A children's anti-drowning smart watch detection device

By designing a smart watch detection device for children who are anti-drowning, simulating the drowning scene of the wearer, and using ice slag to detect the performance of the watch, solving the problems of single functions and complex detection in the existing technology, and achieving efficient and accurate detection of multiple performances.

CN116382055BActive Publication Date: 2025-08-12SHENZHEN XUNWEI ZHILIAN TECH CO LTD
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Patent Information

Application Number
CN202310367938.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-08
Publication Date
2025-08-12
Estimated Expiration
2043-04-08

AI Technical Summary

Technical Problem

The existing technology lacks actual simulation and detection equipment for children with drowning prevention, and the existing watch detection equipment has a single function, and when detecting multiple data, the detection process is complicated.

Method used

A smart watch detection device for children who are anti-drowning is designed, including installation of a shell, detection cylinder, water inlet pipe, partition, drive components and wear-resistant detection system. By simulating the hand turning and body movement of the wearer when drowning, it combines ice slag to detect the watch's anti-drowning, wear resistance, water resistance, impact resistance, pressure and other properties.

Benefits of technology

It realizes efficient and accurate detection of multiple performances of children's smart watches for drowning prevention, avoids residues of gravel or dust during the inspection process, simplifies the inspection process, and improves detection accuracy and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a detection device, and in particular to a detection device for a child's anti-drowning smart watch. The existing technology lacks an actual simulation detection device for an anti-drowning watch. The technical solution is: a detection device for a child's anti-drowning smart watch, including a mounting shell, a detection cylinder and a water inlet pipe, etc.; the mounting shell is connected to the detection cylinder; the detection cylinder is connected to the water inlet pipe; it also includes a partition, a drive assembly and a wear-resistant detection system; the detection cylinder is connected to the drive assembly; the drive assembly is connected to the partition, and the partition is driven to rise or fall and rotate by the drive assembly; the mounting shell is installed with a wear-resistant detection system. The present invention can simulate the real scene of the wearer's hands constantly flipping and the body moving up and down in the water when drowning, to detect the anti-drowning performance of the watch, so that the performance of the watch can be accurately known and the wearer can be protected.
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Description

Technical Field

[0001] The present invention relates to a detection device, and in particular to a detection device for a children's smart watch to prevent drowning. Background Art

[0002] In the existing technology, there are few detection devices for children's watches, especially devices for detecting children's watches at different depths. The latest children's watches also have waterproof functions, and some watches also have anti-drowning functions. For example, the Chinese patent with publication number CN112286036B discloses an anti-drowning smart watch. The existing technology lacks actual simulation detection equipment for anti-drowning watches.

[0003] Moreover, watches are inevitably subject to wear and tear in daily life. Existing technologies for testing the wear resistance of watches all use sandpaper, sand, or dust. In this way, sandpaper fragments, sand, or dust will remain on the surface of the watch, resulting in inaccurate subsequent judgments. In addition, existing watch testing equipment only has a single function. When testing multiple data, it is necessary to switch between several devices or scenes, making the testing process complicated. Summary of the Invention

[0004] In order to overcome the shortcomings of the existing technology that lacks actual simulation detection equipment for anti-drowning watches, and the existing watch detection equipment only has a single function, and when detecting multiple data, it is necessary to switch several devices or scenes, and the detection process is complicated, the present invention provides an anti-drowning children's smart watch detection device.

[0005] The technical solution is: a drowning prevention smart watch detection device for children, including an installation shell, a detection cylinder, a water inlet pipe, a first bottom plate and a switch assembly; the installation shell is connected to the detection cylinder; the detection cylinder is connected to the water inlet pipe; the bottom of the detection cylinder is detachably connected to the first bottom plate; the installation shell is connected to the switch assembly, and the opening above the detection cylinder is opened or closed by the switch assembly; it also includes a partition, a drive assembly and a wear-resistant detection system; the detection cylinder is connected to the drive assembly; the drive assembly is connected to the partition, and the partition is driven to rise or fall and rotate by the drive assembly; the installation shell is installed with a wear-resistant detection system.

[0006] Furthermore, the surfaces of the partitions are all made of smooth material.

[0007] Furthermore, the driving assembly includes a guide rail, a slider and a second micro motor; the guide rail is installed in the detection cylinder; the slider slides on the guide rail; the slider is installed with the second micro motor; the output shaft of the second micro motor is fixed to the partition.

[0008] Furthermore, the wear-resistant detection system includes a lower cylinder, an upper cylinder, a conveying pipe, a second base plate, a lifting mechanical clamp and a power assembly; the lower cylinder is fixedly connected to the mounting shell; the lower cylinder is movably connected to the upper cylinder; the upper cylinder is connected to the conveying pipe; a lifting mechanical clamp is installed in the middle of the upper cylinder; the lower cylinder is rotatably connected to the second base plate; the lower cylinder and the second base plate are jointly connected to a power assembly, and the power assembly is used to drive the second base plate to rotate.

[0009] Furthermore, the second bottom plate is located directly above the detection cylinder, and a through hole is opened at the bottom of the second bottom plate.

[0010] Furthermore, the second bottom plate is configured to be in an inverted cone shape.

[0011] Furthermore, it also includes a push rod, the lifting mechanical clamp is provided with a hollow channel, the delivery pipe is fixedly connected to the push rod, and the telescopic part of the push rod is located in the hollow channel.

[0012] Furthermore, it also includes blocking members, and a plurality of blocking members are arranged on the surface of the second bottom plate.

[0013] Furthermore, it also includes a water inlet main pipe and a water delivery pipe; a plurality of water delivery pipes are connected to the upper part of the upper cylinder; and the water delivery pipes are commonly connected to the water inlet main pipe.

[0014] Furthermore, it also includes a pressurizing box and a pressurizing pipe; the pressurizing box is installed on one side of the upper cylinder; the pressurizing box is connected to the pressurizing pipe; and the pressurizing pipe is connected to the upper cylinder.

[0015] The beneficial effects of the present invention are as follows: the present invention can simulate the real scene of the wearer's hands constantly flipping and the body moving up and down in the water when drowning, to detect the anti-drowning performance of the watch, so that the performance of the watch can be accurately known and the wearer can be protected.

[0016] The present invention utilizes the irregular surface of ice slag to detect the wear resistance of the watch, and simultaneously utilizes the water melted from the ice slag to further detect the water resistance of the watch, thereby achieving the effect of killing two birds with one stone. Simultaneously, cold air can be injected through a delivery pipe while the ice slag is acting to maintain the strength of the ice slag. Compared with the existing detection using gravel or dust, the present invention does not have gravel or dust remaining on the watch after the inspection, causing trouble for subsequent observation. Simultaneously, the water melted from the ice slag can be utilized to further detect the water resistance of the watch, thereby achieving the effect of killing two birds with one stone.

[0017] The present invention can also realize the torsion resistance, impact resistance and pressure testing of watches without transferring them to multiple devices. At the same time, the ice layer is used to realize both indirect impact and direct impact testing during the impact resistance testing, and the testing effect is good and efficient. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the structure of the anti-drowning children's smart watch detection device disclosed in the present invention;

[0019] Figure 2 This is a partial structural diagram of the disclosed child anti-drowning smart watch detection device of the present invention;

[0020] Figure 3 This is a schematic diagram of the combined structure of the partition, slider and second micro motor disclosed in the anti-drowning smart watch detection device for children of the present invention;

[0021] Figure 4 A schematic diagram of the structure of the closed wear resistance detection system disclosed in the anti-drowning smart watch detection device for children of the present invention;

[0022] Figure 5 A schematic diagram of the structure of the open wear resistance detection system disclosed in the anti-drowning smart watch detection device for children of the present invention;

[0023] Figure 6 This is a cross-sectional structural diagram of the wear resistance detection system disclosed in the anti-drowning smart watch detection device for children of the present invention;

[0024] Figure 7 This is a schematic diagram of the combined structure of the lifting mechanical clamp and push rod disclosed in the anti-drowning children's smart watch detection device of the present invention.

[0025] Figure numbers: 1-installation shell, 2-detection cylinder, 3-water inlet pipe, 4-partition, 5-first bottom plate, 11-first micro motor, 12-baffle, 21-guide rail, 22-slider, 23-second micro motor, 101-lower cylinder, 102-upper cylinder, 103-handle, 104-delivery pipe, 105-second bottom plate, 106-lifting mechanical clamp, 111-push rod, 121-third micro motor, 122-gear, 123-gear ring, 201-blocking member, 301-water inlet main pipe, 302-water delivery pipe, 401-pressurization box, 402-pressurization pipe. DETAILED DESCRIPTION

[0026] The present invention will be described in detail below with reference to the accompanying drawings.

[0027] Example 1

[0028] A child-prevention smartwatch detection device for drowning prevention, such as Figure 1-3As shown, it includes a mounting housing 1, a detection cylinder 2, a water inlet pipe 3, a first bottom plate 5 and a switch assembly; the mounting housing 1 is connected to the detection cylinder 2, and the device is mounted on a workbench through a hole opened on the mounting housing 1; the detection cylinder 2 can be set to be round or square, and the height can be set to 50m-150m; the upper part of the detection cylinder 2 is connected to the water inlet pipe 3; the bottom of the detection cylinder 2 is connected to the first bottom plate 5 by a bolt or a buckle, so that it is easy to disassemble and take out the watch and water; the mounting housing 1 is connected to the switch assembly, which is used to open or close the opening above the detection cylinder 2;

[0029] It also includes a partition 4, a drive component and a wear-resistant detection system; the drive component is connected to the detection cylinder 2; the drive component is connected to the partition 4, and the drive component drives the partition 4 to rise or fall, and drives the partition 4 to rotate, so as to simulate the situation where the wearer's hands are constantly swinging up and down and flipping in the water when drowning, thereby detecting the emergency processing function of the anti-drowning children's smart watch; the installation shell 1 is installed with a wear-resistant detection system.

[0030] The surfaces of the partitions 4 are all made of smooth material, and the partitions 4 are adapted to the shape of the detection cylinder 2 .

[0031] The switch assembly includes a first micro motor 11 and a baffle 12 ; the first micro motor 11 is installed in the mounting housing 1 ; the output shaft of the first micro motor 11 is fixedly connected to the baffle 12 which blocks the through hole of the mounting housing 1 .

[0032] The driving assembly includes a guide rail 21, a slider 22 and a second micro motor 23; the guide rail 21 is installed in the detection cylinder 2; the slider 22 slides on the guide rail 21; the slider 22 is installed with the second micro motor 23; the output shaft of the second micro motor 23 is fixed to the partition 4.

[0033] The anti-drowning children's smart watch is a waterproof watch with a drowning alarm function, hereinafter referred to as the watch.

[0034] The anti-drowning alarm detection of the present invention is specifically as follows:

[0035] The baffle 12 is driven to rotate by the output shaft of the first micro motor 11 so that the baffle 12 no longer blocks the through hole of the mounting shell 1, and then the watch is manually thrown into the detection cylinder 2, and the watch falls on the partition 4. Before that, sufficient water is added to the detection cylinder 2 through the water inlet pipe 3, and the water volume is preferably 4 / 5 of the capacity of the detection cylinder 2; the watch is immersed in the detection cylinder 2, and the water leakage of the watch can be detected. Secondly, the guide rail 21 acts on the slider 22 to drive the second micro motor 23 and the partition 4 to move upward or downward, and the waterproof index of different water depths can be detected.

[0036] Furthermore, because the wearer's hands will constantly flip and their body will move up and down in the water when drowning, to achieve a better simulation effect, this application uses the second micromotor 23 to drive the partition 4 to continuously flip, while the slider 22 drives the second micromotor 23 and partition 4 upward or downward to simulate the wearer's drowning situation, thereby detecting whether the watch will properly alarm. This can test the watch's drowning prevention performance through real-world simulation, thereby accurately determining the watch's performance and ensuring the wearer's protection. In addition, the partition 4 is made of a smooth material to prevent its rotation from generating excessive friction, which could affect the watch's flipping.

[0037] Example 2

[0038] Based on the above embodiments, Figure 4-5 As shown, the wear resistance detection system includes a lower cylinder 101, an upper cylinder 102, a handle 103, a conveying pipe 104, a second base plate 105, a lifting mechanical clamp 106 and a power assembly; the lower cylinder 101 is welded on the mounting shell 1; the lower cylinder 101 is hinged to the upper cylinder 102; the handle 103 is installed on the upper cylinder 102; the upper part of the upper cylinder 102 is connected to the conveying pipe 104 for conveying ice chips or cold air; the middle part of the upper cylinder 102 is installed with a lifting mechanical clamp 106; the lower cylinder 101 is rotatably connected to the second base plate 105; the lower cylinder 101 and the second base plate 105 are jointly connected to the power assembly, and the power assembly is used to drive the second base plate 105 to rotate.

[0039] The power assembly includes a third micro motor 121 , a gear 122 and a gear ring 123 ; the lower cylinder 101 is mounted with the third micro motor 121 ; the output shaft of the third micro motor 121 is fixedly connected to the gear 122 ; the second base plate 105 is fixedly connected to the gear ring 123 , and the gear ring 123 is meshed with the gear 122 .

[0040] The second base plate 105 is located directly above the detection cylinder 2, and a through hole is provided at the bottom of the second base plate 105, which is blocked or opened by the baffle 12, so that the watch that has passed the wear resistance test can be directly dropped into the detection cylinder 2 for anti-drowning test, thereby achieving rapid transfer.

[0041] The second bottom plate 105 is configured to be in an inverted cone shape, which can adapt to the state where the watch is placed with the display screen facing downward. At the same time, when ice chips are poured into the delivery pipe 104, the ice chips can be prevented from forming a positive cone shape.

[0042] like Figure 4 and 7 As shown, it also includes a push rod 111, the lifting mechanical clamp 106 is provided with a hollow channel, the delivery tube 104 is fixedly connected to the push rod 111, and the telescopic part of the push rod 111 is located in the hollow channel. The telescopic part of the push rod 111 is continuously moved up and down to hammer the frozen watch to test the impact resistance of the watch.

[0043] Example 3

[0044] On the basis of the above embodiment, as shown in the figure, a blocking member 201 is further included. A plurality of blocking members 201 are provided on the surface of the second base plate 105, wherein the blocking member 201 can be set to a J-shape or an L-shape, and both can be used to temporarily pull the strap.

[0045] Example 4

[0046] On the basis of the above embodiment, it also includes a water inlet main pipe 301 and a water delivery pipe 302; a plurality of water delivery pipes 302 are connected to the upper part of the upper cylinder 102, and the water delivery pipes 302 are distributed in a ring shape; the water delivery pipes 302 are commonly connected to the water inlet main pipe 301 with an external water source.

[0047] The following is the wear resistance test of the watch by the present invention:

[0048] Open the lower cylinder 101 and the upper cylinder 102. Figure 5 As shown in the state, put the watch display screen downward on the second inverted cone-shaped bottom plate 105, and then close the lower cylinder 101 and the upper cylinder 102, as shown in the state. Figure 4 In the state shown, the lifting mechanical clamp 106 first descends and clamps the watch, and then ice debris, which can also be ice cubes, is added to the cavity formed by the lower cylinder 101 and the upper cylinder 102 through the delivery pipe 104. The ice debris covers the watch, and then the third micro motor 121 drives the gear 122 to rotate, and the gear 122 drives the gear ring 123 and the second base plate 105 to rotate. When the second base plate 105 rotates, it drives the ice debris to rotate. Since the surface of the ice debris is irregular and the lifting mechanical clamp 106 clamps and fixes the watch, the ice debris can be used to continuously contact the watch to detect the wear resistance of the watch. At the same time, the water melted from the ice debris can further detect the waterproofness of the watch, achieving a two-pronged effect. At the same time, cold air can be injected through the delivery pipe 104 while the ice debris is acting to maintain the strength of the ice debris. Compared with the existing detection using gravel or dust, the present invention will not have gravel or dust left on the watch during the inspection, causing trouble for subsequent observation. At the same time, the water melted from the ice debris can also be used to further check the waterproofness of the watch, achieving a two-pronged effect.

[0049] The following is the present invention's test on the torsion resistance of the watch:

[0050] Due to the existence of the blocking member 201, the blocking member 201 will intermittently hook and pull the watch strap while rotating with the second base plate 105. Since the lifting mechanical clamp 106 clamps the watch dial part, the torsion detection of the dial and watch strap can be achieved through the blocking member 201, that is, simulating a person constantly twisting the watch strap.

[0051] The following is the test of the present invention on the frost resistance and impact resistance of watches:

[0052] In addition, the present invention can also inject water into the lower cylinder 101 through the water inlet main pipe 301 and the water delivery pipe 302, and inject cold air into the delivery pipe 104 at the same time, so that the watch is frozen inside the lower cylinder 101, so that the anti-freeze performance of the watch can be checked.

[0053] like Figure 7 As shown, after the watch is frozen, the telescopic part of the push rod 111 is continuously moved up and down to hit the watch. First, the watch is hit through the ice. After the ice layer is broken, the watch is hit directly. In this way, the watch can be hit by an object between the two objects and directly hit, thereby completing the impact resistance test of the watch.

[0054] In addition, when the handle 103 is not provided, the lower cylinder 101 and the upper cylinder 102 can be connected by electric rotation to achieve automatic opening.

[0055] Example 5

[0056] Based on the above embodiments, Figure 6 As shown, it also includes a pressurizing box 401 and a pressurizing pipe 402 ; the pressurizing box 401 is installed on one side of the upper cylinder 102 ; the pressurizing box 401 is connected to at least three pressurizing pipes 402 ; the pressurizing pipe 402 is connected to the upper cylinder 102 .

[0057] The following is a pressure test on a watch. The watch will follow the person as they move to different places. The present invention injects or extracts air into or out of the cavity formed by the lower cylinder 101 and the upper cylinder 102 through the pressurized box 401 and the pressurized tube 402, thereby placing the watch under different atmospheric pressures. In this way, the effect of different air pressures on the watch can be tested to determine whether it will affect its normal use.

[0058] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any modifications or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in the present invention should be included in the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be based on the scope of protection of the claims.

Claims

1. A child anti-drowning smart watch detection device, characterized in that: The invention comprises an installation shell (1), a detection cylinder (2), a water inlet pipe (3), a first bottom plate (5) and a switch assembly; the installation shell (1) is connected to the detection cylinder (2); the detection cylinder (2) is connected to the water inlet pipe (3); the bottom of the detection cylinder (2) is detachably connected to the first bottom plate (5); the installation shell (1) is connected to the switch assembly, and the upper opening of the detection cylinder (2) is opened or closed by the switch assembly; the invention also comprises a partition (4), a drive assembly and a wear-resistant detection system; the detection cylinder (2) is connected to the drive assembly; the drive assembly is connected to the partition (4), and the partition (4) is driven to rise or fall by the drive assembly, and the partition (4) is driven to rotate; the installation shell (1) is installed with the wear-resistant detection system; The wear-resistant detection system comprises a lower cylinder (101), an upper cylinder (102), a delivery pipe (104), a second base plate (105), a lifting mechanical gripper (106) and a power assembly; the lower cylinder (101) is fixedly connected to the mounting shell (1); the lower cylinder (101) is movably connected to the upper cylinder (102); the upper cylinder (102) is connected to the delivery pipe (104); a lifting mechanical gripper (106) is installed in the middle of the upper cylinder (102); the lower cylinder (101) is rotatably connected to the second base plate (105); the lower cylinder (101) and the second base plate (105) are jointly connected to the power assembly, and the power assembly is used to drive the second base plate (105) to rotate.

2. The anti-drowning smart watch detection device for children according to claim 1, characterized in that: The surfaces of the partitions (4) are all made of smooth material.

3. The anti-drowning smart watch detection device for children according to claim 2, characterized in that: The driving assembly includes a guide rail (21), a slider (22) and a second micro motor (23); the guide rail (21) is installed in the detection cylinder (2); the slider (22) slides on the guide rail (21); the slider (22) is installed with the second micro motor (23); and the output shaft of the second micro motor (23) is fixedly connected to the partition (4).

4. The anti-drowning smart watch detection device for children according to claim 1, characterized in that: The second bottom plate (105) is located directly above the detection cylinder (2), and a through hole is opened at the bottom of the second bottom plate (105).

5. The anti-drowning smart watch detection device for children according to claim 4, characterized in that: The second bottom plate (105) is configured to be in an inverted cone shape.

6. The anti-drowning smart watch detection device for children according to claim 5, characterized in that: It also includes a push rod (111), the lifting mechanical gripper (106) is provided with a hollow channel, the delivery pipe (104) is fixedly connected to the push rod (111), and the telescopic part of the push rod (111) is located in the hollow channel.

7. The anti-drowning smart watch detection device for children according to claim 6, characterized in that: It also includes a blocking member (201), and a plurality of blocking members (201) are provided on the surface of the second bottom plate (105).

8. The anti-drowning smart watch detection device for children according to claim 7, characterized in that: It also includes a water inlet main pipe (301) and a water delivery pipe (302); the upper part of the upper cylinder (102) is connected to a plurality of water delivery pipes (302); and the water delivery pipes (302) are collectively connected to the water inlet main pipe (301).

9. The anti-drowning smart watch detection device for children according to claim 8, characterized in that: It also includes a pressurizing box (401) and a pressurizing pipe (402); the pressurizing box (401) is installed on one side of the upper cylinder (102); the pressurizing box (401) is connected to the pressurizing pipe (402); and the pressurizing pipe (402) is connected to the upper cylinder (102).

Citation Information

Patent Citations

  • Anti-drowning smartwatch

    CN112286036B

  • Underwater dynamic testing machine for watch

    CN108061622A

  • Abrasion resistance testing device

    CN218766465U