Desalting cleaning machine with wind power draining function
By designing a multi-nozzle blowing assembly in the desalination and washing machine, the problems of insufficient wind coverage and non-adjustable angles are solved, enabling comprehensive drying and adaptive adjustment of food on the discharge conveyor belt, and meeting the drainage requirements of different pickled foods.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG HUIJU FOOD CO LTD
- Filing Date
- 2025-06-03
- Publication Date
- 2026-05-05
AI Technical Summary
In the current desalination and washing machine, the fan cannot completely blow away the water on the pickled food during the discharge process, and the wind force and angle cannot be adjusted, which cannot meet the drainage requirements of different pickled foods.
A multi-nozzle air-blowing assembly was designed, including a positioning mounting frame, air-blowing pipe, air-blowing nozzles, and adjustment components. It can adjust the air volume and angle to ensure that the air force covers all food on the discharge conveyor belt and meets different drainage requirements.
It achieves complete drying of food on the discharge conveyor belt, and the wind force and angle are adjustable to meet the drainage needs of different marinated foods, thus improving the drainage effect.
Smart Images

Figure CN224202110U_ABST
Abstract
Description
Technical fields:
[0001] This utility model relates to the technical field of desalination and cleaning machines, and more specifically to a desalination and cleaning machine equipped with a wind-powered water-draining function. Background technology:
[0002] A desalination cleaning machine is an industrial device used to remove salt and impurities from the surface of pickled foods. It is mainly used in the food processing of pickles, seafood, and other products. Existing desalination and washing machines typically consist of a long water tank with an angled discharge port at one end. The tank contains a horizontal washing conveyor belt, and the discharge port houses an angled output conveyor belt that connects to the washing conveyor belt. This output conveyor belt allows the washed pickled food to be discharged. However, during the output process, water adhering to the pickled food is also discharged (not completely drained). Therefore, some desalination and washing machines install fans on the discharge port to blow away the water. However, the fan's airflow does not reach the sides of the washing conveyor belt, preventing the water from being blown away from the sides of the pickled food. Furthermore, different pickled foods have different water-draining requirements. For example, pickled vegetable hearts do not require a large airflow, and the airflow angle is optimal for them. Pickled vegetable leaves, on the other hand, have a large water content and require a larger airflow. To prevent splashing of water droplets caused by a large airflow, an angled airflow angle is necessary. Therefore, the airflow structure needs to be improved to meet these requirements. Utility Model Content:
[0003] The purpose of this utility model is to address the shortcomings of existing technologies by providing a desalination and cleaning machine with a wind-powered drainage function. The desalination and cleaning machine uses multiple air nozzles to blow air evenly onto the pickled food on the discharge conveyor belt. At the same time, the air volume and angle can be adjusted for easy adjustment to meet different drainage requirements.
[0004] A desalination and cleaning machine with a wind-powered dewatering function includes a cleaning tank. An inclined discharge trough is located on one side of the cleaning tank. An inclined discharge conveyor belt is installed inside the discharge trough. An inclined blowing assembly is located directly above the middle and upper part of the discharge conveyor belt. The blowing assembly includes a rectangular positioning and mounting frame. The front and rear sides of the positioning and mounting frame are fixed to the front and rear side plates of the discharge trough via mounting legs. Several longitudinally arranged and linearly uniformly distributed blowing pipes are inserted into the positioning and mounting frame. The two ends of the blowing pipes are pivotally connected to the front and rear side frames of the positioning and mounting frame, respectively. Several blowing nozzles are fixedly connected to the lower surface of the blowing pipes.
[0005] The rear end of the blower pipe is fixedly connected to a rear cover, and the outer ring of the rear cover is formed with a rear support rod. The end of the rear support rod is hinged to the rear linkage rod through a rear pin. The front end of the blower pipe is connected to a connecting pipe, and a retaining ring is formed on the outer wall of the middle part of the connecting pipe. The outer ring of the retaining ring is formed with a front support rod, and the end of the front support rod is hinged to the front linkage rod through a front pin. A semi-circular rear valve plate is formed inside the pipe opening at the front end of the connecting pipe. The front end face of the rear valve plate abuts against the semi-circular front valve plate. The front valve plate is fixedly connected to the connecting pipe. The rear end of the connecting pipe is sleeved on the connecting pipe, and the front end is fixedly connected to the transverse air inlet pipe.
[0006] A rear derailleur and a front derailleur are respectively formed on the rear cover and front support rod of the positioning and mounting frame. The rear derailleur has a rear guide groove, and the front derailleur has a front guide groove. The positioning and mounting frame is respectively provided with a front adjustment assembly and a rear adjustment assembly connected to the front derailleur and the rear derailleur. The front adjustment assembly and the rear adjustment assembly each include ear plates fixed on the upper and lower sides of the positioning and mounting frame. Adjustment bolts are pivotally connected to the ear plates. Adjustment seats are screwed onto the adjustment bolts between the ear plates. Connecting pins are inserted into the rear guide groove and the front guide groove, and the ends of the connecting pins are inserted into and fixed to the adjustment seats.
[0007] Preferably, the blower nozzle is funnel-shaped and evenly distributed linearly along the blower tube, and the blower tube has a blower opening that communicates with the blower nozzle.
[0008] Preferably, the rear linkage rod and the front linkage rod are parallel and both are located on the upper side of the positioning and mounting frame, and the plane containing the central axis of the blower pipe is parallel to the rear linkage rod.
[0009] Preferably, the diameter of the outer wall of the connecting pipe is equal to the diameter of the inner wall of the blower pipe, and the diameter of the inner wall of the blower pipe is equal to the diameter of the inner wall of the connecting pipe.
[0010] Preferably, the adjusting bolt is an external hexagonal bolt, with the head of the adjusting bolt abutting against the upper end surface of the ear plate on the upper side of the positioning and mounting frame, and the end of the adjusting bolt being screwed to a limit nut, which abuts against the lower end surface of the ear plate on the lower side of the positioning and mounting frame.
[0011] Preferably, the adjusting seat is cylindrical and ring-shaped, and two sets of mutually perpendicular and planar grooves are formed on the outer wall of the adjusting seat. The bottom surface of the groove on one side of the adjusting seat abuts against the outer wall of the positioning and mounting frame, and the bottom surface of the groove on the other side abuts against the rear lever or the front lever.
[0012] Preferably, the inner diameter of the air intake pipe is larger than the inner diameter of the blower pipe, and a sealing end cap is fixedly connected to one end of the air intake pipe.
[0013] The beneficial effects of this utility model are as follows:
[0014] This desalination and washing machine uses multiple air nozzles to blow air evenly onto the pickled food on the discharge conveyor belt. At the same time, the air volume and angle can be adjusted for easy adjustment to meet different drainage requirements. Attached image description:
[0015] Figure 1 This is a front view structural diagram of the present invention;
[0016] Figure 2 This is a three-dimensional structural diagram of the internal air blowing component of this utility model;
[0017] Figure 3 This is a structural schematic diagram of the internal air blowing assembly of this utility model from the front view.
[0018] Figure 4 for Figure 3 Schematic diagram of the cross-sectional structure at point AA;
[0019] Figure 5 This is a partial structural diagram of the internal blowing assembly of this utility model without an air inlet pipe.
[0020] In the diagram: 1. Cleaning water tank; 2. Discharge conveyor belt; 3. Blowing assembly; 31. Positioning and mounting frame; 32. Blowing pipe; 33. Blowing nozzle; 34. Rear cover; 341. Rear support rod; 342. Rear lever; 343. Rear guide groove; 35. Connecting pipe; 351. Rear valve plate; 352. Retaining ring; 353. Front support rod; 354. Front lever; 355. Front guide groove; 36. Front linkage rod; 37. Rear linkage rod; 38. Front adjustment assembly; 39. Rear adjustment assembly; 310. Front pin; 311. Rear pin; 312. Air inlet pipe; 313. Connecting pipe; 314. Front valve plate. Detailed implementation method:
[0021] Example: See Figures 1 to 5 As shown, a desalination and cleaning machine with wind-powered dewatering function includes a cleaning tank 1. A slanted discharge trough seat 11 is provided on one side of the cleaning tank 1. A slanted discharge conveyor belt 2 is provided inside the discharge trough seat 11. A slanted blowing assembly 3 is provided directly above the middle and upper part of the discharge conveyor belt 2. The blowing assembly 3 includes a rectangular positioning and mounting frame 31. The front and rear sides of the positioning and mounting frame 31 are fixed to the side plates of the front and rear sides of the discharge trough seat 11 by mounting legs. A number of longitudinally arranged and linearly uniformly distributed blowing pipes 32 are inserted into the positioning and mounting frame 31. The two ends of the blowing pipes 32 are respectively pivotally connected to the front and rear side frames of the positioning and mounting frame 31. A number of blowing nozzles 33 are fixedly connected to the lower surface of the blowing pipes 32.
[0022] The rear end of the blower pipe 32 is fixedly connected to a rear cover 34. A rear support rod 341 is formed on the outer ring of the rear cover 34. The end of the rear support rod 341 is hinged to the rear linkage rod 37 via a rear pin 311. A connecting pipe 35 is inserted into the front end of the blower pipe 32. A retaining ring 352 is formed on the outer wall of the middle part of the connecting pipe 35, and the retaining ring 352 abuts against the outer wall of the positioning and mounting frame 31. A front support rod 353 is formed on the outer ring of the retaining ring 352. The end of the support rod 353 is hinged to the front linkage rod 36 via the front pin 310; a semi-circular rear valve plate 351 is formed inside the pipe opening at the front end of the connecting pipe 35, the front end face of the rear valve plate 351 abuts against a semi-circular front valve plate 314, the front valve plate 314 is inserted and fixed inside the connecting pipe 313, and the connecting pipe 313 abuts against the retaining ring 352; the rear end of the connecting pipe 313 is sleeved on the connecting pipe 35, and the front end is fixedly connected to the transverse air intake pipe 312;
[0023] The rear cover 34 and front support rod 353 on one side of the positioning mounting frame 31 are respectively formed with a rear lever 342 and a front lever 354. The rear lever 342 is formed with a rear guide groove 343, and the front lever 354 is formed with a front guide groove 355. The positioning mounting frame 31 is respectively provided with a front adjustment assembly 38 and a rear adjustment assembly 39 connected to the front lever 354 and the rear lever 342. The front adjustment assembly 38 and the rear adjustment assembly 39 each include ear plates a fixed on the upper and lower sides of the positioning mounting frame 31. An adjustment bolt b is pivotally connected to the ear plate a, and an adjustment seat c is screwed onto the adjustment bolt b between the ear plates a. T-shaped connecting pins e are inserted into the rear guide groove 343 and the front guide groove 355 respectively, and the end of the connecting pin e is inserted and fixed to the adjustment seat c.
[0024] The blower nozzles 33 are funnel-shaped and linearly and evenly distributed on the blower pipe 32. The blower pipe 32 has blowers that are connected to the blower nozzles 33. The blower nozzles 33 are funnel-shaped to achieve a larger blowing area, thereby preventing the food conveyed by the discharge conveyor belt 2 from not being blown by the air.
[0025] The rear linkage rod 37 and the front linkage rod 36 are parallel and both are located on the upper side of the positioning and mounting frame 31. The plane containing the central axis of the blower pipe 32 is parallel to the rear linkage rod 37. The rear linkage rod 37 and the blower pipe 32 form a parallelogram structure, and the front linkage rod 36 and the blower pipe 32 also form a parallelogram structure, thereby adjusting the rotation of the blower pipe 32 and the structure of the connecting pipe 35.
[0026] The outer diameter of the connecting pipe 35 is equal to the inner diameter of the blower pipe 32, and the inner diameter of the blower pipe 32 is equal to the inner diameter of the connecting pipe 313, to prevent air leakage.
[0027] The adjusting bolt b is an external hexagonal bolt. The head of the adjusting bolt b abuts against the upper end face of the ear plate a on the upper side of the positioning mounting frame 31. The end of the adjusting bolt b is screwed to a limit nut d, which abuts against the lower end face of the ear plate a on the lower side of the positioning mounting frame 31. The length of the adjusting bolt b is greater than the length of the adjusting seat c. The adjusting seat c is cylindrical and ring-shaped. Two sets of mutually perpendicular and planar grooves are formed on the outer wall of the adjusting seat c. The bottom surface of the groove on one side of the adjusting seat c abuts against the outer side wall of the positioning mounting frame 31, and the bottom surface of the groove on the other side abuts against the rear lever 342 or the front lever 354.
[0028] The inner diameter of the air inlet pipe 312 is larger than that of the blower pipe 32. One end of the air inlet pipe 312 is fixedly connected to a sealing end cap, and the other end of the air inlet pipe 312 can be equipped with a quick-connect air hose connector, which is connected to the air source through an air hose.
[0029] Working principle: This structure is a desalination and cleaning machine with wind-powered dewatering function. The desalination and cleaning machine is equipped with a blowing assembly 3 with a blowing pipe 32 structure and a number of blowing nozzles 33, which can reach all belt surfaces at the same height of the discharge conveyor belt 2, thus having a large blowing area and effectively improving the blowing and dewatering effect.
[0030] At the same time, by rotating the adjusting bolt b on the front adjusting assembly 38, the adjusting seat c can be moved, which in turn drives the rear cover 34. Under the drive of the rear linkage rod 37, all the rear covers 34 can be rotated, which in turn allows the air blowing pipe 32 to be adjusted, thus achieving the adjustment of the wind angle.
[0031] When the air volume needs to be adjusted, by rotating the adjusting bolt b on the rear adjusting assembly 39, all the connecting pipes 35 can be rotated under the drive of the front linkage rod 36. This causes a change in the position between the rear valve plate 351 and the front valve plate 314 on the connecting pipe 35, thereby changing the cross-sectional area of the channel between the front valve plate 314 and the rear valve plate 351, thus changing the air volume entering the blower pipe 32, and consequently changing the air volume output by the blower nozzle 33.
[0032] The embodiments described above are illustrative of the present invention and are not intended to limit the present invention. Any person skilled in the art can modify the embodiments without departing from the spirit and scope of the present invention; therefore, the scope of protection of the present invention should be as set forth in the claims.
Claims
1. A desalination and cleaning machine with wind-powered dewatering function, comprising a cleaning tank (1) of the desalination and cleaning machine, an inclined discharge trough seat (11) provided on one side of the cleaning tank (1), an inclined discharge conveyor belt (2) provided in the discharge trough seat (11), and an inclined blowing assembly (3) provided directly above the middle and upper part of the discharge conveyor belt (2), characterized in that: The air blowing assembly (3) includes a rectangular positioning and mounting frame (31). The front and rear sides of the positioning and mounting frame (31) are fixed to the front and rear side plates of the discharge trough seat (11) by mounting feet. Several longitudinal and linearly evenly distributed air blowing pipes (32) are inserted in the positioning and mounting frame (31). The two ends of the air blowing pipes (32) are respectively pivotally connected to the front and rear side frames of the positioning and mounting frame (31). Several air blowing nozzles (33) are fixedly connected to the lower surface of the air blowing pipes (32). The rear end of the blower pipe (32) is fixedly connected to a rear cover (34), and a rear support rod (341) is formed on the outer ring of the rear cover (34). The end of the rear support rod (341) is hinged to the rear linkage rod (37) by a rear pin (311). The front end of the blower pipe (32) is provided with a connecting pipe (35), and a retaining ring (352) is formed on the outer wall of the middle part of the connecting pipe (35). A front support rod (353) is formed on the outer ring of the retaining ring (352). (353) The end is hinged to the front linkage rod (36) by the front pin (310); a semi-circular rear valve plate (351) is formed in the pipe opening at the front end of the connecting pipe (35), the front end face of the rear valve plate (351) abuts against the semi-circular front valve plate (314), the front valve plate (314) is inserted and fixed in the connecting pipe (313), the rear end of the connecting pipe (313) is sleeved on the connecting pipe (35), and the front end is fixedly connected to the transverse air intake pipe (312); The positioning mounting frame (31) has a rear derailleur (342) and a front derailleur (354) respectively formed on the rear cover (34) and the front support rod (353) on one side. The rear derailleur (342) has a rear guide groove (343) and the front derailleur (354) has a front guide groove (355). The positioning mounting frame (31) is provided with a front adjustment assembly (38) and a rear adjustment assembly connected to the front derailleur (354) and the rear derailleur (342) respectively. (39); Both the front adjustment assembly (38) and the rear adjustment assembly (39) include ear plates (a) fixed on the upper and lower sides of the positioning mounting frame (31), with adjustment bolts (b) pivotally connected to the ear plates (a), and adjustment seats (c) screwed onto the adjustment bolts (b) between the ear plates (a). T-shaped connecting pins (e) are respectively inserted into the rear guide groove (343) and the front guide groove (355), and the ends of the connecting pins (e) are inserted and fixed onto the adjustment seats (c).
2. A desalination and cleaning machine with wind-powered dewatering function according to claim 1, characterized in that: The blower nozzle (33) is flared and evenly distributed in a linear longitudinal direction on the blower tube (32), and the blower tube (32) has a blower opening that is connected to the blower nozzle (33).
3. A desalination and cleaning machine with wind-powered dewatering function according to claim 1, characterized in that: The rear linkage rod (37) and the front linkage rod (36) are parallel and both are located on the upper side of the positioning and mounting frame (31). The plane containing the central axis of the blower pipe (32) is parallel to the rear linkage rod (37).
4. A desalination and cleaning machine with wind-powered dewatering function according to claim 1, characterized in that: The diameter of the outer wall of the connecting pipe (35) is equal to the diameter of the inner wall of the blower pipe (32), and the diameter of the inner wall of the blower pipe (32) is equal to the diameter of the inner wall of the connecting pipe (313).
5. A desalination and cleaning machine with wind-powered dewatering function according to claim 1, characterized in that: The adjusting bolt (b) is an external hexagonal bolt. The head of the adjusting bolt (b) abuts against the upper end face of the ear plate (a) on the upper side of the positioning mounting frame (31). The end of the adjusting bolt (b) is screwed and fixed with a limit nut (d). The limit nut (d) abuts against the lower end face of the ear plate (a) on the lower side of the positioning mounting frame (31).
6. A desalination and cleaning machine with wind-powered dewatering function according to claim 5, characterized in that: The adjustment seat (c) is cylindrical and ring-shaped. Two sets of mutually perpendicular and planar grooves are formed on the outer wall of the adjustment seat (c). The bottom surface of the groove on one side of the adjustment seat (c) abuts against the outer wall of the positioning and mounting frame (31), and the bottom surface of the groove on the other side abuts against the rear lever (342) or the front lever (354).
7. A desalination and cleaning machine with wind-powered dewatering function according to claim 1, characterized in that: The inner diameter of the air inlet pipe (312) is larger than the inner diameter of the blower pipe (32), and a sealing end cap is fixedly connected to one end of the air inlet pipe (312).