Glass glasses for diving mask
By using plastic material and snap connection between the submersible lens and the mounting frame, the problem of unstable connection between the lens and the mounting frame is solved, the stability and durability of the lens are achieved, and the lens damage and maintenance costs are reduced.
Patent Information
- Application Number
- CN202422414794.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-30
AI Technical Summary
The connection between the existing submersible lenses and the mounting frame is not stable enough, and the lenses are easily fallen off or damaged due to uneven stress, and the replacement cost is high.
The mounting frame made of plastic material is designed as a detachable structure, and the connection stability between the lens and the mounting frame is enhanced by the snap connection method of the connecting block and the clamp. A waterproof sealant is provided between the lens and the mounting frame to improve sealing and impact resistance.
Improves the connection stability and durability of the lens and the mounting frame, reduces the probability of lens damage, simplifies the maintenance process, and reduces the repair costs.
Smart Images

Figure CN223059235U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of diving glasses, in particular to a pair of glass glasses for a diving mask. Background Art
[0002] A diving mask is a diving equipment that covers the face of a diver, enabling the diver to breathe underwater. The mask is usually made of soft silicone with a sealed edge to prevent water from entering. The design of the mask allows the diver to breathe normally through a breathing tube connected to a gas cylinder. It also provides a clear view, enabling the diver to observe the underwater environment. When choosing a diving mask, the tightness, field of view, and the fit with the diver's face should be considered.
[0003] The glass glasses used in a diving mask need to have high strength, good light transmittance, corrosion resistance, and safety. Even if broken, they should be designed not to produce sharp edges to avoid harming the user. At the same time, the comfort of long-term wearing should also be considered. The edge should have good tightness to reduce water infiltration to ensure the safety and pleasure of diving activities.
[0004] The existing Chinese patent with the reference publication number CN220404760U discloses a pair of diving goggles, which relates to the field of diving goggles and includes a frame. One side of the back of the frame is provided with a fixing component, and a middle nose is attached to one side of the back of the frame through the fixing component. With the above structure, the lens can be replaced by replacing the frame, and the frame can be replaced with a frame with different degrees of myopic lenses, hyperopic lenses, or plano lenses according to needs, so as to effectively improve the applicability of the diving goggles. By connecting the middle nose to the frame through the fixing component, different middle noses can be replaced according to needs to adapt to the faces of different divers, so as to avoid discomfort to the divers. By setting the frame, the lens holder, the lens ring, the middle nose, etc. as separate parts, not only more space is saved during storage, but also a single part can be replaced when a part is damaged, so as to reduce the use cost of the diving goggles.
[0005] Although this patent has the effect of being able to replace single parts, it does not have a related structure to increase the connection stability between the lens and the mounting frame. The outer side of the lens is a smooth surface, and the acting force and the connecting cushion applied by the mounting structure are both supported through the outer side of the lens. When the local force on the lens is uneven, it may cause the lens to fall off or increase the probability of lens damage. When using it again, the mounting structure needs to be processed and improved, which increases the process and reduces the work efficiency. Therefore, the inventor has proposed a pair of glass glasses for a diving mask to solve the above-mentioned technical problems. Summary of the Utility Model
[0006] The utility model aims to overcome the above deficiencies and provide a technical solution that can solve the above problems.
[0007] A pair of glass glasses for a diving mask, comprising lenses and a connecting component. The connecting component includes a connecting block and a clamping block. The connecting block and the clamping block are integrally formed with the lenses. The clamping block is in the shape of a convex square platform, and the distance between adjacent clamping blocks is equally spaced. The connecting block is in the shape of a convex arc and is provided singly. The lenses are made of glass, and an installation frame for assisting the connection between the lenses and an external diving mask is connected to the outer side of the lenses. The connection between the lenses and the installation frame is a detachable structure, and the installation frame is made of plastic material;
[0008] The installation frame made of plastic material has good lightness, which can reduce the weight of the overall glasses and improve the wearing comfort. At the same time, the plastic material has good flexibility and impact resistance, which can protect the lenses from damage and facilitate the installation between the lenses and the installation frame. In addition, the plastic material installation frame is easy to be designed into various shapes and sizes to adapt to the facial features of different users, improving the sealing and comfort of the mask.
[0009] Further, both ends of the installation frame are stress-bearing frames for connecting with an external diving mask, and the middle part of the installation frame is a connecting platform. The installation frame and the connecting platform are integrally formed. The installation frames are located at the left and right ends of the connecting platform and are symmetrical structures;
[0010] Designing both ends of the installation frame as stress-bearing frames for connecting with an external diving mask ensures the stability of the connection and the load-bearing capacity. The connecting platform in the middle serves as the support point of the installation frame, enhancing the stability of the overall structure. Since the installation frame and the connecting platform are integrally formed, this not only simplifies the manufacturing process but also improves the overall strength and durability. The installation frames are located at the left and right ends of the connecting platform and are symmetrical structures. Adopting this design helps to evenly disperse the stress, reduce stress concentration, thereby improving the stability and reliability of the entire structure and ensuring the simplicity of the installation operation.
[0011] Further, a connecting groove for mating installation with the clamping block is formed on the inner surface of the installation frame. The connecting groove is concave in shape, and the connecting groove and the clamping block are snap-connected. The distance between adjacent connecting grooves is equal to the distance between adjacent clamping blocks;
[0012] Adopting the setting that the distance between adjacent connecting grooves is equal to the distance between adjacent clamping blocks ensures that the clamping blocks can be stably fixed on the installation frame, while allowing for quick installation and disassembly. This design simplifies the assembly process, reduces the dependence on tools, and due to the self-locking characteristic of the snap connection, improves the reliability of the connection; in addition, the equal-spacing design enables the installation frame to flexibly adapt to other frames of the same size, increasing the versatility and interchangeability between components.
[0013] Further, a support plate is connected to the surface of the mounting bracket. Connection holes for mating and installing the connection blocks are formed on the surface of the support plate. The connection holes penetrate through the surfaces at both ends of the support plate, and the connection holes and the connection blocks are connected by snap fasteners;
[0014] The snap connection method can achieve quick installation and disassembly without the use of additional tools, facilitating maintenance and component replacement. At the same time, the snap connection has a certain self-locking ability, which can prevent the accidental loosening of the connection part between the mounting bracket and the lens to a certain extent, improving the stability and safety of the overall structure; in addition, the snap connection can also absorb and disperse stress, reducing the damage of the connection part caused by vibration or impact, and extending the service life of the diving goggles.
[0015] Further, one end of the lens is connected with a waterproof sealant. The waterproof sealant and the lens are joined by hot pressing. The curvature of the waterproof sealant is the same as that of the lens, and the waterproof sealant is in a convex annular sealing shape;
[0016] The waterproof sealant can provide a continuous and uniform sealing interface, effectively preventing moisture and pollutants from entering the connection area between the lens and other components. This design helps to enhance the overall waterproof performance of the lens and the external diving mask, extend its service life, and maintain the probability that the optical performance is not affected by the external environment. In addition, the convex annular structure may also help to disperse pressure and reduce stress concentration, thereby improving the mechanical strength and reliability of the connection part.
[0017] Compared with the prior art, the beneficial effects of the present utility model are as follows: By adding connection blocks and clamping blocks on the side of the lens, the overall connection stability between the lens and the mounting bracket is increased, the traditional bonding method between the lens and the mounting bracket is improved, and the stress points of the lens connection are increased through this structure. Cooperating with the arc-shaped shape of the lens to evenly disperse the impact force, further reducing the probability of lens damage and achieving the effect of extending the service life;
[0018] In addition, when used in conjunction with the mounting bracket, by using the mounting bracket as the installation carrier, the installation method between the lens and the diving mask is improved. The mounting bracket is used as a connecting piece to connect with the diving mask. When subjected to impact, the first part to be damaged is the mounting bracket rather than the lens, reducing the risk of the fragments generated by the lens floating in the water and thus increasing the risk of scratching the operator;
[0019] The mounting bracket made of plastic material has good flexibility and impact resistance. When matching the installation dimensions of the diving mask, the pressure applied by the diving mask causes the mounting bracket and the lens to be tightly buckled, further increasing the overall connection stability between the mounting bracket and the lens. And when the lens is damaged, only the lens needs to be replaced, without replacing the mounting bracket, reducing the maintenance cost and expenses, and playing a role in saving costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is the front view of a pair of glass glasses for a diving mask;
[0021] Figure 2 is the rear view of a pair of glass glasses for a diving mask;
[0022] Figure 3 is the three-dimensional view of a pair of glass glasses for a diving mask;
[0023] Figure 4 is another three-dimensional view of a pair of glass glasses for a diving mask;
[0024] Figure 5 is the front view of the lens in a pair of glass glasses for a diving mask;
[0025] In the figure: lens - 1, connecting block - 2, clamping block - 3, mounting bracket - 4, stress-bearing bracket - 5, connecting platform - 6, connecting groove - 7, support plate - 8, connecting hole - 9, waterproof sealant - 10. Detailed implementation manner
[0026] The following further describes the present utility model in detail in conjunction with the accompanying drawings and the detailed implementation manner.
[0027] In this embodiment, please refer to Figures 1 - 5 , a pair of glass glasses for a diving mask implemented specifically thereof includes a lens 1 and a connecting component. The connecting component includes a connecting block 2 and a clamping block 3. The connecting block 2 and the clamping block 3 are integrally formed with the lens 1. The clamping block 3 is in the shape of a convex square platform, and the distance between adjacent two clamping blocks 3 is equally spaced. The connecting block 2 is in the shape of a convex arc and is provided singly. The lens 1 is made of glass. An outer side surface of the lens 1 is connected with a mounting bracket 4 for assisting the connection between the lens 1 and an external diving mask. The lens 1 and the mounting bracket 4 are of a detachable structure. The mounting bracket 4 is made of a plastic material;
[0028] The mounting bracket 4 made of a plastic material has good lightness, can reduce the weight of the overall glasses, and improve the wearing comfort. At the same time, the plastic material has good flexibility and impact resistance, can protect the lens 1 from damage, and is convenient for the installation between the lens 1 and the mounting bracket 4. In addition, the mounting bracket 4 made of a plastic material is convenient to be designed into various shapes and sizes to adapt to the facial features of different users and improve the sealing performance and comfort of the mask.
[0029] Both ends of the mounting bracket 4 are stress-bearing brackets 5 for connecting with an external diving mask. The middle part of the mounting bracket 4 is a connecting platform 6. The mounting bracket 4 and the connecting platform 6 are integrally formed. The mounting bracket 4 is located at the left and right ends of the connecting platform 6 and is a symmetrical structure;
[0030] Both ends of the mounting bracket 4 are designed as force-bearing brackets 5 for connecting with an external diving mask, ensuring the stability of the connection and the load-bearing capacity. The connection platform 6 in the middle serves as the support point of the mounting bracket 4, enhancing the stability of the overall structure. Since the mounting bracket 4 and the connection platform 6 are integrally formed structures, this not only simplifies the manufacturing process but also improves the overall strength and durability. The mounting bracket 4 is located at the left and right ends of the connection platform 6 and is a symmetrical structure. Adopting this design helps to evenly disperse the force, reduce stress concentration, thereby improving the stability and reliability of the entire structure and ensuring the simplicity of the installation operation.
[0031] A connection groove 7 for mating and installing with the block 3 is formed on the inner surface of the mounting bracket 4. The connection groove 7 is concave in shape, and the connection groove 7 and the block 3 are snap-connected. The distance between adjacent two connection grooves 7 is equal to the distance between adjacent two blocks 3.
[0032] The setting that the distance between adjacent two connection grooves 7 is equal to the distance between adjacent two blocks 3 ensures that the block 3 can be stably fixed on the mounting bracket 4, while allowing for quick installation and disassembly. This design simplifies the assembly process, reduces the dependence on tools, and due to the self-locking characteristic of the snap connection, improves the reliability of the connection. In addition, the equal-spacing design enables the mounting bracket 4 to flexibly adapt to other models of spectacle frames of the same size, increasing the versatility and interchangeability between components.
[0033] A support plate 8 is connected to the surface of the mounting bracket 4. A connection hole 9 for mating and installing with the connection block 2 is formed on the surface of the support plate 8. The connection hole 9 penetrates through the surfaces at both ends of the support plate 8, and the connection hole 9 and the connection block 2 are snap-connected.
[0034] The snap connection method can achieve quick installation and disassembly without the use of additional tools, facilitating maintenance and replacement of components. At the same time, the snap connection has a certain self-locking ability, which can prevent accidental loosening of the connection part between the mounting bracket 4 and the lens 1 to a certain extent, improving the stability and safety of the overall structure. In addition, the snap connection can also absorb and disperse stress, reduce damage to the connection part caused by vibration or impact, and extend the service life of the diving goggles.
[0035] One end of the lens 1 is connected with a waterproof sealant 10. The waterproof sealant 10 and the lens 1 are joined by hot pressing. The curvature of the waterproof sealant 10 is consistent with the curvature of the lens 1, and the waterproof sealant 10 is in a convex annular seal shape.
[0036] The waterproof sealant 10 can provide a continuous and uniform sealing interface, effectively preventing moisture and contaminants from entering the connection area between the lens 1 and other components. This design helps enhance the overall waterproof performance of the lens 1 and the external diving mask, extends its service life, and maintains the probability that the optical performance is not affected by the external environment. In addition, the raised annular structure may also help disperse pressure and reduce stress concentration, thereby improving the mechanical strength and reliability of the connection part.
[0037] The design key point of the present utility model lies in: adding a connecting block 2 and a clamping block 3 on the side of the lens 1 to increase the overall connection stability between the lens 1 and the mounting bracket 4, improving the traditional bonding method between the lens 1 and the mounting bracket 4, and increasing the force application points for the connection of the lens 1 through this structure. Matching with the arc shape of the lens 1 to evenly disperse the impact force, further reducing the probability of damage to the lens 1 and achieving the effect of extending the service life;
[0038] In addition, when used together with the mounting bracket 4, taking the mounting bracket 4 as the installation carrier, improving the installation method between the lens 1 and the diving mask. Connecting the mounting bracket 4 as a connecting part to the diving mask. When being impacted, the first part to be damaged is the mounting bracket 4 rather than the lens 1, reducing the risk that the fragments generated by the lens 1 float in the water, thereby increasing the risk of scratching the operator. When it is necessary to connect to the diving mask, the mounting bracket 4 is connected to the diving mask by means of fitting. The mounting bracket 4 made of plastic material has good flexibility and impact resistance. When matching with the installation size of the diving mask, the mounting bracket 4 is tightly buckled with the lens 1 under the pressure applied by the diving mask, further increasing the overall connection stability between the mounting bracket 4 and the lens 1. And when the lens 1 is damaged, only the lens 1 needs to be replaced, without the need to replace the mounting bracket 4, reducing the maintenance expenses and costs, and playing a role in saving costs.
[0039] The above content is a further detailed description of the present utility model in combination with specific preferred embodiments, and it cannot be determined that the specific implementation of the present utility model is only limited to these descriptions. For those of ordinary skill in the technical field to which the present utility model belongs, without departing from the concept of the present utility model, several simple deductions or substitutions can still be made, which should all be regarded as the protection scope of the present utility model.
Claims
1. A glass spectacle for a diving mask, comprising a lens and a connecting component, characterized in that: The connecting component includes a connecting block and a clamping block. The connecting block and the clamping block are integrally formed with the lens. The clamping block is in the shape of a convex square platform, and the distance between adjacent clamping blocks is equally spaced. The connecting block is in the shape of a convex arc and is provided singly. The lens is made of glass, and an installation frame for assisting the connection between the lens and an external diving mask is connected to the outer side of the lens. The lens and the installation frame are of a detachable structure, and the installation frame is made of a plastic material.
2. The glass glasses for a diving mask according to claim 1, characterized in that: Both ends of the installation frame are stress-bearing frames for connecting with an external diving mask. The middle part of the installation frame is a connecting platform. The installation frame and the connecting platform are integrally formed. The installation frames are located at the left and right ends of the connecting platform and are symmetrical structures.
3. The glass glasses for a diving mask according to claim 1, characterized in that: A connecting groove for mating and installing with the clamping block is formed on the inner surface of the installation frame. The connecting groove is concave in shape, and the connecting groove and the clamping block are snap-connected. The distance between adjacent connecting grooves is equal to the distance between adjacent clamping blocks.
4. A glass spectacle for a diving mask according to any one of claims 1 to 3, characterized in that: A support plate is connected to the surface of the installation frame. A connecting hole for mating and installing with the connecting block is formed on the surface of the support plate. The connecting hole penetrates through the surfaces at both ends of the support plate, and the connecting hole and the connecting block are snap-connected.
5. A glass spectacle for a diving mask according to any one of claims 1-3, characterized in that: A waterproof sealant is connected to one end of the lens. The waterproof sealant and the lens are joined by hot pressing adhesive. The curvature of the waterproof sealant is consistent with that of the lens, and the waterproof sealant is in the shape of a convex annular seal.
Citation Information
Patent Citations
Diving goggles
CN220404760U