A new inflatable toy
By designing an inflatable toy structure that supports the cavity, dynamic objects, and delivery head, and using gas to drive the dynamic objects to perform complex movements, the problem of insufficient fun in existing inflatable toys is solved, and richer play methods and improved safety are achieved.
Patent Information
- Application Number
- CN202111573678.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-12-21
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2041-12-21
AI Technical Summary
Existing inflatable toys cannot perform complex multi-directional movements after inflation, lacking fun and posing safety hazards.
An inflatable toy structure was designed, comprising a support cavity, dynamic objects, movable connectors, and a delivery head. The dynamic objects are driven by gas to perform complex activities such as swinging, rotating, and extending. Combined with an integrated base and air tube system, convenient gas diversion and control are achieved, enhancing the toy's fun and safety.
It enriches the ways to play with inflatable toys, improves fun and safety, reduces costs, and enhances interactivity and variety during play.
Smart Images

Figure CN116271860B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of toys, in particular to a novel inflatable toy. BACKGROUND
[0002] The existing toys are mainly simple movements, and cannot perform complex movements in multiple directions after being inflated. The toys are relatively stiff and monotonous, and the fun of the toys is limited. The attraction of the toys to children cannot be sustained for a long time. The fun of the toys as a whole needs to be improved.
[0003] Chinese patent document CN200984459Y discloses a blowing ball toy, which comprises a transparent spherical shell, a plurality of beads are arranged in the shell, an air inlet hole and an air outlet hole are formed in the shell, and a blowing pipe is fixed to the shell at the air inlet hole. The diameter of the beads is greater than the diameter of the air inlet hole. In the patent, air is blown into the shell through the blowing pipe, and the air flow can make the beads in the shell float and rotate. Although the beads in the patent can move in the shell, the user needs to blow air while looking up and enjoying the view, which is not interesting and has a low experience.
[0004] Chinese patent document CN204815675U discloses a blowing floating ball toy, which comprises a blowing pipe, an air outlet pipe, a hanging rod and a plurality of floating balls. The bottom end of the hanging rod is connected to the blowing pipe, and the top end of the hanging rod has a ring-shaped hanging ring. The blowing pipe is a tubular structure with a closed front end, and the rear end of the blowing pipe has a blowing hole. The bottom of the air outlet pipe is connected to the blowing pipe and communicates with the blowing hole. The bottom of the floating ball has a recessed hole for accommodating the top of the air outlet pipe, and the top of the floating ball has a hook for hanging the floating ball on the hanging ring. In use, the floating ball is placed on the top of the air outlet pipe, and then air is blown into the blowing pipe. The air is blown into the blowing hole and blows up the floating ball arranged on the air outlet pipe. When the blowing force and the position of the floating ball are appropriate, the floating ball can be hung on the hanging ring through the hook. In the patent, the floating ball is not restrained, and the floating ball can be scattered outside. In addition, the blowing pipe and the hanging rod of the toy are hard, and the player can be easily injured during play. The movement of the floating ball is single, and the floating ball can only float up and down, which is relatively stiff and monotonous, and has low interest.
[0005] The disclosure of the above background art is only used to assist in understanding the concept and technical solutions of the present application, and it does not necessarily belong to the prior art of the present patent application. In the absence of explicit evidence that the above content has been disclosed on the filing date of the present patent application, the above background art should not be used to evaluate the novelty and inventiveness of the present application. SUMMARY
[0006] The main purpose of the present application is to overcome the defects in the prior art and provide a new inflatable toy.
[0007] To achieve the above object, the present application adopts the following technical solutions:
[0008] The new inflatable toy comprises a supporting cavity, a dynamic object, a movable connecting piece and a conveying head. The supporting cavity is an inflatable deformable cavity which is used to support the dynamic object after being inflated. The supporting cavity is connected with the dynamic object through the movable connecting piece. The movable connecting piece is used to connect the supporting cavity and the dynamic object together while allowing the relative movement between the two. A first gas port is arranged on the supporting cavity. The first gas port is communicated with a gas source and is used to inflate or deflate the supporting cavity. The gas inlet end of the conveying head is communicated with the gas source and the gas outlet end faces the dynamic object. The conveying head is used to guide the gas from the gas source to the position of the dynamic object so as to blow the dynamic object. The conveying head can be independently communicated with the gas source or can be indirectly communicated with the gas source after being communicated with the supporting cavity, so that the gas in the supporting cavity is blown out and acts on the dynamic object.
[0009] Further, the dynamic object comprises a dynamic cavity which is an inflatable deformable cavity. A second gas port is arranged on the dynamic cavity. The second gas port is communicated with the gas source and is used to inflate or deflate the dynamic cavity. The dynamic cavity is moved by inflating or deflating the dynamic cavity.
[0010] Further, a gas pipe is arranged. One end of the gas pipe is communicated with the gas source and the other end of the gas pipe is communicated with at least one of the first gas port, the second gas port and the conveying head. The gas pipe is used to independently guide the gas.
[0011] Further, an integrated seat is arranged. An air interface is arranged on the integrated seat. One end of the air interface is detachably communicated with the gas source through the gas pipe. The other end of the air interface is communicated with at least one of the first gas port, the second gas port and the conveying head through the gas pipe.
[0012] Further, a flow dividing piece is arranged. The gas flowing through the air interface can be divided or combined through the flow dividing piece and then flow into the gas pipe. The flow dividing piece comprises at least one air passage. At least three branch ports are arranged on the air passage and are communicated with the air interface correspondingly.
[0013] Further, a valve is arranged at one end of the gas pipe. The valve is used to control the on-off and / or flow of the gas flowing through the gas pipe.
[0014] Further, the valve is detachably mounted on the integrated seat.
[0015] Further, the dynamic object further comprises an air flow baffle connected with the dynamic cavity, for increasing the windward area of the air flow blown by the delivery head, to drive the dynamic cavity to move more efficiently.
[0016] Further, a containing part is arranged on the support cavity, which is a cavity structure with a shape and size suitable for containing part or all of the dynamic object, and / or the delivery head, and / or the air flow baffle, and enabling sufficient movement, and which is in communication with the external atmosphere.
[0017] Further, the containing part is formed by the cavity wall of the support cavity, and the tension of the cavity wall after the support cavity is inflated forms a shape and space suitable for containing at least part of the dynamic object, and / or the air flow baffle, and / or the delivery head, and enabling movement.
[0018] Further, the containing part is formed by the inflated cavity according to a shape and structure suitable for containing at least part of the dynamic object, and / or the air flow baffle, and / or the delivery head, and enabling movement of the dynamic object.
[0019] Further, a cushioning cavity is provided, which is an inflatable deformable cavity, and which has a position space on which a player can play, and the support cavity has a structure connected with the cushioning cavity, and the two are connected with each other, for keeping the support cavity from falling down during play, and enabling the player to be supported by the cushioning cavity when falling down, thereby avoiding direct impact of the player on the ground.
[0020] Further, a fixing seat is provided on the support cavity, and a first locking device is provided on the fixing seat, and a second locking device is provided on the integrated seat, and the first locking device and the second locking device can be locked and connected with each other, for detachable mounting of the support cavity on the cushioning cavity.
[0021] Further, a through port is provided on the fixing seat, one end of which is in communication with a gas source, and the other end is in communication with a gas passage interface on the integrated seat, so that when the support cavity is mounted on the cushioning cavity, the gas from the gas source passes through, reaches the integrated seat, and is communicated to the support cavity, the dynamic cavity and the delivery head through the gas pipe.
[0022] Further, an actuating cavity is provided, which is in communication with the gas source through the gas pipe, and which abuts against the support cavity or the dynamic cavity, for driving the support cavity or the dynamic cavity to move when the actuating cavity is inflated or deflated.
[0023] Further, the support cavity is connected with the airflow baffle through the movable connecting piece, and the airflow baffle is movable relative to the support cavity under the action force of the conveying head blowing gas, so as to drive the dynamic cavity to move.
[0024] Further, the conveying head is connected with the support cavity and / or the movable connecting piece, so that the conveying head is supported to blow the dynamic object.
[0025] Further, the conveying head comprises a mounting base and an adjusting head, the adjusting head is connected with the mounting base and can change the direction relative to the mounting base under the action of external force, and is used for adjusting the blowing direction of the gas from the gas source.
[0026] Further, the mounting base comprises a mounting part, a matching part and a first air channel, the matching part is connected with the mounting part, the mounting part is used for being connected with the support cavity and / or the movable connecting piece, the matching part is provided with a hemispherical cavity structure, the first air channel is communicated to the inside of the matching part, the gas inlet end of the first air channel is communicated with the gas source, and is used for guiding the gas from the gas source into the cavity structure of the matching part; the adjusting head comprises a guide rod and a ball head connected with one end of the guide rod, the ball head and the guide rod are provided with a second air channel in the axial direction, the ball head is accommodated in the cavity structure of the matching part for matched connection, the first air channel and the second air channel are communicated with each other, so that the gas entering from the gas inlet end of the first air channel flows to the gas outlet end of the second air channel while the adjusting head is rotated and adjusted in angle.
[0027] Further, the mounting base further comprises a gas pipe connecting part, one end of the gas pipe connecting part is communicated with the gas inlet end of the first air channel, and the other end is communicated with the gas source through a gas pipe, and is used for guiding the gas from the gas source to the gas outlet end of the second air channel.
[0028] Further, the guide rod is provided with a third locking device, and the third locking device is used for fixedly locking an external device.
[0029] Further, the mounting base is provided with a fixed locking part, and the fixed locking part is used for locking and fixing after the adjusting head is adjusted.
[0030] Further, the mounting base is provided with a dispensing groove, and the dispensing groove is used for dispensing and fixing after the adjusting head is adjusted.
[0031] Compared with the prior art, the beneficial effects of the present application are that:
[0032] The gas toy of the present application drives the dynamic object by the gas blown by the conveying head, so that the dynamic object swings, rotates, stretches, folds and performs other complex activities under the connection of the movable connecting piece relative to the supporting cavity, enriches the playing method of the gas toy and improves the interestingness of the toy. The supporting cavity and the dynamic cavity can be changed by inflating or deflating the body thereof, so that the dynamic effect is achieved, and the changes of the gas toy are more obvious and rich. While the body of the supporting cavity and the dynamic cavity is inflated or deflated, the conveying head also blows the dynamic object, so that the dynamic object performs more dimensional changes by combining multiple action modes, the playing method is more rich and the interestingness is higher.
[0033] In some embodiments, the present application also has the following beneficial effects:
[0034] 1、The gas toy of the present application inflates or deflates the body of the supporting cavity and the dynamic cavity by the conveying head, so that the dynamic object performs more dimensional changes by combining multiple action modes, the playing method is more rich and the interestingness is higher.
[0035] 2、The gas toy of the present application installs the dynamic object on the supporting cavity by the accommodating part, increases the stability of the dynamic object, and hides the hard components such as the conveying head in the cavity structure on the accommodating part to avoid collision caused by exposure and improve safety.
[0036] 3、The gas toy of the present application expands and installs the supporting cavity and the dynamic cavity on the pad cavity, so that the player can play in the pad cavity, enhances the interactivity, improves the safety, and can produce more playing styles, greatly reduces the consumer's expenditure cost, and greatly improves the richness, change and interesting degree during playing.
[0037] 4、The gas toy of the present application inflates or deflates the actuating cavity to drive the dynamic cavity, so that different parts of the dynamic cavity can still produce dynamic change effect while keeping the shape unchanged, thereby making the gas toy keep the overall shape beautiful and complete while being rich in multiple change possibilities, increasing the action mode diversity, improving the interaction effect and interestingness. BRIEF DESCRIPTION OF DRAWINGS
[0038] Figure 1 is a schematic view of the gas toy in embodiment 1.
[0039] Figure 2 is a schematic view of the gas toy in embodiment 2.
[0040] Figure 3 is a partial enlarged view of the accommodating part in embodiment 2. Figure 2
[0041] Figure 4 is a schematic view of the inflatable toy in Example 3.
[0042] Figure 5 is a schematic view of the inflatable toy in Example 4.
[0043] Figure 6 is a schematic view of the delivery head without a gas pipe connection.
[0044] Figure 7 is a schematic view of the delivery head with a gas pipe connection in Figure 6
[0045] Figure 8 is a schematic view of the adjustment head with a trumpet mouth instead of a vent in Figure 7
[0046] Figure 9 is an exploded view of the delivery head and the external device.
[0047] List of reference signs:
[0048] Reference Name Reference Name Reference Name 100 Supporting cavity 101 First air port 200 Delivery head 300 Movable connecting piece 400 Dynamic cavity 401 Second air port 402 Air flow blocking piece 403 First conduit 500 Air tube 600 Integrated seat 601 Ventilation interface 602 Second electric contact 603 Second locking device 700 Valve 800 Flow divider 801 Ventilation passage 802 Branch port 900 Pad protection cavity 901 Fixing seat 902 First locking device 903 First electric contact 904 Passage 1000 Receiving part 1001 Cavity structure 1002 Air outlet 2000 Actuating cavity 2001 Second conduit 3000 Air source 3001 Rebound air bag 4000 Electric wire 201 Mounting seat 202 Adjusting head 2011 Mounting part 2012 Fitting part 2013 First air passage 2014 Air tube connecting part 2015 Adjusting locking part 2016 Dispensing groove 2021 Guide rod 2022 Second air passage 2023 Ball head 2024 Third locking device 20231 Ventilation hole 20232 Horn port 20233 Third conduit 5000 External device DETAILED DESCRIPTION
[0049] In order to make the technical problems to be solved by the embodiments of the present application, the technical solutions and beneficial effects clearer and more apparent, the present application will be further described in detail below with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and not intended to limit the present application.
[0050] It should be noted that when an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element. In addition, the connection can be for fixing or for circuit communication.
[0051] It should be understood that the terms "length", "width", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the embodiments of the present application and simplify the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0052] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of embodiments of the present invention, "a plurality of" means two or more, unless otherwise explicitly specified.
[0053] Example 1
[0054] like Figure 1 As shown, this embodiment discloses a novel inflatable toy, comprising: a support cavity 100, which is an inflatable and deformable cavity that provides support after being inflated; the support cavity 100 can be made of materials such as PVC plastic, mesh, silicone, and Oxford cloth, and can be made into various geometric shapes, animal and plant shapes, cartoon character shapes, etc., according to requirements.
[0055] The support cavity 100 is provided with a first air port 101, which is used to connect with the air source 3000 to inflate the body of the support cavity 100 to achieve a supporting function, or to make the support cavity 100 move by changing the air supply and de-inflation. The support cavity 100 is also provided with a conveying head 200, which is connected with the air source 3000 and is used to blow dynamic objects to create a variety of dynamic effects, making the changes that the inflatable toy can produce more obvious and richer, making the play more diverse, improving the fun and interactivity of the inflatable toy, and maintaining the interest of the players. The conveying head 200 can be adjusted in terms of the amount and direction of the blown air as needed to improve the efficiency of blowing dynamic objects. The conveying head 200 can use a bamboo-joint blower nozzle, an adjustable ball nozzle, etc. for direction adjustment, and an external device 5000 (adjusting valve) can be used to adjust the amount of air.
[0056] The moving object can be an inflatable cavity or a non-inflatable object, or it can be composed of both, depending on the requirements. The moving object is movably connected to the inside and / or outside of the support cavity 100 via a movable connector 300, which limits the range of motion of the moving object when it is blown. The movable connector 300 can be a connecting rope, bearing, guide rail, slide groove, slide rail, hinge, or other movable connection structure, or it can be the side wall of the support cavity 100 body. The moving object is directly connected to the inner or outer wall of the support cavity 100 by means of heat fusion, adhesion, etc. In this embodiment, the movable connector 300 is a connecting rope structure, with one end of the connecting rope fixed to the moving object and the other end fixed to the support cavity 100. The moving object is suspended on the support cavity 100, off the ground, so that the gas blown by the conveying head 200 can act on the moving object.
[0057] When the dynamic object is an inflated cavity or contains an inflated cavity, the inflated cavity is the dynamic cavity 400, and the second air port 401 is arranged on the dynamic cavity 400 and is used for being communicated with the gas source 3000 to inflate or deflate the dynamic cavity 400; when the dynamic object is a non-inflated object, the non-inflated object includes a plush toy, a toy figurine, etc. (not shown in the figure). The dynamic object can be made into various geometric shapes, plant and animal shapes, cartoon character shapes, etc. according to requirements.
[0058] The working principle of the embodiment is as follows:
[0059] The gas source 3000 is communicated with the first air port 101 on the inflated toy supporting cavity 100 to inflate the supporting cavity 100, so that the supporting cavity 100 is inflated to achieve a supporting effect. The gas in the supporting cavity 100 can be blown out by the conveying head 200 and acts on the dynamic object. Since the dynamic object is movably connected with the supporting cavity 100, the dynamic object can be blown to swing, rotate, stretch, fold, etc. to provide a player with a play. Alternatively, the conveying head 200 is independently communicated with the gas source 3000, and the gas is blown out by the independent gas source 3000 and acts on the dynamic object. When the dynamic object is the dynamic cavity 400, the second air port 401 of the cavity needs to be communicated with the gas source 3000 to be inflated and formed. Since the supporting cavity 100 and the dynamic cavity 400 can be communicated with the gas source 3000, the supporting cavity 100 and the dynamic cavity 400 can also be inflated and deflated to change the relative motion of the supporting cavity 100 and the dynamic cavity 400.
[0060] Embodiment 2
[0061] In order to make the dynamic effect of the inflated toy more vivid and convenient to use, the embodiment adds the air pipe 500, the integrated seat 600, the containing part 1000, and the cushion cavity 900 on the basis of the embodiment 1. Some component parts of the supporting cavity 100 can also serve as the dynamic object.
[0062] As shown in Figure 2 and Figure 3 , the supporting cavity 100 of the embodiment is made into a figure shape, including a lower body cavity and a torso cavity, which are communicated with each other. The head and the hand of the figure shape are dynamic objects, which are composed of an inflated cavity and / or a non-inflated object. The inflated cavity is the dynamic cavity 400, which can be communicated with the supporting cavity 100 through the first conduit 403 or can be directly communicated with each other by opening an air passage after the cavity wall is attached. The dynamic cavity 400 can achieve synchronous inflation or deflation, and the entire inflated toy can be inflated by one inflation.
[0063] The accommodating part 1000 is arranged on the torso cavity and fixedly connected with the torso cavity. The accommodating part 1000 is used for stably mounting the dynamic object on the supporting cavity 100. The accommodating part 1000 is provided with a cavity structure 1001. Part or all of the dynamic object is arranged in the cavity structure 1001. The cavity structure 1001 is in communication with the external atmosphere. The accommodating part 1000 can be formed by an inflation cavity which is surrounded by a shape and structure suitable for mounting at least part of the dynamic object and / or the conveying head 200 and enabling the dynamic object to move. The accommodating part 1000 can also be formed by the cavity wall of the supporting cavity 100. The cavity wall is tensioned after the supporting cavity 100 is inflated to form a shape and space suitable for mounting at least part of the dynamic object and / or the conveying head 200 in the cavity and enabling the dynamic object to move. When the accommodating part 1000 is made of the inflation cavity, the accommodating part 1000 is provided with a third air port 1002. The third air port 1002 is used for being in communication with the air source 3000 to inflate the accommodating part 1000 (inflation cavity) to achieve the mounting supporting effect. The dynamic object is mounted on the accommodating part 1000 through the movable connecting piece 300 to increase the stability of the dynamic object. The cavity structure 1001 can hide the conveying head 200, the movable connecting piece 300 and other components.
[0064] The conveying head 200 of the inflation toy can be arranged at different positions and in different numbers according to requirements. For example, the conveying head 200 is arranged at the armpit of the torso cavity to blow air to the hand (dynamic cavity 400) as a blowing object. The conveying head 200 is arranged at the bottom and / or side wall of the cavity structure 1001 to blow air to the head (dynamic cavity 400) as a blowing object. The conveying head 200 is arranged at the waist of the lower body cavity to blow air to the torso cavity as a blowing object. That is, the supporting cavity 100 (torso cavity) plays different roles in different scenes. It can be blown to have the function of the dynamic cavity 400 or be inflated to play a supporting role. Different parts of the supporting cavity 100 are both the dynamic cavity 400 and the supporting cavity 100. They can be converted in different play scenes. For example, the torso cavity is a supporting air cavity for a period of time. In order to increase the diversity of the dynamic object, the torso cavity becomes the dynamic cavity 400 for the next period of time. The torso cavity can become the supporting air cavity again for the next period of time.
[0065] The inflatable toy further comprises an integrated seat 600, which is provided with a ventilation interface 601. One end of the ventilation interface 601 is detachably connected in communication with the air source 3000 through the air pipe 500, and the other end of the ventilation interface 601 is connected in communication with the first air port 101, the second air port 401, the third air port 1002 and the conveying head 200 through the air pipe 500 respectively, for inflation or air extraction. The inflatable toy further comprises a flow dividing piece 800, which can be detachably installed on the integrated seat 600. The gas flowing through the ventilation interface 601 can be divided or combined through the flow dividing piece 800 and then flow to the air pipe 500, and then be guided to different positions through the air pipe 500. The flow dividing piece 800 comprises at least one ventilation passage 801, which is provided with at least three branch ports 802 penetrating each other. The branch ports 802 are connected in communication with the ventilation interface 601 respectively. The inflatable toy further comprises a valve 700, which is connected in communication with the air pipe 500, for controlling the opening and closing and / or flow of the gas flowing through the air pipe 500. The valve 700 can be detachably installed on the integrated seat 600. When the valve 700 is installed on the integrated seat 600, the air inlet end of the valve 700 is connected in communication with the branch port 802, and the air outlet end is connected in communication with the ventilation interface 601. Then the ventilation interface 601 is connected in communication with the first air port 101, the second air port 401, the third air port 1002 and the conveying head 200 through the air pipe 500 respectively, so that the support cavity 100 and the dynamic cavity 400 can be inflated or air-extracted, and the accommodating part 1000 made of the inflatable cavity can be inflated and formed, and the conveying head 200 can blow out or suck in gas.
[0066] The integrated seat 600 can be arranged on the support cavity 100 or not. When the integrated seat 600 is arranged on the support cavity 100, the integrated seat 600 is arranged inside the support cavity 100 as a whole or half inside and half outside. The first air port 101 of the support cavity 100 is directly connected in communication with the air pipe 500, becoming an integral whole. Since the flow dividing piece 800 has the functions of dividing or combining, only one air pipe 500 needs to be connected in communication with the air source 3000, so that the gas flow can be divided to the multiple ventilation interfaces 601 of the integrated seat 600 and then be delivered to different positions, which is very convenient for docking and saves cost. Of course, the gas flow can also be divided on the air pipe 500, so that multiple branch pipes are branched out from one air pipe 500, so as to save the length of the pipeline. In order to be beautiful and safe, the air pipe 500 can be arranged inside the support cavity 100, which is simpler and easier to implement in production process, reduces the use of materials and saves cost. In this way, the air pipe 500 can be avoided from being exposed and scattered outside, reducing the risk of tripping and falling and effectively improving safety. The air source 3000 of the embodiment can be divided into a positive pressure air source and a negative pressure air source. The positive pressure air source is used for inflation, and the negative pressure air source is used for air extraction. The positive pressure air source and the negative pressure air source are connected in communication with the inflatable toy through the air pipe 500 respectively.
[0067] In the embodiment, the dynamic object includes a hand, a trunk cavity, and a head; the head includes a non-inflatable object and an inflated cavity, the non-inflatable object is specifically an air flow baffle 402, and the inflated cavity is specifically a dynamic cavity 400, the upper end of the air flow baffle 402 is fixedly connected with the dynamic cavity 400, the gas blown out from the conveying head 200 can act on the air flow baffle 402, the dynamic cavity 400 is driven to move by the air flow baffle 402, the air flow baffle 402 is arranged in the cavity structure 1001 of the containing part 1000, and the air flow baffle 402 is used to increase the windward area of the air flow blown out from the conveying head 200, so as to drive the dynamic cavity 400 to move more efficiently; according to requirements, the air flow baffle 402 can be made into different structures, the stress area can be increased by the air flow baffle 402, and the blowing efficiency is improved. For example, the air flow baffle 402 is made into a structure such as a propeller, a blade, a baffle and the like which is easy to rotate and swing, so as to drive the head cavity to slide up and down, swing left and right, rotate and the like.
[0068] The inflatable toy also comprises a cushion cavity 900, which is an inflatable deformable cavity, and a position space for a player to play on is formed on the cushion cavity 900. The support cavity 100 can be mounted on the cushion cavity 900, and the two are connected to each other, so that the support cavity 100 is not prone to falling during the playing process, and the player is supported by the cushion cavity 900 when falling, thereby avoiding the player directly impacting the ground and improving safety, and creating a safe game environment for the use of the inflatable toy. The first air port 101 is also arranged on the cushion cavity 900, which is used to communicate with the gas source 3000 to inflate the body of the cushion cavity 900 to achieve the bearing effect. The fixing seat 901 is arranged on the cushion cavity 900, and the integrated seat 600 is arranged on the support cavity 100. The first locking device 902 is arranged on the fixing seat 901, and the second locking device 603 is arranged on the integrated seat 600. The first locking device 902 and the second locking device 603 can be locked and connected with each other, so that the support cavity 100 can be detachably mounted on the cushion cavity 900. The first locking device 902 and the second locking device 603 can adopt structures such as a son and mother buckle, a buckle, a screw and a nut, a pull buckle, etc., which are convenient for dismounting and connecting and convenient for replacing and expanding to connect different inflatable toy types. The through port 904 is also arranged on the fixing seat 901, one end of the through port 904 communicates with the gas source 3000, and the other end of the through port 904 communicates with the air interface 601 on the integrated seat 600 or the branch port 802 on the shunt 800, so that when the support cavity 100 is mounted on the cushion cavity 900, the gas from the gas source 3000 passes through the through port 904, reaches the integrated seat 600, and is communicated to the support cavity 100, the dynamic cavity 400, the cushion cavity 900 and the conveying head 200 through the air pipe 500. The first electric contact 903 is also arranged on the fixing seat 901, and the first electric contact 903 is electrically connected with the power supply and / or the signal source through the electric wire 4000. The second electric contact 602 is arranged on the integrated seat 600, and the second electric contact 602 can be electrically connected with the valve 700. When the integrated seat 600 is docked with the fixing seat 901, the first electric contact 903 and the second electric contact 602 are in contact and conduct, and the circuit is turned on, thereby providing an energy source for the work of various electric equipment.
[0069] The working principle of the embodiment is as follows:
[0070] The air source 3000 is communicated with the integrated seat 600 on the inflatable toy, and the inflatable cavity of the support cavity 100, the cushion cavity 900 and the containing part 1000 is inflated through the air pipe 500 communicated to the support cavity 100, the cushion cavity 900 and the containing part 1000, and the inflatable cavity of the support cavity 100, the cushion cavity 900 and the containing part 1000 is deflated after inflation and expansion, because the dynamic object (dynamic cavity 400) is communicated with the support cavity 100, and is also inflated at the same time, the overall appearance of the inflatable toy is formed; then the blowing of the dynamic object is controlled to move by controlling the opening and closing (controlled by the valve 700) of the air pipe 500 connected with each conveying head 200 on the integrated seat 600; when the conveying heads 200 arranged on the left and right of the lower body cavity are alternately opened to blow out gas to act on the trunk cavity, the trunk cavity will present a swinging motion state; when the conveying head 200 arranged at the underarm part of the trunk cavity is opened to blow out gas to act on the hand (dynamic cavity 400), the hands on both sides will present a hand swinging motion state; when the conveying head 200 arranged at the bottom of the containing part 1000 is opened to blow out gas to act on the airflow blocking piece 402, the dynamic cavity 400 of the head will present an up-down telescopic motion state; when the conveying head 200 arranged on the side wall of the containing part 1000 is opened to blow out gas to act on the airflow blocking piece 402, the dynamic cavity 400 of the head will present a swinging motion state; the inflatable toy composed of the support cavity 100 and the dynamic object can be detachably mounted and connected to the cushion cavity 900 through the integrated seat 600, and the player can also enter the cushion cavity 900 to closely contact and play, so that the various dynamic effects of the inflatable toy can be opened at the same time to respond, so that the player can play and improve the experience.
[0071] Embodiment 3
[0072] In order to make the overall play of the inflatable toy more abundant and the dynamic effect more diverse, the air pipe 500 and the actuating cavity 2000 are added based on the embodiment 1.
[0073] As Figure 4As shown, the support cavity 100 of the embodiment is in a hemispherical shape, the bottom of the support cavity 100 is provided with two actuating cavities 2000, the support cavity 100 and the actuating cavity 2000 are both connected in communication with the gas source 3000 through independent air pipes 500; the top end face of the support cavity 100 is connected with two groups of dynamic objects; the dynamic objects of the embodiment include non-inflatable objects and inflatable cavities, the non-inflatable objects include air flow stop pieces 402, the inflatable cavities include the actuating cavities 2000 and dynamic cavities 400, the air flow stop pieces 402 are movably connected with the end face of the support cavity 100 through movable connecting pieces 300, the upper part of the air flow stop pieces 402 is connected with the actuating cavities 2000, the actuating cavities 2000 are abutted with the dynamic cavities 400, the dynamic cavities 400 are provided with second gas ports 401, the second gas ports 401 can be connected in communication with the gas source 3000; the top sidewall of the support cavity 100 is fixedly provided with a delivery head 200, the delivery head 200 is connected in communication with the gas source 3000 through the air pipe 500, the gas blown out by the delivery head 200 can act on the air flow stop pieces 402, the air flow stop pieces 402 are in a sheet shape, which can increase the force receiving area; the actuating cavities 2000 are connected in communication with the gas source 3000 through the air pipes 500, which are used for inflating or exhausting the actuating cavities 2000; the support cavity 100 is provided with an integrated seat 600, all the air pipes 500 are connected to the air connection interfaces 601 on the integrated seat 600, which facilitates the butt joint of the air pipes 500; or the air pipes 500 connected with the gas source 3000 directly pass through the air connection interfaces 601 on the integrated seat 600, enter the inside of the support cavity 100, and are connected to the first gas port 101, the second gas port 401, the third gas port 1002 and the delivery head 200, which can reduce the interfaces of the air pipes 500 and the air leakage probability; the air pipes 500 connected with the actuating cavities 2000 can pass out of the support cavity 100 to the outside, are connected with the actuating cavities 2000 through the second conduits 2001, and the second conduits 2001 have a certain length reserve, which does not affect the movement of the dynamic objects. The gas source 3000 of the embodiment adopts multiple rebound air bags 3001, which can blow out gas by manually pressing the rebound air bags 3001, and automatically reset after the hand is released; the air pipes 500 connected with the support cavity 100 can be provided with valves 700, which are closed to stop the air after the support cavity 100 is inflated and formed.
[0074] The working principle of the embodiment is as follows:
[0075] The air source 3000 is communicated with the air pipe 500 on the inflatable toy, the support cavity 100 is inflated, and when the support cavity 100 is inflated and formed, the air is closed, the overall appearance of the inflatable toy is formed, and the dynamic cavity 400 is also separately inflated and formed; then the air source 3000 is controlled to alternately inflate or exhaust the actuating cavities 2000 on both sides of the bottom of the support cavity 100 to drive the support cavity 100 to shake, and the air source 3000 is controlled to alternately inflate or exhaust the actuating cavities 2000 connected with the dynamic cavity 400 to drive the dynamic cavity 400 to perform actions such as lifting and lodging; while the support cavity 100 and the dynamic cavity 400 move, the air source 3000 is controlled to blow air from the delivery head 200 to the airflow blocking piece 402, so that the airflow blocking piece 402 swings, thereby driving the actuating cavities 2000 and the dynamic cavity 400 connected with the airflow blocking piece 402 to also move; the various dynamic effects of the inflatable toy are echoed to each other, so that the player plays.
[0076] Embodiment 4
[0077] In order to further enrich the playing method of the inflatable toy, make the applicability of the inflatable toy wider, the cost lower, increase the interaction between the person and the toy, change from a viewer to a participant, the participation is higher, and it is beneficial to moving play; based on the embodiment 1, the air pipe 500 and the containing part 1000 are added in the embodiment.
[0078] As shown in Figure 4 The inflatable toy disclosed in the embodiment comprises a support cavity 100, a containing part 1000 is arranged on the top end face of the support cavity 100, the containing part 1000 is an internally recessed cavity structure 1001 generated by inflation and / or tension of a tensioning piece by the cavity wall of the support cavity 100, and a dynamic object is movably connected to the containing part 1000; the dynamic object of the embodiment comprises an airflow blocking piece 402 and a dynamic cavity 400, the airflow blocking piece 402 is movably connected to the top end face of the support cavity 100 through a movable connecting piece 300, the lower part of the airflow blocking piece 402 is located in the cavity structure 1001 and is designed as an impeller structure, the upper part of the airflow blocking piece 402 is connected with the dynamic cavity 400, the support cavity 100 is provided with a first air port 101, and the dynamic cavity 400 is provided with a second air port 401; the top of the cavity structure 1001 is provided with an air outlet 1002 in communication with the outside air, which is used to exhaust the gas in the cavity structure 1001, ensure the flowability of the gas in the cavity structure 1001, and balance the internal and external air pressure when the rebound air bag 3001 rebounds, the inside side of the cavity structure 1001 is provided with a delivery head 200, the delivery head 200 is communicated with an air source 3000 through an air pipe 500, the air source 3000 adopts the structure of the rebound air bag 3001, and the air source 3000 can blow out gas by manually pressing the rebound air bag 3001 and automatically reset after the hand is released.
[0079] The working principle of the embodiment is as follows:
[0080] The rebound air bag 3001 is communicated with the conveying head 200 through the air pipe 500, and the support cavity 100 and the dynamic cavity 400 are inflated at the same time. After the support cavity 100 and the dynamic cavity 400 are inflated and expanded, the inflation is closed to keep the overall appearance of the inflatable toy shaped. Then, the conveying head 200 is blown by pressing the rebound air bag 3001, the airflow block 402 is rotated by the airflow, and the dynamic cavity 400 connected with the airflow block 402 is also rotated for the player to play. The inflatable toy can be held in the hand to play, and is convenient to carry.
[0081] Embodiment 5
[0082] In order to make the conveying head 200 blow the dynamic object more efficiently and more interesting, the embodiment is a specific implementation of the conveying head 200 in Embodiment 1.
[0083] As Figure 6 to Figure 9As shown, the conveying head 200 includes a mounting seat 201 and an adjusting head 202. The mounting seat 201 includes a mounting part 2011, a matching part 2012, and a first air passage 2013. The mounting part 2011 is used to be connected with the supporting cavity 100 and / or the movable connecting piece 300. The mounting part 2011 can be mounted on the supporting cavity 100 and / or the movable connecting piece 300 through hot melting, glue sticking, threaded clamping, clamping, etc. The matching part 2012 is in a hemispherical cavity structure. The matching part 2012 is connected with the mounting part 2011. The mounting part 2011 can be connected to any part of the upper, middle, or lower part of the matching part 2012. When the mounting part 2011 is connected to the upper part of the matching part 2012 and then mounted on the supporting cavity 100, the matching part 2012 can be hidden as a whole inside the cavity. When the mounting part 2011 is connected to the middle or lower part of the matching part 2012, a part of the mounting part 2011 will be exposed. The first air passage 2013 is in communication with the inside of the matching part 2012. The gas inlet end of the first air passage 2013 is in communication with the gas source 3000, which is used to guide the gas from the gas source 3000 into the cavity of the matching part 2012. The adjusting head 202 includes a guide rod 2021 and a ball head 2023 connected to one end of the guide rod 2021. The ball head 2023 and the guide rod 2021 are internally provided with a second air passage 2022 in the axial direction. The ball head 2023 is accommodated in the cavity structure of the matching part 2012 for matching connection. The first air passage 2013 is in corresponding communication with the second air passage 2022, so that the adjusting head 202 can rotate to adjust the angle while the gas entering from the gas inlet end of the first air passage 2013 flows to the gas outlet end of the second air passage 2022. The mounting seat 201 further includes an air pipe connecting part 2014. One end of the air pipe connecting part 2014 is in communication with the gas inlet end of the first air passage 2013, and the other end is in communication with the gas source 3000 through the air pipe 500, which is used to guide the gas from the gas source 3000 to the gas outlet end of the second air passage 2022. The guide rod 2021 is provided with a third locking device 2024. The third locking device 2024 is used to fix and lock the external device 5000, such as an adjusting valve, a whistle, etc. The gas inlet of the external device 5000 can be in airtight communication with the gas outlet end of the second air passage 2022. The gas outlet of the external device 5000 can be directed to the dynamic object. The mounting seat 201 is provided with an adjusting locking part 2015. The adjusting locking part 2015 is used to lock and fix after the adjusting head 202 is adjusted, to prevent the adjusting head 202 from rotating. The mounting seat 201 can also be provided with a dispensing groove 2016. The dispensing groove 2016 is filled with glue. The adjusting head 202 is fixed by adhesion after adjustment. When the upper half of the hemispherical cavity structure has an opening smaller than the outer diameter of the ball head 2023, the ball head 2023 will not automatically separate after being installed in the cavity. When the lower half of the hemispherical cavity structure has an opening equal to or smaller than the outer diameter of the ball head 2023, the ball head 2023 can be separated from the cavity at will. At this time, the adjusting locking part 2015 or glue injection is needed for fixing.
[0084] The part where the second air passage 2022 communicates with the first air passage 2013 can adopt the shape of a trumpet mouth 20232 or a vent hole 20231, and the opening of the trumpet mouth 20232 or the vent hole 20231 faces the first air passage 2013, so that when the adjusting head 202 is rotated, the effective area of the communication between the two can be ensured, and the air flow is not affected; of course, the second air passage 2022 and the first air passage 2013 can also communicate through a third conduit 20233, and the third conduit 20233 is provided with a certain amount of excess to avoid affecting the rotation of the adjusting head 202; ensure that the conveying head 200 can still ventilate after adjusting the orientation.
[0085] The working principle of the embodiment is:
[0086] The conveying head 200 is installed and connected to the support cavity 100 or the movable connecting piece 300 through the mounting part 2011, the adjusting head 202 of the conveying head 200 is rotated to adjust the orientation of the dynamic object, and then the orientation of the adjusting head 202 is fixed by the adjusting locking part 2015 or the dispensing mode, and the conveying head 200 is supplied with gas through the gas source 3000, the gas outlet end of the conveying head 200 blows out gas to act on the dynamic object, and the dynamic object moves; in order to more efficiently convey the gas, the gas pipe connecting part 2014 is arranged on the conveying head 200, the conveying head 200 is communicated with the gas source 3000 through the gas pipe 500, and the conveying head 200 is supplied with gas in a separate gas supply mode; in order to improve the playability, some external equipment 5000 can be locked and installed on the conveying head 200 through the third locking device 2024, and the external equipment 5000 can be a regulating valve for controlling the gas flow of the conveying head 200, or can be a whistle or an atmosphere device.
[0087] The background section of the present application can contain background information about the problems or environment of the present application, and does not necessarily describe the prior art. Therefore, the content contained in the background section is not the acknowledgement of the prior art by the applicant.
[0088] The above further describes the present application in conjunction with specific / preferred embodiments, and cannot be deemed as limiting the specific implementation of the present application to these descriptions. For those skilled in the art to which the present application belongs, without departing from the concept of the present application, they can make several substitutions or variations to the described embodiments, and these substitutions or variations shall be deemed as falling within the protection scope of the present application. In the description of the present specification, the description of the terms "an embodiment", "some embodiments", "a preferred embodiment", "an example", "a specific example" or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are contained in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In the case of not contradicting each other, those skilled in the art can combine and combine the different embodiments or examples described in the present specification and the features of the different embodiments or examples. Although the embodiments of the present application and their advantages have been described in detail, it should be understood that various changes, substitutions and modifications can be made herein without departing from the scope of protection of the patent application.
Claims
1. A new inflatable toy characterized in that, The device comprises a support cavity, a dynamic object, a conveying head and a movable connecting member. The support cavity is an inflatable deformable cavity. The support cavity is connected with the dynamic object through the movable connecting member. The movable connecting member is used to connect the support cavity and the dynamic object together while allowing relative movement between the two. A first air port is arranged on the support cavity. The first air port is connected with an air source for inflating or deflating the support cavity. The conveying head is connected with the air source at an air inlet end and has an air outlet end facing the dynamic object. The conveying head is used to guide the gas from the air source to the position of the dynamic object to blow the dynamic object. The dynamic object comprises a dynamic cavity which is an inflatable deformable cavity. A second air port is arranged on the dynamic cavity. The second air port is connected with the air source for inflating or deflating the dynamic cavity. The device further comprises an air pipe. One end of the air pipe is connected with the air source. The other end of the air pipe is connected with at least one of the first air port, the second air port and the conveying head. The dynamic object further comprises an air flow blocking member which is connected with the dynamic cavity. The air flow blocking member is used to increase the windward area of the air flow blown by the conveying head to drive the dynamic cavity to move more efficiently.
2. An inflatable toy according to claim 1, wherein, The device further comprises an integrated seat. An air passage interface is arranged on the integrated seat. One end of the air passage interface is detachably connected with the air source through the air pipe. The other end of the air passage interface is connected with at least one of the first air port, the second air port and the conveying head through the air pipe.
3. An inflatable toy according to claim 2, wherein, The device further comprises a flow dividing member. The gas flowing through the air passage interface can be divided or combined through the flow dividing member and then flow into the air pipe. The flow dividing member comprises at least one air passage. At least three branch ports are arranged on the air passage. The branch ports are connected with the air passage interface correspondingly.
4. An inflatable toy according to claim 3, wherein, The device further comprises a valve arranged at one end of the air pipe. The valve is used to control the on-off and / or flow rate of the gas flowing through the air pipe.
5. An inflatable toy according to claim 4, wherein, The valve is detachably mounted on the integrated seat.
6. An inflatable toy according to claim 5, wherein, The device further comprises a containing part arranged on the support cavity. The containing part is a cavity structure which is shaped and sized to accommodate part or all of the dynamic object, the conveying head and / or the air flow blocking member and allow them to move sufficiently. The cavity structure is connected with the outside air.
7. An inflatable toy according to claim 6, wherein, The containing part is formed by the cavity wall of the support cavity. The cavity wall is stretched by the inflation of the support cavity to form a shape and space suitable for accommodating at least part of the dynamic object, the air flow blocking member and / or the conveying head and allowing them to move.
8. An inflatable toy according to claim 6, wherein, The containing part is formed by the inflated cavity according to a shape and structure suitable for accommodating at least part of the dynamic object, the air flow blocking member and / or the conveying head and allowing the dynamic object to move.
9. An inflatable toy according to claim 2, wherein, The cushion cavity is an inflatable deformable cavity, and a position space for a player to play on is arranged on the cushion cavity.
10. An inflatable toy according to claim 9, wherein, The fixing seat is provided with a through port, one end of the through port is communicated with the gas source, and the other end of the through port is communicated with the air outlet of the integrated seat, so that when the support cavity is installed on the cushion cavity, the gas from the gas source passes through the through port, reaches the integrated seat, and is communicated to the support cavity, the dynamic cavity and the conveying head through the air pipe.
11. An inflatable toy according to claim 10, wherein, The support cavity is connected with the airflow blocking piece through the movable connecting piece, and the airflow blocking piece moves relative to the support cavity under the action force of the conveying head blowing out gas, so as to drive the dynamic cavity to move.
12. An inflatable toy according to claim 8, wherein, The conveying head is connected with the support cavity and / or the movable connecting piece, so that the conveying head is supported to blow the dynamic object.
13. An inflatable toy according to claim 12, wherein, The conveying head includes a mounting seat and an adjusting head, the adjusting head is connected with the mounting seat and can change direction relative to the mounting seat under the action of external force, and is used for adjusting the blowing direction of the gas from the gas source.
14. An inflatable toy according to claim 1, wherein, The mounting seat includes a mounting part, a matching part and a first air channel, the matching part is connected with the mounting part, the mounting part is used for being connected with the support cavity and / or the movable connecting piece, the matching part is provided with a hemispherical cavity structure, the first air channel is communicated to the inside of the matching part, the gas inlet end of the first air channel is communicated with the gas source, and the gas from the gas source is guided into the cavity structure of the matching part; the adjusting head includes a guide rod and a ball head connected to one end of the guide rod, the ball head and the guide rod are provided with a second air channel in the axial direction, the ball head is accommodated in the cavity structure of the matching part for matched connection, the first air channel and the second air channel are communicated with each other, so that the adjusting head can rotate and adjust the angle, and the gas entering from the gas inlet end of the first air channel flows to the gas outlet end of the second air channel.
15. An inflatable toy according to claim 14, wherein, The mounting seat further includes a gas pipe connecting part, one end of the gas pipe connecting part is communicated with the gas inlet end of the first air channel, and the other end of the gas pipe connecting part is communicated with the gas source through the air pipe, so as to guide the gas from the gas source to the gas outlet end of the second air channel.
16. An inflatable toy according to claim 15, wherein, 17. An inflatable toy according to claim 16, wherein, 18. An inflatable toy according to claim 16, wherein, The guide rod is provided with a third locking device, which is used for fixing and locking an external device.
19. An inflatable toy according to claim 16, wherein, The mounting seat is provided with a fixing and locking part, which is used for locking and fixing after the adjustment of the adjusting head.
20. An inflatable toy according to claim 16, wherein, The mounting seat is provided with a point gluing groove, which is used for point gluing and fixing after the adjustment of the adjusting head.
Citation Information
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