This application claims priority of Taiwanese Application No. 103115829, filed on May 2, 2014.
The present invention relates to a heat-dissipating garment.
In order to be environmentally friendly, a conventional heat-dissipating garment, such as a cooling suit disclosed in U.S. Pat. No. 7,272,946, is configured for allowing a wear comfortable feeling with a low power consumption and a simple structure. The cooling suit includes a cloth part having an upper portion made of a highly air-permeable material, and having those portions other than the upper portion which are made of a substantially air-impermeable material. Formed at a reverse surface of the cloth part are airflow passages between the cloth part and an undergarment. Provided at a lower portion of the cloth part are air outlets for extracting air-streams within the airflow passages to the exterior. Provided at those positions of the reverse side of the cloth part, which correspond to the air outlets, are fans for forcibly causing the air-streams within the airflow passages. Outside air is introduced into the airflow passages by the fans through the upper portion of the cloth part, and the air-streams flow within the airflow pas sages in a manner substantially parallel to the wearer's body surface, so that the wearer's body is cooled.
An object of the present invention is to provide a heat-dissipating garment with a different heat-dissipating configuration.
Accordingly, a heat-dissipating garment of the present invention includes a clothing main body, at least two first airflow guides, two second airflow guides, two fans and a controller.
The clothing main body includes an outer layer and a lining. The clothing main body has a front portion, a rear portion, and a pair of side portions that are respectively connected between the front portion and the rear portion and between the front portion and the rear portion. The clothing main body is formed with at least two upright-extending first channels, two upright-extending second channels and a transversely-extending third channel. The first channels are formed respectively at the front portion and the rear portion between the outer layer and the lining. The second channels are formed respectively at the side portions between the outer layer and the lining. The third channel is connected to upper ends respectively of the first and second channels, and is in spatial communication with the first and second channels.
The first airflow guides are disposed respectively in the first channels, and have respective lower openings. The second airflow guides are disposed respectively in the second channels and have respective lower openings. The fans correspond respectively to the lower openings of the second airflow guides and produce airflow that flows through the lower openings of the second airflow guides into the second airflow guides toward the third channel, that flows through the third channel toward the first airflow guides, and that is discharged from the clothing main body through the lower openings of the first airflow guides. The controller is electrically connected to the fans to control rotational speed of the fans.
Other features and advantages of the present invention will become apparent in the following detailed description of the embodiments with reference to the accompanying drawings, of which:
Before the present invention is described in greater detail, it should be noted that like elements are denoted by the same reference numerals throughout the disclosure.
Referring to
The clothing main body 1 includes an outer layer 11 and a lining 12. The clothing main body 1 has a front portion 13, a rear portion 14, a pair of side portions 15 and a lower portion 16. The front portion 13 has a front-left part 131 and a front-right part 132. One of the side portions 15 is connected between the front-left part 131 and the rear portion 14, and the other one of the side portions 15 is connected between the front-right part 132 and the rear portion 14. The lower portion 16 is connected among the front-left part 131, the front-right part 132, the rear portion 14 and the side portions 15. The lining 12 is generally made of a fabric with moisture-absorbing and fast-drying characteristics.
The clothing main body 1 is formed with three upright-extending first channels 17, two upright-extending second channels 18, and a transversely-extending third channel 19. The first channels 17 are formed respectively at the front-left part 131, the front-right part 132 and the rear portion 14 between the outer layer 11 and the lining 12. The second channels 18 are formed respectively at the side portions 15 between the outer layer 11 and the lining 12. The third channel 19 is formed between the outer layer 11 and the lining 12, is connected to upper ends respectively of the first and second channels 17, 18, and is in spatial communication with the first and second channels 17, 18.
While the first and second channels 17, 18 extend vertically in this embodiment, they may extend inclinedly in other embodiments, and the present invention should not be limited in this respect.
The first airflow guides 2 are disposed respectively in the first channels 17, and have respective lower openings 21. The second airflow guides 3 are disposed respectively in the second channels 18, and have respective lower openings 31. The fans 4 are disposed in the lower portion 16 of the clothing main body 1. The fans 4 correspond respectively to the lower openings 31 of the second airflow guides 3 in position. Each of the fans 4 has an airflow access 41 exposed out of the outer layer 11 of the clothing main body 1, and an air pipe 42 connected to a corresponding one of the lower openings 31 of the second airflow guides 3. The airflow access 41 allows airflow to flow through the air pipe 42 and the lower opening 31 into the second airflow guide 3 toward the third channel 19. Then, the airflow directed into the third channel 19 flows through the third channel 19 toward the first airflow guides 2 in the first channels 17, and is discharged from the clothing main body 1 through the lower openings 21 of the first airflow guides 2.
Referring to
To enhance the effectiveness of heat-dissipation, the first embodiment of the heat-dissipating garment further includes four third airflow guides 6 that are disposed in the third channel 19 and that have respective airflow inlets 61 and airflow outlets 62. In particular, two of the third airflow guides 6 extend in the third channel 19 respectively from the side portions 5 to the front-right portion 132 and the front-left portion 131, respectively. The remaining two of the third airflow guides 6 extend in the third channel 19 respectively from the side portions 5 to the rear portion 14. Specifically, the airflow inlets 61 of two of the third airflow guides 6 flank the upper end of one of the second channels 18, which corresponds to one of the armpits of the wearer in position, and the airflow inlets 61 of the other two of the third airflow guides 6 flank the upper end of the other one of the second channels 18, which corresponds to the other one of the armpits of the wearer in position. Further, the airflow outlets 62 of the third airflow guides 6 correspond to the chest and the back of the wearer. With such configuration, the third channel 19 corresponding to the abovementioned body parts that sweat heavily may not be blocked, and, the airflow within the garment may flow smoothly, thereby achieving better heat-dissipation.
Moreover, as shown in
The controller 5 in this embodiment is disposed in the lower portion 16 of the clothing main body 1. The controller 5 is electrically connected to the fans 4 for controlling rotational speed of the fans 4. A power source 52, such as a rechargeable battery, may be further provided in the lower portion 16 for supply of electricity to the fans 4 and the controller 5.
Referring further to
Referring to
To further enhance the effectiveness of heat dissipation, the first embodiment of the heat-dissipating garment as shown in
Moreover, each of the cooling chips 50 has a hot side opposite to the cold side. When the cooling ship 50 is in operation, current flow brings the heat from cold side to the hot side, so that the cold side gets cooler while the hot side gets hotter. Therefore, in order to improve the performance of the cooling chips 50, the heat-dissipating garment further includes two heat sinks 51 that are attached respectively to the hot sides of the cooling chips 50. As a result, the hot sides may remain at ambient temperature such that the heat keeps flowing from the cold sides to the hot sides, and the temperature at the cold sides may be kept low.
The heat-dissipating garment may further include a user operating unit 162 that is mounted on the lower portion 16 of the clothing main body 1 as shown in
Referring to
When an engaging portion 201 of the external pipe 200 is inserted into the opening 910 of the engaging ring 91, the resilient plates 93 are first pressed by the engaging portion 201 of the external pipe 200 and then snap respectively into three grooves 202 that are formed at an outer surface of the engaging portion 201, so that the engaging portion 201 engages removably the engaging member 9. Accordingly, cold airflow generated by a cold air generating apparatus (e.g., an air conditioner) may be directed to the fans 4 through the external pipes 200, and may be further be guided in sequence sequentially to the second, third and first airflow guides 3, 6, 2 by propulsion of the fans 4. As a result, effectiveness of heat dissipation of the heat-dissipating garment is improved.
The external pipe 200 can be removed from the engaging member 9 by simply rotating the engaging portion 201 of the external pipe 200 in a direction as indicated by an arrow in
Referring to
Referring to
Similarly, the airflow generated by the fans 4 may be guided to the third channel 19 through the second airflow guides 3′, and may carry the moisture and heat excreted by the wearer, particularly on the chest, the back or the armpits, to exit the clothing main body 1 through the third and first airflow guides 6′, 2′, thereby achieving heat-dissipation.
Referring to
To conclude, some advantages of the heat-dissipating garment according to the present invention are as follows:
1. When the heat-dissipating garment of the present invention is worn by the wearer, the third channel 19 extends along the body parts that are likely to perspire heavily, such as the chest, the back, the armpits, etc. As a result, more effective heat dissipation may be achieved for those body parts.
2. The configurations of the first, second and third airflow guides 2, 2′, 3, 3′, 6, 6′ disposed within the first, second and third channels 17, 18, 19 may improve transmission efficiency of the airflow, thereby improving effectiveness of heat dissipation.
3. By virtue of the cooling chips 50, the heat sinks 51 and the external pipe 200, the effectiveness of heat dissipation may be further enhanced.
4. By virtue of the airflow exhausting pipes 101 and the main pipe 102 that are connected between the first airflow guides 2, 2′ and the air purifying device 300, discharged heat may be purified such that air quality may be improved.
While the present invention has been described in connection with what are considered the most practical embodiments, it is understood that this invention is not limited to the disclosed embodiment s but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
| Number | Date | Country | Kind |
|---|---|---|---|
| 103115829 | May 2014 | TW | national |