Multifunctional explosion-proof holder all-in-one machine
By designing explosion-proof boxes, threaded rod clamps, buffer components and elastic components on the PTZ camera, the problem of single protection of anti-collision balls at corners is solved, and all-round equipment protection and sealing are achieved, ensuring monitoring stability and extending equipment life.
Patent Information
- Application Number
- CN202422887714.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-11-26
AI Technical Summary
In the existing technology, the anti-collision balls at the corners are relatively simple and can only provide local support and cushioning. They cannot cover the entire device or other parts of the structure, and cannot be sealed, resulting in the equipment being easily damaged and pollutants such as dust and water vapor entering, reducing the stability and service life of the equipment.
A multifunctional explosion-proof PTZ camera is designed. It uses an explosion-proof box to cover all sides and corners of the PTZ camera. It combines threaded rod clamps, buffer components and elastic components to provide all-round protection, and is sealed by the box cover to prevent contaminants from entering.
It effectively resists impacts and collisions from all directions, ensures the stability and clarity of the monitoring images, extends the life of the equipment, prevents dust and water vapor from entering, and improves the stability and explosion-proof effect of the equipment.
Smart Images

Figure CN223447555U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the gimbal all -in -one technical field, concretely relates to a multi -functional anti -explosion gimbal all -in -one. BACKGROUND
[0002] The gimbal all-in-one is a device integrating a gimbal and a camera, having the characteristics of multi-directional monitoring, automatic cruising, remote control, high-resolution imaging, night vision, etc., and is widely used in the fields of security monitoring, unmanned aerial vehicles, robots, etc.
[0003] In the application number 202120253800.X discloses a kind of multi-functional anti-explosion gimbals all-in-one, "by being equipped with bumper ball at camera corner, solve the problem that gimbal is fragile and easily damaged;By setting up cell phone holder, can enlarge gimbal picture to facilitate observation", in the above-mentioned, bumper ball is installed at the corner of gimbal camera, which means that bumper ball can only protect specific angle.Because the bumper ball at the corner is relatively single, only partial support and buffer can be provided, and other parts of the entire device or structure cannot be covered.In addition, the bumper ball does not have sealing function, and cannot provide effective protection to the internal equipment.In this case, when the equipment is impacted, it is easy to be damaged.For example, in some more complex environment, there may be impact force from different directions, and only installing bumper ball at the corner cannot comprehensively protect gimbal camera.If the equipment is impacted from the side, the area without bumper ball protection will directly bear the impact, increasing the risk of equipment damage.Moreover, since the bumper ball cannot be sealed, dust, water vapor, etc.may enter the internal equipment, causing damage to the electronic components of gimbal camera, further reducing the stability and service life of the equipment. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing a kind of multi-functional anti-explosion gimbal all-in-one to solve the problem that bumper ball at the corner is relatively single in the above-mentioned background art, only partial support and buffer can be provided, and other parts of the entire device or structure cannot be covered.
[0005] In order to achieve the above object, the utility model provides the following technical scheme: A multifunctional anti -explosion holder all -in -one, include: holder camera, anti -explosion box and support, be equipped with the lid of movable joint on the anti -explosion box, the holder camera is placed in the anti -explosion box, the lateral wall of anti -explosion box is equipped with screw groove, be equipped with the screw rod that rotates and passes in the screw groove, the one end of screw rod near holder camera is installed with the clamping plate, the one end of screw rod located anti -explosion box outside is installed with the screw block, be equipped with protection subassembly on the screw block, be equipped with buffer subassembly on the inner wall of anti -explosion box, be equipped with a plurality of elastic components on the outer wall of anti -explosion box, the support is connected with anti -explosion box, the lid is convenient to open and close anti -explosion box, make in the equipment use, do not cause the shade of holder camera's lens, when idle, protect the holder camera in, make the anti -explosion box have good sealing performance, can effectively prevent dust, water vapor and other pollutants enter inside, protect the holder camera from environmental factors.
[0006] Preferably, the screw groove has a plurality of screw grooves, which are respectively arranged at the two ends of the side wall, the top end and the rear wall of the anti-explosion box.
[0007] The protection assembly comprises a connecting barrel, a first protection plate and a first spring, a first mounting groove is arranged on the side wall of the screw block, the connecting barrel is partially arranged in the first mounting groove, the first protection plate is arranged at one end of the connecting barrel outside the first mounting groove, and the first spring is arranged between the first mounting groove and the connecting barrel.
[0008] Through the above technical scheme:
[0009] In use, the gimbal camera is placed inside the explosion-proof box, then each rotating block is rotated, and through the interaction between the threaded rods and the threaded grooves, each clamping plate moves until it adheres to the outer wall of the gimbal camera, clamping the gimbal camera. This can provide uniform and stable clamping force, ensuring that the gimbal camera does not shift or shake inside the explosion-proof box, thereby ensuring the stability and clarity of the monitoring picture. Moreover, the movement and adhesion design of the clamping plate allows it to adapt to gimbal cameras of different sizes and shapes, providing a flexible clamping method. The explosion-proof box design covers all sides and corners of the gimbal camera, effectively resisting impact and collision from all directions, providing comprehensive protection for the gimbal camera, not just the corners. Since the threaded end of the threaded rod is located outside the explosion-proof box, when the rotating block is impacted, the first protective plate on it resists the impact, preventing the rotating block from breaking or falling off due to impact. Then, the first spring deforms, and this deformation can extend the action time of the impact force, thereby reducing the instantaneous impact force peak. The deformation process of the first spring can effectively convert the impact force into the elastic potential energy of the first spring, reducing the direct impact on the threaded rod and effectively reducing the risk of impact force being transmitted to the gimbal camera, protecting the gimbal camera from damage and ensuring its normal operation.
[0010] Preferably, the buffer assembly includes an air bag, a gas guide pipe, and a hand squeeze air cylinder, the air bag is installed on the inner wall of the explosion-proof box, the gas guide pipe is connected to the air bag, and the hand squeeze air cylinder is installed on the gas guide pipe and located outside the explosion-proof box.
[0011] Through the above technical solutions:
[0012] In use, after the gimbal camera is clamped and fixed inside the explosion-proof box, the hand squeeze air cylinder is pressed, the hand squeeze air cylinder fills gas into the air bag through the gas guide pipe, causing the air bag to adhere to the outer wall of the gimbal camera. The air bag can further provide uniform clamping force to ensure that the gimbal camera is stable and does not shake inside the explosion-proof box. Moreover, the air bag can absorb external impact and vibration through its elastic deformation, acting on the inner wall of the explosion-proof box to protect the gimbal camera housing, reduce physical damage to the gimbal camera, and ensure stable operation of the gimbal camera in various complex and dangerous environments, meeting the monitoring needs of different scenes and environments.
[0013] Preferably, the elastic assembly includes a second protective plate, a soft pad, and a second spring, a plurality of second installation grooves are formed on the outer wall of the explosion-proof box, a plurality of second protective plates are partially located in the plurality of second installation grooves, respectively, the soft pad is installed on the outer wall of the second protective plate, and the second spring is connected between the second protective plate and the second installation groove.
[0014] Through the above technical solutions:
[0015] In use, the plurality of elastic components are wrapped around the outer wall of the explosion-proof box. When the side walls, top end and rear wall of the explosion-proof box are subjected to external impact force, the impact force is shared by the plurality of elastic components, so that the stress borne by each elastic component is reduced. This reduces the risk of damage to individual elastic components due to overloading, thereby prolonging the service life of the elastic components and improving the stability of the overall structure. Moreover, the plurality of elastic components work together to improve the stability and strength of the overall structure, enabling it to better resist external impact and vibration. When the elastic components are subjected to impact force, the impact force first acts on the soft pad and the second protective plate. The soft pad undergoes elastic deformation, which effectively prolongs the action time of the impact force, thereby reducing the peak value of the instantaneous impact force. The second protective plate drives the second spring, causing the second spring to undergo elastic deformation. The second spring undergoes compression or stretching deformation when subjected to impact, storing part of the impact energy and releasing this energy after the impact ends. At the same time, the second spring can quickly recover to its original state after deformation, providing sustained cushioning capability. This feature enables the second spring to maintain good cushioning effect under multiple impacts. The synergistic effect of the soft pad and the second spring provides a highly efficient multi-level cushioning mechanism that can effectively absorb and disperse impact force, reduce the peak value and action time of the impact force, prolong the service life, and adapt to different impact conditions. The elastic components prevent direct impact from being transmitted to the outer wall of the explosion-proof box, thereby protecting the gimbal camera inside from physical damage, and this design also improves the overall explosion-proof effect of the equipment.
[0016] Preferably, the support supports the explosion-proof box, and the support can adjust the horizontal and pitch angles of the explosion-proof box.
[0017] Specifically, the adjustment function of the support allows users to adjust the angle of the explosion-proof box according to actual needs, so that the gimbal camera can adapt to different monitoring scenes and targets, can expand the field of view of the monitoring equipment, reduce the monitoring blind area, and improve the overall monitoring efficiency.
[0018] Compared with the prior art, the utility model has the advantages of:
[0019] (1) The utility model discloses a protection device for a gimbal camera, which comprises an explosion-proof box and a support, wherein the explosion-proof box is arranged on the support and comprises a box body and a box cover.
[0020] (2) The utility model discloses a buffer assembly is set up to the inner wall of the explosion -proof box is protected, when using, hand pinches formula air cylinder fills into the gas in the gasbag through the gas pipeline, makes the gasbag adhere to the outer wall of the holder camera, ensures that the holder camera is steady and does not shake in the explosion -proof box, and the gasbag can absorb external impact and vibration through the elastic deformation of itself, and the inner wall of the explosion -proof box is acted on, and the holder camera shell is protected.
[0021] (3) The utility model discloses an elastic assembly is set up to the outer wall of the explosion -proof box is protected, when using, the impact force can be shared by multiple elastic assemblies, and the elastic assembly is impacted, and the impact force makes the soft pad and second spring occur elastic deformation, can effectively absorb and disperse the impact force, reduce the peak value and action time of impact force, avoid direct impact transmission to the outer wall of the explosion -proof box to protect the holder camera in the inside from physical damage. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is the structure schematic drawing of the utility model;
[0023] Figure 2 It is the structure schematic drawing of the explosion -proof box of the utility model;
[0024] Figure 3 It is the sectional view of the explosion -proof box of the utility model;
[0025] Figure 4 It is the structure schematic drawing of the buffer assembly of the utility model;
[0026] Figure 5 It is the structure schematic drawing of the elastic assembly of the utility model;
[0027] Figure 6 It is the structure schematic drawing of the thread groove of the utility model;
[0028] Figure 7 It is the structure schematic drawing of the protection assembly of the utility model;
[0029] Figure 8 It is the structure schematic drawing of the second installation slot of the utility model;
[0030] In the drawing: 1, holder camera;2, explosion -proof box;3, box cover;4, thread groove;5, threaded rod;6, clamping plate;7, screw block;8, first installation slot;9, connecting cylinder;10, first protection plate;11, first spring;12, gasbag;13, gas pipeline;14, hand pinches formula air cylinder;15, second installation slot;16, second protection plate;17, soft pad;18, second spring;19, support. DETAILED DESCRIPTION
[0031] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described, obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0032] Please refer to Figures 1-7 The utility model provides the following technical scheme: a multifunctional anti -explosion holder all -in -one, include: holder camera 1, explosion -proof box 2 and support 19, be equipped with the movable joint box cover 3 on explosion -proof box 2, holder camera 1 is placed in explosion -proof box 2, the lateral wall on explosion -proof box 2 is equipped with screw groove 4, be equipped with screw rod 5 that rotates through in screw groove 4, the one end of screw rod 5 close to holder camera 1 is installed with clamping plate 6, the one end of screw rod 5 located explosion -proof box 2 outside is installed with screw block 7, be equipped with protection subassembly on screw block 7, be equipped with buffer subassembly on the inner wall of explosion -proof box 2, be equipped with a plurality of elastic components on the outer wall of explosion -proof box 2, support 19 is connected with explosion -proof box 2, box cover 3 is convenient for open and close explosion -proof box 2, make in equipment use, do not cause the shade of holder camera 1's lens, in idle, protect the holder camera 1 in, make explosion -proof box 2 have good sealing performance, can effectively prevent dust, water vapor and other pollutants enter inside, protect holder camera 1 from environmental factors.
[0033] Further, the screw groove 4 has a plurality of screw grooves 4, which are respectively arranged at the two ends of the side wall, the top end and the rear wall of the explosion-proof box 2;
[0034] The protection assembly comprises a connecting barrel 9, a first protection plate 10 and a first spring 11, a first mounting groove 8 is arranged on the side wall of the screw block 7, the connecting barrel 9 is partially located in the first mounting groove 8, the first protection plate 10 is installed at one end of the connecting barrel 9 outside the first mounting groove 8, and the first spring 11 is installed between the first mounting groove 8 and the connecting barrel 9.
[0035] Through the above technical scheme:
[0036] In use, the pan-tilt camera 1 is placed inside the explosion-proof box 2, then each knob 7 is turned to move each clamping plate 6 through the interaction of the threaded rod 5 and the threaded groove 4, until each clamping plate 6 fits the outer wall of the pan-tilt camera 1 to clamp it. This can provide uniform and stable clamping force, ensuring that the pan-tilt camera 1 does not shift or shake inside the explosion-proof box 2, thereby ensuring the stability and clarity of the monitoring image. Moreover, the movement and fitting design of the clamping plate 6 allows it to adapt to pan-tilt cameras 1 of different sizes and shapes, providing a flexible clamping method. The design of the explosion-proof box 2 covers all sides and corners of the pan-tilt camera 1, effectively resisting impact and collision from all directions, providing comprehensive protection for the pan-tilt camera 1, not just the corners. Since the threaded end of the threaded rod 5 is located outside the explosion-proof box 2, when the knob 7 is impacted, the first protective plate 10 on it resists the impact force, preventing the knob 7 from breaking or falling off due to impact. Then, the first spring 11 deforms, and this deformation can prolong the action time of the impact force, thereby reducing the instantaneous impact force peak. The deformation process of the first spring 11 can effectively convert the impact force into the elastic potential energy of the first spring 11, reducing the direct impact on the threaded rod 5 and effectively reducing the risk of impact force being transmitted to the pan-tilt camera 1, protecting the pan-tilt camera 1 from damage and ensuring its normal operation.
[0037] Referring to Figures 1-4 As shown, the buffer assembly includes an air bag 12, a gas guide pipe 13, and a hand squeeze air cylinder 14. The air bag 12 is installed on the inner wall of the explosion-proof box 2, the gas guide pipe 13 is connected to the air bag 12, and the hand squeeze air cylinder 14 is installed on the gas guide pipe 13 and located outside the explosion-proof box 2.
[0038] Through the above technical solution:
[0039] In use, after the pan-tilt camera 1 is clamped and fixed inside the explosion-proof box 2, the hand squeeze air cylinder 14 is pressed to fill gas into the air bag 12 through the gas guide pipe 13, causing the air bag 12 to fit the outer wall of the pan-tilt camera 1. The air bag 12 can further provide uniform clamping force to ensure that the pan-tilt camera 1 is stable and does not shake inside the explosion-proof box 2. Moreover, the air bag 12 can absorb external impact and vibration through its elastic deformation, acting on the inner wall of the explosion-proof box 2 to protect the pan-tilt camera 1 shell, reduce physical damage to the pan-tilt camera 1, and ensure stable operation of the pan-tilt camera 1 in various complex and dangerous environments, meeting the monitoring needs of different scenes and environments.
[0040] Referring to Figures 1-8As shown, the elastic assembly includes a second protective plate 16, a soft pad 17, and a second spring 18. The outer wall of the explosion-proof box 2 is provided with a plurality of second mounting grooves 15, and the plurality of second protective plates 16 are partially located in the plurality of second mounting grooves 15, respectively. The soft pad 17 is installed on the outer wall of the second protective plate 16, and the second spring 18 is connected between the second protective plate 16 and the second mounting groove 15.
[0041] Through the above technical solutions:
[0042] In use, the plurality of elastic assemblies are wrapped around the outer wall of the explosion-proof box 2. When the side walls, top end, and rear wall of the explosion-proof box 2 are subjected to external impact forces, the impact forces are shared by the plurality of elastic assemblies, reducing the stress on each elastic assembly. This reduces the risk of individual elastic assemblies being damaged by overloading, thereby extending the service life of the elastic assemblies and improving the stability of the overall structure. Moreover, the plurality of elastic assemblies work together to improve the stability and strength of the overall structure, enabling it to better resist external impacts and vibrations. When the elastic assembly is subjected to an impact force, the impact force first acts on the soft pad 17 and the second protective plate 16. The soft pad 17 undergoes elastic deformation, which effectively extends the action time of the impact force, thereby reducing the peak value of the instantaneous impact force. The second protective plate 16 compresses the second spring 18, causing the second spring 18 to undergo elastic deformation. The second spring 18 undergoes compression or stretching deformation when subjected to an impact, storing part of the impact energy and releasing this energy after the impact ends. At the same time, the second spring 18 can quickly recover to its original state after deformation, providing sustained cushioning capability. This feature enables the second spring 18 to maintain good cushioning effect even after multiple impacts. The synergistic effect of the soft pad 17 and the second spring 18 provides an efficient multi-level cushioning mechanism that can effectively absorb and disperse impact forces, reduce the peak value and action time of the impact force, extend the service life, and adapt to different impact conditions. The elastic assembly avoids direct impact transmission to the outer wall of the explosion-proof box 2, thereby protecting the gimbal camera 1 inside from physical damage, and this design also improves the overall explosion-proof effect of the equipment.
[0043] Further, please refer to Figure 1 As shown, the support 19 supports the explosion-proof box 2, and the support 19 can adjust the horizontal and pitch angles of the explosion-proof box 2.
[0044] Specifically, the adjustment function of the support 19 allows users to adjust the angle of the explosion-proof box 2 according to actual needs, so that the gimbal camera 1 can adapt to different monitoring scenes and targets, which can expand the field of view of the monitoring equipment, reduce the monitoring blind area, and improve the overall monitoring efficiency.
[0045] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A multifunctional explosion-proof PTZ integrated machine, characterized in that: include: A pan-tilt camera (1), an explosion-proof box (2) and a bracket (19), wherein the explosion-proof box (2) is provided with a movably connected box cover (3), the pan-tilt camera (1) is placed in the explosion-proof box (2), a threaded groove (4) is provided on the side wall of the explosion-proof box (2), a threaded rod (5) is provided in the threaded groove (4) and is screwed through, a clamping plate (6) is installed at one end of the threaded rod (5) close to the pan-tilt camera (1), a screw block (7) is installed at one end of the threaded rod (5) located outside the explosion-proof box (2), a protective component is provided on the screw block (7), a buffer component is provided on the inner wall of the explosion-proof box (2), and a plurality of elastic components are provided on the outer wall of the explosion-proof box (2), and the bracket (19) is connected to the explosion-proof box (2).
2. The multifunctional explosion-proof PTZ integrated machine according to claim 1, characterized in that: There are a plurality of thread grooves (4), and these thread grooves (4) are respectively opened at both ends, the top end and the rear wall of the side wall of the explosion-proof box (2).
3. The multifunctional explosion-proof PTZ integrated machine according to claim 2, characterized in that: The protection assembly comprises a connecting tube (9), a first protection plate (10) and a first spring (11); a first mounting groove (8) is provided on the side wall of the screw block (7); a portion of the connecting tube (9) is located in the first mounting groove (8); the first protection plate (10) is installed at one end of the connecting tube (9) located outside the first mounting groove (8); and the first spring (11) is installed between the first mounting groove (8) and the connecting tube (9).
4. The multifunctional explosion-proof PTZ integrated machine according to claim 1, characterized in that: The buffer assembly comprises an air bag (12), an air guide pipe (13) and a hand-kneaded air cylinder (14); the air bag (12) is mounted on the inner wall of the explosion-proof box (2); the air guide pipe (13) is connected to the air bag (12); the hand-kneaded air cylinder (14) is mounted on the air guide pipe (13), and the hand-kneaded air cylinder (14) is located outside the explosion-proof box (2).
5. The multifunctional explosion-proof PTZ integrated machine according to claim 1, characterized in that: The elastic component includes a second protective plate (16), a soft pad (17) and a second spring (18). A plurality of second mounting grooves (15) are provided on the outer wall of the explosion-proof box (2). The plurality of second protective plates (16) are partially located in the plurality of second mounting grooves (15). The soft pad (17) is installed on the outer wall of the second protective plate (16). The second spring (18) is connected between the second protective plate (16) and the second mounting groove (15).
6. The multifunctional explosion-proof PTZ integrated machine according to claim 1, characterized in that: The bracket (19) supports the explosion-proof box (2), and the bracket (19) can adjust the horizontal and pitch angles of the explosion-proof box (2).
Citation Information
Patent Citations
Multifunctional explosion-proof holder all-in-one machine
CN215111421U