Toy water ball

By designing a toy water ball shell with a containment groove and sealing structure, the problem of the toy water ball failure caused by magnetic parts is solved, achieving a longer service life and higher stability.

CN223009789UActive Publication Date: 2025-06-24SHENZHEN HUAMINGJUN RUBBER CO LTD
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Patent Information

Application Number
CN202420688175.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-04-07
Filing Date
2024-04-03
Publication Date
2025-06-24
Estimated Expiration
2034-04-03

AI Technical Summary

Technical Problem

When used in existing toy water balls, magnetic parts are easily released from the notch of the installation groove, resulting in the failure of the toy water balls.

Method used

A toy water balloon is designed including at least two housings that can enclose the water storage chamber, each housing including a mounting frame, a magnetic member and a water pocket. The mounting frame is provided with a receiving groove, the magnetic member is installed in the receiving groove, the water bag is connected to the first surface of the mounting frame, and the notch of the receiving groove is covered to seal the magnetic member.

Benefits of technology

Effectively prevent magnetic parts from falling out during use, avoiding the failure of toy water balls and extending service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of water playing toys, in particular to a toy water polo. The toy water polo comprises at least two shells which can define a water storage cavity, each shell comprises an installation frame, a magnetic part and a water pocket, the magnetic part and the water pocket are installed on the installation frame, the installation frame comprises a first surface and a second surface which are oppositely arranged in the thickness direction of the installation frame, and when the shells define the water storage cavity in an enclosing mode, the magnetic part and the water pocket are arranged on the installation frame. The magnetic parts of the adjacent shells attract each other, the second surfaces of the adjacent shells abut against each other, a containing groove is formed in the installation frame, a first groove opening of the containing groove is located in the first surface, the magnetic parts are arranged in the containing groove, and the water pocket is connected to the first surface and covers the groove opening of the containing groove in the first surface so that the magnetic parts can be sealed in the installation frame. Therefore, when the toy water polo provided by the embodiment is used, the magnetic part is not easy to separate from the mounting groove due to stress like the prior art, and the magnetic part is not rusted due to water, so that the toy water polo provided by the utility model is not easy to fail and is long in service life.
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Description

Technical Field

[0001] The utility model relates to the field of water-play toys, in particular to a toy water ball. Background Art

[0002] As a summer heat-relieving activity, water fights are very popular due to their strong interactivity and entertainment.

[0003] Water fights usually use balloons as carriers of water. When the water-filled balloons are thrown at the players, the balloons will burst, making the hit players wet by water. However, balloons cannot be reused and are not environmentally friendly. Therefore, R & D personnel have developed a recyclable toy water ball. This toy water ball includes two shells. Each shell includes an installation frame, a magnetic part and a water pocket. When the two installation frames are attracted together by the magnetic parts, the two shells will jointly define a water storage cavity. When the toy water ball is thrown at the player, the two shells will be separated by force, making the hit player wet by water.

[0004] In order to install the magnetic part on the installation frame, the prior art sets an installation groove on the installation frame and assembles the magnetic part into the installation groove. This causes the magnetic part to easily come out of the notch of the installation groove during a water fight, resulting in the failure of the toy water ball and poor user experience. Summary of the Utility Model

[0005] The technical problem to be solved by the embodiments of the utility model is to provide a toy water ball to solve the problem that the magnetic part of the toy water ball in the prior art easily comes out of the notch of the installation groove during use, resulting in the failure of the toy water ball.

[0006] The toy water ball provided by the embodiments of the utility model includes: at least two shells that can enclose a water storage cavity. Each shell includes an installation frame, a magnetic part and a water pocket. The installation frame includes a first surface and a second surface that are oppositely arranged in the thickness direction thereof. An accommodation groove is provided on the installation frame. The notch of the accommodation groove is located on the first surface. The magnetic part is installed in the accommodation groove. The water pocket is connected to the first surface and covers the notch of the accommodation groove on the first surface to seal the magnetic part in the installation frame. When each shell encloses the water storage cavity, the magnetic parts at corresponding positions on the installation frames of adjacent shells attract each other, making the second surfaces of the adjacent installation frames abut against each other.

[0007] Further, both the installation frame and the water pocket are made of flexible materials.

[0008] Further, a clearance groove is also provided on the mounting frame. The clearance groove is arranged on the periphery of the magnetic member, and the notch of the clearance groove is located on the first surface. A border surrounding the magnetic member is formed between the accommodation groove and the clearance groove. An embedding portion embedded in the clearance groove is provided on the water scoop.

[0009] Further, the clearance groove is arranged at a position close to the end of the magnetic member, and both ends of the clearance groove extend from a direction parallel to the end of the magnetic member to the side direction of the magnetic member.

[0010] Further, the mounting frame further includes a limiting edge. The limiting edge is arranged at the notch of the accommodation groove and is opposite to the bottom of the accommodation groove.

[0011] Further, in the length direction of the accommodation groove, the limiting edge is arranged at the middle position of the notch of the accommodation groove, so that the middle position of the magnetic member is covered by the limiting edge, and both ends of the magnetic member are exposed at the notch.

[0012] Further, the clearance groove includes a first groove wall on one side of the border and a second groove wall opposite to the first groove wall. The mounting frame is also provided with a connecting rib, and the connecting rib connects the first groove wall and the second groove wall.

[0013] Further, clearance grooves are provided at all four corner positions of the magnetic member, and the clearance grooves are "L"-shaped.

[0014] Further, a warped edge is provided at a position on the inner circle of the mounting frame close to the second surface. The warped edge extends towards the center of the mounting frame and away from the first surface, and the angle between the warped edge and the plane of the second surface is ≥5 degrees. When the second surfaces of adjacent mounting frames are in contact with each other, the corresponding warped edges on the adjacent mounting frames are pressed and fitted.

[0015] Further, a lighting assembly is also included. The lighting assembly is arranged inside the housing. The lighting assembly includes a lamp bead, a controller, a vibration sensor, and a battery for supplying power to the lamp bead, the controller, and the vibration sensor. The controller controls the lamp bead to work when the vibration sensor detects vibration.

[0016] Further, a round chamfer is provided at the edge of the magnetic member.

[0017] Further, an adhesive layer is provided between the magnetic member and the accommodation groove.

[0018] Further, when the water pocket is connected to the first surface, a covering layer is formed on the first surface, the thickness of the covering layer ≥ 0.3 mm, the thickness from the bottom of the accommodating groove to the second surface ≥ 0.3 mm, and the thickness of the mounting frame ≥ 2 mm.

[0019] Compared with the prior art, the beneficial effects of the toy water ball provided by the embodiment of the present utility model are as follows: The toy water ball provided by the embodiment of the present utility model includes at least two shells that can enclose a water storage cavity. Each shell includes a mounting frame, a magnetic part and a water pocket mounted on the mounting frame. The mounting frame includes a first surface and a second surface that are oppositely arranged in its thickness direction. When the shells enclose and define a water storage cavity, the magnetic parts of adjacent shells attract each other, and the second surfaces of adjacent shells are in contact with each other. Specifically, the mounting frame is provided with an accommodating groove, the first notch of the accommodating groove is located on the first surface, the magnetic part is mounted in the accommodating groove, the water pocket is connected to the first surface, and covers the notch of the accommodating groove on the first surface to seal the magnetic part in the mounting frame. Therefore, when the toy water ball provided by this embodiment is in use, the magnetic part will not be easily forced out of the mounting groove as in the prior art, and the magnetic part will not get wet and rust. It can be seen that the toy water ball provided by this embodiment will not easily fail and has a long service life. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The following will further describe in detail the specific implementation manners of the present utility model in conjunction with the drawings. In the drawings:

[0021] Figure 1 is a three-dimensional structural schematic diagram of the toy water ball provided by the embodiment of the present utility model;

[0022] Figure 2 is a three-dimensional structural schematic diagram when the shells of the toy water ball provided by the embodiment of the present utility model are separated;

[0023] Figure 3 is a three-dimensional structural schematic diagram of the mounting frame and the connection structure provided by the embodiment of the present utility model;

[0024] Figure 4 is Figure 3 a partial enlarged schematic diagram at position A in

[0025] Figure 5 is a three-dimensional structural schematic diagram of the magnetic part provided by the embodiment of the present utility model;

[0026] Figure 6 is Figure 2 a schematic diagram of the toy water ball shown after omitting the mounting frame and the connection structure;

[0027] Figure 7 is a three-dimensional structural schematic diagram when the shells of the toy water ball provided by another embodiment of the present utility model are separated;

[0028] Figure 8 is a schematic plan view of the mounting frame and the connection structure provided by an embodiment of the present utility model;

[0029] Figure 9 is Figure 8 a partially enlarged view at position B in

[0030] Figure 10 is a schematic partial structure view of the mounting frame provided by another embodiment of the present utility model;

[0031] Figure 11 is a schematic partial structure view of the mounting frame provided by another embodiment of the present utility model;

[0032] Figure 12 is a cross-sectional view of the mounting frame and the connection structure provided by an embodiment of the present utility model;

[0033] Figure 13 is Figure 12 a partially enlarged view at position C in

[0034] The reference numerals in the figure are as follows:

[0035] 1000, toy water ball;

[0036] 100, housing; 110, mounting frame; 111, first surface; 112, second surface; 113, receiving groove; 114, clearance groove; 1141, first groove wall; 1142, second groove wall; 1143, groove bottom; 115, surrounding edge; 116, limiting edge; 117, connecting rib; 118, flanging; 120, magnetic member; 121, rounded chamfer; 130, water pocket; 131, embedding portion;

[0037] 200, connection structure. Detailed implementation manners

[0038] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments may be combined with each other. Now, with reference to the accompanying drawings, the preferred embodiments of the present utility model will be described in detail.

[0039] An embodiment of the present utility model provides a toy water ball 1000, as Figures 1 - 5 shown, the toy water ball 1000 includes at least two housings 100 that can enclose a water storage cavity. Each housing 100 includes a mounting frame 110, a magnetic member 120, and a water pocket 130. The mounting frame 110 includes, in its thickness direction ( Figure 3The first surface 111 and the second surface 112 which are oppositely arranged in the X direction (in the present embodiment), the notch of the accommodating groove 113 is located on the first surface 111, the magnetic member 120 is installed in the accommodating groove 113, the water scoop 130 is connected to the first surface 111, and covers the notch of the accommodating groove 113 on the first surface 111 to seal the magnetic member 120 within the mounting frame 110.

[0040] In this embodiment, each housing 100 can enclose and define a water storage cavity. At this time, the magnetic members 120 of adjacent housings 100 attract each other, so that the second surfaces 112 of adjacent housings 100 abut against each other, thereby preventing the water in the water storage cavity from overflowing. When the toy water ball 1000 of this embodiment is thrown at a gamer, the toy water ball 1000 will be impacted by an external force, causing the water in the water storage cavity to overflow, resulting in the gamer being splashed by the water when hit by the toy water ball 1000. Of course, it can be understood that throwing at a gamer is only a reference gameplay of the game water ball. In addition to throwing at a gamer, the toy water ball 1000 can also be simply thrown at the bottom surface, the wall or other places. This embodiment does not make any limitations here.

[0041] Specifically, in this embodiment, since the accommodating groove 113 for installing the magnetic member 120 is opened on the first surface 111, and the water scoop 130 is connected to the first surface 111, this enables the water scoop 130 to cooperate with the mounting frame 110 to seal the magnetic member 120. This not only makes it so that when the toy water ball 1000 is in use, the magnetic member 120 is not as likely to be forced out of the accommodating groove 113 as in the prior art, but also can prevent the magnetic member 120 from getting wet. It should be noted that the magnetic member 120 is likely to rust after getting wet, resulting in the toy water ball 1000 being unfit for continued use. Thus, by implementing this embodiment, the service life of the toy water ball 1000 can be effectively extended, and the toy water ball 1000 will not easily become ineffective.

[0042] It is worth mentioning that since the housing 100 can be set to two as Figure 1 or three as Figure 7 or four, five, etc. This embodiment does not make any restrictions here.

[0043] Refer to Figure 1 , in a specific embodiment, both the mounting frame 110 and the water scoop 130 are made of flexible materials.

[0044] First, implementing this embodiment can prevent the toy water ball 1000 from hurting or injuring the gamer, eliminating potential safety hazards.

[0045] Second, the water scoop 130 of this embodiment can change the volume of the toy water ball 1000 through deformation, achieving the technical effect of saving storage space, so as to facilitate the user's storage.

[0046] Thirdly, implementing this embodiment can reduce the probability of damage to the installation frame 110 and the water pocket 130 when they are impacted, which is beneficial to improving the service life of the toy water ball 1000.

[0047] Reference Figure 1 , in a specific embodiment, the installation frame 110 and the water pocket 130 are made of silica gel or rubber.

[0048] In order to improve the structural strength of the toy water ball 1000 and further avoid the failure of the toy water ball 1000, the present utility model provides the following two embodiments for reference.

[0049] Reference Figures 3 - 5 , Figure 9 , in the first embodiment, a clearance groove 114 is further provided on the installation frame 110. The clearance groove 114 is arranged on the periphery of the magnetic member 120 and the notch of the clearance groove 114 is located on the first surface 111. A border 115 surrounding the magnetic member 120 is formed between the accommodation groove 113 and the clearance groove 114. An embedding portion 131 embedded in the clearance groove 114 is provided on the water pocket 130.

[0050] Specifically, when the user uses the toy water ball 1000, it is inevitable to pull the water pocket 130. Since the magnetic members 120 of the adjacent shells 100 attract each other, the magnetic members 120 will apply a force to limit the separation of the adjacent shells 100. Therefore, when the water pocket 130 is pulled, the position of the water pocket 130 adjacent to the magnetic member 120 is subjected to a relatively large force and is easily detached from the connection relationship with the installation frame 110. To solve this technical problem, in this embodiment, a part of the water pocket 130 is embedded in the clearance groove 114 between the groove wall of the accommodation groove 113 and the border 115, so that the connection relationship between the position of the water pocket 130 where the force is relatively large and the installation frame 110 will be closer. Thus, by implementing this embodiment, the structural strength of the toy water ball 1000 can be improved, and it will not be easily damaged by pulling.

[0051] When manufacturing the toy water ball 1000 of this embodiment, a slot will be opened on the mold for manufacturing the installation frame 110. The magnetic member 120 is installed in this slot, and then the material for manufacturing the installation frame 110 is pressed onto the mold, so as to manufacture the installation frame 110 equipped with the magnetic member 120. Finally, the water pocket 130 is processed onto the installation frame 110. Specifically, as long as the contour of this slot is set larger than the magnetic member 120, the manufactured installation frame 110 will be formed with the above-mentioned clearance groove 114 and border 115.

[0052] Specifically, the shape of the border 115 can be various, such as circular, oval, square, etc., so this embodiment does not make a limitation here.

[0053] Reference Figure 11, in the second embodiment, the contour of the magnetic member 120 is smaller than the contour of the receiving groove 113, so that there is a gap between the magnetic member 120 and the groove wall of the receiving groove 113 ( Figure 11 the Z position in

[0054] ), and a part of the water scoop 130 is embedded in the gap.

[0055] Specifically, when the user uses the toy water ball 1000, it is inevitable to pull the water scoop 130. When the magnetic members 120 of the adjacent housings 100 attract each other, the magnetic members 120 will apply a force to restrict the adjacent housings 100 from being pulled apart. Therefore, when the water scoop 130 is pulled, the position of the water scoop 130 adjacent to the magnetic member 120 will be subjected to a relatively large force and is likely to be disengaged from the connection with the mounting frame 110. To solve this technical problem, a part of the water scoop 130 of this embodiment is embedded in the gap between the magnetic member 120 and the groove wall of the receiving groove 113, so that the connection between the position of the water scoop 130 where the force is relatively large and the mounting frame 110 will be closer. Thus, by implementing this embodiment, the structural strength of the toy water ball 1000 can be improved, and it will not be easily damaged by pulling.

[0056] Reference Figure 4 , in a specific embodiment, the surrounding edge 115 is arranged around the magnetic member 120, that is, the surrounding edge 115 wraps the outer peripheral surface of the magnetic member 120. This can not only strengthen the constraint of the mounting frame 110 on the magnetic member 120, making the connection between the magnetic member 120 and the mounting frame 110 closer, but also be beneficial to processing.

[0057] Specifically, if the magnetic member 120 is installed in the slot of the mold and cannot move in the slot, then when the material for manufacturing the mounting frame 110 is pressed onto the mold later, the magnetic member 120 may be forced to disengage from the slot, resulting in defective products at worst and damaging the mold at worst. And the surrounding edge 115 is arranged around the magnetic member 120, which means that the magnetic member 120 can move in the slot. When the magnetic member 120 is subjected to force, it will move in the slot and will not easily disengage from the slot, which can not only improve the yield rate but also will not damage the mold.

[0058] Reference Figure 9 , in an embodiment, the gap groove 113 is arranged at a position close to the end of the magnetic member 120, and both ends of the gap groove 113 extend from the direction parallel to the end of the magnetic member 120 to the side direction of the magnetic member 120. In this way, the connection between the embedding portion 131 and the mounting frame 110 will be closer. The structural strength of the toy water ball 1000 can be further improved, and it will not be easily damaged by pulling.

[0059] refer to Figure 4 In a specific embodiment, the installation frame 110 further includes a limiting rib 116 , which is disposed at the notch of the receiving groove 113 and is opposite to the bottom of the receiving groove 113 .

[0060] Specifically, the limiting rib 116 can cooperate with the surrounding edge 115 to firmly restrict the magnetic member 120 in the receiving groove.

[0061] refer to Figure 4 In order to improve the limiting effect of the limiting rib 116 on the magnetic component 120, in a specific embodiment, in the length direction of the accommodating groove 113, the limiting rib 116 is arranged at the middle position of the notch of the accommodating groove 113, so that the middle position of the magnetic component 120 is covered by the limiting rib 116, and the two ends of the magnetic component 120 are exposed at the notch.

[0062] refer to Figure 9 In a specific embodiment, the gap groove 114 includes a first groove wall 1141 located on one side of the surrounding edge 115, and a second groove wall 1142 opposite to the first groove wall 1141. The mounting frame 110 is also provided with a connecting rib 117, which connects the first groove wall 1141 and the second groove wall 1142.

[0063] Specifically, when the user uses the toy water ball 1000, the water pocket 130 will inevitably be pulled. Since the magnetic parts 120 of the adjacent shells 100 are attracted to each other, the magnetic parts 120 will apply force to limit the adjacent shells 100 from being pulled apart. Therefore, when the water pocket 130 is pulled, the part of the installation frame 110 near the magnetic parts 120 will be subjected to a relatively large force, resulting in a large deformation of the part and easy damage. In order to solve this technical problem, the installation frame 110 of this embodiment is provided with a connecting rib 117, which connects the first groove wall 1141 and the second groove wall 1142 of the gap groove 114. The connecting rib 117 can apply a reaction force when the user pulls the water pocket 130, thereby reducing the deformation degree of the part of the installation frame 110 near the magnetic parts 120. It can be seen that by implementing this embodiment, the structural strength of the toy water ball 1000 can be improved, making the toy water ball 1000 durable.

[0064] In addition, when the water scoop 130 is processed onto the installation frame 110, the installation frame 110 may also be deformed. Exemplarily, when the water scoop 130 is processed onto the installation frame 110, when the raw material enters the gap groove 114, it will exert forces in opposite directions on the first groove wall 1141 and the second groove wall 1142. If the force is too large, the distance between the first groove wall 1141 and the second groove wall 1142 will be changed by the force, thereby causing the installation frame 110 to be deformed. If the deformation is too large, it will become a defective product. The connecting rib 117 of this embodiment can strengthen the constraint between the first groove wall 1141 and the second groove wall 1142 to avoid excessive deformation of the installation frame 110 when the water scoop 130 is processed onto the installation frame 110, thereby improving the yield rate.

[0065] In a specific embodiment, the connecting rib 117 is also connected to the groove bottom 1143 of the gap groove 114, so that the connecting rib 117 will be less deformed when subjected to force, which can further improve the structural strength of the toy water ball 1000 and make the toy water ball 1000 durable.

[0066] refer to Figure 10 In a specific embodiment, the four corners of the magnetic member 120 are provided with clearance grooves 114, and the clearance grooves 114 are "L" shaped. In this way, the installation frame 110 will include a plurality of connecting ribs 117, and the plurality of connecting ribs 117 are respectively located in different directions of the magnetic member 120, so that the excessive deformation of the installation frame 110 caused by processing the water bag 130 onto the installation frame 110 can be further avoided, thereby improving the yield rate.

[0067] refer to Figures 7 - 8 In one embodiment, the toy water ball 1000 further includes a connecting structure 200 , and each shell 100 is connected to the connecting structure 200 .

[0068] Specifically, it is conceivable that if the shells 100 are not connected to each other and are scattered and disordered, it would be very cumbersome and time-consuming to assemble the shells 100 into a toy water ball 1000, and it is easy to lose part of the shells 100 during the game. The connection structure 200 can connect the shells 100 to simplify the assembly time of the toy water ball 1000.

[0069] refer to Figures 1 - 3 In a specific embodiment, the connection structure 200 is made of a flexible material, and the connection structure 200 and the installation frame 110 are integrally formed.

[0070] Specifically, the connection structure 200 made of a flexible material can prevent the toy water ball 1000 from hurting or injuring the player, and the connection structure 200 and the mounting frame 110 are integrally formed to simplify the assembly steps.

[0071] refer toFigures 1 - 3 , Figures 1 - 3 The connecting structure 200 and the mounting frame 110 in Figures 1 - 3 are both made of silica gel. Specifically, the raw materials are pressed in the corresponding molds to be integrally formed. The toy water ball 1000 is very convenient to use. As long as one of the shells 100 is toggled towards the other shell 100, the water storage cavity can be enclosed and defined.

[0072] Of course, it can be understood that the connecting structure 200 can also be a component independent of the mounting frame 110, just like the toy water ball 1000 shown in the figure.

[0073] Reference Figure 4 , Figure 9 , in an embodiment, a flanging 118 is provided at a position on the inner ring of the mounting frame 110 close to the second surface 112. The flanging 118 extends towards the center of the mounting frame 110 and away from the first surface 111, and the angle between the flanging 118 and the plane of the second surface 112 is ≥5 degrees. When the second surfaces 112 of adjacent mounting frames 110 are in contact with each other, the corresponding flangings 118 on the adjacent mounting frames 110 are pressed and fitted.

[0074] Specifically, since the flanging 118 extends towards the center of the mounting frame 110 and away from the first surface 111, before the second surfaces 112 of the respective shells 100 come into contact with each other, the flangings 118 of the respective shells 100 have already come into contact with each other. When the second surfaces 112 of the respective shells 100 are in contact with each other, the flangings 118 of the respective shells 100 have been squeezed and elastically deformed. Therefore, the provision of the flanging 118 can better limit the overflow of water in the water storage cavity to prevent the toy water ball 1000 from leaking.

[0075] In an embodiment, the toy water ball further includes a lighting component. The lighting component is disposed inside the shell. The lighting component includes lamp beads, a controller, a vibration sensor, and a battery for supplying power to the lamp beads, the controller, and the vibration sensor. The controller controls the lamp beads to work when the vibration sensor detects vibration.

[0076] Specifically, when the toy water ball hits a human body or an object, the vibration sensor will be triggered. The vibration sensor will feedback to the controller. When the controller receives the feedback information from the vibration sensor, it controls the lamp beads to work. By implementing this embodiment, the aesthetics of the toy water ball can be increased. Especially in the evening and at night, the glowing toy water ball will look very beautiful.

[0077] Reference Figure 5 , in an embodiment, a round chamfer 121 is provided at the edge of the magnetic member 120.

[0078] Specifically, when a user uses the toy water ball 1000, it is inevitable that the water pocket 130 will be pulled. Since the magnetic members 120 of the respective shells 100 attract each other, when the user pulls the water pocket 130, the magnetic members 120 will exert a reverse force on the mounting frame 110, causing the bottom 1143 of the receiving groove 113 to deform. If the edge of the magnetic member 120 is relatively sharp, the bottom 1143 of the receiving groove 113 is easily cut by the magnetic member 120 at this time, resulting in the failure of the toy water ball 1000. Therefore, in this embodiment, the edge of the magnetic member 120 is provided with a round chamfer 121 to prevent the magnetic member 120 from cutting the bottom 1143 of the receiving groove 113.

[0079] In addition, the round chamfer 121 provided at the edge of the magnetic member 120 can also make the connection position between the limiting edge 116 and the surrounding edge 115 become thicker. Refer to Figure 12 and Figure 13 , Figure 13 where the position D is thicker than the position E, so that the structural strength of the limiting edge 116 is relatively large and it is not so easy to be damaged.

[0080] In an embodiment, a bonding layer is provided between the magnetic member 120 and the receiving groove 113. This can prevent the magnetic member 120 from shifting when the water pocket 130 is processed onto the mounting frame 110.

[0081] In an embodiment, when the water pocket 130 is connected to the first surface 111, a covering layer is formed on the first surface 111, the thickness of the covering layer ≥ 0.3 mm, the thickness from the bottom of the receiving groove 113 to the second surface 112 ≥ 0.3 mm, and the thickness of the mounting frame 110 ≥ 2 mm. In this way, the structural strength of the shell 100 is relatively good, making the toy water ball 1000 durable.

[0082] It should be understood that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. For those skilled in the art, the technical solutions described in the above embodiments can be modified, or the intermediate technical features can be equivalently replaced; and all such modifications and replacements should fall within the protection scope of the appended claims of the present invention.

Claims

1. A toy water ball, characterized in that: include: At least two shells capable of enclosing a water storage cavity, each of the shells comprising a mounting frame, a magnetic member and a water pocket, the mounting frame comprising a first surface and a second surface arranged opposite to each other in the thickness direction thereof, the mounting frame being provided with a receiving groove, the notch of the receiving groove being located on the first surface, the magnetic member being installed in the receiving groove, the water pocket being connected to the first surface and covering the notch of the receiving groove on the first surface to seal the magnetic member in the mounting frame; When the shells enclose a water storage cavity, the magnetic parts at corresponding positions on the mounting frames of adjacent shells attract each other, so that the second surfaces of adjacent mounting frames abut against each other.

2. The toy water ball according to claim 1, characterized in that: The installation frame and the water scoop are both made of flexible materials.

3. The toy water ball according to claim 2, characterized in that: The installation frame is also provided with a gap groove, which is arranged on the periphery of the magnetic component and the notch of the gap groove is located on the first surface, and a surrounding edge surrounding the magnetic component is formed between the accommodating groove and the gap groove, and the water hood is provided with an embedded portion embedded in the gap groove.

4. The toy water ball according to claim 3, characterized in that: The gap groove is arranged at a position close to the end of the magnetic member, and both ends of the gap groove extend from a direction parallel to the end of the magnetic member to a side direction of the magnetic member.

5. The toy water ball according to claim 3, characterized in that: The installation frame further comprises a limiting rib, which is arranged at the notch of the accommodating groove and is opposite to the groove bottom of the accommodating groove.

6. The toy water ball according to claim 5, characterized in that: In the length direction of the accommodating groove, the limiting rib is arranged at the middle position of the notch of the accommodating groove, so that the middle position of the magnetic member is covered by the limiting rib, and both ends of the magnetic member are exposed at the notch.

7. The toy water ball according to claim 3, characterized in that: The gap groove includes a first groove wall located at one side of the surrounding edge and a second groove wall opposite to the first groove wall. The installation frame is also provided with a connecting rib, and the connecting rib connects the first groove wall and the second groove wall.

8. The toy water ball according to claim 3, characterized in that: The gap grooves are arranged at the four corner positions of the magnetic member, and the gap grooves are in an "L" shape.

9. The toy water ball according to claim 1, characterized in that: The inner circle of the installation frame is provided with a warped edge near the second surface, and the warped edge extends in a direction close to the center of the installation frame and away from the first surface, and the angle between the warped edge and the plane where the second surface is located is ≥5 degrees. When the second surfaces of adjacent installation frames abut against each other, the corresponding warped edges on the adjacent installation frames are pressed and fitted.

10. The toy water ball according to claim 1, characterized in that: It also includes a light-emitting component, which is arranged on the inner side of the shell. The light-emitting component includes a lamp bead, a controller, a vibration sensor and a battery for powering the lamp bead, the controller and the vibration sensor; when the vibration sensor detects vibration, the controller controls the lamp bead to work.

11. The toy water ball according to any one of claims 1 to 10, characterized in that: The edge of the magnetic piece is provided with a round chamfer.

12. The toy water ball according to any one of claims 1 to 10, characterized in that: A bonding layer is provided between the magnetic member and the accommodating groove.

13. The toy water ball according to any one of claims 1 to 10, characterized in that: When the water hood is connected to the first surface, a covering layer is formed on the first surface, the thickness of the covering layer is ≥0.3 mm, the thickness from the bottom of the accommodating groove to the second surface is ≥0.3 mm, and the thickness of the installation frame is ≥2 mm.