CN214786359U - A multi-functional multi-ring revolving stage for performance - Google Patents

A multi-functional multi-ring revolving stage for performance Download PDF

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Publication number
CN214786359U
CN214786359U CN202120188417.0U CN202120188417U CN214786359U CN 214786359 U CN214786359 U CN 214786359U CN 202120188417 U CN202120188417 U CN 202120188417U CN 214786359 U CN214786359 U CN 214786359U
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China
Prior art keywords
sleeve
ring
platform
fixedly arranged
base
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CN202120188417.0U
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朱雪萍
吴俊华
查丛辰
金玉龙
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Suzhou Industrial Park Shanglian Advertising Public Relations Co ltd
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Suzhou Industrial Park Shanglian Advertising Public Relations Co ltd
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Abstract

The application relates to the field of stage performance equipment, and particularly discloses a multifunctional multi-ring rotating platform for performance, which comprises a base, an inner platform, an outer ring platform, a first adjusting mechanism and a second adjusting mechanism; the first adjusting mechanism comprises a first supporting sleeve, a first driving assembly, a first circular plate, a second driving assembly, a first adjusting sleeve and a first threaded sleeve which is in threaded connection with the outer peripheral surface of the first adjusting sleeve; the second adjusting mechanism comprises a second supporting sleeve, a third driving assembly, a second circular plate, a fourth driving assembly, a second adjusting sleeve and a second threaded sleeve in threaded connection with the outer peripheral surface of the second adjusting sleeve. This multi-functional multi-ring revolving stage moves along direction of height when can realizing interior platform, outer loop platform pivoted, but also can realize the independent rotation of interior platform, outer loop platform or along direction of height's removal, has improved the stage effect and the practicality of multi-functional multi-ring revolving stage.

Description

A multi-functional multi-ring revolving stage for performance
Technical Field
The application relates to stage performance equipment field, more specifically says that it relates to a multi-functional multiple ring revolving stage for performance.
Background
With the development of society and the progress of science and technology, people pay more and more attention to the pursuit and the trend of the spirit world, and the stage performances tend to be diversified. When the actor carries out the performance, in order to increase stage effect, can increase some stage effect usually, for example fireworks, light, lift, stay cord etc. greatly increased people's visual experience.
Among the correlation technique, in order to increase the stage effect, often use the revolving stage, the revolving stage includes the base, and the top of base is provided with rotary platform, is provided with the bracing piece between rotary platform and the base, and the bottom of bracing piece rotates and connects on the base, and the top of bracing piece sets firmly on rotary platform's bottom surface. Under the motionless condition of actor in rotary platform top surface, utilize the rotation of bracing piece, realize rotary platform and rotate, and then drive actor's rotation, increase stage effect.
In summary, the applicant has found that although the turntable can drive the actor to rotate on the rotary platform, the turntable cannot realize the situation that the actor ascends or descends while rotating, and cannot meet the market demand.
SUMMERY OF THE UTILITY MODEL
In order to facilitate the actors to ascend or descend while rotating and increase the stage effect, the application provides the multifunctional multi-ring rotating platform for the performance.
The application provides a multi-functional multi-ring revolving stage for performance adopts following technical scheme:
a multifunctional multi-ring rotating platform for performance comprises a base, an inner platform, an outer ring platform, a first adjusting mechanism and a second adjusting mechanism, wherein the inner platform is arranged above the base and is circular, the outer ring platform is sleeved on the outer peripheral surface of the inner platform and is circular, the first adjusting mechanism is arranged between the base and the inner platform, and the second adjusting mechanism is arranged between the base and the outer ring platform;
the first adjusting mechanism comprises a first supporting sleeve rotatably connected to the top surface of the base and along the height direction, a first driving assembly used for enabling the first supporting sleeve to rotate, a first circular plate fixedly arranged on the first supporting sleeve, a first adjusting sleeve fixedly arranged on the bottom surface of the inner platform and a first threaded sleeve in threaded connection with the outer peripheral surface of the first adjusting sleeve, the bottom end of the first threaded sleeve is rotatably connected to the first circular plate, a second driving assembly used for enabling the first threaded sleeve to rotate is arranged on the first circular plate, and the bottom end of the first adjusting sleeve penetrates through the first circular plate and is connected with the first circular plate in a sliding mode;
the second adjusting mechanism comprises a second supporting sleeve which is rotatably connected to the top surface of the base and along the height direction, a third driving assembly used for enabling the second supporting sleeve to rotate, a second circular ring plate fixedly arranged on the second supporting sleeve, a second adjusting sleeve fixedly arranged on the bottom surface of the outer ring platform, and a second threaded sleeve which is in threaded connection with the outer peripheral surface of the second adjusting sleeve, wherein the bottom end of the second threaded sleeve is rotatably connected to the second circular ring plate, a fourth driving assembly used for enabling the second threaded sleeve to rotate is arranged on the second circular ring plate, and the bottom end of the second adjusting sleeve penetrates through the second circular ring plate and is connected with the second circular ring plate in a sliding mode.
Through adopting above-mentioned technical scheme, when the actor performs the performance, if need the inner platform rotate and when moving along the direction of height, start the second drive assembly, and make first screw sleeve rotate, first screw sleeve drives first adjusting sleeve and moves along the direction of height, start first drive assembly, and make first supporting sleeve rotate, first supporting sleeve passes through the second drive assembly, first screw sleeve drives first adjusting sleeve and rotates, and then move along the direction of height when driving inner platform pivoted, and simultaneously, because first drive assembly, second drive assembly does not influence each other, the slew velocity and the high translation speed of inner platform can be adjusted at will, improve the effect of the stage of inner platform.
Meanwhile, if the outer ring platform needs to rotate and move along the height direction, the fourth driving assembly is started, the second threaded sleeve is made to rotate, the second threaded sleeve drives the second adjusting sleeve to move along the height direction, the third driving assembly is started, the second supporting sleeve is made to rotate, the second supporting sleeve drives the second adjusting sleeve to rotate through the fourth driving assembly and the second threaded sleeve, the outer ring platform is driven to rotate and move along the height direction, meanwhile, the third driving assembly and the fourth driving assembly do not influence each other, the rotating speed and the height moving speed of the outer ring platform can be adjusted at will, and the stage effect of the outer ring platform is improved. Through mutually supporting of interior platform and outer loop platform, further improve the practicality of multi-functional multi-ring revolving stage.
Optionally, the first driving assembly includes a first motor fixedly arranged on the base, a first driving gear fixedly arranged on an output shaft of the first motor, and a first driven gear fixedly arranged on the first support sleeve, and the first driven gear is engaged with the first driving gear.
Through adopting above-mentioned technical scheme, first motor drives first supporting sleeve through first drive gear, first driven gear and rotates, makes first supporting sleeve's rotation simple and convenient, stable.
Optionally, the second driving assembly includes a second motor fixedly arranged on the first annular plate, a second driving gear fixedly arranged on an output shaft of the second motor, and a second driven gear fixedly arranged on the first threaded sleeve, and the second driven gear is engaged with the second driving gear.
Through adopting above-mentioned technical scheme, the second motor drives first threaded sleeve through second drive gear, second driven gear and rotates, makes first threaded sleeve's rotation simple and convenient, stable.
Optionally, be provided with the first flexible bracing piece that is located first adjusting sleeve between inner gimbal and the base, the axis of first flexible bracing piece and the axis coincidence of inner gimbal, first flexible bracing piece is established at base top surface and along direction of height's first sleeve, cover including rotating and is just slided the first bracing piece of being connected in first sleeve rather than sliding, set firmly first compression spring between first bracing piece bottom and first sleeve bottom, the top of first bracing piece sets firmly on the inner gimbal.
Through adopting above-mentioned technical scheme, mutually supporting between first sleeve, first bracing piece, the first compression spring not only plays the effect of support to the inner platform, but also plays direction, spacing effect, makes the removal of inner platform more stable.
Optionally, a first circular ring plate is fixedly arranged at the top end of the first sleeve, and a first convex ring is fixedly arranged at the bottom end of the first supporting rod.
Through adopting above-mentioned technical scheme, improve the stability that first flexible bracing piece used.
Optionally, the third driving assembly includes a third motor fixedly arranged on the base, a third driving gear fixedly arranged on an output shaft of the third motor, and a third driven gear fixedly arranged on the second supporting sleeve, and the third driven gear is engaged with the third driving gear.
Through adopting above-mentioned technical scheme, the third motor drives the rotation of second support sleeve through third drive gear, third driven gear, makes the rotation of second support sleeve simple and convenient, stable.
Optionally, the fourth driving assembly includes a fourth motor fixedly disposed on the second annular plate, a fourth driving gear fixedly disposed on an output shaft of the fourth motor, and a fourth driven gear fixedly disposed on the second threaded sleeve, and the fourth driven gear is engaged with the fourth driving gear.
Through adopting above-mentioned technical scheme, the fourth motor drives the rotation of second threaded sleeve through fourth drive gear, fourth driven gear, makes the telescopic rotation of second threaded sleeve simple and convenient, stable.
Optionally, be provided with a plurality of flexible bracing pieces of second along outer loop platform circumference distribution between outer loop platform and the base, the annular spout with the flexible bracing piece looks adaptation of second is seted up to the base top surface, the flexible bracing piece of second is established at the base top surface and along direction of height's second sleeve, cover and is established in the second sleeve and rather than the second bracing piece of sliding connection, set firmly the second compression spring between second bracing piece bottom and second sleeve bottom, the top of second bracing piece sets firmly on the outer loop platform.
Through adopting above-mentioned technical scheme, the second sleeve slides in annular chute to through the mutually supporting between second sleeve, second bracing piece, the second compression spring, not only play the effect of support to the outer loop platform, but also play direction, spacing effect, make the removal of outer loop platform more stable.
Optionally, the second telescopic supporting rod is located between the second adjusting sleeve and the first supporting sleeve.
By adopting the technical scheme, the supporting effect of the second telescopic supporting rod on the outer ring platform is improved.
Optionally, a second circular ring plate is fixedly arranged at the top end of the second sleeve, and a second convex ring is fixedly arranged at the bottom end of the second supporting rod.
Through adopting above-mentioned technical scheme, improve the stability that the flexible bracing piece of second used.
In summary, the present application has the following beneficial effects:
1. the utility model provides a multi-functional multi-ring revolving stage for performance, first adjusting sleeve removes along the direction of height under first threaded sleeve's effect, and first adjusting sleeve rotates under first supporting sleeve's effect to remove along the direction of height when realizing interior platform pivoted, the slew velocity and the high translation speed of interior platform can also be adjusted at will simultaneously. The second adjusting sleeve moves along the direction of height under the effect of second threaded sleeve, and the second adjusting sleeve rotates under the effect of second supporting sleeve to remove along the direction of height when realizing outer loop platform pivoted, can also adjust the slew velocity and the high translation rate of outer loop platform simultaneously at will, improved the stage effect of interior platform, outer loop platform, and increased the practicality of multi-functional multi-ring revolving stage.
2. Set up first flexible bracing piece between inner platform and base to through mutually supporting between first sleeve, first bracing piece, the first compression spring, not only play the effect of support to inner platform, but also play direction, spacing effect, make inner platform's removal more stable.
3. Set up first flexible bracing piece between outer loop platform and base to through the mutually supporting between second sleeve, second bracing piece, the second compression spring, not only play the effect of support to the outer loop platform, but also play direction, spacing effect, make the removal of outer loop platform more stable.
Drawings
Fig. 1 is a schematic structural diagram of the embodiment.
Fig. 2 is a partial sectional view for showing the first and second adjustment mechanisms.
Fig. 3 is an enlarged view of a portion a in fig. 2.
Fig. 4 is a partial sectional view for showing the first and second telescopic support rods.
Description of reference numerals: 1. a base; 11. an annular chute; 2. an inner platform; 21. a first protective sleeve; 3. an outer ring platform; 31. a second protective sleeve; 4. a first adjustment mechanism; 41. a first support sleeve; 42. a first drive assembly; 421. a first motor; 422. a first drive gear; 423. a first driven gear; 43. a first annular plate; 44. a first adjustment sleeve; 45. a first threaded sleeve; 46. a second drive assembly; 461. a second motor; 462. a second drive gear; 463. a second driven gear; 47. a first telescopic support rod; 471. a first sleeve; 472. a first support bar; 473. a first convex ring; 474. a first circular ring; 475. a first compression spring; 5. a second adjustment mechanism; 51. a second support sleeve; 52. a third drive assembly; 521. a third motor; 522. a third drive gear; 523. a third driven gear; 53. a second annular plate; 54. a second adjustment sleeve; 55. a second threaded sleeve; 56. a fourth drive assembly; 561. a fourth motor; 562. a fourth drive gear; 563. a fourth driven gear; 57. a second telescopic support rod; 571. a second sleeve; 572. a second support bar; 573. a second convex ring; 574. a second circular ring; 575. a second compression spring; 6. a stationary ring plate; 61. and a third protection sleeve.
Detailed Description
The present application is described in further detail below with reference to figures 1-4.
A multifunctional multi-ring rotating platform for performance. Referring to fig. 1 and 2, the base 1 is comprised, and the base 1 is circular. The top of base 1 is provided with inner platform 2, and inner platform 2 is circular, and the axis of inner platform 2 and the axis coincidence of base 1. The outer peripheral face cover of inner platform 2 is equipped with outer loop platform 3, and outer loop platform 3 is ring shape, and the axis of outer loop platform 3 and the axis coincidence of base 1. A first adjusting mechanism 4 is arranged between the inner platform 2 and the base 1. A second adjusting mechanism 5 is arranged between the outer platform and the base 1.
Referring to fig. 2 and 3, the first adjusting mechanism 4 includes a first supporting sleeve 41 rotatably connected to the top surface of the base 1, and the axis of the first supporting sleeve 41 coincides with the axis of the base 1. A first driving assembly 42 for rotating the first support sleeve 41 is provided between the first support sleeve 41 and the base 1. The top end of the first supporting sleeve 41 is fixedly provided with a first annular plate 43. The bottom surface of inner platform 2 sets firmly first adjusting sleeve 44, and the axis of first adjusting sleeve 44 and the axis coincidence of inner platform 2, first ring plate 43 is passed and rather than sliding connection to the bottom of first adjusting sleeve 44. The outer peripheral surface of the first adjusting sleeve 44 is in threaded connection with a first threaded sleeve 45, and the bottom end of the first threaded sleeve 45 is rotatably connected to the top surface of the first annular plate 43. A second drive assembly 46 for rotating the first threaded sleeve 45 is provided between the first annular plate 43 and the first threaded sleeve 45. Be provided with first flexible bracing piece 47 between inner platform 2 and the base 1, first flexible bracing piece 47 is located first adjusting sleeve 44, and the axis of first flexible bracing piece 47 and the axis coincidence of inner platform 2.
Referring to fig. 2 and 3, the first driving assembly 42 includes a first motor 421 fixed on the top surface of the base 1, a first driving gear 422 is fixed on the outer circumferential surface of the output shaft of the first motor 421, a first driven gear 423 is fixed on the outer circumferential surface of the first supporting sleeve 41, and the first driven gear 423 is engaged with the first driving gear 422.
Referring to fig. 2 and 3, the second driving assembly 46 includes a second motor 461 fixed to the top surface of the first annular plate 43, a second driving gear 462 fixed to the outer circumferential surface of the output shaft of the first motor 421, a second driven gear 463 fixed to the outer circumferential surface of the first threaded sleeve 45, and the second driven gear 463 and the second driving gear 462 are engaged with each other.
Referring to fig. 4, the first telescopic supporting rod 47 includes a first sleeve 471 rotatably connected to the top surface of the base 1 and arranged along the height direction, and the axis of the first sleeve 471 coincides with the axis of the base 1. The first sleeve 471 is sleeved with a first supporting rod 472 slidably connected thereto, and the top end of the first supporting rod 472 is fixedly arranged on the bottom surface of the inner platform 2. The outer circumferential surface of the bottom end of the first supporting rod 472 is fixedly provided with a first protruding ring 473, and the inner side wall of the first sleeve 471 is fixedly provided with a first ring 474 for preventing the first protruding ring 473 from separating from the first sleeve 471. A first compression spring 475 is fixedly disposed at the bottom end of the first supporting rod 472 and the bottom end of the first sleeve 471.
Referring to fig. 2 and 3, the outer peripheral surface of the inner platform 2 is vertically and fixedly provided with a first protective sleeve 21, a first cavity is formed between the first protective sleeve 21 and the inner platform 2, and the second motor 461, the second driving gear 462 and the second driven gear 463 are located in the first cavity.
When the performer performs a performance, if the inner platform 2 needs to rotate and move in the height direction, the second motor 461 is started, the second motor 461 drives the first threaded sleeve 45 to rotate through the second driving gear 462 and the second driven gear 463, and the first threaded sleeve 45 drives the first adjusting sleeve 44 to move in the height direction. Start first motor 421, first motor 421 is through first drive gear 422, first driven gear 423 drives first support sleeve 41 and rotates, first support sleeve 41 passes through second drive assembly 46, first threaded sleeve 45 drives first adjusting sleeve 44 and rotates, and then move along the direction of height when driving interior platform 2 pivoted, and simultaneously, because first motor 421, second motor 461 does not influence each other, can adjust interior platform 2's slew velocity and high translation speed at will, improve interior platform 2's stage effect.
Referring to fig. 2 and 3, the second adjusting mechanism 5 includes a second supporting sleeve 51 rotatably connected to the top surface of the base 1, the axis of the second supporting sleeve 51 is coincident with the axis of the base 1, and the first adjusting mechanism 4 is located in the second supporting sleeve 51. A third driving assembly 52 for rotating the second support sleeve 51 is provided between the second support sleeve 51 and the base 1. The top end of the second supporting sleeve 51 is fixedly provided with a second circular ring plate 53. The bottom surface of outer loop platform 3 sets firmly second adjusting sleeve 54, and the axis of second adjusting sleeve 54 and the axis coincidence of outer loop platform 3, the bottom of second adjusting sleeve 54 passes second ring plate 53 and rather than sliding connection, and first adjustment mechanism 4 is located second adjusting sleeve 54. The outer peripheral surface of the second adjusting sleeve 54 is threadedly connected with a second threaded sleeve 55, and the bottom end of the second threaded sleeve 55 is rotatably connected to the top surface of the second annular plate 53. A fourth drive assembly 56 for rotating the second threaded sleeve 55 is arranged between the second annular plate 53 and the second threaded sleeve 55. Be provided with the flexible bracing piece 57 of a plurality of seconds between outer loop platform 3 and the base 1, the flexible bracing piece 57 of a plurality of seconds is along outer loop platform 3 circumference evenly distributed, and the flexible bracing piece 57 of second is located between second adjusting sleeve 54 and the first supporting sleeve 41, and the annular spout 11 with the flexible bracing piece 57 looks adaptation of second is seted up to the top surface of base 1.
Referring to fig. 2 and 3, the third driving assembly 52 includes a third motor 521 fixedly disposed on the top surface of the base 1, a third driving gear 522 is fixedly disposed on the outer circumferential surface of an output shaft of the third motor 521, a third driven gear 523 is fixedly disposed on the outer circumferential surface of the second supporting sleeve 51, and the third driven gear 523 is engaged with the third driving gear 522.
Referring to fig. 2 and 3, the fourth driving assembly 56 includes a fourth motor 561 fixedly disposed on the top surface of the second circular plate 53, a fourth driving gear 562 is fixedly disposed on the outer circumferential surface of an output shaft of the fourth motor 561, a fourth driven gear 563 is fixedly disposed on the outer circumferential surface of the second threaded sleeve 55, and the fourth driven gear 563 is engaged with the fourth driving gear 562.
Referring to fig. 4, the second telescopic supporting rod 57 includes a second sleeve 571 arranged along the height direction, and the second sleeve 571 slides in the annular sliding groove 11. A second support rod 572 slidably connected to the second sleeve 571 is sleeved therein, and a top end of the second support rod 572 is fixed to the bottom surface of the outer ring platform 3. A second protruding ring 573 is fixedly arranged on the outer peripheral surface of the bottom end of the second support rod 572, and a second ring 574 for preventing the second protruding ring 573 from separating from the second sleeve 571 is fixedly arranged on the inner side wall of the second sleeve 571. The bottom end of the second support rod 572 and the bottom end of the second sleeve 571 are fixedly provided with a second compression spring 575.
When the actor performs a performance, if the outer ring platform 3 needs to rotate and move in the height direction, the fourth motor 561 is started, the fourth motor 561 drives the second threaded sleeve 55 to rotate through the fourth driving gear 562 and the fourth driven gear 563, and the second threaded sleeve 55 drives the second adjusting sleeve 54 to move in the height direction. The third motor 521 is started, the third motor 521 drives the second supporting sleeve 51 to rotate through the third driving gear 522 and the third driven gear 523, the second supporting sleeve 51 drives the second adjusting sleeve 54 to rotate through the fourth driving component 56 and the second threaded sleeve 55, and then the outer ring platform 3 is driven to rotate and move in the height direction, meanwhile, the rotating speed and the height moving speed of the outer ring platform 3 can be adjusted at will due to the fact that the third motor 521 and the fourth motor 561 do not influence each other, and the stage effect of the outer ring platform 3 is improved.
Referring to fig. 2 and 3, a second protective sleeve 31 is vertically and fixedly arranged on the outer peripheral surface of the outer ring platform 3 downward, a second cavity is formed between the second protective sleeve 31 and the inner platform 2, and the fourth motor 561, the fourth drive gear 562 and the fourth driven gear 563 are located in the first cavity. The outer peripheral face of second support sleeve 51 has set firmly fixed ring board 6, and fixed ring board 6 outer peripheral face sets firmly third prevention restrictive sleeve 61 downwards perpendicularly, and the bottom of third prevention restrictive sleeve 61 is rotated and is connected on base 1 top surface, forms the third cavity between third prevention restrictive sleeve 61 and the fixed ring board 6, and third motor 521, third drive gear 522, third driven gear 523 are located the third cavity.
The utility model provides a multi-functional multi-ring revolving stage for performance, 2 top surfaces of interior platform can be gone into to the actor, also can be at 3 top surfaces of outer loop platform, treat that interior platform 2 rotates and when moving along the direction of height, through first motor 421, the control of second motor 461, realize that interior platform 2 rotates and moves along the direction of height, also can adjust interior platform 2's slew velocity and high translation velocity at will as required, and can start first motor 421 or second motor 461 as required, realize interior platform 2's rotation or move along the direction of height. When the outer ring platform 3 is required to rotate and move along the height direction, through the control of the third motor 521 and the fourth motor 561, the outer ring platform 3 is realized to rotate and move along the height direction, the rotating speed and the height moving speed of the outer ring platform 3 can also be adjusted at will as required, and the third motor 521 or the fourth motor 561 can be started as required, the outer ring platform 3 is realized to rotate or move along the height direction, and through the mutual cooperation of the inner platform 2, the outer ring platform 3, the first adjusting mechanism 4 and the second adjusting mechanism 5, the stage effect and the practicability of the multifunctional multi-ring rotating platform are further improved.
The present embodiment is only for explaining the present application, and it is not limited to the present application, and those skilled in the art can make modifications of the present embodiment without inventive contribution as needed after reading the present specification, but all of them are protected by patent law within the scope of the claims of the present application.

Claims (10)

1. The utility model provides a multi-functional multiple ring revolving stage for performance which characterized in that: the device comprises a base (1), a circular inner platform (2) arranged above the base (1), a circular outer ring platform (3) sleeved on the outer peripheral surface of the inner platform (2), a first adjusting mechanism (4) arranged between the base (1) and the inner platform (2), and a second adjusting mechanism (5) arranged between the base (1) and the outer ring platform (3);
the first adjusting mechanism (4) comprises a first supporting sleeve (41) which is rotatably connected to the top surface of the base (1) and is in height direction, a first driving component (42) for enabling the first supporting sleeve (41) to rotate, a first circular plate (43) fixedly arranged on the first supporting sleeve (41), a first adjusting sleeve (44) fixedly arranged on the bottom surface of the inner platform (2), and a first threaded sleeve (45) in threaded connection with the outer peripheral surface of the first adjusting sleeve (44), the bottom end of the first threaded sleeve (45) is rotatably connected to the first circular plate (43), a second driving component (46) for enabling the first threaded sleeve (45) to rotate is arranged on the first circular plate (43), and the bottom end of the first adjusting sleeve (44) penetrates through the first circular plate (43) and is connected with the first circular plate in a sliding manner;
second adjustment mechanism (5) including rotate connect base (1) top surface and along direction of height second support sleeve (51), be used for making second support sleeve (51) pivoted third drive assembly (52), set firmly second ring board (53) on second support sleeve (51), set firmly second adjustment sleeve (54) at outer ring platform (3) bottom surface, threaded connection is in second threaded sleeve (55) of second adjustment sleeve (54) outer peripheral face, the bottom of second threaded sleeve (55) is rotated and is connected on second ring board (53), be provided with on second ring board (53) and be used for making second threaded sleeve (55) pivoted fourth drive assembly (56), the bottom of second adjustment sleeve (54) passes second ring board (53) and slides rather than being connected.
2. A multi-function multi-ring carousel for performing as claimed in claim 1, wherein: the first driving assembly (42) comprises a first motor (421) fixedly arranged on the base (1), a first driving gear (422) fixedly arranged on an output shaft of the first motor (421) and a first driven gear (423) fixedly arranged on the first supporting sleeve (41), and the first driven gear (423) is meshed with the first driving gear (422).
3. A multi-function multi-ring carousel for performing as claimed in claim 1, wherein: the second driving assembly (46) comprises a second motor (461) fixedly arranged on the first circular ring plate (43), a second driving gear (462) fixedly arranged on an output shaft of the second motor (461), and a second driven gear (463) fixedly arranged on the first threaded sleeve (45), wherein the second driven gear (463) is meshed with the second driving gear (462).
4. A multi-function multi-ring carousel for performing as claimed in claim 1, wherein: be provided with between inner platform (2) and the base (1) and be located first flexible bracing piece (47) of first adjusting sleeve (44), the axis of first flexible bracing piece (47) and the axis coincidence of inner platform (2), first flexible bracing piece (47) are established in first sleeve (471) and rather than first bracing piece (472) of sliding connection, set firmly first compression spring (475) between first bracing piece (472) bottom and first sleeve (471) bottom including rotating the first sleeve (471) of connection at base (1) top surface and along direction of height, cover, the top of first bracing piece (472) sets firmly on inner platform (2).
5. A multi-function multi-ring carousel for performing as claimed in claim 4, wherein: the top end of the first sleeve (471) is fixedly provided with a first circular ring plate (43), and the bottom end of the first supporting rod (472) is fixedly provided with a first convex ring (473).
6. A multi-function multi-ring carousel for performing as claimed in claim 1, wherein: the third driving assembly (52) comprises a third motor (521) fixedly arranged on the base (1), a third driving gear (522) fixedly arranged on an output shaft of the third motor (521), and a third driven gear (523) fixedly arranged on the second supporting sleeve (51), wherein the third driven gear (523) is meshed with the third driving gear (522).
7. A multi-function multi-ring carousel for performing as claimed in claim 1, wherein: the fourth driving assembly (56) comprises a fourth motor (561) fixedly arranged on the second circular ring plate (53), a fourth driving gear (562) fixedly arranged on an output shaft of the fourth motor (561), and a fourth driven gear (563) fixedly arranged on the second threaded sleeve (55), and the fourth driven gear (563) is meshed with the fourth driving gear (562).
8. A multi-function multi-ring carousel for performing as claimed in claim 1, wherein: a plurality of second telescopic supporting rods (57) distributed along the circumferential direction of the outer ring platform (3) are arranged between the outer ring platform (3) and the base (1), an annular sliding groove (11) matched with the second telescopic supporting rods (57) is formed in the top surface of the base (1), the second telescopic supporting rods (57) are connected to the top surface of the base (1) in a rotating mode and comprise second sleeves (571) along the height direction, second supporting rods (572) sleeved in the second sleeves (571) and connected with the second sleeves in a sliding mode, second compression springs (575) fixedly arranged between the bottom ends of the second supporting rods (572) and the bottom ends of the second sleeves (571), and the top ends of the second supporting rods (572) are fixedly arranged on the outer ring platform (3).
9. A multi-function multi-ring carousel for performing as claimed in claim 8, wherein: the second telescopic supporting rod (57) is positioned between the second adjusting sleeve (54) and the first supporting sleeve (41).
10. A multi-function multi-ring carousel for performing as claimed in claim 8, wherein: a second circular ring plate (53) is fixedly arranged at the top end of the second sleeve (571), and a second convex ring (573) is fixedly arranged at the bottom end of the second support rod (572).
CN202120188417.0U 2021-01-23 2021-01-23 A multi-functional multi-ring revolving stage for performance Active CN214786359U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120188417.0U CN214786359U (en) 2021-01-23 2021-01-23 A multi-functional multi-ring revolving stage for performance

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120188417.0U CN214786359U (en) 2021-01-23 2021-01-23 A multi-functional multi-ring revolving stage for performance

Publications (1)

Publication Number Publication Date
CN214786359U true CN214786359U (en) 2021-11-19

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ID=78749200

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Application Number Title Priority Date Filing Date
CN202120188417.0U Active CN214786359U (en) 2021-01-23 2021-01-23 A multi-functional multi-ring revolving stage for performance

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Country Link
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