Brine chute salt deposition cleaning equipment
By designing brine chute salt cleaning equipment, the brine chute inner wall cleaning is automatically cleaned by lateral movement and lifting devices, the problem of low salt cleaning efficiency is solved and the accuracy and safety of flow measurement is improved.
Patent Information
- Application Number
- CN202421985548.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-08-16
AI Technical Summary
The salt cleaning efficiency of the inner wall of the existing brine chute is low, which affects the accuracy of flow measurement. Manual cleaning is time-consuming and laborious and has safety risks.
Design brine chute salt cleaning equipment, including base, transverse moving device, lifting device and scraping device, and automatically cleans the inner wall of brine chute through transverse moving and lifting mechanism drives scraping device to automatically clean the inner wall of brine chute.
It realizes rapid cleaning of salt in the inner wall of the brine chute, improves the accuracy of flow measurement, and reduces the time and safety risks of manual cleaning.
Smart Images

Figure CN223185134U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of brine flow measurement, in particular to brine chute salt cleaning equipment. Background Art
[0002] Carnallite is an important raw material for the production of potassium chloride. Carnallite is obtained by drying brine in salt fields. During the salt field production process, the brine needs to be drained through brine channels to the salt fields in each area for salt production. The amount of brine required for salt field production in different areas is different. In order to clarify the amount of brine entering the salt fields in each area, it is necessary to measure the brine flow in each brine channel in real time and monitor the brine flow in the brine channel.
[0003] The existing method for measuring the flow of brine channels is usually to install a chute flowmeter in the brine channel. The chute flowmeter includes a brine chute and a flowmeter arranged on the brine chute. The brine chute is set in the brine channel. When the brine in the brine channel flows through the brine chute, the flow rate can be measured by the flowmeter arranged on the brine chute.
[0004] However, in the high-salinity environment of brine transportation, crystalline salts with high hardness and strong adhesion often form on the inner wall of the brine chute. These crystalline salts are mainly formed by the crystallization and precipitation of salts such as sodium chloride, potassium chloride, and magnesium chloride in the brine. Salt deposition will seriously affect the measurement accuracy, making it impossible to accurately measure the flow rate flowing through the brine chute, resulting in the inability to refine the salt field production process, and ultimately affecting product quality.
[0005] Therefore, when salt forms on the inner wall of the brine chute, it needs to be cleaned. The existing method is usually to use a scraper for manual cleaning. The efficiency of manual cleaning is low and it is difficult to clean the salt. Long cleaning time will affect the accuracy of flow measurement and may also cause damage to the surface of the flow meter. It is not only time-consuming and labor-intensive, but also poses a safety risk.
[0006] The utility model aims to solve the problem that the existing method has low efficiency in cleaning salt deposits on the inner wall of a brine chute, thereby affecting the accuracy of flow measurement. Utility Model Content
[0007] To address the aforementioned issues, the present invention provides a brine chute salt cleaning device, comprising a base 1, a transverse movement device 2, a lifting device 3, and a scraping device 4. The transverse movement device 2 comprises a transverse movement rail 21, a transverse movement slider 22, and a transverse movement force mechanism. The transverse movement rail 21 is disposed on the base 1 and extends in the left-right direction. The transverse movement slider 22 is slidably disposed on the transverse movement rail 21.
[0008] The transverse force mechanism is fixedly mounted on the base 1 and connected to the transverse slider 22. It is used to drive the transverse slider 22 to reciprocate along the transverse rail 21 in the left and right directions. The lifting device 3 is fixedly mounted on the transverse slider 22. It is used to drive the scraping device 4 to move up and down. The scraping device 4 includes a scraping rod 41 and a scraping member 42. The scraping rod 41 is vertically arranged, and its upper end is fixedly connected to the lifting device 3. The scraping member 42 is fixedly connected to the lower end of the scraping rod 41 and is used to scrape salt deposits on the inner wall of the brine chute.
[0009] When the present invention is used, the base 1 is fixedly set on one side of the brine channel near the brine chute. When salt is deposited on the inner wall of the brine chute, the scraping device 4 is controlled to move downward by the lifting device 3, so that the scraping member 42 enters the brine chute, and then the transverse sliding block 22 is driven to move left and right on the transverse sliding rail 21 by the transverse moving force mechanism, and the salt on the inner wall of the brine chute is scraped by the scraping member 42. When the salt on the inner wall of the brine chute is cleaned, the scraping device 4 is controlled to move upward by the lifting device 3, so that the scraping member 42 moves to the top of the brine chute and waits for the next use.
[0010] The utility model can control the scraping device 4 to move up and down through the lifting device 3, and can drive the transverse sliding block 22 to move left and right along the transverse sliding rail 21 through the transverse movement force mechanism, so that the scraping device 4 can move left and right, thereby scraping the salt accumulated on the inner wall of the brine chute, quickly clearing the salt, and reducing the impact on the accuracy of flow measurement. When salt accumulates on the inner wall of the brine chute, the existing method of clearing the salt is inefficient, which affects the accuracy of flow measurement.
[0011] Preferably, the scraping device 4 further includes three connecting rods 43. The scraping member 42 includes a first mounting plate 421 and two second mounting plates 422. The length of the first mounting plate 421 matches the width of the brine chute. The first mounting plate 421 is horizontally disposed below the scraping rod 41 via the connecting rods 43 and extends in the front-to-back direction. The length of the second mounting plate 422 matches the height of the brine chute. The two second mounting plates 422 are vertically disposed on the front and rear sides of the scraping rod 41 via the connecting rods 43. Multiple scrapers 423 are disposed on the first and second mounting plates 421, 422 on the side away from the scraping rod 41.
[0012] The scraping member 42 includes a first mounting plate 421 and two second mounting plates 422. The first mounting plate 421 is horizontally arranged below the scraping rod 41 for cleaning the salt on the bottom surface of the brine chute. The two second mounting plates 422 are vertically arranged on the front and rear sides of the scraping rod 41 for cleaning the salt on the side wall of the brine chute, which can improve the efficiency of cleaning the salt on the inner wall of the brine chute.
[0013] Preferably, the connecting rod 43 includes a fixed rod 431, an adjusting rod 432, and an adjusting bolt 434. One end of the fixed rod 431 is fixedly connected to the lower end of the scraping rod 41, and the other end is provided with an adjustment hole that matches the adjusting bolt 434. One end of the adjusting rod 432 is provided with an axially extending strip opening 433 that matches the adjusting bolt 434, and the other end is used to be fixedly connected to the first mounting plate 421 or the second mounting plate 422. The adjusting bolt 434 passes through the adjustment hole and the strip opening 433 to securely connect the fixed rod 431 and the adjusting rod 432.
[0014] The connecting rod 43 is provided with a fixed rod 431, an adjusting rod 432 and an adjusting bolt 434. An adjusting hole is provided on the fixed rod 431, and a strip-shaped opening 433 is provided on the adjusting rod 432. The fixing rod 431 and the adjusting rod 432 are fixedly connected by passing the adjusting bolt 434 through the adjusting hole and the strip-shaped opening 433. The positions of the fixing rod 431 and the adjusting rod 432 can be adjusted by loosening the adjusting bolt 434, thereby adjusting the length of the connecting rod 43. The distance between the first mounting plate 421 and the two second mounting plates 422 and the inner wall of the brine chute is adjusted according to the salt accumulation on the inner wall of the brine chute, thereby improving the cleaning efficiency of the salt accumulation on the inner wall of the brine chute.
[0015] Preferably, the lifting device 3 includes a box body 31, a lifting rail 32, a lifting slider 33, a lifting power mechanism and a lifting rod 35. The box body 31 is square, and the rear side is fixedly connected to the transverse slider 22 through the support rod 24. A vertically extending lifting opening 311 is provided on the front side of the box body 31. The lifting rail 32 is vertically arranged in the box body 31 and fixedly connected to the inner wall of the box body 31. The lifting slider 33 is slidably arranged on the lifting rail 32. The lifting power mechanism is fixedly arranged on the inner wall of the box body 31 and connected to the lifting slider 33, and is used to drive the lifting slider 33 to move back and forth in the vertical direction along the lifting rail 32. One end of the lifting rod 35 is fixedly connected to the lifting slider 33, and the other end passes through the lifting opening 311 and is fixedly connected to the upper end of the scraping rod 41.
[0016] By fixing the box body 31 to the transverse slider 22, the lifting rail 32 is vertically arranged on the inner wall of the box body 31, the lifting slider 33 is arranged on the lifting rail 32, the lifting power mechanism is arranged in the box body 31, connected to the lifting slider 33, and the lifting rod 35 is fixedly connected to the lifting slider 33 and the scraping rod 41. The lifting power mechanism can drive the lifting slider 33 to move in the vertical direction along the lifting rail 32. Therefore, the scraping member 42 can move up and down. When it is necessary to clean the salt on the brine chute, the scraping member 42 is moved downward into the brine chute. When the salt on the brine chute is cleaned, the scraping member 42 is moved upward to the top of the brine chute to prevent the scraping member 42 from affecting the flow of brine, affecting the accuracy of flow measurement, and preventing salt from forming on the scraping member 42.
[0017] Preferably, the lateral movement power mechanism is a lateral telescopic oil cylinder 23, which is parallel to the lateral slide rail 21, and the cylinder body of the lateral telescopic oil cylinder 23 is fixedly connected to the base 1, and the end of the piston rod of the lateral telescopic oil cylinder 23 is fixedly connected to the lateral slide 22. The lifting power mechanism is a lifting telescopic oil cylinder 34, which is parallel to the lifting slide rail 32, and the cylinder body of the lifting telescopic oil cylinder 34 is fixedly connected to the upper inner side surface of the box body 31, and the end of the piston rod of the lifting telescopic oil cylinder 34 is fixedly connected to the lifting slide 33.
[0018] Preferably, fixing nails 12 are further included. Fixing plates 11 are provided at the bottom of the front and rear sides of the base 1. Fixing holes are provided on the fixing plates 11. The fixing nails 12 are inserted into the fixing holes to fix the base 1.
[0019] By setting fixing plates 11 on the front and rear sides of the base 1, and setting fixing holes on the fixing plates 11, the fixing nails 12 are inserted into the fixing holes to fix the base 1 during the scraping operation to prevent the base 1 from being unstable during the scraping operation, resulting in the salt on the brine chute not being scraped cleanly and the equipment being damaged.
[0020] Preferably, the scraper 423 is made of a soft material. The scraper 423 is made of a soft material to prevent the scraper 423 from damaging the brine chute. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 . Schematic diagram of the overall structure of the brine chute salt cleaning equipment;
[0022] Figure 2 .Overall schematic diagram of the brine chute salt cleaning equipment from another angle;
[0023] Figure 3 .Schematic diagram of the structure of the traverse device from a top view;
[0024] Figure 4 .Schematic diagram of the internal structure of the box;
[0025] Figure 5 .Schematic diagram of the overall structure of the connecting rod;
[0026] Figure 6 .Schematic diagram of usage status;
[0027] Figure 7 .Schematic diagram of the overall structure of the brine chute salt cleaning equipment in the modified example.
[0028] In the figure, 1. base, 11. fixed plate, 12. fixing nail, 2. transverse movement device, 21. transverse movement slide rail, 22. transverse movement slider, 23. transverse movement telescopic cylinder, 24. support rod, 3. lifting device, 31. box, 311. lifting port, 32. lifting rail, 33. lifting slider, 34. lifting telescopic cylinder, 35. lifting rod, 4. scraping device, 41. scraping rod, 42. scraping member, 421. first mounting plate, 422. second mounting plate, 423. scraper, 43. connecting rod, 431. fixing rod, 432. adjusting rod, 433. strip port, 434. adjusting bolt, 5. bracket, 51. support plate, 52. supporting leg, 6. brine channel, 61. brine chute. DETAILED DESCRIPTION
[0029] The preferred embodiments of the present invention are described in detail below with reference to the accompanying drawings.
[0030] like Figure 1 and Figure 2 As shown, the brine chute salt cleaning equipment includes a base 1, a transverse movement device 2, a lifting device 3 and a scraping device 4.
[0031] The bottom of the front and rear sides of the base 1 are provided with fixing plates 11, which are provided with fixing holes, and fixing nails 12 are provided in the fixing holes. When performing scraping operations, the fixing nails 12 are inserted into the ground to fix the base 1, preventing the base 1 from being unstable during the scraping operation, resulting in incomplete scraping of salt on the brine chute and damage to the equipment.
[0032] The scraping device 4 includes a scraping rod 41, a scraping member 42 and three connecting rods 43. The scraping rod 41 is vertically arranged, and the upper end is fixedly connected to the lifting device 3. The scraping member 42 is fixedly connected to the lower end of the scraping rod 41 to scrape the salt on the inner wall of the brine chute.
[0033] The scraping member 42 includes a first mounting plate 421 and two second mounting plates 422. The length of the first mounting plate 421 matches the width of the brine chute. The first mounting plate 421 is horizontally arranged below the scraping rod 41 through the connecting rod 43 and extends along the left and right directions of the brine chute, that is, the extension direction of the brine chute.
[0034] The length of the second mounting plate 422 matches the height of the brine chute. The two second mounting plates 422 are vertically arranged on the front and rear sides of the scraping rod 41 through the connecting rod 43 respectively. Multiple scrapers 423 are arranged on the side of the first mounting plate 421 and the second mounting plate 422 away from the scraping rod 41.
[0035] The length of the first mounting plate 421 matches the width of the brine chute, where matching means that the length of the first mounting plate 421 is equal to or slightly smaller than the width of the brine chute, so that the first mounting plate 421 can be inserted into the brine chute. When moving left and right along the brine chute, it can cover the bottom surface of the brine chute and clean the salt on the bottom surface of the brine chute.
[0036] The length of the second mounting plate 422 matches the height of the brine chute, where matching means that the length of the second mounting plate 422 is equal to or slightly smaller than the height of the brine chute, so that when the second mounting plate 422 moves left and right, it can cover the side of the brine chute and clean the salt on the side of the brine chute.
[0037] Scraper 423 adopts the soft material with certain elasticity, for example rubber, silica gel etc., also can adopt other materials that can scrape off the salt accumulation, prevent the brine chute from being damaged. Scraper 423 is set and adopts soft material, can prevent scraper 423 from damaging the brine chute.
[0038] The scraping member 42 includes a first mounting plate 421 and two second mounting plates 422. The first mounting plate 421 is horizontally arranged below the scraping rod 41 for cleaning the salt on the bottom surface of the brine chute. The two second mounting plates 422 are vertically arranged on the left and right sides of the scraping rod 41 for cleaning the salt on the side wall of the brine chute, which can improve the efficiency of cleaning the salt on the inner wall of the brine chute.
[0039] like Figure 1 and Figure 3 As shown, the transverse movement device 2 includes a transverse movement rail 21, a transverse movement slider 22, a transverse movement force mechanism and a support rod 24. The transverse movement rail 21 is set on the base 1 and extends along the left and right directions. The transverse movement slider 22 is slidably set on the transverse movement rail 21.
[0040] The lateral movement force mechanism is a lateral telescopic oil cylinder 23, which is fixedly mounted on the base 1 and connected to the lateral slide 22. The lateral telescopic oil cylinder 23 is parallel to the lateral slide 21. The cylinder body of the lateral telescopic oil cylinder 23 is fixedly connected to the base 1, and the end of the piston rod of the lateral telescopic oil cylinder 23 is fixedly connected to the lateral slide 22. The lateral telescopic oil cylinder 23 is used to drive the lateral slide 22 to move back and forth in the left and right directions along the lateral slide 21.
[0041] like Figure 1 and Figure 4 As shown, the lifting device 3 is fixedly arranged on the transverse sliding block 22 , and the lifting device 3 includes a box body 31 , a lifting slide rail 32 , a lifting slider 33 , a lifting power mechanism and a lifting rod 35 .
[0042] The box body 31 is square in shape, and its rear side is fixedly connected to the transverse sliding block 22 via a support rod 24 . A vertically extending lifting opening 311 is provided on the front side of the box body 31 .
[0043] The lifting rail 32 is vertically arranged in the box body 31 and fixedly connected to the inner wall of the box body 31 . The lifting slider 33 is slidably arranged on the lifting rail 32 .
[0044] The lifting power mechanism is a lifting and telescopic oil cylinder 34, which is fixedly arranged on the inner wall of the box body 31 and parallel to the lifting slide rail 32. The cylinder body of the lifting and telescopic oil cylinder 34 is fixedly connected to the upper part of the inner side surface of the box body 31, and the end of the piston rod of the lifting and telescopic oil cylinder 34 is fixedly connected to the lifting slider 33, which is used to drive the lifting slider 33 to move back and forth in the vertical direction along the lifting slide rail 32.
[0045] One end of the lifting rod 35 is fixedly connected to the lifting slider 33 , and the other end passes through the lifting opening 311 and is fixedly connected to the upper end of the scraping rod 41 .
[0046] The lifting slide block 33 can be driven to move in the vertical direction along the lifting slide rail 32 through the lifting and telescopic oil cylinder 34, so that the scraping member 42 can move up and down. When it is necessary to clean the salt on the brine chute, the scraping member 42 is moved downward into the brine chute. When the salt on the brine chute is cleaned, the scraping member 42 is moved upward to above the brine chute to prevent the scraping member 42 from affecting the flow of brine, affecting the accuracy of flow measurement, and preventing salt from forming on the scraping member 42.
[0047] like Figure 5 As shown, the connecting rod 43 includes a fixing rod 431 , an adjusting rod 432 and an adjusting bolt 434 . One end of the fixing rod 431 is fixedly connected to the lower end of the scraping rod 41 , and the other end is provided with an adjusting hole matching the adjusting bolt 434 .
[0048] One end of the adjusting rod 432 is fixedly connected to the mounting plate, and the other end is provided with a strip opening 433 extending along the axial direction that matches the adjusting bolt 434. The adjusting bolt 434 passes through the adjusting hole and the strip opening 433 to fix the fixing rod 431 and the adjusting rod 432 together.
[0049] The fixing rod 431 is provided with an adjustment hole that matches the adjustment bolt 434 , wherein matching means that the diameter of the adjustment hole is equal to or larger than the diameter of the adjustment bolt 434 , so that the adjustment bolt 434 can be inserted into the adjustment hole.
[0050] The adjusting rod 432 is provided with an axially extending strip opening 433 that matches the adjusting bolt 434 , wherein the matching means that the width of the strip opening 433 is equal to or greater than the diameter of the adjusting bolt 434 so that the adjusting bolt 434 can be inserted into the strip opening 433 .
[0051] Therefore, loosening the adjusting bolt 434 can adjust the position of the fixing rod 431 and the adjusting rod 432, thereby adjusting the length of the connecting rod 43, and adjusting the distance between the first mounting plate 421 and the two second mounting plates 422 and the inner wall of the brine chute according to the salt accumulation on the inner wall of the brine chute, thereby improving the efficiency of cleaning the salt accumulation on the inner wall of the brine chute.
[0052] like Figure 6 As shown, when the present invention is used, the base 1 is fixedly set on one side of the brine channel 6 near the brine chute 61, and the fixing nail 12 is inserted into the ground to fix the base 1. When salt is deposited on the inner wall of the brine chute 61, the lifting slider 33 is driven by the lifting and telescopic oil cylinder 34 to move downward along the lifting slide rail 32, so that the scraping member 42 moves downward into the brine chute 61, and then the transverse sliding slider 22 is driven by the transverse force mechanism to move left and right on the transverse slide rail 21, and the salt deposited on the inner wall of the brine chute 61 is scraped by the scraping member 42. After the salt deposited on the inner wall of the brine chute 61 is cleaned, the lifting slider 33 is driven by the lifting and telescopic oil cylinder 34 to move upward along the lifting slide rail 32, driving the scraping member 42 to move to the top of the brine chute 61 and wait for the next use.
[0053] The utility model can drive the lifting slider 33 to move in the vertical direction along the lifting slide rail 32 through the lifting and telescopic oil cylinder 34, so that the scraping member 42 can move up and down. When it is necessary to clean the salt on the brine chute, the scraping member 42 is moved downward into the brine chute. When the salt on the brine chute is cleaned, the scraping member 42 is moved upward to above the brine chute to prevent the scraping member 42 from affecting the flow of brine and affecting the accuracy of flow measurement, thereby preventing salt from forming on the scraping member 42.
[0054] The transverse sliding block 22 is driven to move in the front-rear direction by the transverse telescopic oil cylinder 23, which drives the scraping device 4 to move back and forth, thereby scraping the salt on the inner wall of the brine chute, quickly cleaning the salt, and reducing the impact on the accuracy of flow measurement.
[0055] The first mounting plate 421 is horizontally arranged below the scraping rod 41, which can clean the salt on the bottom surface of the brine chute. The two second mounting plates 422 are vertically arranged on the left and right sides of the scraping rod 41, respectively, which can clean the salt on the side wall of the brine chute, thereby improving the efficiency of cleaning the salt on the inner wall of the brine chute.
[0056] The connecting rod 43 is provided with a fixed rod 431, an adjusting rod 432 and an adjusting bolt 434. The fixing rod 431 and the adjusting rod 432 are fixedly connected by passing the adjusting bolt 434 through the adjusting hole and the strip-shaped opening 433. The positions of the fixing rod 431 and the adjusting rod 432 can be adjusted by loosening the adjusting bolt 434, thereby adjusting the length of the connecting rod 43. The distance between the first mounting plate 421 and the two second mounting plates 422 and the inner wall of the brine chute is adjusted according to the salt accumulation on the inner wall of the brine chute, thereby improving the cleaning efficiency of the salt accumulation on the inner wall of the brine chute.
[0057] By providing fixing plates 11 on the left and right sides of the base 1 and fixing holes in the fixing plates 11, fixing pins 12 are inserted into the fixing holes to secure the base 1 during scraping operations. This prevents the base 1 from becoming unstable during the scraping operation, which could result in incomplete scraping of salt deposits on the brine chute and damage to the equipment. The scraper 423 is made of a soft material to prevent damage to the brine chute.
[0058] Modification
[0059] like Figure 7 As shown, the difference between this modification and the aforementioned embodiment is that the base 1 is replaced with a bracket 5, and the other structures are the same as those of the aforementioned embodiment and will not be repeated here.
[0060] The bracket 5 includes a support plate 51 and a plurality of support legs 52 arranged on the support plate 51. The support plate 51 is rectangular, arranged horizontally, and extends in the left and right directions. The plurality of support legs 52 are arranged vertically, and the upper ends are fixedly connected to the support plate 51. The transverse movement device 2 is arranged on the bottom surface of the support plate 51.
[0061] During use, the support legs 52 of the bracket 5 are respectively supported on the front and rear sides of the brine delivery channel 6. When salt is deposited on the inner wall of the brine chute 61, the lifting device 3 is used to control the scraping member 42 to move downward into the brine chute 61. Then, the traverse device 2 is used to control the scraping member 42 to move left and right to scrape the salt deposited on the inner wall of the brine chute 61. After the salt deposited on the inner wall of the brine chute 61 is cleaned, the lifting device 3 is used to control the scraping member 42 to move to the top of the brine chute 61 and wait for the next use.
[0062] It should be noted that the above-mentioned embodiments illustrate rather than limit the invention and that those skilled in the art will be able to design alternative embodiments without departing from the scope of the appended claims.
Claims
1. Brine chute salt cleaning equipment, characterized by: It comprises a base (1), a traverse device (2), a lifting device (3) and a scraping device (4), The transverse movement device (2) comprises a transverse movement rail (21), a transverse movement slider (22) and a transverse movement force mechanism; The transverse sliding rail (21) is arranged on the base (1) and extends in the left-right direction; The transverse sliding block (22) is slidably arranged on the transverse sliding rail (21); The transverse force mechanism is fixedly arranged on the base (1), connected to the transverse slider (22), and is used to drive the transverse slider (22) to reciprocate in the left and right directions along the transverse slide rail (21); The lifting device (3) is fixedly mounted on the transverse sliding block (22) and is used to drive the scraping device (4) to move up and down; The scraping device (4) comprises a scraping rod (41) and a scraping member (42). The scraping rod (41) is arranged vertically, and the upper end is fixedly connected to the lifting device (3); The scraping member (42) is fixedly connected to the lower end of the scraping rod (41) and is used to scrape salt deposited on the inner wall of the brine chute.
2. The brine chute salt cleaning equipment according to claim 1, characterized in that: The scraping device (4) further comprises three connecting rods (43), The scraping member (42) comprises a first mounting plate (421) and two second mounting plates (422). The length of the first mounting plate (421) matches the width of the brine chute, and the first mounting plate (421) is horizontally arranged below the scraping rod (41) through a connecting rod (43) and extends in the front-to-back direction; The length of the second mounting plate (422) matches the height of the brine chute, and the two second mounting plates (422) are vertically arranged on the front and rear sides of the scraping rod (41) through connecting rods (43). A plurality of scrapers (423) are provided on the first mounting plate (421) and the second mounting plate (422) on a side away from the scraping rod (41).
3. The brine chute salt cleaning equipment according to claim 2, characterized in that: The connecting rod (43) includes a fixing rod (431), an adjusting rod (432) and an adjusting bolt (434). One end of the fixing rod (431) is fixedly connected to the lower end of the scraping rod (41), and the other end is provided with an adjustment hole matching the adjustment bolt (434); One end of the adjusting rod (432) is provided with a strip-shaped opening (433) extending in the axial direction and matching the adjusting bolt (434), and the other end is used for fixed connection with the first mounting plate (421) or the second mounting plate (422); The adjusting bolt (434) passes through the adjusting hole and the strip-shaped opening (433) to securely connect the fixing rod (431) and the adjusting rod (432).
4. The brine chute salt cleaning equipment according to claim 3, characterized in that: The lifting device (3) comprises a box (31), a lifting rail (32), a lifting slider (33), a lifting power mechanism and a lifting rod (35). The box body (31) is square, and the rear side is fixedly connected to the transverse sliding block (22) via a support rod (24). A vertically extending lifting opening (311) is provided on the front side of the box body (31); The lifting slide rail (32) is vertically arranged in the box body (31) and fixedly connected to the inner wall of the box body (31); The lifting slider (33) is slidably arranged on the lifting rail (32); The lifting power mechanism is fixedly arranged on the inner side wall of the box body (31), connected to the lifting slider (33), and is used to drive the lifting slider (33) to move back and forth in the vertical direction along the lifting slide rail (32); One end of the lifting rod (35) is fixedly connected to the lifting slider (33), and the other end passes through the lifting opening (311) and is fixedly connected to the upper end of the scraping rod (41).
5. The brine chute salt cleaning equipment according to claim 4, characterized in that: The lateral movement power mechanism is a lateral movement telescopic oil cylinder (23), The transverse telescopic oil cylinder (23) is parallel to the transverse slide rail (21), the cylinder body of the transverse telescopic oil cylinder (23) is fixedly connected to the base (1), and the end of the piston rod of the transverse telescopic oil cylinder (23) is fixedly connected to the transverse slide rail (22); The lifting power mechanism is a lifting and telescopic oil cylinder (34). The lifting and telescopic oil cylinder (34) is parallel to the lifting slide rail (32), the cylinder body of the lifting and telescopic oil cylinder (34) is fixedly connected to the upper part of the inner side surface of the box body (31), and the end of the piston rod of the lifting and telescopic oil cylinder (34) is fixedly connected to the lifting slide block (33).
6. The brine chute salt cleaning equipment according to claim 5, characterized in that: Also includes a fixing nail (12), The bottoms of the front and rear sides of the base (1) are provided with fixing plates (11), and the fixing plates (11) are provided with fixing holes; The fixing nail (12) is inserted into the fixing hole to fix the base (1).
7. The brine chute salt cleaning equipment according to any one of claims 2 to 6, characterized in that: The scraper (423) is made of soft material.