The present invention relates generally to swimming goggles and in particular to a swimming goggle structure which provides a comfortable engagement with the wearer's skin without water leakage, and is suitable for wearers who have different face contours and/or nose contours.
Swimming goggles are chiefly designed to avoid the contact of the wearer's eyes with water for eye protection in swimming Thus, the design of protection pads is very important. Conventionally, each protection pad of sucked type having a J shape in appearance is engaged to the wearer's face around the eye socket by means of an adsorptive force produced when the J-shaped protection pad is compressed and deformed in wearing. However, the J-shaped protection pad is found not perfectly matched with the contour of the wearer's eye socket, in that the J-shaped protection pad is formed of a unitary arc surface, i.e. same heights in its upper half part and its lower half part, which is not fit onto the wearer's eye socket having an unsymmetrical contour such as a contour formed by a raised top and a concave bottom. In this manner, a stronger pull force must be applied on the head strap in wearing for the balance of the deformation or adsorptive force around of the protection pad to avoid water leakage. However, the stronger pull force applied may bring uncomfortable contact and cause the formation of panda eyes in the wearer's face, and it may have a chance to cause a poor water leakage proof attachment to the contour of the wearer's eye socket along with the deformation of the protection pad. The perfect match of the J-shaped protection pad with the contour of the wearer's eye socket can be achieved, only if the J-shaped protection pad is well designed to make its upper half part and its lower half part as different heights to ensure the water-tight engagement of the protection pad with the contour of the wearer's eye socket.
Further, the protection pad of sucked type, as above, is formed of the unitary arc surface having same heights in its upper half part and it lower half part. When worn by the wearer whose face is smaller, the protection pad is hard to perfectly match the contour of the eye socket, and thus causes water leakage. When worn by the wearer whose face is larger, the protection pad may curl up from its edges, and thus causes water leakage. Briefly, the conventional protection pad of sucked type designed in the form of the unitary arc surface having same heights in its upper half par and its lower half part fails to meet the needs of all wearers who have different face sizes, and may create a poor water leakage proof attachment to the contour of the wearer's eye socket. In addition, a connection element used for interconnecting left and right lens frames is made of hard material in lack of flexibility, and fails to meet the needs of the wearers who have different nose bridge contours, especially for wearers who have taller nose bridges. Besides, the lack of flexibility of the protection pad may cause the left and right lens frames a poor water leakage proof attachment to the contour of the wearer's eye socket
An object of the present invention is to provide swimming goggles with face contact portions of sucked type, which provide a buffer against an impact caused when being compressed and deformed in wearing, and provide a desired engagement with the wearer's skin without any pressure stress or water leakage, so as to ensure a wearing comfort.
Another object of the present invention is to provide swimming goggles suitable for the wearers with different face contours, including a flexible edge design for compliance with different wearers' face contours, a flexible connection element design for compliance with different wearers' nose bridge contours, so as to be suitable for the wearers who have different face contours and nose bridge contours, without causing any pressure stress or water leakage, so as to ensure a wearing comfort.
To attain this, swimming goggles in accordance with the present invention, comprise a hard combining frame, a left soft frame, a right soft frame, and two hard head strap buckles. The hard combining frame is composed of a first embedding frame, a second embedding frame, and a connection element interconnecting the first embedding frame and the second embedding frame. Each of the first embedding frame and the second embedding frame has an embedding hole. The left soft frame and the right soft frame are respectively assembled with the embedding holes of the first embedding frame and the second embedding frame. Each of the left soft frame and the right soft frame is composed of a frame portion and a face contact portion. The frame portion is received in the embedding hole and is punched inward to form a receiving groove to receive a lens. The swimming goggles in accordance with the present invention are characterized in that: the face contact portion is disposed with a flange rib with respect to an edge of the lens, so as to provide a buffer against an impact caused when being compressed and deformed.
Accordingly, each of the first embedding frame and the second embedding frame has an extension section. The extension section comprises a first stretching part. The first stretching part is formed with a cut angle at an edge of the extension section, so as to provide the extension section with stretching flexibility in wearing.
Accordingly, the extension section further comprises a second stretching part. The second stretching part includes at least a recess and rib strips. The recess is recessed from a surface of the extension section toward the first stretching part. The rib strips are respectively arranged above and below the recess to provide the extension section with stretching flexibility in wearing.
Accordingly, the connection element is made of thermoplastic rubber by injection molding, capable of bonding different plastic materials, so as to be integrally formed with the hard combining frame and to provide flexibility by virtue of material properties, so that the connection element is capable of providing a compliance with the wearer's nose bridge contour.
Accordingly, a side contour of the face contact portion, with respect to the outer eye corner in use, is extended outward and abruptly bent inward to form a convex portion as being in a shape of a cap, so as to provide the wearer's outer eye corner with a covering and sticky effect. Further, a first height of the an upper half part of the face contact portion is smaller than a second height of a lower half part of the face contact portion, so that after the swimming goggles are worn, the face contact portion is the compliance with the wearer's eye socket contour without creating any pressure stress.
Please refer to
Further, each of the first embedding frame 20 and the second embedding frame 21 has an extension section 25. The extension section 25 is made of polypropylene (PP) and composed of a front segment 251, a middle segment 252 and a rear segment 253. The front segment 251 is connected to each of the first embedding frame 20 and the second embedding frame 21. The middle segment 252 comprises a first stretching part 26 and a second stretching part 27. The first stretching part 26 is formed with a cut angle at an edge of the middle segment 252 to provide the extension section 25 with stretching flexibility in wearing. The second stretching part 27 includes a first recess 271, a second recess 272, and rib strips 273,274. The first recess 271 and the second recess 272 are stacked on each other and recessed from a surface of the middle segment 252 toward the first stretching part 26. The rib strips 273,274 are respectively arranged above the first recess 271 and below the second recess 272 to provide the extension section 25 with stretching flexibility in wearing. The rear segment 253 is connected to each of the two hard head strap buckles 4. Therefore, the provision of the extension section 25 with stretching flexibility benefits the swimming goggles 1 complying with the wearer's face contour in wearing.
The left soft frame 30 and the right soft frame 31 are made of silicon rubber. Each of the left soft frame 30 and the right soft frame 31 is composed of a frame portion 32 and a face contact portion 33. The frame portion 32 has an inner wall and an outer wall. The inner wall of the frame portion 32 is punched inward to form a receiving groove 321 to receive a lens 5. The outer wall of the frame portion 32 is protruded outward to form a plurality of blocks 322 at intervals. The plurality of blocks 322 are embedded in the at least an arc lane 22 and the at least a pair of arms 23. With reference to
The two hard head strap buckles 4 are made of nylon. Each of the two hard head strap buckles 4 is connected to the rear segment 253 of the extension section 25. Each of the two hard head strap buckles 4 has a body 40 and two guidance pillars 41,42. The two guidance pillars 41,42 are vertically arranged in the body 40 to form a guidance hole. The guidance hole provides a head strap (not shown) to pass therethrough.
In sum, with reference to
It is understood that the invention may be embodied in other forms within the scope of the claims. Thus the present examples and embodiments are to be considered in all respects as illustrative, and not restrictive, of the invention defined by the claims.
Number | Date | Country | Kind |
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106212308 U | Aug 2017 | TW | national |
Number | Name | Date | Kind |
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20130283509 | Chiang | Oct 2013 | A1 |
Number | Date | Country | |
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20190054349 A1 | Feb 2019 | US |