action toys
The action toy enhances gameplay interest by using displacing parts to interact with objects, improving entertainment value through enhanced gameplay interactions.
Patent Information
- Application Number
- JP2022109360
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-07-06
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2041-07-14
AI Technical Summary
Existing construction toy sets lack moving toys that enhance gameplay interest by interacting with objects moving along paths.
An action toy with an operable action part and covering part that displaces to expose and interact with objects, and displacement parts that bias and guide object movement, enhancing entertainment value.
Provides a moving toy with improved entertainment value through interactive gameplay elements.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to an action toy. [Background technology]
[0002] Conventionally, construction toy sets having paths for moving objects have been available. For example, Patent Document 1 discloses a toy that can construct various paths using a plurality of construction elements, each having a track portion. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Publication No. 2020-124298 Summary of the Invention [Problem to be solved by the invention]
[0004] However, Patent Document 1 does not disclose any moving toys that move other than the object when the object moves along the moving path. When constructing such a moving path, providing a moving toy that moves other than the object can further increase the interest in the game of constructing the moving path.
[0005] The main object of the present invention is to provide a toy that can enhance enjoyment. Other objects and novel features will become apparent from the description of this specification and the accompanying drawings. [Means for solving the problem]
[0006] A brief summary of a representative embodiment of the present invention will be given below.
[0007] One embodiment of the present invention is an action toy used for playing with an object, and comprises an action part that is operable to be displaceable from a first position to a second position, and a covering part that is operable to take a first state in which it covers at least a portion of the action part located at the first position, and a second state in which it is displaced in a direction in which the covered action part is exposed, and in response to movement of the object to a third position, the action part displaces from the first position to the second position, the covering part displaces from the first state to the second state, and a portion of the action part displaces to the second position, thereby starting or accelerating the movement of the object. Furthermore, one embodiment of the present invention is an action toy used for playing with an object, and is provided with a first displacement part that displaces from a first position to a second position, a first moving part that extends in the displacement direction of the first displacement part and along which the object can move, and a second displacement part that displaces from a third position to a fourth position, and in response to movement of the object to a fifth position on the first moving part, the first displacement part displaces from the first position to the second position, and the second displacement part displaces from the third position to the fourth position, and a portion of the first displacement part displaces to the second position, thereby enabling the object to start or accelerate movement on the first moving part. Furthermore, one embodiment of the present invention provides an action toy used for playing with an object, comprising a first displacement portion that displaces from a first position to a second position, a first moving portion that extends in the displacement direction of the first displacement portion and along which the object can move, and a second displacement portion that displaces from a third position to a fourth position, wherein the first displacement portion is biased in a first biasing direction from the first position to the second position when at the first position, and displaces from the first position to the second position in the first biasing direction in response to movement of the object to a fifth position on the first moving portion, and the second displacement portion displaces from the third position to the fourth position in response to displacement of the first displacement portion to the second position, and a portion of the first displacement portion can be displaced to the second position to start or accelerate movement of the object on the first moving portion. [Effects of the Invention]
[0008] According to the moving toy of one embodiment, it is possible to provide a moving toy with improved entertainment value. [Brief explanation of the drawings]
[0009] [Figure 1] 1 is a perspective view showing a state before an action toy according to an embodiment is in motion; [Figure 2] FIG. 1 is a perspective view showing a state after the action toy according to one embodiment has been moved. [Figure 3A] FIG. 2 is a perspective view showing an operating section according to an embodiment. [Figure 3B] FIG. 2 is a front view showing an operating section according to an embodiment. [Figure 3C]FIG. 2 is a side view showing an operating section according to an embodiment. [Figure 4] FIG. 2 is a side cross-sectional view of the action toy shown in FIG. [Figure 5] 1 is a diagram illustrating the operation of a moving toy according to an embodiment of the present invention; [Figure 6A] 1 is a diagram illustrating the operation of a moving toy according to an embodiment of the present invention; [Figure 6B] 1 is a diagram illustrating the operation of a moving toy according to an embodiment of the present invention; [Figure 7A] 1 is a diagram illustrating the operation of a moving toy according to an embodiment of the present invention; [Figure 7B] 1 is a diagram illustrating the operation of a moving toy according to an embodiment of the present invention; [Figure 8A] 1 is a diagram illustrating the operation of a moving toy according to an embodiment of the present invention; [Figure 8B] 1 is a diagram illustrating the operation of a moving toy according to an embodiment of the present invention; DETAILED DESCRIPTION OF THE INVENTION
[0010] An embodiment of the present invention will be described in detail below with reference to the drawings. In all the drawings for explaining the embodiment, components having the same functions are designated by the same reference numerals, and repeated explanations thereof will be omitted. For the sake of convenience, the drawings may omit or simplify configurations and hatching. (Embodiment) <Configuration of the moving toy>
[0011] 1 and 2 are perspective views showing an action toy 1 according to this embodiment, with FIG. 1 showing the action toy before it moves and FIG. 2 showing the action toy after it moves. The action toy 1 is used for playing with objects, and as shown in FIGS. 1 and 2, it is configured to have an action part 10, a storage part 20, and a base part 30. Each part that makes up the action toy 1 will be described in detail below.
[0012] The operating unit 10 is not particularly limited as long as it can move from the first position to the second position. As an example, the operating unit 10 may be housed inside the housing 20 before operation (first position, P1) as shown in Fig. 1, and after operation, may pop out of the housing 20 and move to the upper part near the center of the base 30 (second position, P2) as shown in Fig. 2.
[0013] The shape of this operating unit 10 is not particularly limited as long as it is provided so as to be displaceable from the first position to the second position as described above. An example of operating unit 10 is shown in FIGS. 3A to 3C. Here, FIG. 3A shows a perspective view, FIG. 3B shows a front view, and FIG. 3C shows a side view. The operating unit 10 shown here has a shape portion 11, a base portion 12, a protrusion 13, a biasing fixing portion 14, and a holding portion 15.
[0014] In this moving unit 10, the figure part 11 is placed on the upper surface of the base part 12, and the base part 12 has a protruding part 13, the lower part of which protrudes further in the displacement direction than the upper part, on the side surface of the base part 12 on the second position side facing the displacement direction when placed on the moving toy. Furthermore, the moving unit 10 is provided with a biasing fixing part 14 below the base part 12, and a holding part 15 for holding the covering part 22 in a first state described below.
[0015] The figurative part 11 can have any shape and is not particularly limited. Examples of the figurative part 11 include a human or animal shape that resembles a predetermined character, or a shape of an object such as a tool or vehicle. The holding part 15 may be provided anywhere on the operating part 10, but when a figurative part 11 is provided, it is preferable to provide it on the base part 12 in order to protect the design of the figurative part 11.
[0016] Storing unit 20 is a member that is fixed to base unit 30, stores operating unit 10 therein, and is capable of covering at least a portion of operating unit 10. Storing unit 20 is configured to have, for example, a storing unit main body 21 that can store operating unit 10, a covering unit 22 that covers operating unit 10 stored in storing unit main body 21, and a connecting unit 23 that connects covering unit 22 to storing unit main body 21 so that the covering unit 22 can be displaced.
[0017] As shown in Fig. 1, the accommodation unit 20 operates so as to be capable of assuming a first state in which it covers the operating unit 10 located at a first position, and a second state in which it is displaced in a direction in which the covered operating unit 10 is exposed, as shown in Fig. 2. Note that, although Fig. 1 shows an example in which the accommodation unit 20 covers the entire operating unit 10, it is also possible to adopt a mode in which it covers at least a part of the operating unit 10.
[0018] When the housing 20 (specifically, the covering 22) is displaced from the first state to the second state, the covered operating unit 10 can be exposed. At this time, the connection 23 between the housing main body 21 and the covering 22 serves as a fulcrum when the covering 22 is displaced. That is, in FIGS. 1 and 2, the displacement of the covering 22 is in the rotational direction. However, the displacement direction of the covering 22 is not limited to this, and the covering 22 may be displaced in any direction as long as it can be displaced in a direction that exposes the operating unit 10 located in the first position.
[0019] When covering portion 22 is shifted from the first state to the second state, operating portion 10, which was covered and hidden, is exposed, and the entire operating portion 10 is uncovered and clearly visible. Covering portion 22 can be formed of any transparent, translucent, or opaque material. It is preferable that covering portion 22 is formed of an opaque material. In this case, in the first state, operating portion 10 is covered so as not to be visible from the outside, and only when covering portion 22 is shifted can operating portion 10 be visible, further enhancing the interest.
[0020] Furthermore, covering portion 22 has a held portion 24 for maintaining the first state when it is in that state, and furthermore, accommodating portion main body 21 has a recess 25 that is continuous with the accommodating space. This held portion 24 is disposed in this recess 25 when covering portion 22 is in the first state. At this time, a part of held portion 24 is held by holding portion 15 of operating portion 10, which is positioned in the first position, so that covering portion 22 is maintained in the first state (so that displacement to the second state does not occur), and this holding is released by the operation of operating portion 10. In other words, when this holding is released, covering portion 22 can be displaced to the second state.
[0021] The base unit 30 is a base member that holds the moving unit 10 and the housing unit 20 in predetermined positions, allows the moving unit 10 and the covering unit 22 to be displaced stably as described above, and allows the moving unit 10 to be placed stably on a floor, a desk, etc. The base unit 30 has a base 31 that serves as the base body, and a locking unit 32 on the top of the base 31 that allows the moving unit 10 to be locked in a first position. A second track is provided at the tip of the locking unit 32 (at the tip of the moving toy 1).
[0022] The base 31 is structured so that the height of one end of the locking portion 32 (the distance from the mounting surface when the base 31 is placed on the mounting surface) is fixed, while the height of the other end is variable (movable up and down relative to the mounting surface), and the locking portion 32 can maintain and release the lock of the operating portion 10 by its up and down movement. More specifically, in Figures 1 and 2, one end of the locking portion 32 is provided inside the base 31, held by a rotation support shaft located below the cover 31a, and supported by a locking portion support member 33, which will be described later. The other end of the locking portion 32 (closer to the storage portion 20) can move up and down by rotating the locking portion support member 33. For example, when the other end of locking portion 32 is in the upper position, it locks and holds operating portion 10 in the first position, and when the other end of locking portion 32 is in the lower position, it releases the lock on operating portion 10 and allows operating portion 10 to move to the second position. Locking portion 32 is further provided with groove 32a in the displacement direction of operating portion 10 to stabilize the movement direction.
[0023] Furthermore, it is preferable that the locking portion 32 is provided so as to form a track for the operating unit 10 when the locking of the operating unit 10 is released. For example, it is preferable to form the upper surface of the locking portion 32 so as to follow the shape of the lower surface of the base portion 12 of the operating unit 10, so that the operating unit 10 can move stably on the upper surface of the locking portion 32.
[0024] The structure of this moving toy 1 will be further described with reference to Fig. 4. Fig. 4 is a side cross-sectional view of the moving toy 1 shown in Fig. 1. That is, it is a side cross-sectional view when the moving part 10 is placed in the first position and the covering part 22 is in the first state.
[0025] The biasing fixing portion 14 of the operating unit 10 is connected to a locking portion support member 33 held by the rotation support shaft 31b via an elastic member 35. The locking portion support member 33 has a structure in which its upper portion is held by the rotation support shaft 31b and its lower portion can fix an end of the elastic member 35. The elastic member 35 acts in a direction in which its length is shortened when a tensile load is applied, and can be, for example, a tension coil spring. As described above, the elastic member 35 connects the locking portion support member 33 and the operating unit 10 and is provided to apply a tensile load. Therefore, the elastic member 35 biases the operating unit 10, which is located in the first position, in a direction in which it attempts to displace to the second position (first biasing direction).
[0026] At the same time, the elastic member 35 also acts to position the other end of the locking portion 32 upward by the locking portion support member 33. At this time, for example, the locking portion 32 can be held horizontally. When the locking portion 32 is held horizontally, the end portion on the other end side of the locking portion 32 comes into contact with the side surface of the operating portion 10 (the side surface of the base portion 12), locking the operating portion 10 in the first position and restricting displacement from the first position to the second position.
[0027] As described above, one end of the locking portion 32 is held by the locking portion support member 33, but the other end that comes into contact with the operating portion 10 can change its height by moving up and down. In other words, when an external force is applied to the locking portion 32, the other end of the locking portion 32 can be lowered. Therefore, if the external force applied to the locking portion 32 is greater than the elastic force applied by the elastic member 35, the other end of the locking portion 32 will be lowered. When the other end of the locking portion 32 is lowered, the operating portion 10 is released from the lock, and the operating portion 10 is displaced to the second position.
[0028] A guide 34 is provided on the base 31 so that the locking portion 32 is held in a predetermined inclined position when the other end thereof is lowered. That is, this guide 34 determines the inclined position of the other end of the locking portion 32 when it moves downward. This guide 34 is fixed to the base 31, and is provided with a groove 34a, similar to the locking portion 32. Similar to the groove 32a, this groove 34a acts to stabilize the movement of the operating portion 10 when it is displaced.
[0029] As described above, the locking portion 32 can maintain and release the lock by moving the other end up and down, but this embodiment is not limited to this specific form. As long as the configuration allows the locking of the operating unit 10 to be maintained and released, the locking portion 32 may move in any direction, such as left and right, front and back, or diagonally. Furthermore, the locking of the operating unit 10 may be maintained and released directly by the locking portion 32, or indirectly.
[0030] Next, the storage unit main body 21 and the covering unit 22 of the storage unit 20 are connected by a connecting portion 23, and the connection structure can be, for example, as shown in Figure 4, a hinge structure having an axle tube 23a fixed to the storage unit main body 21, an axle tube 23b fixed to the covering unit 22, and an axle core 23c provided inside these axle tubes 23a and 23b and enabling the covering unit 22 to rotate relative to the storage unit main body 21.
[0031] The above-described structure of this connection portion 23 allows the covering portion 22 to be displaced from a first state (FIG. 1) to a second state (FIG. 2) to expose the covering portion of the operating portion 10, and it is preferable that the connection portion 23 is biased to cause this displacement in the first state.
[0032] To bias in this manner, for example, an elastic member 23d may be provided in the connection portion 23. The elastic member 23d used here is preferably an elastic member that can impart torsional elasticity to the housing main body 21 and the covering portion 22, and may be, for example, a torsion coil spring. As a result, the covering portion 22 is biased in a direction (second biasing direction) in which it attempts to move from the first state to the second state. The biasing direction at this time is upward in the first state, but the biasing direction changes with each displacement, and the covering portion 22 is displaced in a rotational direction around the connection portion 23 (axial core 23c).
[0033] Furthermore, it is preferable that the connecting part 23 has a rotation restricting part 23e that prevents excessive rotation when the covering part 22 rotates. The rotation restricting part 23e allows the covering part 22 to be displaced only as much as necessary, and at the same time, the space required for installing the moving toy 1 can be minimized. <Movement of the moving toy>
[0034] Next, the movement of the moving toy 1 will be further described with reference to Figures 5 to 8A. Figures 5 to 8A are diagrams for explaining the movement of the moving toy 1.
[0035] First, in preparation for operating the moving toy 1, the moving toy 1 is configured to move an item to a predetermined position (third position). In Fig. 5, the moving toy 1 further has a first track 41, and a diagram of the first track 41 is shown with an item 100 moving along the track. Also, an example is shown in which the moving toy 1 is connected to a third track 42, which is a separate part from the moving toy 1, via a second track provided at the end of the locking part.
[0036] Although a sphere that can move by rolling is shown as an example of the article 100, the shape is not limited to this as long as it is capable of moving in a predetermined manner.
[0037] The first track 41 is provided near a predetermined position (third position, P3) of the moving toy 1, and is arranged so as to guide an item moving along the track of the first track 41 to the predetermined position (third position, P3). Figure 5 shows an example in which the first track 41 is provided on the side near the center of the base part 30.
[0038] Furthermore, the second track is arranged to determine the direction of movement of the article 100, which has started to move or accelerated due to the displacement of the moving part 10 of the moving toy 1, when it moves further along the track. Figure 5 shows an example in which the second track is provided at a location (the tip of the moving toy 1) that is an extension of the displacement direction of the moving part 10. This second track can also be connected to a third track 42 to allow the article 100 to continue moving further.
[0039] Next, how the moving toy 1 moves in response to the article 100 guided to the third position will be described with reference to FIGS. 6A to 8B.
[0040] As shown in FIG. 5, the article 100 moving along the first track 41 is guided to the third position of the action toy 1 and moves onto the action toy 1 (FIG. 6A). Here, the article 100 in the third position is indicated as "100(P3)." The article 100 rests near the center of the locking part 32, but the end of the locking part 32 that locks the action part 10 moves downward due to the weight of the article 100 or an impact such as when the article 100 is dropped (FIG. 6B). This movement of the locking part 32 releases the lock on the action part 10, and the action part 10 begins to move in the biasing direction (arrow direction) biased by the elastic member 35. Here, the action part 10 located in the first position is indicated as "10(P1)."
[0041] As described above, operating unit 10 has holding unit 15, and before displacement begins, holding unit 15 holds covering unit 22 in the first state. For example, as shown in Fig. 7A, holding unit 15 can hold covering unit 22 in such a manner that holding unit 15 presses down on a part (upper portion) of held portion 24 provided on covering unit 22. This restricts covering unit 22 from moving upward, and the covering unit 22 is held in the first state.
[0042] 6B, when the lock is released, operating portion 10 begins to move toward the second position, and at this time, holding portion 15 also moves integrally with operating portion 10 (displaced toward the left in FIG. 7A). Then, held portion 24 is released from the hold by holding portion 15, and covering portion 22 begins to move in the biasing direction (arrow direction) biased by elastic member 23d (FIG. 7B).
[0043] As the covering part 22 is displaced from the first state to the second state, the covering part 22 that was present in the displacement direction of the operating part 10 disappears, and the operating part 10 begins to displace toward the second position without interfering with the movement of the operating part 10.
[0044] As the moving part 10 is displaced, the moving part 10 comes into contact with the article 100, which is in its path (FIG. 8A). The moving part 10 is biased by the elastic member 35 and displaces to the second position, and the article 100 collides with the biased moving part 10, causing it to start moving further in the direction of the arrow (FIG. 8B). Here, the moving part 10 in the second position is shown as "10(P2)."
[0045] As described above, the base 12 of the operating unit 10 has a protrusion 13 on its side surface on the second position side facing the displacement direction, the lower part of which protrudes further in the displacement direction than the upper part. In this case, it is preferable that the protrusion 13 comes into contact with the article 100 when the operating unit 10 is displaced, so that the movement of the article 100 can be initiated or accelerated.
[0046] In addition, in this case, it is preferable that the portion of the figure part 11 that protrudes most in the displacement direction of the operating part 10 protrudes more than the upper part of the base part 12 (in FIG. 3C, Lb>0). Furthermore, it is preferable that the protruding part 13 protrudes more than the figure part 11 (in FIG. 3C, La>0). In other words, it is preferable that the protruding part is the most protruding, followed by the figure part 11, and then the upper part of the base part 12.
[0047] With this configuration, the figure part 11 is not actually in contact with the article 100 (it is the protrusion 13 that actually makes contact), but it can be perceived as if the figure part 11 is moving the article 100. This makes it possible to prevent wear on the figure part 11 and peeling of the paint due to contact with the article 100.
[0048] Furthermore, protrusion 13 is arranged to fit into groove 32a provided in locking portion 32, and groove 32a functions as a guide groove that stably operates operating portion 10 when it moves from the first position to the second position. Furthermore, guide 34 is also similarly provided with groove 34a, and the portion that connects base portion 12 of operating portion 10 and biasing fixing portion 14 is arranged to fit into groove 34a, and similar to groove 32a, groove 34a functions as a guide groove that stably operates operating portion 10.
[0049] In this case, the length of groove 32a and / or groove 34a can be set arbitrarily. By setting these lengths to predetermined lengths, the displacement of operating part 10 is restricted at its end, and the position at which it can be displaced can also be determined.
[0050] By the above-described operation, the object 100 is subjected to a force in the direction of displacement due to the displacement of the operating part 10 from the third position, and can begin to move further along the second and third tracks 42 that are provided on the extension of the displacement direction.
[0051] The above has been described in accordance with the drawings as an example in which the item 100 reaches the third position, remains at the third position (stops moving for a moment), and then starts moving again due to a collision with the operating unit 10, but this is not limited to this.
[0052] That is, when the article 100 reaches the third position, the operating unit 10 is displaced from the first position to the second position and the covering unit 22 is displaced from the first state to the second state accordingly. However, examples include a case where the article 100 stops at a position different from the third position and resumes movement due to a collision with the operating unit 10, or a case where the article 100 continues to move without stopping and its speed of movement is increased (accelerated) due to a collision with the operating unit 10. (Variation)
[0053] The configuration and operation of the above-mentioned moving toy 1 have been explained, but the above-mentioned first track 41 and second track may be provided as part of the moving toy 1, or may be provided as separate parts, and may also be configured as follows: As described above, the first track 41 is provided near a predetermined position (third position, P3) of the moving toy 1, and is arranged so as to guide an item moving along the track of the first track 41 to the predetermined position (third position, P3).
[0054] In this case, the first track 41 and the third position can be spaced apart. In this case, "spaced apart" the first track 41 and the third position means that the track on which the object rolls in the first track 41 and the third position of the action toy 1 are physically spaced apart, and examples thereof include the case where the track of the first track 41 is spaced apart from the third position in the height direction, as shown in Fig. 5, or the case where the track of the first track 41 and the third position are spaced apart in a plane.
[0055] When the item 100 is placed at a distance in this manner, it reaches the third position with energy due to falling or movement through the air, etc., and the impact at that time can transmit the fact that it has reached the third position with a strong force, ensuring that the operating unit 10 can operate thereafter.
[0056] However, if the first track 41 and the second track 42 are spaced apart, or if the moving speed of the article 100 is too fast even if they are not spaced apart, there is a risk that the article 100 may deviate from the originally intended moving path, and it is conceivable that the operation unit 10 may not operate because it is not able to sense that the article 100 has reached the third position. Therefore, it is preferable that the first track 41 has a shape that suppresses the moving speed of the article 100 so that the article 100 can reliably move from the first track 41 to the third position.
[0057] By having such a shape, if the speed of the article 100 moving on the first track 41 is too fast, it is limited to a predetermined speed or less, and the article 100 can be reliably moved to the third position. Examples of such shapes include an S-curve, a crank, an uphill slope, or a shape with steps above and below, and it is preferable to use a shape that can change the moving direction of the article 100 in this way and suppress its moving speed.
[0058] The second track is arranged so that the object 100 that has started to move or accelerated due to the displacement of the moving part 10 of the moving toy 1 will determine its direction of movement along the track. The object then continues to move along a third track 42 connected to the second track.
[0059] At this time, if the article 100 that has moved to the third position stops temporarily and then starts moving in the direction of displacement due to the displacement of the moving unit 10, it is preferable that the second track is provided in the direction of displacement of the moving unit 10. By arranging in this manner, the article 100 that has started moving due to the moving unit 10 can continue moving smoothly along the second track.
[0060] Furthermore, the first track 41 and the second track may have the same or different moving directions of the article 100, but preferably they are different. The moving direction of the first track 41 here refers to the moving direction of the article 100 immediately before it leaves the first track 41 (moving direction toward the third position), and the moving direction of the second track refers to the moving direction in which the second track accepts the article 100 that has moved from the third position (moving direction away from the third position).
[0061] The moving direction of the article 100 differs between the first track 41 and the second track as described above, so that the moving direction of the article 100 can be changed by the moving toy 1, thereby increasing the interest.
[0062] The invention made by the present inventors has been specifically described above based on an embodiment, but it goes without saying that the present invention is not limited to the above embodiment and can be modified in various ways without departing from the gist of the invention. [Explanation of symbols]
[0063] 1 moving toys 10. Operating unit 11 Figurative part 12 Base 13 Protrusion 14 Force fixing part 15 Holding part 20 Storage section 21 Storage unit body 22 Covering part 23 Connection 23a,23b Shaft tube 23c shaft center 23d Elastic member 23e Rotation restriction part 24 Holding part 25 recess 30 Base 31 Foundation 32 Locking part 33 Locking portion support member 34 Guide 35 Elastic member
Claims
1. An action toy used for playing with an object, a first displacement portion that is displaceable from a first position to a second position; a first moving portion extending in a displacement direction of the first displacement portion and allowing the article to move; a second displacement portion that is displaced from a third position to a fourth position; Equipped with the first displacement portion is biased in a first biasing direction in which the first displacement portion is displaced from the first position to the second position when the first displacement portion is at the first position, and displaces from the first position to the second position in the first biasing direction in response to movement of the article to a fifth position on the first moving portion; the second displacement portion is displaced from the third position to the fourth position in response to displacement of the first displacement portion to the second position; A motion toy, wherein a portion of the first displacement portion is capable of starting or accelerating the movement of the item on the first moving portion by being displaced to the second position.
2. The action toy according to claim 1, An action toy in which the first displacement portion is locked by a locking portion at the first position, and the first displacement portion is displaced in the first biasing direction as the locking portion that locks the first displacement portion is released in response to movement of the item to the third position.
3. The moving toy according to claim 1 or 2, An action toy wherein the second displacement portion is biased in a second biasing direction in which it is displaced from the third position to the fourth position when in the third position, and the second displacement portion is displaced in the second biasing direction in response to the displacement of the first displacement portion.
4. The moving toy according to claim 3, A motion toy, wherein the first displacement portion has a holding portion that holds the second displacement portion in the third position.
5. The moving toy according to claim 3 or 4, A moving toy, wherein the displacement of the second displacement part is a displacement in a rotational direction.
6. The action toy according to claim 1, A motion toy, wherein the first displacement part includes an image part and a base part for fixing the image part, and the base part is provided with a holding part for holding the second displacement part in the third position.
7. The moving toy according to claim 6, A moving toy, wherein the base portion has a lower portion on the side facing the second position that protrudes more in the displacement direction of the first displacement portion than an upper portion.
8. The moving toy according to claim 7, A moving toy, wherein the most protruding part of the figure part protrudes more than the upper part of the base part in the displacement direction of the first displacement part.
9. The moving toy according to any one of claims 1 to 8, A motion toy having a second moving part near the fifth position, along which the item can move, for guiding the item to the fifth position.
10. The moving toy according to claim 9, The second moving part is provided at a distance from the fifth position.
11. The moving toy according to claim 9 or 10, A moving toy, wherein the second moving part has a shape that suppresses the moving speed of the item.
12. The moving toy according to any one of claims 9 to 11, A moving toy, wherein the first moving part and the second moving part move the object in different directions.
13. The moving toy according to any one of claims 1 to 12, The object is a sphere that can move by rolling.
Citation Information
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