1. Field of the Invention
The present invention relates to an air pump for an inflatable article, especially to a compact air pump with rapid rate of inflation.
2. Description of the Prior Art(s)
Air pumps are connected to inflatable articles such as airbeds, inflatable trampolines, inflatable sofas, large-sized inflatable toys and the like and inflate or deflate the inflatable articles for use or storage.
The conventional air pump for the inflatable article has a housing having an impeller, a motor, an electromagnetic valve, an air valve and a slider mounted in the housing. The housing has an inner hole formed through a sidewall of the housing and an outer hole formed through a bottom of the housing. The motor is connected to and rotates the impeller at high speed to create an airflow. The electromagnetic valve has a shaft. The air valve is connected to an end of the shaft of the electromagnetic valve and corresponds to the inner hole of the housing. The slider is connected to another end of the shaft of the electromagnetic valve and corresponds to the outer hole of the housing.
As the motor rotates the impeller, the electromagnetic valve controls the air valve to selectively open or close the inner hole of the housing and simultaneously the electromagnetic valve slides the slider to switch directions of the airflow to inflate or deflate an inflatable article.
However, since the air valve and the slider are both driven by the shaft of the electromagnetic valve, the inner and outer holes of the housing have to be formed respectively on the sidewall and the bottom of the housing. Thus, while inflating, the airflow flows from the bottom toward the sidewall of the housing. As a path of the airflow is curved, flowing distance and resistance of the airflow in the housing are increased. Therefore, inflating the inflatable article with the conventional air pump is slow.
To overcome the shortcomings, the present invention provides an air pump for an inflatable article to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to provide an air pump for an inflatable article. The air pump has a housing, and a blower, a switch assembly, an air valve and a fan guard mounted in the housing. The switch assembly has a slider and a driving device sliding the slider and the air valve to switch operating modes of the air pump.
Thus, the air pump inflates or deflates the inflatable article or maintains or fine-tunes the air pressure inside the inflatable article. Therefore, the first and second openings of the housing are disposed on the housing for connection to inflatable articles and the airflow flows directly through the air pump so inflating and deflating the inflatable article is fast.
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.
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The first air chamber (331) is formed adjacent to a front end of the casing (33). The second air chamber (332) is formed adjacent to and communicates with the first air chamber (331). The third air chamber (333) is formed between the second air chamber (332) and a rear end of the casing (33) and communicates with the second air chamber (332) and the inner chamber (101) of the housing (10). The side air chamber (334) is formed beside the second air chamber (332) and communicates with the first and third air chamber (331, 333).
The air inlet (335) is formed through a sidewall of the casing (33) and communicates with the first air chamber (331) of the casing (33). The air outlet (336) is formed through the sidewall of the casing (33) and communicates with the second air chamber (332) of the casing (33).
The motor (31) may be controlled by a controller (50), is mounted securely on the front end of the casing (33) and has a shaft (311). The shaft (311) is mounted through the front end of the casing (33) and the first air chamber (331) and protrudes to the second air chamber (332) of the casing (33).
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The switch assembly (40) is mounted slidably in the inner chamber (101) of the housing (10) and between the blower (30) and the bottom of the housing (10) and has a slider (41) and a driving device.
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The driving device is connected to the slider (41) and slides the slider (41) back and forth.
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The air valve (20) is mounted on the bottom of the housing (10) through the second opening (103) of the housing (10), selectively seals the second opening (103) of the housing (10) and may have a supporter (21), a seal (23) and a resilient component (22).
The supporter (21) has a disk (211), an upper pintle (212) and a lower pintle (213). The disk (211) is mounted in the second opening (103) of the housing (10). The upper pintle (212) is longitudinally formed axially from an upper surface of the disk (211) and has a distal end. The distal end of the upper pintle (212) abuts the guider (412) of the slider (41). The lower pintle (213) is longitudinally formed axially from a lower surface of the disk (211).
The seal (23) is a disk, is rubber, is mounted on the lower surface of the disk (211) and selectively abuts the bottom of the housing (10) to seal the second opening (103) of the housing (10).
The resilient component (22) is mounted around the lower pintle (213) of the supporter (21) and abuts the seal (23).
The fan guard (11) is mounted on the bottom of the housing (10) around the air valve (20) and abuts the resilient component (22) of the air valve (20) to allow the disk (211) of the air valve (20) to securely abut the housing (10).
The air pump inflates the inflatable article, maintains air pressure of the inflatable article, deflates the inflatable article and fine-tunes the air pressure inside the inflatable article.
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After the inflatable article is inflated, the air pressure inside the inflatable article is higher than air pressure outside the inflatable article. Therefore, once the motor (31) stops and the switching hole (411) of the slider (41) still aligns with the air outlet (336) of the casing (33) of the blower (30), the air pressure inside the inflatable article forces the seal (23) to abut the bottom of the housing (10) tightly and seal the second opening (103) of the housing (10) securely. Thus, the air pressure of the inflatable article is maintained.
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To fine-tuning the air pressure inside the inflatable article, the motor (31) is turned off and the slider (41) set in a deflating position as described. Then, since the air pressure inside the inflatable article is higher than the air pressure outside the inflatable article, the air inside the inflatable article still flows out of the inflatable article through the air pump slowly. Therefore, the air pressure inside the inflatable article can be adjusted finely.
The air pump for the inflatable article as described has the following advantages. The driving device slides the slider (41) and the guider (412) of the slider (41) pushes the air valve (20) to switch operating modes of the air pump. Therefore, the first and second openings (102, 103) of the housing (10) are disposed on the housing (10) appropriate to different kinds of inflatable articles. For example, the first and second openings (102, 103) of the housing (10) are directly opposite to each other in the preferred embodiment as described. Therefore, the airflow flows through the air pump directly and inflating or deflating the inflatable article is fast.
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 features of the invention, the disclosure is illustrative only. Changes may be made in the details, 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.
Number | Name | Date | Kind |
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6679686 | Wang | Jan 2004 | B2 |
6955529 | Tsai | Oct 2005 | B2 |
7128525 | Tsai | Oct 2006 | B2 |
Number | Date | Country | |
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20110020149 A1 | Jan 2011 | US |