Rotatable panda valley-shaking windmill toy device
The Panda Shaking Valley Windmill toy model driven by mortise and tenon connection and transmission device solves the problem of simple model structure and achieves dynamic display and educational significance.
Patent Information
- Application Number
- CN202421245107.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-03
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-06-03
AI Technical Summary
The existing toy models have simple structure and lack interest, which cannot improve the manual skills and educational significance of the operator.
The box structure connected by mortise and tenon is adopted, combined with transmission device and motor drive, to achieve dynamic rotation of the model, increase interaction and educational effect.
By dynamically displaying the movement principles of the model, we can stimulate creativity and innovative consciousness, improve learning effect and ornamentality, and enhance interaction and aesthetics.
Smart Images

Figure CN223127227U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of toy models, in particular to a rotatable panda rocking valley windmill toy device. Background Art
[0002] A toy model usually refers to a small, highly realistic replica that simulates or displays the appearance, structure or function of an actual object. These models can be of various types, including cars, airplanes, ships, buildings, animals, people, etc., and a windmill is a farm tool used in rural areas to remove husks and other materials from harvested grains such as rice and wheat. As a cultural symbol with a long history, the appearance and characteristics of the prototype can be restored as much as possible through model making. In the process of making and playing with the windmill model, you can understand the principle of converting wind energy into mechanical energy.
[0003] In the process of realizing the present utility model, the inventors found that the prior art has the following problems: 1. The structure of the spliced models currently on the market is relatively simple, and they simply use mortise and tenon structures for splicing. After the model is made, the object can only be in a static state and lacks a certain degree of interest; 2. Due to the simple splicing structure of the model, it is impossible to improve and stimulate the manual skills of the operator as a teaching tool, and the general model can only simply reflect the appearance of the object or structure it presents, and people cannot know the structural principle of the model entity, and it cannot mention the educational significance for the teaching aid. Utility Model Content
[0004] The purpose of the utility model is to provide a rotatable panda shaking valley windmill toy device, so as to solve the problems in the above background technology that the existing model has a simple structure, lacks interest, and cannot improve and stimulate the operator's manual skills. To achieve the above purpose, the utility model provides the following technical solutions: a rotatable panda shaking valley windmill toy device, including a box body, the top of which is plugged and connected to a valley windmill body, and the valley windmill body is twisted and connected to a doll through a transmission device provided thereon.
[0005] The box body includes an upper panel, a lower bottom plate, a front side panel, a rear side panel, a left side panel and a right side panel. The bottom of the upper panel and the top of the lower bottom plate are respectively provided with a plurality of T-shaped tenons. Both ends of the surface of one side of the front side panel and the rear side panel are respectively provided with trapezoidal tenons. The front side panel and the rear side panel are respectively mortise and tenon connected to the two ends of the left side panel and the right side panel through the trapezoidal tenons. The surface of the upper panel is respectively provided with a valley windmill mounting groove and a doll fixing frame.
[0006] The transmission device includes a motor, a driving wheel, and a driven wheel. The motor is inserted and connected to the surface of the lower base plate through a chassis opened on its exterior. The output end of the motor penetrates and is adhesively connected to the axis of the driving wheel. The driven wheel is rotatably connected to one side of the surface of the grain windmill main body. The driving wheel and the driven wheel are connected by a belt.
[0007] Further preferably, the box body is made of wooden boards with a plate thickness of 4CM. Mortise grooves corresponding to the positions of the T-shaped tenons are respectively opened at the tops and bottoms of the front side panel, rear side panel, left side panel, and right side panel. Meanwhile, the box body is connected by mortise and tenon joints.
[0008] Further preferably, a through hole for electrically connecting the transmission device is penetrated and opened on the surface of the right side panel. The driving wheel is rotatably connected to the inside of the box body through the motor. And the driven wheel forms a transmission structure through the belt. Meanwhile, a mortise for inserting and connecting a rocker is opened at the axis of the driven wheel. A through hole is opened at one end of the rocker.
[0009] Further preferably, a through hole for connecting the belt is penetrated and opened on the surface of the upper panel.
[0010] Further preferably, iron wires are respectively opened on the surfaces of the four limbs of the doll. The doll is connected to the doll fixing frame through the fitting and twisting on the surface of its lower limbs. And the doll is connected to the through hole on the surface of the rocker through the iron wire on the surface of its left front limb.
[0011] Further preferably, the grain windmill main body is inserted and connected to the inside of the grain windmill installation groove through the installation feet opened at its bottom.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0013] In the present utility model, through thinking and hands-on operation, the belt is installed, which not only exerts hands-on ability but also helps to stimulate their creativity and innovation awareness. And finally, this dynamic presentation can make the display of the model more vivid and intuitive, enabling the operator to directly see the movement effect of the model, more easily understand the concepts and principles represented by the model, thereby deepening the understanding of the principle of the grain windmill main body, and thus improving the learning effect during the operation. Generally speaking, compared with the static model, it can better present and improve the vividness and interest of the display, enhance the interactivity and participation of the operator, and thus improve the educational effect of the display.
[0014] In the utility model, the plates are connected by mortise and tenon joints through T-shaped tenons and trapezoidal tenons, and while maintaining the stability of the model structure, there will be no obvious protrusions or marks at the connection parts, and the overall look is more beautiful. It has excellent aesthetics when used as an ornament in the later stage. Moreover, it is detachable and can be repeatedly disassembled and reused as a teaching tool, which fully exercises the operator's hand-eye coordination and fine motor skills. Moreover, each component can be disassembled independently and can be used as an ornament alone after disassembly. This allows the model to be flexibly adjusted according to one's needs when used as an ornament in daily life. This separate display method increases the ornamental value and interest, allowing users to appreciate and experience the charm of the model more comprehensively. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the new structure of the main view of this utility model;
[0016] Figure 2 This is an exploded view of the box of the utility model;
[0017] Figure 3 This is a schematic diagram of the installation slot structure of the valley windmill of the utility model;
[0018] Figure 4 It is a schematic diagram of the structure of the transmission device of the utility model.
[0019] In the figure: 1. box body; 101. upper panel; 102. lower bottom plate; 103. front side panel; 104. rear side panel; 105. left side panel; 106. right side panel; 107. T-shaped tenon; 108. trapezoidal tenon; 109. valley windmill mounting slot; 1010. doll fixing frame; 2. valley windmill body; 3. transmission device; 301. motor; 302. driving wheel; 303. driven wheel; 304. belt; 305. rocker; 4. doll. DETAILED DESCRIPTION
[0020] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technical personnel in this field without creative work are within the scope of protection of the utility model.
[0021] See also Figures 1 to 4 The utility model provides a technical solution: a rotatable panda rocking valley windmill toy device, comprising a box body 1, the top of the box body 1 is plug-connected with a valley windmill body 2, and the valley windmill body 2 is twistedly connected with a doll 4 through a transmission device 3 provided therein.
[0022] The box body 1 includes an upper panel 101, a lower bottom plate 102, a front side panel 103, a rear side panel 104, a left side panel 105 and a right side panel 106. A number of T-shaped tenons 107 are respectively provided at the bottom of the upper panel 101 and the top of the lower bottom plate 102. Trapezoidal tenons 108 are respectively provided at both ends of the surface of one side of the front side panel 103 and the rear side panel 104. The front side panel 103 and the rear side panel 104 are respectively mortise-and-tenon connected to both ends of the left side panel 105 and the right side panel 106 through the trapezoidal tenons 108. A grain windmill installation groove 109 and a doll fixing bracket 1010 are respectively provided on the surface of the upper panel 101.
[0023] The transmission device 3 includes a motor 301, a driving wheel 302 and a driven wheel 303. The motor 301 is plug-connected to the surface of the lower bottom plate 102 through a chassis provided on its exterior. The output end of the motor 301 penetrates and is glued to the axis of the driving wheel 302. The driven wheel 303 is rotatably connected to one side of the surface of the grain windmill main body 2. The driving wheel 302 and the driven wheel 303 are connected by a belt 304.
[0024] In this embodiment, as Figure 2 shown, the box body 1 is made of wooden boards with a plate thickness of 4 cm. Mortise grooves corresponding to the positions of the T-shaped tenons 107 are respectively provided at the top and bottom of the front side panel 103, the rear side panel 104, the left side panel 105 and the right side panel 106. At the same time, the box body 1 is in mortise-and-tenon connection; the plate thickness of the box body 1 has a certain strength, which can ensure stability during the splicing process to improve the quality of the model. Compared with some models on the market that use glue fixation, the chemical glue has pollution and lacks environmental protection, and can only be assembled once and cannot be reused. However, the plates are all mortise-and-tenon connected through the T-shaped tenons 107 and the trapezoidal tenons 108. While maintaining the structural stability of the model, there will be no obvious protrusions or marks at the connection parts, making the overall look more beautiful. When used as a decorative item as a decorative piece in the later stage, it has excellent aesthetics, and it is detachable. When used as a teaching tool, it can be repeatedly disassembled and reused, fully exercising the operator's hand-eye coordination ability and fine motor ability.
[0025] In this embodiment, as Figure 2 and Figure 4As shown in the figure, through holes for electrically connecting the transmission device 3 are formed through the surface of the right panel 106. The driving wheel 302 is rotatably connected to the inside of the box body 1 through the motor 301, and the driven wheel 303 forms a transmission structure through the belt 304. At the same time, a mortise for inserting and connecting the rocker 305 is formed at the axis of the driven wheel 303, and a through hole is formed at one end of the rocker 305. Through an external power socket, power is supplied to the motor 301, and the output end of the motor 301 drives the driving wheel 302 to rotate. The rotation of the driving wheel 302 causes the belt 304 to drive the driven wheel 303 to rotate. The driven wheel 303 is rotatably connected to the outside of the grain windmill body 2 through a shaft rod. At the same time, the shaft rod penetrates through the inside of the grain windmill body 2 and is connected to the windmill blades formed inside the grain windmill body 2. Therefore, when the driven wheel 303 rotates, it will drive the windmill blades inside the grain windmill body 2 to rotate at the same time, thus simulating the driving principle of the grain windmill body 2. When serving as a teaching aid, it not only increases the fun and hands-on ability during the splicing process, but also enables the operator to intuitively understand the structure and working principle of the grain windmill body 2, which helps to cultivate their hands-on ability and problem-solving ability, and at the same time can stimulate their interest and exploration desire for scientific principles.
[0026] In this embodiment, as Figure 4 shown, through holes for connecting the belt 304 are formed through the surface of the upper panel 101. The drive of the transmission device 3 needs to be achieved through the connection of the belt 304. By thinking and hands-on operation, installing the belt 304 not only gives play to the hands-on ability but also helps to stimulate their creativity and innovation awareness.
[0027] In this embodiment, as Figure 4 shown, wires are respectively formed on the surfaces of the four limbs of the doll 4, and the doll 4 is connected to the doll fixing frame 1010 through the fitting and twisting on the surface of its lower limbs. And the doll 4 is connected to the through hole on the surface of the rocker 305 through the wire on the surface of its left front limb. Since the rocker 305 is inserted and connected to the surface of the driven wheel 303, the rotation of the driven wheel 303 can drive the rocker 305 to rotate. The wire on the surface of the left front limb of the doll 4 is penetrated and wound through the through hole of the rocker 305. When the rocker 305 rotates, the left front limb of the doll 4 will rotate accordingly. From the outside, it seems that the doll 4 shakes the grain windmill body 2, thus simulating the labor scene of shaking the grain windmill in the countryside. Through this dynamic presentation, the display of the model can be made more vivid and intuitive, enabling the operator to directly see the movement effect of the model, more easily understand the concepts and principles represented by the model, and thus deepen the understanding of the principle of the grain windmill body 2, thereby improving the learning effect during the operation. All in all, compared with the static model, it can better present and improve the vividness and interest of the display, enhance the interactivity and participation of the operator, and thus improve the educational effect of the display.
[0028] In this embodiment, asFigure 3 As shown, the main body 2 of the grain windmill is inserted and connected to the inside of the grain windmill installation groove 109 through the installation feet opened at its bottom; each component can be independently disassembled and can be used separately as an ornament after disassembly. This enables the model to be flexibly adjusted according to the user's needs when serving as an ornament in daily life, providing the user with a variety of display methods and possibilities. The user can choose different component combinations and placement methods according to different occasions or moods, making the display effect of the model more rich and diverse. And this way of separate display increases the ornamental value and interest, enabling the user to more comprehensively appreciate and experience the charm of the model.
[0029] The usage method and advantages of the present utility model: For this rotatable panda grain windmill toy device, during use, the working process is as follows:
[0030] Such as Figure 1 、 Figure 2 、 Figure 3 And Figure 4As shown in the figure, during the initial assembly, first pick up the front and side panel 103. Then, pick up the left panel 105 and the right panel 106 respectively, and connect them to the front and side panel 103 through the trapezoidal tenons 108 at both ends of the surface of the front and side panel 103 and the corresponding mortises on the surfaces of the left panel 105 and the right panel 106 in a tenon and mortise connection. Next, connect the T-shaped tenons 107 on the surface of the lower bottom plate 102 to the bottoms of the front and side panel 103, the left panel 105, and the right panel 106 through corresponding tenon and mortise connections. Insert the motor 301 chassis into the notch on the surface of the lower bottom plate 102. Then, pick up the rear panel 104 again and connect it to the assembled plates through the mortises at the bottom and the trapezoidal tenons 108 on the surface in a tenon and mortise connection. At the same time, insert the mounting feet at the bottom of the grain windmill main body 2 into the grain windmill mounting slots 109 on the surface of the upper panel 101. Then, slip one end of the belt 304 over the surface of the driving wheel 302 and pass it through the through hole on the surface of the upper panel 101. Then, slip the other end of the belt 304 over the surface of the driven wheel 303 again, and connect the T-shaped tenons 107 at the bottom of the upper panel 101 to the assembled plates through tenon and mortise connections. Insert the rocker 305 into the mortise at the center of the driven wheel 303. Twist the iron wires at both ends of the lower limbs of the doll 4 with the doll fixing frame 1010 respectively. At the same time, wind the left front limb of the doll 4 around the through hole on the surface of the rocker 305 with an iron wire. Since a power supply port is provided on the outside of the motor 301 chassis, power can be transmitted by docking an external power supply device with the motor 301 through the through hole on the surface of the right panel 106. When the motor 301 is driven, the output end drives the driving wheel 302 to rotate, and the driven wheel 303 rotates accordingly through the belt 304, so that the windmill blades inside the grain windmill main body 2 and the rocker 305 outside rotate simultaneously. As a result, the left front limb of the doll 4 will rotate accordingly. This dynamic display can make the display of the model more vivid and intuitive, allowing the operator to directly see the movement effect of the model and making it easier to understand the concepts and principles represented by the model.
[0031] The above shows and describes the basic principles, main features, and advantages of the present invention. Technical staff in this industry should understand that the present invention is not limited by the above embodiments. The above embodiments and descriptions in the specification are only preferred examples of the present invention and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A rotatable panda winnowing windmill toy device, comprising a box body (1), characterized in that: The top of the box body (1) is plug-connected with a valley windmill body (2), and the valley windmill body (2) is twist-connected with a doll (4) through a transmission device (3) provided therein; The box body (1) comprises an upper panel (101), a lower bottom plate (102), a front side panel (103), a rear side panel (104), a left side panel (105) and a right side panel (106); the bottom of the upper panel (101) and the top of the lower bottom plate (102) are respectively provided with a plurality of T-shaped tenons (107); both ends of the surface of one side of the front side panel (103) and the rear side panel (104) are respectively provided with trapezoidal tenons (108); the front side panel (103) and the rear side panel (104) are respectively connected to the two ends of the left side panel (105) and the right side panel (106) by mortise and tenon joints through the trapezoidal tenons (108); the surface of the upper panel (101) is respectively provided with a valley windmill installation groove (109) and a doll fixing frame (1010); The transmission device (3) comprises a motor (301), a driving wheel (302) and a driven wheel (303); the motor (301) is plug-connected to the surface of the lower base plate (102) through a chassis provided outside the motor (301); the output end of the motor (301) penetrates through and is glued to the axis of the driving wheel (302); the driven wheel (303) is rotatably connected to one side of the surface of the valley windmill body (2); and the driving wheel (302) and the driven wheel (303) are connected via a belt (304).
2. The panda-shaped rotating grain winnowing windmill toy device according to claim 1, characterized in that: The box body (1) is made of a wooden board with a thickness of 4 cm, and the tops and bottoms of the front side panel (103), the rear side panel (104), the left side panel (105) and the right side panel (106) are respectively provided with mortise and tenon grooves corresponding to the positions of the T-shaped tenons (107), and the box body (1) is connected by mortise and tenon joints.
3. A rotatable panda-shaped winnowing windmill toy device according to claim 1, characterized in that: A through hole for electrically connecting the transmission device (3) is formed through the surface of the right side panel (106), and the driving wheel (302) is rotatably connected to the inside of the box body (1) through the motor (301), and the driven wheel (303) forms a transmission structure through the belt (304), and a mortise for inserting and connecting the rocker (305) is formed at the axis of the driven wheel (303), and a through hole is formed at one end of the rocker (305).
4. A rotatable panda grain winnowing windmill toy device according to claim 1, characterized in that: A through hole for connecting the belt (304) is formed through the surface of the upper panel (101).
5. A rotatable panda grain winnowing windmill toy device according to claim 1, characterized in that: Iron wires are respectively provided on the surfaces of the four limbs of the doll (4), and the doll (4) is connected to the doll fixing frame (1010) through the fitting and twisting of the surfaces of its lower limbs, and the doll (4) is connected to the through hole on the surface of the rocker (305) through the twisting of the iron wires on the surface of the left front limb.
6. The panda rocking and winnowing windmill toy device according to claim 1, wherein: The valley windmill body (2) is plugged and connected to the inside of the valley windmill installation groove (109) via the installation feet provided at the bottom thereof.