The present invention relates to a protective clothing, and more particularly, to a protective clothing to prohibit dust, germs and viruses from entering interior of the protective clothing to protect the wearers.
The protective clothing is designed to protect the wearers from potential risks such as toxic dust, germs and viruses, so that the protective clothing focuses on how air enters into the interior of the protective clothing. One of the shortcomings of conventional protective clothing is that the ventilation feature to the wearers is poor so that the wearers are suffered by high humidity and high temperature. In order to improve this shortcoming, a hose is connected to the protective clothing and a compressor, fresh air can be sent into the protective clothing to provide air ventilation to the wearers. However, the hose and the compressor limit the range that the wearers can move.
The present invention intends to provide a protective clothing to eliminate the shortcomings mentioned above.
The present invention relates to a protective clothing and comprises a front portion and a back portion, and a space is formed in the protective clothing. The protective clothing includes multiple air orifices, a first entrance, a head mask, an upper portion and a lower portion. The upper portion is formed between the head mask and the lower portion. A transparent window is formed to the head mask. The upper portion includes two first exits so that two hands extend through the two first exits. The lower portion includes two second exits so that two legs extend through the two second exits. Each of the first and second exits includes a tightened cuff. An air blowing device is attached to the protective clothing and includes an inlet, an outlet, a filtering layer and a power source. The inlet communicates with the space. The filtering layer is configured to filter air entering the room.
The primary object of the present invention is to provide a protective clothing that is equipped with an air blowing device. The air blowing device sends air into the protective clothing, and the air releases from the air orifices to cool down the inside temperature the protective clothing.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings which show, for purposes of illustration only, a preferred embodiment in accordance with the present invention.
Referring to
The first entrance 15 may be a zipper entrance so that the wearer can wear the protective clothing 1 of the present invention from the first entrance 15 from the front portion 11 of the protective clothing 1.
An air blowing device 2 is attached to the protective clothing 1 and includes an inlet 21, an outlet 22, a filtering layer 23 and a power source 24. The inlet 21 communicates with the space 13. The filtering layer 23 are configured to filter air entering the room 13. Preferably, the filtering layer 23 is located at the inlet 21 of the air blowing device 2, and the filtering layer 23 includes three laminated filtering sheets 231 as shown in
The upper portion 17 includes a body section 173 and two sleeve sections 170. The body section 173 is formed between the head mask 16 and the lower portion 18. The two first exits 171 are located to the two sleeve sections 170 respectively. The air blowing device 2 is attached to the upper portion 17 and located close to the lower portion 18. When the two sleeve sections 170 hangs downward, the air blowing device 2 is located close to one of the two sleeve sections 170 so that the wearer can easily replace a new power source 24 of the air blowing device 2.
The lower portion 18 includes a hip section 182 and two leg sections 180. The hip section 182 is formed with the upper portion 17. The two second exits 181 are respectively formed to two respective distal ends of the two leg sections 180. An openable portion 183 is formed to the hip section 182 of the back portion of the protective clothing 1 so that the wearer can use bathroom without taking off the protective clothing 1.
The air is sent into the space 13 via the air blowing device 2, and the air is released from the air orifices 14. The air is filtered by the filtering layer 23 to avoid from brining dust, germs and virus into the space 13. The pressure in the space 13 is larger than that of outside of the protective clothing 1, so that the air in the space 13 will release from the air orifices 14 to keep the wearer in the space 13 cool and comfortable.
As shown in
In addition, each of the air orifices 14 is covered by a filtering net 141 to further filter the air that releases from the air orifices 14. The wearer may carry virus but does not have symptoms, so that the air in the space 13 releases from the air orifices 14, the filtering net 141 is functioned to block the virus and germs from spreading into the air.
As shown in
The protective clothing 1 of the present invention provides an air-tight feature, and the air blowing device 2 keeps the wearer comfortable. The protective clothing 1 of the present invention eliminates the shortcomings of the conventional protective clothing.
While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.