The present invention relates to a portable electric foam maker that can generate and disperse a large quantity of foam bubbles.
There are a wide variety of outdoor toys that involve water. Some of the most popular outdoor toys are foam makers that generate and disperse foam bubbles.
Conventional foam makers are usually large and bulky, and require connections to water hoses to supply water. There are also foam makers that need to be plugged into a power outlet, and so there are risks of electrical shock. There is often a trade-off between size and foam production, as the smaller foam makers do not produce the volume and quality of foam that is often desired.
Thus, there remains a need for a foam maker that can produce a large volume of high-quality foam bubbles, yet is compact, safe and convenient to use.
It is an object of the present invention to provide a foam maker that can produce a large volume of high-quality foam bubbles, yet is compact, safe and convenient to use.
In order to accomplish the objects of the present invention, there is provided a foam maker having a bucket and a lid. The bucket has at least one wall that defines an interior for holding foam solution, an outlet port provided in one of the at least one wall, and a delivery tube connected to the outlet port. The lid includes a lid base and a lid top. The lid base has a frame and a compartment that receives a fan, a motor coupled to the fan, and a fluid inlet port through which foam solution and water can be introduced. The lid top has a water/foam inlet opening that is aligned with the fluid inlet port, a sealing cap removably secured to the water/foam inlet opening, and an air inlet port that is positioned adjacent the fan. An air tube is disposed inside the bucket, and has a first end connected to the lid base and communicating with the fan, and an opposite second end having an open distal end that is immersed inside foam solution. The air tube further includes an air chamber positioned adjacent the open distal end.
The following detailed description is of the best presently contemplated modes of carrying out the invention. This description is not to be taken in a limiting sense, but is made merely for the purpose of illustrating general principles of embodiments of the invention. The scope of the invention is best defined by the appended claims.
The present invention provides a portable electric foam maker 100 that can effectively generate many foam bubbles.
Referring to
The bucket 102 is shown in the FIGS. as having a four-sided configuration with four walls, but can be embodied in any desired configuration (e.g., circular or rectangular, among others). An outlet port 120 is provided in one of the walls of the bucket 102, and a tube connector 122 is secured to the outlet port 120 to connect to a filter holder 124. A water sealing ring 121 is provided between the tube connector 122 and the outer peripheral edge of the outlet port 120 to provide an effective seal. A filter 126 is provided inside the filter holder 124. The delivery tube 116 is connected to the filter holder 124, and can be an extendable tube whose length can be varied.
Referring to
The lid top 106 has a water/foam inlet opening 142 that is aligned with the inlet port 138, and is adapted to receive a sealing cap 144. A sealing ring 146 can be provided around the threaded stem of the sealing cap 144 to provide a more effective seal. A battery compartment opening 148 is also provided on the lid top 106, and the battery housing 134 extends downwardly from the opening 148. The batteries 114 are retained in the battery housing 134, and a battery lid 150 seals the battery housing 134. A battery housing sealing ring 160 cooperates with the battery lid 150 to provide a better seal. In addition, a water seal ring 162 seals the lid top 106 and the lid base 104 at the fluid inlet port 138. Battery contact plates 152 and battery plate holders 154 are provided to deliver the power from the batteries 114 to the motor 110 through power wires. A battery lid push pin 156 extends from the base of the battery housing 134, and works with a spring 158 to bias the battery lid 150 when the screws 155 are loosened so as to facilitate easy removal. An air inlet port 170 is provided on the lid top 106 at a position adjacent the fan 112. See
A handle 164 can be secured to the peripheral walls of the bucket 102. An on/off switch 166 can be provided on top of the lid top 106 to turn the motor 110 on and off.
Referring to
An air chamber 206 is provided on the end tube 184. The air chamber is hollow inside and is sealed with a cover 210, which traps air inside and keeps the distal end 202 always floating on the top level of the foam solution. In such case, the air being pumped into the foam solution will always encounter minimum water pressure. Thus, the objective of this moving air tube 108 is to make sure that air can be pumped out into the foam solution at the lowest water pressure level, and that battery consumption can be reduced. Since the air chamber 206 is always floating on the top level of the foam solution, the distal end 202 of the end tube 184 will always be slightly immersed in the foam solution. This is best illustrated in
In addition, the end tube 184 is designed to have a smaller cross-sectional diameter than the central tube 182 so as to increase the air flow speed to generate more foam.
The operation of the foam maker 100 is described in connection with
Next, the motor 110 will rotate the fan 112 to draw ambient air through the air inlet port 170 into the fan 112, where the air is then delivered through the tubular extension 188 into the air tube 108. The air is then dispelled through the opened distal end 202 of the end tube 184 into the foam solution. The air tube 108 is sized and configured (with the L-shaped tubes 180, central tube 182 and end tube 184) so that the distal end 202 can be immersed inside the foam solution, with the air chamber 206 floating on the fluid level of the foam solution. As the air is forced into the foam solution, foam bubbles are created inside the bucket 102, and directed towards the outlet port 120. The filter 126 provides a resistance to the foam bubbles. The pressure inside the bucket 102 increases, which compress the foam bubbles to a finer form before leaving the bucket 102. The foam bubbles then squeeze through the filter 126 and then expelled via the delivery tube 116.
Thus, the present invention provides a foam maker 100 that is simple in construction, yet can effectively generate a large volume of foam bubbles that are finer in texture than conventional foam bubbles. It can be conveniently and quickly set up for use, and no power plugs are needed, so that it can be entirely portable and moved around. The foam maker 100 has a compact size that is lower cost to manufacture, and is safer for use.
While the description above refers to particular embodiments of the present invention, it will be understood that many modifications may be made without departing from the spirit thereof. The accompanying claims are intended to cover such modifications as would fall within the true scope and spirit of the present invention.