Portable plastic diving goggles

By adopting a foldable soft plastic design and various structural improvements, the problems of inconvenience in carrying and discomfort in using rigid diving masks have been solved, achieving a portable, comfortable and safe diving mask user experience.

CN223586517UActive Publication Date: 2025-11-25DONGGUAN HONGXI GLASS INTELLIGENG TECH CO LTD
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Patent Information

Application Number
CN202423008559.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-11-25
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

Hard plastic diving masks can easily poke the skin during use and carrying, and are not easy to fold or move, increasing the risk of loss. They are especially unsuitable for beginners and indoor diving.

Method used

It uses foldable soft plastic as the adhesive, and is designed with lens clip slots and strap connection slots, combined with pressure relief grooves, anti-slip textures and drainage grooves, plus soft pads and protective blocks to ensure lens fixation and comfortable wearing.

Benefits of technology

It achieves portable folding of the diving mask, reduces weight, prevents it from loosening and falling off, improves wearing comfort and safety, and extends service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of diving goggles, in particular to portable plastic diving goggles which comprise a rubber body and diving lenses, the rubber body is foldable plastic flexible rubber, one end of the rubber body is used for being attached to the face, lens installation grooves are formed in the surface of the rubber body, and lens clamping grooves are formed in the surfaces of the lens installation grooves; the rubber body is foldable plastic flexible rubber, so that the diving goggles can be folded and stored, the occupied space is small, the diving goggles are convenient to carry, the diving lenses need to be dismantled in the folding process, the diving lenses are prevented from being bent or deformed, the plastic flexible rubber material is light, the overall weight of the diving goggles is reduced, the burden of a user is reduced, and the diving goggles are convenient to carry by the user when the diving goggles are carried by the user. When the diving goggles are used, the diving lenses can be attached to the hands, and the diving lenses are fixed through the colloid serving as a bandage, so that a user can conveniently drive the diving goggles to move together.
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Description

Technical Field

[0001] This utility model relates to the field of diving mask technology, and in particular to a portable plastic diving mask. Background Technology

[0002] Plastic diving masks are a common type of diving equipment, primarily made of plastic, used to protect the eyes and provide a clear field of vision during underwater activities. Most common plastic diving masks are made of rigid plastic, a material unsuitable for freediving. Indoor diving, often limited in duration and mostly used by beginners, can lead to skin irritation from the mask when wearing it, affecting the user's experience. Furthermore, since swimsuits typically lack storage pockets, the mask must be carried along with the swimsuit. The lack of folding or easily portable design in rigid plastic masks often necessitates placement in clean areas, increasing the risk of loss. Therefore, the inventor has proposed a portable plastic diving mask to address these technical problems. Utility Model Content

[0003] To overcome the shortcomings mentioned above, this utility model aims to provide a technical solution that can solve the aforementioned problems.

[0004] A portable plastic diving mask includes a gel body and a diving lens mounted on the surface of the gel body. The gel body is a foldable soft plastic gel. One end of the gel body is used to fit against the face. A lens mounting groove is formed on the surface of the gel body. A plurality of lens snap-fit ​​grooves for connecting the auxiliary diving lens are formed on the surface of the lens mounting groove. The lens snap-fit ​​grooves pass through both ends of the lens mounting groove and extend beyond the surface of the gel body. A retaining plate for positioning the auxiliary diving lens is connected to one end of the lens mounting groove. A retaining groove for positioning the diving lens is provided between the retaining plate and the gel body.

[0005] This structure uses a foldable soft plastic gel, allowing the diving mask to be folded and stored, taking up little space and making it easy to carry. When folding, the diving mask must be removed first to prevent bending or deformation. The lightweight soft plastic material reduces the weight of the diving mask and the burden on the user. The lens mounting slot runs through both ends of the lens mounting slot and extends beyond the surface of the gel, making the installation and removal of the diving mask very convenient. Users can quickly complete assembly and disassembly. The design of the locking plate and slot ensures the diving mask is securely fixed, preventing the equipment from falling off during use due to loosening. By distributing force evenly, it reduces the pressure of water pressure and the gel on the wearing area, thus reducing fatigue.

[0006] Furthermore, both ends of the adhesive body are provided with strap connection grooves for connecting external straps, and the strap connection grooves penetrate the surface of the adhesive body; the strap connection grooves can ensure a firm connection between the strap and the adhesive body, preventing the equipment from falling off due to loosening during use. The design of the strap connection grooves at both ends can ensure that the strap is evenly stressed on the adhesive body, improve the stability of the fixation, reduce indentations and discomfort, improve the wearing comfort, and allow users to adjust the tightness of the straps according to their needs to ensure the best wearing experience.

[0007] Furthermore, the surface of the colloid is provided with several pressure relief grooves for assisting in the release of water pressure. The pressure relief grooves are inclined. The inclined pressure relief grooves can effectively guide the water flow, accelerate the release of water pressure, and prevent problems caused by water pressure accumulating on the surface of the colloid. By quickly releasing pressure, the phenomenon of water accumulation on the surface of the colloid can be reduced, the surface pressure of the colloid can be maintained, and the comfort of use can be improved.

[0008] Furthermore, the surface of the colloid is provided with several anti-slip patterns to increase friction. The anti-slip patterns are arranged in a ring on the surface of the colloid. The anti-slip patterns can significantly increase the friction of the colloid surface, prevent it from falling due to slipping during use, and improve the convenience of operation. The ring-arranged anti-slip patterns can ensure the uniform distribution of friction on the colloid surface, improve the overall anti-slip effect, and make the user more comfortable and convenient to operate.

[0009] Furthermore, the surface of the colloid is provided with several drainage grooves to assist in guiding water flow. The drainage grooves extend towards the surface of the colloid at an angle. The inclined drainage grooves can effectively guide the water flow, accelerate the drainage speed, and prevent water from accumulating on the surface of the colloid. Through rapid drainage, water accumulation can be reduced, the surface of the colloid can be kept dry, and the comfort of use can be improved. In addition, this structure can also reduce the impact of water pressure on the colloid during diving. After use, and after the drainage grooves drain water quickly, the dampness on the surface of the colloid is reduced, improving the user's comfort when wearing it. The dryness of the colloid surface can reduce the prolonged contact of water with the skin, reduce skin irritation and discomfort, and reduce the prolonged immersion of water in the colloid material, slowing down the corrosion and aging of the material and extending the service life of the diving mask.

[0010] Furthermore, the surface of the colloid is equipped with protective blocks and anti-slip strips, with the protective blocks located between two adjacent anti-slip strips. The protective blocks can effectively protect the surface of the colloid, reducing direct impact and scratches from external hard objects, thus helping to extend the service life of the colloid. The anti-slip strips can increase the friction of the colloid surface, preventing it from falling due to slipping during use, improving operational safety. Moreover, the protective blocks being located between two adjacent anti-slip strips ensures the uniform distribution of the anti-slip strips, improving the overall anti-slip effect.

[0011] Furthermore, a soft pad is installed at the end of the colloid that contacts the face, and the shape of the soft pad matches the shape of the colloid. The soft pad is made of sponge or a soft material that can wrap around the colloid. This structure provides a comfortable feel and reduces discomfort during prolonged wear. The shape of the soft pad matches the shape of the colloid, which can better conform to the facial contours, reduce indentations and friction, and improve wearing comfort. In addition, the soft pad can form a tighter seal, reduce air leakage from gaps, and increase the sealing performance of the structure. At the same time, the soft pad can distribute pressure, reduce direct pressure on the skin, prevent skin pressure sores or allergies caused by prolonged wear, and also increase friction, reduce slippage, and improve stability during use.

[0012] Compared with the prior art, the beneficial effects of this utility model are: the use of foldable soft plastic as the adhesive makes the diving mask foldable and easy to carry, taking up little space. When folding, the diving lens needs to be removed first to avoid bending or deformation of the diving lens. The soft plastic material is lightweight, reducing the overall weight of the diving mask and reducing the burden on the user. When the user carries it, the diving lens can be attached to the hand, and the adhesive can act as a strap to fix the diving lens, making it easy for the user to move the diving mask together.

[0013] The lens mounting slot runs through both ends of the lens mounting slot and extends beyond the surface of the gel, making the installation and removal of the diving mask very convenient. Users can quickly complete the assembly and disassembly. The design of the clip and slot ensures the fixation of the diving mask and prevents the equipment from falling off due to loosening during use. By distributing the force evenly, it can reduce the pressure of water pressure and gel on the wearing parts, thus reducing fatigue. Attached Figure Description

[0014] Figure 1 This is a front view of a portable plastic diving mask;

[0015] Figure 2 This is a left view of a portable plastic diving mask;

[0016] Figure 3 This is a 3D image of a portable plastic diving mask;

[0017] Figure 4 Another stereoscopic view of a portable plastic diving mask;

[0018] Figure 5 This is an axial view of a portable plastic diving mask;

[0019] Figure 6 Another axial view of a portable plastic diving mask;

[0020] In the diagram: Colloid-1, Diving Lens-2, Lens Mounting Slot-3, Lens Clip-4, Clip Plate-5, Clip Slot-6, Strap Connection Slot-7, Pressure Relief Slot-8, Anti-slip Texture-9, Drainage Slot-10, Protective Block-11, Anti-slip Strip-12, Soft Pad-13, Reinforcing Rib-14. Detailed Implementation

[0021] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0022] For this embodiment, please refer to Figures 1-6 The present invention relates to a portable plastic diving mask, comprising a colloid 1 and a diving lens 2 mounted on the surface of the colloid 1. The colloid 1 is a foldable soft plastic, one end of which is used to fit against the face. A lens mounting groove 3 is formed on the surface of the colloid 1. A plurality of lens snap-fit ​​grooves 4 are formed on the surface of the lens mounting groove 3 to connect the diving lens 2. The lens snap-fit ​​grooves 4 pass through both ends of the lens mounting groove 3 and extend beyond the surface of the colloid 1. A snap plate 5 is connected to one end of the lens mounting groove 3 to define the position of the diving lens 2. A snap-fit ​​groove 6 for positioning the diving lens 2 is provided between the snap plate 5 and the colloid 1. The surface of the colloid 1 is also provided with reinforcing ribs 14 for supporting the colloid 1.

[0023] This structure uses foldable soft plastic as the gel 1, allowing the diving mask to be folded and stored, taking up little space and making it easy to carry. When folding, the diving lens 2 needs to be removed first to prevent bending or deformation of the diving lens 2. The lightweight soft plastic material reduces the weight of the diving mask and the burden on the user. The lens mounting groove 4 runs through both ends of the lens mounting groove 3 and extends beyond the surface of the gel 1, making the installation and removal of the diving lens 2 very convenient. Users can quickly complete assembly and disassembly. The design of the locking plate 5 and the locking groove 6 ensures the fixation of the diving lens 2 and prevents the equipment from falling off due to loosening during use. By distributing force evenly, it can reduce the pressure of water pressure and gel 1 on the wearing parts, thus reducing fatigue.

[0024] Both ends of the colloid 1 are provided with strap connecting grooves 7 for connecting external straps, and the strap connecting grooves 7 penetrate through the surface of the colloid 1. The strap connecting grooves 7 can ensure a firm connection between the strap and the colloid 1, preventing the device from falling off due to loosening during use. The design of the strap connecting grooves 7 at both ends can ensure that the strap is evenly stressed on the colloid 1, improve the stability of the fixation, reduce pressure marks and discomfort, improve the wearing comfort, and allow users to adjust the tightness of the strap according to their needs to ensure the best wearing experience.

[0025] The surface of the colloid 1 is provided with several pressure relief grooves 8 for assisting in releasing water pressure. The pressure relief grooves 8 are inclined. The inclined pressure relief grooves 8 can effectively guide the water flow, accelerate the release of water pressure, and prevent problems caused by water pressure accumulating on the surface of the colloid 1. By quickly releasing pressure, the water accumulation on the surface of the colloid 1 can be reduced, the surface pressure of the colloid 1 can be maintained, and the comfort of use can be improved.

[0026] The surface of the colloid 1 is provided with several anti-slip patterns 9 to increase friction. The anti-slip patterns 9 are arranged in a ring on the surface of the colloid 1. The anti-slip patterns 9 can significantly increase the friction of the surface of the colloid 1, prevent it from falling due to slipping during use, and improve the convenience of operation. The ring arrangement of the anti-slip patterns 9 can ensure the uniform distribution of friction on the surface of the colloid 1, improve the overall anti-slip effect, and make the user more comfortable and convenient to operate.

[0027] The surface of the colloid 1 is provided with several drainage grooves 10 for assisting water flow guidance. The drainage grooves 10 extend inclinedly toward the surface of the colloid 1. The inclined drainage grooves 10 can effectively guide the water flow, accelerate the water drainage speed, and prevent water from accumulating on the surface of the colloid 1. Through rapid drainage, water accumulation can be reduced, the surface of the colloid 1 can be kept dry, and the comfort of use can be improved. In addition, this structure can also reduce the impact of water pressure on the colloid 1 during diving. After use, and after the drainage grooves 10 drain water quickly, the dampness on the surface of the colloid 1 is reduced, improving the user's comfort when wearing it. The dryness of the surface of the colloid 1 can reduce the prolonged contact of water with the skin, reduce skin irritation and discomfort, and reduce the prolonged immersion of water in the colloid 1 material, reduce the rate of material corrosion and aging, and extend the service life of the diving mask.

[0028] The surface of the colloid 1 is equipped with protective blocks 11 and anti-slip strips 12. The protective blocks 11 are located between two adjacent anti-slip strips 12. The protective blocks 11 can effectively protect the surface of the colloid 1, reduce the direct impact and scratches of external hard objects on the colloid 1, and play a role in extending the service life of the colloid 1. The anti-slip strips 12 can increase the friction of the surface of the colloid 1, prevent it from falling due to slipping during use, improve the safety of operation, and the protective blocks 11 are located between two adjacent anti-slip strips 12, which can ensure the uniform distribution of the anti-slip strips 12 and improve the overall anti-slip effect.

[0029] A soft pad 13 is installed at the end of the colloid 1 that contacts the face. The shape of the soft pad 13 is consistent with that of the colloid 1. The soft pad 13 is made of sponge or a soft material that can wrap around the colloid 1. This structure provides a comfortable touch and reduces discomfort during long-term wear. The shape of the soft pad 13 is consistent with that of the colloid 1, which can better conform to the facial contour, reduce indentations and friction, and improve wearing comfort. In addition, the soft pad 13 can form a tighter seal, reduce air leakage from gaps, and increase the sealing performance of the structure. At the same time, the soft pad 13 can distribute pressure, reduce direct pressure on the skin, prevent skin pressure sores or allergies caused by long-term wear, and also increase friction, reduce slippage, and improve the stability of use.

[0030] The key design features of this invention are: using colloid 1 as a foldable soft plastic, which allows the diving mask to be folded and stored, taking up little space and making it easy to carry. When folding, the diving lens 2 needs to be removed first to avoid bending or deformation of the diving lens 2. The soft plastic material is lightweight, reducing the overall weight of the diving mask and reducing the burden on the user.

[0031] The lens mounting groove 4 runs through both ends of the lens mounting groove 3 and extends beyond the surface of the gel 1, making the installation and removal of the diving lens 2 very convenient. Users can quickly complete the assembly and disassembly. The design of the clamping plate 5 and the clamping groove 6 can ensure the fixation of the diving lens 2 and prevent the equipment from falling off due to loosening during use. By evenly distributing the force, the pressure of water pressure and gel 1 on the wearing part can be reduced, which can reduce fatigue.

[0032] The above description, in conjunction with specific preferred embodiments, provides a further detailed explanation of the present invention. It should not be construed that the specific implementation of the present invention is limited to these descriptions. For those skilled in the art, various simple deductions or substitutions can be made without departing from the concept of the present invention, and all such modifications and substitutions should be considered within the scope of protection of the present invention.

Claims

1. A portable plastic diving mask, comprising a gel and a diving lens mounted on the surface of the gel, characterized in that: The adhesive is a foldable soft plastic. One end of the adhesive is used to fit the face. A lens mounting groove is formed on the surface of the adhesive. Several lens mounting grooves for connecting auxiliary diving lenses are formed on the surface of the lens mounting groove. The lens mounting grooves pass through both ends of the lens mounting groove and extend beyond the surface of the adhesive. One end of the lens mounting groove is connected to a retaining plate for positioning the auxiliary diving lens. A retaining groove for positioning the diving lens is provided between the retaining plate and the adhesive.

2. The portable plastic diving mask according to claim 1, characterized in that: Both ends of the colloid are provided with strap connection grooves for connecting external straps, and the strap connection grooves penetrate the surface of the colloid.

3. A portable plastic diving mask according to claim 1, characterized in that: The surface of the colloid has several pressure relief grooves for assisting in releasing water pressure, and the pressure relief grooves are set at an angle.

4. A portable plastic diving mask according to any one of claims 1-3, characterized in that: The surface of the colloid has several anti-slip grooves to increase friction, and the anti-slip grooves are arranged in a ring on the surface of the colloid.

5. A portable plastic diving mask according to any one of claims 1-3, characterized in that: The surface of the colloid has several drainage grooves for assisting water flow guidance, and the drainage grooves extend towards the surface of the colloid in an inclined direction.

6. A portable plastic diving mask according to any one of claims 1-3, characterized in that: The surface of the colloid is fitted with protective blocks and anti-slip strips, with the protective blocks located between two adjacent anti-slip strips.

7. A portable plastic diving mask according to any one of claims 1-3, characterized in that: A soft pad is attached to the end of the colloid that adheres to the face, and the shape of the soft pad matches the shape of the colloid.