figure 4 This is a schematic diagram of the movable plate structure in an embodiment of the present utility model;
[0027] Figure 5 This is a cross-sectional schematic diagram of the movable plate in an embodiment of this utility model.
[0028] Figure label:
[0029] 1. Support frame; 2. Recycling tank; 3. Movable plate; 4. Screen plate; 5. Vibration mechanism;
[0030] 21. Guide rail; 22. Flow channel; 23. Valve; 24. Ramp;
[0031] 31. Hole; 32. Roller; 33. Guide flange; 34. Spring;
[0032] 51. Vibration motor; 52. Polarizing block. Detailed Implementation
[0033] It should be noted that relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus. Unless otherwise specified, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes the element.
[0034] The features and performance of this utility model will be further described in detail below with reference to the embodiments.
[0035] Example:
[0036] Please refer to Figure 1 , Figure 2 and Figure 5 A brine recovery device for processing braised products, comprising:
[0037] Bracket 1 is installed on a horizontal surface;
[0038] Several recycling tanks 2 are spaced apart on the support 1;
[0039] A movable plate 3 is installed inside the recycling tank 2 and has several holes 31 formed on it. A sieve plate 4 is placed on the movable plate 3.
[0040] Vibration mechanism 5 connects to and drives the movable plate 3 to vibrate.
[0041] In existing braising pots, the ingredients in the draining container are drained only by gravity, resulting in low drainage efficiency and low braising liquid recycling efficiency. During the drainage process, the braising pot cannot process the next batch of braised products. In this solution, the braised ingredients are scooped out and placed on the sieve plate 4. The vibrating mechanism 5 causes the movable plate 3 to vibrate the sieve plate 4, which facilitates rapid drainage of the ingredients in the sieve plate 4. The braising liquid falls into the recycling tank 2 through the holes 31 on the movable plate 3. This solution can fully and quickly drain the ingredients and centrally recycle the braising liquid, solving the problem of low braising liquid recycling efficiency. Moreover, the braising pot can continue to process the next batch of braised products during the drainage process, improving production efficiency.
[0042] Reference Figure 2 and Figure 4To facilitate the movement of the movable plate 3, one feasible solution is to provide a guide rail 21 on the recycling tank 2 and install rollers 32 on the movable plate 3 that contact the guide rail 21. With this solution, the movable plate 3 can move along the guide rail 21, and since the rollers 32 and the guide rail 21 are subject to roller friction, the power consumption of the vibration mechanism 5 can be reduced.
[0043] Reference Figure 2 and Figure 3 In order to facilitate the centralized discharge of the recovered brine, one feasible solution is to form a guide channel 22 on the recovery tank 2 and install a valve 23 on the recovery tank 2. When this solution is adopted, the brine in the recovery tank 2 can be discharged in a centralized manner along the guide channel 22 by opening the valve 23.
[0044] To facilitate the flow of brine into the diversion channel 22 after it falls into the recovery tank 2, one feasible solution is to form a slope 24 at the bottom of the recovery tank 2. With this solution, under the action of gravity, the brine falling into the recovery tank 2 can naturally flow into the diversion channel 22 under the action of the slope 24, so as to facilitate its centralized discharge.
[0045] Reference Figure 5 To prevent the brine from contacting the vibration mechanism 5, one feasible solution is to form a flow guide flange 33 on the movable plate 3. When this solution is adopted, the brine is guided by the flow guide flange 33, which can prevent the brine from contacting the vibration mechanism 5.
[0046] Reference Figure 4 To avoid rigid collision between the movable plate 3 and the recycling tank 2, one feasible solution is to install a spring 34 on the side wall of the movable plate 3. With this solution, the buffering effect of the spring 34 can prevent rigid collision between the movable plate 3 and the recycling tank 2 during vibration.
[0047] Reference Figure 5 This solution does not limit the specific structure of the vibration mechanism 5. One feasible solution is that the vibration mechanism 5 includes a vibration motor 51 installed on the lower end face of the movable plate 3 and a polarizing block 52 is installed on the output shaft of the vibration motor 51. When this solution is adopted, the vibration motor 51 drives the polarizing block 52 to rotate, thereby causing the movable plate 3 to drive the screen plate 4 to vibrate.
[0048] Alternatively, to facilitate power supply to the vibration motor 51, one feasible solution is to provide a wire-threading corrugated pipe (not shown in the figure) through the side wall of the recycling tank 2, which penetrates the flow guide flange 33 and extends to the vibration motor 51.
[0049] To address the issue of low brine recovery efficiency, this solution involves removing the braised ingredients and placing them on a sieve tray 4. A vibration mechanism 5 causes the movable plate 3 to vibrate the sieve tray 4, facilitating rapid drainage of the ingredients. The brine then flows through the holes 31 on the movable plate 3 into the recovery tank 2. This solution effectively and quickly drains the ingredients and recovers the brine, solving the problem of low brine recovery efficiency. Furthermore, the braising pot can continue processing the next batch of braised products during the drainage process, thus improving production efficiency.
[0050] In order to reduce the power consumption of the vibration mechanism 5, in this scheme, since the recovery tank 2 is provided with a guide rail 21 and the movable plate 3 is equipped with a roller 32 that contacts the guide rail 21, the movable plate 3 can move along the direction of the guide rail 21. Since the roller 32 and the guide rail 21 are subjected to roller friction, the power consumption of the vibration mechanism 5 can be reduced.
[0051] To facilitate the centralized discharge of brine, in this scheme, since a guide channel 22 is formed on the recovery tank 2 and a valve 23 is installed on the recovery tank 2, and a slope 24 is formed at the bottom of the recovery tank 2, under the action of gravity, the brine falling into the recovery tank 2 can naturally flow into the guide channel 22 under the action of the slope 24. Opening the valve 23 can allow the brine in the recovery tank 2 to be discharged in a concentrated manner along the guide channel 22.
[0052] The above description of the disclosed embodiments enables those skilled in the art to make or use the invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the invention. Therefore, the invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A brine recovery device for processing braised products, characterized in that, include: The bracket (1) is set on a horizontal surface; Several recycling tanks (2) are spaced apart on the support (1); A movable plate (3) is installed inside the recycling tank (2) and a plurality of holes (31) are formed on the movable plate (3). A sieve plate (4) is placed on the movable plate (3). The vibration mechanism (5) is connected to and drives the movable plate (3) to vibrate.
2. The brine recovery device for processing braised products according to claim 1, characterized in that, The recycling tank (2) is provided with a guide rail (21) and the movable plate (3) is equipped with a roller (32) that contacts the guide rail (21).
3. The brine recovery device for processing braised products according to claim 1, characterized in that, A guide channel (22) is formed on the recycling tank (2), and a valve (23) is installed on the recycling tank (2).
4. The brine recovery device for processing braised products according to claim 3, characterized in that, The bottom of the recycling tank (2) is formed with a slope (24).
5. The brine recovery device for processing braised products according to claim 1, characterized in that, A flow guide flange (33) is formed on the movable plate (3), and the vibration mechanism (5) is disposed inside the flow guide flange (33).
6. The brine recovery device for processing braised products according to claim 1, characterized in that, A spring (34) is installed on the side wall of the movable plate (3).
7. A brine recovery device for processing braised products according to claim 1, characterized in that, The vibration mechanism (5) includes a vibration motor (51) installed on the lower end face of the movable plate (3), and a polarizing block (52) is installed on the output shaft of the vibration motor (51).