Goggles convenient for heat dissipation
By designing the installation structure of the arc-shaped lens frame and lens in the goggles, and using telescopic components to form a heat dissipation channel, the problem of heat accumulation in the goggles during high-speed movement is solved, and rapid heat dissipation and wear comfort are achieved.
Patent Information
- Application Number
- CN202422195100.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-09-06
AI Technical Summary
During high-speed exercise, the goggles are tightly fitted with the user, causing heat accumulation, affecting wear comfort and sports performance.
A goggles that are convenient for heat dissipation are designed, and an arc-shaped lens frame and lens are used to form a heat dissipation channel through a detachable connection of the mounting structure and the telescopic components. A heat dissipation channel can be formed between the lens and the lens frame, and the operating part controls the telescopic components to achieve heat dissipation.
It can quickly dissipate heat without taking off the goggles during wearing, reduce the probability of goggles falling, and improve the comfort and ease of movement.
Smart Images

Figure CN223220613U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of goggles, and in particular to goggles that facilitate heat dissipation. Background Art
[0002] Goggles are widely used in sports, particularly in high-speed activities such as skiing and motorcycling. They effectively protect the user's eyes from external hazards such as flying snow, ice, and dust. However, because goggles fit closely to the user during high-speed sports, prolonged exercise can easily lead to significant heat buildup between the goggles and the user, causing discomfort and even compromising performance and safety. Utility Model Content
[0003] In order to achieve heat dissipation between the goggles and the user and ensure the user's wearing comfort, the present application provides a pair of goggles that are easy to dissipate heat.
[0004] The present application provides a pair of goggles that facilitate heat dissipation using the following technical solutions:
[0005] A pair of goggles that facilitate heat dissipation, comprising a frame, a lens detachably connected to the frame, and a mounting structure arranged between the frame and the lens for fixing the position of the lens on the frame, wherein the frame and the lens are both arc-shaped, and the frame is a frame-shaped frame with a hollow interior for the lens to be embedded in, and two mounting structures are provided, and the two mounting structures are respectively located between the two ends of the lens and the inner walls of the frame at both ends, and the mounting structure comprises a mounting portion detachably connected to the lens, a telescopic component arranged between the mounting portion and the frame, and an operating portion for driving the telescopic component to extend and retract, the operating portion being able to drive the mounting portion to be embedded in the frame or to extend out of the frame, and when the operating portion drives the mounting portion to extend out of the frame, a heat dissipation channel for heat dissipation is formed between the lens and the frame.
[0006] By adopting the above technical solution, when in use, the mounting portion is directly driven to be embedded in the frame through the operating portion, and the user can use the goggles normally. If heat dissipation is required, the mounting portion is directly driven to extend out of the frame through the operating portion, so that a heat dissipation channel that does not contact each other is formed between the mounting portion and the frame. This allows the outside world to communicate with the inside of the goggles, facilitating the heat dissipation between the goggles and the user through the heat dissipation channel, making heat dissipation more convenient. Moreover, during the entire heat dissipation process, the staff does not need to take off the goggles, reducing the probability of the goggles falling and being damaged when taking off and putting on the goggles. Heat dissipation can be achieved during the wearing process, making heat dissipation more convenient. After heat dissipation is completed, the mounting portion can be directly controlled to reset, so that the goggles can quickly enter the motion state. Heat dissipation is more rapid and convenient, heat dissipation between the goggles and the user is achieved, and wearing comfort is ensured.
[0007] Optionally, the telescopic assembly includes a first connecting rod with one end hinged to the mounting portion and a second connecting rod with one end hinged to one end of the mounting groove. The end of the first connecting rod away from the mounting portion is slidably connected to the mounting groove, the second connecting rod is slidably connected to the mounting portion, and the first connecting rod and the second connecting rod are hinged in the middle.
[0008] By adopting the above technical solution, by operating the first connecting rod or the second connecting rod to rotate, the first connecting rod can be driven to slide in the installation groove, and the second connecting rod can slide on the installation part at the same time, thereby adjusting the distance between the installation part and the frame.
[0009] Optionally, a first sliding groove for the second connecting rod to be embedded and slide is formed on one side of the auxiliary mounting rod, and a second sliding groove for the first connecting rod to be embedded and slide is formed on the mounting portion.
[0010] By adopting the above technical solution, the sliding installation of the first connecting rod and the second connecting rod is facilitated.
[0011] Optionally, the operating portion is located on a side of the second connecting rod away from the first connecting rod, and the operating portion includes an operating rod with one end fixed to the second connecting rod, and the length direction of the operating rod is consistent with the length direction of the second connecting rod.
[0012] By adopting the above technical solution, the operating rod can be rotated by applying force, so that the operating rod can drive the second connecting rod to rotate, thereby realizing the telescopic adjustment of the telescopic assembly.
[0013] Optionally, a protrusion is fixedly connected to one side of the auxiliary installation rod, and a groove for the protrusion to be embedded in is formed on one side of the operating rod.
[0014] By adopting the above technical solution, when the lens is installed on the frame, the protrusion can be embedded in the groove to fix the position of the operating rod.
[0015] Optionally, the lens is plugged into the mounting portion, a plug plate is fixed to the lens, and a slot for inserting the plug plate is provided on a side of the mounting portion away from the telescopic assembly.
[0016] By adopting the above technical solution, the lens can be installed and fixed by inserting the plug plates at both ends of the lens into the slots of the two mounting parts respectively, which makes installation more convenient and replacement smoother.
[0017] Optionally, the inserting plate includes a rectangular flat plate and abutting plates fixed to both sides of the flat plate, the abutting plates have a semicircular cross-section, and are located on a side of the flat plate away from the lens.
[0018] By adopting the above technical solution, when the plug-in board is inserted into the slot, the position of the plug-in board in the slot can be fixed due to the setting of the abutment block, preventing the plug-in board from sliding out of the slot under the action of external force, and the installation is smoother.
[0019] Optionally, a plurality of the inserting plates are spaced apart along the width direction of the lens, a plurality of the slots are provided, and the plurality of slots correspond to the inserting plates one by one.
[0020] By adopting the above technical solution, the fixing effect of the lens is improved.
[0021] Optionally, a mounting groove for embedding the lens is provided on the frame, and a buckle for limiting the lens from sliding out of the mounting groove is fixed to the outer arc surface of the frame.
[0022] By adopting the above technical solution, the installation position of the lens can be limited.
[0023] In summary, this application includes at least one of the following beneficial technical effects:
[0024] 1. This application adopts a unique scissor-type quick-release structure, which allows the lenses to be pushed out of the frame with a simple operation, thereby opening the heat dissipation channel and facilitating rapid heat dissipation during wear. This meets the user's need for rapid heat dissipation and improves the wearer's comfort when wearing.
[0025] 2. This application adopts a plug-in lens installation method, and a locking plate is provided on the plug-in plate to ensure the stability of the lens installation. At the same time, the one-to-one correspondence design between the slot and the plug-in plate makes the installation position more accurate and correct. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a schematic diagram of the overall structure of this application.
[0027] Figure 2This is a partially enlarged schematic diagram of the telescopic component of the present application from another perspective.
[0028] Figure 3 This is a schematic diagram of the structure after the lens is installed.
[0029] Figure 4 This is a schematic diagram to reflect the structure of the plugboard.
[0030] Figure 5 This is a schematic diagram to illustrate the buckle structure.
[0031] Explanation of the accompanying drawings: 1. Frame; 11. Mounting slot; 13. Buckle; 2. Lens; 21. Insert plate; 211. Flat plate; 212. Clamping plate; 3. Mounting structure; 31. Mounting portion; 311. Second sliding slot; 312. Slot; 32. Telescopic assembly; 321. First connecting rod; 322. Second connecting rod; 33. Operating portion; 331. Operating rod; 34. Auxiliary mounting rod; 341. First sliding slot; 342. Protrusion. DETAILED DESCRIPTION
[0032] The following is combined with Figure 1-5 This application is described in further detail.
[0033] The embodiment of the present application discloses a pair of goggles that facilitate heat dissipation. Figure 1 The goggles, designed to facilitate heat dissipation, include a frame 1, lenses 2, and a mounting structure 3. Both the frame 1 and lenses 2 are arc-shaped to conform to the contours of the face. The frame 1 is hollow, housing the lenses 2. The mounting structure 3, located between the ends of the lenses 2 and the inner walls of the frame 1, secures the lenses 2 in place.
[0034] Reference Figure 1 and Figure 2Each mounting structure 3 includes a mounting portion 31, a telescopic assembly 32 and an operating portion 33. Among them, the mounting portion 31 is the part directly connected to the lens 2, and it is responsible for stabilizing the lens 2 on the frame 1. The telescopic assembly 32 is installed between the mounting portion 31 and the end wall of the frame 1. The telescopic assembly 32 includes a first connecting rod 321 and a second connecting rod 322. The middle parts of the first connecting rod 321 and the second connecting rod 322 are hinged to form a scissor-type structure. The operating portion 33 is used to control the expansion and contraction of the telescopic assembly 32, thereby controlling the mounting portion 31 on which the lens 2 is installed to be embedded in the frame 1 or to slide out of the frame 1. When the mounting portion 31 slides out of the frame 1, a heat dissipation channel for heat dissipation can be formed between the lens 2 and the frame 1. The heat dissipation channel connects the lens 2 and the user with the outside world, so that the heat between the lens 2 and the user can smoothly reach the outside world through the heat dissipation channel, thereby achieving rapid heat dissipation. The user does not need to remove the goggles from their head during the heat dissipation process, which greatly reduces the probability of the goggles falling and breaking when removing the goggles. When the user needs to dissipate heat during exercise, they can simply control the operating unit 33 with one hand to open the heat dissipation channel, so that the heat dissipation process will not affect the user's normal exercise, making heat dissipation more convenient.
[0035] An auxiliary mounting rod 34 is provided within the frame 1 near the end thereof, and the telescopic assembly 32 is connected to the auxiliary mounting rod 34. Specifically, one end of a first connecting rod 321 is hinged to the side of the mounting portion 31 away from the lens 2, and the other end is slidably connected to the auxiliary mounting rod 34. One end of a second connecting rod 322 is hinged to the auxiliary mounting rod 34, and the other end is slidably connected to the mounting portion 31. The operating portion 33 can be connected to either the first connecting rod 321 or the second connecting rod 322. When the force-applying operating portion 33 moves, it drives the first connecting rod 321 or the second connecting rod 322. Due to the hinged design of the middle portions of the first connecting rod 321 and the second connecting rod 322, the mounting portion 31 is driven to embed into the frame 1 or extend from the frame 1. This prevents the mounting portion 31 from interfering with the user's head during heat dissipation, thereby providing protection for the user while also achieving heat dissipation and greatly improving ease of use.
[0036] In the present application, the second connecting rod 322 is located outside the first connecting rod 321, and the operating portion 33 is an operating rod 331 fixedly connected to the second connecting rod 322. The length direction of the operating rod 331 is consistent with the length direction of the second connecting rod 322, making it easier to apply force to the operating rod 331. Specifically, one end of the operating rod 331 can be fixedly connected to the hinge axis of the second connecting rod 322, so that when the operating rod 331 is rotated, the second connecting rod 322 can be driven to rotate, making it more convenient and quick to open and close the heat dissipation channel.
[0037] At the same time, in order to ensure the smooth installation of the first connecting rod 321 and the second connecting rod 322, a first sliding groove 341 is provided on the auxiliary installation rod 34 for the second connecting rod 322 to be embedded and slided, and a second sliding groove 311 is provided on the installation part 31 for the first connecting rod 321 to be embedded and slided.
[0038] Reference Figure 1 and Figure 3 In order to prevent the operating rod 331 from rotating under the action of external force and causing the lens 2 to slide out of the frame 1 when the lens 2 is reset and installed in the frame 1 after the heat dissipation is completed, a hemispherical protrusion 342 is fixed to the auxiliary installation rod 34, and a groove for the protrusion 342 to be embedded in is provided on the operating rod 331 (not shown in the figure), so that when the lens 2 is installed in the frame 1, the protrusion 342 is also embedded in the groove, thereby fixing the position of the operating rod 331.
[0039] Reference Figure 4 The lens 2 is connected to the mounting portion 31 using a plug-in fit. A plug-in plate 21 is fixed to the end of the lens 2, and a slot 312 for the plug-in plate 21 is defined on the side of the mounting portion 31 away from the telescopic assembly 32. Inserting the plug-in plate 21 into the slot 312 secures the lens 2 to the mounting portion 31. This removable connection allows the lens 2 to be replaced by simply removing the plug-in plate 21 from the slot 312.
[0040] The inserting plate 21 comprises a flat plate 211 with a rectangular cross-section and abutment plates 212 fixed to both sides of the flat plate 211. The abutment plates 212 are located on the side of the flat plate 211 away from the lens 2 and have a semicircular cross-section. When the inserting plate 21 is inserted into the slot 312, the abutment plates 212 are pressed by the inner wall of the slot 312, thereby tightly securing the inserting plate 21 in the slot 312 and ensuring the secure fixation of the lens 2.
[0041] Moreover, multiple inserting plates 21 can be arranged at intervals along the width direction of the lens 2. In this application, two inserting plates are arranged at one end of the lens 2 for illustration. Two slots 312 are also arranged corresponding to the number of inserting plates 21, so that the fixing force on the lens 2 is more uniform.
[0042] Reference Figure 5To further enhance the stability of the lens 2, a mounting groove 11 for the lens 2 to be inserted into is provided on the outer curved surface of the frame 1. A semicircular buckle 13 is fixedly attached to the mounting groove 11, located on one side of the outer curved surface of the mounting groove 11. A mounting space for the lens 2 to be inserted is formed between the buckle 13 and the inner curved surface of the mounting groove 11. When the lens 2 is mounted on the mounting portion 31, it is also secured within the mounting space by the buckle 13. This dual fixing method greatly enhances the stability of the lens 2 and reduces the probability of the lens 2 slipping off the frame 1 due to bending of the middle portion of the lens 2 under stress.
[0043] The implementation principle of the goggles that are convenient for heat dissipation in the embodiment of the present application is as follows: when it is necessary to dissipate the heat generated between the lens 2 and the user, the force-applying operating part 33 is directly rotated, so that the operating part 33 drives the telescopic assembly 32 to extend, which can drive the lens 2 to extend out of the frame 1, so that the heat dissipation channel is opened. At this time, the heat between the lens 2 and the user will be dissipated to the outside through the heat dissipation channel, and rapid heat dissipation can be achieved without removing the goggles, greatly improving the convenience of heat dissipation. When it is necessary to replace the lens 2, the plug-in plate 21 of the lens 2 can also be operated to be pulled out from the slot 312, and then the new lens 2 can be taken out and the plug-in plate 21 on the new lens 2 can be inserted into the slot 312. When the heat dissipation is completed, the telescopic assembly 32 can be directly retracted through the operating part 33, which can drive the lens 2 to slide into the mounting slot 11, completing the reset of the lens 2 after heat dissipation, and making heat dissipation more convenient and quick.
[0044] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. A pair of goggles that facilitate heat dissipation, characterized by: The invention comprises a spectacles frame (1), a lens (2) detachably connected to the spectacles frame (1), and a mounting structure (3) arranged between the spectacles frame (1) and the lens (2) for fixing the position of the lens (2) on the spectacles frame (1); the spectacles frame (1) and the lens (2) are both arc-shaped; the spectacles frame (1) is a frame with a hollow interior for the lens (2) to be embedded; two mounting structures (3) are provided, and the two mounting structures (3) are respectively located between the two ends of the lens (2) and the inner walls of the two ends of the spectacles frame (1); the mounting structures (3) are arranged between the two ends of the lens (2) and the inner walls of the two ends of the spectacles frame (1); and the mounting structures (3) are arranged between the two ends of the lens (2) and the inner walls of the two ends of the spectacles frame (1). The structure (3) comprises a mounting portion (31) detachably connected to the lens (2), a telescopic assembly (32) arranged between the mounting portion (31) and the frame (1), and an operating portion (33) for driving the telescopic assembly (32) to telescope. The operating portion (33) can drive the mounting portion (31) to be embedded in the frame (1) or to extend out of the frame (1). When the operating portion (33) drives the mounting portion (31) to extend out of the frame (1), a heat dissipation channel for heat dissipation is formed between the lens (2) and the frame (1).
2. The heat dissipating goggles according to claim 1, characterized in that: An auxiliary mounting rod (34) is fixedly connected to the interior of the frame (1), and the auxiliary mounting rod (34) is located at the end of the frame (1). The telescopic assembly (32) includes a first connecting rod (321) with one end hinged on the mounting portion (31) and a second connecting rod (322) with one end hinged on the auxiliary mounting rod (34). The end of the first connecting rod (321) away from the mounting portion (31) is slidably connected to the auxiliary mounting rod (34), and the second connecting rod (322) is slidably connected to the mounting portion (31). The first connecting rod (321) and the second connecting rod (322) are hinged at the middle.
3. The heat dissipating goggles according to claim 2, characterized in that: A first sliding groove (341) for the second connecting rod (322) to be embedded and slided is provided on one side of the auxiliary mounting rod (34), and a second sliding groove (311) for the first connecting rod (321) to be embedded and slided is provided on the mounting portion (31).
4. The heat dissipating goggles according to claim 2, characterized in that: The operating portion (33) is located on a side of the second connecting rod (322) away from the first connecting rod (321), and the operating portion (33) includes an operating rod (331) with one end fixed to the second connecting rod (322), and the length direction of the operating rod (331) is consistent with the length direction of the second connecting rod (322).
5. The heat dissipating goggles according to claim 4, characterized in that: A protrusion (342) is fixedly connected to one side of the auxiliary installation rod (34), and a groove for the protrusion (342) to be embedded is provided on one side of the operating rod (331).
6. The heat dissipating goggles according to claim 1, characterized in that: The lens (2) is plugged into the mounting portion (31), a plug plate (21) is fixed to the lens (2), and a slot (312) for inserting the plug plate (21) is provided on a side of the mounting portion (31) away from the telescopic assembly (32).
7. The heat dissipating goggles according to claim 6, characterized in that: The inserting plate (21) comprises a rectangular flat plate (211) and abutting plates (212) fixedly connected to both sides of the flat plate (211); the abutting plates (212) have a semicircular cross-section and are located on a side of the flat plate (211) away from the lens (2).
8. The heat dissipating goggles according to claim 7, characterized in that: A plurality of the inserting plates (21) are arranged at intervals along the width direction of the lens (2), a plurality of the slots (312) are provided, and the plurality of slots (312) correspond one to one to the inserting plates (21).
9. The heat dissipation goggles according to any one of claims 1 to 8, characterized in that: The frame (1) is provided with a mounting groove (11) for embedding the lens (2), and a buckle (13) for limiting the lens (2) from sliding out of the mounting groove (11) is fixedly connected to the outer arc surface of the frame (1).