Detection device, detection equipment and production system of toy faucet

By designing a toy faucet testing device that combines a fixed mold and a central control box with an air pump and airtightness testing components, the problems of low testing efficiency of water pump impellers and long testing time of airtightness are solved, achieving efficient and accurate testing results.

CN223856703UActive Publication Date: 2026-01-30ZHUHAI CITY XIEJUN TOYS LTD
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Patent Information

Application Number
CN202520493532.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2026-01-30
Estimated Expiration
2035-03-20

AI Technical Summary

Technical Problem

In existing technologies, the testing efficiency and accuracy of water pump impellers in toy faucets are low, and the airtightness testing is time-consuming, making it difficult to effectively control product quality.

Method used

A testing device comprising a fixed mold, a limiting component, and a central control box was designed. By combining an air pump and an airtightness testing component with a digital ammeter, the device enables simultaneous testing of the water pump impeller and airtightness, thereby improving testing efficiency and accuracy.

Benefits of technology

This technology enables one-time testing of the water pump impeller and airtightness of toy faucets, improving testing efficiency and accuracy, reducing manual intervention, and enhancing product quality control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a detection device, detection equipment and production system for a toy faucet, and the detection device for the toy faucet comprises a fixed mold which is used for placing the toy faucet; the first limiting assembly is located on one side of the fixed mold and comprises an inflation base and a first driving assembly which are connected, the inflation base is provided with an air outlet and an air inlet which are communicated, and the air outlet and the water inlet are connected or separated under driving of the first driving assembly; the central control box is provided with a button, a controller, and a power supply, a digital ampere meter, an air pump, an air pipe and an air tightness test assembly which are connected with the controller, the air pipe is connected to the air pump and the air inlet, the button is electrically connected to the power supply, the power supply is electrically connected to the air pump and the digital ampere meter, and the digital ampere meter is detachably connected with the water pump impeller. According to the technical scheme of the embodiment, the detection of the water pump impeller and the air tightness of the toy faucet can be completed at a time, and the detection efficiency and the detection accuracy of the toy faucet are improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of toy detection, especially relates to a detection device, detection equipment, production system of toy water faucet. BACKGROUND

[0002] The toy water faucet comprises a water inlet, a water outlet, a valve and a water pump impeller. The toy water faucet is powered by dry batteries to supply power to the valve and the water pump impeller. When the power is turned on, the water pump impeller and the valve are opened. The water flow is realized by the water pump impeller, flows into the water inlet of the toy water faucet, passes through the opened valve, and flows out of the water outlet. When the power is turned off, the water pump impeller stops rotating and the valve is closed.

[0003] When the water pump impeller is installed in the toy water faucet, the quality detection of the water pump impeller is realized by manually observing the water pump impeller with the naked eye to determine whether the water pump impeller is deformed or worn. Before the toy water faucet is shipped, a certain amount of gas is input into the water inlet through a gas pump and a gas pressure sensor, and then sealed. The air tightness of the toy water faucet is detected based on the value of the gas pressure sensor. However, this detection method is low in efficiency, time-consuming, and low in detection accuracy of the water pump impeller, which is not conducive to the quality control of the toy water faucet produced by the toy manufacturer. UTILITY MODEL CONTENT

[0004] The utility model embodiment provides a kind of detection device, detection equipment, production system of toy water faucet, can complete the water pump impeller and air tightness detection of toy water faucet in one time and improve the test accuracy of water pump impeller, to improve the detection efficiency and detection accuracy of toy water faucet.

[0005] In the first aspect, the utility model embodiment provides a kind of detection device of toy water faucet, comprising:

[0006] The fixed mold is used to place the toy water faucet, and the toy water faucet comprises a water inlet, a water outlet, a valve and a water pump impeller, and the valve is in a closed state;

[0007] The first limiting component is located at one side of the fixed mold, and the first limiting component comprises an inflation seat and a first driving component, the inflation seat is connected with the first driving component, the inflation seat is provided with a communicating gas outlet and air inlet, and the gas outlet and the water inlet are connected or separated under the driving of the first driving component;

[0008] The utility model relates to a central control box, the outside of central control box is provided with button, the inside of central control box is provided with controller, power, digital ammeter, air pump, air pipe and air tightness test subassembly, the controller is connected with power, digital ammeter, air pump and air tightness test subassembly respectively, one end of air pipe is connected to air pump, the other end of air pipe is connected with air inlet, button electricity is connected with power, power electricity is connected with air pump and digital ammeter, digital ammeter is detachably connected with water pump impeller.

[0009] According to some embodiments of the utility model, the air tightness test subassembly is a glass bead, the glass bead is located in the air pipe, the air pipe is provided with a mark, and under the action of the air pump, the glass bead can move to the position of the air pipe corresponding to the mark.

[0010] According to some embodiments of the utility model, the central control box further comprises a display screen, the display screen is electrically connected to the controller, and the display screen is used for displaying the reading of the digital ammeter.

[0011] According to some embodiments of the utility model, the air tightness test subassembly is a gas pressure sensor, the gas pressure sensor is electrically connected to the controller, and the display screen is further used for displaying the reading of the gas pressure sensor.

[0012] According to some embodiments of the utility model, further comprising a second limiting assembly, the second limiting assembly is located above the fixed mold, the second limiting assembly is used for providing the vertical direction limiting for the toy faucet, and the second limiting assembly comprises a second driving assembly and an abutting head, the second driving assembly is connected with the abutting head, and under the driving of the second driving assembly, the abutting head approaches or moves away from the fixed mold.

[0013] According to some embodiments of the utility model, the first driving assembly and the second driving assembly are both elbow clamp structures.

[0014] According to some embodiments of the utility model, the first driving assembly and the second driving assembly are both air cylinders.

[0015] According to some embodiments of the utility model, the caliber of the air outlet is greater than the caliber of the water inlet, and the abutting part of the air outlet and the water inlet is made of silica gel.

[0016] In the second aspect, the utility model further provides a detection device, which comprises the detection device of the toy faucet according to the first aspect.

[0017] In a third aspect, the utility model embodiment further provides a production system, including the detection device of toy faucet as described in the first aspect, or, including the detection equipment as described in the second aspect.

[0018] The utility model embodiment includes: fixed mould, the fixed mould is used for placing toy faucet, the toy faucet includes water inlet, water outlet and water pump impeller;First limit component, the first limit component is located one side of the fixed mould, the first limit component includes air seat and first drive component, the air seat is connected with the first drive component, the air seat is provided with the communicating air outlet and air inlet, under the drive of the first drive component, the air outlet and the water inlet are connected or separated with each other;Central control box, the outside of central control box is provided with button, the inside of central control box is provided with controller, power, digital ammeter, air pump, air pipe and air tightness test component, the controller is connected with power, digital ammeter, air pump and air tightness test component respectively, one end of air pipe is connected to the air pump, the other end of air pipe is connected with the air inlet, the button is electrically connected to the power, the power is electrically connected to the air pump and digital ammeter, digital ammeter is detachably connected with the water pump impeller.According to the technical scheme of this embodiment, the toy faucet with the water pump impeller in the working state is placed in the fixed mould, the air outlet and the water inlet are connected, and the digital ammeter and the water pump impeller are connected, the button is pressed, the power supply is supplied to the digital ammeter and the air pump, and the controller obtains the quality detection result and the air tightness result of the water pump impeller of the toy faucet based on the digital ammeter reading and the air tightness test component. Compared with the step-by-step air tightness detection of the toy faucet and the quality detection of the water pump impeller by artificial, the application can complete the quality detection and air tightness detection of the water pump impeller of the toy faucet at one time and improve the test accuracy of the water pump impeller, thereby improving the detection efficiency and accuracy of the toy faucet. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is the structure schematic diagram of the detection device of the toy faucet of the first drive component and the second drive component of the utility model one embodiment for elbow clamp structure. DETAILED DESCRIPTION

[0020] In order to make the purpose, technical scheme and advantage of the utility model more clearly, the following is combined with the embodiment, and the utility model is further detailed.The specific embodiments described here are only used to explain the utility model, and are not used to limit the utility model.

[0021] It is to be understood that, while the functions of the modules are described in the device schematic, the logical sequence of the steps shown in the flow chart can be performed in different order than the order shown or described. The terms "first", "target", and the like in the specification, claims, or above-described drawings are used to distinguish like objects, and are not necessarily used to describe a particular sequential or chronological order.

[0022] The utility model embodiment includes: fixed mould, the fixed mould is used for placing toy water faucet, the toy water faucet includes water inlet, water outlet and water pump impeller, first limit component, the first limit component is located one side of the fixed mould, the first limit component includes aeration seat and first drive component, the aeration seat is connected with the first drive component, the aeration seat is provided with the gas outlet and the air inlet of intercommunication, under the drive of the first drive component, the gas outlet is connected with the water inlet or separates each other, central control box, the outside of the central control box is provided with button, the inside of the central control box is provided with controller, power, digital ammeter, air pump, air pipe and air tightness test component, the controller is connected with power, digital ammeter, air pump and air tightness test component respectively, one end of air pipe is connected to the air pump, the other end of air pipe is connected with the air inlet, the button is electrically connected to the power, the power is electrically connected to the air pump and digital ammeter, digital ammeter is detachably connected with the water pump impeller. According to the technical scheme of the embodiment, the toy water faucet with the water pump impeller in the working state is placed in the fixed mould, the gas outlet and the water inlet are connected, and the digital ammeter and the water pump impeller are connected, the button is pressed, the power supply is supplied to the digital ammeter and the air pump, and the controller obtains the quality detection result and the air tightness result of the water pump impeller of the toy water faucet based on the digital ammeter reading and the air tightness test component. Compared with the step-by-step air tightness detection of the toy water faucet and the quality detection of the water pump impeller by artificial, the application can complete the quality detection and air tightness detection of the water pump impeller of the toy water faucet at one time and improve the test accuracy of the water pump impeller, thereby improving the detection efficiency and accuracy of the toy water faucet.

[0023] Reference Figure 1 The detection device for the toy water faucet provided by the embodiment includes:

[0024] The fixed mould 20 is used for placing the toy water faucet 10, and the toy water faucet 10 includes a water inlet, a water outlet, a valve and a water pump impeller, and the valve is in a closed state.

[0025] The first limiting assembly is located at one side of the fixed mold 20, and comprises an inflation seat 32 and a first driving assembly 31. The inflation seat 32 is connected with the first driving assembly 31, and is provided with a communicating air outlet and an air inlet. Under the driving of the first driving assembly 31, the air outlet and the water inlet are connected or separated from each other.

[0026] The central control box 40 is externally provided with a button 41, and is internally provided with a controller, a power supply, a digital ammeter, an air pump, an air pipe 42 and an air tightness testing assembly. The controller is connected with the power supply, the digital ammeter, the air pump and the air tightness testing assembly respectively. One end of the air pipe 42 is connected with the air pump, and the other end of the air pipe 42 is connected with the air inlet. The button 41 is electrically connected with the power supply. The power supply is electrically connected with the air pump and the digital ammeter. The digital ammeter is detachably connected with the water pump impeller.

[0027] It should be noted that the fixed mold 20 can be replaced according to the shape of the toy faucet 10. In order to obtain accurate air tightness test results of the toy faucet, the valve is kept closed during the detection process, so that the interior of the toy faucet connected with the air pipe is a closed space. The air tightness test results of the toy faucet are obtained based on the air pressure of the closed space.

[0028] It should be noted that the first driving assembly 31 drives the inflation seat 32 to move towards the fixed mold 20, so that the air outlet and the water inlet are connected with each other and provide horizontal limiting for the toy faucet 10 and the fixed mold 20. After the test of the toy faucet 10 is completed, the first driving assembly 31 drives the inflation seat 32 to move away from the fixed mold 20, so that the air outlet and the water inlet are separated.

[0029] It should be noted that pressing the button 41 sends an electric signal to the power supply. The power supply supplies power to the air pump and the digital ammeter under the condition of receiving the electric signal. The air pump delivers gas to the air pipe 42. The air tightness test results of the toy faucet 10 are obtained based on the air tightness testing assembly. The real-time current value of the water pump impeller is measured and displayed by the digital ammeter. Whether the water pump impeller passes the quality detection is determined based on the current value displayed by the digital ammeter.

[0030] It should be noted that the air pump works to deliver gas to the air pipe 42. Under the condition that the air outlet and the water inlet are connected with each other, the gas enters the water inlet through the inflation seat 32 from the air pipe 42, i.e. enters the interior of the toy faucet 10. The air tightness testing assembly is used to obtain the air tightness test results of the toy faucet 10.

[0031] Exemplarily, the air-tightness testing component is a glass bead, the air pump works to deliver air to the air pipe 42, the glass bead moves inside the air pipe 42 under the action of the air flow, after the air pump is turned off, the glass bead is located in a closed space, the air pressure of the closed space is the air pressure inside the toy water faucet 10, whether the glass bead moves inside the air pipe 42 within a certain time is judged by artificial, if there is no movement or the movement length is less than a threshold value, the air-tightness of the toy water faucet 10 is good, the water faucet passes the air-tightness test; if the movement length of the glass bead is greater than the threshold value, the toy water faucet 10 fails the air-tightness test.

[0032] Exemplarily, the air-tightness testing component is an air pressure sensor, within a certain time, the fluctuation degree of the air pressure sensor is lower than a preset threshold value, the air-tightness of the toy water faucet 10 is good, the toy water faucet 10 passes the air-tightness test; if within a certain time, the fluctuation degree of the air pressure sensor is higher than the preset threshold value, the toy water faucet 10 fails the air-tightness test.

[0033] It should be noted that how to obtain the air pressure fluctuation range of a closed space by an air-tightness testing component is prior art, those skilled in the art should know how to obtain the air pressure change of a closed space by a glass bead or an air pressure sensor, the present application does not improve how to obtain the air pressure change of a closed space by an air-tightness testing component, and will not be described here.

[0034] It should be noted that after the digital ammeter is connected to both ends of the water pump impeller, the button 41 is pressed, the power supply supplies power to the digital ammeter, the digital ammeter measures and displays the current of the water pump impeller, the staff judges whether the display of the digital ammeter is within the rated current range of the water pump impeller, when the blades of the water pump impeller are deformed or worn, the load of the water pump impeller will increase, at this time, the display is greater than or less than the rated current range of the water pump impeller, the staff detects the current of the water pump impeller to detect the quality of the water pump impeller. After the test of the toy water faucet 10 is completed, the connection between the digital ammeter and the water pump impeller is disconnected.

[0035] It should be noted that before the toy faucet 10 is tested, the water pump impeller of the toy faucet 10 is in working condition, and the valve of the toy faucet 10 is in closed condition; the toy faucet 10 is placed in the fixed mold 20, the first driving assembly 31 is used to provide horizontal direction limiting for the toy faucet 10 and connect the air outlet to the water inlet, and the digital ammeter is connected at both ends of the water pump impeller; the button 41 is pressed, the power supply supplies power to the air pump and the digital ammeter, the air pump delivers air to the air pipe 42, and the digital ammeter reads the real-time current of the water pump impeller; the air tightness test result of the toy faucet 10 is obtained based on the air tightness test assembly, the operator obtains the water pump impeller quality test result and the air tightness test result of the toy faucet 10 based on the reading of the digital ammeter and the air tightness test assembly, and classifies the toy faucet 10 as a qualified product or an unqualified product. After the test is completed, the first driving assembly 31 is used to drive the air filling seat 32 to move away from the fixed mold 20, and the air outlet is separated from the water inlet; and the connection between the digital ammeter and the water pump impeller is disconnected, and the toy faucet 10 is taken out. Thus, the test process of one toy faucet 10 is completed.

[0036] In addition, in an embodiment, referring to Figure 1 , the air tightness test assembly is a glass bead, the glass bead is located in the air pipe 42, and the pipeline of the air pipe 42 is provided with a mark. Under the action of the air pump, the glass bead can move to the position of the air pipe 42 corresponding to the mark.

[0037] It should be noted that the air tightness test assembly is a glass bead, the air pump works to deliver air to the air pipe 42, and the glass bead moves in the air pipe 42 under the action of the airflow. After the air pump is turned off, the glass bead is located in a closed space, the air pressure of the closed space is the air pressure inside the toy faucet 10, whether the glass bead moves in the air pipe 42 within a certain time is judged manually, if there is no movement or the movement length is less than a threshold value, the toy faucet 10 has good air tightness, and the faucet passes the air tightness test; if the movement length of the glass bead is greater than the threshold value, the toy faucet 10 fails the air tightness test.

[0038] In addition, in an embodiment, referring to Figure 1 , the central control box 40 further includes a display screen 43, and the display screen 43 is electrically connected to the controller. The display screen 43 is used to display the reading of the digital ammeter.

[0039] It should be noted that the display screen 43 is arranged outside the central control box 40 for the staff to read the digital ammeter. The display screen 43 is pre-set with a display program based on the rated current. When the current value sent by the controller is within the rated range, it is displayed in green; when the current value sent by the controller is greater than or less than the rated range, it is displayed in red.

[0040] In another embodiment, referring to Figure 1The air tightness testing assembly is an air pressure sensor, the air pressure sensor is electrically connected to the controller, and the display screen 43 is further used to display the reading of the air pressure sensor.

[0041] It should be noted that the air tightness testing assembly is an air pressure sensor. If the fluctuation degree of the reading of the air pressure sensor is lower than the preset threshold within a certain time, the air tightness of the toy faucet 10 is good, and the toy faucet 10 passes the air tightness test. If the fluctuation degree of the reading of the air pressure sensor is higher than the preset threshold within a certain time, the toy faucet 10 does not pass the air tightness test.

[0042] It should be noted that the air pressure sensor sends the reading to the controller, the controller obtains the fluctuation range of the air pressure reading based on the reading and sends it to the display screen 43, and the display screen 43 displays the real-time reading of the air pressure sensor and the fluctuation range of the reading of the air pressure sensor.

[0043] In addition, in an embodiment, referring to Figure 1 Further comprising a second limiting assembly, the second limiting assembly is located above the fixed mold 20, and the second limiting assembly is used to provide vertical limiting for the toy faucet 10. The second limiting assembly comprises a second driving assembly 51 and an abutting head 52, the second driving assembly 51 is connected with the abutting head 52, and under the driving of the second driving assembly 51, the abutting head 52 approaches or moves away from the fixed mold 20.

[0044] It should be noted that the second driving assembly 51 is connected to the upper end of the abutting head 52, and the movement of the abutting head 52 in the vertical direction is realized through the second driving assembly 51, so as to provide vertical limiting for the toy faucet 10 placed in the fixed mold 20.

[0045] In addition, in an embodiment, referring to Figure 1 The first driving assembly 31 and the second driving assembly 51 are both elbow clamp structures.

[0046] It should be noted that the elbow clamp structure comprises a handle, the first driving assembly 31 is connected to one end of the inflation seat 32 away from the fixed mold 20, and the second driving assembly 51 is connected to the upper end of the abutting head 52. When the toy faucet 10 placed in the fixed mold 20 is limited by the first limiting assembly and the second limiting assembly, the worker holds the handle, rotates the handle of the first limiting assembly towards the inflation seat 32, rotates the handle of the second limiting assembly towards the abutting head 52, and realizes the movement of the inflation seat 32 and the abutting head 52 towards the fixed mold 20. After the test of the toy faucet 10 is completed, the worker holds the handle, rotates the handle of the first limiting assembly away from the inflation seat 32, rotates the handle of the second limiting assembly away from the abutting head 52, and realizes the movement of the inflation seat 32 and the abutting head 52 away from the fixed mold 20, so as to take out the toy faucet 10 from the fixed mold 20.

[0047] In another embodiment, referring to Figure 1 , the first driving assembly and the second driving assembly are both air cylinders.

[0048] It should be noted that the first driving assembly is connected to the air seat 32 at the end far away from the fixed mold 20, and the second driving assembly is connected to the abutting head 52 at the end far away from the fixed mold 20. When the toy faucet 10 placed in the fixed mold 20 needs to be limited by the first limiting assembly and the second limiting assembly, the air cylinder works to move the air seat 32 and the abutting head 52 towards the fixed mold 20; after the test of the toy faucet 10 is completed, the air cylinder drives the air seat 32 and the abutting head 52 to move away from the fixed mold 20, so as to take out the toy faucet 10 from the fixed mold 20. By driving the abutting head and the air seat by the air cylinder, the labor cost can be reduced, and the automatic detection of the toy faucet can be realized.

[0049] In addition, in an embodiment, the diameter of the air outlet is greater than that of the water inlet, and the abutting part of the air outlet and the water outlet is made of silica gel.

[0050] It should be noted that when the air outlet is connected to the water inlet, because the diameter of the air outlet is greater than that of the water inlet, the air outlet is sleeved on the water inlet, and the abutting part of the air outlet and the water inlet is made of silica gel, which can prevent air leakage at the connection between the air outlet and the water inlet, thereby ensuring the accuracy of the air tightness test result of the toy faucet 10.

[0051] It should be noted that before the toy faucet 10 is tested, the water pump impeller of the toy faucet 10 is in working condition, and the valve of the toy faucet 10 is in closed condition; the toy faucet 10 is placed in the fixed mold 20, the digital ammeter is connected at both ends of the water pump impeller, the first driving assembly 31 is used to provide horizontal direction limiting for the toy faucet 10 together with the fixed mold 20, and the air outlet is connected to the water inlet; the second driving assembly 51 is used to provide vertical direction limiting for the toy faucet 10. The button 41 is pressed, the power supply supplies power to the air pump and the digital ammeter, the digital ammeter reads the real-time current of the water pump impeller, and the air pump delivers air to the air pipe 42; the digital ammeter sends the reading to the display screen 43 through the controller, and the display screen 43 displays the real-time reading of the digital ammeter, that is, the real-time current value of the water pump impeller. When the air tightness test assembly is a glass bead, the worker judges whether the toy faucet 10 passes the air tightness test based on the moving length of the glass bead in the air pipe 42 after the air pump is turned off; when the air tightness test assembly is an air pressure sensor, the worker judges whether the toy faucet 10 passes the air tightness test based on the fluctuation value of the reading of the air pressure sensor after the air pump is turned off, and the air pressure sensor sends the reading to the display screen 43 through the controller, and the display screen 43 displays the real-time reading of the air pressure sensor and the fluctuation value of the reading of the air pressure sensor, that is, the air pressure and the air pressure fluctuation value in the toy faucet 10. The operator obtains the air tightness test result of the toy faucet 10 based on the air tightness test assembly, obtains the quality test result of the water pump impeller based on the display of the display screen 43, and classifies the toy faucet 10 as a qualified product or an unqualified product based on the quality test result and the air tightness test result of the water pump impeller of the toy faucet 10. After the test is completed, the first driving assembly 31 drives the air filling seat 32 to move away from the fixed mold 20, and the air outlet is separated from the water inlet; the second driving assembly 51 drives the abutting head 52 to move away from the fixed mold 20, the toy faucet 10 is taken out, and the connection between the digital ammeter and the water pump impeller is disconnected. Thus, the process of air tightness test and water pump impeller test for one toy faucet 10 is completed.

[0052] In an embodiment, the utility model embodiment further provides a detection equipment, including the detection device of toy faucet as described above.

[0053] It should be noted that the detection equipment can be the detection device of toy faucet itself, or other equipment applying the detection device of toy faucet, for example, the test line equipment of toy faucet 10, and the specific type of the detection equipment is not limited in the application as long as the detection device of toy faucet can be used.

[0054] In addition, the utility model embodiment further provides a production system, including the detection device of toy faucet as described above, or including the detection equipment as described above.

[0055] It should be noted that the production system can be the device of the detection device of the toy faucet itself, or other devices applying the detection device of the toy faucet, such as the production line device of the toy faucet 10, etc., and the embodiment does not limit the specific type of the production system, and the detection device of the toy faucet can be applied.

[0056] Other embodiments of the application will be apparent to those skilled in the art from consideration of the specification and practice of the embodiments disclosed herein. Variations and modifications of the present application are possible in light of the above teachings, and it is thus intended to cover any variations and modifications in the scope of the application included within its spirit and principles. It is to be understood that the application is not limited to particular examples, and is intended to cover any and all alternatives, modifications, and equivalents.

[0057] It is to be understood that the application is not limited to the precise details of construction and the above-described embodiments, and that various modifications and changes can be made by those skilled in the art without departing from the scope of the application. The scope of the application should only be limited by the claims appended hereto.

[0058] The above is a specific description of the preferred embodiment of the utility model, but the utility model is not limited to the above-mentioned implementation, and those skilled in the art can make various equivalent modifications or replacements without departing from the spirit of the utility model, and these equivalent modifications or replacements are all included in the range defined by the claims of the utility model.

Claims

1. A detection device for a toy faucet, characterized in that, The utility model relates to a detection device for toy water faucet, which comprises the following parts: a fixed mold for placing a toy water faucet, the toy water faucet comprising a water inlet, a water outlet, a valve in a closed state and a water pump impeller; a first limiting component on one side of the fixed mold, the first limiting component comprising an air charging seat and a first driving component, the air charging seat being connected with the first driving component, the air charging seat being provided with a communicating air outlet and an air inlet, the air outlet and the water inlet being connected or separated under the driving of the first driving component; a central control box, the outside of the central control box being provided with a button, the inside of the central control box being provided with a controller, a power supply, a digital ammeter, an air pump, an air pipe and an air tightness testing component, the controller being connected with the power supply, the digital ammeter, the air pump and the air tightness testing component respectively, one end of the air pipe being connected with the air pump, the other end of the air pipe being connected with the air inlet, the button being electrically connected with the power supply, the power supply being electrically connected with the air pump and the digital ammeter, the digital ammeter being detachably connected with the water pump impeller.

2. The detection device for toy water faucet according to claim 1, wherein the air tightness testing component is a glass bead, the glass bead being located in the air pipe, the air pipe being provided with a mark, the glass bead being able to move to the position of the air pipe corresponding to the mark under the action of the air pump.

3. The detection device for toy water faucet according to claim 1, wherein the central control box further comprises a display screen, the display screen being electrically connected with the controller, the display screen being used for displaying the reading of the digital ammeter.

4. The detection device for toy water faucet according to claim 3, wherein the air tightness testing component is an air pressure sensor, the air pressure sensor being electrically connected with the controller, the display screen being further used for displaying the reading of the air pressure sensor.

5. The toy faucet detection apparatus of claim 1, wherein, Further comprising a second limiting component above the fixed mold, the second limiting component being used for providing vertical limiting for the toy water faucet, the second limiting component comprising a second driving component and an abutting head, the second driving component being connected with the abutting head, the abutting head being close to or away from the fixed mold under the driving of the second driving component.

6. The detection device for toy water faucet according to claim 5, wherein the first driving component and the second driving component are both elbow clamp structures.

7. The detection device for toy water faucet according to claim 5, wherein the first driving component and the second driving component are both air cylinders.

8. The detection device for toy water faucet according to claim 1, wherein the caliber of the air outlet is larger than that of the water inlet, the abutting part of the air outlet and the water inlet being made of silica gel.

9. A detection equipment, comprising the detection device for toy water faucet according to any one of claims 1 to 8.

10. A production system, characterized by A detection device comprising a toy tap as claimed in any one of claims 1 to 8, or a detection apparatus as claimed in claim 9.