Portable individual soldier water purifier testing tool

By designing a portable, single-soldier water purifier testing fixture, using lightweight aluminum alloy and a rechargeable lithium battery, combined with a simulated operating structure of a motor and speed controller, the problems of low testing efficiency and inaccurate data in existing technologies are solved, achieving efficient, portable, and accurate performance evaluation of water purifiers.

CN224136917UActive Publication Date: 2026-04-17HANGZHOU CHIFENG INTELLIGENT EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HANGZHOU CHIFENG INTELLIGENT EQUIP CO LTD
Filing Date
2025-05-22
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing technologies lack dedicated portable testing equipment for individual water purifiers, resulting in low testing efficiency, inaccurate data, and poor consistency. Furthermore, traditional equipment is bulky and complex, making it inconvenient for field operations and emergency testing.

Method used

A portable, single-soldier water purifier testing fixture was designed. It is made of lightweight, high-strength aluminum alloy and equipped with a rechargeable lithium battery. Combined with a geared motor and speed controller, it realizes the simulated operation of the water purifier through a guide rail and linkage structure. It is equipped with a filter assembly and a drainage tank and has flexible adaptation and stress dispersion functions.

Benefits of technology

It enables efficient and accurate water purifier performance testing, lowers the barrier to entry, is easy to carry and use, ensures the stability and reliability of test data, adapts to various testing scenarios, extends equipment lifespan, and keeps the testing environment clean.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a portable individual soldier water purifier test tool, comprising a tool main body, the main body is provided with a water receiving tank, the water receiving tank is connected with a filter screen assembly, the tool main body is connected with a guide rail, a gear motor and a mounting plate, the mounting plate is connected with a control switch, a mobile power supply and a speed regulator, and the speed regulator is connected with the gear motor. The gear motor and the mobile power source are connected through a control switch, the gear motor is connected with a first connecting shaft through a first connecting rod, the two ends of the first connecting shaft are connected with second connecting rods, the second connecting rods are connected with first movable sliding blocks through first fixing blocks, a third connecting shaft is connected between the two first fixing blocks, and the third connecting shaft is connected with an individual-soldier water purifier through an individual-soldier fixing ring of a fixing support. The guide rails are slidably connected with second movable sliding blocks, the second movable sliding blocks are connected with second fixing blocks, a second connecting shaft is connected between the two second fixing blocks, and the second connecting shaft is connected with the single-soldier water purifier through a single-soldier handle of a third connecting rod. The device is convenient to carry and use, is precise and adjustable in frequency, is designed in a stress dispersion manner, and is flexible in adaptation and neat in testing.
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Description

Technical Field

[0001] This utility model relates to the technical field of water purifier testing equipment, specifically to a portable single-soldier water purifier testing fixture. Background Technology

[0002] In modern emergency rescue, wilderness exploration, and military operations, portable individual water purifiers are crucial for ensuring safe drinking water for personnel, and their performance and reliability are paramount. With continuous technological advancements, the functions and performance of individual water purifiers are becoming increasingly diverse, placing higher demands on their testing methods. However, current efforts to conduct basic performance and reliability tests on portable individual water purifiers face numerous challenges. The market lacks dedicated testing equipment for this type of water purifier, and traditional testing methods mostly rely on makeshift equipment or manual simulation.

[0003] Manual simulation testing is not only inefficient and difficult to conduct long-term, high-frequency tests on water purifiers, but also highly susceptible to human error, resulting in inaccurate and inconsistent data. Furthermore, hastily assembled testing equipment, lacking a scientifically sound design, cannot accurately simulate the complex operating conditions of real-world scenarios, and cannot comprehensively and accurately test key performance indicators such as filtration efficiency and lifespan of individual water purifiers under different pressure and flow rates. At the same time, traditional testing equipment is often bulky and complex, making it inconvenient to carry and move, and failing to meet the needs of diverse testing scenarios such as field operations and emergency testing. Therefore, developing a dedicated, miniaturized, efficient, and accurate portable testing fixture for individual water purifiers has become an urgent problem for the industry. Utility Model Content

[0004] To address the aforementioned problems, and especially the shortcomings of existing technologies, this utility model provides a portable single-soldier water purifier testing fixture that can solve these problems.

[0005] To achieve the above objectives, the present invention employs the following technical means:

[0006] A portable, single-soldier water purifier testing fixture includes a main body with a water receiving tank inside. A filter assembly is connected to the water receiving tank. Symmetrically distributed guide rails are connected to both sides of the top of the main body. A geared motor and a mounting plate are connected to one side of the main body. A control switch, a power supply, and a speed controller are connected to the mounting plate. The speed controller is connected to the geared motor. The geared motor and the speed controller are connected to the power supply via the control switch. The transmission end of the geared motor is connected to a connecting shaft via a connecting rod. The two ends of the connecting shaft are connected to connecting rods, which are connected via a fixing block. A movable slider 1 is slidably connected to the corresponding guide rail. A connecting shaft 3 is connected between the two sets of fixed blocks 1. A fixed bracket is connected to the connecting shaft 3. A single-soldier water purifier is detachably connected to the fixed bracket via a single-soldier fixing ring and is set in the water receiving tank. A movable slider 2 is slidably connected to the guide rail and is fixed by a fixing screw. A fixed block 2 is connected to the movable slider 2. A connecting shaft 2 is connected between the two sets of fixed blocks 2. A connecting rod 3 is connected to the connecting shaft 2. The connecting rod 3 is connected to the pump body of the single-soldier water purifier via a single-soldier handle. Multiple sets of positioning columns are connected to the side wall of the tooling body. The positioning columns are connected to the external low point via positioning screws.

[0007] A further aspect of this invention is that the power source is a rechargeable lithium battery.

[0008] A further embodiment of this invention is that the main body of the tooling is a lightweight, high-strength aluminum alloy product.

[0009] A further embodiment of this invention is that a groove corresponding to the filter assembly is provided on the other side of the tooling body.

[0010] A further embodiment of this invention is that the side of the tooling body has multiple sets of evenly distributed drainage grooves.

[0011] A further embodiment of this invention is that the filter assembly is made of stainless steel.

[0012] A further embodiment of this utility model is that the filter assembly includes a U-shaped slot frame connected to the inner wall of the water receiving tank, a filter frame is inserted into the U-shaped slot frame, and a filter frame is embedded in the filter frame.

[0013] A further embodiment of this invention is that the bottom of the positioning post is provided with an anti-slip rubber pad.

[0014] A further embodiment of this invention is that the individual soldier fixing ring is an elastic ring.

[0015] The beneficial effects of this utility model are:

[0016] 1. This utility model is easy to carry and use: Its overall structure is compact and small in size, and it is equipped with a portable power source, eliminating reliance on a fixed power supply. It can be easily carried to various scenarios such as field operations and emergency testing. Furthermore, the operation process is simple and easy to understand; test initiation and parameter adjustment can be completed via a control switch and speed controller, greatly reducing the barrier to entry for users.

[0017] 2. The frequency of this utility model is precisely adjustable: With the cooperation of the speed controller and the geared motor, the test frequency can be flexibly adjusted according to different test requirements, accurately simulating various manual operation scenarios, ensuring the comprehensiveness and accuracy of the performance test of the individual water purifier, and obtaining more reliable test data.

[0018] 3. This utility model has a stress dispersion design: the connecting rod three can move freely on the connecting shaft two. During the simulated manual operation, it can effectively disperse the stress generated by the movement, avoid stress concentration from damaging the individual water purifier and related components, not only extend the service life of the equipment, but also ensure the stability and reliability of the test results.

[0019] 4. This utility model offers flexible adaptability and facilitates clean testing: The detachable connection method for securing the individual water purifier allows for quick and easy replacement of different models for testing, enhancing the versatility of the tooling. Simultaneously, the inclusion of a filter assembly and a water collection tank facilitates the collection and treatment of wastewater during testing, maintaining a clean testing environment and reducing subsequent cleaning work. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the structure of this utility model;

[0021] Figure 2 This is a schematic diagram of the structure of the filter assembly of this utility model;

[0022] Figure label:

[0023] 1. Gear motor, 2. Link 1, 3. Mounting plate, 4. Control switch, 5. Power supply, 6. Speed ​​regulator, 7. Connecting shaft 1, 8. Link 2, 9. Fixing block 1, 10. Moving slider 1, 11. Guide rail, 12. Fixing block 2, 13. Moving slider 2, 14. Fixing screw, 15. Tooling body, 16. Groove, 17. Water receiving trough, 18. Filter screen assembly, 19. Link 3, 20. Connecting shaft 2, 21. Single-soldier handle, 22. Positioning post, 23. Positioning screw, 24. Drainage trough, 25. Single-soldier water purifier, 26. Single-soldier fixing ring, 27. Fixing bracket, 28. Connecting shaft 3, 181. U-shaped slot frame, 182. Filter screen frame, 183. Filter screen. Detailed Implementation

[0024] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0025] Example 1

[0026] like Figure 1 As shown, a portable single-soldier water purifier testing fixture includes a fixture body 15, a water receiving tank 17 inside the fixture body 15, a filter assembly 18 connected inside the water receiving tank 17, symmetrically distributed guide rails 11 connected to both sides of the top of the fixture body 15, a geared motor 1 and a mounting plate 3 connected to one side of the fixture body 15, a control switch 4, a mobile power supply 5 and a speed regulator 6 connected to the mounting plate 3, the speed regulator 6 connected to the geared motor 1, the geared motor 1 and the speed regulator 6 connected to the mobile power supply 5 through the control switch 4, the transmission end of the geared motor 1 connected to a connecting shaft 7 through a connecting rod 2, the two ends of the connecting shaft 7 connected to connecting rods 8, and the connecting rods 8 connected to corresponding guide rails through a fixing block 9. The guide rail 11 is slidably connected to the movable slider 10. A connecting shaft 28 is connected between the two sets of fixed blocks 9. The connecting shaft 28 is connected to the fixed bracket 27. The fixed bracket 27 is detachably connected to the individual water purifier 25 set in the water receiving tank 17 through the individual fixing ring 26. The guide rail 11 is slidably connected to the movable slider 13 and fixed by the fixing screw 14. The movable slider 13 is connected to the fixed block 12. A connecting shaft 20 is connected between the two sets of fixed blocks 12. The connecting shaft 20 is connected to the connecting rod 19. The connecting rod 19 is connected to the pump body of the individual water purifier 25 through the individual handle 21. The side wall of the tooling body 15 is connected to multiple sets of positioning columns 22. The positioning columns 22 are connected to the external low point through the positioning screw 23.

[0027] Working principle

[0028] Overall Structure: This portable individual water purifier testing fixture mainly consists of the fixture body 15, a geared motor 1, a mobile power supply 5, a speed controller 6, guide rails 11, a first movable slider 10, a second movable slider 13, and a fixed bracket 27. The fixture body 15 serves as the basic support and has an internal water receiving tank 17. Symmetrically distributed guide rails 11 are installed on both sides of the top, with one side connecting to the geared motor 1 and the mounting plate 3. The mounting plate 3 is equipped with a control switch 4, a mobile power supply 5, and a speed controller 6.

[0029] Power transmission structure: The transmission end of the geared motor 1 is connected to the connecting shaft 7 via connecting rod 2. Connecting shaft 7 is connected to connecting rod 8 at both ends. Connecting rod 8 is connected to the movable slider 10 via a fixed block 9. The movable slider 10 can slide on the guide rail 11. The speed controller 6 is connected to the geared motor 1 and forms a circuit connection with the mobile power supply 5 via a control switch 4. When the control switch 4 is turned on, the mobile power supply 5 supplies power to the geared motor 1. The speed controller 6 adjusts the speed of the geared motor 1, causing the geared motor 1 to drive the connecting rod 2 to rotate. Power is transmitted through the connecting shaft 7, causing the connecting rod 8 to drive the movable slider 10 to slide on the guide rail 11, thereby driving the subsequent components connected to the fixed block 9 to move.

[0030] Water purifier fixing and linkage structure: A connecting shaft 28 connects two sets of fixing blocks 9. The connecting shaft 28 connects to a fixing bracket 27. The fixing bracket 27 is detachably connected to the individual water purifier 25 via a single-person fixing ring 26, fixing it in the water receiving tank 17. A movable slider 13 is also slidably connected to the guide rail 11 and fixed by a fixing screw 14. The movable slider 13 connects to a fixing block 12. A connecting shaft 20 connects the two sets of fixing blocks 12. The connecting shaft 20 connects to a connecting rod 19. The connecting rod 19 connects to the pump body of the individual water purifier 25 via a single-person handle 21.

[0031] Principle: When the geared motor 1 drives the connecting rod 2 to complete one cycle, the transmission structure drives the individual water purifier 25 to move on the guide rail 11. Since the individual handle 21, connecting shaft 20, and fixing block 12 are fixed, the individual handle 21 and connecting rod 19 are stretched relative to the individual water purifier 25. Because the connecting rod 19 can move freely on the connecting shaft 20, stress on the individual handle 21 is eliminated, thus driving the individual water purifier 25 and individual handle 21 to complete one reciprocating cycle, simulating the effect of human operation of the individual water purifier 25, thereby conducting basic performance and reliability tests. Simultaneously, the positioning post 22 on the side wall of the fixture body 15 is connected to an external low-point via positioning wire 23, ensuring the stability of the fixture during testing; the filter assembly 18 in the water receiving tank 17 filters impurities generated during testing.

[0032] Example 2

[0033] like Figure 1As shown, a portable single-soldier water purifier testing fixture includes a fixture body 15, a water receiving tank 17 inside the fixture body 15, a filter assembly 18 connected inside the water receiving tank 17, symmetrically distributed guide rails 11 connected to both sides of the top of the fixture body 15, a geared motor 1 and a mounting plate 3 connected to one side of the fixture body 15, a control switch 4, a mobile power supply 5 and a speed regulator 6 connected to the mounting plate 3, the speed regulator 6 connected to the geared motor 1, the geared motor 1 and the speed regulator 6 connected to the mobile power supply 5 through the control switch 4, the transmission end of the geared motor 1 connected to a connecting shaft 7 through a connecting rod 2, the two ends of the connecting shaft 7 connected to connecting rods 8, and the connecting rods 8 connected to corresponding guide rails through a fixing block 9. The guide rail 11 is slidably connected to the movable slider 10. A connecting shaft 28 is connected between the two sets of fixed blocks 9. The connecting shaft 28 is connected to the fixed bracket 27. The fixed bracket 27 is detachably connected to the individual water purifier 25 set in the water receiving tank 17 through the individual fixing ring 26. The guide rail 11 is slidably connected to the movable slider 13 and fixed by the fixing screw 14. The movable slider 13 is connected to the fixed block 12. A connecting shaft 20 is connected between the two sets of fixed blocks 12. The connecting shaft 20 is connected to the connecting rod 19. The connecting rod 19 is connected to the pump body of the individual water purifier 25 through the individual handle 21. The side wall of the tooling body 15 is connected to multiple sets of positioning columns 22. The positioning columns 22 are connected to the external low point through the positioning screw 23.

[0034] The power bank 5 is a rechargeable lithium battery.

[0035] The advantages of the above settings are:

[0036] Improved portability: The rechargeable lithium battery is small and lightweight, which greatly reduces the overall weight of the portable individual water purifier test kit compared to traditional large power equipment. It is easier to carry to different scenarios such as the field and battlefield to carry out testing work, and meets the strict requirements for equipment portability when individual soldiers are fighting or working in the field.

[0037] Environmentally friendly and energy-saving: Rechargeable, it avoids the resource waste and environmental pollution caused by disposable batteries. Over long-term use, it significantly reduces the frequency of battery replacements, lowering operating costs and aligning with green environmental principles. It is especially suitable for applications requiring frequent and long-term testing.

[0038] Stable power supply: The rechargeable lithium battery has good charging and discharging performance and stable voltage output, which can provide continuous and stable power to equipment such as geared motor 1 and speed controller 6, ensuring the stability of the test fixture operation, ensuring the accuracy and reliability of the test data of the individual water purifier, and effectively avoiding test errors caused by power fluctuations.

[0039] Flexible Adaptability: The rechargeable lithium battery can flexibly adjust charging time and power reserve according to actual test duration and needs, adapting to different test environments and task requirements. Simultaneously, it is compatible with multiple charging methods, such as solar charging and on-board charging, ensuring power supply even in special environments such as the field, significantly enhancing the environmental adaptability and operational flexibility of the testing equipment.

[0040] The main body of the tooling 15 is made of lightweight, high-strength aluminum alloy.

[0041] The advantages of the above settings are:

[0042] The lightweight nature of the test equipment greatly improves its portability. Compared with traditional metal materials, aluminum alloy is lighter and easier for individual soldiers to carry and move, which is in line with its "portable" design intention and facilitates rapid deployment in the field and different test sites.

[0043] High strength ensures the overall structural stability of the tooling. During testing, it can stably support components such as the geared motor 1 and the individual water purifier 25, withstand the vibration generated by the operation of the geared motor and the force exerted by the individual water purifier during testing, avoid tooling deformation and damage, and ensure the accuracy and reliability of test results.

[0044] Aluminum alloys have strong corrosion resistance, which can effectively resist the erosion of complex outdoor environments such as humidity, acid and alkali, extend the service life of tooling, reduce maintenance costs, and reduce the waste of resources and economic expenditure caused by frequent tooling replacements. Finally, aluminum alloys are easy to process and form, which can meet the manufacturing requirements of complex structures such as the water tank 17 inside the tooling body 15 and the mounting position of the guide rail 11, ensuring the high efficiency and quality stability of tooling production.

[0045] The other side of the tooling body 15 has a groove 16 corresponding to the filter assembly 18.

[0046] The advantages of the above settings are:

[0047] Facilitating filter assembly installation and removal: The groove 16 provides precise positioning space for the filter assembly 18, enabling it to be quickly and accurately installed onto the fixture body 15, reducing installation time and errors. It also allows for easy disassembly when cleaning or replacing the filter assembly, improving maintenance convenience.

[0048] Optimize water flow path: The groove 16 can guide water flow more smoothly through the filter assembly 18, making the water flow distribution in the water receiving tank 17 more uniform, giving full play to the filtration function of the filter assembly, and improving the effectiveness of the individual water purifier test.

[0049] Multiple sets of evenly distributed drainage channels 24 are provided on the side of the tooling body 15.

[0050] The advantages of the above settings are:

[0051] Efficient drainage: Multiple evenly distributed drainage channels 24 can quickly drain the water filtered by the filter screen assembly 18 from the water receiving tank 17, avoiding a large amount of water remaining in the fixture body 15, ensuring the continuous and smooth progress of the test process, and preventing water accumulation from affecting the accuracy and stability of subsequent tests.

[0052] Easy to clean and maintain: The drainage channel 24 design makes it easier to clean the tooling body 15 after use. Residual water can be drained quickly, making it convenient for staff to clean the inside of the tooling, reducing dirt accumulation, extending the service life of the tooling, and reducing maintenance costs.

[0053] Example 3

[0054] like Figure 1 As shown, a portable single-soldier water purifier testing fixture includes a fixture body 15, a water receiving tank 17 inside the fixture body 15, a filter assembly 18 connected inside the water receiving tank 17, symmetrically distributed guide rails 11 connected to both sides of the top of the fixture body 15, a geared motor 1 and a mounting plate 3 connected to one side of the fixture body 15, a control switch 4, a mobile power supply 5 and a speed regulator 6 connected to the mounting plate 3, the speed regulator 6 connected to the geared motor 1, the geared motor 1 and the speed regulator 6 connected to the mobile power supply 5 through the control switch 4, the transmission end of the geared motor 1 connected to a connecting shaft 7 through a connecting rod 2, the two ends of the connecting shaft 7 connected to connecting rods 8, and the connecting rods 8 connected to corresponding guide rails through a fixing block 9. The guide rail 11 is slidably connected to the movable slider 10. A connecting shaft 28 is connected between the two sets of fixed blocks 9. The connecting shaft 28 is connected to the fixed bracket 27. The fixed bracket 27 is detachably connected to the individual water purifier 25 set in the water receiving tank 17 through the individual fixing ring 26. The guide rail 11 is slidably connected to the movable slider 13 and fixed by the fixing screw 14. The movable slider 13 is connected to the fixed block 12. A connecting shaft 20 is connected between the two sets of fixed blocks 12. The connecting shaft 20 is connected to the connecting rod 19. The connecting rod 19 is connected to the pump body of the individual water purifier 25 through the individual handle 21. The side wall of the tooling body 15 is connected to multiple sets of positioning columns 22. The positioning columns 22 are connected to the external low point through the positioning screw 23.

[0055] The filter assembly 18 is made of stainless steel.

[0056] The advantages of the above settings are:

[0057] Strong corrosion resistance: When subjected to long-term filtration of various types of wastewater generated during individual water purifier testing, it can effectively resist the erosion of acidic and alkaline substances, chloride ions, etc. in the water, extend its service life, and prevent impurities from entering the water tank 17 due to corrosion and damage, thus affecting the accuracy of the test.

[0058] High strength and not easily deformed: It can maintain structural stability even when subjected to water flow impact and frequent installation and disassembly operations, ensuring consistent water filtration effect.

[0059] Easy to clean and maintain: The stainless steel surface is smooth, and dirt and impurities do not easily adhere to it. When the filter assembly 18 traps a lot of impurities, it can be cleaned simply by rinsing or wiping, and can be quickly put into the next test, improving test efficiency.

[0060] Hygienic and environmentally friendly: The stainless steel material is non-toxic and harmless, and will not release harmful substances during contact with water, ensuring the purity of the test water and making the test results more authentic and reliable, providing an accurate basis for evaluating the performance of individual water purifiers.

[0061] like Figure 2 As shown, the filter assembly 18 includes a U-shaped slot frame 181 connected to the inner wall of the water receiving tank 17, a filter frame 182 inserted into the U-shaped slot frame 181, and a filter frame 182 embedded in the filter frame 182.

[0062] The advantages of the above settings are:

[0063] The U-shaped slot frame 181 is connected to the inner wall of the water receiving tank 17. This plug-in connection method facilitates the installation and removal of the filter assembly 18. When the filter frame 182 is clogged with impurities after a period of use, or when it is necessary to replace the filter with one of different filtration precision, the filter frame 182 can be quickly removed from the U-shaped slot frame 181, which facilitates maintenance and replacement and improves the efficiency of the testing fixture.

[0064] The filter screen frame 182 is inlaid with the filter screen. Compared with other connection methods, the inlaid structure makes the connection between the filter screen and the filter screen frame 182 more tight. Under the impact of water flow during the test, the filter screen is not easy to loosen or fall off, ensuring the stability of the filtration effect.

[0065] The modular design allows individual parts of the filter assembly 18 to be replaced when damaged, reducing maintenance costs. At the same time, the stainless steel filter assembly 18, combined with this structure, is corrosion-resistant and durable, further improving the service life and reliability of the entire testing fixture.

[0066] The bottom of the positioning post 22 is equipped with an anti-slip rubber pad.

[0067] The advantages of the above settings are:

[0068] Enhanced stability: The anti-slip rubber pad increases the friction between the positioning post 22 and the ground. When testing the portable individual water purifier, even if the main body 15 of the fixture is subjected to vibration generated by the operation of the geared motor 1, or external force generated by the simulated operation of the individual water purifier 25, the fixture is not prone to displacement, ensuring a stable and accurate testing process and improving the reliability of the test results.

[0069] Protecting the contact surface: The rubber pad is soft and can prevent the positioning post 22 from directly rubbing against the ground, table, or other contact surfaces, thus preventing scratches and damage to the contact surface. It is especially suitable for testing on smooth laboratory benches or fragile outdoor surfaces, extending the adaptability of the service environment.

[0070] Noise reduction: During the operation of the fixture, the rubber pad can buffer the impact between the positioning column 22 and the ground, absorb some of the vibration energy, thereby reducing the noise caused by vibration, creating a relatively quiet testing environment, and also reducing the noise interference to the testing personnel, thus improving the testing experience.

[0071] The individual soldier fixing ring 26 is an elastic ring.

[0072] The advantages of the above settings are:

[0073] Adaptable to different specifications of water purifiers: The elastic ring can adapt to individual water purifiers of different sizes and shapes through its own deformation, enhancing the compatibility of the tooling with various models of equipment, expanding the application range of the testing tooling, and avoiding the trouble of having to replace different fixing devices due to differences in water purifier specifications.

[0074] Quick and easy installation and removal: Thanks to its elasticity, the single-soldier fixing ring 26 can be quickly fitted onto the single-soldier water purifier 25 for installation. Removal is also possible without the need for complicated tools; it can be removed by gently pulling it out by hand, which greatly improves the efficiency of equipment installation before testing and disassembly after testing, saving operation time.

[0075] Provides buffer protection: During the test, the individual water purifier 25 will be subjected to various forces. The elastic ring can play a role in buffering and shock absorption, absorbing part of the impact force, reducing the direct impact of external forces on the water purifier, preventing the water purifier from being damaged due to excessive force, and ensuring the integrity and safety of the equipment during the test.

[0076] Ensuring a stable fixation: Even if the water purifier experiences slight shaking or displacement during testing, the elastic ring can continuously apply a certain tightening force to the water purifier through its own elastic restoring force, ensuring that the water purifier is always firmly fixed on the fixture body 15, maintaining the stability and accuracy of the test.

[0077] The examples provided in this utility model are not intended to limit the implementation methods. Those skilled in the art will recognize that various variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementation methods, but any obvious variations or modifications derived therefrom are still within the protection scope of this utility model.

Claims

1. A portable individual water purifier test fixture, characterized in that, The fixture includes a main body (15), a water receiving trough (17) is provided inside the main body (15), a filter screen assembly (18) is connected inside the water receiving trough (17), symmetrically distributed guide rails (11) are connected to the top two sides of the main body (15), a geared motor (1) and a mounting plate (3) are connected to one side of the main body (15), a control switch (4), a mobile power supply (5) and a speed regulator (6) are connected to the mounting plate (3), the speed regulator (6) is connected to the geared motor (1), the geared motor (1) and the speed regulator (6) are respectively connected to the mobile power supply (5) through the control switch (4), the transmission end of the geared motor (1) is connected to a connecting shaft (7) through a connecting rod (2), the two ends of the connecting shaft (7) are respectively connected to a connecting rod (8), the connecting rod (8) is connected to a corresponding guide rail (11) through a fixing block (9). The movable slider 1 (10) is connected to the fixed block 1 (9) and the two fixed blocks 1 (9) are connected by a connecting shaft 3 (28). The connecting shaft 3 (28) is connected to a fixed bracket (27). The fixed bracket (27) is detachably connected to a single-soldier water purifier (25) set in the water receiving tank (17) through a single-soldier fixing ring (26). The guide rail (11) is slidably connected to the movable slider 2 (13) and fixed by a fixing wire (14). The movable slider 2 (13) is connected to a fixed block 2 (12). The two fixed blocks 2 (12) are connected by a connecting shaft 2 (20). The connecting shaft 2 (20) is connected to a connecting rod 3 (19). The connecting rod 3 (19) is connected to the pump body of the single-soldier water purifier (25) through a single-soldier handle (21). The side wall of the tool body (15) is connected to multiple sets of positioning columns (22). The positioning columns (22) are connected to the external low point through positioning wire (23).

2. The portable individual water purifier test fixture of claim 1, wherein, The power source (5) is a rechargeable lithium battery.

3. The portable individual water purifier test fixture of claim 2, wherein, The tooling body (15) is a lightweight, high-strength aluminum alloy product.

4. The portable individual water purifier test fixture of claim 3, wherein, The tooling body (15) has a groove (16) on the other side that corresponds to the filter assembly (18).

5. The portable individual water purifier test fixture of claim 4, wherein, The tooling body (15) has multiple sets of evenly distributed drainage grooves (24) on its side.

6. The portable individual water purifier test fixture of claim 1, wherein, The filter assembly (18) is made of stainless steel.

7. The portable individual water purifier test fixture of claim 6, wherein, The filter assembly (18) includes a U-shaped slot frame (181) connected to the inner wall of the water receiving tank (17), a filter frame (182) inserted into the U-shaped slot frame (181), and a filter frame (182) embedded in the filter frame (182).

8. The portable individual water purifier test fixture of claim 1, wherein, The bottom of the positioning post (22) is provided with an anti-slip rubber pad.

9. The portable individual water purifier test fixture of claim 1, wherein, The individual soldier fixing ring (26) is an elastic ring.