Electric flapping wing landscape ground inserting structure

By designing an electric flapping wing landscape ground insertion structure, and using a motor-driven crank connecting rod mechanism to achieve the front and rear flapping wing movement of the swing wing, the problem of the inability to achieve the continuous and stable flapping effect in the prior art is solved, and the ornamentality and adaptability of the landscape are improved.

CN222845089UActive Publication Date: 2025-05-09GUANGDONG YUHAO ELECTRONICS CO LTD
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Patent Information

Application Number
CN202421993050.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-05-09
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

The existing flapping wing landscape ground insertion structure cannot achieve a sustainable and stable flapping effect, low power transmission efficiency, and unreasonable structural design lead to large friction and resistance of components, which cannot meet the needs of vivid and lasting dynamic landscapes.

Method used

An electric flapping wing landscape ground insertion structure is designed, and a motor drive crank connecting rod mechanism is used to realize the front and rear flapping wing action through the articulated seat and the articulated swing wing, and is fixed to the ground through the ground insertion rod, which simplifies the main structure of the movement and improves the energy transfer efficiency.

Benefits of technology

It achieves continuous stability of the swing wing action, reduces faults and maintenance costs, enhances the ornamentality and fun of the landscape, adapts to a variety of terrain and site, and is flexibly applied to different landscape environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of landscape components, in particular to an electric flapping wing landscape ground inserting structure. Comprising a machine core main body, a motor arranged in the machine core main body, a crank connecting rod mechanism in transmission connection with the motor, a hinge seat arranged in front of the machine core main body, a swing wing hinged to the hinge seat and in transmission connection with the crank connecting rod mechanism, and a ground inserting rod arranged at the lower end of the machine core main body, the structure is simple and practical, the product cost is reduced by adopting the simple movement main body, and the market price competitiveness is improved; a common up-and-down movement structure is changed into a front-and-back movement structure, so that the wing swinging action is more natural and vivid, the landscape ornamental value and interestingness are enhanced, and the attention of viewers is attracted; the wings can be provided with light or fluorescent powder, so that the lamp is bright and colorful when working at night, the night visual experience is enriched, and the landscape viewing time is prolonged; the stable movement main body structure and transmission connection ensure continuous and stable flapping action, reduce faults and reduce maintenance cost.
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Description

Technical Field

[0001] The utility model relates to the technical field of landscape components, in particular to an electric flapping-wing landscape ground plug structure. Background Art

[0002] In the field of modern landscape design, in order to increase the dynamics and attractiveness of the landscape, flapping-wing landscape ground plug structures have come into being. However, the existing flapping-wing landscape ground plug structures have significant defects in practical applications. Traditional flapping-wing landscape ground plug structures usually rely on simple mechanical transmission or a single power source, such as springs, springs, etc. These structures can show flapping movements in the initial stage, but due to limited energy reserves and the inability to continuously replenish them, they often lose the power of flapping wings in a short period of time and cannot achieve a continuous flapping effect. For example, some flapping-wing landscape ground plugs driven by springs can drive the wings to flap in the initial stage after tightening, but as the energy of the springs is gradually exhausted, the flapping movement quickly stops. There are also some structures that rely on spring drive. Although they can generate a certain amount of power at the moment of compression and release, the elastic potential energy of the spring decays rapidly, and it is difficult to maintain a long-term flapping movement. In addition, the existing flapping-wing landscape ground plug structures are inefficient in the process of power transmission and conversion, and there is a large amount of energy loss. Moreover, due to the unreasonable structural design, the friction and resistance between the components are large, which further weakens the effective use of power, resulting in the inability of flapping movements to be carried out continuously and stably. At the same time, the flapping wing reciprocating structures currently on the market basically move up and down, which cannot achieve a more intuitive simulation effect. This lack of continuous flapping effect greatly limits the application and effect of flapping wing landscape ground-inserted structures in landscape construction, and cannot meet people's needs for vivid and lasting dynamic landscapes.

[0003] Therefore, it is necessary to improve and innovate the existing flapping-wing landscape ground-inserted structure to achieve a sustained and stable flapping-wing effect. Utility Model Content

[0004] The utility model aims to overcome the above-mentioned shortcomings and provide a technical solution that can solve the above-mentioned problems.

[0005] An electric flapping-wing landscape ground plug structure includes a movement body, a motor arranged inside the movement body, a crank connecting rod mechanism transmission-connected to the motor, an articulated seat arranged in front of the movement body, a swing wing articulated to the articulated seat and transmission-connected to the crank connecting rod mechanism, and a ground plug rod arranged at the lower end of the movement body.

[0006] Preferably, the crank-connecting rod mechanism includes an eccentric wheel connected to the motor power, a push-pull member slidably connected to the inside of the movement body, and a connecting rod hinged between the push-pull member and the swing wing. A long hole is provided on the push-pull member, and a driving shaft deviating from its axis is provided on the eccentric wheel. The driving shaft is slidably connected in the long hole to drive the push-pull member.

[0007] Preferably, the push-pull member includes a longitudinal plate and a transverse plate formed on the longitudinal plate, a long hole is opened on the transverse plate and passes through the longitudinal plate, the eccentric wheel is arranged below the push-pull member, the movement body includes a movement cover and a movement box covering each other, and the movement cover and the movement box are both provided with a first guide groove corresponding to the longitudinal plate, the longitudinal plate is connected between the movement cover and the movement box through the first guide groove and can slide along the first guide groove.

[0008] Preferably, lifting rods are provided at the front and rear positions corresponding to the lower ends of the longitudinal plates, and the longitudinal plates are slidably connected to the first guide grooves on the movement box through the lifting rods, so that a space for accommodating the eccentric wheel is separated between the transverse plate and the movement box.

[0009] Preferably, the movement body also includes a movement lower cover fixedly mounted on the lower end of the movement box, the motor is mounted inside the movement lower cover, and the motor has a motor shaft passing through the movement box, the eccentric wheel is dynamically connected to the motor shaft, and the ground rod is connected to the lower end of the movement lower cover.

[0010] Preferably, the front end of the movement body is provided with two mutually symmetrical sets of hinged seats, and the swing wings are provided with two mutually symmetrical pairs, and the two pairs of swing wings are respectively hinged on the two sets of hinged seats to form an overall symmetrical structure.

[0011] Preferably, a first sleeve is provided at the front end of the push-pull member, and the rear ends of the two swing wings are hinged with connecting rods, one of the connecting rods is formed with a second sleeve connected to the upper end of the first sleeve, and the other connecting rod is formed with a third sleeve connected to the lower end of the first sleeve, and the first sleeve, the second sleeve and the third sleeve are coaxially connected for rotation.

[0012] Preferably, an extension portion is formed at the front end of the movement body, and second guide grooves are respectively arranged at the upper and lower positions inside the extension portion, the second sleeve and the third sleeve are extended, and the second sleeve and the third sleeve are respectively connected to the second guide grooves at the upper and lower positions of the extension portion through the extension section.

[0013] Preferably, the hinge seats are arranged at both sides of the front end of the extension portion, and the front end of the extension portion is covered with a decorative piece.

[0014] Preferably, the ground plug rod has an extension tube and a ground plug connected to the lower end of the extension tube, plug-ins are formed at the upper end of the ground plug and the lower end of the movement body, and both ends of the extension tube are respectively connected and fixed to the plug-ins.

[0015] Compared with the prior art, the beneficial effects of the utility model are:

[0016] 1) The structure is simple and practical, and the use of a simple movement body reduces product costs and improves market price competitiveness;

[0017] 2) The common up-and-down motion structure is transformed into forward-and-backward motion, making the wing swinging motion more natural and vivid, enhancing the viewing and interest of the landscape and attracting the attention of viewers;

[0018] 3) The wings can be equipped with lights or fluorescent powder, which will be colorful when working at night, enriching the nighttime visual experience and extending the viewing time;

[0019] 4) Stable movement structure and transmission connection ensure continuous and stable flapping action, reduce failures and reduce maintenance costs;

[0020] 5) The structure is compact and the ground-inserted rod design is easy to install. It can adapt to a variety of terrains and sites and can be flexibly used in different landscape environments.

[0021] Additional aspects and advantages of the present invention will be given in part in the following description, and in part will become apparent from the following description, or will be learned through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative labor.

[0023] Figure 1 It is a schematic diagram of the disassembly structure of the utility model;

[0024] Figure 2 It is a structural schematic diagram of the utility model;

[0025] Figure 3 This utility model Figure 2 The structural diagram at A in the middle;

[0026] Figure 4 It is a schematic diagram of the exploded structure of the movement body and the swing wing in the utility model;

[0027] Figure 5 This is a schematic diagram of the connection structure of the movement body and the swing wing in the utility model from a viewing angle;

[0028] Figure 6 This is a schematic diagram of the connection structure between the movement body and the swing wing in another perspective of the utility model;

[0029] Figure 7 It is a structural schematic diagram of the crank-connecting rod mechanism in the utility model.

[0030] The reference numerals and names in the figures are as follows:

[0031] Movement body 10, hinged seat 11, movement upper cover 12, movement box 13, first guide slot 14, movement lower cover 15, extension part 16, second guide slot 17, decorative part 18, motor 20, crank-connecting rod mechanism 30, eccentric wheel 31, push shaft 311, push-pull member 32, long hole 321, longitudinal plate 322, transverse plate 323, lifting rod 324, first sleeve 325, connecting rod 33, second sleeve 331, third sleeve 332, swing wing 40, ground plug rod 50, extension tube 51, ground plug 52, plug-in 53. DETAILED DESCRIPTION

[0032] The technical solutions in the embodiments of the present invention are described clearly and completely below. Obviously, the described embodiments are only a part of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0033] See also Figure 1-7In the embodiment of the utility model, an electric flapping-wing landscape ground plug structure includes a movement body 10, a motor 20 arranged inside the movement body 10, a crank-connecting rod mechanism 30 transmission-connected to the motor 20, an articulated seat 11 arranged in front of the movement body 10, a swing wing 40 articulated to the articulated seat 11 and transmission-connected to the crank-connecting rod mechanism 30, and a ground plug rod 50 arranged at the lower end of the movement body 10. In the electric flapping-wing landscape ground plug 52 structure, the motor 20 located inside the movement body 10 is started, driving the crank-connecting rod mechanism 30 to move. The crank-connecting rod mechanism 30 converts the rotational motion of the motor 20 into linear reciprocating motion, and transmits this motion to the swing wing 40 articulated to the articulated seat 11. Due to the effect of the transmission connection, the swing wing 40 performs a forward and backward flapping motion, and then the entire structure is fixed to the ground through the ground plug rod 50. The whole structure is simple and practical, and the simplest movement body 10 structure is used to realize the reciprocating motion of the wings. It has advantages in the market in terms of product cost, and can improve the price competitiveness of the product in the market. At present, the reciprocating structures of the wings on the market basically move up and down. The advantage of the utility model is that the up and down motion structure is converted into a forward and backward motion structure, so that the flapping motion of the swing wing 40 is more natural and vivid, which can better attract the attention of the viewer and enhance the viewing and interest of the landscape. In addition, lights or fluorescent powders can be installed on the wings, so that the product presents a gorgeous effect when working at night, enriching the nighttime visual experience of the landscape and prolonging the viewing time of the landscape. The stable and reliable movement body 10 structure and transmission connection ensure the continuity and stability of the flapping motion of the swing wing 40, reduce the possibility of failure, and reduce maintenance costs. The compactness of the whole structure and the design of the ground plug 50 facilitate installation and layout, and can be flexibly applied to various landscape environments to adapt to various terrains and site requirements.

[0034] Please refer to Figure 4 and Figure 7In the embodiment of the utility model, it is further proposed that the crank connecting rod mechanism 30 includes an eccentric wheel 31 connected to the power of the motor 20, a push-pull member 32 connected to the movement body 10 in a guided sliding manner, and a connecting rod 33 hinged between the push-pull member 32 and the swing wing 40. The push-pull member 32 is provided with a long hole 321. The eccentric wheel 31 is provided with a driving shaft 311 deviating from its axis. The driving shaft 311 is slidably connected in the long hole 321 to drive the push-pull member 32. When the motor 20 is started, the eccentric wheel 31 is driven to rotate. During the rotation process, the driving shaft 311 deviating from the axis on the eccentric wheel 31 is slidably connected in the long hole 321 of the push-pull member 32, thereby pushing the push-pull member 32 to slide in the movement body 10. The movement of the push-pull member 32 is transmitted to the swing wing 40 through the hinged connecting rod 33, so that the swing wing 40 can realize the front and back flapping movement; the cooperation between the eccentric wheel 31 and the push-pull member 32 realizes the effective transmission and conversion of power, the transmission structure is simple and direct, and the energy transmission efficiency is improved; the design of the long hole 321 makes the connection between the driving shaft 311 and the push-pull member 32 more flexible, which can adapt to different movement amplitudes and frequency requirements, and increases the versatility and adaptability of the structure; this structure helps to reduce the volume and weight of the entire crank-connecting rod mechanism 30, making the movement body 10 more compact, and providing the possibility for miniaturization and lightweight design of the product; the guided sliding of the push-pull member 32 and the hinged connection of the connecting rod 33 ensure the smoothness and accuracy of the movement, reduce the jitter and deviation of the swing wing 40 during the flapping process, improve the quality of the landscape display, and provide a better viewing experience in places with high requirements for landscape effects; the simple and reliable structure reduces the manufacturing and maintenance costs, improves the cost performance of the product, and can significantly reduce the total cost in the case of large-scale production and use.

[0035] Please refer to Figure 4 and Figure 7In the embodiment of the utility model, it is further proposed that the push-pull member 32 includes a longitudinal plate 322 and a transverse plate 323 formed on the longitudinal plate 322, a long hole 321 is opened on the transverse plate 323 and penetrates the longitudinal plate 322, the eccentric wheel 31 is arranged below the push-pull member 32, the movement body 10 includes a movement cover 12 and a movement box 13 covering each other, and the movement cover 12 and the movement box 13 are both provided with a first guide groove 14 corresponding to the longitudinal plate 322, the longitudinal plate 322 is connected between the movement cover 12 and the movement box 13 through the first guide groove 14 and can slide along the first guide groove 14; when the motor 20 drives the eccentric wheel 31 to rotate, the driving shaft 311 on the eccentric wheel 31 slides in the long hole 321 of the transverse plate 323, thereby pushing the transverse plate 323. Since the longitudinal plate 322 and the transverse plate 323 are formed as one body, and the longitudinal plate 322 is connected between the upper cover 12 and the first guide slot 14 in the movement box 13, the longitudinal plate 322 can only slide along the first guide slot 14. In this way, the push-pull member 32 as a whole slides stably and linearly along the first guide slot 14 under the push of the eccentric wheel 31. Through this arrangement, the first guide slot 14 provides a precise sliding track for the longitudinal plate 322, ensuring that the movement direction of the push-pull member 32 is accurate and the transmission accuracy and stability are improved; the integrated design of the longitudinal plate 322 and the transverse plate 323 and the restriction of the first guide slot 14 enhance the structural strength and rigidity of the push-pull member 32, enabling it to withstand greater thrust and tension, and extending the service life of the component; the movement cover 12 and the movement box 13 work together to provide a closed and stable environment for the movement of the push-pull member 32, reduce the interference and influence of external factors on the transmission, and improve the reliability of the device; this design makes the internal structure of the movement body 10 more compact and regular, which is conducive to reducing the volume of the entire device, facilitating installation and layout, and can better meet the installation requirements for landscape sites with limited space; the setting of the first guide slot 14 simplifies the installation and maintenance process of the push-pull member 32, and when the push-pull member 32 needs to be replaced or repaired, it can be quickly disassembled and installed, reducing maintenance costs and time.

[0036] Please refer to Figure 4 and Figure 7In the embodiment of the utility model, it is further proposed that a lifting rod 324 is provided at the corresponding front and rear positions of the lower end of the longitudinal plate 322, and the longitudinal plate 322 is slidably connected to the first guide slot 14 on the movement box 13 through the lifting rod 324, so that a space for accommodating the eccentric wheel 31 is separated between the transverse plate 323 and the movement box 13; when the eccentric wheel 31 rotates, the transverse plate 323 of the push-pull member 32 is pushed, and since the lifting rod 324 is provided at the front and rear positions of the lower end of the longitudinal plate 322, the longitudinal plate 322 is slidably connected to the first guide slot 14 on the movement box 13 through the lifting rod 324; in this way, during the movement of the push-pull member 32, the lifting rod 324 slides along the first guide slot 14, The space for accommodating the eccentric wheel 31 is separated between the transverse plate 323 and the movement box 13, thereby ensuring that the eccentric wheel 31 has enough space to rotate without interfering with other components; the separated space can effectively accommodate the eccentric wheel 31, reasonably solve the collision and friction between the eccentric wheel 31 and the movement box 13 or other components during the rotation process, reduce energy loss and component wear, and improve the transmission efficiency and the service life of the device; the setting of the lifting rod 324 makes the sliding of the longitudinal plate 322 more stable, reduces the shaking and tilting of the longitudinal plate 322 during the sliding process, and further ensures the stability and accuracy of the movement of the push-pull member 32, so that the flapping action of the swing wing 40 is smoother and more natural. And through this setting, the space can be reasonably utilized, and a suitable installation position is provided for the eccentric wheel 31 without increasing the overall volume of the movement body 10, making the entire structure more compact and optimized. This is of great significance to the miniaturization and aesthetics of the landscape device.

[0037] Please refer to Figure 4-6 In the embodiment of the utility model, it is further proposed that the movement body 10 also includes a movement lower cover 15 fixedly mounted at the lower end of the movement box 13, the motor 20 is mounted inside the movement lower cover 15, and the motor 20 has a motor shaft that runs through the movement box 13, the eccentric wheel 31 is connected to the motor shaft, and the ground rod 50 is connected to the lower end of the movement lower cover 15; the movement lower cover 15 is provided with a motor outlet hole, and the entire product can be powered by a battery, solar power or a transformer. Through this setting, the movement lower cover 15 can be used to provide an independent and stable installation space for the motor 20, protect the motor 20 from external interference and damage, ensure the stable operation of the motor 20, and extend the service life of the motor 20; this layered installation structure makes the layout of each component more reasonable, and is convenient for installation, disassembly and maintenance; the ground rod 50 is connected to the lower end of the movement lower cover 15, so that the center of gravity of the entire device is lower, the stability of the device on the ground is increased, and the shaking or tipping caused by external forces or wind is reduced.

[0038] Please refer to Figure 4-7In the embodiment of the utility model, it is further proposed that the front end of the movement body 10 is provided with two mutually symmetrical groups of hinge seats 11, and the swing wings 40 are provided with two mutually symmetrical pairs, and the two pairs of swing wings 40 are respectively hinged on the two groups of hinge seats 11 to form an overall symmetrical structure; when the electric flapping-wing landscape ground plug 52 structure is working, the movement of the crank-connecting rod mechanism 30 is transmitted to the two symmetrically arranged groups of hinge seats 11 through the connecting rod 33, and the two pairs of mutually symmetrical swing wings 40 are respectively driven to perform forward and backward flapping movements; the overall symmetrical structure makes the device more evenly stressed during operation, reduces the wear and failure of components caused by uneven stress on one side, and improves the stability and reliability of the device; and the two symmetrical pairs of swing wings 40 can provide a more balanced and beautiful visual effect, enhancing the attractiveness and appreciation of the landscape; further It is further proposed that a first shaft sleeve 325 is provided at the front end of the push-pull member 32, and the rear ends of the two auxiliary swing wings 40 are hinged with connecting rods 33, one of the connecting rods 33 is formed with a second shaft sleeve 331 connected to the upper end of the first shaft sleeve 325, and the other connecting rod 33 is formed with a third shaft sleeve 332 connected to the lower end of the first shaft sleeve 325, and the first shaft sleeve 325, the second shaft sleeve 331 and the third shaft sleeve 332 are coaxially rotatably connected; when the push-pull member 32 slides back and forth under the action of the eccentric wheel 31, the first shaft sleeve 325 at the front end moves accordingly, because the first shaft sleeve 325 is coaxially rotatably connected with the second shaft sleeve 331 located at its upper end and the third shaft sleeve 332 located at its lower end, respectively, the movement of the first shaft sleeve 325 drives the two connecting rods 33 to move, and then respectively pushes the two auxiliary swing wings 40 to perform flapping motion. Through this setting, the coaxial rotation connection ensures the accuracy and synchronization of motion transmission, so that the two swing wings 40 can flap in a coordinated manner, improving the stability and reliability of the device operation. This connection method simplifies the transmission structure, reduces the complex connection between components, reduces the probability of energy loss and failure, effectively utilizes space, makes the structure more compact, and reduces the size and weight of the device. For landscape layout, it is easier to install and hide without affecting the overall appearance.

[0039] Please refer to Figure 4-7In the embodiment of the utility model, it is further proposed that the front end of the movement body 10 is formed with an extension part 16, and the second guide slot 17 is respectively arranged at the upper and lower positions inside the extension part 16, and the second sleeve 331 and the third sleeve 332 are extended, and the second sleeve 331 and the third sleeve 332 are respectively connected to the second guide slot 17 at the upper and lower positions of the extension part 16 through the extension section; when the push-pull member 32 moves, the second sleeve 331 and the third sleeve 332 are driven to move through the first sleeve 325. Since the second sleeve 331 and the third sleeve 332 are extended and respectively connected to the second guide slot 17 at the upper and lower positions of the extension part 16, they slide along the guide slot driven by the sleeve, thereby further guiding and constraining the movement trajectory of the connecting rod 33 and the swing wing 40 hinged thereto, which can effectively disperse the stress during the movement, reduce the wear of the sleeve and related connecting parts, and extend the service life of the device. In addition, the hinged seat 11 is arranged at both sides of the front end of the extension part 16, and the front end of the extension part 16 is covered with a decorative part 18; the decorative part 18 at the front end of the extension part 16 can play a role of shielding and beautification, hiding the complex internal structure and connecting parts, so that the entire device looks more tidy and beautiful in appearance; it provides more possibilities for the appearance design of the device, and decorative parts 18 of different styles and materials can be selected according to different landscape requirements to enhance the integration and coordination of the device with the surrounding environment. Taking the bat as an example, the decorative part 18 can be the body, head and feet of the bat, and the swing wing 40 is the wings of the bat; the whole device looks like a real bat flapping its wings, giving people a strong visual impact and realistic feeling, greatly enhancing the attractiveness and interest of the landscape.

[0040] Please refer to Figure 1-2 In the embodiment of the utility model, it is further proposed that the ground plug rod 50 has an extension tube 51 and a ground plug 52 connected to the lower end of the extension tube 51, and plug-ins 53 are formed at the upper end of the ground plug 52 and the lower end of the movement body 10, and the two ends of the extension tube 51 are respectively connected and fixed to the plug-ins 53; the design of the extension tube 51 allows the length of the ground plug rod 50 to be adjusted according to actual needs to adapt to different installation environments and depth requirements; the way the two ends are connected by the plug-in 53 facilitates the installation and disassembly of the ground plug rod 50, making it easy to transport, store and On-site assembly is more convenient and efficient; this structure enhances the connection stability between the ground plug rod 50 and the movement body 10, ensuring that the ground plug rod 50 will not loosen or fall off when the device is running and subjected to external force, thereby ensuring the normal flapping action; when the ground plug 52 or the extension tube 51 needs to be replaced, it is only necessary to remove the corresponding plug-in 53 connection, which reduces maintenance costs and difficulty, and the appropriate type of ground plug 52 can be selected according to different ground conditions, and cooperated with it through the extension tube 51, thereby improving the adaptability and versatility of the device on various terrains.

[0041] It is obvious to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the present invention can be implemented in other specific forms without departing from the spirit or basic features of the present invention. Therefore, no matter from which point of view, the embodiments should be regarded as exemplary and non-restrictive, and the scope of the present invention is defined by the appended claims rather than the above description, and it is intended that all changes falling within the meaning and scope of the equivalent elements of the claims are included in the present invention.

Claims

1. An electric flapping-wing landscape ground plug structure, characterized in that: The invention comprises a movement body (10), a motor (20) arranged inside the movement body (10), a crank connecting rod mechanism (30) transmission-connected to the motor (20), an articulated seat (11) arranged in front of the movement body (10), a swing wing (40) articulated to the articulated seat (11) and transmission-connected to the crank connecting rod mechanism (30), and a ground plug rod (50) arranged at the lower end of the movement body (10).

2. The electric flapping-wing landscape ground plug structure according to claim 1, characterized in that: The crank-connecting rod mechanism (30) comprises an eccentric wheel (31) connected to the power of the motor (20), a push-pull member (32) slidably connected to the inside of the movement body (10), and a connecting rod (33) hinged between the push-pull member (32) and the swing wing (40), wherein a long hole (321) is provided on the push-pull member (32), and a driving shaft (311) deviating from its axis is provided on the eccentric wheel (31), and the driving shaft (311) is slidably connected to the long hole (321) to drive the push-pull member (32).

3. The electric flapping-wing landscape ground plug structure according to claim 2, characterized in that: The push-pull member (32) comprises a longitudinal plate (322) and a transverse plate (323) formed on the longitudinal plate (322); a long hole (321) is formed on the transverse plate (323) and penetrates the longitudinal plate (322); an eccentric wheel (31) is arranged below the push-pull member (32); the movement body (10) comprises a movement upper cover (12) and a movement box (13) covering each other; a first guide slot (14) corresponding to the longitudinal plate (322) is arranged in the movement upper cover (12) and the movement box (13); the longitudinal plate (322) is connected between the movement upper cover (12) and the movement box (13) via the first guide slot (14) and can slide along the first guide slot (14).

4. The electric flapping-wing landscape ground plug structure according to claim 3, characterized in that: A lifting rod (324) is provided at the lower end of the longitudinal plate (322) at the corresponding front and rear positions. The longitudinal plate (322) is slidably connected to the first guide slot (14) on the movement box (13) via the lifting rod (324), so that a space for accommodating the eccentric wheel (31) is spaced between the transverse plate (323) and the movement box (13).

5. The electric flapping-wing landscape ground plug structure according to claim 3, characterized in that: The movement body (10) further comprises a movement lower cover (15) fixedly mounted on the lower end of the movement box (13); the motor (20) is mounted inside the movement lower cover (15); the motor (20) has a motor shaft that passes through the movement box (13); the eccentric wheel (31) is dynamically connected to the motor shaft; and the ground rod (50) is connected to the lower end of the movement lower cover (15).

6. The electric flapping-wing landscape ground plug structure according to claim 2, characterized in that: The front end of the movement body (10) is provided with two sets of mutually symmetrical hinge seats (11), and the swing wing (40) is provided with two mutually symmetrical pairs, and the two pairs of swing wings (40) are respectively hinged on the two sets of hinge seats (11) to form an overall symmetrical structure.

7. The electric flapping-wing landscape ground plug structure according to claim 6, characterized in that: A first shaft sleeve (325) is provided at the front end of the push-pull member (32), and connecting rods (33) are hingedly connected to the rear ends of the two auxiliary swing wings (40), wherein one of the connecting rods (33) is formed with a second shaft sleeve (331) connected to the upper end of the first shaft sleeve (325), and the other connecting rod (33) is formed with a third shaft sleeve (332) connected to the lower end of the first shaft sleeve (325), and the first shaft sleeve (325), the second shaft sleeve (331) and the third shaft sleeve (332) are coaxially connected for rotation.

8. The electric flapping-wing landscape ground plug structure according to claim 7, characterized in that: An extension portion (16) is formed at the front end of the movement body (10), and second guide slots (17) are respectively arranged at upper and lower positions inside the extension portion (16); the second shaft sleeve (331) and the third shaft sleeve (332) are extended, and the second shaft sleeve (331) and the third shaft sleeve (332) are respectively connected to the second guide slots (17) at upper and lower positions of the extension portion (16) through the extension section.

9. The electric flapping-wing landscape ground plug structure according to claim 8, characterized in that: The hinge seat (11) is arranged at two side positions of the front end of the extension portion (16), and the front end of the extension portion (16) is covered with a decorative piece (18).

10. The electric flapping-wing landscape ground plug structure according to claim 1, characterized in that: The ground plug rod (50) comprises an extension tube (51) and a ground plug (52) connected to the lower end of the extension tube (51), an insert (53) is formed at the upper end of the ground plug (52) and the lower end of the movement body (10), and both ends of the extension tube (51) are respectively connected and fixed to the insert (53).