CN213432976U - A kind of ground mouse toy - Google Patents
A kind of ground mouse toy Download PDFInfo
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- CN213432976U CN213432976U CN202021208412.1U CN202021208412U CN213432976U CN 213432976 U CN213432976 U CN 213432976U CN 202021208412 U CN202021208412 U CN 202021208412U CN 213432976 U CN213432976 U CN 213432976U
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Abstract
The utility model relates to a rat-beating toy, a bionic swinging piece which is connected with the rotation of a shell is arranged on the shell of the rat-beating toy. And when a child strikes a struck piece (e.g., a struck piece of a bionic hamster) located on one side of the swinging piece, the bionic swinging piece swings, and the child strikes the side, the bionic swinging piece also swings to the side. The bionic swinging piece is also provided with a small wooden hammer or a small pan, and from the perspective of children, the bionic swinging piece represents a swinging image which is the same as that of a squirrel in a match with the children, or the bionic swinging piece controls the swinging image to be the same as that of the squirrel, so that the whole process of the squirrel is full of interest. The bionic swinging piece swings to give a certain feedback to the children playing the groundmouse toy, so that the interactivity is enhanced, and the groundmouse playing process becomes more playable and interesting.
Description
Technical Field
The utility model relates to a play the ground mouse toy, especially relate to a play ground mouse toy.
Background
With the development of society, the toys, as a product for people to play games, are continuously innovated and the game machines are more and more diversified. When studying and developing children intelligence products, many countries often participate in a plurality of games to the products, and the purpose is to develop the practical ability and the mental habits of children. The present invention relates to a playing device for playing a squirrel, which is a very popular toy and is suitable for adults as well as children.
The groundmouse hitting toy is generally provided with a plurality of limiting holes, a knocked piece (such as a knocked piece of a bionic groundmouse) is placed in each limiting hole, the knocked piece moves up and down in each limiting hole, namely extends out of each limiting hole or is hidden in each limiting hole, and then the knocked piece extending out of each limiting hole is knocked by a hammer. However, the existing groundmouse toy lacks other interaction mechanisms, so that the interactivity and entertainment of the groundmouse machine are low, and children lose interest after playing for a period of time.
Disclosure of Invention
In order to solve the problem, the utility model aims to provide a play ground mouse toy aims at solving the problem that current play ground mouse toy is interactive and recreational low.
In order to achieve the above purpose, the utility model adopts the following technical scheme: the utility model provides a play ground mouse toy, includes a plurality of quilt and beats the piece and be used for holding the casing by the piece of beating, is provided with the through-hole on the lid of casing, by the piece of beating can go up and down in the casing is inside, and exposes the casing outside through the through-hole under the lifting state part, the casing is outer to be rotated and is connected with bionical swing piece, bionical swing piece can with by the linkage of the piece of beating, by the piece of beating when going up and down in the through-hole under the exogenic action, bionical swing piece rotates along rotating the junction. A bionic swinging piece which is rotationally connected with the shell is arranged on the shell of the groundmouse toy. And the bionic oscillating piece oscillates when a child strikes a struck piece (e.g., a struck piece of a bionic squirrel) located on one side of the oscillating piece. The bionic swinging piece is also provided with a small wooden hammer or a small pan, and from the perspective of children, the bionic swinging piece just like the swinging image represented by the bionic swinging piece playing a land mouse with a game of the children, or like the children controlling the swinging image playing a land mouse, the bionic swinging piece swings to give certain feedback to the children playing the land mouse toy, so that the interactivity is enhanced, and the process of playing the land mouse becomes better and more interesting.
Furthermore, the bionic swinging piece is connected to a rotating assembly arranged in the shell; the rotating assembly comprises a rotating part and a resetting part arranged on the rotating part; the shell is internally provided with a pressing component, the pressed component can be driven in the lifting process of the knocked piece, and the pressing component can drive the rotating piece to rotate in the transverse direction. The bionic swing piece is connected to a rotating assembly arranged in the shell, the bionic swing piece swings along with the rotation of the rotating piece, the pressing assembly is arranged, and the lifting motion of the knocked piece is converted into the rotation of the rotating piece. With traditional electronic control's the toy of playing ground mouse, become to control by mechanical structure for the structure of toy is simpler, and the cost is lower, and driven whole process is more stable, is difficult to make mistakes.
Further, the pressing component comprises a pressing plate and a sliding block sliding along the track; the knocked piece can pass through the pressing plate and drive the sliding block transversely slides and is close to/far away from the rotating piece, and one end of the sliding block can drive the rotating piece to rotate in the sliding process. The knocked piece drives the sliding block to transversely slide and approach/depart from the rotating piece through the pressing plate, and one end of the sliding block can drive the rotating piece to rotate, so that the vertical motion is converted into the transverse motion and then converted into the rotation of the rotating piece.
Furthermore, the bionic swinging piece is connected to the middle part of the shell, and the two sides of the middle part are respectively provided with a knocked piece and corresponding pressing components; the knocked piece on any side drives the rotating piece through the corresponding pressing component, so that the bionic swinging piece rotates towards the side. The swing direction of the bionic swing piece is the same as the position of the knocked piece hit by the child, and compared with the situation that the swing direction is opposite to the position of the knocked piece hit by the child, the bionic swing piece better accords with the design concept of playing the hamster in the match between the bionic swing piece and the child, and also accords with the cognitive habit of the child, and has stronger interactivity and more sufficient interestingness.
Furthermore, the lower end of the rotating part is provided with a first tip end, and two sides of the first tip end are provided with guide surfaces; the abutting end of the sliding block and the rotating piece is provided with a second tip end, and the lower side of the second tip end is provided with an inclined plane; and in the rotating process of the rotating piece, the second tip end is abutted against the guide surface. On one hand, the second tip abuts against the guide surface, so that the sliding block pushes the rotating piece to rotate more smoothly; on the other hand, the slider is equipped with the inclined plane with the second most advanced downside that rotates the piece and offsets, makes the slider dodge the first most advanced on the rotating block in the rotating process of rotating the piece.
Furthermore, the rotating piece is provided with a convex column and a limiting block, and the convex column is positioned on the upper side of the limiting block; a baffle plate is vertically arranged at the lower side of the rotating part; the piece that resets is the torsional spring of cover on the projection, and the both ends of torsional spring respectively with baffle both sides counterbalance, and the stopper is in between the torsional spring both ends. On the one hand, the torsional spring limits the degree of rotation of rotating the piece, and on the other hand, after the external force that acts on by the piece that strikes disappears, the elasticity of torsional spring makes the piece that rotates return to initial position.
Further, the pressing plate is arranged on the lower side of the knocked part, the front end of the pressing plate is hinged to the shell, and the rear end of the pressing plate extends to the upper side of the sliding block and abuts against the inclined surface of the sliding block, so that the rear end of the pressing plate can press the sliding block to the rotating part. The front end of clamp plate is articulated with the casing, and the sliding block top is stretched to the rear end, has played the effect of lever in fact, will be knocked the lift conversion on the less degree of piece for the lift conversion of the great degree of clamp plate rear end, and the effect that makes the clamp plate press the sliding block is more obvious to clamp plate and slider inclined plane offset, change the lift of clamp plate rear end for the lateral shifting of sliding block.
Furthermore, a spring for resetting the pressure plate is arranged between the pressure plate and the bottom plate of the shell. The spring for resetting is arranged between the pressing plate and the shell bottom plate, one end of the spring is abutted against the lower end of the pressing plate, and the other end of the spring is abutted against the shell bottom plate, so that after the external force acting on the knocked part disappears, the rear end of the pressing plate can return to the initial position under the action of the spring.
Furthermore, the rotating part is provided with a mounting groove, and the lower end of the bionic swinging part can extend into the shell and can be detachably inserted into the mounting groove. The bionic swinging piece and the rotating piece are detachably spliced, so that on one hand, the bionic swinging piece is arranged outside the shell, and the rotating piece is arranged in the shell, so that the bionic swinging piece is convenient to mount; on the other hand, the bionic swinging piece can be detached in the transportation process, so that the space is saved, and the damage in the transportation process is also prevented.
Further, be equipped with balanced seat in the casing, be provided with the pivot on the balanced seat and rotate through the pivot and connect on the casing, by the piece of knocking install on the casing of balanced seat both ends top or swing joint in balanced seat both ends top. The balance seat is similar to a seesaw, children can knock the knocked piece with a wooden hammer during playing, one knocked piece on the balance seat moves downwards, the other knocked piece moves upwards, and when external force acting on the knocked piece disappears, the knocked piece can return to the initial position under the action of the balance seat.
Through the technical scheme, the bionic swinging piece which is rotationally connected with the shell is arranged on the shell of the groundmouse toy. And when a child strikes a struck piece (e.g., a struck piece of a bionic hamster) located on one side of the swinging piece, the bionic swinging piece swings, and the child strikes the side, the bionic swinging piece also swings to the side. The bionic swinging piece is also provided with a small wooden hammer or a small pan, and from the perspective of a child, the bionic swinging piece represents a swinging image which is played by a child to play a squirrel, or the bionic swinging piece represents a swinging image which is controlled by the child to play a squirrel. The bionic swinging piece swings to give a certain feedback to the children playing the groundmouse toy, so that the interactivity is enhanced, and the groundmouse playing process becomes more playable and interesting.
Drawings
Fig. 1 is a schematic view of the present invention.
Fig. 2 is a schematic view of the installation of the cover and the housing main body of the present invention.
Fig. 3 is a schematic view of the driving structure of the present invention.
Fig. 4 is a schematic view of the balance seat installation.
FIG. 5 is a schematic view of the rotor and slider assembly shown in FIG. 1.
FIG. 6 is a schematic view of the rotor and slider assembly shown in FIG. 2.
In the figure, the knocked part 1, the shell 2, the through hole 3, the bionic swinging part 4, the rotating part 5, the mounting groove 6, the pressing plate 7, the sliding block 8, the guide surface 9, the inclined surface 10, the convex column 12, the limiting block 13, the torsion spring 14, the balance seat 15, the baffle 16, the rotating shaft 151, the hinge seat 17, the first limiting column 18, the second limiting column 19, the shell body 22 and the cover body 21.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary and intended to be used for explaining the present invention, and should not be construed as limiting the present invention.
In the description of the present invention, it should be understood that the terms "transverse," "length," "width," "thickness," "upper," "lower," "vertical," "horizontal," "top," "bottom," "inner," and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, which are merely for convenience of description and simplification of description, and are not to be construed as limitations of the present invention.
In the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "fixed" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
As shown in figure 1, a rat-killing toy comprises a plurality of knocked pieces 1 and a shell 2 used for containing knocked pieces, wherein the shell comprises a shell body 22 and a cover body 21, the shell body contains knocked pieces, a through hole 3 is formed in the cover body, the knocked pieces can lift in the shell body, the outer sides of the shell body are exposed through the through hole in the lifting state, a bionic swinging piece 4 is rotatably connected to the outer side of the shell body, the bionic swinging piece can be linked with the knocked pieces, and when the knocked pieces lift in the through hole under the action of external force, the bionic swinging pieces rotate along the rotation connection positions. A bionic swinging piece which is rotationally connected with the shell is arranged on the shell of the groundmouse toy. And when a child strikes a struck member (e.g., a struck member of a bionic squirrel) located on one side of the swinging member, the bionic swinging member swings, and the faster the child strikes, the faster the bionic swinging member swings. The bionic swinging piece is also provided with a small wooden hammer or a small pan, and from the perspective of children, the bionic swinging piece just like the swinging image represented by the bionic swinging piece playing a squirrel in a match with the children, or like the children controlling the swinging image playing a squirrel, the bionic swinging piece swings to give certain feedback to the children playing the squirrel toy, so that the interactivity is enhanced, and the process of playing the squirrel becomes better and more interesting.
In the embodiment, in order to enable the interaction between the child and the groundmouse toy to be more in line with the cognitive logic of the child and create the effect that the bionic swinging piece matches with the groundmouse of the child, the bionic swinging piece is connected to the middle of the shell, and the two sides of the middle are respectively provided with the knocked piece and the corresponding pressing component; the knocked piece on any side drives the rotating piece through the corresponding pressing component, so that the bionic swinging piece moves to the side. And the knocked piece is painted with colors or pasted with stickers, so that the knocked piece looks like a rat.
The general toy for playing the groundmouse controls the lifting of the groundmouse through an electronic system, but in the embodiment, in order to simplify the structure, save the cost and enable children not to be easily damaged when playing the toy for playing the groundmouse, the lifting of the groundmouse is realized by using a balance seat similar to a seesaw. As shown in fig. 2 to 3, the lower end of the cover body is provided with a hinge base 17, and the balance base 15 is provided with a rotating shaft 151 and is clamped into a clamping groove on the hinge base 17 through the rotating shaft 151. The knocked piece is arranged on a through hole formed in the cover body, and the lower end of the knocked piece is located above the two ends of the balance seat.
In other embodiments, the lower end of the knocked part can be movably connected with two ends of the balance seat.
In order to make the structure of the toy simpler and the cost lower, the whole driving process is more stable, and the damage of the child in the using process is avoided, the mode of driving the bionic swinging piece by the knocking piece is set as mechanical driving. As shown in figure 4, the bionic swinging piece is connected to a rotating piece 5 arranged in the shell, a pressing component is arranged in the shell, the knocked piece can be driven in the lifting process of the bionic swinging piece to drive the pressing component, and the pressing component can drive the rotating piece to rotate in the transverse direction. The rotating part is provided with a mounting groove 6, and the lower end of the bionic swinging part 4 can extend into the shell and can be detachably inserted into the mounting groove. Specifically, the pressing component comprises a pressing plate and a sliding block sliding along a track; the knocked piece can drive the pressing plate and the sliding block transversely slides and is close to/far away from the rotating piece, and one end of the sliding block can drive the rotating piece to rotate in the sliding process. The shell body is provided with a slide way for the sliding block to slide, and the slide way is provided with a second limit column 19 for limiting the sliding range of the sliding block.
As shown in fig. 4, the pressing plate is arranged on the lower side of the knocked part, the front end of the pressing plate is hinged with the shell, and the rear end of the pressing plate extends to the upper side of the sliding block and abuts against the inclined surface of the sliding block, so that the rear end of the pressing plate can press the sliding block to the rotating part. The front end of clamp plate is articulated with the casing, and the sliding block top is stretched to the rear end, has played the effect of lever in fact, will be knocked the lift conversion on the less degree of piece for the lift conversion of the great degree of clamp plate rear end, and the effect that makes the clamp plate press the sliding block is more obvious to clamp plate and slider inclined plane offset, change the lift of clamp plate rear end for the lateral shifting of sliding block. After the external force acting on the knocked part disappears, the knocked part returns to the initial position under the action of the balance seat and does not press against the pressing plate any more, and in order to enable the rear end of the pressing plate to return to the initial position conveniently, a spring for resetting the pressing plate is arranged between the pressing plate 7 and the bottom plate of the shell. The shell bottom plate is provided with a first limiting column 18 which penetrates through the pressing plate 7, the first limiting column is sleeved with the reset spring, one end of the reset spring is abutted against the shell bottom plate, and the other end of the reset spring is abutted against the lower end of the pressing plate.
The sliding block drives the rotating piece in various modes, the most common mode comprises pressing and pulling, and when the sliding block on one side of the rotating piece presses against the lower end of the rotating piece, the bionic swinging piece on the upper end of the rotating piece can swing to the side; when the sliding block at one side of the rotating piece pulls the upper end of the rotating piece, the bionic swinging piece at the upper end of the rotating piece can swing to the side.
As shown in fig. 5 to 6, in the present embodiment, the rotation of the rotating member is driven by pressing, and the sliding block presses the lower end of the rotating member. In order to prevent the sliding block on any side from interfering with the sliding block on the other side in the rotating process of the rotating member when the sliding block on any side is abutted against the lower end of the rotating member, the lower end of the rotating member is provided with a first tip end, and two sides of the first tip end are provided with guide surfaces 9; a second tip is arranged on the lower side of the abutting end of the sliding block and the rotating piece, and an inclined surface 10 is arranged on the lower side of the second tip; the second tip abuts the guide surface 9 during rotation of the rotor. On one hand, the inclined surface 10 below the sliding block leaves a certain avoiding space for the first tip in the rotating process of the rotating member; on the other hand, the second tip abuts against the guide surface 9 in the rotating process of the rotating member, so that the rotating member rotates more smoothly.
The rotating piece is provided with a convex column 12 and a limiting block 13, and the convex column is positioned on the upper side of the limiting block; a baffle 16 is vertically arranged at the lower side of the rotating part; the piece that resets is the torsional spring 14 that the cover was established on the projection, and the both ends of torsional spring respectively with baffle both sides counterbalance, and stopper 13 is located between the torsional spring both ends. Through set up the torsional spring on rotating the piece, rotate the rotation of restriction torsional spring after the certain degree when rotating to after will being hit the inboard external force of through-hole by the piece of strikeing and disappear, the elasticity of torsional spring can make and rotate the piece and get back to initial position.
The specific transmission mode in this embodiment: when children hammer into through-hole 2 inboardly with the wooden hammer with being hit piece 1 (also bionical ground mouse) that will be located bionical swing piece one side, the lower extreme that is hit the piece can be pressed and supported 7 middle parts of clamp plate, and the clamp plate front end is articulated, and the rear end is located the sliding block upside, and the less range of the pressure of hitting the piece is supported and is made the rear end of clamp plate have great decline, and the rear end of clamp plate 7 is owing to offset with 8 inclined planes of sliding block, presses the sliding block to the direction of rotating the piece when the clamp plate lower extreme descends. The middle part of the rotating piece is rotatably connected with the shell, the lower end of the rotating piece 5 is abutted against the other end of the sliding block, the lower end of the rotating piece is pressed to the other side by the sliding block, the upper end of the rotating piece rotates towards the side, the bionic swinging piece 4 is connected with the upper end of the rotating piece, and the bionic swinging piece 4 swings towards the side.
Although embodiments of the present invention have been shown and described, it is to be understood that the above embodiments are exemplary and should not be construed as limiting the present invention, and that changes, modifications, substitutions and alterations can be made to the above embodiments by those of ordinary skill in the art without departing from the principles and spirit of the present invention.
Claims (10)
1. The utility model provides a toy of beating ground mouse, includes a plurality of by knocker (1) and be used for holding by casing (2) of knocker (1), is provided with the through-hole on lid (21) of casing (2), by knocker (1) can go up and down in casing (2) inside, and expose casing (2) outside, its characterized in that through-hole under the lifting state part: the shell (2) is connected with a bionic swinging piece (4) in an external rotating mode, the bionic swinging piece (4) can be linked with the knocked piece (1), and when the knocked piece (1) goes up and down in the through hole under the action of external force, the bionic swinging piece (4) rotates along the rotating connection position.
2. A groundmouse toy according to claim 1 wherein: the bionic swinging piece (4) is connected to a rotating component arranged in the shell (2); the rotating assembly comprises a rotating part (5) and a resetting part arranged on the rotating part (5); be equipped with in casing (2) and press the subassembly, be strikeed piece (1) lift in-process and can drive press the subassembly, and press the subassembly and can transversely drive and rotate piece (5) and rotate.
3. A groundmouse toy according to claim 2 wherein: the pressing component comprises a pressing plate (7) and a sliding block (8) sliding along the track; the knocked piece (1) is driven by the pressing plate (7), the sliding block (8) transversely slides and is close to/far away from the rotating piece (5), and one end of the sliding block (8) can drive the rotating piece (5) to rotate in the sliding process.
4. A groundmouse toy according to claim 2 wherein: the swinging piece is connected to the middle part of the shell (2), and the two sides of the middle part are respectively provided with a knocked piece (1) and a corresponding pressing component; the knocked piece (1) on any side drives the rotating piece (5) through the corresponding pressing component, so that the swinging piece moves towards the side.
5. A groundmouse toy according to claim 3 or 4 wherein: the lower end of the rotating piece (5) is provided with a first tip end, and two sides of the first tip end are provided with guide surfaces (9); the abutting end of the sliding block (8) and the rotating piece (5) is provided with a second tip, and the lower side of the second tip is provided with an inclined plane (10); the second tip abuts against the guide surface (9) during the rotation of the rotating member (5).
6. A groundmouse toy according to claim 5 wherein: the rotating piece (5) is provided with a convex column (12) and a limiting block (13), and the convex column (12) is positioned on the upper side of the limiting block (13); a baffle plate (16) is vertically arranged at the lower side of the rotating part (5); the reset piece is a torsion spring (14) sleeved on the convex column (12), two ends of the torsion spring (14) are respectively abutted against two sides of the baffle (16), and the limiting block (13) is positioned between two ends of the torsion spring (14).
7. A groundmouse toy according to claim 3 wherein: the pressing plate (7) is arranged on the lower side of the knocked piece (1), the front end of the pressing plate (7) is hinged to the shell (2), the rear end of the pressing plate (7) extends to the upper side of the sliding block (8) and is abutted to the inclined surface (10) of the sliding block (8), and the sliding block (8) can be pressed to the rotating piece (5) by the rear end of the pressing plate (7).
8. A groundmouse toy according to claim 7 wherein: and a spring for resetting the pressing plate (7) is arranged between the pressing plate (7) and the bottom plate of the shell (2).
9. A groundmouse toy according to claim 2 wherein: the rotating part (5) is provided with a mounting groove (6), and the lower end of the bionic swinging part (4) can extend into the shell (2) and can be detachably inserted into the mounting groove (6).
10. A groundmouse toy according to claim 1 wherein: be equipped with balanced seat (15) in casing (2), be provided with pivot (151) on balanced seat (15) and rotate through pivot (151) and connect on casing (2), be installed on casing (2) of balanced seat (15) both ends top or swing joint in balanced seat (15) both ends top by knocking piece (1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202021208412.1U CN213432976U (en) | 2020-06-24 | 2020-06-24 | A kind of ground mouse toy |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202021208412.1U CN213432976U (en) | 2020-06-24 | 2020-06-24 | A kind of ground mouse toy |
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CN213432976U true CN213432976U (en) | 2021-06-15 |
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CN202021208412.1U Active CN213432976U (en) | 2020-06-24 | 2020-06-24 | A kind of ground mouse toy |
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2020
- 2020-06-24 CN CN202021208412.1U patent/CN213432976U/en active Active
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