Dynamic decorative ornament with double working modes
Through the dynamic decorative ornament design of dual working modes, the different speeds of the outer sliding tube and the inner sliding tube are used to reciprocate and move back and forth, combined with the telescopic rod and movable lanyard, the problems of exposed transmission structure and single working mode are solved, achieving the concealment of the transmission structure and rich dynamic effects.
Patent Information
- Application Number
- CN202410339964.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-25
- Publication Date
- 2025-08-19
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing cartoon animal ornament transmission structure with wings is exposed, and the working mode is single, lacking room for improvement.
The dynamic decorative ornament design adopts a dual-working mode. The reciprocating movement of the outer sliding tube and the inner sliding tube drives the up and down movement of the main body and wings of the decorative part. Combined with the telescopic rod and the movable lanyard, the transmission structure is hidden and rich, and the driving seat can be suspended or placed for use.
It realizes the concealment and diversity of the transmission structure, enriches the dynamic effect, enhances the decorativeness, and reduces the overall volume of the drive seat, adapting to different usage scenarios.
Smart Images

Figure CN120503532A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of home decoration ornaments, and in particular relates to dynamic decorative ornaments in the form of animal cartoons. Background Art
[0002] The dynamic ornament toys currently sold on short video platforms have good ornamental value and are very attractive to viewers when sold through live broadcasts. Most of the ornaments are designed in the form of bionic cartoon animals, such as cartoon flying pigs with wings, swimming fish, jellyfish, etc. At present, most of these ornaments are made of solid wood and have a relatively simple structure. For example, the cartoon flying pig is connected to the wings by two struts on the base, and an eccentric wheel is set on the base to drive a connecting rod connected to the flying pig body to perform reciprocating motion, so that the flying pig body moves up and down while driving the wings to swing up and down, thereby achieving a dynamic effect similar to flying. The disadvantage of this type of decorative ornaments is that the transmission components are completely exposed to the outside and the working mode is single, so there is room for further improvement. Summary of the Invention
[0003] The problem to be solved by the present invention is to address the shortcomings of existing cartoon animal ornaments with wings and provide a dynamic decorative ornament with a concealed transmission structure and two different working modes.
[0004] To achieve the objectives of the present invention, the following technical solutions are employed: a dual-working-mode dynamic decorative ornament comprising a decorative body, the decorative body being in the form of a cartoon pig, horse, bird, insect, or the like, symmetrically arranged wings being rotatably connected to two sides of the decorative body, and a linkage slider being vertically slidably mounted within the decorative body, the linkage slider being in transmission connection with the wings on both sides; The driving seat is cylindrical in shape as a whole, an outer sliding tube is slidably mounted in the driving seat, and an inner sliding tube is coaxially slidably connected in the outer sliding tube; When the decorative element body is in the first working mode, the outer sliding tube and the lower end of the decorative element body are relatively fixedly connected via a detachable outer connecting tube, and the inner sliding tube and the linkage slider are relatively fixedly connected via a detachable inner connecting rod; The drive seat is provided with a drive assembly that drives the outer sliding tube and the inner sliding tube to reciprocate simultaneously, and the outer sliding tube and the inner sliding tube have the same moving direction but different moving speeds, so that when the main body of the decorative part moves upward, the wings flap downward, and when the main body of the decorative part moves downward, the wings flap upward.
[0005] As a preferred solution: a hook is connected to the side of the driving seat, and a telescopic rod capable of reciprocating movement driven by a driving assembly is slidably connected to the side of the driving seat away from the hook; When the decorative member body is in the second working mode, the telescopic rod is in a vertical state, the decorative member body is relatively fixedly connected to a position on the driving seat near the telescopic rod via a fixed hanging rope, and the telescopic rod is relatively fixedly connected to the linkage slider via a movable hanging rope, and the movable hanging rope passes through the outer shell of the decorative member body; An elastic member is connected between the linkage slider and the main body of the decorative member to cause the linkage slider to move downward; When the telescopic rod moves upward, the linkage slider moves upward through the movable hanging rope, thereby driving the wings to flap downward. When the telescopic rod moves downward, the linkage slider moves downward under the action of the elastic member, thereby driving the wings to flap upward.
[0006] As a preferred solution: a first driven gear is rotatably installed in the driving seat, and the upper end face of the first driven gear is provided with an outer transmission wall and an inner transmission wall coaxially arranged with the first driven gear, the lower end of the outer sliding tube is slidably connected to the upper end of the outer transmission wall, and the lower end of the inner sliding tube is slidably connected to the upper end of the inner transmission wall.
[0007] As a preferred solution: a reduction motor is installed in the driving seat, and the output shaft of the reduction motor is coaxially fixedly connected to a driving gear, and the driving gear is meshed and connected with the first driven gear.
[0008] As a preferred solution: the drive seat includes a hollow circular groove-shaped shell, and a cover body fixedly connected to the open end of the shell, the first driven gear is rotatably installed in the bottom of the cover body, and a sliding tube is provided in the middle of the shell that is slidably connected to the outer sliding tube. After the shell and the cover body are connected in place, the outer sliding tube is confined between the sliding tube and the outer transmission wall, and the inner sliding tube is confined between the outer sliding tube and the inner transmission wall.
[0009] As a preferred solution: a motor mounting seat is provided in the shell, and the reduction motor is fixedly mounted on the motor mounting seat. After the shell and the cover are connected in place, the driving gear on the output shaft of the reduction motor just meshes with the first driven gear.
[0010] As a preferred solution, a second driven gear is rotatably mounted in the driving seat, one end of the telescopic rod is provided with a waist-shaped hole, and an eccentric column is provided at an eccentric position of the second driven gear that cooperates with the waist-shaped hole to connect with the eccentric hole. When the second driven gear rotates, it drives the telescopic rod to reciprocate. The output shaft of the reduction motor is rotatably connected to a swing bracket, the swing bracket is rotatably connected to a transmission gear, and the transmission gear is meshed with the driving gear; A control assembly is further provided in the driving seat. When the end of the telescopic rod away from the waist-shaped hole is vertically downward, the control assembly enables the transmission gear to remain in meshing with the second driven gear.
[0011] As a preferred solution: the control component includes a counterweight rod rotatably installed in the driving seat, one end of the counterweight rod is fixedly connected to a counterweight block, a strip hole is provided on the swing bracket, and the end of the counterweight rod away from the counterweight block is provided with a sliding column slidably connected to the strip hole. When the end of the telescopic rod away from the waist-shaped hole is vertically downward, the swing bracket rotates toward the second transmission gear under the action of the gravity of the counterweight block, so that the transmission gear remains engaged with the second transmission gear.
[0012] As a preferred solution: the decorative part body includes a main body front part, a main body middle part and a main body rear part connected in sequence, the main body middle part is provided with a longitudinal slide groove that is slidably connected to the linkage slider, and the linkage slider is provided with a driven slider that is slidably connected to the longitudinal slide groove. When the decorative part body is in the first working mode, the upper end of the inner connecting rod is against or relatively fixedly connected to the driven slider.
[0013] As a preferred solution, a mounting plate is provided in the rear portion of the main body, a first winding wheel is rotatably connected to the mounting plate, one end of the fixed hanging rope is fixedly connected to the first winding wheel, and when the decorative part main body is in the first working mode, the fixed hanging rope is wound around the first winding wheel except for an end portion exposed at the upper end of the decorative part main body; A second winding wheel is rotatably mounted on the linkage slider, one end of the movable hanging rope is fixedly connected to the second winding wheel, and when the decorative part body is in the first working mode, except for the end portion of the movable hanging rope exposed at the upper end of the decorative part body, the rest of the movable hanging rope is wound on the second winding wheel.
[0014] As a preferred solution: the rear part of the decorative part body is rotatably connected to a first rotating knob and a second rotating knob, the middle of the first rotating knob is fixedly connected to the middle of the first winding wheel through an elastic column, so that the first rotating knob can drive the first winding wheel to rotate; the middle of the second rotating knob is fixedly connected to the middle of the second winding wheel through an elastic column.
[0015] Compared with the prior art, the beneficial effect of the present invention is that the external connecting tube and the internal connecting rod located in the external connecting tube are used to drive the up and down movement of the decorative part body and the up and down flapping of the wing part respectively. In particular, when the external connecting tube and the internal connecting rod are made of colorless and transparent materials, the transmission components can be hidden to the maximum extent. Compared with the dynamic ornaments in the prior art, the appearance is simpler, and the decorative part body and the wing part can be made into richer designs according to the needs of the shape.
[0016] More importantly, the driving seat of the present invention can be placed on a horizontal surface, driving the up and down movement of the decorative part body and the up and down flapping of the wings through the external connecting tube and the internal connecting rod, or it can be hung in mid-air through a hook, and the decorative part body can be hung by a fixed hanging rope, and the wings can be driven to flap up and down through the movable hanging rope.
[0017] Furthermore, in the first operating mode, the fixed lanyard can be wound onto the first winding reel, and the movable lanyard can be wound onto the second winding reel. Only the knotted ends of the fixed and movable lanyards are visible outside the decorative element. Furthermore, the first and second rotating knobs for driving the first and second winding reels can be shaped like the legs and feet of cartoon-like animals, making them more discreet and eliminating the need for obtrusive knobs.
[0018] Furthermore, thanks to the design of a transmission gear mounted on the swing bracket, in conjunction with the counterweight rod and counterweight, the power from the reduction motor is transmitted via the transmission gear to the second driven gear only when the drive base is in the second operating mode, thereby driving the reciprocating motion of the telescopic rod. When the drive base is horizontally positioned, i.e., in the first operating mode, the counterweight is inactive and cannot rely on gravity to maintain engagement between the transmission gear and the second driven gear. Therefore, the telescopic rod, which is inactive in this operating mode, does not reciprocate and can be pressed into the drive base and held in place. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a schematic diagram of the dynamic decorative ornament in the first working mode.
[0020] Figure 2 This is a schematic diagram of the dynamic decorative ornament in the second working mode.
[0021] Figure 3 It is a schematic diagram of the transmission structure of the wing part and the linkage slider.
[0022] Figure 4 It is a schematic diagram of the installation position of the second winding wheel.
[0023] Figure 5 It is a schematic diagram of the installation position of the first winding wheel.
[0024] Figure 6 This is a schematic diagram of the internal structure of the drive seat.
[0025] Figure 7 It is a schematic diagram of the internal structure of the drive seat shell.
[0026] Figure 8 It is a transmission diagram of the outer sliding tube, the inner sliding tube and the first driven gear.
[0027] Figure 9 It is a schematic diagram showing that the transmission gear is in meshing state with the second driven gear under the action of the counterweight.
[0028] Figure 10 It is a schematic diagram of the transmission structure of the counterweight rod and the swing bracket.
[0029] In the figure: 100-driving seat; 200-decorating part body; 300-external connecting tube; 400-fixed hanging rope; 500-movable hanging rope; 600-inner connecting rod; 700-hook; 10-housing; 101-sliding tube; 102-first hanging rope portion; 103-motor mounting seat; 104-telescopic rod perforation; 11-cover; 12-reduction motor; 13-driving gear; 14-first driven gear; 141-external transmission wall; 142-inner transmission wall; 15-external sliding tube; 16-inner sliding tube; 17-swing bracket ;171-bar hole;18-transmission gear;91-telescopic rod;911-second hanging rope part;92-second driven gear;93-counterweight rod;931-sliding column;94-counterweight block;20-front part of the main body;21-middle part of the main body;211-longitudinal slide groove;22-rear part of the main body;221-first rotating knob;222-second rotating knob;223-mounting plate;224-first winding wheel;23-wing part;231-inner extension rod;24-linking slider;241-driven slider;242-second winding wheel. DETAILED DESCRIPTION
[0030] according to Figure 1 As shown, this embodiment is a dynamic decorative ornament with dual working modes, including a decorative body 200, which is a cartoon-shaped pig, horse, bird, insect, etc. The decorative body in this embodiment is a cartoon-shaped flying pig. The decorative body is rotatably connected to the wings 23 on both sides, and a linkage slider 24 is installed in the decorative body in a vertical direction. The linkage slider is connected to the wings on both sides. Figure 3 As shown, the wings are equipped with an extension rod 231 on the side facing the main body of the decorative element. The upper end of the linkage slider is provided with a transverse slot, and the end of the extension rod is provided with a cylindrical slider that slidably engages with the slot. As the linkage slider moves up and down, the cylindrical slider slides back and forth within the slot, driving the wings to flap up and down, simulating the visual effect of flying.
[0031] The driving seat is cylindrical in shape as a whole. An outer sliding tube 15 is slidably installed in the driving seat. An inner sliding tube 16 is coaxially slidably connected in the outer sliding tube.
[0032] The main body of the decorative element is in the Figure 1In the first working mode shown, the outer sliding tube is relatively fixedly connected to the lower end of the decorative component body via a detachable outer connecting tube, and the inner sliding tube is relatively fixedly connected to the linkage slider via a detachable inner connecting rod.
[0033] The drive seat is provided with a drive assembly that drives the outer sliding tube 15 and the inner sliding tube 16 to reciprocate simultaneously, and the outer sliding tube and the inner sliding tube have the same moving direction but different moving speeds, so that when the main body of the decorative part moves upward, the wings flap downward, and when the main body of the decorative part moves downward, the wings flap upward.
[0034] Specific combination Figure 6 、 7 As shown in FIG. 8 , a first driven gear 14 is rotatably mounted in the driving seat. The upper end surface of the first driven gear is provided with an outer transmission wall 141 and an inner transmission wall 142 coaxially arranged with the first driven gear. The lower end of the outer sliding tube is slidably connected to the upper end of the outer transmission wall, and the lower end of the inner sliding tube is slidably connected to the upper end of the inner transmission wall. The outer transmission wall and the inner transmission wall are inclined track surfaces or wavy track surfaces. In this embodiment, the outer transmission wall and the inner transmission wall are Figure 6 The track surface is tilted relative to the horizontal plane, that is, the first driven gear drives the outer sliding tube 15 and the inner sliding tube 16 to reciprocate up and down once when it rotates one circle.
[0035] The drive seat is provided with a reduction motor 12, the output shaft of which is coaxially fixedly connected to a drive gear 13, which is meshed with the first driven gear. The reduction motor, the drive gear and the first driven gear constitute the drive assembly or a part of the drive assembly.
[0036] The drive seat includes a hollow circular groove-shaped shell 10 and a cover body 11 fixedly connected to the open end of the shell. The first driven gear is rotatably mounted on the bottom of the cover body. The bottom of the cover body is provided with a rotating shaft or bearing rotatably connected to the first driven gear. A sliding tube 101 slidably connected to the outer sliding tube is provided in the middle of the shell. After the shell and the cover body are connected in place, the outer sliding tube is confined between the sliding tube and the outer transmission wall, and the inner sliding tube is confined between the outer sliding tube and the inner transmission wall. Figure 8 The outer sliding tube has a first rib on its lower outer wall that is slidably connected to the sliding tube, and the inner sliding tube has a second rib on its lower outer wall that is slidably connected to the outer sliding tube. The first rib cooperates with a sliding groove on the sliding tube to restrict the outer sliding tube from upwardly separating from the sliding tube, while the second rib cooperates with a sliding groove on the outer sliding tube to restrict the inner sliding tube from upwardly separating from the outer sliding tube. The "upward" here refers to the upward direction when the drive seat is placed horizontally.
[0037] like Figure 7As shown, the housing is provided with a motor mounting base 103, and the reduction motor is fixedly mounted on the motor mounting base. After the housing and the cover are connected in place, the drive gear on the reduction motor output shaft meshes with the first driven gear. The reduction motor can be powered by a battery, a solar cell mounted on the outer wall of the drive base, or a USB cable. In this embodiment, a circular solar cell panel can be mounted on the upper surface of the drive base to power the reduction motor.
[0038] like Figure 2 As shown, a hook 700 is connected to the side of the drive seat, and a telescopic rod 91 that can move back and forth and is driven by a driving assembly is slidably connected to the side of the drive seat away from the hook; a telescopic rod through-hole 104 is provided at the position of the telescopic rod on the side wall of the drive seat.
[0039] The main body of the decorative part is Figure 2 In the second working mode shown, the telescopic rod is in a vertical state, the decorative part body and the position of the driving seat near the telescopic rod are relatively fixedly connected through a fixed hanging rope 400, and the telescopic rod and the linkage slider are relatively fixedly connected through a movable hanging rope 500, and the movable hanging rope passes through the outer shell of the decorative part body.
[0040] Specifically, a first hanging rope portion 102 is provided on the shell near the telescopic rod, and a second hanging rope portion 911 is provided at the lower end of the telescopic rod. The ends of the fixed hanging rope and the movable hanging rope are knotted to form a hanging ring, so that it is easy to hang on the corresponding hanging rope portion and also easy to remove from the hanging rope portion.
[0041] An elastic member is connected between the linkage slider and the main body of the decorative member to cause the linkage slider to move downward. The elastic member can be Figure 3 The tension spring shown can also be a rubber band.
[0042] When the telescopic rod moves upward, the linkage slider moves upward through the movable hanging rope, thereby driving the wings to flap downward. When the telescopic rod moves downward, the linkage slider moves downward under the action of the elastic member, thereby driving the wings to flap upward.
[0043] Furthermore, when the up and down movement range of the telescopic rod is designed to be greater than the movement range of the linkage slider, when the linkage slider moves upward to the limit position, the telescopic rod continues to move upward for a distance, that is, the linkage slider will drive the decorative part body as a whole to move upward for a distance; when the telescopic rod reaches the upper limit position and moves downward, the decorative part body as a whole moves downward first, until the decorative part body is pulled by the fixed hanging rope, and the linkage slider moves downward under the action of the elastic part.
[0044] like Figure 9 、 Figure 10As shown, a second driven gear 92 is rotatably installed in the driving seat, a waist-shaped hole is provided at one end of the telescopic rod, and an eccentric column is provided at the eccentric position of the second driven gear that is connected to the waist-shaped hole. When the second driven gear rotates, it drives the telescopic rod to move back and forth.
[0045] The output shaft of the reduction motor is rotatably connected to a swing bracket 17, which is rotatably connected to a transmission gear 18, which meshes with the drive gear. A control assembly is also provided within the drive base, which maintains the transmission gear in mesh with the second driven gear when the end of the telescopic rod, away from the waist-shaped hole, is vertically downward.
[0046] Specifically, the control component includes a counterweight rod 93 rotatably installed in the drive seat, one end of the counterweight rod is fixedly connected to a counterweight block 94, a bar hole 171 is provided on the swing bracket, and the end of the counterweight rod away from the counterweight block is provided with a sliding column 931 slidingly connected to the bar hole. When the end of the telescopic rod away from the waist-shaped hole is vertically downward, the swing bracket rotates toward the second transmission gear under the action of the gravity of the counterweight block, so that the transmission gear remains engaged with the second transmission gear.
[0047] It should be noted that if Figure 9 As shown, the rotation direction of the reduction motor is set to clockwise, so that when the driving seat is placed horizontally, the force exerted by the counterweight on the swing bracket is small. When the reduction motor rotates, it drives the driving gear to exert a clockwise force on the transmission gear together with the swing bracket, causing the transmission gear to move away from the second driven gear.
[0048] The counterweight and the reduction motor are respectively located on both sides of the line connecting the first driven gear and the second driven gear shaft, so that the space in the drive seat is fully utilized. If the counterweight is directly arranged on one side of the swing bracket, the volume of the drive seat will be relatively increased.
[0049] like Figure 4 As shown, the decorative part body includes a main body front part 20, a main body middle part 21 and a main body rear part 22 connected in sequence, the main body middle part is provided with a longitudinal slide groove 211 slidably connected to the linkage slider, and the linkage slider is provided with a driven slider 241 slidably connected to the longitudinal slide groove. When the decorative part body is in the first working mode, the upper end of the inner connecting rod is against or relatively fixedly connected to the driven slider.
[0050] like Figure 5As shown, a mounting plate 223 is provided in the rear part of the main body, and a first winding wheel 224 is rotatably connected to the mounting plate. One end of the fixed hanging rope is fixedly connected to the first winding wheel, and when the decorative part main body is in the first working mode, except for the end of the fixed hanging rope exposed at the upper end of the decorative part main body, the rest of the fixed hanging rope is wound on the first winding wheel; when the present invention is in the second working mode, the end of the fixed hanging rope located outside the decorative part main body is pulled, and the fixed hanging rope is released from the first winding wheel until the fixed hanging rope can no longer be pulled, and the fixed hanging rope is equivalent to being relatively fixedly connected to the decorative part main body.
[0051] A second winding wheel 242 is rotatably mounted on the linkage slider, that is, the linkage slider is located above the driven slider and is provided with a rotating shaft rotatably connected to the second winding wheel, and the rotating shaft passes through the longitudinal slide. One end of the movable hanging rope is fixedly connected to the second winding wheel, and when the decorative part body is in the first working mode, the movable hanging rope is wound around the second winding wheel except for the end portion exposed at the upper end of the decorative part body. When the present invention is in the second working mode, the end of the movable hanging rope located outside the decorative part body is pulled, and the movable hanging rope is released from the second winding wheel until the movable hanging rope can no longer be pulled, at which point the movable hanging rope is equivalent to being fixedly connected to the linkage slider.
[0052] The rear part of the decorative part is rotatably connected to a first rotating knob 221 and a second rotating knob 222. The middle of the first rotating knob is fixedly connected to the middle of the first winding wheel through an elastic column, so that the first rotating knob can drive the first winding wheel to rotate; the middle of the second rotating knob is fixedly connected to the middle of the second winding wheel through an elastic column. Figure 3 、 Figure 4 As shown, in this embodiment, the first and second rotating knobs can be located on the hind legs of the cartoon flying pig, which is highly concealed and eliminates the need for obtrusive rotating knobs. Furthermore, the elastic column can be made of a flexible TPU wire with a wire diameter of 1.5mm-5mm. Only the ends need to be fixed to the corresponding rotating knobs and winding reels using adhesive or fasteners such as screws.
[0053] In addition, if Figure 7 As shown, a groove for receiving the hook 700 is provided at the bottom of the cover body, and the lower end of the hook is fixedly connected to the side of the driving seat through a flexible rope or belt.
[0054] The present invention is very simple to use. To use the first operating mode, simply insert the outer connecting tube 300 onto the outer sliding tube 15, insert the inner connecting rod 600 onto the inner sliding tube 16, and then insert the connector at the lower end of the decorative part body into the upper end of the outer connecting tube. Once connected, the upper end of the inner connecting rod abuts against the lower end of the driven slider on the linkage slider.
[0055] The overall gravity of the decorative part body is designed to be significantly greater than the elastic force of the elastic part, so that the external connecting tube and the external sliding tube and the connecting head at the lower end of the decorative part body do not need to be connected with threads or rotating clips, which means that the decorative part body can be placed directly on the external connecting tube, so the installation and disassembly of the external connecting tube and the internal connecting rod are very convenient.
[0056] When the present invention needs to be switched to the second working mode, it is only necessary to remove the external connecting tube and the internal connecting rod, pull out the fixed hanging rope and the movable hanging rope, hang the hanging rings at the ends of the two on the first hanging rope part and the second hanging rope part respectively, take the hook out of the groove at the bottom of the cover body, and hang it on the hanging rod, ensuring that the main body of the decorative part will not collide with the wall or other objects to ensure its normal operation.
Claims
1. A dynamic decorative ornament with dual working modes, characterized by: It comprises a decoration body (200), with symmetrically arranged wings (23) being rotatably connected on both sides of the decoration body, and a linkage slider (24) being slidably mounted in the decoration body along a vertical direction, the linkage slider being transmission-connected to the wings on both sides; The driving seat is cylindrical in shape as a whole, an outer sliding tube (15) is slidably mounted in the driving seat, and an inner sliding tube (16) is coaxially slidably connected in the outer sliding tube; When the decorative part body is in the first working mode, the outer sliding tube and the lower end of the decorative part body are relatively fixedly connected via a detachable outer connecting tube (300), and the inner sliding tube and the linkage slider are relatively fixedly connected via a detachable inner connecting rod (600); The drive seat is provided with a drive assembly that drives the outer sliding tube and the inner sliding tube to reciprocate simultaneously, and the outer sliding tube and the inner sliding tube have the same moving direction but different moving speeds, so that when the main body of the decorative part moves upward, the wings flap downward, and when the main body of the decorative part moves downward, the wings flap upward.
2. A dual-working-mode dynamic decorative ornament according to claim 1, characterized in that: A hook (700) is connected to the side of the drive seat, and a telescopic rod (91) capable of reciprocating movement and driven by a drive assembly is slidably connected to the side of the drive seat away from the hook; When the main body of the decorative part is in the second working mode, the telescopic rod is in a vertical state, the main body of the decorative part is relatively fixedly connected to a position on the driving seat near the telescopic rod via a fixed hanging rope (400), and the telescopic rod is relatively fixedly connected to the linkage slider via a movable hanging rope (500), and the movable hanging rope passes through the outer shell of the main body of the decorative part; An elastic member is connected between the linkage slider and the main body of the decorative member to cause the linkage slider to move downward; When the telescopic rod moves upward, the linkage slider moves upward through the movable hanging rope, thereby driving the wings to flap downward. When the telescopic rod moves downward, the linkage slider moves downward under the action of the elastic member, thereby driving the wings to flap upward.
3. The dual-working-mode dynamic decorative ornament according to claim 1, characterized in that: A first driven gear (14) is rotatably mounted in the drive seat, and an upper end surface of the first driven gear is provided with an outer transmission wall (141) and an inner transmission wall (142) coaxially arranged with the first driven gear. The lower end of the outer sliding tube is slidably connected to the upper end of the outer transmission wall, and the lower end of the inner sliding tube is slidably connected to the upper end of the inner transmission wall.
4. The dual-working-mode dynamic decorative ornament according to claim 3, characterized in that: A reduction motor (12) is installed in the drive seat, and the output shaft of the reduction motor is coaxially fixedly connected to a driving gear, and the driving gear is meshed with the first driven gear.
5. A dual-working-mode dynamic decorative ornament according to claim 3 or 4, characterized in that: The drive seat comprises a hollow circular groove-shaped shell (10) and a cover body (11) fixedly connected to the open end of the shell, the first driven gear is rotatably mounted on the bottom of the cover body, a sliding tube slidably connected to the outer sliding tube is provided in the middle of the shell, and after the shell and the cover body are connected in place, the outer sliding tube is confined between the sliding tube and the outer transmission wall, and the inner sliding tube is confined between the outer sliding tube and the inner transmission wall.
6. The dual-working-mode dynamic decorative ornament according to claim 5, characterized in that: A motor mounting seat (103) is provided in the housing, and the reduction motor is fixedly mounted on the motor mounting seat. After the housing and the cover are connected in place, the driving gear on the output shaft of the reduction motor is just engaged with the first driven gear.
7. The dual-working-mode dynamic decorative ornament according to claim 4, characterized in that: A second driven gear (92) is rotatably mounted in the drive seat, one end of the telescopic rod is provided with a waist-shaped hole, an eccentric column is provided at an eccentric position of the second driven gear and is connected to the waist-shaped hole, and when the second driven gear rotates, the telescopic rod is driven to move back and forth; The output shaft of the reduction motor is rotatably connected to a swing bracket (17), and the swing bracket is rotatably connected to a transmission gear (18), and the transmission gear is meshed with the driving gear; A control assembly is further provided in the driving seat. When the end of the telescopic rod away from the waist-shaped hole is vertically downward, the control assembly enables the transmission gear to remain in meshing with the second driven gear.
8. The dual-working-mode dynamic decorative ornament according to claim 7, characterized in that: The control assembly includes a counterweight rod (93) rotatably mounted in the drive seat, one end of the counterweight rod is fixedly connected to a counterweight block (94), a strip hole (171) is provided on the swing bracket, and an end of the counterweight rod away from the counterweight block is provided with a sliding column (931) slidably connected to the strip hole. When the end of the telescopic rod away from the waist-shaped hole is vertically downward, the swing bracket rotates toward the second transmission gear under the action of the weight of the counterweight block, so that the transmission gear remains engaged with the second transmission gear.
9. The dual-working-mode dynamic decorative ornament according to claim 2, characterized in that: The main body of the decorative part comprises a main body front part, a main body middle part and a main body rear part which are connected in sequence; the main body middle part is provided with a longitudinal slide groove (211) which is slidably connected to the linkage slider; the linkage slider is provided with a driven slider (241) which is slidably connected to the longitudinal slide groove; when the main body of the decorative part is in the first working mode, the upper end of the inner connecting rod is against or relatively fixedly connected to the driven slider.
10. The dual-working-mode dynamic decorative ornament according to claim 9, characterized in that: A mounting plate (223) is provided in the rear portion of the main body, a first winding wheel (224) is rotatably connected to the mounting plate, one end of the fixed hanging rope is fixedly connected to the first winding wheel, and when the decorative part main body is in the first working mode, the fixed hanging rope is wound on the first winding wheel except for the end portion exposed at the upper end of the decorative part main body; A second winding wheel (242) is rotatably mounted on the linkage slider, one end of the movable hanging rope is fixedly connected to the second winding wheel, and when the main body of the decorative part is in the first working mode, the movable hanging rope is wound on the second winding wheel except for the end portion exposed at the upper end of the main body of the decorative part.
11. The dual-working-mode dynamic decorative ornament according to claim 10, characterized in that: The rear portion of the main body of the decorative part is rotatably connected to a first rotating knob (221) and a second rotating knob (222); the middle of the first rotating knob is fixedly connected to the middle of the first winding wheel via an elastic column, so that the first rotating knob can drive the first winding wheel to rotate; the middle of the second rotating knob is fixedly connected to the middle of the second winding wheel via an elastic column.