CN218772164U - From rapping bar - Google Patents

From rapping bar Download PDF

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Publication number
CN218772164U
CN218772164U CN202222987862.0U CN202222987862U CN218772164U CN 218772164 U CN218772164 U CN 218772164U CN 202222987862 U CN202222987862 U CN 202222987862U CN 218772164 U CN218772164 U CN 218772164U
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telescopic rod
assembly
clamping
component
pipe
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CN202222987862.0U
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Chinese (zh)
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马巧梅
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Individual
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Individual
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Abstract

The utility model discloses a selfie stick, which comprises a clamping component, an adjusting component, a telescopic rod component and a tripod component, wherein the clamping component is movably arranged at the upper end of the telescopic rod component through the adjusting component, the adjusting component can be accommodated in the telescopic rod component, the tripod component is arranged at the lower end of the telescopic rod component, the adjusting component comprises a transverse rotating platform and a longitudinal rotating component, and the transverse rotating platform is rotatably connected with the clamping component so as to ensure that the clamping component can rotate 360 degrees in the horizontal direction; the longitudinal rotating piece is fixedly arranged at the bottom of the transverse rotating platform and is rotationally connected with the telescopic rod assembly, so that the clamping assembly can rotate 180 degrees in the vertical direction. In this way, the utility model provides a from rapping bar has multiple auto heterodyne mode can freely switch over the function, and can carry out the regulation of multi-direction and multi-angle when shooing, improves and shoots the effect, has realized wholly accomodating simultaneously, wholly accomodates the back and form a cylinder structure, and occupation space is little, conveniently carries, and the appearance is pleasing to the eye.

Description

From rapping bar
Technical Field
The utility model relates to a technical field of shooting instrument, concretely relates to from rapping bar.
Background
Along with the increasing of people's standard of living and the development of electronic product leap and bounds, the cell-phone is shooing by the wide application in more and more life scenes, from rapping bar as the convenient instrument of people's record bit life, uses more and more extensively, from rapping bar on the market at present, the majority is with telescopic link, centre gripping subassembly as the core, and the cell-phone passes through the resilient means on the centre gripping subassembly and fixes on the centre gripping subassembly.
But among the prior art from rapping bar's centre gripping subassembly needs the structure of great volume usually can realize 360 rotation and the regulation of multi-angle, and step is loaded down with trivial details during the use, also is simple when accomodating and places at the top of telescopic link, if need wholly accomodate and add and accomodate the groove, and accomodate the groove and also need great volume to hold the centre gripping subassembly for from rapping bar's whole volume increase, be not convenient for use and carry.
SUMMERY OF THE UTILITY MODEL
To the above-mentioned at least one problem that exists, this disclosed aim at provides one kind from rapping bar, overcomes to have and wholly accomodates the back bulky from rapping bar now, the loaded down with trivial details problem of step during centre gripping subassembly angle regulation.
To achieve the above object, the present disclosure provides a self-timer stick, comprising a clamping assembly, an adjusting assembly, a telescopic rod assembly and a tripod assembly, wherein the clamping assembly is movably arranged at the upper end of the telescopic rod assembly through the adjusting assembly, the adjusting assembly can be accommodated in the telescopic rod assembly, the tripod assembly is arranged at the lower end of the telescopic rod assembly,
the adjusting assembly comprises a transverse rotating table and a longitudinal rotating piece, and the transverse rotating table is rotatably connected with the clamping assembly so that the clamping assembly can rotate by 360 degrees in the horizontal direction; the longitudinal rotating piece is fixedly arranged at the bottom of the transverse rotating platform and is rotationally connected with the telescopic rod assembly, so that the clamping assembly can rotate 180 degrees in the vertical direction.
Optionally, the centre gripping subassembly includes clamping part, lower clamping part and grip block, it sets up to go up the horizontally fixed up of clamping part the up end of grip block, the inboard vertical notch that is provided with rectangular shape of grip block, one side of clamping part be provided with down with the corresponding slider of notch, the clamping part is used through the cooperation down the slider with the notch activity sets up the inboard of grip block, with relative the grip block slides from top to bottom.
Optionally, the telescopic link subassembly is including accomodating pipe and telescopic link, it is hollow cylinder structure to accomodate the pipe, the telescopic link comprises two sections at least telescopic pipe fittings, including maximum diameter end pipe fitting and minimum diameter end pipe fitting, minimum diameter end pipe fitting can accomodate in inside the maximum diameter end pipe fitting, the telescopic link sets up perpendicularly central point in accomodating puts and scalable extension to accomodate the upper and lower both ends of pipe, the minimum diameter end pipe fitting at telescopic link top with vertical rotating member rotates and connects.
Optionally, the upper clamping part is of a circular structure and corresponds to the opening at the upper end of the accommodating pipe; the height of the clamping wall is smaller than that of the accommodating pipe, the clamping wall can be accommodated in the accommodating pipe and is positioned at a side gap position between the accommodating pipe and the pipe fitting at the maximum diameter end of the telescopic rod.
Optionally, the plane sizes of the upper clamping portion, the lower clamping portion, the transverse rotating table and the longitudinal rotating member are sequentially reduced from top to bottom, and the lower clamping portion is accommodated in the accommodating tube and located at a gap position at the top of the pipe fitting at the maximum diameter end of the telescopic rod; the transverse rotating table and the longitudinal rotating piece can be both contained in the pipe fitting at the end with the largest diameter of the telescopic rod and are positioned at the position of a gap at the top of the pipe fitting at the end with the smallest diameter of the telescopic rod.
Optionally, the tripod subassembly includes support, position circle, connecting rod and button, the position circle is fixed the bottom and the suit of accomodating the pipe are in the outside of telescopic link, and is a plurality of the upper portion of support respectively with the outside of position circle is embedded mutually and forms the rotation and is connected, each the inboard middle part of support still passes through the connecting rod with the lower part of telescopic link is connected, the button is installed the bottom of telescopic link.
Optionally, when the button is not pressed, the tripod component is in a closed state; when the button is pressed, the tripod component is in an open state.
Optionally, when the tripod assembly is in a closed state, each of the brackets forms a hollow cylindrical structure, and the diameter of the hollow cylindrical structure is equal to that of the positioning ring and/or the accommodating pipe.
Optionally, the number of the brackets is at least three, and the number of the connecting rods corresponds to the number of the brackets.
Optionally, a telescopic supporting leg assembly is further arranged in each support, the supporting leg assembly comprises a connecting pipe and a supporting block, and the connecting pipe is symmetrically arranged at the upper end of the supporting block; a hollow mounting pipe for accommodating the connecting pipe is arranged on the inner wall of each bracket; the bottom of each support is provided with a hollow-out mounting groove for accommodating the supporting block.
The beneficial effects of this disclosure are: the utility model provides a from rapping bar, the centre gripping subassembly can carry out multi-direction and multi-angle regulation through adjusting part, but make the centre gripping subassembly 360 rotations on the horizontal direction through horizontal revolving stage, but make the centre gripping subassembly 180 rotations on the vertical direction through vertical rotation piece, and horizontal revolving stage and vertical rotation piece volume are all less, and adjusting part can be accomodate inside telescopic link subassembly, convenient whole accomodating, and operation steps is simple simultaneously, convenient to use.
Drawings
The accompanying drawings, which are included to provide a further understanding of the disclosure and are incorporated in and constitute a part of this specification, illustrate exemplary embodiments of the disclosure and together with the description serve to explain the principles of the disclosure.
FIG. 1 is a schematic view showing the structure of a selfie stick in a fully opened state;
FIG. 2 is an enlarged view of a portion of FIG. 1 at A;
FIG. 3 is a schematic structural view of the clamping assembly and the foot assembly of FIG. 1 in a closed position;
FIG. 4 is a schematic structural diagram of a handheld self-timer mode;
FIG. 5 is a schematic view of a remote self-timer positioning frame mode;
FIG. 6 is a schematic view of the structure of the self-stick in the overall closed storage state;
FIG. 7 is a cross-sectional view of the upper portion of FIG. 6;
the labels in the figures are:
1. a clamping assembly; 101. an upper clamping portion; 102. a lower clamping portion; 103. a clamping wall; 104. a notch; 105. a slider;
2. an adjustment assembly; 201. a transverse rotation table 202, a longitudinal rotation member;
3. a telescopic rod assembly; 301. receiving a tube; 302. a telescopic rod; 3021. a maximum diameter end pipe fitting; 3022. a minimum diameter end pipe fitting;
4. a tripod assembly; 401. a support; 402. positioning a ring; 403. a connecting rod; 404. a button;
5. a support leg assembly; 501. a connecting pipe; 502. a support block; 503. a hollow mounting tube; 504. a hollow-out mounting groove;
6. bluetooth remote controller.
Detailed Description
The present disclosure is described in further detail below with reference to the figures and examples. It is to be understood that the specific embodiments described herein are merely illustrative of the relevant disclosure and not restrictive of the disclosure. It should be further noted that, for the convenience of description, only the portions relevant to the present disclosure are shown in the drawings.
It should be noted that, in the present disclosure, the embodiments and features of the embodiments may be combined with each other without conflict. Referring to fig. 1 to 7, the present disclosure will be described in detail with reference to the accompanying drawings, in which the embodiments include:
the utility model provides a self-timer rod, includes centre gripping subassembly 1, adjusting part 2, telescopic link assembly 3 and tripod subassembly 4, and centre gripping subassembly 1 passes through adjusting part 2 activity setting in telescopic link assembly 3's upper end, and adjusting part 2 can accomodate inside telescopic link assembly 3, and tripod subassembly 4 sets up the lower extreme at telescopic link assembly 3. Come to carry out the centre gripping to shooting equipment such as cell-phones through centre gripping subassembly 1 and fix, come to realize carrying out multi-direction and multi-angle's regulation to holding the subassembly with adding through adjusting part 2, adjust the height of centre gripping subassembly 1 and be used for accomodating centre gripping subassembly 1 and adjusting part 2 through telescopic link assembly 3, come fixed whole position from rapping bar through tripod subassembly 4.
The concrete structure is as follows:
the clamping assembly 1 comprises an upper clamping portion 101, a lower clamping portion 102 and a clamping wall 103, wherein the upper clamping portion 101 is horizontally and fixedly arranged on the upper end face of the clamping wall 103, a long-strip-shaped notch 104 is vertically arranged on the inner side of the clamping wall 103, a sliding block 105 corresponding to the notch 104 is arranged on one side of the lower clamping portion 102, and the lower clamping portion 102 is movably arranged on the inner side of the clamping wall 103 through the sliding block 105 and the notch 104 which are matched with each other to slide up and down relative to the clamping wall 103.
When the lower clamping part 102 slides to the position below the upper clamping part 101, the clamping assembly 1 is in a closed state; after the lower clamping portion 102 slides down a distance away from the upper clamping portion 101, the clamping assembly 1 is in an open state, and the sliding block 105 is limited in the notch 104 by a limiting manner conventional in the art, so as to prevent the lower clamping portion 102 from moving out of the bottom of the clamping wall 103, thereby forming an up-and-down sliding effect. The shooting equipment such as mobile phones with different sizes is clamped by the fixed upper clamping part 101 and the lower clamping part 102 which slides up and down.
The adjusting assembly 2 comprises a transverse rotating platform 201 and a longitudinal rotating member 202, the transverse rotating platform 201 is rotatably connected with the clamping assembly 1, so that the clamping assembly 1 can rotate 360 degrees in the horizontal direction, and damping components such as a gear ring and the like are arranged in the transverse rotating platform 201, so that the gear feeling during rotation can be increased; the longitudinal rotating member 202 is fixedly arranged at the bottom of the transverse rotating platform 201 and is rotatably connected with the telescopic rod assembly 3, so that the clamping assembly 1 can rotate 180 degrees in the vertical direction, multi-direction and multi-angle adjustment of shooting equipment such as a mobile phone can be realized, the operation steps are simple, and the use is convenient.
The telescopic rod assembly 3 comprises a containing pipe 301 and a telescopic rod 302, the containing pipe 301 is a hollow cylindrical structure, the telescopic rod 302 is composed of at least two sections of telescopic pipe fittings, the telescopic rod comprises a maximum diameter end pipe fitting 3021 and a minimum diameter end pipe fitting 3022, and the minimum diameter end pipe fitting 3022 can be contained inside the maximum diameter end pipe fitting 3021. The telescopic rod 302 is vertically arranged at the center position in the accommodating pipe 301 and can extend to the upper end and the lower end of the accommodating pipe 301 in a telescopic manner, the pipe 3022 at the minimum diameter end of the top of the telescopic rod 302 is rotatably connected with the longitudinal rotating member 202, and the height of the telescopic rod 302 can be adjusted to adjust the use height of shooting equipment such as a mobile phone.
The upper clamping part 101 is in a circular structure and corresponds to an opening at the upper end of the accommodating pipe 301; the holding wall 103 has a height smaller than that of the accommodating pipe 301, is accommodated inside the accommodating pipe 301, and is located at a side gap between the accommodating pipe 301 and the maximum diameter end pipe 3021 of the telescopic rod 302. The plane sizes of the upper clamping part 101, the lower clamping part 102, the transverse rotating platform 201 and the longitudinal rotating piece 202 are reduced from top to bottom in sequence, and the lower clamping part 102 is accommodated in the accommodating pipe 301 and is positioned at the position of a gap at the top of the pipe 3021 at the maximum diameter end of the telescopic rod 302; the traverse table 201 and the longitudinal rotating member 202 are both received inside the maximum diameter end pipe 3021 of the telescopic rod 302 and are located at the gap position of the top of the minimum diameter end pipe 3022 of the telescopic rod 302.
The adjusting assembly 2 is accommodated in the maximum diameter end pipe 3021 of the telescopic rod 302, the lower clamping portion 102 and the clamping wall 103 of the clamping assembly 1 are accommodated in the accommodating pipe 301, that is, the whole clamping assembly 1 except the upper clamping portion 101 has a smaller overall transverse width than the diameter of the accommodating pipe 301, all the components on the upper portion of the accommodating pipe 301 except the upper clamping portion 101 can be accommodated, so that the accommodated volume is reduced, and the upper clamping portion 101 forms an upper cover of the accommodating pipe 301, and the appearance is attractive.
The tripod component 4 comprises supports 401, a positioning ring 402, a connecting rod 403 and a button 404, wherein the positioning ring 402 is fixed at the bottom of the accommodating pipe 301 and sleeved outside the telescopic rod 302, the diameter of the positioning ring 402 is equal to that of the accommodating pipe 301, the upper parts of the supports 401 are embedded in the outer part of the positioning ring 402 respectively and form a rotating connection, the middle part of the inner side of each support 401 is connected with the lower part of the telescopic rod 302 through the connecting rod 403, and the button 404 is arranged at the middle position of the bottom of the telescopic rod 302. In this embodiment, the number of the brackets 401 is at least three, and the number of the brackets can be set as required, and the number of the connecting rods 403 corresponds to the number of the brackets 401.
When the button 404 is not pressed, the tripod component 4 is in a closed state, the brackets 401 are not opened, a hollow cylindrical structure is formed, and the lower part of the telescopic rod 302 is wrapped, so that the storage volume is reduced, a handheld selfie stick mode is formed, and the use is convenient; when pressing button 404, tripod subassembly 4 is the open mode, and telescopic link 302 protractile distance is higher, and each support 401 is opened with relative telescopic link 302 through connecting rod 403 simultaneously, and each support 401 is opened the convenient fixed whole position from rapping bar in back, is difficult for empting, has increased the stability when using, forms the remote locating rack mode of autodyning.
When tripod subassembly 4 is the closure state, hollow cylinder structure is constituteed to each support 404, and its diameter equals with position circle 402 and/or accomodate the diameter of pipe 301, when centre gripping subassembly 1, telescopic link subassembly 3 and tripod subassembly 4 all are the closure state promptly, realize wholly accomodating, wholly accomodate the back and form a cylinder structure, occupation space is little, conveniently carries, and the appearance is pleasing to the eye.
Furthermore, telescopic supporting foot components 5 are further arranged in each support 401, each supporting foot component 5 comprises a connecting pipe 501 and a supporting block 502, and the connecting pipes 501 are symmetrically arranged at the upper ends of the supporting blocks 502; and the inner wall of each support 401 is provided with a hollow mounting pipe 503 for accommodating the connecting pipe 501, the bottom of each support 401 is provided with a hollow mounting groove 504 for accommodating the supporting block 502, and the shape of the supporting block 502 corresponds to the hollow mounting groove 504 at the bottom of the support 401, so that the appearance is attractive and convenient to accommodate.
When the supporting leg assembly 5 is not used, the connecting pipe 501 can be accommodated in the hollow mounting pipe 503 by pushing the supporting block 502, and the supporting block 502 can also be embedded in the hollow mounting groove 504 at the bottom of the bracket 401, so that the supporting leg assembly 5 is in a closed state; when supporting legs subassembly 5 used, pull supporting shoe 502 and can pull out hollow installation pipe 503 with connecting pipe 501 for supporting legs subassembly 5 is the open mode, limit connecting pipe 501 in hollow installation pipe 503 through the conventional spacing mode in this area simultaneously, prevent that supporting legs subassembly 5 from dropping from the bottom of support 401, form a flexible effect, can increase the holistic height of selfie stick through supporting legs subassembly 5, realize the shooting of shooting equipment difference effects such as cell-phone.
Still further, be provided with detachable bluetooth remote controller 6 on arbitrary support 401, carry out the bluetooth through bluetooth remote controller 6 and cell-phone or other shooting equipment that have bluetooth function and be connected, be the open mode when centre gripping subassembly 1 and telescopic link subassembly 3, and tripod subassembly 4 is when the closed condition, form handheld mode from rapping bar, press the button on the bluetooth remote controller 6 when needing to shoot, can let the cell-phone shoot convenient to use. When centre gripping subassembly 1, telescopic link subassembly 3 and tripod subassembly 4 all are the open mode, form remote auto heterodyne locating rack mode, take off bluetooth remote controller 6, bluetooth remote controller 6 and cell-phone are in the bluetooth connection range, press the button on the bluetooth remote controller 6 when need shoot, can let the cell-phone shoot, certainly also can not take off bluetooth remote controller 6, start the time delay in the cell-phone or regularly shoot and can shoot convenient to use.
Compared with the prior art, the utility model beneficial effect do:
1. the automatic shooting device comprises a plurality of automatic shooting modes, a handheld automatic shooting rod mode is formed when a clamping component and a telescopic rod component are in an opening state and a tripod component is in a closing state, and a remote automatic shooting positioning frame mode is formed when a clamping component 1, a telescopic rod component 3 and a tripod component 4 are in an opening state;
2. when the clamping assembly, the telescopic rod assembly and the tripod component are all in a closed state, integral storage is realized, a cylindrical structure is formed after the integral storage, the occupied space is small, the carrying is convenient, and the appearance is attractive;
3. the clamping assembly can be adjusted in multiple directions and multiple angles through the adjusting assembly, the clamping assembly can rotate 360 degrees in the horizontal direction through the transverse rotating platform, the clamping assembly can rotate 180 degrees in the vertical direction through the longitudinal rotating piece, and the transverse rotating platform and the longitudinal rotating piece are small in size, easy to integrally store, simple in operation step and convenient to use;
4. the telescopic supporting leg assembly is arranged, the overall height of the selfie stick can be increased through the supporting leg assembly, and shooting with different effects of shooting equipment such as a mobile phone and the like is realized;
5. be provided with the bluetooth remote controller that can dismantle the connection, the mode of connecting through the bluetooth lets the cell-phone shoot convenient to use.
It will be understood by those skilled in the art that the foregoing embodiments are merely for clarity of illustration of the disclosure and are not intended to limit the scope of the disclosure. Other variations or modifications may occur to those skilled in the art, based on the foregoing disclosure, and are still within the scope of the present disclosure.

Claims (10)

1. A selfie stick is characterized by comprising a clamping assembly, an adjusting assembly, a telescopic rod assembly and a tripod assembly, wherein the clamping assembly is movably arranged at the upper end of the telescopic rod assembly through the adjusting assembly, the adjusting assembly can be accommodated in the telescopic rod assembly, the tripod assembly is arranged at the lower end of the telescopic rod assembly,
the adjusting assembly comprises a transverse rotating table and a longitudinal rotating piece, and the transverse rotating table is rotatably connected with the clamping assembly so that the clamping assembly can rotate by 360 degrees in the horizontal direction; the longitudinal rotating piece is fixedly arranged at the bottom of the transverse rotating platform and is rotationally connected with the telescopic rod assembly, so that the clamping assembly can rotate 180 degrees in the vertical direction.
2. A self-timer stick as recited in claim 1, wherein the clamping assembly comprises an upper clamping portion, a lower clamping portion and a clamping wall, the upper clamping portion is horizontally and fixedly arranged on the upper end surface of the clamping wall, an elongated slot is vertically arranged on the inner side of the clamping wall, a sliding block corresponding to the slot is arranged on one side of the lower clamping portion, and the lower clamping portion is movably arranged on the inner side of the clamping wall through the sliding block and the slot which are matched for use so as to slide up and down relative to the clamping wall.
3. A self-timer stick as recited in claim 2, wherein the telescopic rod assembly comprises a receiving tube and a telescopic rod, the receiving tube is a hollow cylinder structure, the telescopic rod is composed of at least two sections of telescopic tubes, and comprises a maximum diameter end tube and a minimum diameter end tube, the minimum diameter end tube can be received inside the maximum diameter end tube, the telescopic rod is vertically disposed at a central position inside the receiving tube and can extend to the upper and lower ends of the receiving tube, and the minimum diameter end tube at the top of the telescopic rod is rotatably connected with the longitudinal rotating member.
4. A self-timer stick as recited in claim 3, wherein the upper grip portion has a circular configuration and corresponds to an upper end opening of the receiving tube; the height of the clamping wall is smaller than that of the accommodating pipe, the clamping wall can be accommodated in the accommodating pipe and is positioned at a position of a side gap between the accommodating pipe and the pipe fitting at the maximum diameter end of the telescopic rod.
5. The self-timer stick of claim 4, wherein the upper grip portion, the lower grip portion, the traverse table and the longitudinal rotation member are sequentially reduced in planar size from top to bottom, the lower grip portion being received inside the receiving tube at a position spaced from the top of the maximum diameter end tube of the telescopic rod; the transverse rotating platform and the longitudinal rotating piece can be both contained in the pipe fitting at the maximum diameter end of the telescopic rod and are positioned at the position of a gap at the top of the pipe fitting at the minimum diameter end of the telescopic rod.
6. A self-timer stick as recited in claim 3, wherein the tripod assembly comprises a support, a positioning ring, a connecting rod and a button, the positioning ring is fixed at the bottom of the receiving tube and is sleeved outside the telescopic rod, the upper parts of the plurality of supports are respectively embedded with the outside of the positioning ring and are rotatably connected, the middle part of the inner side of each support is further connected with the lower part of the telescopic rod through the connecting rod, and the button is installed at the bottom of the telescopic rod.
7. A self-timer stick as recited in claim 6, wherein the tripod assembly is in a closed state when the button is not pressed; when the button is pressed, the tripod component is in an open state.
8. A selfie stick according to claim 7, wherein each of said supports constitutes a hollow cylindrical structure having a diameter equal to a diameter of said cage and/or said receiving tube when said tripod assembly is in a closed state.
9. A self-timer stick as recited in claim 8, wherein the number of said brackets is at least three, and the number of said connecting rods corresponds to the number of said brackets.
10. A self-timer stick as claimed in claim 9, wherein a telescopic supporting leg assembly is further provided in each of said supports, said supporting leg assembly comprising a connecting tube and a supporting block, said connecting tube being symmetrically provided at an upper end of said supporting block; and the inner wall of each support is provided with a hollow mounting pipe for accommodating the connecting pipe, and the bottom of each support is provided with a hollow mounting groove for accommodating the supporting block.
CN202222987862.0U 2022-11-10 2022-11-10 From rapping bar Active CN218772164U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222987862.0U CN218772164U (en) 2022-11-10 2022-11-10 From rapping bar

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222987862.0U CN218772164U (en) 2022-11-10 2022-11-10 From rapping bar

Publications (1)

Publication Number Publication Date
CN218772164U true CN218772164U (en) 2023-03-28

Family

ID=85647993

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222987862.0U Active CN218772164U (en) 2022-11-10 2022-11-10 From rapping bar

Country Status (1)

Country Link
CN (1) CN218772164U (en)

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