Faucet test bench
By designing a fixture for fixing water taps and a water tank for collecting wastewater, combined with a pipeline system, water resources are recycled and residual water is removed. This solves the problems of water waste and improper handling of residual water, and improves testing efficiency and product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHONGSHAN BOSHENG ELECTROMECHANICAL EQUIP CO LTD
- Filing Date
- 2025-05-22
- Publication Date
- 2026-04-21
AI Technical Summary
Existing faucet testing equipment suffers from water waste and improper handling of residual water after testing, affecting testing efficiency and product quality.
A faucet test stand was designed, comprising a body, a workbench, an operating table, a fixture, a water tank, and a piping system. The fixture is tilted to fix the faucet, the water tank collects wastewater, the piping system enables water resource recycling, and residual moisture is removed through an air outlet and an air filter.
It enables the recycling of water resources, reduces waste, ensures testing accuracy and product quality, improves testing efficiency, prevents water accumulation and rust corrosion, and simplifies operating procedures.
Smart Images

Figure CN224152020U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of testing equipment, and in particular to a faucet testing platform. Background Technology
[0002] Currently, faucets are common fluid control devices in daily life and industrial fields, and their quality and performance directly affect user experience and safety. During the faucet manufacturing process, various performance tests are required, such as sealing performance, water flow rate, and water pressure resistance. Existing faucet testing equipment suffers from water waste during testing and improper handling of residual water after testing, thus affecting testing efficiency and product quality. Utility Model Content
[0003] Therefore, the purpose of this utility model is to provide a faucet test stand that can avoid water waste and remove water remaining in the faucet after testing.
[0004] The technical solution adopted by this utility model to solve its technical problem is as follows:
[0005] A faucet testing platform includes a body, a workbench mounted on the body, and an operating surface mounted on the body and located beside the workbench. A clamp for fixing a faucet is provided above the workbench, and a mounting base for fixing the clamp is provided on the workbench. The clamp is inclinedly mounted on the mounting base. A water storage tank is provided inside the body and below the clamp. A slot communicating with the water storage tank is provided on the workbench.
[0006] In a preferred embodiment of the present invention, the clamp includes a base plate inclinedly disposed on the mounting base, a plurality of positioning blocks disposed on the base plate for positioning the faucet, and a cylinder disposed on the upper end of the base plate for sealing the water inlet of the faucet.
[0007] In a preferred embodiment of this utility model, the positioning block is L-shaped and is disposed on the left and right sides and the bottom side of the base plate.
[0008] In a preferred embodiment of this utility model, the machine body and located below the clamp are provided with an air inlet for blowing air into the faucet and an air valve for controlling the blowing of air from the air inlet, and the air inlet of the machine body is provided with an air filter for purifying the air.
[0009] In a preferred embodiment of this utility model, the operating table is provided with a test water outlet connected to the faucet outlet via a pipe, and the machine body includes a water outlet pipe connected to the outlet of the water storage tank, an adjusting pipe connected to the outlet of the water storage tank and used to adjust the water flow of the water outlet pipe, and a control pipe assembly used to control the water pressure of the test water outlet.
[0010] In a preferred embodiment of this utility model, the control pipeline assembly includes a high-pressure control pipeline and a low-pressure control pipeline connected in parallel to the water outlet pipeline, and a first pressure gauge for displaying the high-pressure control pipeline or the low-pressure control pipeline; the high-pressure control pipeline includes a high-pressure pipe and a high-pressure valve disposed on the high-pressure pipe; the low-pressure control pipeline includes a low-pressure pipe and a pressure regulating valve, a flow meter, a needle valve and a low-pressure valve disposed sequentially on the low-pressure pipe.
[0011] In a preferred embodiment of this utility model, the water outlet pipeline includes a water outlet pipe, and a 1.5-inch filter and a water pump sequentially arranged on the water outlet pipe.
[0012] In a preferred embodiment of this utility model, the regulating pipeline includes a regulating pipe, and a 4-point ball valve, a second pressure gauge and a pressure sensor sequentially arranged on the regulating pipe.
[0013] In a preferred embodiment of this utility model, the inlet of the water storage tank is connected to a water inlet pipe, which includes a water inlet pipe and a 4-point ball valve, a 6-point filter and a 4-point angle seat valve arranged sequentially on the water inlet pipe.
[0014] In a preferred embodiment of this utility model, the machine body is provided with a drain outlet for drainage, and the water storage tank is provided with an overflow pipe and a drainage pipe connected to the drain outlet. The overflow pipe includes an overflow pipe, and the drainage pipe includes a drainage pipe and a 1-inch ball valve provided on the drainage pipe.
[0015] The beneficial effects of this utility model are as follows: The faucet testing stand includes a body, a workbench, and an operating surface. An inclined clamp is provided above the workbench, and a water storage tank is located inside the body and below the clamp. A slot connected to the water storage tank is also provided on the workbench. This allows the faucet to be stably fixed by the clamp, ensuring that the faucet position remains unchanged during testing and improving testing accuracy. Furthermore, the inclined clamp design facilitates smooth water flow after testing, preventing water accumulation on the faucet or clamp and ensuring product quality. Additionally, the water storage tank below collects wastewater generated during testing, achieving water resource recycling and reducing water waste. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the present invention;
[0017] Figure 2 This is a schematic diagram of the clamp in this utility model;
[0018] Figure 3 This is a schematic diagram of the piping inside the machine body of this utility model. Detailed Implementation
[0019] The technical solutions in the embodiments of this utility model will now be clearly and completely described in conjunction with the accompanying drawings.
[0020] Reference Figures 1 to 3 A faucet testing station includes a body 1, a workbench 11 mounted on the body 1, and an operating surface 12 mounted on the body 1 and located beside the workbench 11. A clamp 3 for fixing a faucet 2 is provided above the workbench 11, and a mounting base 13 for fixing the clamp 3 is provided on the workbench 11. The clamp 3 is inclinedly mounted on the mounting base 13. A water storage tank 4 is located inside the body 1 and below the clamp 3. A slot 14 communicating with the water storage tank 4 is provided on the workbench 11. The clamp 3 stably fixes the faucet 2, ensuring that the position of the faucet 2 remains unchanged during testing, thus improving testing accuracy. Furthermore, the inclined arrangement of the clamp 3 facilitates smooth water flow after testing, preventing water accumulation on the faucet 2 or the clamp 3 and ensuring product quality. The water storage tank 4 below collects wastewater generated during testing, achieving water resource recycling and reducing water waste.
[0021] In this design, the clamp 3 includes a base plate 31 inclinedly mounted on the mounting base 13, several positioning blocks 32 mounted on the base plate 31 for positioning the faucet 2, and a cylinder 33 mounted on the upper end of the base plate 31 for sealing the water inlet of the faucet 2. By using the cylinder 33 to seal the water inlet of the faucet 2, a fast and reliable seal is achieved, facilitating tests requiring sealed water inlets, such as water pressure tests. The operation is simple and testing efficiency is improved.
[0022] In this design, the positioning block 32 is L-shaped and is located on the left, right, and bottom sides of the base plate 31. This three-sided positioning effectively restricts the movement of the faucet 2. The positioning block 32 is fixed to the bottom via a threaded connection and has a slotted groove to facilitate adjustment of the positioning hole's position on the base plate 31. This adapts to the positioning requirements of faucets 2 of different shapes and sizes, improving the versatility of the clamp 3.
[0023] In this design, the machine body 1, located below the clamp 3, has an air inlet for blowing air into the faucet 2, and an air valve 15 for controlling the blowing. An air filter 16 for purifying the air is located at the air inlet of the machine body 1. This allows for the rapid removal of residual moisture inside and on the surface of the faucet 2 after testing, preventing rust and corrosion caused by moisture residue, protecting the quality of the faucet 2, facilitating subsequent drying and storage, improving the integrity of the test, and enhancing the convenience of subsequent processing. Furthermore, the air filter 16 purifies the air entering the machine body 1, removing dust and impurities to ensure clean air during the blowing process and prevent contamination of the faucet 2's interior.
[0024] In this design, the operating platform 12 is equipped with a test water outlet 17 connected to the water outlet of the faucet 2 via a pipe. The main body 1 includes a water outlet pipe 5 connected to the outlet of the water storage tank 4, a regulating pipe 6 connected to the outlet of the water storage tank 4 and used to regulate the water flow rate of the water outlet pipe 5, and a control pipe assembly 7 for controlling the water pressure of the test water outlet. Because the test water outlet 17 is connected to the water outlet of the faucet 2 via a pipe, test water can be easily introduced into the faucet 2 for testing items such as water flow rate and water pressure. This connection method is simple, reliable, and easy to operate. The water outlet pipe 5 is used to transport water from the water storage tank 4 to the testing system, realizing the recycling of water resources. The regulating pipe 6 can adjust the water flow rate of the water outlet pipe 5 to meet the water flow rate requirements of different testing items, improving the adaptability and flexibility of the testing platform. The control pipe assembly 7 is used to control the water pressure of the test water outlet, enabling precise adjustment of the water pressure to achieve high-pressure or low-pressure testing, meeting different testing standards.
[0025] Specifically, the control piping group 7 includes a high-pressure control piping 71 and a low-pressure control piping 72 connected in parallel to the outlet piping 5, and a first pressure gauge 73 for displaying the pressure of the high-pressure control piping 71 or the low-pressure control piping 72. The high-pressure control piping 71 includes a high-pressure pipe 711 and a high-pressure valve 712 installed on the high-pressure pipe 711. The low-pressure control piping 72 includes a low-pressure pipe 721 and a pressure regulating valve 722, a flow meter 723, a needle valve 724, and a low-pressure valve 725 sequentially installed on the low-pressure pipe 721. The outlet piping 5 includes an outlet pipe 51 and a 1.5-inch filter 52 and a water pump 53 sequentially installed on the outlet pipe 51. The regulating piping 6 includes a regulating pipe 61 and a 4-point ball valve 62, a second pressure gauge 63, and a pressure sensor 64 sequentially installed on the regulating pipe 61.
[0026] In this scheme, in order to facilitate the control of water inlet, the inlet of the water storage tank 4 is connected to the water inlet pipe 8. The water inlet pipe 8 includes a water inlet pipe 81, and a 4-point ball valve 82, a 6-point filter 83 and a 4-point angle seat valve 84 arranged sequentially on the water inlet pipe 81.
[0027] In this design, to facilitate drainage control and prevent water from overflowing from the water storage tank 4, the body 1 is provided with a drain outlet 18 for drainage. The water storage tank 4 is provided with an overflow pipe 9 and a drainage pipe 10 connected to the drain outlet 18. The overflow pipe 9 includes an overflow pipe 91 connected to the overflow outlet of the water storage tank 4. The drainage pipe 10 includes a drainage pipe 101 connected to the drain outlet 18 of the water storage tank 4 and a 1-inch ball valve 102 installed on the drainage pipe 101.
[0028] Based on the above-described preferred embodiments of this utility model, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the technical concept of this utility model. The technical scope of this utility model is not limited to the contents of the specification, but must be determined according to the scope of the claims.
Claims
1. A faucet testing station comprising a housing (1), a worktable (11) arranged on said housing (1), and an operation table (12) arranged on said housing (1) and located beside said worktable (11), characterized in that, The workbench (11) is provided with a clamp (3) for fixing the faucet (2) above it. The workbench (11) is provided with a mounting base (13) for fixing the clamp (3). The clamp (3) is inclined on the mounting base (13). The machine body (1) is provided with a water storage tank (4) located below the clamp (3). The workbench (11) is provided with a slot (14) that communicates with the water storage tank (4).
2. A faucet testing station according to claim 1, wherein, The clamp (3) includes a base plate (31) inclined on the mounting base (13), a number of positioning blocks (32) on the base plate (31) for positioning the faucet (2), and a cylinder (33) on the upper end of the base plate (31) for blocking the water inlet of the faucet (2).
3. A faucet testing station according to claim 2, wherein, The positioning block (32) is L-shaped and is located on the left and right sides and the bottom side of the base plate (31).
4. The faucet testing station of claim 1, wherein, The body (1) is provided with an air inlet for blowing air into the faucet (2) and an air valve (15) for controlling the blowing air inlet. An air filter (16) for purifying air is provided at the air inlet of the body (1).
5. A faucet testing stand according to any one of claims 1 to 4, characterized in that, The operating table (12) is provided with a test water outlet (17) connected to the water outlet of the faucet (2) via a pipe. The machine body (1) includes a water outlet pipe (5) connected to the outlet of the water storage tank (4), a regulating pipe (6) connected to the outlet of the water storage tank (4) and used to regulate the water flow of the water outlet pipe (5), and a control pipe group (7) used to control the water pressure of the test water outlet.
6. A faucet testing station according to claim 5, wherein, The control pipeline assembly (7) includes a high-pressure control pipeline (71) and a low-pressure control pipeline (72) connected in parallel to the water outlet pipeline (5), and a first pressure gauge (73) for displaying the high-pressure control pipeline (71) or the low-pressure control pipeline (72); the high-pressure control pipeline (71) includes a high-pressure pipe (711) and a high-pressure valve (712) installed on the high-pressure pipe (711); the low-pressure control pipeline (72) includes a low-pressure pipe (721) and a pressure regulating valve (722), a flow meter (723), a needle valve (724) and a low-pressure valve (725) installed sequentially on the low-pressure pipe (721).
7. A faucet testing station according to claim 5, wherein, The water outlet pipeline (5) includes a water outlet pipe (51), and a 1.5-inch filter (52) and a water pump (53) arranged sequentially on the water outlet pipe (51).
8. A faucet testing station according to claim 5, wherein, The regulating pipeline (6) includes a regulating pipe (61), and a 4-point ball valve (62), a second pressure gauge (63), and a pressure sensor (64) sequentially arranged on the regulating pipe (61).
9. A faucet testing station according to claim 5, wherein, The water tank (4) is connected to an inlet pipe (8), which includes an inlet pipe (81) and a 4-point ball valve (82), a 6-point filter (83) and a 4-point angle seat valve (84) arranged sequentially on the inlet pipe (81).
10. The faucet testing station of claim 5, wherein, The body (1) is provided with a drain outlet (18) for drainage. The water storage tank (4) is provided with an overflow pipe (9) and a drainage pipe (10) connected to the drain outlet (18). The overflow pipe (9) includes an overflow pipe (91), and the drainage pipe (10) includes a drainage pipe (101) and a 1-inch ball valve (102) provided on the drainage pipe (101).