A Multifunctional VR Sensor Peripheral Device and Its Usage Method

By designing a multi-function VR sensor peripheral device, the design of hot and cold gas mixing and air venting components is solved, and the problems of arm shaking, shoulder disengagement and sweat stain absorption during use of VR glasses are achieved, cooling, gas circulation and support functions are achieved, improving user experience and equipment stability.

CN119002063BActive Publication Date: 2025-06-10HUNAN SOFTWARE VOCATIONAL INST
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Patent Information

Application Number
CN202411101014.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-06-10
Estimated Expiration
2044-08-12

AI Technical Summary

Technical Problem

During use, existing VR glasses are likely to cause users to shake their arms and shoulders to detach, increasing the weight of VR glasses, causing the glasses to fall and break. At the same time, sweat stains around the eyes are difficult to absorb when worn by users, which affects the experience.

Method used

A multifunctional VR sensor peripheral device is designed, including a VR glasses body, a connecting frame, a moving frame, a silicone pad, a support mechanism, a ventilation mechanism and an adjustment mechanism. By pouring cold air into the interior of the VR glasses body and mixing hot air, the gas circulating flow is achieved using the air outlet assembly to remove water mist on the lens and sweat stains around the user's eyes. At the same time, through the design of airbags and rectangular sleeves, support and adjustment functions are provided, reducing the pressure on the face of the glasses and preventing falling.

Benefits of technology

It realizes cooling and gas circulation of VR glasses, clears water mist and sweat stains, reduces the pressure on the face of glasses, prevents falling, and adapts to the wear needs of different users.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of VR sensors, and specifically to a multifunctional VR sensor peripheral device, which includes a VR glasses body. A connection frame is fixedly connected to the open surface of the VR glasses body. A storage groove is formed on one side surface of the connection frame. A movable frame is slidably sleeved inside the storage groove. A silica gel pad is fixedly connected to one side surface of the movable frame. A support mechanism is rotatably connected between the opposite two side surfaces of the connection frame. Ventilation mechanisms are arranged on both sides inside the movable frame. An adjustment mechanism is arranged between the movable frame and the connection frame. In the present invention, by injecting cold air into the VR glasses body and mixing it with the hot air inside the VR glasses body, the device can cool the inside of the VR glasses body and at the same time use the air outlet component to discharge the mixed gas to realize the circulation of the gas inside the VR glasses body and the external gas, thereby drying the water mist on the lens of the VR glasses body and the sweat stains around the user's eyes.
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Description

Technical Field

[0001] The present invention relates to the field of VR sensor technology, and in particular to a multifunctional VR sensor peripheral device and a method for using the same. Background Art

[0002] VR sensor peripherals are an indispensable part of virtual reality technology. They are responsible for capturing the user's movements and position information to achieve a more realistic and natural interactive experience. This device usually includes a variety of sensors to fully capture the user's movements and position changes. VR glasses are one type of VR sensor peripherals. VR glasses use head-mounted devices to block a person's vision and hearing from the outside world, guiding the user to feel like they are in a virtual environment.

[0003] Chinese Patent Publication No.: CN117075351A A virtual reality imaging device, through the return rebound of two support springs, the first clamping plate and the second clamping plate will be pushed to return to fit on the user's shoulders, and can be fixed on the user's shoulders, which can provide an upward supporting force for the VR glasses body, thereby alleviating the gravity of the VR glasses body worn on the user's head, and the isolation cotton roll will fit on the user's skin, which can not only absorb the water vapor generated by the heat dissipated by the VR glasses themselves when working, but also absorb the sweat stains generated by the heat on the face of the user who wears the VR glasses for a long time.

[0004] In the above patent, if you want to absorb the sweat around the user's eyes, you need to put the isolation cotton roll against the skin around the glasses to absorb the sweat. Therefore, the isolation cotton roll needs to be against the skin around the eyes, which will greatly affect the user experience (similar to people keeping their fingers around the eyes when watching mobile phones or TV, which will affect people's viewing effect). Moreover, although the above patent can support the VR glasses and reduce the pressure of the VR glasses on the head, when the user uses the VR glasses, the arms will shake with the movements in the VR glasses. Since the shaking of the arms will also cause the shoulders to shake, the first splint and the second splint will be separated from the shoulders, thereby increasing the weight of the VR glasses, causing the VR glasses to fall off the head and break. Summary of the invention

[0005] The object of the present invention is to provide a multifunctional VR sensor peripheral device and a method of using the same to solve the problems raised in the above background technology.

[0006] To achieve the above object, the present invention provides the following technical solutions:

[0007] A multifunctional VR sensor peripheral device, including a VR glasses body. A connection frame is fixedly connected to the open surface of the VR glasses body. A storage groove is formed on one side surface of the connection frame. A moving frame is slidably sleeved inside the storage groove. A silica gel pad is fixedly connected to one side surface of the moving frame. A support mechanism is rotatably connected between the opposite side surfaces of the connection frame. Ventilation mechanisms are arranged on both sides inside the moving frame. An adjustment mechanism is arranged between the moving frame and the connection frame. A plurality of air outlet components communicating with the inside of the moving frame are fixedly arranged at equal intervals on the opposite side surfaces of the moving frame.

[0008] Fixed columns are fixedly connected to the opposite side surfaces of the connection frame. The support mechanism includes two symmetrical rotating plates that respectively penetrate and rotate through the fixed columns at corresponding positions. A rectangular sleeve is slidably sleeved on the outer side of the rotating plate. Two elastic bands are fixedly connected between the two rectangular sleeves. An airbag is fixedly embedded inside the elastic band. The ventilation mechanism includes a rotating tube rotatably connected between the inner top surface and the inner bottom surface of the moving frame. A plurality of flow dividing blocks communicating with the inside of the rotating tube are annularly and equally angledly fixed at both ends of the outer wall of the rotating tube. A plurality of spray heads communicating with the inside of the corresponding flow dividing block are fixedly arranged at equal intervals on one side surface of the flow dividing block. The inner bottom end of the rotating tube is rotatably connected to a connection head three fixedly penetrating through the moving frame. A hose is inserted into the inside of the connection head three. One end of the hose is fixedly connected to a pressure ball.

[0009] Furthermore, a connecting pipe is arranged between the two fixed columns. A three-way pipe communicating with the inside of the connecting pipe is fixedly connected to the outer wall of the connecting pipe. An air delivery pipe fixedly connected to the connecting pipe and penetrating through the fixed column at the corresponding position is fixedly penetrated through the inner side surface of the rectangular sleeve.

[0010] Furthermore, a connection head one communicating with the inside of the corresponding airbag is fixedly connected to the outer side surface of the airbag. One end of the three-way pipe is fixedly connected to a connection head two.

[0011] Furthermore, the air outlet component includes a round pipe fixedly penetrating through the moving frame. One end of the round pipe is fixedly connected to a sleeve. One end of the sleeve is fixedly connected to a mesh piece. A blocking ball is arranged inside the sleeve. A spring fixedly connected to the mesh piece at the corresponding position is fixedly connected to the outer wall of the blocking ball.

[0012] Furthermore, the connection part between the sleeve and the corresponding round pipe is of a frustum structure. The diameter of the blocking ball is larger than the inner diameter of the round pipe, and the diameter of the blocking ball is smaller than the inner diameter of the sleeve.

[0013] Furthermore, both ends of the top and bottom surfaces of the connecting frame are fixedly connected with fixed blocks 1, and corresponding fixed blocks 1 are fixedly connected with fixed blocks 2 at both ends of the top and bottom surfaces of the movable frame. The adjusting mechanism includes a threaded tube that rotates with the fixed block 1 at the corresponding position, and the inside of the threaded tube is screwed and connected with a screw that is fixed to the fixed block 2 at the corresponding position.

[0014] Furthermore, the top and bottom surfaces of the connecting frame are fixedly connected to a protective shell, one end of the threaded tube passes through the side surface of a fixed block at a corresponding position and is fixedly connected to a single-groove pulley, a rotating shaft is rotatably connected between the two long side surfaces inside the protective shell, a double-groove pulley is fixedly connected to the outer wall of the rotating shaft, and the two grooves in the double-groove pulley are respectively connected to the single-groove pulley at the corresponding position through belt transmission.

[0015] Furthermore, one end of the outer wall of the rotating shaft is fixedly connected to a bevel gear 1, a round rod that rotates through the connecting frame is rotatably connected between the opposite sides of the two protective shells, and both ends of the outer wall of the round rod are fixedly connected to a bevel gear 2 that meshes with the bevel gear 1 at the corresponding position.

[0016] Furthermore, one end of the rotating shaft located at the top passes through the outer side surface of the protective shell at the corresponding position and is fixedly connected with a rotating block.

[0017] A method for using a multifunctional VR sensor peripheral device specifically comprises the following steps:

[0018] Step 1: First, separate the two elastic bands so that a circle or oval is formed between the two elastic bands, and then pass the two elastic bands through the head and put them around the neck. If the user is sitting or standing, put the two elastic bands around the chest, then lift the VR glasses body with your hands, and put the straps that come with the VR glasses body on the user's head;

[0019] Step 2: The user inserts one end of the hose on one of the pressure balls into one of the connectors, and inflates the airbag at the corresponding position by reciprocatingly squeezing the pressure ball until the airbag swells up and comes into close contact with the chest or back, then pulls out the hose and inserts it into another connector, and uses the same method to make the airbag at the corresponding position come into close contact with the chest or back;

[0020] Step 3: Insert one end of the hose into the second connector, and reciprocately squeeze the pressure ball to inflate the two rectangular sleeves. The gas inflated into the rectangular sleeves lifts the rotating plate at the corresponding position out of the rectangular sleeves until the user feels that the VR glasses body is no longer tilted;

[0021] Step 4: When worn for a long time, since the human skin emits heat, there will be water mist and sweat stains on the lenses inside the VR glasses body and the skin around the user's eyes. By inserting one end of each of the two hoses into the corresponding connector three, holding the pressure balls with both hands and reciprocally squeezing them, gas is injected into the interior of the VR glasses body to mix the cold and hot gases;

[0022] Step 5: Continuously inject gas into the VR glasses body to increase the internal air pressure of the VR glasses body, causing the plug ball in the sleeve to move towards the mesh sheet, separating the plug ball from the corresponding round tube, and allowing the mixed gas inside the VR glasses body to flow out from multiple sleeves;

[0023] Step 6: When the user uses the VR glasses body lying in bed or on the sofa, place the two elastic bands behind the neck, then insert one of the hoses into connector two and inflate the two rectangular sleeves until the user feels that the pressure of the VR glasses body on the face is reduced to an appropriate level. Then insert the hose into one of the connector ones and inflate the airbag, and then inflate the other airbag in the same way.

[0024] Compared with the prior art, the beneficial effects of the present invention are:

[0025] 1. By injecting cold air into the VR glasses body and mixing it with the hot air inside the VR glasses body, the device can cool the interior of the VR glasses body while using the air outlet component to release the mixed gas to achieve the circulation of the gas inside the VR glasses body and the external gas, thereby drying the water mist on the lenses of the VR glasses body and the sweat stains around the user's eyes;

[0026] 2. By inflating the two airbags, the two rectangular sleeves can be fixed on the user's body, and by inflating the rectangular sleeves, the rotating plate can support the VR glasses body, thereby reducing the pressure of the VR glasses body on the user's face and preventing the rectangular sleeves from falling off from both sides of the body when the user's arm swings. If the user is lying down, the two airbags can support the user's neck, making the user more comfortable when lying down;

[0027] 3. By rotating the threaded tube, the screw rod can be extended, thereby driving the moving frame to move. Since the moving frame is in contact with the user's face through the silicone pad, the VR glasses body can move away from or closer to the user to adjust the distance between the lens and the eyes, thus being applicable to different users. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 is a schematic diagram of the overall structure of the present invention;

[0029] Figure 2 is a schematic diagram of the position of the adjustment mechanism in the present invention;

[0030] Figure 3 is a schematic diagram of the VR glasses body in the present invention;

[0031] Figure 4 is an enlarged view of part A in the present invention;

[0032] Figure 5 is a schematic diagram of the structure of the support mechanism in the present invention;

[0033] Figure 6 is a schematic diagram of the structure of the air exchange mechanism in the present invention;

[0034] Figure 7 is an enlarged view of part B in the present invention;

[0035] Figure 8 is a schematic diagram of the structure of the adjustment mechanism in the present invention.

[0036] In the figure: 1, VR glasses body; 11, connecting frame; 111, storage groove; 112, fixing column; 113, first fixing block; 12, moving frame; 121, second fixing block; 13, silica gel pad; 14, round tube; 141, sleeve; 142, mesh sheet; 15, blocking ball; 151, spring; 16, protective shell; 2, support mechanism; 21, rotating plate; 22, rectangular sleeve; 23, elastic band; 24, airbag; 25, connecting pipe; 26, tee pipe; 27, air delivery pipe; 28, first connecting head; 3, air exchange mechanism; 31, rotating pipe; 32, flow dividing block; 33, nozzle; 34, third connecting head; 35, hose; 36, pressure ball; 4, adjustment mechanism; 41, threaded pipe; 42, screw rod; 43, single-groove pulley; 44, double-groove pulley; 45, first bevel gear; 46, round rod; 47, second bevel gear; 48, rotating block. Detailed implementation manners

[0037] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0038] Please refer to Figure 1-8, in the embodiment of the present invention, a method for a multifunctional VR sensor peripheral device includes a VR glasses body 1. A connection frame 11 is fixedly connected to the open surface of the VR glasses body 1. A storage groove 111 is formed on one side surface of the connection frame 11. A moving frame 12 is slidably sleeved inside the storage groove 111. A silica gel pad 13 is fixedly connected to one side surface of the moving frame 12. A support mechanism 2 is rotatably connected between the two opposite side surfaces of the connection frame 11. Ventilation mechanisms 3 are arranged on both sides inside the moving frame 12. An adjustment mechanism 4 is arranged between the moving frame 12 and the connection frame 11. A plurality of air outlet components communicating with the inside of the moving frame 12 are fixedly arranged at equal intervals on the two opposite side surfaces of the moving frame 12;

[0039] Fixed columns 112 are fixedly connected to the two opposite side surfaces of the connection frame 11. The support mechanism 2 includes two symmetric rotating plates 21 that respectively penetrate and rotate through the fixed columns 112 at corresponding positions. A rectangular sleeve 22 is slidably sleeved on the outer side of the rotating plate 21. Two elastic bands 23 are fixedly connected between the two rectangular sleeves 22. An airbag 24 is fixedly embedded inside the elastic band 23. The ventilation mechanism 3 includes a rotating tube 31 that rotates between the inner top surface and the inner bottom surface of the moving frame 12. A plurality of diversion blocks 32 communicating with the inside of the rotating tube 31 are annularly and equally angularly fixed at both ends of the outer wall of the rotating tube 31. A plurality of nozzles 33 communicating with the inside of the corresponding diversion block 32 are fixedly arranged at equal intervals on one side surface of the diversion block 32. The inner bottom end of the rotating tube 31 is rotatably connected to a connection head three 34 fixedly penetrating the moving frame 12. A hose 35 is inserted into the inside of the connection head three 34. One end of the hose 35 is fixedly connected to a pressure ball 36.

[0040] Specifically, first separate the two elastic bands 23 so that a circle or oval is formed between the two elastic bands 23, and then pass the two elastic bands 23 through the head and put them around the neck. If the user is sitting or standing, the two elastic bands 23 can be put around the chest, and then the VR glasses body 1 is lifted up by hand, and the straps of the VR glasses body 1 are put on the user's head, and then the two air bags 24 are inflated until the air bags 24 are inflated and in close contact with the chest or back, and the two rectangular sleeves 22 can be fixed on both sides of the user's chest, and then the rotating plate 21 is extended from the rectangular sleeve 22 at the corresponding position until the user feels that the VR glasses body 1 is no longer tilted and the pressure of the VR glasses body 1 on the head is reduced. When worn for a long time, since the human skin will emit heat, the lenses in the VR glasses body 1 and the skin around the user's eyes will have water mist and sweat stains. By inserting one end of the two hoses 35 into the connectors 34 at the corresponding positions, and then holding the pressure balls 36 with both hands and squeezing them back and forth, gas can be injected into the VR glasses body 1 to mix the cold and hot gases. When gas is injected into the VR glasses body 1, the gas is ejected from the multiple nozzles 33 so that the rotating tube 31 can drive the multiple diverter blocks 32 to rotate inside the VR glasses body 1. The multiple rotating diverter blocks 32 can quickly mix the injected gas with the original gas, and continuously inject gas into the VR glasses body 1, so that the internal air pressure of the VR glasses body 1 increases. When the air pressure in the VR glasses body 1 reaches a certain level, the mixed gas in the VR glasses body 1 is ejected from the multiple air outlet components, so as to cool down the VR glasses body 1. At the same time, the water mist on the lens of the VR glasses body 1 and the sweat around the user's eyes can be blown dry (similar to the water mist on the windshield of a car, the water mist on the windshield can be blown dry by opening the car window). If the user uses the VR glasses body 1 while lying on a bed or sofa, the two elastic bands 23 are placed behind the neck, and then the two air bags 24 are inflated and the two air bags 24 are bulged until the two air bags 24 can support the user's neck, and then the two rectangular sleeves 22 are inflated so that the rotating plate 21 can be lifted up, so as to In order to reduce the pressure of the VR glasses body 1 on the user's face, the device injects cold air into the VR glasses body 1 and mixes it with the hot air in the VR glasses body 1, so as to cool down the VR glasses body 1. At the same time, the mixed gas can be released by the gas outlet component to realize the circulation of the gas in the VR glasses body 1 and the external gas, so as to dry the water mist on the lens of the VR glasses body 1 and the sweat stains around the user's eyes. In addition, by inflating the two air bags 24, the two rectangular sleeves 22 can be fixed on the user's body, and by inflating the rectangular sleeves 22, the rotating plate 21 can support the VR glasses body 1, so as to reduce the pressure of the VR glasses body 1 on the user's face and prevent the user's arms from swinging.The rectangular sleeve 22 falls off from both sides of the body.

[0041] Embodiment 1

[0042] As Figure 5 shown, in this embodiment, a connecting pipe 25 is arranged between two fixing columns 112. An outer wall of the connecting pipe 25 is fixedly connected with a tee pipe 26 communicated with the inside of the connecting pipe 25. An inner side surface of the rectangular sleeve 22 is fixedly penetrated with an air delivery pipe 27 which penetrates and rotates with the corresponding fixing column 112 and is fixed to the connecting pipe 25. An outer side surface of the airbag 24 is fixedly connected with a first connecting head 28 communicated with the inside of the corresponding airbag 24. One end of the tee pipe 26 is fixedly connected with a second connecting head.

[0043] In this embodiment, by inserting one end of a hose 35 into the second connecting head and reciprocally squeezing a pressure ball 36, air can be filled into the two rectangular sleeves 22, so that the rotating plate 21 can be pushed out from the corresponding rectangular sleeve 22. When the two elastic bands 23 are sleeved on a user's chest, the VR glasses body 1 applies a downward pressure to the two rectangular sleeves 22 and then transmits it to the user's chest. Due to the mutual action of forces, the two rectangular sleeves 22 can support the VR glasses body 1, reducing the facial pressure of the user. When the user is lying in bed or on a sofa, one end of the rectangular sleeve 22 abuts against the bed or the sofa, so that the VR glasses body 1 can also be supported. When the user is lying, the two airbags 24 are located on the back of the user's neck (between the neck and the bed or the sofa). By filling air into the two airbags 24, the user's neck can be supported, making the user more comfortable when lying.

[0044] Embodiment 2

[0045] As Figure 3 and Figure 4 shown, in this embodiment, the air outlet assembly includes a round pipe 14 fixedly penetrated through a moving frame 12. One end of the round pipe 14 is fixedly connected with a sleeve 141. One end of the sleeve 141 is fixedly connected with a mesh piece 142. A plug ball 15 is arranged inside the sleeve 141. An outer wall of the plug ball 15 is fixedly connected with a spring 151 fixed to the corresponding mesh piece 142. A connection part between the sleeve 141 and the corresponding round pipe 14 is of a frustum structure. The diameter of the plug ball 15 is larger than the inner diameter of the round pipe 14, and the diameter of the plug ball 15 is smaller than the inner diameter of the sleeve 141.

[0046] In this embodiment, when the air pressure inside the VR glasses body 1 reaches a certain level, multiple blocking balls 15 can be moved towards the mesh pieces 142 at corresponding positions respectively, so that the round tube 14 is separated from the blocking balls 15, thereby discharging the mixed gas inside the VR glasses body 1, making the inside of the VR glasses body 1 not communicate with the outside. Then, by inflating the VR glasses body 1, it is possible to dry the water mist on the lenses of the VR glasses body 1 and the sweat stains around the user's eyes.

[0047] Embodiment Three

[0048] As Figure 8 shown, in this embodiment, fixing blocks one 113 are fixedly connected to both ends of the top and bottom surfaces of the connecting frame 11. Fixing blocks two 121 are fixedly connected to the top and bottom surfaces of the moving frame 12 corresponding to the fixing blocks one 113. The adjusting mechanism 4 includes a threaded tube 41 rotatably connected to the fixing block one 113 at the corresponding position. A screw rod 42 fixed to the fixing block two 121 at the corresponding position is in screw connection with the inside of the threaded tube 41. Protective shells 16 are fixedly connected to both the top and bottom surfaces of the connecting frame 11. One end of the threaded tube 41 penetrates through the side surface of the fixing block one 113 at the corresponding position and is fixedly connected to a single-groove pulley 43. A rotating shaft is rotatably connected between the two long side surfaces inside the protective shell 16. A double-groove pulley 44 is fixedly connected to the outer wall of the rotating shaft. The two grooves in the double-groove pulley 44 are respectively driven by belts with the single-groove pulleys 43 at the corresponding positions. One end of the outer wall of the rotating shaft is fixedly connected to a bevel gear one 45. A round rod 46 that penetrates and rotates through the connecting frame 11 is rotatably connected between the opposite side surfaces of the two protective shells 16. Bevel gears two 47 meshing with the bevel gear one 45 at the corresponding position are fixedly connected to both ends of the outer wall of the round rod 46. One end of the rotating shaft located above penetrates through the outer side surface of the protective shell 16 at the corresponding position and is fixedly connected to a rotating block 48.

[0049] In this embodiment, for some users with myopia, hyperopia, and astigmatism, when using the VR glasses body 1, they need to adjust the distance between the lenses and the eyes. At this time, by rotating the rotating block 48, the rotating shaft at the corresponding position drives the bevel gear two 47 to rotate. The rotating bevel gear one 45 makes the bevel gear two 47 at the corresponding position drive the round rod 46 to rotate, so that the two double-groove pulleys 44 can rotate simultaneously. The rotating double-groove pulleys 44 can make the two single-groove pulleys 43 at the corresponding positions rotate. The rotating single-groove pulleys 43 can make the threaded tube 41 at the corresponding position rotate. Since the threaded tube 41 is in screw connection with the screw rod 42 at the corresponding position, the rotating threaded tube 41 can make the screw rod 42 drive the moving frame 12 to move. Since the moving frame 12 is in contact with the user's face through the silicone pad 13, the VR glasses body 1 can move away from or close to the user, thereby adjusting the distance between the lenses and the eyes.

[0050] A method for using a multifunctional VR sensor peripheral device specifically comprises the following steps:

[0051] Step 1: First, separate the two elastic bands 23 so that a circle or an oval is formed between the two elastic bands 23, and then pass the two elastic bands 23 through the head and put them around the neck. If the user is sitting or standing, put the two elastic bands 23 around the chest, and then lift the VR glasses body 1 by hand, and put the straps of the VR glasses body 1 on the user's head;

[0052] Step 2: The user inserts one end of the hose 35 on one of the pressure balls 36 into one of the connectors 28, and inflates the airbag 24 at the corresponding position by reciprocatingly squeezing the pressure ball 36 until the airbag 24 swells up and comes into close contact with the chest or back, then removes the hose 35 and inserts it into another connector 28, and uses the same method to make the airbag 24 at the corresponding position come into close contact with the chest or back;

[0053] Step 3: insert one end of the hose 35 into the second connector, and reciprocatingly squeeze the pressure ball 36 to inflate the two rectangular sleeves 22. The gas inflated into the rectangular sleeves 22 pushes the rotating plate 21 at the corresponding position out of the rectangular sleeves 22 until the user feels that the VR glasses body 1 is no longer tilted;

[0054] Step 4: When worn for a long time, the human skin will emit heat, so the lenses in the VR glasses body 1 and the skin around the user's eyes will have water mist and sweat stains. By inserting one end of the two hoses 35 into the connector 3 34 at the corresponding position, holding the pressure balls 36 with both hands and squeezing them back and forth, gas is poured into the VR glasses body 1 to mix the cold and hot gases;

[0055] Step 5: Continue to fill the VR glasses body 1 with air to increase the internal air pressure of the VR glasses body 1, so that the blocking ball 15 in the sleeve 141 moves toward the mesh 142, so that the blocking ball 15 is separated from the circular tube 14 at the corresponding position, and the mixed gas in the VR glasses body 1 flows out from the multiple sleeves 141;

[0056] Step 6: When the user lies on the bed or sofa and uses the VR glasses body 1, put the two elastic bands 23 behind the neck, then insert one of the hoses 35 into the second connector, and inflate the two rectangular sleeves 22 until the user feels that the pressure of the VR glasses body 1 on the face is reduced to a suitable level, then insert the hose 35 into one of the connectors 1 28, and inflate the airbag 24, and then inflate the other airbag 24 in the same way.

[0057] It is obvious to those skilled in the art that the present invention is not limited to the details of the above-described exemplary embodiments, and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, in any aspect, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Accordingly, all changes that fall within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present invention. Any reference signs in the claims should not be construed as limiting the claims involved.

[0058] In addition, it should be understood that although this specification is described in terms of embodiments, not every embodiment only contains an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A multifunctional VR sensor peripheral device, characterized in that: The invention comprises a VR glasses body (1), wherein a connection frame (11) is fixedly connected to an open surface of the VR glasses body (1), a storage groove (111) is provided on one side of the connection frame (11), a moving frame (12) is slidably sleeved inside the storage groove (111), a silicone pad (13) is fixedly connected to one side of the moving frame (12), a support mechanism (2) is rotatably connected between two opposite side surfaces of the connection frame (11), a ventilation mechanism (3) is provided on both sides of the inside of the moving frame (12), an adjustment mechanism (4) is provided between the moving frame (12) and the connection frame (11), and a plurality of air outlet components connected to the inside of the moving frame (12) are fixedly connected at equal intervals on two opposite side surfaces of the moving frame (12); The two opposite sides of the connection frame (11) are fixedly connected with fixed columns (112); the support mechanism (2) comprises two symmetrical rotating plates (21) which respectively penetrate and rotate with the fixed columns (112) at corresponding positions; a rectangular sleeve (22) is slidably sleeved on the outer side of the rotating plate (21); two elastic bands (23) are fixedly connected between the two rectangular sleeves (22); an air bag (24) is embedded and fixed inside the elastic band (23); the ventilation mechanism (3) comprises a rotating air bag (24) which rotates between the inner top surface and the inner bottom surface of the movable frame (12); A rotating tube (31), wherein a plurality of flow diverter blocks (32) communicating with the interior of the rotating tube (31) are fixed at equal angles in an annular manner at both ends of the outer wall of the rotating tube (31), a plurality of nozzles (33) communicating with the interior of the flow diverter blocks (32) at corresponding positions are fixed at equal intervals on one side of the flow diverter blocks (32), an inner bottom end of the rotating tube (31) is rotatably connected to a connector three (34) penetrating and fixed to the moving frame (12), a hose (35) is inserted into the interior of the connector three (34), and a pressure ball (36) is fixedly connected to one end of the hose (35); A connecting pipe (25) is provided between the two fixing columns (112); a three-way pipe (26) communicating with the interior of the connecting pipe (25) is fixedly connected to the outer wall of the connecting pipe (25); and a gas delivery pipe (27) is fixedly passed through the inner side surface of the rectangular sleeve (22) and is rotatably passed through the fixing column (112) at the corresponding position and is fixed to the connecting pipe (25); The outer side surface of the airbag (24) is fixedly connected to a connector 1 (28) communicating with the interior of the airbag (24) at a corresponding position, and one end of the three-way pipe (26) is fixedly connected to a connector 2.

2. A multifunctional VR sensor peripheral device according to claim 1, characterized in that: The air outlet assembly comprises a round tube (14) which penetrates and is fixed to the moving frame (12); one end of the round tube (14) is fixedly connected to a sleeve (141); one end of the sleeve (141) is fixedly connected to a mesh (142); a blocking ball (15) is arranged inside the sleeve (141); and the outer wall of the blocking ball (15) is fixedly connected to a spring (151) fixed to the mesh (142) at a corresponding position.

3. A multifunctional VR sensor peripheral device according to claim 2, characterized in that: The connection between the sleeve (141) and the circular tube (14) at the corresponding position is a truncated cone structure, the diameter of the blocking ball (15) is larger than the inner diameter of the circular tube (14), and the diameter of the blocking ball (15) is smaller than the inner diameter of the sleeve (141).

4. A multifunctional VR sensor peripheral device according to claim 3, characterized in that: The top and bottom ends of the connection frame (11) are fixedly connected to a fixed block 1 (113); the top and bottom ends of the movable frame (12) are fixedly connected to a fixed block 2 (121) at positions corresponding to the fixed block 1 (113); the adjustment mechanism (4) comprises a threaded tube (41) that rotates with the fixed block 1 (113) at a corresponding position; the threaded tube (41) is internally screwed and connected to a screw rod (42) that is fixed to the fixed block 2 (121) at a corresponding position.

5. A multifunctional VR sensor peripheral device according to claim 4, characterized in that: The top and bottom surfaces of the connection frame (11) are fixedly connected to a protective shell (16); one end of the threaded tube (41) passes through the side surface of a fixed block (113) at a corresponding position and is fixedly connected to a single-groove pulley (43); a rotating shaft is rotatably connected between the two long side surfaces inside the protective shell (16); a double-groove pulley (44) is fixedly connected to the outer wall of the rotating shaft; two grooves in the double-groove pulley (44) are respectively connected to the single-groove pulley (43) at the corresponding position through a belt transmission.

6. A multifunctional VR sensor peripheral device according to claim 5, characterized in that: One end of the outer wall of the rotating shaft is fixedly connected to a bevel gear 1 (45), and a round rod (46) that penetrates and rotates with the connecting frame (11) is rotatably connected between the opposite side surfaces of the two protective shells (16), and both ends of the outer wall of the round rod (46) are fixedly connected to bevel gear 2 (47) that meshes with the bevel gear 1 (45) at the corresponding position.

7. A multifunctional VR sensor peripheral device according to claim 6, characterized in that: One end of the rotating shaft located at the top passes through the outer side surface of the protective shell (16) at the corresponding position and is fixedly connected to a rotating block (48).

8. The method for using a multifunctional VR sensor peripheral device according to claim 7, characterized in that: The specific steps include: Step 1: First, separate the two elastic bands (23) so that a circle or an oval is formed between the two elastic bands (23), and then pass the two elastic bands (23) through the head and put them around the neck. If the user is sitting or standing, put the two elastic bands (23) around the chest, and then lift the VR glasses body (1) by hand, and put the straps of the VR glasses body (1) on the user's head; Step 2: The user inserts one end of the hose (35) on one of the pressure balls (36) into one of the connectors (28), and inflates the airbag (24) at the corresponding position by reciprocatingly squeezing the pressure ball (36) until the airbag (24) swells up and comes into close contact with the chest or back, then removes the hose (35) and inserts it into another connector (28), and uses the same method to make the airbag (24) at the corresponding position come into close contact with the chest or back; Step 3: insert one end of the hose (35) into the second connector, and reciprocally squeeze the pressure ball (36) to inflate the two rectangular sleeves (22), and the gas inflated into the rectangular sleeves (22) pushes the rotating plate (21) at the corresponding position out of the rectangular sleeves (22) until the user feels that the VR glasses body (1) is no longer tilted; Step 4: When worn for a long time, the human skin will emit heat, so the lenses in the VR glasses body (1) and the skin around the user's eyes will have water mist and sweat stains. By inserting one end of the two hoses (35) into the connector three (34) at the corresponding position, holding the pressure balls (36) with both hands and squeezing them back and forth, gas is poured into the VR glasses body (1) to mix the cold and hot gases; Step 5: continuously filling the VR glasses body (1) with air, so that the internal air pressure of the VR glasses body (1) increases, so that the blocking ball (15) in the sleeve (141) moves toward the mesh (142), so that the blocking ball (15) is separated from the circular tube (14) at the corresponding position, and the mixed gas in the VR glasses body (1) flows out from the multiple sleeves (141); Step 6: When the user lies on a bed or sofa and uses the VR glasses body (1), the user places the two elastic bands (23) behind the neck, then inserts one of the hoses (35) into the second connector, and inflates the two rectangular sleeves (22) until the user feels that the pressure of the VR glasses body (1) on the face is reduced to a suitable level, then inserts the hose (35) into one of the first connectors (28), and inflates the airbag (24), and then inflates the other airbag (24) in the same way.

Citation Information

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