BICYCLE HELMET
20180368503 ยท 2018-12-27
Inventors
Cpc classification
A42B3/0493
HUMAN NECESSITIES
A42B3/066
HUMAN NECESSITIES
International classification
Abstract
A bicycle helmet includes a body, a plurality of air inlets and a plurality of air outlets. The body includes a front portion, an upper portion, a rear portion and an inner portion. The upper portion includes a closed surface. A plurality of dimple structures are formed on the closed surface to produce an aerodynamic effect. The air inlets are formed on the front portion. The air outlets are formed on the rear portion. The inner portion includes a plurality of ribs, the ribs are positioned correspondingly to the air inlet and the air outlet and define air channels therein, an airflow flows through the body due to the airflow entering the body through the air inlets, passing through the air channels and exiting the body through the air outlets.
Claims
1. A bicycle helmet comprising: a body comprising a front portion, an upper portion, a rear portion and an inner portion, the upper portion comprising a closed surface and a plurality of dimple structures formed on the closed surface to produce an aerodynamic effect; a plurality of air inlets formed on the front portion; and a plurality of air outlets formed on the rear portion; wherein the inner portion comprises a plurality of ribs, the ribs are positioned correspondingly to the air inlets and the air outlets and define air channels therein, an airflow flows through the body due to the airflow entering the body through the air inlets, passing through the air channels and exiting the body through the air outlets.
2. The bicycle helmet of claim 1, wherein each of the air inlets and each of the air outlets comprise at least one opening for allowing the airflow to flow through.
3. The bicycle helmet of claim 2, wherein some of the air inlets and some of the air outlets comprise supporting frames.
4. The bicycle helmet of claim 2, wherein some of the openings of the air inlets and some of the openings of the air outlet are positioned correspondingly.
5. The bicycle helmet of claim 1, wherein the dimple structures are formed extendedly from two sides of a middle portion to two sides of a rear portion of the closed surface.
6. The bicycle helmet of claim 1, wherein the inner portion comprises a concave shape for receiving a wearer's head.
7. The bicycle helmet of claim 1, wherein the rear portion has a cut section that is cut from an extension direction of the closed surface of the upper portion.
8. The bicycle helmet of claim 1, wherein each of the ribs is disposed separately.
9. The bicycle helmet of claim 8, wherein each of the ribs is positioned correspondingly to the air inlets and the air outlets and is connected between the front portion and the rear portion.
10. The bicycle helmet of claim 1, further comprising a chinstrap clamping mechanism disposed on two sides of the body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0006] The present disclosure can be more fully understood by reading the following detailed description of the embodiment, with reference made to the accompanying drawings as follows:
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DETAILED DESCRIPTION
[0017] It is an objective of the present disclosure to provide a novel bicycle helmet which is aerodynamically streamlined, lightweight and has a great amount of cooling airflow to pass between the wearer's head and the inside of the helmet.
[0018] Another object of the present disclosure is to provide a bicycle helmet that can ensure a minimum movement between the body of the bicycle helmet and the wear's head thereby providing sufficient protection effect.
[0019] A preferred embodiment of the present disclosure referring to
[0020] A bicycle helmet 100 includes a body 110, a plurality of air inlets 120 and a plurality of air outlets 130. The body 110 includes a front portion 110a, an upper portion 110b, a rear portion 110c and an inner portion 110d. The upper portion 110b includes a closed surface, and a plurality of dimple structures 180 are formed on the closed surface to produce an aerodynamic effect. Therefore, the closed surface having aerodynamic dimple structures 180 can provide higher stability and reduce wind resistance while bicycle riding.
[0021] The material of the body 110 can be polymers, such as PETG or other thermoset polymers.
[0022] The air inlets 120 are formed on the front portion 110a and the air outlets are formed on the rear portion 110c.
[0023] An airflow can flow through the body 110 for providing an air-cooling effect. In other words, the airflow enters the body 110 through the air inlets 120 and exits the body 110 through the air outlets 130.
[0024] For allowing the airflow to flow through, each of the air inlets 120 and each of the air outlets 130 includes at least one opening 121, 131. It should be mentioned that the number of the openings 121, 131 can be varied with different considerations on aerodynamics. The openings 121, 131 can be formed by disposing supporting frames 140, 141 in the air inlets 120 or the air outlets 130.
[0025] In
[0026] From
[0027] In
[0028] Furthermore, the rear portion 110c has a cut section that is cut from an extension direction of the closed surface of the upper portion 110b. The cut section can provide better protection effect of the back head of the wearer.
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[0030] In
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[0032] Although the present disclosure has been described in considerable detail with reference to certain embodiments thereof, other embodiments are possible. Therefore, the spirit and scope of the appended claims should not be limited to the description of the embodiments contained herein.
[0033] It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present disclosure without departing from the scope or spirit of the disclosure. In view of the foregoing, it is intended that the present disclosure cover modifications and variations of this disclosure provided they fall within the scope of the following claims.