Splash Guard for Snorkel Tube
A splash guard comprises a housing comprising a first aperture, a pivotal member comprising a pivot aim pivotally connected with the housing and a loading part connected with the pivot arm, a space surrounded by the pivot arm, the loading part, and the housing, a float member pivotally connected with the loading part and positioned in the space, and a closure member mounted on the first mounting portion and selectively covering the first aperture. The loading part has a side surface facing the housing and a pushing portion positioned on the side surface. The float member selectively abuts the pushing portion. The direction in which the float member pivots about the pivotal member and the direction in which the pivotal member pivots about the housing are reverse to each other. The splash guard is convenient in use and storage and provides safety and comfort to the snorkeler.
This application is based upon and claims priority under 35 U.S.C. 119(a) from Taiwan Patent Application No. 105202092 filed on Feb. 5, 2016, which is hereby specifically incorporated herein by this reference thereto.
BACKGROUND1. Technical Field
The present invention relates to the field of snorkel equipment; specifically to a splash guard for preventing water from entering the snorkel tube.
2. Description of the Prior Art(s)
Snorkel tubes are common tools allowing snorkelers to breathe under the water surface. A snorkel tube has a first opening and a second opening. The first opening is adapted to extend beyond the water surface for communication while the second opening is adapted to the mouth and nose of a snorkeler for breathing while the snorkeler is facing down in the water. However, the wave action or the disruption of the water surface by the action of the snorkelers make water enter the snorkel tubes via the first opening and interfere with the breathing of the snorkeler. Furthermore, water may be inhaled into the mouth and lungs of the snorkeler and the snorkeler is choked. In view of this, a splash guard is mounted on the top opening for preventing water from entering the snorkel tube.
With reference to
However, the conventional splash guard has disadvantages as follows:
First, with reference to
Second, with reference to
To overcome the shortcomings, a splash guard for a snorkel tube to mitigate or obviate the aforementioned problems is provided.
SUMMARYAn objective of the present invention is to provide a splash guard to overcome the technical limitation in usage, storage, and snorkeling safety.
In accordance with an embodiment of the present invention, the splash guard comprises a housing, a pivotal member, a space, a float member, and a closure member. The housing comprises a first aperture and a second aperture opposite the first aperture. The pivotal member is pivotally connected with the housing. The pivotal member comprises a pivot arm and a loading part. The pivot arm has two ends. One of the ends is pivotally connected with the housing at a position between the first aperture and the second aperture. The loading part is connected with the other one of the ends of the pivot aim. The loading part comprises a side surface facing the housing, a first mounting portion, a second mounting portion, and a pushing portion positioned on the side surface. The distance between the first mounting portion and the first aperture is shorter than the distance between the second mounting portion and the first aperture. The pushing portion is positioned between the first mounting portion and the second mounting portion. The space is surrounded by the pivot arm, the loading part, and the housing. The float member is pivotally connected with the second mounting portion, is positioned in the space, and selectively abuts the pushing portion. The direction in which the float member pivots about the pivotal member and the direction in which the pivotal member pivots about the housing are reverse to each other. The closure member is mounted on the first mounting portion and selectively covers the first aperture.
Accordingly, the splash guard has the benefits as follows:
First, the float member being light-weighted and small provides a torque capable of preventing the inadvertent closing-up action of the closure member caused by the inhalation or the head shaking of the snorkeler. As such, the splash guard is convenient in use and storage.
Second, even the splash guard is submerged below the water surface with the first aperture positioned below the second aperture, the splash guard is capable of preventing water from entering the snorkel tube via the first aperture, thereby keeping the snorkeler safe and comfortable.
In accordance with an embodiment of the present invention, the splash guard comprises a float limit positioned between the float member and the second mounting portion. The float member is pivotally connected with the second mounting portion via a pivot axle.
By the float limit, the pivoting of the float member about the second mounting portion is limited to ensure the float member remains in the space.
In accordance with an embodiment of the present invention, the float limit is mounted on the pivot axle and selectively abuts the second mounting portion.
In accordance with an embodiment of the present invention, the float limit is mounted on the second mounting portion. The space is surrounded by the pivot arm, the loading part, the housing, and the float limit. The float member selectively abuts the float limit.
In accordance with an embodiment of the present invention, the closure member comprises a cover and a mounting block. The cover selectively closes the first aperture. The mounting block is mounted on the cover and is mounted through the first mounting portion.
In accordance with an embodiment of the present invention, the first mounting portion comprises a through hole and an edge surrounding the through hole. The mounting block comprises a neck engaged with the edge.
In accordance with an embodiment of the present invention, the housing comprises a pivot limit positioned between the first aperture and the second aperture. The pivot arm is pivotally connected with the housing between the first aperture and the pivot limit. The pivot arm selectively abuts against the pivot limit.
Other objectives, advantages, and novel features of the embodiments of the present invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
The housing 10 is tubular in shape. The housing 10 comprises a side wall 11, a first aperture 12, a second aperture 13, and a pivot limit 14. The first aperture 12 and the second aperture 13 are formed at two terminals of the side wall 11. The pivot limit 14 is disposed on and protrudes from the side wall 11, and is positioned between the first aperture 12 and the second aperture 13.
The pivotal member 20 is pivotally mounted on the housing 10. The pivotal member 20 comprises two pivot arms 21 and a loading part 22. Each of the pivot arms 21 comprises a first end 211 pivotally connected with the side wall 11 and a second end 212 opposite the first end 211. The first end 211 of one of the pivot arms 21 is pivotally connected with the side wall 11 at a position between the first aperture 12 and the pivot limit 14, and selectively abuts against the pivot limit 14. The loading part 22 is connected between the second ends 212 of the two pivot arms 21. The loading part 22 comprises a side surface 220 facing the housing 10, a first mounting portion 221, a second mounting portion 222, and a pushing portion 223 positioned between the first mounting portion 221 and the second mounting portion 222. The distance between the first mounting portion 221 and the first aperture 12 is shorter than the distance between the second mounting portion 222 and the first aperture 12. The pushing portion 223 is disposed on and protrudes from the side surface 220 and is positioned between the two pivot arms 21. In an embodiment, with reference to
The space 30 is surrounded by the pivot arms 21, the loading part 22, and the side wall 11.
The float member 40 is pivotally connected with the second mounting portion 222, is positioned in the space 30, and selectivity abuts the pushing portion 223. The float member 40 has a specific gravity less than 1. The direction in which the float member 40 pivots about the pivotal member 20 and the direction in which the pivotal member 20 pivots about the housing 10 are reverse to each other. In an embodiment, with reference to
The closure member 50 is mounted on the first mounting portion 221 and selectively covers the first aperture 12. In an embodiment, with reference to
As demonstrated in
As shown in
When the float member 40 is partially sunk in the water, the float member pivots upon the pivot axle 60 to pivot counterclockwise about the pivotal member 20 under the driving of a buoyant force; then, as shown in
When the float member 40 is further sunk in the water, the float member 40 is driven by a larger buoyant force to push the pushing portion 223. As shown in
When the float member 40 is completely submerged in the water, the float member 40 is driven by a greater buoyant force, and the pivotal member 20 is forced to further pivot clockwise about the housing 10; then, as shown in
As shown in
As shown in
Further, as shown in
With reference to
With reference to
As shown in
Therefore, under the second operation condition, the splash guard is able to prevent the water from entering the snorkel tube via the first aperture 12 and provide safety and comfort to the snorkeler.
Further, as shown in
Based on the above, the splash guard is convenient in use and storage. In addition, the splash guard is able to prevent the water from entering the snorkel tube and provide safety and comfort to the snorkeler not only under the positive-angled operation condition, but also the negative-angled operation condition.
Claims
1. A splash guard comprising:
- a housing comprising a first aperture and a second aperture opposite the first aperture;
- a pivotal member pivotally connected with the housing and comprising: a pivot arm having two ends, one of the ends pivotally connected with the housing at a position between the first aperture and the second aperture; and a loading part connected with the other one of the ends of the pivot aim and comprising: a side surface facing the housing; a first mounting portion; a second mounting portion, wherein a distance between the second mounting portion and the first aperture is longer than a distance between the first mounting portion and the first aperture; and a pushing portion positioned on the side surface and between the first mounting portion and the second mounting portion;
- a space surrounded by the pivot arm, the loading part, and the housing;
- a float member pivotally connected with the second mounting portion, positioned in the space, and selectively abutting the pushing portion, wherein a direction in which the float member pivots about the pivotal member and a direction in which the pivotal member pivots about the housing are reverse to each other; and
- a closure member mounted on the first mounting portion and selectively covering the first aperture.
2. The splash guard as claimed in claim 1, wherein the splash guard comprises a float limit positioned between the float member and the second mounting portion, and the float member is pivotally connected with the second mounting portion via a pivot axle.
3. The splash guard as claimed in claim 2, wherein the float limit is mounted on the pivot axle and selectively abuts the second mounting portion.
4. The splash guard as claimed in claim 1, wherein the closure member comprises:
- a cover selectively closing the first aperture; and
- a mounting block mounted through the first mounting portion.
5. The splash guard as claimed in claim 2, wherein the closure member comprises:
- a cover selectively closing the first aperture; and
- a mounting block mounted through the first mounting portion.
6. The splash guard as claimed in claim 3, wherein the closure member comprises:
- a cover selectively closing the first aperture; and
- a mounting block mounted through the first mounting portion.
7. The splash guard as claimed in claim 4, wherein the first mounting portion comprises a through hole and an edge surrounding the through hole; and
- the mounting block comprises a neck engaged with the edge.
8. The splash guard as claimed in claim 5, wherein the first mounting portion comprises a through hole and an edge surrounding the through hole; and
- the mounting block comprises a neck engaged with the edge.
9. The splash guard as claimed in claim 6, wherein the first mounting portion comprises a through hole and an edge surrounding the through hole; and
- the mounting block comprises a neck engaged with the edge.
10. The splash guard as claimed in claim 1, wherein the housing comprises a pivot limit positioned between the first aperture and the second aperture;
- the pivot arm is pivotally connected with the housing between the first aperture and the pivot limit; and
- the pivot arm selectively abuts against the pivot limit.
11. The splash guard as claimed in claim 2, wherein the housing comprises a pivot limit positioned between the first aperture and the second aperture;
- the pivot arm is pivotally connected with the housing between the first aperture and the pivot limit; and
- the pivot arm selectively abuts against the pivot limit.
12. The splash guard as claimed in claim 3, wherein the housing comprises a pivot limit positioned between the first aperture and the second aperture;
- the pivot arm is pivotally connected with the housing between the first aperture and the pivot limit; and
- the pivot arm selectively abuts against the pivot limit.
13. The splash guard as claimed in claim 4, wherein the housing comprises a pivot limit positioned between the first aperture and the second aperture;
- the pivot arm is pivotally connected with the housing between the first aperture and the pivot limit; and
- the pivot arm selectively abuts against the pivot limit.
14. The splash guard as claimed in claim 5, wherein the housing comprises a pivot limit positioned between the first aperture and the second aperture;
- the pivot arm is pivotally connected with the housing between the first aperture and the pivot limit; and
- the pivot arm selectively abuts against the pivot limit.
15. The splash guard as claimed in claim 6, wherein the housing comprises a pivot limit positioned between the first aperture and the second aperture;
- the pivot arm is pivotally connected with the housing between the first aperture and the pivot limit; and
- the pivot arm selectively abuts against the pivot limit.
16. The splash guard as claimed in claim 7, wherein the housing comprises a pivot limit positioned between the first aperture and the second aperture;
- the pivot arm is pivotally connected with the housing between the first aperture and the pivot limit; and
- the pivot arm selectively abuts against the pivot limit.
17. The splash guard as claimed in claim 8, wherein the housing comprises a pivot limit positioned between the first aperture and the second aperture;
- the pivot arm is pivotally connected with the housing between the first aperture and the pivot limit; and
- the pivot arm selectively abuts against the pivot limit.
18. The splash guard as claimed in claim 9, wherein the housing comprises a pivot limit positioned between the first aperture and the second aperture;
- the pivot arm is pivotally connected with the housing between the first aperture and the pivot limit; and
- the pivot arm selectively abuts against the pivot limit.
Type: Application
Filed: May 10, 2016
Publication Date: Aug 10, 2017
Inventor: Chen-Lieh Pan (New Taipei City)
Application Number: 15/150,626