1. Field of the Invention
The present invention relates to a toy and more particularly to a waving inflatable toy.
2. Description of the Related Art
Inflatable figures are entertaining and displayable, are hollow and have air chambers therein. While being inflated, inflatable figures are expanded in volume into a fixed form for the purposes of entertainment, advertisement and decoration. After being deflated, inflatable figures can be folded flat and stored in a compact bag for easy storage. In view of the foregoing advantages and operational flexibility, inflatable figures may be proclaimed as one type of most popular inflatable toys. However, conventional inflatable figures can be only statically exhibited and easily become stereotypical in terms of visual reception. Therefore, toy industry is constantly conceiving how to improve the design of inflatable figures by providing satisfactory entertaining and animated effect through added motion of the inflatable figures.
An objective of the present invention is to provide a waving inflatable toy demonstrating a more animated visual effect arising from a constantly changing waving direction of the toy.
To achieve the foregoing objective, the waving inflatable toy has a body, an air pump and an opening alignment unit. The body has a main chamber, a first inflate and deflate chamber, a second inflate and deflate chamber, an air outlet and an opening alignment chamber.
The main chamber, the first inflate and deflate chamber, and the second inflate and deflate chamber are formed inside the body and take the form of hollow airbags. The first inflate and deflate chamber and the second inflate and deflate chamber are formed next to each other.
The air outlet is formed through the body.
The opening alignment chamber takes the form of a hollow airbag, is formed inside the main chamber, and has a first opening, a second opening, a third opening and a fourth opening.
The first opening communicates with the main chamber.
The second opening communicates with the second inflate and deflate chamber.
The third opening communicates with the air outlet.
The fourth opening communicates with the first inflate and deflate chamber.
The air pump is connected to the main chamber of the body.
The opening alignment unit is mounted inside the opening alignment chamber and has a driving motor and a four-way valve assembly.
The driving motor is mounted inside the opening alignment chamber and has a spindle.
The four-way valve assembly is connected to the driving motor and has four air vents and a guide vane.
Each air vent is rotated to sequentially align with the first opening, the second opening, the third opening and the fourth opening of the opening alignment chamber when the four-way valve assembly is intermittently driven to rotate an angle by the driving motor.
The guide vane is mounted inside the four-way valve assembly, and divides an inner space of the four-way valve into two rooms varying according to a position of the guide vane when the four-way valve assembly is intermittently driven by the driving motor to rotate the angle. Two of the air vents communicate with one of the divided rooms, and the other two air vents communicate with the other divided room.
From the foregoing technical measure, the waving inflatable toy can be inflated by using the air pump to pump air into the main chamber of the body. By changing the position of the guide vane of the four-way valve assembly, the inflated air selectively enters the first inflate and deflate chamber or the second inflate and deflate chamber. The inflated air expands the first inflate and deflate chamber upon entering it and shrinks the second inflate and deflate chamber so that the body of the toy waves toward one side. The inflated air expands the second inflate and deflate chamber upon entering it and shrinks the first inflate and deflate chamber so that the body of the toy waves toward an opposite side. Hence, by constantly changing the airflow direction in the opening alignment chamber of the four-way valve assembly, the waving direction of the body of the toy can keep changing so as to demonstrate a vivid motion and provide an animated visual effect.
Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
The body 10 is hollow, is made of a soft and thin material, and has multiple air chambers therein. The body 10 has a trunk 11, a first waving portion 12 and a second waving portion 13. The first waving portion 12 and the second waving portion 13 are mounted on two sides of the trunk 11.
The trunk 11 has a main chamber 14, an opening alignment chamber 15 and an air outlet 110. The first waving portion 12 and the second waving portion 13 respectively have a first inflate and deflate chamber 16 and a second inflate and deflate chamber 17 formed therein.
Each of the main chamber 14, the opening alignment chamber 15, the first inflate and deflate chamber 16 and the second inflate and deflate chamber 17 takes the form of a hollow airbag. The opening alignment chamber 15 is formed on one end of the main chamber 14 and is defined by an annular sidewall. The sidewall defining the opening alignment chamber 15 has a first opening 150, a second opening 151, a third opening 152 and a fourth opening 153 sequentially formed through the sidewall in a circumferential direction. Center lines AA, BB, CC, DD of any adjacent two of the first opening 150, the second opening 151, the third opening 152 and the fourth opening 153 are substantially perpendicular. The first inflate and deflate chamber 16 and the second inflate and deflate chamber 17 are aligned next to each other in a front-to-rear direction. Each of the first inflate and deflate chamber 16 and the second inflate and deflate chamber 17 has a central portion and two side portions, the central portions are located inside the trunk 11, the side portions of the first inflate and deflate chamber 16 are located inside the first waving portion 12, and the side portions of the second inflate and deflate chamber 17 are located inside the second waving portion 13. The opening alignment chamber 15 communicates with the main chamber 14 through the first opening 150. The second opening 151 communicates with the second inflate and deflate chamber 17. The third opening 152 communicates with the air outlet 110. The fourth opening 153 communicates with the first inflate and deflate chamber 16.
The air pump 20 is conventional, and has a pump inlet formed through a bottom portion and a pump outlet formed through a top portion. The air pump 20 is mounted beneath the main chamber 14 of the body 10. As the pump outlet is aligned with the main chamber 14 of the body 10, the air pump 20 serves to pump the air near the pump inlet into the main chamber 14 through the pump outlet.
With reference to
The driving motor 31 is conventional, is mounted inside a cover 312 and on a fixing base 313, and has a spindle 310. The spindle 310 is mounted through the fixing base 313. The driving motor 31 and the cover 312 are securely mounted inside the opening alignment chamber 15.
The four-way valve assembly 32 has two half housings and a guide vane 325. The half housings are assembled to form a complete housing that is hollow and cylindrical. Each half housing has an annular wall 320, a first air vent 321, a second air vent 322, a third air vent 323 and a fourth air vent 324. An axial direction of the first air vent 321 is perpendicular to those of the second air vent 322 and the fourth air vent 324. An axial direction of the third air vent 323 is perpendicular to those of the second air vent 322 and the fourth air vent 324. The guide vane 325 is plate-like and is rotatably mounted inside the four-way valve assembly 32, and divides an inner space of the four-way valve assembly into two rooms varying according to a position of the guide vane 325 when the four-way valve assembly 32 is intermittently driven by the driving motor 31 to rotate an angle. At one of the positions of the guide vane 325, the first air vent 321 and the fourth air vent 324 may communicate with one of the rooms, and the second air vent 322 and the third air vent 323 may communicate with the other room. A bottom of the four-way valve assembly 32 is combined with the fixing base 313 to define a storage space between the bottom of the four-way valve assembly 32 and the fixing base 313.
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By constantly rotating the four-way valve assembly 32 in the opening alignment chamber 15 to change the air flow directions, the first waving portion 12 and the second waving portion 13 continuously and alternately change their waving directions, thereby demonstrating dynamic and vivid motion and providing higher entertaining and animated visual effect.
With reference to
The body 10A takes a human form and has an upper portion and a lower portion. The body 10A has a main chamber 14A, an opening alignment chamber 15A, a first inflate and deflate chamber 16A and a second inflate and deflate chamber 17A. The opening alignment chamber 15A is defined within the main chamber 14A. An air outlet 110A is formed through the body 10A. The first inflate and deflate chamber 16A and the second inflate and deflate chamber 17A are formed on two side portions inside the lower portion of the body 10A. The opening alignment chamber 15A has a first opening 150A, a second opening 151A, a third opening 152A and a fourth opening 153A. The opening alignment chamber 15A communicates with the main chamber 14A through the first opening 150A. The second opening 151A communicates with the second inflate and deflate chamber 17A. The third opening 152A communicates with the air outlet 110A. The fourth opening 153A communicates with the first inflate and deflate chamber 16A.
The air pump 20A is mounted beneath the body 10A and has a pump outlet communicating with the main chamber 14A of the body 10A.
The opening alignment unit 30A is mounted inside the opening alignment chamber 15A and has a driving motor, a four-way valve assembly 32A and a Geneva mechanism. The driving motor, the four-way valve assembly 32A and the Geneva mechanism are similar to those in the first embodiment. The four-way valve assembly 32A has four air vents and a guide vane 325A mounted inside the four-way valve assembly 32A. Driven by the driving motor and the Geneva mechanism, the four-way valve assembly 32A can be rotated intermittently so that the air vents of the four-way valve assembly 32A are rotated to sequentially align with and communicate with the first opening 150A, the second opening 151A, the third opening 152A, and the fourth opening 153A. By changing the position of the guide vane 325A of the four-way valve assembly 32A, two different communicating states are available among the first opening 150A, the second opening 151A, the third opening 152A, and the fourth opening 153A.
When the waving inflatable toy is operated, the air pump continuously pumps air to the main chamber 14A of the body 10A. The inflated air enters the opening alignment chamber 15A through the first opening 150A. As the guide vane 325A is so positioned that the first opening 150A communicates with the fourth opening 153A and does not communicate with the second opening 151A and the third opening 152A, the inflated air flows to the first inflate and deflate chamber 16A through the first opening 150A, the opening alignment chamber 15A and the fourth opening 153A to inflate and expand the first inflate and deflate chamber 16A. Meanwhile, as the second opening 151A communicates with the third opening 152A, the air in the second inflate and deflate chamber 17A is exhausted to the air outlet 110A sequentially through the second opening 151A, the opening alignment chamber 15A and the third opening 153A to deflate and shrink the second inflate and deflate chamber 17A. By inflating the first inflate and deflate chamber 16A and deflating the second inflate and deflate chamber 17A, the upper portion of the body 10A waves toward a direction.
With reference to
Accordingly, by constantly rotating the four-way valve assembly 32A in the opening alignment chamber 15A in the present embodiment to change the air flow directions, the body 10A continuously and alternately changes its waving directions, thereby demonstrating dynamic and vivid motion and providing a higher entertaining and animated visual effect.
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only.
Changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.