BUBBLE MACHINE WITH MULTIPLE BUBBLE MAKING PORTS
20230241527 · 2023-08-03
Assignee
Inventors
Cpc classification
International classification
Abstract
The present invention includes a plurality of soap bubble making ports in a housing where each of the ports includes a ring-shaped soap bubble outlet. A single tube, via the pump, pulls soap bubble solution from the reservoir and, through a manifold, delivers soap bubble solution to the output ports of the manifold and then to each of the plurality of soap bubble making ports. A plurality of mechanically linked wipers is respectively located at each soap bubble making port to form a film at the soap bubble making port. An air manifold splits air received from the air blower respectively to each soap bubble making port. When a motor-driven shaft rotates, soap bubble solution is delivered to all soap bubble ports; causes all wipers to rotate and causes air to be blown through all of the soap bubble ports to creates multiple soap bubbles at the same time.
Claims
1. A multi-port soap bubble making machine, comprising: a housing; a motor; a shaft being rotated by the motor; a plurality of soap bubble making ports in the housing; each of the ports including a soap bubble outlet; a reservoir in a portion of the housing configured and arranged for receiving and containing soap bubble solution therein; at least one bubble solution pump to direct bubble solution from the reservoir to the soap bubble making ports; a plurality of soap bubble making ports in the housing; a single tube, having a first end and a second end, the first end of the tube being in fluid communication with soap bubble solution in the reservoir; a manifold, having at least one input port and multiple output ports; the second end of the single tube being fluidly connected to the input port of the manifold; a plurality of output tubes, each having first and second ends; the first ends of the output tubes respectively connected to the multiple output ports; soap bubble solution being simultaneously delivered to each of the soap bubble making ports; at least one wiper respectively located at each soap bubble making port whereby the at least one wiper respectively forms a film at the plurality of soap bubble making ports; an air blower mechanically linked to the motor; an air manifold, having a single input port and multiple output ports; the single input port of the manifold being in fluid communication with the air blower and the multiple output ports of the air manifold being in fluid communication with the soap bubble making ports; whereby rotation of the shaft by the motor delivers soap bubble solution to all soap bubble ports; rotates all of the wipers, and blows air to through all of the soap bubble ports to create multiple soap bubbles at the same time.
2. The multi-port soap bubble making machine according to claim 1, wherein the at least one wiper is a single wiper that is configured and arranged for forming a film at all of the plurality of soap bubble making ports.
3. The multi-port soap bubble making machine according to claim 1, wherein the at least one wiper is a plurality of wipers for forming a film respectively at each of the plurality of soap bubble making ports.
4. The multi-port soap bubble making machine according to claim 1, wherein the plurality of wipers are mechanically linked so they rotate together.
5. The multi-port soap bubble making machine of claim 1, wherein the at least one pump is a peristaltic pump.
6. The multi-port soap bubble making machine of claim 1, wherein the at least one pump is a plurality of pumps respectively on each of the output tubes corresponding to the plurality of soap bubble making ports.
7. The multi-port soap bubble making machine of claim 1, wherein the at least one pump is a single pump on the single tube.
8. A multi-port soap bubble making machine, comprising: a housing; a motor; a shaft being rotated by the motor; a plurality of soap bubble making ports in the housing; each of the ports including a soap bubble outlet; a reservoir in a portion of the housing configured and arranged for receiving and containing soap bubble solution therein; a bubble solution pump to direct bubble solution from the reservoir to the soap bubble making ports; a plurality of soap bubble making ports in the housing; at least one tube, having a first end and a second end, the first end of the at least one tube being in fluid communication with soap bubble solution in the reservoir; a manifold, having at least one input port and multiple output ports; the second end of the at least one tube being fluidly connected to the input port of the manifold; a plurality of output tubes, each having first and second ends; the first ends of the output tubes respectively connected to the multiple output ports; soap bubble solution being simultaneously delivered to each of the soap bubble making ports; and an air blower configured an arranged to blow air through the ports to create bubbles.
9. The multi-port soap bubble making machine of claim 8, further comprising: at least one wiper located at each soap bubble making port whereby the at least one wiper forms a film at the soap bubble making port; the at least one wiper being configured and arranged to create a bubble film at each port through which air is blow to create bubbles.
10. The multi-port soap bubble making machine of claim 9, wherein the at least one wiper are a plurality of wipers.
11. The multi-port soap bubble making machine of claim 10, wherein the plurality of wipers are mechanically linked so they rotate together.
12. The multi-port soap bubble making machine of claim 8, wherein the air blower is mechanically linked to the motor.
13. The multi-port soap bubble making machine of claim 9, further comprising: an air manifold, having a single input port and multiple output ports; the single input port of the manifold being in fluid communication with the air blower and the multiple output ports of the air manifold being in fluid communication with the soap bubble making ports; and whereby rotation of the shaft by the motor delivers soap bubble solution to all soap bubble ports; rotates the at least one wipers, and blows air to through all of the soap bubble ports to create multiple soap bubbles at the same time.
14. The multi-port soap bubble making machine of claim 8, wherein the pump is a peristaltic pump.
15. The multi-port soap bubble making machine of claim 8, wherein the pump is a pump on each of the output tubes.
16. The multi-port soap bubble making machine of claim 8, wherein the pump is a pump on the single tube.
Description
BRIEF DESCRIPTION OF THE DRAWING FIGURES
[0022] The novel features that are characteristic of the present invention are set forth in the appended claims. However, the invention's preferred embodiments, together with further objects and attendant advantages, will be best understood by reference to the following detailed description taken in connection with the accompanying Figures in which:
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DESCRIPTION OF THE INVENTION
[0041] The new and unique soap bubble machine 100 with multiple soap bubble ports 102 with respective multiple wipers 104 and blowing ports is described in detail below. The soap bubble machine 100 of the present invention is shown in detail in
[0042] Referring first to
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[0047] In a further embodiment 200, as shown in
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[0050] The feed tube 128 pumps bubble solution up from the supply in the reservoir base 108, through manifold 132 and then into three output lines 134a-c having their own inline peristaltic pumps 136a-c to pull soap bubble solution liquid from the reservoir base 108 up through the manifold 128 and out through the multiple solution feed lines 136a-c (a single input to three output manifold 128 in this example case) and then to each of the respective rings 116 at each soap bubble port 102. As can be best seen in
[0051] Pumps 136a-c are of type of positive displacement pump used for pumping a variety of fluids and is well-suited for pumping soap bubble solution 117. Preferably, the soap bubble solution fluid routed via one supply line 128 into a manifold 132 with one input line and, for example, three output lines 134a-c to accommodate three soap bubble ports 102. The manifold 132 may have two or more than three outputs to feed the appropriate number of supply lines 134a-c depending on how many soap bubble ports 102 need a supply of soap bubble solution from the bubble solution reservoir 108.
[0052] As can be seen, a triple peristaltic pump 136a-c is configured on the output side of the manifold 128, on each output feed line 134a-c to effectively pump (i.e., pull) soap bubble solution 117 from the feed reservoir base 108 and direct it to each of the respective soap bubble ports. Referring back to
[0053] It is also possible and contemplated by the present invention to provide, instead, a single pump, representationally shown as 236 in
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[0056] For the blowing of air through ports 102, the motor 150 is energized and the fan 157 is actuated and air is blow through air manifold 158 and out through air ports 164, which are in fluid engagement with ports 102. Thus, bubble solution film across ports 102 receives air through ports 164 for the creation of bubbles 106.
[0057] For the rotation of the wipers 104, the motor 150 is interconnected to rotating seats 162 into which keyed spindles 160 resides. Thus, when the motor is energized, the seats 162 rotate thereby rotating the wipers 104 on the opposite side of the top plate 114.
[0058] As a result, a single motor 150 simultaneously provides the power to blow air to multiple ports 102, routes bubble solution 117 to each ring 116 and rotates each of the wipers 104.
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[0060] As can be understood, the various components shown above are assembled into a completed soap bubble machine 100, 100′, as substantially shown in
[0061] In view of the above, the present invention uniquely provides a wiper type soap bubble blowing machine 100, 100′ that can supply soap bubble solution 117 simultaneously to more than one soap bubble port 102 while also rotating all wipers 104 and blowing air through all soap bubble ports 102 at the same time. As a result, the soap bubble machine 100, 100′ of the present invention can produce more soap bubbles 106 than previously possible with prior art devices and machines.
[0062] It should be noted that the various structural components of the soap bubble machine 100, 100′ of the present invention are preferably molded plastic, silicone for the tubing for the soap bubble solution lines. The motor and other electrical components are made with materials known in the art for such motors and electrical components.
[0063] While there is shown and described herein certain specific structure embodying the invention, it will be manifest to those skilled in the art that various modifications and rearrangements of the parts may be made without departing from the spirit and scope of the underlying inventive concept and that the same is not limited to the particular forms herein shown and described except insofar as indicated by the scope of the appended claims.