Slurry pumping pipeline structure capable of improving slurry pumping efficiency and completeness
By improving the position of the slurry port and the design of the pipeline, combined with the coordinated work of the scraper assembly, the problem of the inability to completely extract the slurry is solved, efficient slurry extraction is achieved, and product quality and production efficiency are improved.
Patent Information
- Application Number
- CN202422291275.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-09-20
AI Technical Summary
Due to the improper position of the pumping port and unreasonable pipeline design of the existing slurry system, the slurry cannot be completely extracted, resulting in waste of resources and problems with product purity and quality.
Design a pumping pipeline structure, including changing the pumping port position, shortening the pipe length, reducing the number and angle of the elbows, and ensuring the slurry is fully extracted through the coordinated work of the first scraper assembly and the second scraper assembly, and using a water pump and a motor-driven threaded rod to drive the scraper to clean the bottom slurry of the storage pool.
Improve the slurry efficiency, reduce slurry residue, avoid mixing of slurries in different batches, improve product purity and consistency, and reduce production costs.
Smart Images

Figure CN223250152U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of storage tank attachment devices, in particular to a slurry pumping pipeline structure capable of improving slurry pumping efficiency and completeness. Background Art
[0002] As we all know, in the chemical and pharmaceutical industries, slurry extraction is an important step in the production process. It is used to transfer slurry from the reaction tank or storage tank to the next processing stage. The efficiency of slurry extraction directly affects production efficiency and product quality.
[0003] However, in the use of the existing lottery system, it was found that due to improper location of the slurry extraction port and unreasonable pipeline design, the slurry cannot be completely extracted, resulting in slurry residue, which not only wastes resources but also affects the purity and quality of subsequent products, thus having poor practicality. Utility Model Content
[0004] In order to solve the above technical problems, the utility model provides a pumping structure that is convenient for completely emptying the slurry in the reaction tank or the storage tank, thereby improving the pumping efficiency and preventing residual slurry in the reaction tank or the storage tank, thereby enhancing the practicality of a slurry pumping pipeline structure that improves the slurry pumping efficiency and completeness.
[0005] The utility model provides a slurry extraction pipeline structure for improving slurry extraction efficiency and completeness, including a foundation, the top of the foundation is connected to a storage tank, and also includes a water outlet pipe, a support platform and a water pump. A first scraper assembly and a second scraper assembly are provided inside the storage tank, a through pipe groove is provided at the left end of the storage tank, the through pipe groove is connected to the water outlet pipe sleeve, the left end of the foundation is connected to the support platform, the top of the support platform is connected to the water pump, the input end of the water pump is connected to the water outlet pipe, and the output end of the water pump is connected to the first pipe.
[0006] Preferably, the left bottom end of the storage tank is set to a 60-degree slope.
[0007] Preferably, the through-tube groove is at an angle of 45 degrees.
[0008] Preferably, the first scraper assembly includes a first reduction motor, a first threaded rod and a first scraper, a first slide groove is provided at the inner bottom end of the storage tank, the right end of the storage tank is connected to the first reduction motor, the output end of the first reduction motor is connected to the first threaded rod, the first threaded rod bearing seal is inserted into the interior of the storage tank, a first slider is provided on the first threaded rod, the first slider is slidably clamped in the first slide groove, and the top of the first slider is connected to the first scraper.
[0009] Preferably, the second scraper assembly includes a second reduction motor, a second threaded rod, a limit block, and a third threaded rod. The front end of the storage tank is connected to the second reduction motor, the output end bearing seal of the second reduction motor is inserted into the storage tank, the output end of the second reduction motor is connected to the second threaded rod, and the rear end of the second threaded rod is connected to the limit block. The rear end of the limit block is connected to the third threaded rod, and the third threaded rod is connected to the bearing on the inner wall of the storage tank. The second scrapers are respectively provided on the second threaded rod and the third threaded rod, and the bottom ends of the two groups of second scrapers are slidably clamped with the bottom end of the storage tank through the guide assembly.
[0010] Preferably, the guide assembly includes two groups of card-mounted sliders, and a card-mounted slide is provided at the inner bottom end of the storage tank, the card-mounted slide is connected to the through-tube groove, the bottom ends of the two groups of second scrapers are respectively connected to the card-mounted sliders, and the two groups of card-mounted slides are respectively slidably carded with the card-mounted sliders.
[0011] Preferably, two sets of protective shells are further included, and the front end and the right end of the storage tank are respectively connected to the protective shells.
[0012] Preferably, the outer ends of the two groups of protective shells are set as ventilation holes, and dust filters are provided in the ventilation holes.
[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: first, all the equipment is installed on the storage tank, and then by changing the position of the slurry extraction port and shortening the pipeline length, the number and angle of elbows are reduced, the fluid resistance is reduced, and the slurry extraction speed is accelerated. Moreover, through the coordinated work of the first scraper assembly and the second scraper assembly, it is ensured that the slurry is extracted as completely as possible, the slurry residue is reduced, and the utilization rate of the slurry is improved. In this way, by reducing the slurry residue, the mixing of different batches of slurry is avoided, the purity and consistency of the product are improved, the slurry waste and slurry extraction time are reduced, and the production cost is reduced, thereby enhancing practicality. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a schematic diagram of the connection structure of the utility model;
[0015] Figure 2 This is a schematic diagram of the structure of the first slider and the first scraper of the utility model;
[0016] Figure 3 This is a schematic diagram of the connection structure between the protective shell and the storage tank of the utility model;
[0017] Figure 4 This is a schematic diagram of the connection structure between the foundation and the support plate of the utility model;
[0018] Markings in the accompanying drawings: 1. Foundation; 2. Storage tank; 3. Water outlet pipe; 4. Support platform; 5. Water pump; 6. First pipe; 7. First reduction motor; 8. First threaded rod; 9. First slider; 10. First scraper; 11. Second reduction motor; 12. Second threaded rod; 13. Limit block; 14. Third threaded rod; 15. Second scraper; 16. Clip-on slider; 17. Protective shell; 18. Dust filter. DETAILED DESCRIPTION
[0019] The following embodiments are used to illustrate the present invention, but are not intended to limit the scope of the present invention.
[0020] like Figures 1 to 4 As shown, the utility model is a slurry extraction pipeline structure for improving slurry extraction efficiency and completeness, including a foundation: 1, the top of the foundation: 1 is connected to the storage tank 2; it is characterized in that it also includes a water outlet pipe 3, a support platform 4 and a water pump 5, the interior of the storage tank 2 is provided with a first scraper assembly and a second scraper assembly, the left end of the storage tank 2 is provided with a through pipe groove, the through pipe groove is connected to the water outlet pipe 3 in a suit, the left end of the foundation: 1 is connected to the support platform 4, the top of the support platform 4 is connected to the water pump 5, the input end of the water pump 5 is connected to the water outlet pipe 3, and the output end of the water pump 5 is connected to the first pipe 6 First, all the equipment is installed on the storage tank, and then by changing the position of the slurry extraction port and shortening the length of the pipeline, the number and angle of the elbows are reduced, the fluid resistance is reduced, and the slurry extraction speed is accelerated. The coordinated work of the first scraper assembly and the second scraper assembly ensures that the slurry is extracted as completely as possible, reducing slurry residue and improving the utilization rate of the slurry. By reducing slurry residue, the mixing of different batches of slurry is avoided, the purity and consistency of the product are improved, the slurry waste and slurry extraction time are reduced, and the production cost is reduced, thereby enhancing practicality.
[0021] As a preference of the above embodiment, the left bottom end of the storage tank 2 is set to a 60-degree slope; by setting the left side of the storage tank to a 60-degree slope to collect the slurry, it is convenient to extract the slurry by a water pump later, thereby enhancing practicality.
[0022] As a preference of the above embodiment, the through-pipe groove is at an angle of 45 degrees; the outlet pipe can be installed by setting the through-pipe groove at an angle of 45 degrees, thereby speeding up the cleaning of the slurry by changing the right-angled pipe to a 45-degree angle, thereby enhancing practicality.
[0023] As a preferred embodiment of the above embodiment, the first scraper assembly includes a first reduction motor 7, a first threaded rod 8 and a first scraper 10. A first slide groove is provided at the inner bottom end of the storage tank 2. The right end of the storage tank 2 is connected to the first reduction motor 7. The output end of the first reduction motor 7 is connected to the first threaded rod 8. The bearing seal of the first threaded rod 8 is inserted into the interior of the storage tank 2. A first slider 9 is provided on the first threaded rod 8. The first slider 9 is slidably engaged with the first slide groove, and the top of the first slider 9 is connected to the first scraper 10. When cleaning the bottom end of the storage tank, the first reduction motor can be used to drive the first threaded rod to rotate, so that the first threaded rod can drive the first slider and the first scraper to move, thereby scraping off the slurry at the bottom end of the storage tank, thereby enhancing practicality.
[0024] As a preferred embodiment of the above embodiment, the second scraper assembly includes a second reduction motor 11, a second threaded rod 12, a limit block 13, and a third threaded rod 14. The front end of the storage tank 2 is connected to the second reduction motor 11, and the output end bearing seal of the second reduction motor 11 is inserted into the storage tank 2. The output end of the second reduction motor 11 is connected to the second threaded rod 12, and the rear end of the second threaded rod 12 is connected to the limit block 13. The rear end of the limit block 13 is connected to the third threaded rod 14, and the third threaded rod 14 is connected to the inner wall bearing of the storage tank 2. The second threaded rod 12 and the third threaded rod 14 are respectively provided with second scrapers 15, and the bottom ends of the two groups of second scrapers 15 are slidably clamped with the bottom end of the storage tank 2 through the guide assembly; when cleaning the bottom end of the storage tank, the second reduction motor drives the second threaded rod and the third threaded rod to rotate, so that the threaded rods with different threads drive the two groups of second scrapers to move toward the middle, so that the slurry is scraped into the through-tube groove, thereby accelerating the scraping of the slurry, thereby enhancing practicality.
[0025] As a preferred embodiment of the above embodiment, the guide assembly includes two groups of card-mounted sliders 16, and a card-mounted slide groove is provided at the inner bottom end of the storage tank 2, which is connected to the through-tube groove. The bottom ends of the two groups of second scrapers 15 are respectively connected to the card-mounted sliders 16, and the two groups of card-mounted slide grooves are respectively slidably carded with the card-mounted sliders 16; the two groups of second scrapers can be guided and limited by the two groups of card-mounted sliders and the two groups of card-mounted slide grooves, thereby enhancing practicality.
[0026] As a preference of the above embodiment, two sets of protective shells 17 are further included, and the front end and the right end of the storage tank 2 are respectively connected to the protective shells 17; the two sets of reduction motors can be protected by the two sets of protective shells, thereby enhancing practicality.
[0027] As a preference of the above embodiment, the outer ends of the two groups of protective shells 17 are set as ventilation holes, and dust-proof filters 18 are provided in the ventilation holes; the two groups of reduction motors can be heat-dissipated and ventilated through the two groups of ventilation holes, and the dust-proof filters can be used to prevent dust from contacting the reduction motors, thereby enhancing practicality.
[0028] The utility model discloses a slurry extraction pipeline structure for improving slurry extraction efficiency and completeness. Its working principle is as follows: when working, first all the equipment is installed on the storage tank, and then when the slurry is extracted, the slurry is first extracted by the water pump, and due to the change of the position of the slurry extraction port and the shortening of the pipeline length, the number and angle of elbows are reduced, the fluid resistance is reduced, and the slurry extraction speed is accelerated. Then, when the liquid level in the storage tank is maintained in the inclined groove, the first reduction motor is started to drive the first threaded rod to rotate, thereby driving the slider and the first scraper to move to the left through the first threaded rod, so as to scrape the slurry at the bottom of the tank into the inclined groove, and then when the slurry in the inclined groove is reduced, the two sets of threaded rods are driven to rotate by the second reduction motor, thereby driving the two sets of second scrapers to move toward the middle respectively through the two sets of threaded rods, and moving toward the middle along the card-mounted slide groove and the card-mounted slider, so as to scrape the slurry into the through-pipe groove to completely discharge the slurry, thereby facilitating the subsequent material replacement, and then the storage tank can be cleaned by water.
[0029] The terms "vertical," "horizontal," "left," "right," and the like are used herein for descriptive purposes only.
[0030] The "first", "second" and "third" in the present invention do not represent specific quantities and orders, but are only used to distinguish names.
[0031] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.
Claims
1. A slurry extraction pipeline structure for improving slurry extraction efficiency and completeness, characterized in that: The invention comprises a foundation (1), the top of the foundation (1) is connected to the storage tank (2), and also comprises a water outlet pipe (3), a support platform (4) and a water pump (5); a first scraper (10) component and a second scraper (15) component are provided inside the storage tank (2); a through pipe groove is provided at the left end of the storage tank (2); the through pipe groove is connected to the water outlet pipe (3); the left end of the foundation (1) is connected to the support platform (4); the top of the support platform (4) is connected to the water pump (5); the input end of the water pump (5) is connected to the water outlet pipe (3); and the output end of the water pump (5) is communicated with the first pipe (6).
2. A slurry extraction pipeline structure for improving slurry extraction efficiency and completeness according to claim 1, characterized in that: The left bottom end of the storage tank (2) is set to a 60-degree slope.
3. A slurry extraction pipeline structure for improving slurry extraction efficiency and completeness according to claim 2, characterized in that: The through-tube groove is at an angle of 45 degrees.
4. A slurry extraction pipeline structure for improving slurry extraction efficiency and completeness according to claim 3, characterized in that: The first scraper (10) assembly includes a first reduction motor (7), a first threaded rod (8) and a first scraper (10); a first slide groove is provided at the inner bottom end of the storage tank (2); the right end of the storage tank (2) is connected to the first reduction motor (7); the output end of the first reduction motor (7) is connected to the first threaded rod (8); the bearing seal of the first threaded rod (8) is inserted into the interior of the storage tank (2); a first slider (9) is provided on the first threaded rod (8); the first slider (9) is slidably engaged with the first slide groove; the top end of the first slider (9) is connected to the first scraper (10).
5. A slurry extraction pipeline structure for improving slurry extraction efficiency and completeness according to claim 4, characterized in that: The second scraper (15) assembly includes a second reduction motor (11), a second threaded rod (12), a stop block (13), and a third threaded rod (14). The front end of the storage tank (2) is connected to the second reduction motor (11). The output end bearing seal of the second reduction motor (11) is inserted into the storage tank (2). The output end of the second reduction motor (11) is connected to the second threaded rod (12). The rear end of the second threaded rod (12) is connected to the stop block (13). The rear end of the stop block (13) is connected to the third threaded rod (14). The third threaded rod (14) is connected to the bearing on the inner wall of the storage tank (2). The second scraper (15) is respectively provided on the second threaded rod (12) and the third threaded rod (14). The bottom ends of the two groups of second scrapers (15) are slidably clamped with the bottom end of the storage tank (2) through the guide assembly.
6. A slurry extraction pipeline structure for improving slurry extraction efficiency and completeness according to claim 5, characterized in that: The guide assembly includes two groups of clamping slide blocks (16), the inner bottom end of the storage tank (2) is provided with a clamping slide groove, the clamping slide groove is connected to the through-tube groove, the bottom ends of the two groups of second scrapers (15) are respectively connected to the clamping slide blocks (16), and the two groups of clamping slide blocks are respectively slidably clamped with the clamping slide blocks (16).
7. A slurry extraction pipeline structure for improving slurry extraction efficiency and completeness according to claim 6, characterized in that: It also includes two sets of protective shells (17), and the front end and the right end of the storage tank (2) are respectively connected to the protective shells (17).
8. A slurry extraction pipeline structure for improving slurry extraction efficiency and completeness according to claim 7, characterized in that: The outer ends of the two sets of protective shells (17) are configured as ventilation openings, and dust-proof filter screens (18) are provided in the ventilation openings.