The present disclosure relates to a technical field of photographic camera devices, and in particular to a photo booth having supporting stage.
Nowadays, with the development of technologies, photography and videography have become popular, shooting images is no longer a luxury, and selfie is more casual. Photo booths are 360-degree rotatable shooting platforms and also called 360Photobooth, which are platforms for 360-degree surround shooting. Compared with ordinary selfie devices, the photo booths provide further entertainment experience.
Stage upper covers are a component of the photo booths for users to stand, and in order to ensure structural strength, the stage upper covers of most of the photo booths are manufactured to be thick and heavy, which results in most of the photo booths being too heavy, therefore being inconvenient to transport and high in cost.
The present disclosure aims to provide a photo booth having a supporting stage to solve the above technical problem for improving a structure of a stage upper cover, thereby solving the technical problems mentioned in the background.
In order to achieve above aims, the present disclosure provides the photo booth having supporting stage, including the supporting stage, a rotatable shooting stand, and a driving assembly. The driving assembly is configured to drive the rotatable shooting stand to circumferentially rotate around the supporting stage. The supporting stage includes an upper cover and a reinforcement frame, and the reinforcement frame is of a divergent configuration from a central portion of the reinforcement frame to an edge of the reinforcement frame.
Furthermore, the upper cover detachably covers the reinforcement frame.
Furthermore, the upper cover covers the reinforcement frame, and the upper cover and the reinforcement frame are integrally formed.
Furthermore, the upper cover covers the reinforcement frame, and the upper cover is welded to the reinforcement frame.
Furthermore, the reinforcement frame includes a supporting ring, and a connecting portion. The supporting ring is generally annular, and the supporting rods and the connecting portion are disposed in a ring of the supporting ring. A first end of each of the supporting rods is connected to an inner wall of the supporting ring, and a second end of each of the supporting rods is connected to the connecting portion.
Furthermore, the supporting rods are uniformly disposed along a circumferential direction of the supporting ring.
Furthermore, the reinforcement frame further includes reinforcement rods, and each of the reinforcement rods is connected to adjacent two of the supporting rods.
Furthermore, the upper cover includes a supporting plate and a ring edge, the ring edge axially extends toward the supporting plate along an outer edge of the supporting plate. Connecting holes are defined on each of outer walls of the ring edge and the supporting ring.
Furthermore, the photo booth having supporting stage further includes a supporting main shaft. the driving assembly includes a driving motor, a driving wheel, a bearing, and a driven wheel. The driving wheel is disposed at a power output end of the driving motor, the bearing is sleeved on an outer wall of the supporting main shaft, and the driven wheel is sleeved on an outer wall of the bearing. The driving wheel is in transmission connection with the driven wheel, and one end of the rotatable shooting stand is connected to an end surface of the driven wheel.
Furthermore, at least three supporting rods and at least three reinforcement rods are provided.
Compared with the prior art, the present disclosure provides the photo booth having the supporting stage, the supporting stage of which provides the upper cover to detachably cover the reinforcement frame. An upper end surface of the upper cover is a table surface for users to stand, the upper cover may be a thin plate having a proper thickness rather than a solid thick plate, and the reinforcement frame serves as a bearing support of the upper cover, which ensures structural strength of the supporting stage, is safe and durable, and further avoids that an overall weight of the photo booth is heavy. Moreover, when reaching a predetermined durability of the upper cover, the upper cover is required to be replaced with a new one, since the upper cover is detachably connected to the reinforcement frame, the upper cover required to be replaced is separated from the reinforcement frame, and a new upper cover is assembled with the reinforcement frame, which provides great convenience for maintenance of the supporting stage, avoids waste of resources, saves energy, and protects environment.
Reference numerals in the drawings: 1. supporting stage; 110. upper cover; 111. supporting plate; 112. ring edge; 120. reinforcement frame; 121. supporting ring; 122. supporting rod; 123. connecting portion; 124. reinforcement rod; 130. connecting hole; 2. rotatable shooting stand; 3. supporting base; 310. supporting main shaft; 311. outer thread; 4. bottom support; 410. inner thread; 5. fixing nut; 6. driving assembly; 610. driving motor; 620. driving wheel; 630. bearing; and 640. driven wheel.
As shown in
The supporting stage 1 includes an upper cover 110 and a reinforcement frame 120, and the reinforcement frame 120 is of a divergent configuration from a central portion of the reinforcement frame 120 to an edge of the reinforcement frame 120.
Such divergent configuration from the central portion of the reinforcement frame 120 to the edge of the reinforcement frame 120 enables the reinforcement frame 120 have good support strength.
The upper cover 110 detachably covers the reinforcement frame 120.
Currently, the 360Photobooths, that is, the 360-degree rotatable shooting platforms, each is usually provided with only one stage for users to stand. The stage is usually a metal plate, if structural strength of the stage is required to be improved, the metal plate is required to be selected as thick and heavy, which is not only high in cost, but also increases an overall weight of the 360Photobooths and is inconvenient for transportation and carrying. However, if the metal plate is a thin plate, although the cost is reduced and the overall weight is decreased, the metal plate may deform after being treaded by users for multiple times, so that a table surface of the stage is uneven, which is not durable and may easily bring use danger for the users. Moreover, the metal plate is usually assembled and connected with the 360 Photobooth through a welding process, so that the metal plate cannot be conveniently disassembled and replaced, which is inconvenient for maintenance of the 360 Photobooths, and when the stage is damaged, the 360 Photobooth is useless.
The present disclosure provides the photo booth having supporting stage, the supporting stage 1 of which provides the upper cover 110 to detachably cover the reinforcement frame 120. An upper end surface of the upper cover 110 is the table surface for the users to stand, the upper cover 110 may be a thin plate having a proper thickness rather than a solid thick plate, and the reinforcement frame 120 serves as a bearing support of the upper cover 110, which ensures structural strength of the supporting stage 1, is safe and durable, and further avoids that an overall weight of the photo booth is heavy. Moreover, when reaching a predetermined durability of the upper cover 110, the upper cover 110 is required to be replaced with a new one, since the upper cover 110 is detachably connected to the reinforcement frame 120, the upper cover 110 required to be replaced is separated from the reinforcement frame 120, and a new upper cover 110 is assembled with the reinforcement frame 120, which provides great convenience for maintenance of the supporting stage 1, avoids waste of resources, saves energy, and protects environment.
The rotatable shooting stand 2 includes two ends. A first end of the rotatable shooting stand 2 is configured to connect and mount shooting devices, which may clamp and support the shooting devices including external devices of mobile phone supports, cameras, light supplementing lamps, etc. A second end of the rotatable shooting stand 2 is connected to the driving assembly 6, the driving assembly 6 drives the rotatable shooting stand 2 to circumferentially rotate around the supporting stage 1.
In some embodiments, the upper cover 110 covers the reinforcement frame 120, and the upper cover 110 and the reinforcement frame 120 are integrally formed.
The upper cover 110 and the reinforcement frame 120 are integrally formed, and may be manufactured and molded in a 3D printing manner or casting manner. Such structure may also avoid the defect caused by that the metal plate serving as the supporting stage 1 is heavy.
In some embodiments, the upper cover 110 covers the reinforcement frame 120, and the upper cover 110 is welded to the reinforcement frame 120.
The upper cover 110 is welded to the reinforcement frame 12, such structure is high in structural strength and reliability.
As shown in
The reinforcement frame 120 includes the supporting ring 121, the supporting rods 122, and the connecting portion 123. In some embodiments, the first end of each of the supporting rods 122 is weld to the inner wall of the supporting ring 121, and the second end of each of the supporting rods 122 is weld to the connecting portion 123. As such, adjacent two of the supporting rods 122, an arc-shaped section of the supporting ring 121, and the connecting portion 123 constitute a structure generally in a shape of sector, and the shape of sector is a structure close to triangle, therefore, the reinforcement frame 120 has stronger structural stability.
As shown in
In some embodiments, six supporting rods 122 are provided
As shown in
In some embodiments, six reinforcement rods 124 are provided.
In some embodiments, each of the reinforcement rods 124 is connected to adjacent two of the supporting rods 122 through welding, so that structural strength and stability of the reinforcement frame 120 are further enhanced.
As shown in
An accommodation area is defined through the supporting plate 111 and the ring edge 112, and the reinforcement frame 120 is accommodated in the accommodation area. The screws penetrate through the connecting holes on each of the outer walls of the ring edge 112 and the supporting ring 121, and assembly and disassembly between the upper cover 110 and the reinforcement frame 12 are achieved through screwing the screws, therefore providing great convenience for maintenance of the supporting stage 1.
As shown in
In some embodiments, the bottom support 4 may be provided with inner threads 410 for being in threaded connection with the outer threads of the supporting main shaft 310. The bottom support 4 and the reinforcement frame 120 may be in screw connection or welding connection.
In some embodiments, the connecting portion 123 is generally a hollow cylinder, and an end portion of each of the supporting rods is connected two an outer wall of the hollow cylinder.
The photo booth having the supporting stage further includes a supporting main shaft 310. The driving assembly 6 includes a driving motor 610, a driving wheel 620, a bearing 630, and a driven wheel 640. The driving wheel 620 is disposed at a power output end of the driving motor 610, the bearing 630 is sleeved on an outer wall of the supporting main shaft 310, and the driven wheel 640 is sleeved on an outer wall of the bearing 620. The driving wheel 620 is in transmission connection with the driven wheel 640, and one end of the rotatable shooting stand 2 is connected to an end surface of the driven wheel 640.
In some embodiments, the driving wheel 620 and the driven wheel 640 are all gears, the driving wheel 620 and the driven wheel 640 are engaged with each other, and the driving motor 610 drives the driving wheel 620 to rotate to drive the driven wheel 640 to rotate. Since the one end of the rotatable shooting stand 2 is connected to the end surface of the driven wheel 640, the rotatable shooting stand 2 rotates surrounding the supporting main shaft 310 along with the driven wheel 640. As an improvement, the supporting main shaft 310 is disposed at a center below the supporting stage 310. The bearing 130 plays a role in providing good connection between the driven wheel 640 and the supporting main shaft 310, and further providing smooth rotation for the driven wheel 640 to reduce a friction coefficient.
In some embodiment, the driving wheel 620 and the driven wheel 640 may also be wheels having conveyor belts, and the driving wheel 620 is in transmission connection with the driven wheel 640 through the conveyor belts.
Furthermore, at least three supporting rods 122 and at least three reinforcement rods 142 are provided.
Number | Date | Country | Kind |
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202122947239.8 | Nov 2022 | CN | national |
Number | Date | Country | |
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Parent | 18070599 | Nov 2022 | US |
Child | 18506239 | US |