Character ornament
By designing character ornaments with storage compartments and collecting arms, the problems of insufficient creativity and lack of practicality of existing toy ornaments are solved, and the effect of improving fun and practicality is achieved.
Patent Information
- Application Number
- CN202422002164.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
Existing toy ornaments have problems such as insufficient creativity and lack of practicality in improving playability and fun, which is difficult to stimulate users' interest for a long time.
A character ornament is designed, including the main torso, storage compartment and collection arm. The driving part and transmission assembly drive the picking arm to rotate, forming the action of the character arm to take the items to be collected from the storage compartment, improving the fun, and setting the items to be collected as daily necessities to increase practicality.
Through innovative design, the fun and practicality of toy ornaments are enhanced, so that users can still maintain interest in toys for a long time, and can also have practical functions while ensuring fun.
Smart Images

Figure CN222845090U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of decorative toys, and in particular to a character ornament. Background Art
[0002] In order to achieve a certain degree of fun while having a decorative effect, existing toy ornaments are generally configured to make sounds or emit light. Although such designs can improve playability to a certain extent, due to the simple creativity and lack of practicality, it is difficult to arouse users' interest in playing with them for a long time.
[0003] Based on this, how to improve the practicality of toys while stimulating users' interest for a long time has become a major problem facing toy ornaments. Utility Model Content
[0004] In view of the above problems, an embodiment of the present application provides a character ornament that can improve the practicality of the toy while stimulating the user's interest in playing with it for a long time.
[0005] An embodiment of the present application provides a character ornament, including: a main body trunk, a storage bin and a picking arm, the storage bin is arranged on the main body trunk, and the picking arm is rotatably connected to one side of the main body trunk; a driving member and a first transmission assembly are arranged inside the main body trunk, the driving member is connected to the picking arm through the first transmission assembly to drive the picking arm to rotate; a accommodating chamber is arranged inside the storage bin, the accommodating chamber is used to accommodate objects to be picked up, a picking port connected to the accommodating chamber is opened on the storage bin, a picking device is arranged at the hand position of the picking arm, and the picking arm is used to drive the picking device to move to the picking port and dock with the object to be picked up when rotating, so as to take out the object to be picked up.
[0006] In the character ornaments provided in the embodiments of the present application, a storage bin for accommodating objects to be picked up is provided on the main body, a driving member and a first transmission assembly for driving a picking arm to rotate are hidden inside the main body, and a picker is provided at the hand position of the picking arm. When the picking arm rotates, an action of the character arm picking up the objects to be picked up from the storage bin is formed, thereby enhancing the fun of the character ornaments. The objects to be picked up can be daily necessities such as toothpicks and cigarettes, so that the character ornaments can have practical functions while ensuring fun.
[0007] The above description is only an overview of the technical solution of the present application. In order to more clearly understand the technical means of the present application, it can be implemented in accordance with the contents of the specification. In order to make the above and other purposes, features and advantages of the present application more obvious and easy to understand, the specific implementation methods of the present application are listed below. BRIEF DESCRIPTION OF THE DRAWINGS
[0008] Various other advantages and benefits will become apparent to those of ordinary skill in the art by reading the detailed description of the preferred embodiments below. The accompanying drawings are only for the purpose of illustrating the preferred embodiments and are not to be considered as limiting the present application. Also, the same reference symbols are used throughout the accompanying drawings to represent the same components. In the accompanying drawings:
[0009] Figure 1 A schematic diagram of the front structure of a character ornament provided in an embodiment of the present application;
[0010] Figure 2 A schematic diagram of the exploded structure of a character ornament provided in an embodiment of the present application;
[0011] Figures 3 to 5 A schematic diagram of the structure of the object-picking arm of the character ornament provided in the embodiment of the present application when it is in an initial state, a certain state during the rotation process, and a object-picking state;
[0012] Figure 6 A schematic diagram of the structure of the storage bin in the character ornament provided in the embodiment of the present application when used to accommodate cigarettes;
[0013] Figure 7 and Figure 8 A schematic diagram of the structure of a storage bin in a character ornament provided in an embodiment of the present application in an exploded state from two perspectives;
[0014] Figure 9a and Figure 9b A schematic diagram of the structure of the figure ornament provided in the embodiment of the present application when the guide member and the shielding member are in the initial state from two perspectives;
[0015] Fig.10a and Fig.10b A schematic diagram of the structure of the figure ornament provided in the embodiment of the present application when the guide member and the shielding member are in a state of picking up objects from two viewing angles;
[0016] Fig.11 A schematic diagram of the structure of a guide member carrying an object to be taken in a character ornament provided in an embodiment of the present application;
[0017] Figures 12a to 12c A schematic diagram of the structure of the guide member and the shielding member of the character ornament provided in the embodiment of the present application when they are in an initial state, a certain state during the movement process, and a picking state;
[0018] Fig.13 and Fig.14 A schematic diagram of the structure of the interior of a character ornament from two perspectives provided in an embodiment of the present application;
[0019] Fig.15a and Fig.15b A schematic diagram of the structure of the second transmission component and the motion component in the figure ornament provided in the embodiment of the present application from two perspectives;
[0020] Fig.16a FIG15 is a schematic diagram of the structure from the rear side perspective; Fig.16b for Fig.16a Schematic diagram of the cross-section structure along TT; Fig.16c For Fig.16b A schematic diagram of the structure of the second transmission assembly and the motion assembly after the base moves to the object-picking state;
[0021] Figures 17a to 17c For the corresponding Figures 3 to 5 A schematic diagram of the structure inside the main body trunk in the state shown;
[0022] Fig.18 A schematic diagram of the structure of the second cam and the transmission arm in the figure ornament provided in the embodiment of the present application;
[0023] Fig.19 A schematic diagram of the structure inside the character ornament provided in an embodiment of the present application;
[0024] Fig. 20 A schematic diagram of the structure of a cover plate in an exploded state in a character ornament provided in an embodiment of the present application;
[0025] Fig.21 and Fig. 22 This is a schematic structural diagram from two perspectives of a storage bin and a main body of a character ornament provided in an embodiment of the present application when they are in an exploded state.
[0026] The reference numerals in the specific implementation manner are as follows:
[0027] 100. Character ornaments;
[0028] 110. Main body; 111. Mounting port; 112. Card interface; 113. Elastic card plate;
[0029] 120, storage bin; 121, accommodating cavity; 122, taking port; 123, moving assembly; 1231, guide; 12311, push block; 12312, guide slope; 12313, storage platform; 12314, docking platform; 12315, docking port; 12316, strip groove; 12317, transmission block; 1232, shielding member; 12321, force block; 12322, rotating shaft; 12323, convex point; 124, base; 125, placement port; 126, cover plate; 127, clamping block; 128, clamping slot;
[0030] 130. Pick-up arm; 131. Hand position; 132. Pick-up device; 133. Connection end;
[0031] 140. base; 141. switch; 142. terminal;
[0032] 150, driving member;
[0033] 160, first transmission assembly; 161, first cam; 162, transmission column; 163, output shaft; 164, second cam; 165, transmission arm; 166, previous stage transmission member; 167, gear set;
[0034] 170, second transmission assembly; 171, transmission rod; 171a, first end of the transmission rod; 171b, second end of the transmission rod; 1711, frame; 172, swing arm; 172a, first end of the swing arm; 172b, second end of the swing arm;
[0035] 181, first elastic member; 182, second elastic member;
[0036] 190, head;
[0037] 200. Items to be picked up. DETAILED DESCRIPTION
[0038] The following embodiments of the technical solution of the present application are described in detail in conjunction with the accompanying drawings. The following embodiments are only used to more clearly illustrate the technical solution of the present application, and are therefore only used as examples, and cannot be used to limit the scope of protection of the present application.
[0039] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by technicians in the technical field to which this application belongs; the terms used herein are only for the purpose of describing specific embodiments and are not intended to limit this application; the terms "including" and "having" in the specification and claims of this application and the above-mentioned figure descriptions and any variations thereof are intended to cover non-exclusive inclusions.
[0040] In the description of the embodiments of the present application, the technical terms "first", "second", etc. are only used to distinguish different objects, and cannot be understood as indicating or implying relative importance or implicitly indicating the number, specific order or primary and secondary relationship of the indicated technical features. In the description of the embodiments of the present application, the meaning of "multiple" is more than two, unless otherwise clearly and specifically defined.
[0041] Reference to "embodiments" herein means that a particular feature, structure, or characteristic described in conjunction with the embodiments may be included in at least one embodiment of the present application. The appearance of the phrase in various locations in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein may be combined with other embodiments.
[0042] In the description of the embodiments of the present application, the term "and / or" is only a description of the association relationship of the associated objects, indicating that three relationships may exist. For example, A and / or B can represent: A exists, A and B exist at the same time, and B exists. In addition, the character " / " in this article generally indicates that the associated objects before and after are in an "or" relationship.
[0043] In the description of the embodiments of the present application, the term "multiple" refers to more than two (including two). Similarly, "multiple groups" refers to more than two groups (including two groups), and "multiple pieces" refers to more than two pieces (including two pieces).
[0044] In the description of the embodiments of the present application, the technical terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, which are only for the convenience of describing the embodiments of the present application and simplifying the description, and do not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the embodiments of the present application.
[0045] In the description of the embodiments of the present application, unless otherwise clearly specified and limited, technical terms such as "installed", "connected", "connected", "fixed" and the like should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the internal connection of two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments of the present application can be understood according to the specific circumstances.
[0046] In order to ensure that users still have interest in playing with toy ornaments after a long time, the present application combines the movement of the character's arm with the act of taking objects when designing the character ornaments, that is, the objects to be taken contained in the ornaments are taken out by the action of the character swinging his arms. The objects to be taken can be set to be items frequently used in people's daily life, such as toothpicks, cigarettes, straws, chopsticks, pencils, etc., so as to ensure that the toy ornaments have a certain degree of practicality while retaining the fun of the toy ornaments, thereby stimulating the interest of users in a creative way.
[0047] First see Figure 1, the figure shows the structure of the character ornament provided by the first embodiment of the present application. As shown in the figure, the character ornament 100 includes: a main body 110, a storage compartment 120 and a picking arm 130. The figure takes the image of a warrior wearing a cloak and waving the cloak with his left hand as an example for display. The torso of the character and the cloak on the back together constitute the main body 110, the cloak waving with the left hand constitutes the storage compartment 120, and the right arm constitutes the picking arm 130. The embodiment shown in the figure does not constitute a limitation on the specific shape of the character ornament of the present application. In addition, the character ornament can also be, for example, a cartoon girl with flowing long hair, a fat man holding a wine barrel in one hand, etc., which is not specifically limited here.
[0048] In addition, if Figure 1 As shown in , in order to improve the stability of the placement of the ornament, a base 140 can also be set at the bottom of the main body 110, so that the base 140 can make the character ornament 100 more stable when placed on a desktop or other placement surface.
[0049] See also Figure 2 The figure shows the internal structure of the main body trunk 110 in an exploded state. As shown in the figure, a driving member 150 and a first transmission assembly 160 are provided inside the main body trunk 110. The driving member 150 is connected to the picking arm 130 through the first transmission assembly 160 to drive the picking arm 130 to rotate.
[0050] Specifically, the driving member 150 may be a manually operated lever or a Figure 2 The first transmission assembly 160 can adopt a connecting rod mechanism or a Figure 2 The rotary drive mechanism shown in the figure only needs to be able to transmit the power output by the driving member 150 to the picking arm 130 to rotate the picking arm 130, and the specific transmission form is not limited here.
[0051] See also Figures 3 to 5 The figure shows the structure of the figure ornament in three states at the same viewing angle. As shown in the figure, the storage bin 120 is provided with a receiving cavity 121 inside, and the receiving cavity 121 is used to receive the object 200 to be taken (a toothpick is taken as an example in the figure). The storage bin 120 is provided with a taking port 122 connected to the receiving cavity 121, and the hand position 131 of the taking arm 130 is provided with a taking device 132 (a structure that can hold a toothpick is taken as an example in the figure). Figures 3 to 5 It can be seen that the object-retrieving arm 130 is used to drive the object-retrieving device 132 to move to the object-retrieving port 122 and dock with the object 200 to be retrieved when rotating, so as to retrieve the object 200 to be retrieved.
[0052] exist Figures 3 to 5In the specific embodiment shown, the taking port 122 is in a form that can be covered and hidden, that is, when taking an object, the taking port 122 is opened to allow the taking device 132 to take out the object 200 to be taken out. Figure 3 In the state shown), that is, when no object is being taken, the object taking port 122 is blocked, thereby maintaining the overall aesthetics and mystery of the figure ornament 100. The specific forms of the blocking and hiding of the object taking port 122 will be described in detail below, so it will not be elaborated here. It should be noted that in some other embodiments of the figure ornament 100 provided, the object taking port 122 can also be normally open, and the object 200 to be taken is always exposed to the object taking port 122, and the object taking arm 130 drives the object taking device 132 to move to the object taking port 122 and dock with the object 200 to be taken to take it out.
[0053] The character ornaments 100 are designed as Figures 3 to 5 In the embodiment shown, the object 200 to be taken is a toothpick, and the taker 132 is in the form of a clamp. The character ornament 100 can be placed on the dining table. When the meal is finished, the taker arm 130 can be controlled to take out the toothpick by controlling the drive member 150. Then the user can take the toothpick from the taker 132 and use it. This process can enhance the fun and make the user happy. Figure 6 The object to be taken 200 may also be a cigarette, and the object picker 132 may also use a clamping piece that matches the size of the cigarette to clamp the cigarette and take it out. The character ornament 100 taking a cigarette may be placed on a tea table, a storage table in a car, an office desk, etc., so as to achieve convenient cigarette taking and enhance fun.
[0054] In addition to the above embodiments of the clamping and picking up toothpicks and cigarettes, other strip-shaped or tubular items such as straws, chopsticks, pencils, etc. can also be clamped and picked up. In addition, the character ornament 100 can also be designed as an archer, and the storage bin 120 is designed as a quiver, backpack, or other container located on the back of the main body 110. Accordingly, the object-picking arm 130 adopts a longitudinal rotation (i.e., rotation relative to a horizontal axis) to pick up the slender object 200 from the storage bin on the back, forming the action of an archer picking up an arrow, which can also enhance the fun.
[0055] It should be further explained that the object 200 to be picked up is not limited to strip-shaped or tubular objects, and the picker 132 is not limited to the clamping method. For example, the picker 132 can also use magnetic suction or suction cup adsorption to pick up objects 200 of other shapes. This is not a limitation on the specific type of the object 200 to be picked up and the specific picking form of the picker 132.
[0056] To sum up, in the figure ornament 100 provided in the embodiment of the present application, a storage bin 120 for accommodating objects 200 to be picked up is provided on the main body 110, and a driving member 150 and a first transmission assembly 160 for driving a picking arm 130 to rotate are hidden inside the main body 110, and a picker 132 is provided at the hand position of the picking arm 130. When the picking arm 130 rotates, an action of the figure arm taking the object 200 to be picked up from the storage bin 120 is formed, thereby enhancing the fun of the figure ornament 100, and the object 200 to be picked up can be set as daily necessities such as toothpicks and cigarettes, so that while ensuring the fun, the figure ornament 100 can also have practical functions.
[0057] As mentioned above, in order to ensure the overall aesthetics of the figure ornament 100 when placed, the access opening 122 can also be designed to be hidden. The following is a detailed description of the hidden design of the access opening 122. Figure 7 and Figure 8 , the figure shows the structure of the storage bin 120 in two viewing angles in the explosion state, such as Figure 7 As shown in , the storage bin 120 may be provided with a movable assembly 123, and the movable assembly 123 is used to make the object 200 to be taken out in the accommodating cavity 121 exposed or hidden relative to the taking port 122 when the object 200 is moved. Figure 8 As shown in FIG. 1 , the second transmission assembly 170 is further provided inside the main body 110 and the storage bin 120, and the first transmission assembly 160 is connected to the motion assembly 123 through the second transmission assembly 170. The driving member 150 is used to drive the object-picking arm 130 to rotate through the first transmission assembly 160 to move the object-picking device 132 to the object-picking port 122, and is also used to drive the motion assembly 123 to move through the first transmission assembly 160 and the second transmission assembly 170, so that the object 200 to be picked up in the accommodating cavity 121 is exposed from the object-picking port 122, so that the object-picking device 132 can take out the object 200 to be picked up through the object-picking port 122.
[0058] Specifically, the motion component 123 can cover and open the access opening 122 by rotating or sliding. For example, the motion component 123 is a door panel that is rotatably arranged at the access opening 122, and the second transmission component 170 includes a rotary transmission mechanism (e.g., a transmission mechanism composed of gears and a rotating shaft, etc.) that is fixedly connected to the motion component 123. When the driving member 150 drives the access arm 130 to rotate toward the access opening 122 through the first transmission component 160, the first transmission component 160 also drives the rotary transmission mechanism to rotate, thereby causing the motion component 123 to rotate with the rotary transmission mechanism and open the access opening 122, and vice versa, close the access opening 122. For example, the moving component 123 is a door panel slidably arranged at the picking port 122, and the second transmission component 170 includes a sliding mechanism (for example, a sliding mechanism composed of a slide rail and a slider, etc.) fixedly connected to the moving component 123. Accordingly, when the driving member 150 drives the picking arm 130 to rotate toward the picking port 122 through the first transmission component 160, the first transmission component 160 will also drive the sliding mechanism to slide, thereby causing the moving component 123 to slide with the sliding mechanism and open the picking port 122. Similarly, otherwise, the picking port 122 is closed.
[0059] In addition to the above implementation, the accompanying drawings also provide a specific implementation of the motion component 123, such as Figure 7 and Figure 8 As shown in the figure, the motion assembly 123 includes a guide 1231 and a shielding member 1232. The guide 1231 is slidably disposed in the accommodating cavity 121, and is used to carry the object 200 to be taken. The shielding member 1232 is flipped and disposed at the object taking port 122. The guide 1231 is connected to the second transmission assembly 170, and is used to drive the object 200 to be taken to slide toward the object taking port 122 along the direction indicated by the dotted arrow A in the figure as driven by the second transmission assembly 170. The guide 1231 is also in transmission connection with the shielding member 1232, and is used to drive the shielding member 1232 to flip along the direction indicated by the dotted arrow B in the figure to open the object taking port 122 when sliding toward the object taking port 122.
[0060] Specifically, see Figure 9a , Figure 9b , Fig.10a and Fig.10b ,in Figure 9a and Figure 9b The structure of the storage bin 120 from two perspectives in the initial state is shown in FIG. Fig.10a and Fig.10b The structure of the storage bin 120 from two perspectives is shown in FIG. Figure 9a and Figure 9bBased on the initial state shown in the figure, when the second transmission assembly 170 drives the guide member 1231 to slide toward the taking port 122 along the direction indicated by the dotted arrow A, the push block 12311 on the side of the guide member 1231 will push the force block 12321 on the side of the shielding member 1232, so that the shielding member 1232 is forced to rotate, and finally presents Fig.10a and Fig.10b In the state shown, the picking port 122 is open, and the picker 132 on the picking arm 130 picks up the object 200 to be picked up at the picking port 122 .
[0061] Fig.11 A specific implementation of a guide member 1231 is provided in the invention, as shown in the figure, taking the object 200 to be picked up as a toothpick as an example, a guide slope 12312 can be provided on the guide member 1231, and a storage platform 12313 is provided above the slope of the guide slope 12312, and a plurality of objects 200 to be picked up can be placed on the storage platform 12313, and a docking platform 12314 is provided below the slope of the guide slope 12312, and the docking platform 12314 is groove-shaped, so that the object 200 to be picked up that rolls down from the guide slope 12312 is restricted on the docking platform 12314, so that the picker 132 can better dock with the object 200 to be picked up on the docking platform 12314. A docking port 12315 is provided at the docking platform 12314. When the picker 132 clamps the object 200 to be picked up on the docking platform 12314, the picker 132 extends into the docking port 12315, clamps and takes out the object 200 to be picked up on the docking platform 12314, and completes the picking operation. Then, the next object 200 to be picked up will roll down the guide slope 12312 to the docking platform 12314, ready for the next picking up.
[0062] In addition to the use of Figures 9a to 10b In addition to the transmission method shown, other methods can also be used to achieve it. For details, please refer to Figures 12a to 12c The three states shown are Fig.12a As shown in the figure, the shielding member 1232 is rotatably connected to the storage bin 120. It should be noted that the storage bin 120 is not shown in the figure. Specifically, the shielding member 1232 is rotatably connected to the inner wall of the storage bin 120 through the rotation shafts 12322 on both sides thereof. At least one side of the guide member 1231 is provided with a strip groove 12316, and at least one side of the shielding member 1232 is provided with a convex point 12323 accommodated in the strip groove 12316, and the convex point 12323 is arranged away from the rotation axis (dotted line M in the figure) of the shielding member 1232.
[0063] The guide member 1231 is used to Fig.12aWhen sliding toward the taking port 122 in the direction indicated by the dotted arrow A, the convex point 12323 is pushed to move by the inner wall of the strip groove 12316, so that the convex point 12323 rotates relative to the strip groove 12316 and moves in the direction indicated by the dotted arrow B in the figure as guided by the strip groove 12316. Specifically, the convex point 12323 moves outward in the direction indicated by the dotted arrow A driven by the inner wall of the strip groove 12316, and is restricted by the rotational connection between the shielding member 1232 and the storage bin 120, and also moves downward along the strip groove 12316. The combination of these two motion states makes the convex point 12323 rotate along the rotation axis (dotted line M in the figure) of the shielding member 1232, and then sequentially as shown in FIG. Figure 12b and 12c As shown, the shielding member 1232 is turned over by the protrusion 12323 , thereby opening the taking port 122 .
[0064] Further, regarding the driving of the guide member 1231 by the second transmission assembly 170, the present application also provides a variety of implementations, one of which is shown in FIG. Fig.13 The storage bin 120 is disposed on the side of the main body 110 opposite to the object-retrieving arm 130. The second transmission assembly 170 includes a rotatable transmission rod 171, which extends from the inside of the main body 110 to the inside of the storage bin 120. The first end 171a of the transmission rod 171 located in the storage bin 120 is connected to the guide member 1231. Fig.14 As shown in another perspective, the first transmission assembly 160 includes a rotatable first cam 161. The position of the first cam 161 deviating from its axis (point O in the figure) is connected to the second end 171b of the transmission rod 171 located in the main body 110. The rotation axis ( Fig.13 The midpoint line N) is located between the first end 171a and the second end 171b. The transmission rod 171 is used to drive the guide member 1231 to slide when rotating with the rotation of the first cam 161.
[0065] It should be noted that the first end 171a of the transmission rod 171 and the guide member 1231 and the second end 171b and the first cam 161 should be connected in a manner that allows for relative rotation and relative movement at the same time to prevent the transmission from getting stuck. Fig.13 and 14 In the specific embodiment shown, a transmission column 162 is disposed at a position deviating from the axis of the first cam 161, and a frame 1711 is disposed at the first end 171a of the transmission rod 171. Part of the guide member 1231 is accommodated in the frame 1711, and the part of the guide member 1231 accommodated in the frame 1711 can move in the frame 1711. When the transmission column 162 moves along the first cam 161, the transmission column 162 moves along the first cam 161. Fig.14When the transmission rod 171 rotates in the direction indicated by the dashed arrow C, the transmission column 162 applies a force to the second end 171b of the transmission rod 171 to rotate the second end 171b of the transmission rod 171 in the direction indicated by the dashed arrow D in the figure, and the frame 1711 at the first end 171a of the transmission rod 171 rotates in the direction indicated by the dashed arrow D in the figure. Fig.13 The guide member 1231 rotates in the direction indicated by the dotted arrow E, and then exerts a force on the guide member 1231 through the inner wall of the frame body 1711 , so that the guide member 1231 moves toward the taking port 122 .
[0066] Fig.13 and Fig.14 The second transmission assembly 170 provided in the invention has the advantages of simple structure and convenient manufacturing for driving the guide member 1231. However, since the frame 1711 is used to push the guide member 1231 from the bottom, and the center of gravity of the guide member 1231 is located above the force-bearing position, the transmission process is relatively laborious, and when the sliding matching structure flexibility of the guide member 1231 decreases, for example, when foreign matter such as dust invades between the sliding friction surfaces, it is easy to get stuck. In this regard, the present application also proposes an optimization solution, please refer to Fig.15a and Fig.15b The storage bin 120 is fixedly provided with a base 124, and the guide member 1231 is slidably connected to the base 124. The second transmission assembly 170 further includes a swing arm 172, a first end 172a of the swing arm 172 is rotatably connected to the base, a second end 172b of the swing arm 172 is movably connected to the first end 171a of the transmission rod 171, and the swing arm 172 is used to rotate relative to the base 124 under the drive of the transmission rod 171. In addition, the swing arm 172 is also movably connected to the guide member 1231 at a position between the first end 172a and the second end 172b, and the swing arm 172 is used to drive the guide member 1231 to slide relative to the base 124 when rotating relative to the base 124.
[0067] Please further combine Fig.16a and Fig.16b , Fig.16b Shows Fig.16a The cross-sectional structure along TT is shown in the figure. The transmission process is as follows: when the first end 171a of the transmission rod 171 applies a leftward force to the second end 172b of the swing arm 172, the swing arm 172 will rotate along the direction indicated by the dotted arrow F in the figure relative to the axis (point P in the figure) of the first end 172a of the swing arm 172 and the base 124. During the rotation of the swing arm 172, the position (point Q in the figure) on the swing arm 172 that is movably connected to the guide member 1231 will push the guide member 1231 to slide along the direction indicated by the dotted arrow A, and finally the swing arm 172 is in the state of being rotated. Fig.16cIn the state shown, the guide member 1231 is driven. In such a driving mode, the swing arm 172 is used as a transmission component between the transmission rod 171 and the guide member 1231, forming a driving structure that pushes the guide member 1231 to slide from the back, so that the height difference between the position where the force is applied on the guide member 1231 and the center of gravity of the guide member 1231 is reduced, which is conducive to ensuring the smoothness of the transmission and making the transmission easy and labor-saving.
[0068] In actual use, when the user drives the picker 132 on the picking arm 130 forward through the driving member 150 to move to the picking port 122 to pick up the object 200 to be picked up, the driving member 150 can be used to reversely drive the picking arm 130 to return to the initial position. In addition, of course, a corresponding reset mechanism can also be designed to automatically reset the picking arm 130 and the motion component 123, making the character ornament 100 more convenient to operate.
[0069] Specifically, for the automatic resetting of the picking arm 130, as Fig.14 As shown in , a first elastic member 181 can be connected between the first transmission assembly 160 and the main body trunk 110 , and the first elastic member 181 drives the object-grabbing arm 130 to automatically reset through the first transmission assembly 160 .
[0070] for Fig.13 In the embodiment shown in which the transmission rod 171 is used to directly drive the guide member 1231 in the moving component 123 to slide, an elastic member can be connected between the structure G in the storage bin 120 and the structure H on the transmission rod 171, so that the elastic member drives the guide member 1231 to automatically reset through the transmission rod 171.
[0071] for Fig.16b and Fig.16c In the embodiment shown in which a transmission rod 171 and a swing arm 172 are combined to drive the guide member 1231 in the moving component 123 to slide, a second elastic member 182 can be connected between the swing arm 172 and the interior of the storage bin 120, and the second elastic member 182 drives the guide member 1231 to reset via the swing arm 172.
[0072] The shielding member 1232 in the motion component 123 can be automatically reset by providing a torsion spring, or the guide member 1231 can cooperate with the shielding member 1232 so that when the guide member 1231 is reset, the shielding member 1232 is also reset together.
[0073] It can be understood that the specific resetting methods provided in the figure and above are only some exemplary descriptions, and do not constitute a limitation on the specific structure and form of automatic resetting.
[0074] In order to further enhance the fun of the character ornament 100 and make the action of taking the object more realistic and interesting, the head of the character can also be designed to rotate with the object-taking arm 130, so that the character also moves his head to observe the object when taking it. The external display of the whole action can be referred to in sequence. Figures 3 to 5 The head 190 rotates at the same angle and direction as the picking arm 130 .
[0075] For driving the head 190, in order to simplify the internal structure, the first transmission assembly 160 can be connected to the head 190, so that the first transmission assembly 160 can drive the head 190 and the picking arm 130 to rotate synchronously. Specifically, since the rotation axis of the head 190 and the rotation axis of the picking arm 130 are offset from each other, in the first transmission assembly 160, for example, the head 190 and the picking arm 130 can be fixedly connected to a gear shaft respectively, and the gears on the two gear shafts can be used as the next gear and mesh with the same previous gear to drive, so that when the previous gear rotates, the head 190 and the picking arm 130 are driven to rotate synchronously.
[0076] In addition to the above-mentioned method, the present application also proposes a method in which the first transmission assembly 160 synchronously drives the head 190 and the object-picking arm 130 to rotate. For details, please refer to Figures 17a to 17c , which correspond to Figures 3 to 5 The structural states of the first transmission assembly 160 in three states are shown in the figure. The first transmission assembly 160 includes a rotatable output shaft 163, and the output shaft 163 is fixedly connected to the head 190. The output shaft 163 is fixedly provided with a second cam 164. The object-grabbing arm 130 has a connecting end 133 extending into the main body 110. The first transmission assembly 160 also includes a transmission arm 165. The two ends of the transmission arm 165 are respectively rotatably connected to the position of the second cam 164 deviating from its axis and the connecting end 133. Please refer to Figures 17a to 17c As can be seen from the figure, the output shaft 163 will drive the head 190 and the second cam 164 to rotate at the same time. During the rotation process, the second cam 164 will push the transmission arm 165 to move through the hinge point with the transmission arm 165, and then the transmission arm 165 will push the picking arm 130 to rotate synchronously through the hinge point with the connecting end 133, thereby realizing synchronous driving of the head 190 and the picking arm 130 in the same direction.
[0077] Please refer again Fig.17a , and further combined with Fig.18In the other perspective shown in the figure, the picking arm 130 is in the initial state, that is, in the fully open state. In order to make the transmission mechanism driven by the second cam 164 through the transmission arm 165 to rotate the picking arm 130 flexible and reliable, in the first transmission assembly 160, the transmission arm 165 is rotatably connected to the lower part of the second cam 164 deviating from the axis position, and the previous stage transmission member 166 of the second cam 164 drives the second cam 164 to rotate in an eccentric manner, that is, the previous stage transmission member 166 and the second cam 164 are fixed to each other at a position deviating from the rotation axis of the two, so that when the picking arm 130 is in the initial state, the transmission arm 165 can be as Fig.17a and Fig.18 As shown in the figure, at least part of the transmission arm 165 is contained in the space between the previous transmission member 166 and the second cam 164. In addition, the previous transmission member 166 can also use a non-eccentric shaft to drive the second cam 164, as long as the shaft is designed to be thinner. Of course, the transmission arm 165 can also be rotatably connected to the upper part of the second cam 164 that deviates from the axis position. The transmission principle is the same as the rotatably connected at the bottom, which will not be described in detail here.
[0078] See also Fig.19 In the specific embodiment shown in the figure, the figure ornament 100 is electrically driven, that is, the driving member 150 is a motor, and the first transmission assembly 160 also includes a gear set 167 connected to the output end of the driving member 150. The gear set 167 is used to achieve the purpose of reducing speed and increasing torque, thereby ensuring the reliability of driving the picking arm 130. The base 140 is provided with a switch 141 and a terminal 142, and the terminal 142 is electrically connected to the switch 141 and the driving member 150 respectively. After the user presses the switch 141, the driving member 150 synchronously drives the picking arm 130 to rotate toward the storage bin 120, the head 190 rotates toward one side of the storage bin 120, and the motion assembly 123 moves to open the picking port 122, so that the picking arm 130 takes out the object 200 to be picked up in the storage bin 120. After taking out, the picking arm 130, the head 190 and the motion assembly 123 are automatically reset.
[0079] like Fig. 20 As shown in the explosion state in the figure, in order to be able to quickly put the objects 200 to be taken back into the storage bin 120 when the objects 200 to be taken have been taken out or are about to be taken out, a placement opening 125 connected to the accommodating cavity 121 can also be opened on the storage bin 120, and a removable cover 126 is provided on the placement opening 125. When it is necessary to put the objects 200 to be taken in, the cover 126 is removed, and after the new objects 200 to be taken are put into the accommodating cavity 121 from the placement opening 125, the cover 126 can be replaced.
[0080] In addition, in order to improve the playability of the character ornament 100 and enable it to be used in different scenes, that is, to achieve taking different types of objects to be taken, the storage bin 120 can also be connected to the main body 110 in a detachable manner. Fig.21 and Fig. 22 As shown in the explosion state in the figure, a mounting opening 111 is provided on one side of the main body 110, a card interface 112 is provided on one side of the mounting opening 111 of the main body 110, and an elastic card plate 113 is provided on the other side. The storage bin 120 is provided with a card block 127 at a position corresponding to the card interface 112, and a card slot 128 is provided at a position corresponding to the elastic card plate 113. During installation, the card receiving block 127 is first extended into the mounting opening 111 and snapped into the card interface 112, and then the storage bin 120 is pressed into the mounting opening 111, so that the elastic card plate 113 shrinks under the pressure of the outer wall of the storage bin 120. When the storage bin 120 is pressed into place, the elastic card plate 113 rebounds and snaps into the card slot 128, thereby completing the installation of the storage bin 120 on the main body 110.
[0081] In order to facilitate the disassembly and replacement of the storage bin 120, Fig.21 and Fig. 22 As shown in the figure, the elastic clip 113 can be set to be connected to the main body trunk 110 in a rotatable manner through a torsion spring or a spring, and the elastic clip 113 runs through the main body trunk 110, and the part located inside the main body trunk 110 is used to engage with the slot 128 under the action of elastic force to fix the storage bin 120, and the part located outside the main body trunk 110 is used for the user to apply force with his hand. When the user drives the elastic clip 113 from the outside to overcome the elastic force and rotate, the inside of the elastic clip 113 is separated from the slot 128, and the storage bin 120 can be easily pulled out from the installation port 111.
[0082] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them; although the present application is described in detail with reference to the above embodiments, a person skilled in the art should understand that the technical solutions described in the above embodiments can still be modified, or some or all of the technical features can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application. In particular, as long as there is no structural conflict, the various technical features mentioned in the embodiments can be combined in any way.
Claims
1. A character ornament, characterized in that: include: A main body, a storage bin and a picking arm, wherein the storage bin is arranged on the main body, and the picking arm is rotatably connected to one side of the main body; A driving member and a first transmission assembly are disposed inside the main body, and the driving member is connected to the object-picking arm through the first transmission assembly to drive the object-picking arm to rotate; The storage bin is provided with a accommodating cavity inside, and the accommodating cavity is used to accommodate objects to be taken. The storage bin is provided with a taking port connected with the accommodating cavity. The hand position of the taking arm is provided with a taker, and the taking arm is used to drive the taker to move to the taking port and dock with the objects to be taken when rotating, so as to take out the objects to be taken.
2. The character ornament according to claim 1, characterized in that: A moving component is movably provided on the storage bin, and the moving component is used to make the objects to be taken out in the accommodating cavity appear or hide relative to the taking port when the moving component moves; A second transmission assembly is also provided inside the main body and the storage bin, and the first transmission assembly is connected to the motion assembly through the second transmission assembly. The driving member is used to drive the picking arm to rotate through the first transmission assembly to move the picker to the picking port, and is also used to drive the motion assembly to move through the first transmission assembly and the second transmission assembly, so that the objects to be picked up in the accommodating cavity are exposed from the picking port, so that the picker can take out the objects to be picked up through the picking port.
3. The character ornament according to claim 2, characterized in that: The motion assembly includes a guide and a shielding member, wherein the guide is slidably disposed in the accommodating cavity and is used to carry the object to be taken, and the shielding member is flipped and disposed at the object taking port; The guide is connected to the second transmission assembly, and is used to drive the object to be taken to slide toward the object taking port as the second transmission assembly is driven; The guide member is also in driving connection with the shielding member, and is used to drive the shielding member to flip over to open the taking opening when sliding toward the taking opening.
4. The character ornament according to claim 3, characterized in that: The shielding member is rotatably connected to the storage bin; A strip groove is formed on at least one side of the guide member, and a convex point accommodated in the strip groove is formed on at least one side of the shielding member, wherein the convex point is arranged away from the rotation axis of the shielding member; The guide is used to push the protrusion to move through the inner wall of the strip groove when sliding toward the picking port, so that the protrusion rotates relative to the strip groove and moves along the guide of the strip groove, thereby causing the shielding member to flip over to open the picking port.
5. The character ornament according to claim 3, characterized in that: The storage bin is arranged on a side of the main body opposite to the object-retrieving arm; The second transmission assembly includes a rotatably arranged transmission rod, the transmission rod extending from the interior of the main body to the interior of the storage bin, and the first end of the transmission rod located in the storage bin is connected to the guide member; The first transmission assembly comprises a rotatable first cam, a position of the first cam deviating from the axis is connected to the second end of the transmission rod located in the main body, and the rotation axis of the transmission rod is located between the first end and the second end of the transmission rod; The transmission rod is used for driving the guide member to slide when the transmission rod rotates along with the rotation of the first cam.
6. The character ornament according to claim 5, characterized in that: A base is fixedly arranged in the storage bin, and the guide member is slidably connected to the base; The second transmission assembly further includes a swing arm, a first end of the swing arm is rotatably connected to the base, a second end of the swing arm is movably connected to the first end of the transmission rod, and the swing arm is used to rotate relative to the base under the drive of the transmission rod; The swing arm is movably connected to the guide member at a position between the first end and the second end, and the swing arm is used to drive the guide member to slide relative to the base when the swing arm rotates relative to the base.
7. The character ornament according to claim 2, characterized in that: The object-picking arm and the motion component can be automatically reset.
8. The character ornament according to claim 1, characterized in that: The character ornament also includes a head rotatably arranged on the main body trunk, and the first transmission component is also connected to the head. The first transmission component is used to drive the head and the picking arm to rotate synchronously.
9. The character ornament according to claim 8, characterized in that: The first transmission assembly includes a rotatable output shaft, and the output shaft is fixedly connected to the head; A second cam is fixedly arranged on the output shaft, the object-picking arm has a connecting end extending into the interior of the main body, and the first transmission assembly further comprises a transmission arm, the two ends of the transmission arm are respectively rotatably connected to a position deviating from the axis center of the second cam and the connecting end; The output shaft is used to drive the head to rotate, and also drives the picking arm to rotate through the second cam and the transmission arm.
10. The character ornament according to any one of claims 1 to 9, characterized in that: The storage bin is detachably connected to the main body.