This invention relates to electrically operated infrared (IR) light source drying apparatus and a drying method, in particular such an apparatus which may be (though not specifically) powered by electric batteries.
The typical existing electrically powered drying apparatus with a source of airflow usually includes a heating element in the body of the drying apparatus which heats up air passing through the interior of the apparatus. The thus heated air is then outputted by the apparatus for drying a target, e.g. a hand of a user. However, as it is necessary to heat up the air in the relatively short time interval during which the air passes through the body of the apparatus, significant power has to be provided to the heating element, and thus to the drying apparatus, to raise the temperature of the air to such an extent that the air, when leaving the apparatus, is of a sufficiently high temperature for drying the target. This means that such drying apparatus can only be powered by municipal AC current, which limits the flexibility of use of such drying apparatus and hinders their portability.
It is thus an object of the present invention to provide an IR light source drying apparatus and a drying method in which the aforesaid shortcomings are mitigated or at least to provide a useful alternative to the trade and public.
According to a first aspect of the present invention, there is provided an infrared (IR) light source drying apparatus including a body, an airflow output device for outputting an airflow from said body, and a heating member including an IR lamp for emitting an IR light ray, wherein said apparatus is without any heating element in the path of movement of said airflow through said body.
According to a second aspect of the present invention, there is provided a method of drying a target, including steps (a) emitting an infrared (IR) light ray to heat said target, and (b) outputting an airflow towards said target to cool said target, wherein said outputted airflow is at substantially the ambient temperature.
Electrically powered IR light source drying apparatus and drying method according to embodiments of the present invention will now be described, by way of examples only, with reference to the accompany drawings, in which:
The airflow output device 14, the IR heating module 16, the IR temperature sensor 18 and the temperature control module 20 are all powered by the power supply module 12. The IR temperature sensor 18 is in a data communicable relationship with the temperature control module 20. In particular, the temperature control module 20 receives temperature-related data from the IR temperature sensor 18. The temperature control module 20 is also electrically connected with the airflow output device 14 and the IR heating module 16 for controlling the operation of the airflow output device 14 and the IR heating module 16.
Turning now to
As can be seen more clearly in
The drying apparatus 100 also includes an IR temperature sensor 110 for detecting the temperature of the target T. Data relating to the detected temperature (“temperature-related data”) are transmitted by the IR temperature sensor 110 to the temperature control module 20 (see
As only infrared (IR) heating module 16 or the IR lamp 108, 124 serve as heat source for the drying apparatus 10, 100, 120, and no heating element is provided in the path of movement of the airflow through the body of the drying apparatus 10, 100, 120, significantly less power is required for powering the drying apparatus 10, 100, 120, such that the drying apparatus 10, 100, 120 may be powered by electric batteries (e.g. dry batteries) and not municipal AC power. The flexibility and safety of use and portability of the drying apparatus 10, 100, 120 are enhanced. In addition, as there is no conventional heating element (such as heating filament) in the body of the drying apparatus 10, 100, 120 (which may short the circuit in the presence of water or moisture, thus requiring further auxiliary safety measures and arrangements), the drying apparatus 10, 100, 120 may be used close to water or moisture.
Although the present invention has thus far been discussed in the context of an electrically operated hand dryer, the present invention may be implemented in other forms of dryers, e.g. electrically operated hair dryers.
It should be understood that the above only illustrates examples whereby the present invention may be carried out, and that various modifications and/or alterations may be made thereto without departing from the spirit of the invention.
It should also be understood that certain features of the invention, which are, for clarity, described in the context of separate embodiments, may be provided in combination in a single embodiment. Conversely, various features of the invention which are, for brevity, described in the context of a single embodiment, may also be provided separately or in any appropriate sub-combinations.
Number | Date | Country | Kind |
---|---|---|---|
106119068 A | Jun 2017 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
4979523 | Grimm | Dec 1990 | A |
20040159002 | Carlucci et al. | Aug 2004 | A1 |
20080090193 | Soanes | Apr 2008 | A1 |
20140200635 | Il | Jul 2014 | A1 |
20150184938 | Tanihara | Jul 2015 | A1 |
20150215993 | Groves | Jul 2015 | A1 |
20180245846 | Arens et al. | Aug 2018 | A1 |
Number | Date | Country |
---|---|---|
2074616 | Apr 1991 | CN |
1079129 | Dec 1993 | CN |
1761414 | Apr 2006 | CN |
103596464 | Feb 2014 | CN |
104534846 | Apr 2015 | CN |
107193257 | Sep 2017 | CN |
107257909 | Oct 2017 | CN |
0 565 933 | Mar 1993 | EP |
Entry |
---|
Bibliographic data for CN107257909A including English Abstract, 2 pages. |
Bibliographic Data for CN2074616U including English Abstract, 2 pages. |
Bibliographic Data for CN1761414A (Conair Corporation), 2 pages. |
Bibliographic Data for CN1079129A, 2 pages. |
Bibliographic Data for CN104534846A1 including English Abstract, 2 pages. |
Bibliographic Data for CN103596464A including English Abstract, 2 pages. |
Bibliographic Data for CN107193257A including English Abstract, 2 pages. |
Bibliographic Data for EP0565933A1 including English Abstract, 3 pages. |
Chinese Office Action dated Mar. 30, 2020 in counterpart application 201810187993.6, including Search Report on pp. 7-9 with relevance categories indicated, 9 pages. |
Number | Date | Country | |
---|---|---|---|
20180356153 A1 | Dec 2018 | US |