Pickled vegetable pickling and desalting device
By combining the feeding mechanism, spraying mechanism, and dehydration mechanism, the problem of residual moisture in pickled vegetables is solved, achieving uniform desalination and effective moisture removal, thus improving the practicality of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2026-04-07
AI Technical Summary
Traditional pickling and desalting equipment for pickled vegetables is difficult to fully utilize clean water, and a lot of water residue remains in the pickled vegetables.
The system employs a combination of a feeding mechanism, a first spraying mechanism, a stirring mechanism, a second spraying mechanism, and a dehydration mechanism. Through the steps of first spraying, stirring, second spraying, and dehydration, it achieves uniform desalination and moisture removal of the pickled vegetables.
This improved the uniformity of salt removal and the efficiency of moisture removal from pickled vegetables, enhancing the practicality of the equipment.
Smart Images

Figure CN224084622U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of pickled vegetable pickling desalination device, in particular to a kind of pickled vegetable pickling desalination device. BACKGROUND
[0002] Pickled vegetable is a kind of traditional pickled food, mainly by soaking vegetables and other food materials in soy sauce, salt, sugar, vinegar and other condiments prepared sauce, after a period of pickling is formed;Pickled vegetable is very popular in China and many other Asian countries due to its unique taste and flavor, often as a dish or side dish on the dining table;Pickled vegetable is a delicious traditional pickled food, not only unique taste, but also rich in nutrition.
[0003] For example, the pickled vegetable pickling desalination device disclosed in the utility model patent with application No.CN202322307919.2 is representative of one kind of prior art, which mainly includes a first cleaning sieve roller, a second cleaning sieve roller, a desalination water tank frame, a drain pipe, a protective cover, a flushing water pipe and a spraying interface, etc., and realizes pickled vegetable pickling desalination through the cooperation of the first cleaning sieve roller, the second cleaning sieve roller, the desalination water tank frame, the drain pipe, the protective cover, the flushing water pipe and the spraying interface, etc.
[0004] Traditional pickled vegetable pickling desalination device is difficult to fully utilize fresh water during pickled vegetable desalination, and there is still a lot of water in pickled vegetable after desalination. UTILITY MODEL CONTENT
[0005] To solve the above technical problems, the utility model provides a kind of pickled vegetable pickling desalination device, which places pickled vegetable in feeding mechanism, carries out first desalination to pickled vegetable in feeding mechanism by starting second spraying mechanism in first spraying mechanism, carries out stirring to pickled vegetable in feeding mechanism by starting stirring mechanism, makes its desalination uniform, expels the excess water in pickled vegetable by starting dehydration mechanism, improves the practicability of equipment.
[0006] The utility model discloses a pickled vegetable pickling desalination device, including feeding mechanism, still including first spraying mechanism, stirring mechanism, second spraying mechanism, dehydration mechanism and discharge mechanism, and feeding mechanism and first spraying mechanism all are installed on second spraying mechanism, and first spraying mechanism is located the right side of feeding mechanism, and stirring mechanism is located the inside of feeding mechanism, and dehydration mechanism is located the inside of second spraying mechanism, and discharge mechanism is located the below of second spraying mechanism, place pickled vegetable in feeding mechanism, and the water of secondary desalination in second spraying mechanism is carried out first desalination to pickled vegetable in feeding mechanism through the starting first spraying mechanism, and the pickled vegetable in feeding mechanism is stirred through the starting stirring mechanism, makes it desalination even, and the water of first desalination is discharged through feeding mechanism, and the pickled vegetable is discharged to the dehydration mechanism through feeding mechanism, and the pickled vegetable in dehydration mechanism is sprayed through the starting second spraying mechanism, makes it desalination fully, and after desalination, the superfluous moisture in pickled vegetable is discharged through the starting dehydration mechanism, and the pickled vegetable is conveyed and discharged through discharge mechanism, improve the practicality of equipment.
[0007] Preferably, the feeding mechanism includes a feeding hopper, a drainage barrel, a first filter barrel, and a first pipeline. The output end of the feeding hopper is connected to the top end of the drainage barrel. The first filter barrel is installed inside the drainage barrel and is located below the output end of the feeding hopper. A valve is arranged on the output end of the first filter barrel. The input end of the first pipeline is connected to the outer wall of the drainage barrel. The pickled vegetable is discharged into the first filter barrel through the feeding hopper. The first spraying mechanism sprays the pickled vegetable in the first filter barrel for the first time. The salt water sprayed is discharged through the first pipeline. The drainage barrel supports the first filter barrel, thereby improving the practicality of the equipment.
[0008] Preferably, the first spraying mechanism includes a plurality of first spraying pipes, a first shunt pipe, a first circulating pump, a second pipeline, and a first support. A plurality of output ends are arranged on the plurality of first spraying pipes, respectively. The input ends of the plurality of first spraying pipes are connected to the plurality of output ends of the first shunt pipe. The plurality of first spraying pipes are located in the drainage barrel, respectively. The input end of the first shunt pipe is connected to the output end of the first circulating pump. The input end of the first circulating pump is connected to the output end of the second pipeline. The input end of the second pipeline is connected to the second spraying mechanism. The bottom end of the first circulating pump is installed on the top end of the first support. The second pipeline discharges the water in the second spraying mechanism into the first shunt pipe through the starting first circulating pump. The pickled vegetable in the first filter barrel is desalinated for the first time through the discharge of the plurality of first spraying pipes, respectively. The first support supports the first circulating pump, thereby improving the practicality of the equipment.
[0009] Preferably, the stirring mechanism includes a first motor, a rotating shaft, and a plurality of stirring plates. The top end of the rotating shaft is installed on the bottom end of the first motor. The side ends of the plurality of stirring plates are installed on the rotating shaft, respectively. The rotating shaft is rotated through the starting first motor. The pickled vegetable in the first filter barrel is stirred through the plurality of stirring plates, thereby improving the practicality of the equipment.
[0010] Preferably, the second spraying mechanism comprises a second support, a spraying barrel, a plurality of second spraying pipes, a second shunt pipe and a second circulating pump, the bottom end of the spraying barrel is installed at the top end of the second support, the plurality of second spraying pipes are respectively located in the spraying barrel, a plurality of nozzles are respectively arranged on the output ends of the plurality of second spraying pipes, the input ends of the plurality of second spraying pipes are respectively connected with a plurality of output ends of the second shunt pipe, the input end of the second shunt pipe is connected with the output end of the second circulating pump, the input end of the second circulating pump is connected with clean water, and the bottom end of the second circulating pump is installed at the top end of the second support; the second support supports the spraying barrel and the second circulating pump, clean water is discharged into the plurality of second spraying pipes through the second shunt pipe by starting the second circulating pump, and the pickled vegetables in the dehydration mechanism are subjected to secondary desalination through the plurality of second spraying pipes, thereby improving the practicability of the equipment.
[0011] Preferably, the dehydration mechanism comprises a second filter barrel, a discharge pipe, a gear ring, a gear and a second motor, the input end of the discharge pipe is connected with the output end of the second filter barrel, a valve is arranged on the output end of the discharge pipe, and the discharge pipe is rotatably installed at the bottom end of the spraying barrel, the inner ring of the gear ring is installed on the outer wall of the discharge pipe, the outer ring of the gear ring is engaged with the outer ring of the gear, and the inner ring of the gear is installed on the output end of the second motor; the pickled vegetables subjected to the first desalination are discharged into the second filter barrel, the gear is rotated by starting the second motor, the discharge pipe is rotated through the engagement of the gear and the gear ring, and the second filter barrel dehydrates the pickled vegetables, thereby improving the practicability of the equipment.
[0012] Preferably, the discharge mechanism comprises a plurality of support plates, two groups of transmission shafts, a conveying belt and a third motor, the two groups of transmission shafts are respectively installed on the plurality of support plates, the conveying belt is sleeved on the two groups of transmission shafts, and the output end of the third motor is connected with the side end of one of the transmission shafts; the desalted pickled vegetables are discharged onto the conveying belt, the two groups of transmission shafts are rotated by starting the third motor, the conveying belt conveys and discharges the pickled vegetables, and the plurality of support plates respectively support the two groups of transmission shafts, thereby improving the practicability of the equipment.
[0013] Compared with the prior art, the pickled vegetables are placed in the feeding mechanism, the second desalination water in the second spraying mechanism is used to desalt the pickled vegetables in the feeding mechanism by starting the first spraying mechanism, the pickled vegetables in the feeding mechanism are stirred by starting the stirring mechanism, so that the pickled vegetables are uniformly desalted, the first desalination water is discharged through the feeding mechanism, the pickled vegetables are discharged into the dehydration mechanism through the feeding mechanism, the pickled vegetables in the dehydration mechanism are fully desalted by starting the second spraying mechanism, the excess water in the pickled vegetables is discharged by starting the dehydration mechanism after the desalination is completed, and the pickled vegetables are conveyed and discharged through the discharge mechanism, thereby improving the practicability of the equipment. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 is the axial sectional view of the utility model;
[0015] Figure 2 is the axial sectional view of the feeding mechanism of the utility model;
[0016] Figure 3 is the axial schematic view of the first spraying mechanism of the utility model;
[0017] Figure 4 is the axial schematic view of the stirring mechanism of the utility model;
[0018] Figure 5 is the axial sectional view of the second spraying mechanism of the utility model;
[0019] Figure 6 is the axial schematic view of the dehydration mechanism of the utility model;
[0020] Figure 7 is the axial schematic view of the discharging mechanism of the utility model.
[0021] Marked in the drawing: 01, feeding mechanism; 11, feeding hopper; 12, drainage bucket; 13, first filtering bucket; 14, first pipeline; 02, first spraying mechanism; 21, first spraying pipe; 22, first shunt pipe; 23, first circulating pump; 24, second pipeline; 25, first support; 03, stirring mechanism; 31, first motor; 32, rotating shaft; 33, stirring plate; 04, second spraying mechanism; 41, second support; 42, spraying bucket; 43, second spraying pipe; 44, second shunt pipe; 45, second circulating pump; 05, dehydration mechanism; 51, second filtering bucket; 52, discharging pipe; 53, gear ring; 54, gear; 55, second motor; 06, discharging mechanism; 61, support plate; 62, transmission shaft; 63, conveying belt; 64, third motor. DETAILED DESCRIPTION
[0022] In order to facilitate understanding of the utility model, the utility model will be described more fully below with reference to the relevant drawings. The utility model can be realized in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive.
[0023] Example 1
[0024] As Figure 1As shown, a pickled vegetable pickling desalination device includes a feeding mechanism 01; also includes a first spraying mechanism 02, a stirring mechanism 03, a second spraying mechanism 04, a dehydration mechanism 05 and a discharge mechanism 06, the feeding mechanism 01 and the first spraying mechanism 02 are both installed on the second spraying mechanism 04, the first spraying mechanism 02 is located on the right side of the feeding mechanism 01, the stirring mechanism 03 is located inside the feeding mechanism 01, the dehydration mechanism 05 is located inside the second spraying mechanism 04, and the discharge mechanism 06 is located below the second spraying mechanism 04;
[0025] Place the pickled vegetable in the feeding mechanism 01, and start the first spraying mechanism 02 to perform the first desalination on the pickled vegetable in the feeding mechanism 01 with the water in the second spraying mechanism 04, start the stirring mechanism 03 to stir the pickled vegetable in the feeding mechanism 01 to make it desalinate evenly, discharge the first desalination water through the feeding mechanism 01, discharge the pickled vegetable into the dehydration mechanism 05 through the feeding mechanism 01, start the second spraying mechanism 04 to spray the pickled vegetable in the dehydration mechanism 05 to make it desalinate fully, after desalination, discharge the excess water in the pickled vegetable through the dehydration mechanism 05, and discharge the pickled vegetable through the discharge mechanism 06 to improve the practicability of the equipment;
[0026] As shown in Figure 2 , the feeding mechanism 01 includes a feeding hopper 11, a drainage barrel 12, a first filter barrel 13 and a first pipeline 14, the output end of the feeding hopper 11 is connected with the top end of the drainage barrel 12, the first filter barrel 13 is installed inside the drainage barrel 12, the first filter barrel 13 is located below the output end of the feeding hopper 11, a valve is arranged on the output end of the first filter barrel 13, and the input end of the first pipeline 14 is connected with the outer wall of the drainage barrel 12;
[0027] As shown in Figure 3 , the first spraying mechanism 02 includes a plurality of first spraying pipes 21, a first shunt pipe 22, a first circulating pump 23, a second pipeline 24 and a first bracket 25, a plurality of output ends are arranged on the plurality of first spraying pipes 21 respectively, the input end of the plurality of first spraying pipes 21 is connected with the plurality of output ends of the first shunt pipe 22, the plurality of first spraying pipes 21 are located in the drainage barrel 12 respectively, the input end of the first shunt pipe 22 is connected with the output end of the first circulating pump 23, the input end of the first circulating pump 23 is connected with the output end of the second pipeline 24, the input end of the second pipeline 24 is connected with the second spraying mechanism 04, and the bottom end of the first circulating pump 23 is installed on the top end of the first bracket 25;
[0028] As shown in Figure 4 , the stirring mechanism 03 includes a first motor 31, a rotating shaft 32 and a plurality of stirring plates 33, the top end of the rotating shaft 32 is installed on the bottom end of the first motor 31, and the side ends of the plurality of stirring plates 33 are installed on the rotating shaft 32 respectively;
[0029] The pickles are discharged into the first filter barrel 13 through the feeding hopper 11, the first spraying mechanism 02 sprays the pickles in the first filter barrel 13 for the first time, the sprayed brine is discharged through the first pipeline 14, the drain barrel 12 supports the first filter barrel 13, the second pipeline 24 discharges the water in the second spraying mechanism 04 into the first shunt pipe 22 by starting the first circulating pump 23, the water is discharged through the plurality of first spraying pipes 21 to desalt the pickles in the first filter barrel 13 for the first time, the first support 25 supports the first circulating pump 23, the rotating shaft 32 rotates by starting the first motor 31, the plurality of stirring plates 33 stir the pickles in the first filter barrel 13, and the practicability of the equipment is improved.
[0030] Embodiment 2
[0031] As shown in Figure 5 and Figure 6 embodiment 1 further comprises a second spraying mechanism 04 and a dehydration mechanism 05, the second spraying mechanism 04 comprises a second support 41, a spraying barrel 42, a plurality of second spraying pipes 43, a second shunt pipe 44 and a second circulating pump 45, the bottom end of the spraying barrel 42 is installed at the top end of the second support 41, the plurality of second spraying pipes 43 are located in the spraying barrel 42 respectively, a plurality of nozzles are arranged on the output ends of the plurality of second spraying pipes 43 respectively, the input ends of the plurality of second spraying pipes 43 are connected with the plurality of output ends of the second shunt pipe 44 respectively, the input end of the second shunt pipe 44 is connected with the output end of the second circulating pump 45, the input end of the second circulating pump 45 is connected with clean water, and the bottom end of the second circulating pump 45 is installed at the top end of the second support 41; the dehydration mechanism 05 comprises a second filter barrel 51, a discharge pipe 52, a gear ring 53, a gear wheel 54 and a second motor 55, the input end of the discharge pipe 52 is connected with the output end of the second filter barrel 51, a valve is arranged on the output end of the discharge pipe 52, and the discharge pipe 52 is rotatably installed at the bottom end of the spraying barrel 42, the inner ring of the gear ring 53 is installed on the outer wall of the discharge pipe 52, the outer ring of the gear ring 53 is engaged with the outer ring of the gear wheel 54, and the inner ring of the gear wheel 54 is installed on the output end of the second motor 55;
[0032] The second support 41 supports the spraying barrel 42 and the second circulating pump 45, the clean water is discharged into the plurality of second spraying pipes 43 through the second shunt pipe 44 by starting the second circulating pump 45, the pickles in the dehydration mechanism 05 are desalted for the second time through the plurality of second spraying pipes 43, the pickles desalted for the first time are discharged into the second filter barrel 51, the gear wheel 54 rotates by starting the second motor 55, the discharge pipe 52 rotates through the engagement of the gear wheel 54 and the gear ring 53, the second filter barrel 51 dehydrates the pickles, the pickles after dehydration are discharged onto the discharge mechanism 06 through the discharge pipe 52, and the practicability of the equipment is improved.
[0033] Embodiment 3
[0034] AsFigure 7 As shown in the embodiment 1, further comprising a discharge mechanism 06, the discharge mechanism 06 comprises a plurality of support plates 61, two groups of transmission shafts 62, a conveyor belt 63 and a third motor 64, the two groups of transmission shafts 62 are respectively installed on the plurality of support plates 61, the conveyor belt 63 is sleeved on the two groups of transmission shafts 62, and the output end of the third motor 64 is connected with the side end of one of the transmission shafts 62;
[0035] The desalted pickles are discharged to the conveyor belt 63, the two groups of transmission shafts 62 are respectively rotated by starting the third motor 64, the conveyor belt 63 is used for conveying and discharging the pickles, and the plurality of support plates 61 are used for supporting the two groups of transmission shafts 62, so that the practicability of the equipment is improved.
[0036] As shown in the embodiment 1, further comprising a discharge mechanism 06, the discharge mechanism 06 comprises a plurality of support plates 61, two groups of transmission shafts 62, a conveyor belt 63 and a third motor 64, the two groups of transmission shafts 62 are respectively installed on the plurality of support plates 61, the conveyor belt 63 is sleeved on the two groups of transmission shafts 62, and the output end of the third motor 64 is connected with the side end of one of the transmission shafts 62; Figures 1 to 7 The first circulation pump 23, the first motor 31, the second circulation pump 45, the second motor 55 and the third motor 64 of the utility model are purchased on the market, and the technical personnel in the industry only needs to install and operate according to the attached instruction manual, and the technical personnel in the field does not need to pay the creative labor.
[0037] The first circulation pump 23, the first motor 31, the second circulation pump 45, the second motor 55 and the third motor 64 of the utility model are purchased on the market, and the technical personnel in the industry only needs to install and operate according to the attached instruction manual, and the technical personnel in the field does not need to pay the creative labor.
[0038] The utility model discloses the main function realized is: placing pickles in feeding mechanism 01, through the first spraying mechanism 02 is started with the water of secondary desalination in second spraying mechanism 04 to the pickles in feeding mechanism 01 is carried out first desalination, through starting stirring mechanism 03 to the pickles in feeding mechanism 01 is carried out stirring, makes it desalination even, through starting dehydration mechanism 05 with the redundant moisture in pickles is exported, improves the practicability of equipment.
[0039] The above only is the preferred implementation of the utility model, should point out, for the ordinary technical personnel of this technical field, on the premise of not departing from the technical principle of the utility model, can also make a number of improvements and variations, these improvements and variations also should be regarded as the protection scope of the utility model.
Claims
1. A pickling and desalting device for preserved vegetables, comprising a feeding mechanism (01); characterized in that, It also includes a first spraying mechanism (02), a stirring mechanism (03), a second spraying mechanism (04), a dehydration mechanism (05), and a discharge mechanism (06). The feeding mechanism (01) and the first spraying mechanism (02) are both installed on the second spraying mechanism (04). The first spraying mechanism (02) is located on the right side of the feeding mechanism (01), the stirring mechanism (03) is located inside the feeding mechanism (01), the dehydration mechanism (05) is located inside the second spraying mechanism (04), and the discharge mechanism (06) is located below the second spraying mechanism (04).
2. The pickling and desalting device for preserved vegetables as described in claim 1, characterized in that, The feeding mechanism (01) includes a feeding hopper (11), a drain bucket (12), a first filter bucket (13), and a first pipe (14). The output end of the feeding hopper (11) is connected to the top of the drain bucket (12). The first filter bucket (13) is installed inside the drain bucket (12). The first filter bucket (13) is located below the output end of the feeding hopper (11). A valve is provided on the output end of the first filter bucket (13). The input end of the first pipe (14) is connected to the outer wall of the drain bucket (12).
3. The pickling and desalting device for preserved vegetables as described in claim 2, characterized in that, The first spraying mechanism (02) includes multiple first spray pipes (21), a first diversion pipe (22), a first circulation pump (23), a second pipe (24), and a first support (25). Multiple first spray pipes (21) are respectively provided with multiple output ends. The input ends of multiple first spray pipes (21) are connected to multiple output ends of the first diversion pipe (22). Multiple first spray pipes (21) are respectively located in the drain bucket (12). The input end of the first diversion pipe (22) is connected to the output end of the first circulation pump (23). The input end of the first circulation pump (23) is connected to the output end of the second pipe (24). The input end of the second pipe (24) is connected to the second spraying mechanism (04). The bottom end of the first circulation pump (23) is installed on the top end of the first support (25).
4. The pickling and desalting device for preserved vegetables as described in claim 1, characterized in that, The stirring mechanism (03) includes a first motor (31), a rotating shaft (32) and multiple stirring plates (33). The top end of the rotating shaft (32) is mounted on the bottom end of the first motor (31), and the side ends of the multiple stirring plates (33) are respectively mounted on the rotating shaft (32).
5. The pickling and desalting device for preserved vegetables as described in claim 1, characterized in that, The second spraying mechanism (04) includes a second support (41), a spraying tank (42), multiple second spraying pipes (43), a second diversion pipe (44), and a second circulation pump (45). The bottom end of the spraying tank (42) is installed on the top end of the second support (41). Multiple second spraying pipes (43) are located inside the spraying tank (42). Multiple nozzles are provided on the output ends of the multiple second spraying pipes (43). The input ends of the multiple second spraying pipes (43) are connected to the multiple output ends of the second diversion pipe (44). The input end of the second diversion pipe (44) is connected to the output end of the second circulation pump (45). The input end of the second circulation pump (45) is connected to clean water. The bottom end of the second circulation pump (45) is installed on the top end of the second support (41).
6. The pickling and desalting device for preserved vegetables as described in claim 5, characterized in that, The dehydration mechanism (05) includes a second filter barrel (51), a discharge pipe (52), a toothed ring (53), a gear (54), and a second motor (55). The input end of the discharge pipe (52) is connected to the output end of the second filter barrel (51). A valve is provided on the output end of the discharge pipe (52), and the discharge pipe (52) is rotatably installed at the bottom end of the spray barrel (42). The inner ring of the toothed ring (53) is installed on the outer wall of the discharge pipe (52), and the outer ring of the toothed ring (53) meshes with the outer ring of the gear (54). The inner ring of the gear (54) is installed on the output end of the second motor (55).
7. The pickling and desalting device for preserved vegetables as described in claim 1, characterized in that, The discharge mechanism (06) includes multiple support plates (61), two sets of drive shafts (62), a conveyor belt (63) and a third motor (64). The two sets of drive shafts (62) are respectively mounted on the multiple support plates (61), the conveyor belt (63) is fitted on the two sets of drive shafts (62), and the output end of the third motor (64) is connected to the side end of one of the drive shafts (62).
Citation Information
Patent Citations
Pickled vegetable pickling and desalting device
CN220326742U