VR experiential glasses with supporting structure
By introducing a support structure and easy disassembly design into VR experience glasses, the problems of difficult disassembly and water ingress after VR glasses are solved, achieving the effect of easy replacement of protective shell and prevention of water ingress.
Patent Information
- Application Number
- CN202520803279.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2026-03-06
- Estimated Expiration
- 2035-04-25
AI Technical Summary
Existing VR experience glasses are assembled with the protective shell in one piece, which makes disassembly difficult after damage, the protective shell cannot be replaced, and there is a lack of support structure, which makes it easy for water to get in when the glasses come into contact with the table.
A VR experience glasses with a support structure was designed, including a frame storage slot, a transmission box, a telescopic rod, an anti-slip support frame, a power module, a limiting structure, and a locking structure. Through the combined use of these components, the protective shell can be easily disassembled and replaced, and water can be prevented from entering when water is spilled on the table.
It enables easy disassembly and replacement of the protective shell for VR glasses, solving the problem of difficult disassembly after damage, and effectively prevents water from entering when water is spilled on the desktop, improving the safety and practicality of the device.
Smart Images

Figure CN223977445U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of VR glasses technology, and in particular to a VR experience glasses with a support structure. Background Technology
[0002] VR glasses, also known as VR headsets, are virtual reality head-mounted display devices. Because the concept of head-mounted displays didn't exist initially, they were referred to by less professional names like VR glasses, VR goggles, and VR helmets, based on their appearance. VR headsets use a head-mounted display device to block out a person's vision and hearing from the outside world, guiding the user to experience a feeling of being in a virtual environment. Their display principle involves the left and right eye screens displaying images for the left and right eyes respectively; the human eye receives this differentiated information and then creates a sense of depth in the brain.
[0003] The existing VR experience glasses are installed as a single piece with the protective shell, which is difficult to disassemble after damage and the protective shell cannot be replaced. The existing VR experience glasses do not have a support structure. If water is spilled on the table, the glasses can easily come into contact with the table and cause water to enter, which is very dangerous. Utility Model Content
[0004] The technical problem this invention aims to solve is that existing VR experience glasses are installed as a single piece with the protective shell, making disassembly difficult after damage and preventing the replacement of the protective shell. Existing VR experience glasses lack a support structure, and if water is spilled on the table, the glasses may come into contact with the table, which is very dangerous.
[0005] To solve the above-mentioned technical problems, the technical solution of this utility model is a VR experience glasses with a support structure, including a VR glasses body and a frame storage slot. The frame storage slot is opened on the rear wall of the VR glasses body. Transmission boxes are installed on both sides of the VR glasses body. A first support structure is installed on the lower wall of the two transmission boxes. A limiting structure is fitted on the outer wall of the two transmission boxes. A locking structure is connected to the limiting structure. A second support structure is connected to the limiting structure. The first support structure includes: two telescopic rods, two anti-slip support frames, and two power-conducting modules. The two telescopic rods are respectively installed on the lower wall of the transmission box, the two anti-slip support frames are respectively installed on the lower wall of the two telescopic rods, and the two power-conducting modules are respectively installed on the lower wall of the two transmission boxes.
[0006] As a further embodiment of this utility model: the limiting structure includes: a glasses limiting groove, a supporting limiting frame, and a glasses protective cover; the glasses limiting groove is formed on the outer wall surface of the VR glasses body, the supporting limiting frame is connected in the glasses limiting groove, and the glasses protective cover is fitted on the outer wall surface of the supporting limiting frame.
[0007] As a further embodiment of this utility model: the locking structure includes: a locking limit frame, two locking threaded holes and two locking screws; the locking limit frame is connected to the inner wall of the eyeglass protective cover and is locked in the eyeglass limiting groove; the two locking threaded holes are respectively opened on the two sides of the eyeglass protective cover; and the two locking screws are respectively connected to the two locking threaded holes.
[0008] As a further embodiment of this utility model: the second support structure includes: two magnetic absorption slots, two rotating shaft switches, and two telescopic support frames; the two magnetic absorption slots are respectively opened on the lower wall of the VR glasses body, the two rotating shaft switches are respectively installed in the two magnetic absorption slots, and the two telescopic support frames are respectively fitted on the outer wall of the two rotating shaft switches.
[0009] As a further embodiment of this utility model, two temple limiting grooves are provided on the frame storage groove.
[0010] As a further embodiment of this utility model, two electrical connection slots are provided on the upper wall of the support and limiting frame.
[0011] As a further embodiment of this utility model: screw limiting grooves are respectively provided at both ends of the locking and limiting frame.
[0012] The present invention adopts the above technical solution and has the following advantages compared with the prior art:
[0013] Align the locking limit bracket with the eyeglass limit slot and insert it until the two screw limit slots are aligned with the two locking thread holes respectively. Connect them with two locking screws to complete the installation. The eyeglass protective cover can provide protection for the VR glasses body, solving the problem that the existing VR experience glasses body and protective shell are installed as a whole, which makes disassembly difficult and the protective shell cannot be replaced after damage.
[0014] Two telescopic support frames are moved from two magnetic absorption tanks. The two telescopic support frames drive two rotating shaft switches to rotate. When the two telescopic support frames are stuck on the protective cover of the glasses, the two rotating shaft switches are triggered. The two transmission boxes drive the two anti-slip support frames to move downward through two telescopic rods. This solves the problem that existing VR experience glasses do not have a support structure. If water is spilled on the table, the glasses body will easily come into contact with the table, which is very dangerous. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the storage structure of a VR experience glasses with a support structure according to an embodiment of the present invention;
[0016] Figure 2 This is a schematic diagram of the unfolding structure of a VR experience glasses with a support structure according to an embodiment of the present invention;
[0017] Figure 3 This is a schematic diagram of the first support structure of a VR experience glasses with a support structure according to an embodiment of the present utility model;
[0018] Figure 4 This is a schematic diagram of the second support structure of a VR experience glasses with a support structure according to an embodiment of the present invention.
[0019] In the diagram: 1. VR glasses body; 2. Frame storage slot; 3. Transmission box; 4. Telescopic rod; 5. Anti-slip support frame; 6. Power module; 7. Glasses limiting slot; 8. Support limiting frame; 9. Glasses protective cover; 10. Locking limiting frame; 11. Locking threaded hole; 12. Locking screw; 13. Magnetic absorption storage slot; 14. Rotary switch; 15. Telescopic support frame; 16. Temple limiting slot; 17. Power connection slot; 18. Screw limiting slot. Detailed Implementation
[0020] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings. It should be noted that these descriptions are for the purpose of aiding understanding of this utility model, but do not constitute a limitation thereof. Furthermore, the technical features involved in the various embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.
[0021] Please see Figures 1-4 A VR experience glasses with a support structure includes a VR glasses body 1 and a frame storage slot 2. The frame storage slot 2 is located on the rear wall of the VR glasses body 1. Transmission boxes 3 are installed on both sides of the VR glasses body 1. A first support structure is installed on the lower wall of the two transmission boxes 3. A limit structure is fitted on the outer wall of the two transmission boxes 3. A locking structure is connected to the limit structure. A second support structure is connected to the limit structure. The first support structure includes: two telescopic rods 4, two anti-slip support frames 5, and two power-conducting modules 6. The two telescopic rods 4 are respectively installed on the lower wall of the transmission box 3, the two anti-slip support frames 5 are respectively installed on the lower wall of the two telescopic rods 4, and the two power-conducting modules 6 are respectively installed on the lower wall of the two transmission boxes 3.
[0022] Please see Figures 3-4 The limiting structure includes: a glasses limiting groove 7, a support limiting frame 8, and a glasses protective cover 9; the glasses limiting groove 7 is opened on the outer wall surface of the VR glasses body 1, the support limiting frame 8 is connected in the glasses limiting groove 7, and the glasses protective cover 9 is fitted on the outer wall surface of the support limiting frame 8.
[0023] Please see Figure 4The locking structure includes: a locking limit bracket 10, two locking threaded holes 11, and two locking screws 12; the locking limit bracket 10 is connected to the inner wall of the eyeglass protective cover 9 and is locked in the eyeglass limiting groove 7; the two locking threaded holes 11 are respectively opened on the two sides of the eyeglass protective cover 9; and the two locking screws 12 are respectively connected to the two locking threaded holes 11.
[0024] Please see Figure 4 The second support structure includes: two magnetic absorption slots 13, two rotating switches 14, and two telescopic support frames 15; the two magnetic absorption slots 13 are respectively opened on the lower wall of the VR glasses body 1, the two rotating switches 14 are respectively installed in the two magnetic absorption slots 13, and the two telescopic support frames 15 are respectively fitted on the outer wall of the two rotating switches 14.
[0025] Please see Figure 3 The frame storage slot 2 has two temple limiting slots 16. When in use, if the operator is wearing glasses, the frame is inserted into the frame storage slot 2 and the temples are inserted into the two temple limiting slots 16.
[0026] Please see Figure 4 The upper wall of the support limit frame 8 has two electrical connection slots 17. When in use, after the two power modules 6 are inserted into the two electrical connection slots 17, the two rotating shaft switches 14 are respectively connected to the two transmission boxes 3.
[0027] Please see Figure 4 The locking limit bracket 10 has screw limit grooves 18 at both ends. When in use, the operator inserts the locking limit bracket 10 into the eyeglass limit groove 7 until the two screw limit grooves 18 are aligned with the two locking thread holes 11 and connected with two locking screws 12 to complete the installation.
[0028] In Example 1, the locking limit bracket 10 is inserted into the eyeglass limiting groove 7 until the two screw limiting grooves 18 are aligned with the two locking threaded holes 11 respectively, and then connected with two locking screws 12 to complete the installation. The eyeglass protective cover 9 can provide protection for the VR eyeglass body 1.
[0029] Specifically, during installation, the operator holds the VR glasses body 1 and inserts the two power modules 6 into the two power slots 17 respectively. At this time, the glasses limiting slot 7 is locked on the support limiting frame 8. During this process, the support limiting frame 8 is used to support the two transmission boxes 3. After the two power modules 6 are inserted into the two power slots 17, the two rotating shaft switches 14 are connected to the two transmission boxes 3 respectively. Then, the operator aligns the locking limiting frame 10 with the glasses limiting slot 7 and inserts it until the two screw limiting slots 18 are aligned with the two locking threaded holes 11 respectively, and connects them with two locking screws 12 to complete the installation. The glasses protective cover 9 can provide protection for the VR glasses body 1.
[0030] In Example 2, two telescopic support frames 15 are moved from two magnetic absorption tanks 13. The two telescopic support frames 15 drive two rotating shaft switches 14 to rotate. When the two telescopic support frames 15 are stuck on the eyeglass protective cover 9, the two rotating shaft switches 14 are triggered. The two transmission boxes 3 drive the two anti-slip support frames 5 to move downward through the two telescopic rods 4.
[0031] Specifically, when using the VR glasses, if the operator is wearing glasses, insert the frame into the frame storage slot 2 and simultaneously insert the temples into the two temple limiting slots 16. After using the VR glasses body 1, the operator moves the two telescopic support frames 15 from the two magnetic absorption storage slots 13. The two telescopic support frames 15 drive the two rotating shaft switches 14 to rotate. When the two telescopic support frames 15 are locked on the glasses protective cover 9, the two rotating shaft switches 14 are triggered. The two transmission boxes 3 drive the two anti-slip support frames 5 to move downwards through the two telescopic rods 4. Finally, the operator extends the two telescopic support frames 15 until they are flush with the two anti-slip support frames 5 and can then place them on the table. At this time, when water is spilled on the table, the VR glasses body 1 is separated from the table, which can prevent water from entering.
[0032] The embodiments of this utility model have been described in detail above with reference to the accompanying drawings, but this utility model is not limited to the described embodiments. For those skilled in the art, various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of this utility model, and these variations still fall within the protection scope of this utility model.
Claims
1. A VR experience glasses with support structure, comprising a VR glasses body (1) and a glasses frame storage groove (2), characterized in that, The mirror frame storage groove (2) is arranged on the rear wall of the VR glasses body (1), the transmission boxes (3) are arranged on the two sides of the VR glasses body (1), the first supporting structure is arranged on the lower wall of the transmission boxes (3), the limiting structure is arranged on the outer wall of the transmission boxes (3), the locking structure is connected to the limiting structure, and the second supporting structure is connected to the limiting structure. The first supporting structure comprises two telescopic rods (4), two anti-skid supporting frames (5) and two power supply modules (6). The telescopic rods (4) are arranged on the lower wall of the transmission boxes (3), the anti-skid supporting frames (5) are arranged on the lower wall of the telescopic rods (4), and the power supply modules (6) are arranged on the lower wall of the transmission boxes (3).
2. The VR experience glasses with support structure according to claim 1, characterized in that, The limiting structure comprises a glasses limiting groove (7), a supporting limiting frame (8) and a glasses protective sleeve (9). The glasses limiting groove (7) is arranged on the outer wall of the VR glasses body (1), the supporting limiting frame (8) is connected to the glasses limiting groove (7), and the glasses protective sleeve (9) is arranged on the outer wall of the supporting limiting frame (8).
3. The VR experience glasses with support structure of claim 2, wherein, The locking structure comprises a locking limiting frame (10), two locking screw holes (11) and two locking screws (12). The locking limiting frame (10) is connected to the inner wall of the glasses protective sleeve (9) and is clamped in the glasses limiting groove (7), the locking screw holes (11) are arranged on the two sides of the glasses protective sleeve (9), and the locking screws (12) are connected to the locking screw holes (11).
4. The VR experience glasses with support structure of claim 1, wherein, The second supporting structure comprises two magnetic absorption storage grooves (13), two rotating shaft switches (14) and two telescopic supporting frames (15). The magnetic absorption storage grooves (13) are arranged on the lower wall of the VR glasses body (1), the rotating shaft switches (14) are arranged in the magnetic absorption storage grooves (13), and the telescopic supporting frames (15) are arranged on the outer wall of the rotating shaft switches (14).
5. The VR experience glasses with support structure of claim 1, wherein, Two mirror leg limiting grooves (16) are arranged on the mirror frame storage groove (2).
6. The VR experience glasses with support structure of claim 2, wherein, Two power connection grooves (17) are arranged on the upper wall of the supporting limiting frame (8).
7. The VR experience glasses with support structure of claim 3, wherein, Screw limiting grooves (18) are arranged at the two ends of the locking limiting frame (10).