CN109529382B - Rotary transmission mechanism and entertainment toy formed by same - Google Patents

Rotary transmission mechanism and entertainment toy formed by same Download PDF

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Publication number
CN109529382B
CN109529382B CN201811630837.9A CN201811630837A CN109529382B CN 109529382 B CN109529382 B CN 109529382B CN 201811630837 A CN201811630837 A CN 201811630837A CN 109529382 B CN109529382 B CN 109529382B
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rotary
driving
gears
driven disc
barrel
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CN109529382A (en
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池跃林
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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63JDEVICES FOR THEATRES, CIRCUSES, OR THE LIKE; CONJURING APPLIANCES OR THE LIKE
    • A63J21/00Conjuring appliances; Auxiliary apparatus for conjurers

Abstract

The invention discloses a rotary transmission mechanism and an entertainment toy formed by the same, which comprise a top cap, a main shaft, a driving rotary core assembly, a rotary driven assembly, a shaft barrel A, a chassis, a shaft barrel B and a limiting bottom plate, wherein a guide rail is arranged on the main shaft in a protruding way, the driving rotary core assembly comprises a driving rotary core and at least three rotary core gears, the rotary driven assembly comprises a rotary driven disc and at least three driven disc gears, and the driving tooth surface of the rotary core gears is in driving fit with the driven tooth surface of the driven disc gears; the bottom of the shaft barrel B is fixedly provided with a limiting bottom plate, the outside of the shaft barrel B is sleeved with a chassis, the whole outside of the shaft barrel A and the shaft barrel B is sleeved with a spring, the outer side wall of the top of the shaft barrel A is provided with a wedge-shaped lug, and the top of the driving rotary core is provided with a lug matching positioning groove; the inside of the shaft barrel A is provided with a guide rail groove A, and the inside of the shaft barrel B is provided with a guide rail groove B. The invention provides a rotary transmission mechanism capable of sequentially rotating, which can be directly applied to entertainment toys, and realizes higher interactivity, entertainment and cultural performance of the toys.

Description

Rotary transmission mechanism and entertainment toy formed by same
Technical Field
The invention relates to a rotary transmission mechanism for an entertainment toy, in particular to a rotary transmission mechanism and an entertainment toy formed by the same.
Background
The drama face is a very favorite traditional drama performance of people, but most of the existing drama faces are concentrated on the appearance design, and the entertainment requirement of people on the drama face is met only through the drama facial makeup and the figure, so that the interactivity of the toy is poor. In the prior art, a related toy capable of realizing the face change of the Sichuan opera through the interactive operation of people does not exist, and a related mechanical transmission structure applied to the face change of the Sichuan opera does not exist, so that the practical application of the face change culture of the Sichuan opera in the field of entertainment toys is seriously hindered.
Disclosure of Invention
Aiming at the defects existing in the prior art, the invention aims to provide a rotary transmission mechanism and an entertainment toy formed by the rotary transmission mechanism, and provides the rotary transmission mechanism capable of sequentially rotating, which can be directly applied to the entertainment toy, can realize perfect fit with a drama face-changing culture and realize higher interactivity, entertainment and culture of the toy.
The aim of the invention is achieved by the following technical scheme:
the rotary transmission mechanism comprises a top cap, a main shaft, a driving rotating core assembly, a rotary driven assembly, a shaft barrel A, a chassis, a shaft barrel B and a limiting bottom plate, wherein the top of the main shaft is fixedly connected with the top of the top cap, a guide rail is arranged on the main shaft in a protruding mode along the height direction, a rotating core center hole is formed in the center of the driving rotating core assembly, the driving rotating core assembly comprises a driving rotating core and at least three rotating core gears, all the rotating core gears are fixed at the bottom of the driving rotating core, a driven disc center hole is formed in the center of the rotary driven assembly, the rotary driven assembly comprises a rotary driven disc and at least three driven disc gears, all the driven disc gears are fixed at the top of the rotary driven disc, the number of the driven disc gears is equal to that of the rotating core gears, and the driving tooth surfaces of the rotating core gears are in driving fit with the driven tooth surfaces of the driven disc gears; the bottom of the shaft barrel B is fixedly provided with a limiting bottom plate, the outer part of the shaft barrel B is sleeved with a chassis, the limiting bottom plate is arranged below the chassis in a limiting manner, the top of the shaft barrel B is fixedly provided with a shaft barrel A, the whole outer parts of the shaft barrel A and the shaft barrel B are sleeved with springs, and the springs are positioned between the top of the chassis and the bottom of the rotary driven disc; the outer side wall of the top of the shaft barrel A is provided with a wedge-shaped lug, and the top of the driving rotary core is provided with a lug matching positioning groove which is matched with the wedge-shaped lug for positioning; the top of the shaft cylinder A sequentially passes through the center hole of the driven disc and the center hole of the rotating core, and the wedge-shaped protruding block at the top of the shaft cylinder A is matched, positioned and installed in the protruding block matched positioning groove of the driving rotating core; the spindle is characterized in that a guide rail groove A matched with a guide rail is formed in the spindle barrel A, a guide rail groove B matched with the guide rail is formed in the spindle barrel B, and the bottom of the spindle sequentially penetrates through the spindle barrel A and the spindle barrel B and is fixed with the top of the limiting bottom plate.
In order to better realize the rotary transmission mechanism, a top cap cavity is formed in the top cap, the driving rotary core assembly is installed in the top cap cavity of the top cap in a matched mode, all rotary core gears of the driving rotary core assembly extend out of the top cap, top cap driving tooth surfaces are formed in the bottom of the top cap, and the top cap driving tooth surfaces are in driving fit with driven tooth surfaces of the driven disc gears.
Preferably, the number of the rotating core gears in the driving rotating core assembly is three, the number of the driven disc gears of the rotary driven assembly is three, the main shaft is provided with two guide rails along the protrusion of the height direction, two guide rail grooves A are formed in the shaft barrel A and are in one-to-one sliding fit with the two guide rails, two guide rail grooves B are formed in the shaft barrel B and are in one-to-one sliding fit with the two guide rails, two wedge-shaped protruding blocks are arranged on the outer side wall of the top of the shaft barrel A, and two protruding block fit positioning grooves are formed in the top of the driving rotating core.
Preferably, the shaft cylinder a is provided with two elastic notches along the height direction.
Preferably, the center of the top cap is provided with a central shaft hole, the top of the main shaft is provided with a positioning shaft, the positioning shaft of the main shaft penetrates through the central shaft hole of the top cap and is limited and locked through a top lock head, the top lock head is positioned on the outer side of the top cap, and the top lock head is in threaded connection with the positioning shaft of the main shaft.
Preferably, the rotary transmission mechanism further comprises a bottom lock head, wherein the bottom lock head is positioned below the limiting bottom plate, and the bottom of the main shaft sequentially penetrates through the inside of the shaft cylinder A, the inside of the shaft cylinder B and the limiting bottom plate and is in threaded connection with the bottom lock head.
The entertainment toy consists of a rotary transmission mechanism and a rotary cover body, wherein a rotary cover body matching groove is formed in the outer part of the rotary driven disc, and a rotary poking block matched with the rotary cover body matching groove is protruded on the inner side wall of the rotary cover body; the rotary cover body covers outside the rotary transmission mechanism, rotary cover body top and rotary transmission mechanism's top cap rotary fit, the top tapered end is located rotary cover body top outside, rotary cover body's rotatory piece cooperation of stirring is installed in rotary cover body cooperation groove of rotatory driven plate.
Preferably, the entertainment toy further comprises an outer shell, the outer shell is sleeved outside the rotary cover body, the outer shell is provided with a face opening, the top of the outer shell is provided with a lock head through hole matched with a top lock head, and a lock head cap is sleeved outside the top lock head.
Compared with the prior art, the invention has the following advantages:
(1) The invention provides a rotary transmission mechanism capable of sequentially rotating, which can be directly applied to entertainment toys, can realize perfect fit with a drama face-changing culture, and realizes higher interactivity, entertainment and culture of the toys.
(2) The invention converts the pressure for pressing the top cap into the rotary power for driving the rotary driven disc, thereby driving the rotary driven disc to rotate for a certain angle, so as to drive the entertainment toy to present the change effect of the face changing of the Sichuan play, spread the culture of the face changing of the Sichuan play and enrich the entertainment performance of the toy.
Drawings
FIG. 1 is a schematic diagram of an assembly of a rotary drive mechanism of the present invention;
FIG. 2 is a schematic view of a rotary driven assembly of the present invention with a rotary drive mechanism mounted;
FIG. 3 is a schematic view of the structure of the drive rotor assembly of FIG. 2;
FIG. 4 is a schematic view of the top cap of FIG. 3;
FIG. 5 is a schematic view of a first entertainment toy according to the present invention;
fig. 6 is a schematic structural view of a second entertainment toy according to the present invention.
Wherein, the names corresponding to the reference numerals in the drawings are:
1-top cap, 11-top lock, 111-lock cap, 2-main shaft, 21-guide rail, 3-driving rotary core, 31-rotary core central hole, 32-bump matching positioning groove, 4-rotary core gear, 41-driving tooth surface, 5-rotary driven disc, 51-driven disc central hole, 52-rotary cover matching groove, 6-driven disc gear, 61-driven tooth surface, 7-shaft barrel A, 71-elastic notch, 72-wedge bump, 73-guide rail groove A, 8-chassis, 81-disc bottom, 9-shaft barrel B, 10-bottom lock, 12-spring, 13-limiting bottom plate, 14-top cap driving tooth surface, 15-rotary cover and 16-external shell.
Detailed Description
The present invention will be described in further detail with reference to examples.
Example 1
As shown in fig. 1 to 5, a rotary transmission mechanism comprises a top cap 1, a main shaft 2, a driving rotating core assembly, a rotary driven assembly, a shaft barrel A7, a chassis 8, a shaft barrel B9 and a limiting bottom plate 13, wherein the top of the main shaft 2 is fixedly connected with the top of the top cap 1, a guide rail 21 is arranged on the protrusion of the main shaft 2 along the height direction, a rotating core center hole 31 is formed in the center of the driving rotating core assembly, the driving rotating core assembly comprises a driving rotating core 3 and at least three rotating core gears 4, all the rotating core gears 4 are fixedly arranged at the bottom of the driving rotating core 3, a driven disc center hole 51 is formed in the center of the rotary driven assembly, the rotary driven assembly comprises a rotary driven disc 5 and at least three driven disc gears 6, all the driven disc gears 6 are fixedly arranged at the top of the rotary driven disc 5, the number of the driven disc gears 6 is equal to that of the rotating core gears 4, and a driving tooth surface 41 of the rotating core gears 4 is in driving fit with a driven tooth surface 61 of the driven disc gears 6. The bottom of the shaft barrel B9 is fixedly provided with a limiting bottom plate 13, the chassis 8 is sleeved outside the shaft barrel B9, the chassis 8 is provided with a chassis concave cavity, the bottom of the chassis concave cavity of the chassis 8 is provided with a tray bottom 81, the limiting bottom plate 13 is installed below the chassis 8 in a limiting manner, the top of the shaft barrel B9 is fixedly provided with a shaft barrel A7, the whole outside of the shaft barrel A7 and the shaft barrel B9 is sleeved with a spring 12, and the spring 12 is positioned between the top of the chassis 8 and the bottom of the rotary driven disc 5; the bottom of the spring 12 is fixed on the tray bottom 81 of the chassis 8, and the top of the spring 12 is contacted or fixed with the bottom surface of the rotary driven tray 5. The outer side wall of the top of the shaft barrel A7 is provided with a wedge-shaped lug 72, and the top of the driving rotary core 3 is provided with a lug matching positioning groove 32 which is matched and positioned with the wedge-shaped lug 72. The top of the shaft barrel A7 sequentially passes through the driven disc central hole 51 and the rotating core central hole 31, and the wedge-shaped lug 72 at the top of the shaft barrel A7 is matched and positioned in the lug matched positioning groove 32 of the driving rotating core 3. The inside of the shaft barrel A7 is provided with a guide rail groove A73 matched with the guide rail 21, the inside of the shaft barrel B9 is provided with a guide rail groove B matched with the guide rail 21, and the bottom of the main shaft 2 sequentially passes through the inside of the shaft barrel A7, the inside of the shaft barrel B9 and is fixed with the top of the limiting bottom plate 13.
As shown in fig. 1, a top cap cavity is formed in the top cap 1, a driving rotary core assembly is installed in the top cap cavity of the top cap 1 in a matched mode, all rotary core gears 4 of the driving rotary core assembly extend out of the top cap 1, top cap driving tooth surfaces 14 are formed in the bottom of the top cap 1, and the top cap driving tooth surfaces 14 are in driving fit with driven tooth surfaces 61 of the driven disc gears 6.
The number of the rotating core gears 4 in the preferred driving rotating core assembly is three, the number of the driven disc gears 6 of the rotary driven assembly is three, two guide rails 21 are arranged on the main shaft 2 in a protruding mode along the height direction, two guide rail grooves A73 are formed in the shaft barrel A7, the two guide rail grooves A73 are in one-to-one sliding fit with the two guide rails 21, two guide rail grooves B are formed in the shaft barrel B9, the two guide rail grooves B are in one-to-one sliding fit with the two guide rails 21, two wedge-shaped protruding blocks 72 are arranged on the outer side wall of the top of the shaft barrel A7, and two protruding block fit positioning grooves 32 are formed in the top of the driving rotating core 3.
As shown in fig. 1, the shaft barrel A7 is provided with two elastic notches 71 along the height direction, the elastic notches 71 in this embodiment are preferably a longitudinal strip-shaped opening (as shown in fig. 1), the two elastic notches 71 can enable the top of the shaft barrel A7 to have better elasticity, so that the two wedge-shaped protrusions 72 on the top of the shaft barrel A7 are elastically matched and inserted into the two protrusion matching positioning grooves 32 of the driving rotating core 3, when in use, the top of the shaft barrel A7 moves in the central hole 31 of the rotating core, the two wedge-shaped protrusions 72 on the top of the shaft barrel A7 are compressed by the inner wall of the driving rotating core 3 inside the driving rotating core 3 to deform, and when the two wedge-shaped protrusions 72 on the top of the shaft barrel A7 are matched with the two protrusion matching positioning grooves 32 of the driving rotating core 3, the two wedge-shaped protrusions 72 on the top of the shaft barrel A7 can be inserted and positioned into the two protrusion matching positioning grooves 32 of the driving rotating core 3 under the action of elastic deformation force, so that the positioning and fixed connection between the top of the shaft barrel A7 and the top of the driving rotating core 3 is realized.
The center of the top cap 1 is provided with a center shaft hole, the top of the main shaft 2 is provided with a positioning shaft, as shown in fig. 4, the positioning shaft of the main shaft 2 passes through the center shaft hole of the top cap 1 and is limited and locked through the top lock 11, the top lock 11 is positioned at the outer side of the top cap 1, and the top lock 11 is in threaded connection with the positioning shaft of the main shaft 2.
The preferred rotary transmission mechanism of the invention further comprises a bottom lock head 10, wherein the bottom lock head 10 is positioned below the limiting bottom plate 13, and the bottom of the main shaft 2 sequentially penetrates through the inside of the shaft barrel A7, the inside of the shaft barrel B9 and the limiting bottom plate 13 and is in threaded connection with the bottom lock head 10.
As shown in fig. 5, an entertainment toy composed of a rotary transmission mechanism comprises the rotary transmission mechanism and a rotary cover body 15, wherein the rotary transmission mechanism is provided by the invention, a rotary cover body matching groove 52 is formed in the outer part of a rotary driven disc 5, and a rotary poking block matched with the rotary cover body matching groove 52 is protruded on the inner side wall of the rotary cover body 15. The rotary cover body 15 covers the outside of the rotary transmission mechanism, the top of the rotary cover body 15 is in rotary fit with the top cap 1 of the rotary transmission mechanism, the top lock head 11 is positioned on the outer side of the top of the rotary cover body 15, and the rotary stirring block of the rotary cover body 15 is matched with the rotary cover body matching groove 52 arranged on the rotary driven disc 5.
When the rotary transmission mechanism is used, as shown in fig. 4, the rotary transmission mechanism is installed, the top cap 1 is pressed and acted by external force (such as a person pressing the top cap 1 by fingers), the top cap 1 firstly drives the driving rotary core assembly to move downwards, namely the driving rotary core 3 and the three rotary core gears 4 move downwards, the three rotary core gears 4 respectively drive the three driven disc gears 6 of the rotary driven assembly to move, and meanwhile, the rotary driven disc 5 is driven to compress the spring 12, so that the rotary driven assembly is driven to rotate one third of a circle, and the specific working principle is as follows: the three rotating core gears 4 move downwards respectively, the driving tooth surfaces 41 of the rotating core gears 4 are matched with the driven tooth surfaces 61 of the driven disc gears 6, as shown in fig. 1, when the rotating core gears 4 move downwards, the driving tooth surfaces 41 of the rotating core gears 4 move from the highest point of the tooth surfaces (namely the lowest point of the horizontal height) to the lowest point of the tooth surfaces (namely the highest point of the horizontal height), and as the rotating core gears 4 move downwards only, under the mutual gear meshing action of the rotating core gears 4 and the driven disc gears 6, the rotating core 3 drives the rotary driven disc 5 to rotate for one third circle outside the shaft barrel A7. Then, the top cap driving tooth surface 14 of the top cap 1 also drives the three driven disc gears 6 to rotate, or the top cap driving tooth surface 14 of the top cap 1 plays a role in reinforcing the rotation of the rotary driven disc 5, so that the reverse rotation phenomenon caused by that the rotary driven disc 5 does not rotate to one of three circles can be prevented. When the rotary driven disc 5 rotates outside the shaft barrel A7 for one of three times, and the external force is cancelled, the rotary driven assembly and the driving rotary core assembly ascend and reset under the action of the spring 12, and the top cap 1 is driven to ascend and reset for the next pressing rotary motion. Of course, the driving rotary core assembly of the invention can also be provided with four rotary core gears 4, and the rotary driven assembly is also provided with four driven disc gears 6, so that the rotary driven assembly can be driven to rotate by one quarter turn under the structure; similarly, the driving rotary core assembly of the present invention may also have M rotary core gears 4, while the rotary driven assembly has M driven disc gears 6.
In practical application, cultural or entertainment elements such as pictures and poems can be coated outside the rotary cover body 15, for example, three drama facial makeup are uniformly coated or stuck on the rotary cover body 15 in the embodiment, the rotary driven assembly is driven to rotate one third of a circle by pressing the top cap 1 once through external force, and meanwhile, the rotary driven disc 5 of the rotary driven assembly drives the rotary cover body 15 to rotate one third of a circle, so that three drama facial makeup on the rotary cover body 15 are displayed in a sequential rotation mode, and the effect of changing faces of dramas is achieved.
The rotary driven disc type rotary driving mechanism comprises a rotary driving mechanism and a rotary cover body 15, wherein the rotary driving mechanism is provided by the invention, a rotary cover body matching groove 52 is formed in the outer part of the rotary driven disc 5, and a rotary poking block matched with the rotary cover body matching groove 52 is protruded on the inner side wall of the rotary cover body 15. The rotary cover body 15 covers the outside of the rotary transmission mechanism, the top of the rotary cover body 15 is in rotary fit with the top cap 1 of the rotary transmission mechanism, the top lock head 11 is positioned at the outer side of the top of the rotary cover body 15, and the rotary stirring block of the rotary cover body 15 is matched with the rotary cover body matching groove 52 arranged on the rotary driven disc 5
Example two
As shown in fig. 1 to 6, an entertainment toy comprising a rotary transmission mechanism, a rotary cover 15 and an outer casing 16, wherein the rotary transmission mechanism is the rotary transmission mechanism provided by the invention, the rotary transmission mechanism has the same structure as the rotary transmission mechanism of the first embodiment, a rotary cover matching groove 52 is formed on the outside of a rotary driven disc 5, and a rotary toggle block matched with the rotary cover matching groove 52 is protruded on the inner side wall of the rotary cover 15. The rotary cover body 15 covers the outside of the rotary transmission mechanism, the top of the rotary cover body 15 is in rotary fit with the top cap 1 of the rotary transmission mechanism, the top lock head 11 is positioned on the outer side of the top of the rotary cover body 15, and the rotary stirring block of the rotary cover body 15 is matched with the rotary cover body matching groove 52 arranged on the rotary driven disc 5. The outer shell 16 is sleeved outside the rotary cover 15, the outer shell 16 is provided with a face opening, the top of the outer shell 16 is provided with a lock head passing hole matched with a top lock head, and a lock head cap 111 is sleeved outside the top lock head 11. In actual manufacturing, the outer shell 16 may be manufactured in the shape of a helmet and the rotating shell 15 in the shape of a human face.
In practical application, cultural or entertainment elements such as pictures and poems can be painted outside the rotary cover body 15, for example, three drama facial makeup are painted or stuck on the rotary cover body 15 uniformly in this embodiment, the rotary driven assembly is driven to rotate one third of a circle by pressing the top cap 1 once through external force, and meanwhile, the rotary driven disc 5 of the rotary driven assembly drives the rotary cover body 15 to rotate one third of a circle, so that three drama facial makeup on the rotary cover body 15 are displayed in sequence at the face opening of the outer shell 16, and the effect of drama face changing is achieved.
In this embodiment, the shaft barrel B9 or the limiting bottom plate 13 may be further provided with a human body structure, so that the whole toy shape may be a shape of an adult, such as a shape of a toy with a figure of a guan-gong, so as to achieve a stronger entertainment effect and enhance the sense of proximity of the entertainment toy.
The foregoing description of the preferred embodiments of the invention is not intended to be limiting, but rather is intended to cover all modifications, equivalents, and alternatives falling within the spirit and principles of the invention.

Claims (6)

1. A rotary transmission mechanism, characterized in that: the novel rotary driven assembly comprises a top cap (1), a main shaft (2), a driving rotary core assembly, a rotary driven assembly, a shaft barrel A (7), a chassis (8), a shaft barrel B (9) and a limiting bottom plate (13), wherein the top of the main shaft (2) is fixedly connected with the top of the top cap (1), guide rails (21) are arranged on the main shaft (2) in a protruding mode along the height direction, a rotary core center hole (31) is formed in the center of the driving rotary core assembly, the driving rotary core assembly comprises a driving rotary core (3) and at least three rotary core gears (4), all rotary core gears (4) are fixedly arranged at the bottom of the driving rotary core (3), a driven disc center hole (51) is formed in the center of the rotary driven assembly, the rotary driven assembly comprises a rotary driven disc (5) and at least three driven disc gears (6), all the driven disc gears (6) are fixedly arranged at the top of the rotary driven disc (5), the number of the driven disc gears (6) is equal to that of the rotary core gears (4), and driving tooth surfaces (41) of the rotary core gears (4) are matched with driven tooth surfaces (61) of the driven disc gears (6); the bottom of the shaft barrel B (9) is fixedly provided with a limiting bottom plate (13), the outside of the shaft barrel B (9) is sleeved with a chassis (8), the limiting bottom plate (13) is installed below the chassis (8) in a limiting mode, the top of the shaft barrel B (9) is fixedly provided with a shaft barrel A (7), the whole outside of the shaft barrel A (7) and the whole outside of the shaft barrel B (9) are sleeved with springs (12), and the springs (12) are located between the top of the chassis (8) and the bottom of the rotary driven disc (5); wedge-shaped lugs (72) are arranged on the outer side wall of the top of the shaft barrel A (7), and lug matching positioning grooves (32) matched with the wedge-shaped lugs (72) are formed in the top of the driving rotating core (3); the top of the shaft barrel A (7) sequentially passes through the driven disc center hole (51) and the rotating core center hole (31), and a wedge-shaped lug (72) at the top of the shaft barrel A (7) is matched, positioned and installed in a lug matched positioning groove (32) of the driving rotating core (3); the spindle comprises a spindle body, a spindle body (2) and a limiting bottom plate (13), wherein a guide rail groove A (73) matched with a guide rail (21) is formed in the spindle body A (7), a guide rail groove B matched with the guide rail (21) is formed in the spindle body B (9), and the bottom of the spindle body (2) sequentially penetrates through the spindle body A (7) and the spindle body B (9) and is fixed with the top of the limiting bottom plate (13); the top cap (1) is internally provided with a top cap cavity, the driving rotary core assembly is arranged in the top cap cavity of the top cap (1) in a matched mode, all rotary core gears (4) of the driving rotary core assembly extend out of the top cap (1), the bottom of the top cap (1) is provided with a top cap driving tooth surface (14), and the top cap driving tooth surface (14) is in driving fit with a driven tooth surface (61) of the driven disc gear (6); the spindle (2) is provided with two guide rails (21) in a protruding mode along the height direction, two guide rail grooves A (73) are formed in the spindle barrel A (7), the two guide rail grooves A (73) are in one-to-one sliding fit with the two guide rails (21), two guide rail grooves B are formed in the spindle barrel B (9), the two guide rail grooves B are in one-to-one sliding fit with the two guide rails (21), two wedge-shaped protruding blocks (72) are arranged on the outer side wall of the top of the spindle barrel A (7), and two protruding block matching positioning grooves (32) are formed in the top of the driving rotating core (3); the shaft barrel A (7) is provided with two elastic notches (71) along the height direction.
2. A rotary actuator as defined in claim 1, wherein: the number of the rotating core gears (4) in the driving rotating core assembly is three, and the number of the driven disc gears (6) of the rotary driven assembly is three.
3. A rotary actuator as defined in claim 1, wherein: the top cap (1) top center is opened there is the central shaft hole, main shaft (2) top has the location axle, the location axle of main shaft (2) passes the central shaft hole of top cap (1) and through the spacing locking of top tapered end (11), top tapered end (11) are located top cap (1) outside, the location axle threaded connection of top tapered end (11) and main shaft (2).
4. A rotary actuator as defined in claim 1, wherein: the novel spindle is characterized by further comprising a bottom lock head (10), wherein the bottom lock head (10) is positioned below the limiting bottom plate (13), and the bottom of the spindle (2) sequentially penetrates through the inside of the spindle barrel A (7), the inside of the spindle barrel B (9) and the limiting bottom plate (13) and is in threaded connection with the bottom lock head (10).
5. An amusement toy constituted by the rotary transmission mechanism according to any one of claims 1 to 4, characterized in that: the rotary driven disc (5) is provided with a rotary cover body matching groove (52) at the outer part, and a rotary poking block matched with the rotary cover body matching groove (52) is protruded on the inner side wall of the rotary cover body (15); the rotary cover body (15) covers the outside of the rotary transmission mechanism, the top of the rotary cover body (15) is in rotary fit with a top cap (1) of the rotary transmission mechanism, a top lock head (11) is positioned on the outer side of the top of the rotary cover body (15), and a rotary stirring block of the rotary cover body (15) is matched with a rotary cover body matching groove (52) of the rotary driven disc (5).
6. An amusement toy according to claim 5, wherein: the novel rotary lock is characterized by further comprising an outer shell (16), wherein the outer shell (16) is sleeved outside the rotary cover body (15), the outer shell (16) is provided with a face opening, the top of the outer shell (16) is provided with a lock head passing hole matched with a top lock head, and the outer part of the top lock head (11) is sleeved with a lock head cap (111).
CN201811630837.9A 2018-12-29 2018-12-29 Rotary transmission mechanism and entertainment toy formed by same Active CN109529382B (en)

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CN109529382B true CN109529382B (en) 2024-03-19

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2317918Y (en) * 1997-12-17 1999-05-12 大洋玩具工业股份有限公司 Face-changeable toy
US20030101860A1 (en) * 2001-11-30 2003-06-05 Yu-Kai Chen Music box transmitting mechanism
CN203507512U (en) * 2013-10-11 2014-04-02 许阳威 Multifunctional face-changing doll
CN204352536U (en) * 2014-12-19 2015-05-27 谭军 Face Changing male earner
CN207462666U (en) * 2017-10-25 2018-06-08 佛冈县万兴电子塑胶制品有限公司 A kind of upper nail equipment of the rotatable head of toy
CN209378460U (en) * 2018-12-29 2019-09-13 池跃林 A kind of rotating actuator and the games for play constituted

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2317918Y (en) * 1997-12-17 1999-05-12 大洋玩具工业股份有限公司 Face-changeable toy
US20030101860A1 (en) * 2001-11-30 2003-06-05 Yu-Kai Chen Music box transmitting mechanism
CN203507512U (en) * 2013-10-11 2014-04-02 许阳威 Multifunctional face-changing doll
CN204352536U (en) * 2014-12-19 2015-05-27 谭军 Face Changing male earner
CN207462666U (en) * 2017-10-25 2018-06-08 佛冈县万兴电子塑胶制品有限公司 A kind of upper nail equipment of the rotatable head of toy
CN209378460U (en) * 2018-12-29 2019-09-13 池跃林 A kind of rotating actuator and the games for play constituted

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