Model toy and cooking toy
By designing a toy structure including a main body, a placement table, a tray, a rotating shaft, an operating part, a conversion part and a moving part, the problem of the long change of state in the imitation cooking process by the existing model toys is solved, and a fast and vivid gaming experience is achieved.
Patent Information
- Application Number
- CN202411537561.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2023-11-01
- Filing Date
- 2024-10-31
- Publication Date
- 2025-05-06
AI Technical Summary
During the imitation and cooking process, existing model toys take a long time to complete the state changes, resulting in poor gaming experience.
A toy structure including a main body, a placement table, a tray, a rotary shaft, an operating part, a conversion part and a moving part is designed. Through the rotational movement of the rotary shaft, it is converted into the reciprocating movement of the moving part in the vertical direction, so as to realize the rapid change of the image body in the tray from the pre-cooking state to the post-cooking state.
It realizes a fast and vivid gaming experience that imitates the changes in state before and after cooking, allowing users to easily enjoy the fun of imitating the cooking process.
Smart Images

Figure CN119925955A_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to model toys and cooking toys. Background Art
[0002] In the related art, model toys imitating kitchen utensils are provided. For example, Patent Document 1 discloses an imitation oven as a toy set, in which an intermediate material obtained by mixing a base material and a foaming agent can be put in. When the intermediate material made as dough for imitating bread is input into the imitation oven, the thickness of the intermediate material rises by about 1.2 times after 20 minutes. Then, the color of imitating baking is added by applying an oily agent to the imitation bread after drying.
[0003] Patent Document 1: JP2018-164492A Summary of the invention
[0004] However, in the above-mentioned model toy disclosed in Patent Document 1, it takes time to obtain the cooked simulated bread from the input simulated bread, and therefore, it is not easy to enjoy the game of imitating the state change before and after cooking.
[0005] An object of the present disclosure is to provide a model toy and a cooking toy for easily enjoying a game that imitates the state changes before and after cooking.
[0006] A model toy according to one aspect of the present disclosure includes: a main body; a placement table, which is arranged in the main body and has at least one main body side through hole penetrating through the placement table in the vertical direction; a tray, which has at least one tray side through hole, which penetrates the tray in the vertical direction and is placed on the placement table so that the at least one tray side through hole overlaps with the at least one main body side through hole in the vertical direction; a rotating shaft arranged below the placement table; an operating part, which is arranged in the main body and is configured to rotationally operate the rotating shaft; at least one conversion part, which is arranged around the axis of the rotating shaft and is configured to convert the rotational motion of the rotating shaft around the axis into reciprocating motion in the vertical direction; and at least one moving part, which is arranged between the placement table and the at least one conversion part and is configured to move in the vertical direction by interfering with the at least one conversion part according to the rotation of the rotating shaft around the axis, wherein the at least one moving part includes at least one penetration part, which is configured to pass through the at least one main body side through hole and the at least one tray side through hole by moving upward and protrude upward from the at least one tray side through hole.
[0007] The cooking toy according to one aspect of the present disclosure includes: a main body; a placing table, which is arranged in the main body and has a main body side through hole penetrating the placing table in the vertical direction; a tray, which has a tray side through hole penetrating the tray in the vertical direction and is placed on the placing table so that the tray side through hole overlaps with the main body side through hole in the vertical direction; a rotating shaft arranged below the placing table; an operating part, which is arranged in the main body and configured to rotatably operate the rotating shaft; a conversion part, which is arranged around the axis of the rotating shaft and configured to convert the rotational motion of the rotating shaft around the axis into a reciprocating motion in the vertical direction; a moving part, which is arranged between the placing table and the conversion part and configured to move in the vertical direction by interfering with the conversion part as the rotating shaft rotates around the axis; and a figure (figure) imitating the shape of a cooking object. body), wherein the tray includes a receiving portion having a tray-side through hole and configured to allow the figure to be received in the receiving portion so as to be able to move upward, wherein the moving portion includes a through portion configured to pass through the main body-side through hole and the tray-side through hole by moving upward and to protrude upward from the tray-side through hole.
[0008] According to the present disclosure, a model toy and a cooking toy for easily enjoying a game imitating state changes before and after cooking can be provided. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] The present disclosure will be described in detail based on the following contents, but is not limited thereto, wherein:
[0010] Figure 1 is an overall perspective view of an oven toy according to a first embodiment of the present disclosure;
[0011] Figure 2 is an overall perspective view of an oven toy according to a first embodiment of the present disclosure, with a door open;
[0012] Figure 3 is an exploded perspective view of an oven toy according to a first embodiment of the present disclosure;
[0013] Figure 4 is a perspective view of a rotation conversion mechanism of an oven toy according to a first embodiment of the present disclosure, viewed from above;
[0014] Figure 5A It is along Figure 4 A cross-sectional view taken along the line Va-Va in FIG. 1 , and Figure 5B It is along Figure 4 A cross-sectional view taken along line Vb-Vb in FIG.
[0015] Figure 6 is a perspective view of a tray of an oven toy according to a first embodiment of the present disclosure viewed from above;
[0016] Fig. 7A is a perspective view of the cake piece from above, and Figure 7B It is a perspective view of the cake piece as seen from below;
[0017] Figure 8 is along Figure 1 A cross-sectional view taken along line VIII-VIII in FIG. 1 , showing a cake piece in a transparent view;
[0018] Figures 9A to 9C is a perspective view showing the operation of the oven toy according to the first embodiment of the present disclosure, wherein Fig. 9A A toy oven showing a cake piece before cooking, Fig. 9B a toy oven showing a piece of cake in a partially cooked state, and Fig. 9C An oven toy showing a cake piece in a cooked state;
[0019] Figures 10A to 10C is a cross-sectional view showing the operation of the oven toy according to the first embodiment of the present disclosure, wherein Fig. 10A is Fig. 9A A longitudinal cross-sectional view of a main part taken at the center in the left-right direction of Fig. 10B is Fig. 9B A longitudinal cross-sectional view of a main part taken at the center in the left-right direction of Fig. 10C is Fig. 9C A cross-sectional view of a main part taken at the center in the left-right direction of FIG.
[0020] Fig.11 is a perspective view of a tray of an oven toy according to a second embodiment of the present disclosure viewed from above;
[0021] Fig. 12A is a perspective view of the small cake piece from above, and Fig. 12B It is a perspective view of the small cake piece as seen from below;
[0022] Fig.13 is corresponding to Figure 8 sectional view showing a small cake piece in a transparent view; and
[0023] Figures 14A to 14C is a perspective view showing the operation of an oven toy according to a second embodiment of the present disclosure, wherein Fig.14A An oven toy showing a small cake piece before cooking, Fig. 14B a toy oven showing a small cake piece in a partially cooked state, and Fig. 14C The toy oven is shown with the cake pieces in a cooked state. DETAILED DESCRIPTION
[0024] First embodiment
[0025] Will refer to Figures 1 to 10C The first embodiment of the present disclosure is described. Figure 1 As shown, in the first embodiment of the present disclosure, an oven toy (model toy, cooking toy) 1 imitating an oven is exemplified. The oven toy 1 is a toy that allows pretend cooking with a doll or the like. The oven toy 1 is formed in a generally rectangular parallelepiped shape that is long in the longitudinal direction, and includes a main body 10 provided with an oven 20, an operating portion 30, and a leg portion 40. The oven 20 is provided at the upper portion of the main body 10, and can be opened and closed by a door portion 22. In the following description, the door portion 22 side of the main body 10 is referred to as the front side of the oven toy 1, and the opposite side thereof is referred to as the rear side, and when the main body 10 is viewed from the front side, the right side is referred to as the right side of the oven toy 1, and the opposite side thereof is referred to as the left side.
[0026] The upper end portion of the door portion 22 is provided with a handle portion 22a which is a handle having a protruding shape protruding forward. The door portion 22 is connected to the main body 10 at the lower end portion so as to be rotatable about an axis having the left-right direction as an axial direction and can be opened forward by the user while holding the handle portion 22a (see FIG. 2 ). Figure 2 The lower surface of the space S inside the oven 20 exposed by opening the door portion 22 is provided with a placement plate (placement table) 24 having a substantially rectangular plate shape (see Figure 2 ). In the present embodiment, a configuration is exemplified in which a first tray 50 imitating a cake plate for a whole cake is placed on the placement plate 24. The first tray 50 can be removed from the placement plate 24. In addition to the first tray 50, a second tray 150, which will be described below, etc. can be placed on the placement plate 24.
[0027] The operation portion 30 is provided at the lower side of the oven 20 and has a shape imitating a control panel of the oven 20. The front surface of the operation portion 30 is provided with a switch portion 32 having a shape imitating a switch of a cooking oven and rotatably operated, and a display portion 34 which is a substantially circular opening. The leg portion 40 has a leg shape supporting the left and right sides of the oven 20 and is provided at the lower side of the operation portion 30. Between the left and right legs of the leg portion 40, a shelf portion 42 in a shelf shape is provided. On the shelf portion 42, the second tray 150 which will be exemplified in the second embodiment is placed.
[0028] For the oven toy 1, the user opens the door portion 22 of the oven 20, accommodates a figure imitating, for example, a sponge cake in the first tray 50, closes the door portion 22, and rotationally operates the switch portion 32. Then, the figure in the first tray 50 is raised upward by the rotation conversion mechanism 60 described below, and the user playing with the oven toy 1 feels as if the sponge cake in the oven 20 has expanded. The oven toy 1 is a toy that can be enjoyed by imitating cooking in this way. Below, the configuration of each component of the oven toy 1 will be described in detail.
[0029] like Figure 3 As shown, the main body 10 includes a front shell 12 constituting the front side of the oven toy 1, a rear shell 14 constituting the rear side of the oven toy 1, a placement plate 24, and a rotation conversion mechanism 60 arranged under the placement plate 24 in the main body 10, which are assembled into one body (note that Figure 3 A first tray 50 is also shown on the placement plate 24. The right side surface of the front shell 12 and the right side surface of the rear shell are provided with a detachable portion 13, which becomes two parallel short straight protrusions when the front shell and the rear shell are assembled in the front-to-back direction. The detachable portion 13 allows the handle part 21 imitating the handle shape of the oven 20 to be attached and detached.
[0030] like Figure 3 and Figure 4 As shown, the rotation conversion mechanism 60 includes a housing 62, a rotating shaft 64, a first moving part 65, and a second moving part 66. The housing 62 has a generally box-like shape that is open upward, and houses the rotating shaft 64 and the first moving part 65 and the second moving part 66 therein. The upper opening of the housing 62 substantially matches the outer size and shape of the placement plate 24, and is closed using the placement plate 24 as a cover. In the following, the outer wall on the front side of the housing 62 is referred to as the front outer wall 62a, the outer wall on the rear side is referred to as the rear outer wall 62b, the outer wall on the right side is referred to as the right outer wall 62c, and the outer wall on the left side is referred to as the left outer wall 62d.
[0031] The housing 62 is provided with a first wall portion 62W1, a second wall portion 62W2, and a third wall portion 62W3 in the form of walls that stand upright from the bottom surface of the housing 62 in order from the rear side. The first wall portion 62W1 includes a portion extending in the left-right direction near the rear outer wall 62b and a portion extending in the front-rear direction near the left outer wall 62d. The third wall portion 62W3 includes a portion extending in the left-right direction near the front outer wall 62a and a portion extending in the front-rear direction near the right outer wall 62c. The second wall portion 62W2 extends in the left-right direction between the first wall portion 62W1 and the third wall portion 62W3.
[0032] In addition, the right fourth wall portion 62W4R extending in the front-to-back direction is arranged between the third wall portion 62W3 and the front outer wall 62a, and is located on the right side of the third flange portion 64c of the rotating shaft 64 described below, and the left fourth wall portion 62W4L extending in the front-to-back direction is arranged between the third wall portion 62W3 and the front outer wall 62a, and is located on the left side of the third flange portion 64c.
[0033] In addition, in the approximate center portion of the housing 62 in the left-right direction, the first shaft support 62S1, the second shaft support 62S2, the third shaft support 62S3 and the fourth shaft support 62S4 (on which the rotating shaft 64 is supported) are arranged in a row in sequence from the rear side at intervals along the front-to-back direction. Each shaft support 62S1 to 62S4 is cut into a roughly arc shape in the form of an upward opening along the outer periphery of the rotating shaft 64. The first shaft support 62S1 is formed at a portion of the first wall portion 62W1 of the housing 62 extending in the left-to-right direction. The second shaft support 62S2 is formed on the second wall portion 62W2. The third shaft support 62S3 is formed at a portion of the third wall portion 62W3 of the housing 62 extending in the left-to-right direction. The fourth shaft support 62S4 is formed on the front outer wall 62a of the housing 62.
[0034] Both ends of the portion of the first wall portion 62W1 extending in the front-to-back direction and both ends of the portion of the third wall portion 62W3 extending in the front-to-back direction are provided with engagement holes 62e in the shape of holes opening upward. Note that the portion of the lower surface of the placement plate 24 overlapping with each engagement hole 62e in the vertical direction is provided with a protrusion (not shown), which protrudes downward and can be engaged with the engagement holes 62e respectively. By engaging each protrusion on the lower surface with each engagement hole 62e of the shell 62, the placement plate 24 is assembled to the upper part of the shell 62.
[0035] Note that in the housing 62, the substantially central portion of the front outer wall 62a in the left-right direction slightly protrudes forward in a stepped shape. The protruding portion is formed with a fourth axis support member 62S4. In addition, the right end portion of the protruding portion is formed as a covered portion 62a1, which is covered by a covering portion 64d of the rotating shaft 64 described below. The covered portion 62a1 is provided at a position adjacent to the display portion 34 (see FIG. 1 ) in the front-rear direction. Figure 1 ) overlap.
[0036] The rotating shaft 64 is a substantially cylindrical member and is arranged in the housing 62, with its axial direction oriented in the front-rear direction. The outer peripheral surface of the rotating shaft 64 is provided with a first flange portion 64a, a second flange portion 64b and a third flange portion 64c of a flange shape in sequence from the rear side. The first flange portion 64a is provided at the rear end portion of the rotating shaft 64. The third flange portion 64c is provided at the front end portion of the rotating shaft 64. The second flange portion 64b is formed near the third flange portion 64c. The rotating shaft 64 is rotatably supported on the first shaft support 62S1, the second shaft support 62S2 and the third shaft support 62S3 between the first flange portion 64a and the second flange portion 64b, and is rotatably supported on the fourth shaft support 62S4 between the second flange portion 64b and the third flange portion 64c.
[0037] Each flange portion 64a to 64c is formed to have a diameter greater than the left-right dimension of each shaft support 62S1 to 62S4. For this reason, each flange portion 64a to 64c prevents the rotation shaft 64 from being disengaged in the front-rear direction. The outer peripheral surface of the second flange portion 64b is provided with a rotation regulating portion 64b1 extending slightly to the left. The lower portion of the rotation regulating portion 64b1 contacts the terminal end portion of the left fourth wall portion 62W4L of the housing 62, thereby regulating the counterclockwise rotation of the rotation shaft 64 when viewed from the front side.
[0038] In addition, the outer peripheral surface between the second flange portion 64b and the third flange portion 64c is provided with a covering portion 64d extending to the right. The terminal portion of the covering portion 64d is located between the display portion 34 and the covered portion 62a1 of the housing 62, and covers the front side of the covered portion 62a1. Note that the switch portion 32 is integrally provided on the front surface of the third flange portion 64c. By rotating the switch portion 32, the rotating shaft 64 rotates around its axis.
[0039] In addition, if Figure 3 and Figure 5A As shown, a first interference portion (conversion portion, first conversion portion) 64f is provided at a position close to the first flange portion 64a on the outer peripheral surface between the first flange portion 64a and the second flange portion 64b, and the first interference portion 64f protrudes in a substantially plate-like shape in the left direction (radial direction), and both plate surfaces are oriented in the front-rear direction. Note that, as Figure 3 and Figure 5B As shown, a second interference portion (conversion portion, second conversion portion) 64g is provided at a position close to the second flange portion 64b on the outer peripheral surface between the first flange portion 64a and the second flange portion 64b, and the second interference portion 64g protrudes in a downward direction (radial direction) in a generally plate-like shape, and both plate surfaces face the front-rear direction. Note that the protruding end portions of the first interference portion 64f and the second interference portion 64g are both chamfered and rounded.
[0040] The first moving portion 65 and the second moving portion 66 are rectangular ring-shaped members having the same structure, including four substantially plate-shaped wall portions, and are housed in the housing 62 so as to be oriented in opposite directions relative to each other. The first moving portion 65 is housed in a posture in which the rotation shaft 64 is inserted into the interior, so that it is movable in the vertical direction between the first wall portion 62W1 and the second wall portion 62W2 in the housing 62, so as to surround the first interference portion 64f of the rotation shaft 64. The second moving portion 66 is housed in a posture in which the rotation shaft 64 is inserted into the interior, so that it is movable in the vertical direction between the second wall portion 62W2 and the third wall portion 62W3 in the housing 62, so as to surround the second interference portion 64g of the rotation shaft 64.
[0041] The upper surface of the first moving portion 65 is provided with two first pins (through portions) 65a protruding upward in a form aligned in the left-right direction. Similarly, the upper surface of the second moving portion 66 is also provided with two second pins (through portions) 66a protruding upward in a form aligned in the left-right direction. Each first pin 65a and each second pin 66a have the same shape and protrude to the same height, and are arranged so that when viewed from above, a line segment connecting the ends of the four pins 65a and 66a forms a substantially square shape (see FIG. 1 ). Figure 4 ). On the other hand, at a position on the placement plate 24 that overlaps with the respective pins 65a and 66a in the vertical direction, a main body side through hole 24a is provided, which is a substantially circular opening through which the respective pins 65a and 66a can pass.
[0042] like Figure 5A As shown, a first protrusion 65b protruding inward (toward the rotation shaft 64) in a wall-like manner is provided on the lower left side of the inner surface (the surface exposed toward the rotation shaft 64) of the first moving portion 65. The first protrusion 65b is located on a plane ( Figure 5A The cross section shown in FIG. 1 is disposed on the same plane as the first interference portion 64f of the rotation shaft 64, and its tip portion protrudes to a position in the vertical direction where it approaches or contacts the first interference portion 64f. Note that Figure 5A In the cross section shown, the distal end portion of the first protrusion 65b is chamfered into a substantially arc shape.
[0043] like Figure 5AAs shown, the rotation shaft 64 inserted into the inner side of the first moving part 65 is arranged in a form close to or in contact with the upper part 65U on the inner side of the first moving part 65. The protruding size of the first interference part 64f from the rotation shaft 64 is larger than the interval between the rotation shaft 64 and the upper part 65U of the inner surface of the first moving part 65, and is also smaller than the interval between the rotation shaft 64 and the portion (excluding the first protrusion 65b) of the inner surface of the first moving part 65 other than the upper part 65U. For this reason, when the rotation shaft 64 is rotationally operated by the switch part 32, the first interference part 64f interferes with the first protrusion 65b, and also interferes with the upper part 65U of the inner surface of the first moving part 65.
[0044] In addition, if Figure 5B As shown, a second protrusion 66b protruding inward (toward the rotation shaft 64) in a wall-like manner is provided on the lower right side of the inner surface (the surface exposed toward the rotation shaft 64) of the second moving portion 66. The second protrusion 66b is located on a plane ( Figure 5B The second protrusion 66b is disposed on the same plane as the second interference portion 64g of the rotation shaft 64 in the cross section shown in FIG. 1 , and its tip portion protrudes to a position where it approaches or contacts the second interference portion 64g in the left-right direction. Note that similarly to the first protrusion 65b, the tip portion of the second protrusion 66b is Figure 5B The cross section shown is chamfered into a generally arc shape.
[0045] like Figure 5B As shown, the rotation shaft 64 inserted into the inner side of the second moving part 66 is arranged in a form close to or in contact with the upper part 66U on the inner side of the second moving part 66. The protruding size of the second interference part 64g from the rotation shaft 64 is larger than the interval between the rotation shaft 64 and the upper part 66U of the inner surface of the second moving part 66, and is also smaller than the interval between the rotation shaft 64 and the part (excluding the second protrusion 66b) of the inner surface of the second moving part 66 except the upper part 66U. For this reason, when the rotation shaft 64 is rotationally operated by the switch part 32, the second interference part 64g interferes with the second protrusion 66b, and also interferes with the upper part 66U of the inner surface of the second moving part 66.
[0046] Next, we will refer to Figure 6 The configuration of the first tray 50 placed on the placement plate 24 in this embodiment is described. Figure 6 As shown, the first tray 50 has a shallow dish shape, and when viewed from above, it has a substantially square shape. On the bottom surface 50a of the first tray 50, a receiving portion 52 is provided, and a cake model (figure) M1 described below is received in the receiving portion 52. The receiving portion 52 is composed of a wall portion rising from the bottom surface 50a of the first tray 50, and when viewed from above, has a substantially circular shape along the outer peripheral surface of the cake model M1.
[0047] The wall portions constituting the receiving portion 52 are intermittently arranged in the form of being divided into eight pieces, wherein the four wall portions located at the front, rear, left and right sides (when viewed from above, the wall portions are arranged in a substantially straight line shape) are used as the retaining portions 54 for retaining the cake model M1, and the remaining four wall portions (when viewed from above, the wall portions are arranged in a substantially arc shape) are used as non-retaining portions 56. The inner surface side of each retaining portion 54 is provided with a claw portion 54a protruding in a claw shape toward the inner side (the center side of the first tray 50). Note that in the receiving portion 52 of the bottom surface 50a of the first tray 50, an opening is provided along the base end portion of each retaining portion 54 at a portion located directly below each retaining portion 54, so that each retaining portion 54 is easily elastically deformed toward the inner and outer sides of the first tray 50 in a manner similar to a leaf spring.
[0048] Furthermore, in the housing portion 52 of the bottom surface 50a of the first tray 50, a tray side through hole 50b (which is an opening) is provided at a portion located on the inner side of each non-holding portion 56. Each tray side through hole 50b is provided at a position overlapping with each main body side through hole 24a in the vertical direction when the first tray 50 is placed on the placement plate 24, and each pin 65a and 66a can pass therethrough (see FIG. Figure 8 ).
[0049] Next, we will refer to Fig. 7A and 7B The cake model M1 accommodated in the accommodation portion 52 is described. The cake model M1 is a figure imitating a sponge cake (cooking object) and is a short cylindrical member having a closed upper opening. Figure 7B As shown, inside the cake model M1, an inner peripheral wall M1b is provided concentrically with the outer peripheral wall M1a, and the inner peripheral wall M1b has a substantially circular shape following the outer peripheral wall M1a of the cake model M1, and the wall shape is slightly smaller than the outer peripheral wall M1a. Fig. 7A and 7B As shown, a small circulation opening M1c is provided at a central portion of the upper surface of the cake model M1, which serves as an air circulation path in case of accidental swallowing.
[0050] Next, we will refer to Figure 8 The aspect of accommodating the cake model M1 in the accommodating portion 52 is described. Figure 8 In FIG. 1 , the cake model M1 is depicted as a transparent view with double dotted lines. Figure 8As shown, the cake model M1 is accommodated almost without a gap inside the accommodation portion 52. Here, the height of the peripheral wall M1a of the cake model M1 substantially matches the standing height of each holding portion 54 and each non-holding portion 56 of the accommodation portion 52. For this reason, the cake model M1 accommodated in the accommodation portion 52 is held in the accommodation portion 52 so that as each holding portion 54 is elastically deformed, a portion of the peripheral wall M1a facing the claw portion 54a of each holding portion 54 is pressed inwardly by the claw portion 54a.
[0051] In addition, if Figure 8 As shown, when the cake model M1 is accommodated in the accommodating portion 52, the pins 65a and 66a exposed upward from the main body side through hole 24a and the tray side through hole 50b overlap with the outer peripheral wall M1a and the inner peripheral wall M1b of the cake model M1 in the vertical direction. For this reason, when the respective pins 65a and 66a protrude upward from the tray side through hole 50b, the outer peripheral wall M1a and the inner peripheral wall M1b are pushed upward by the respective pins 65a and 66a, so that the cake model M1 expands upward, and the upper part of the cake model M1 protrudes upward from the accommodating portion 52.
[0052] In the oven toy 1 of the present embodiment configured as described above, when the switch portion 32 is rotationally operated in a state where the cake model M1 is placed in the receiving portion 52, the state is switched between a state where neither the pins 65a nor 66a protrudes upward from the tray side through hole 50b (hereinafter referred to as a "pre-cooking state") and a state where both the pins 65a and 66a protrude upward from the tray side through hole (hereinafter referred to as a "post-cooking state"). In the pre-cooking state, the rotation shaft 64 is arranged in a rotation posture in which the first interference portion 64f extends leftward from the outer peripheral surface of the rotation shaft 64.
[0053] Next, we will refer to Figures 9A to 9C and Figures 10A to 10C The operation when the user plays the oven toy 1 with the cake model M1 (which is a cooking object) is described. When playing the oven toy 1, the user first stores the cake model M1 in the storage portion 52 of the first tray 50, opens the door portion 22 of the oven 20 in the pre-cooking state, places the first tray 50 on the placement plate 24, and closes the door portion 22 ( Fig. 9A ). Therefore, the user can feel as if the user has put an unexpanded sponge cake into the oven 20.
[0054] Before cooking, Fig. 10AAs shown, the first pin 65a and the second pin 66a do not protrude upward from the tray side through hole 50b, and the first moving portion 65 and the second moving portion 66 are both located in the housing 62. In addition, in the pre-cooking state, the counterclockwise rotation of the rotating shaft 64 is regulated by the rotation regulating portion 64b1 in contact with the left fourth wall portion 62W4L. In addition, in the pre-cooking state, the covered portion 62a1 is covered by the covering portion 64d, so the covering portion 64d is exposed from the display portion 34, and the color scheme of the covering portion 64d is displayed in the display portion 34.
[0055] Starting from the pre-cooking state, when the user begins to rotate the switch portion 32 clockwise, the first interference portion 64f of the rotating shaft 64 interferes with the upper portion 65U of the first movable portion 65, and the first movable portion 65 is pushed upward by the first interference portion 64f together with the first pin 65a. At this time, the chamfered end portion of the first interference portion 64f allows the first movable portion 65 to be pushed upward smoothly. Then, when the user rotates the switch portion 32 clockwise by approximately 90 degrees (the first angle), as the first movable portion 65 is pushed upward, the first interference portion 64f assumes an upwardly extending posture and reaches its most upward position, causing the two first pins 65a to protrude upward from the tray side through-holes 50b (see FIG. 5 ). Fig. 10B ). Hereinafter, this state is referred to as the "semi-cooked state"
[0056] In the semi-cooked state, Fig. 10B As shown, the rear portion of the cake model M1 accommodated in the first tray 50 is pushed upward by the two first pins 65a and bulges, separating from the bottom surface 50a. The bulged rear portion of the cake model M1 passes over the claw portion 54a, rides on the claw portion 54a, and maintains a locked posture on the claw portion 54a. The rear portion of the cake model M1 expands in this way, so that the user gets the impression that a portion of the sponge cake has expanded in the oven 20.
[0057] In addition, the rotating shaft 64 rotates from the pre-cooking state and changes to the semi-cooking state, so the covered portion 62a1 of the housing 62 is not covered by the covering portion 64d, which is a part of the rotating shaft 64, and thus the covered portion 62a1 is exposed from the display portion 34 (see FIG. 2 ). Fig. 9B Here, when the covered portion 62a1 and the covering portion 64d have different color schemes, for example, when the covered portion 62a1 has a darker color scheme than the covering portion 64d, the display visible from the display portion 34 switches from a light color scheme to a darker color scheme, so that when the state switches from the pre-cooking state to the semi-cooking state, the user feels as if the oven 20 has been turned on.
[0058] From the semi-cooking state, when the user begins to further rotate the switch portion 32 clockwise, the second interference portion 64g of the rotating shaft 64 interferes with the upper portion 66U of the second movable portion 66, and the second movable portion 66 is pushed upward by the second interference portion 64g together with the second pin 66a. At this time, the chamfered terminal end portion of the second interference portion 64g allows the second movable portion 66 to be smoothly pushed upward. Then, when the user further rotates the switch portion 32 clockwise by approximately 90 degrees, that is, when the user rotates the switch portion 32 by approximately 180 degrees (the second angle) from the pre-cooking state, as the second movable portion 66 is pushed upward, the second interference portion 64g assumes an upwardly extending posture and reaches its most upward position, causing the two second pins 66a to protrude upward from the tray side through-holes 50b (see Fig. 10C ). Hereinafter, this state is referred to as the "post-cooking state"
[0059] Note that during the transition from the semi-cooked state to the cooked state, the first interference portion 64f of the rotating shaft 64 begins to drop downward as the rotating shaft 64 rotates, and the first moving portion 65 interfering with the first interference portion 64f moves downward together with the first interference portion 64f by its own weight and is accommodated in the housing 62 again. As the first moving portion 65 moves downward, the first pin 65a also moves downward. In the semi-cooked state, the rear portion of the cake model M1 raised by the first pin 65a is locked on the claw portion 54a, so that during the transition from the semi-cooked state to the cooked state, it is separated from the first pin 65a and maintains a raised posture (see FIG. 5 ). Fig. 10C ).
[0060] In the cooked state, Fig. 10C As shown, the front of the cake model M1 accommodated in the first tray 50 is pushed upward by the two second pins 66a and bulges, separating from the bottom surface 50a. The bulging front of the cake model M1 passes over the claw 54a, rides on the claw 54a, and maintains a locked posture on the claw 54a. Therefore, by transitioning to the post-cooking state, the rear and front of the cake model M1, that is, the entire cake model M1, present a bulging posture, and the user gets the impression that the entire sponge cake has expanded in the oven 20.
[0061] Note that even during the transition from the semi-cooked state to the cooked state, since the covered portion 62a1 of the housing 62 is not covered by the covering portion 64d which is a part of the rotating shaft 64, the covered portion 62a1 is exposed through the display portion 34 (see FIG. Fig. 9C ). Therefore, the user feels as if the oven 20 remains powered on even during the transition from the semi-cooked state to the cooked state. In addition, in the cooked state, the clockwise rotation of the rotating shaft 64 is regulated by the rotation regulating portion 64b1 in contact with the right fourth wall portion 62W4R.
[0062] After the transition from the pre-cooking state to the post-cooking state, when the first tray 50 is removed from the oven 20, the user rotates the switch portion 32 counterclockwise by about 90 degrees to return the switch portion 32 to the rotation position of the semi-cooking state, and then further rotates the switch portion 32 counterclockwise by about 90 degrees to return the switch portion 32 to the rotation position of the pre-cooking state. During the return from the post-cooking state to the semi-cooking state, the first interference portion 64f of the rotating shaft 64 interferes with the upper portion 65U of the first moving portion 65 again, and the first moving portion 65 is pushed upward by the first interference portion 64f together with the first pin 65a.
[0063] In addition, during the return from the post-cooking state to the semi-cooking state, the second interference portion 64g of the rotating shaft 64 begins to descend downward with the rotation of the rotating shaft 64, and the second moving portion 66 interfering with the second interference portion 64g moves downward together with the second interference portion 64g by its own weight and is accommodated in the housing 62 again. In this way, the rotational motion of the rotating shaft 64 is converted into the reciprocating motion of the second moving portion 66 in the vertical direction through the second interference portion 64g. As the second moving portion 66 moves downward, the second pin 66a also moves downward. In the post-cooking state, the front part of the cake model M1 raised by the second pin 66a is locked on the claw 54a, so that during the return from the post-cooking state to the semi-cooking state, it is separated from the second pin 66a and maintains the raised posture.
[0064] During the return from the semi-cooking state to the pre-cooking state, the first interference portion 64f of the rotating shaft 64 begins to descend downward with the rotation of the rotating shaft 64, and the first moving portion 65 interfering with the first interference portion 64f moves downward together with the first interference portion 64f by its own weight, and is accommodated in the housing 62 again. At this time, even if the first moving portion 65 does not move downward by its own weight, the first interference portion 64f interferes with the first protrusion 65b, the first protrusion 65b is pushed downward with the rotation of the first interference portion 64f, and the first moving portion 65 moves downward together with the first protrusion 65b. In this way, the rotational motion of the rotating shaft 64 is converted into the reciprocating motion of the first moving portion 65 in the vertical direction through the second interference portion 64f.
[0065] By returning from the post-cooking state to the pre-cooking state in this manner, the first moving portion 65 and the second moving portion 66 are again accommodated in the housing 62, and the two first pins 65a and the two second pins 66a return to the position where they do not protrude upward from the tray side through holes 50b (position of the pre-cooking state). For this reason, the user can open the door portion 22 and take out the first tray 50 from the interior of the oven 20. The cake model M1 in the first tray 50 accommodated in the oven 20 maintains a raised posture (expanded state) because it is completely locked on the claws 54a.
[0066] Note that since the first movable portion 65 and the second movable portion 66 are the same component, even during the manufacturing process and assembly process of the oven toy 1, the first movable portion 65 and the second movable portion 66 are accommodated in relative positions within the shell 62, during the period of returning from the semi-cooking state to the pre-cooking state, the second interference portion 64g will interfere with the second protrusion 66b. Therefore, as the second interference portion 64g rotates, the second protrusion 66b is pushed downward, and the second movable portion 66 moves downward together with the second protrusion 66b.
[0067] As described above, in the oven toy 1 according to the first embodiment of the present disclosure, the user accommodates the cake model M1 in the accommodating portion 52 of the first tray 50, opens the door portion 22, places the first tray 50 on the placement plate 24, and closes the door portion 22. Then, when the user rotates the switch portion 32 clockwise by about 90 degrees, the state changes from the pre-cooking state to the semi-cooking state, and the rear half of the cake model M1 is raised. When the user further rotates the switch portion 32 clockwise by about 90 degrees, the state changes from the semi-cooking state to the post-cooking state, and the entire cake model M1 is raised.
[0068] Therefore, the user gets the impression that the sponge cake (cake model) gradually expands in stages in the oven 20. Thereafter, the user can open the door portion 22 and take out the first tray 50 together with the cake model M1 in the expanded (bulging) state by rotating the switch portion 32 counterclockwise by about 180 degrees to return the state from the post-cooking state to the pre-cooking state. Therefore, the user playing with the oven toy 1 can feel as if the user has baked and cooked the sponge cake in the oven 20, and can easily enjoy the game of imitating the state change before and after cooking.
[0069] Second embodiment
[0070] Next, we will refer to Figures 11 to 14C The second embodiment of the present disclosure is described. The second embodiment describes a user using a second tray 150 (see Figure 1 ) is an embodiment of playing with an oven toy 1. Since the configuration of the oven toy 1 is similar to that of the first embodiment, its description is omitted. In the second embodiment, a second tray 150 is placed on the placement plate 24, and four small cake models (shape bodies) M2 described below are accommodated in the second tray 150.
[0071] First, refer to Fig.11 The configuration of the second tray 150 is described below. Fig.11As shown, the second tray 150 has a shallow dish shape, and when viewed from above, it has a substantially square shape. On the bottom surface 150a of the second tray 150, four receiving portions 152 are provided, in which the following small cake models M2 are accommodated. Each receiving portion 152 is composed of a wall portion rising from the bottom surface 150a of the second tray 150, has the same shape and size, and has a generally circular shape following the outer peripheral surface of the small cake model M2 when viewed from above. The four receiving portions 152 are arranged adjacent to each other in the front-to-back and left-to-right directions in the form of two rows on the bottom surface 150a along the front-to-back and left-to-right directions.
[0072] The wall portions constituting each receiving portion 152 are intermittently arranged in the form of being divided into six pieces, wherein three wall portions arranged in a roughly circular shape at intervals of 120 degrees (wall portions arranged in a roughly straight line shape when viewed from above) are used as the retaining portion 154 for retaining the small cake model M2, and the other three wall portions (wall portions arranged in a roughly arc shape when viewed from above) are used as the non-retaining portion 156. The inner surface side of each retaining portion 154 is provided with a claw portion 154a protruding in a claw shape toward the inside (the center side of the second tray 150). Note that in the receiving portion 152 of the bottom surface 150a of the second tray 150, an opening is provided along the base end portion of each retaining portion 154 at a portion located directly below each retaining portion 154, and therefore, each retaining portion 154 is easily elastically deformed toward the inside and outside of the second tray 150 in a manner similar to a leaf spring.
[0073] Furthermore, in the housing portion 152 of the bottom surface 150a of the second tray 150, a tray side through hole 150b (which is an opening) is provided at a portion located on the inner side of each non-holding portion 156. Each tray side through hole 150b is provided at a position overlapping with each main body side through hole 24a in the vertical direction when the second tray 150 is placed on the placement plate 24, and each pin 65a and 66a can pass through this position (see Fig.13 ).
[0074] Next, we will refer to Fig. 12A and 12B The small cake model M2 accommodated in the accommodation portion 152 is described. The small cake model M2 is a figure imitating a sponge cake (cooking object), is slightly smaller than the cake model M1 described in the first embodiment, and is a short cylindrical member with a closed upper opening. The diameter of each small cake model M2 is approximately half the diameter of the cake model M1. Fig. 12B As shown, the inner side of the outer peripheral wall M2a of the small cake model M2 is provided with a substantially cross-shaped rib wall M2b. Fig. 12A and 12B As shown, a downwardly concave portion M2c is provided at a central portion of an upper surface of the small cake mold M2.
[0075] Next, we will refer to Fig.13 The aspect of accommodating the small cake model M2 in the accommodating portion 152 is described. Fig.13 In FIG. 1 , each small cake model M2 is depicted as a transparent view with double dotted lines. Fig.13 As shown, each small cake model M2 is accommodated almost without a gap inside each receiving portion 152. Here, the height of the peripheral wall M1a of each small cake model M2 substantially matches the standing height of each retaining portion 154 and each non-retaining portion 156 of each receiving portion 152. For this reason, the small cake model M2 accommodated in each receiving portion 152 is retained in the receiving portion 152 so that as each retaining portion 154 is elastically deformed, the portion of the peripheral wall M1a facing the claw portion 154a of each retaining portion 154 is pressed inward by the claw portion 154a.
[0076] In addition, if Fig.13 As shown, when each small cake model M2 is accommodated in each accommodating portion 152, the pins 65a and 66a exposed upward from the main body side through hole 24a and the tray side through hole 50b overlap with the rib wall M2b of each small cake model M2 in the vertical direction. For this reason, when each pin 65a and 66a protrudes upward from the tray side through hole 50b, the rib wall M2b is pushed upward by each pin 65a and 66a, so that the small cake model M2 bulges upward, and the upper part of the small cake model M2 protrudes upward from the accommodating portion 52.
[0077] Next, we will refer to Figures 14A to 14C The operation when the user plays the oven toy 1 with the small cake model M2 (which is a cooking object) is described. When playing the oven toy 1, the user first stores the small cake model M2 in each storage portion 152 of the second tray 150, opens the door 22 of the oven 20 in the pre-cooking state, places the second tray 150 on the placement plate 24, and closes the door 22 ( Fig.14A ). Therefore, the user can feel as if the user has put four small unexpanded sponge cakes into the oven 20.
[0078] When the user rotates the switch portion 32 clockwise to change from the pre-cooking state to the semi-cooking state, each small cake model M2 accommodated in each of the two accommodation portions 152 provided on the rear side of the second tray 150 is completely pushed upward by the two first pins 65a and bulges, separating from the bottom surface 50a (see FIG. Fig. 14B ). The two raised small cake models M2 pass over the claws 154a, ride on the claws 154a, and maintain a locked posture on the claws 154a. Therefore, the user gets the impression that the two small sponge cakes on the rear side of the second tray 150 accommodated in the oven 20 have expanded.
[0079] When the user further rotates the switch portion 32 clockwise to change from the semi-cooked state to the cooked state, each of the small cake models M2 accommodated in each of the two accommodation portions 152 provided on the front side of the second tray 150 is completely pushed upward by the two second pins 66a and bulges, separating from the bottom surface 50a (see FIG. Fig. 14C ). The two raised small cake models M2 pass over the claws 154a, ride on the claws 154a, and maintain a locked posture on the claws 154a. Therefore, the user gets the impression that the two small sponge cakes on the front side of the second tray 150 accommodated in the oven 20 have expanded.
[0080] Note that in the semi-cooked state, the two cake models M1 raised by the first pins 65a are locked on the claws 154a, so during the transition from the semi-cooked state to the post-cooked state, they are separated from the first pins 65a and maintain the raised posture. Therefore, by transitioning to the post-cooked state, all four cake models M1 accommodated in the second tray 150 present a raised posture, and the user gets the impression that all four small sponge cakes have expanded in the oven 20.
[0081] As described above, in the oven toy 1 according to the second embodiment of the present disclosure, the user accommodates the small cake models M2 in the accommodating parts 152 of the second tray 150, respectively, opens the door portion 22, places the second tray 150 on the placement plate 24, and closes the door portion 22. Then, when the user rotates the switch portion 32 clockwise by about 90 degrees, the state is changed from the pre-cooking state to the semi-cooking state, and the two small cake models M1 on the second tray 150 are raised. When the user further rotates the switch portion 32 clockwise by about 90 degrees, the state is changed from the semi-cooking state to the post-cooking state, and the two remaining cake models M1 are raised.
[0082] Therefore, the user gets the impression that the four small sponge cakes (cake models) have been expanded individually in the oven 20. Thereafter, the user can open the door portion 22 and take out the second tray 150 and the corresponding cake models M2 in the expanded (protruding) state by rotating the switch portion 32 counterclockwise by about 180 degrees to return the state from the post-cooking state to the pre-cooking state. Therefore, the user playing the oven toy 1 can feel as if the user has baked and cooked the sponge cakes in the oven 20, and can easily enjoy the game of imitating the state change before and after cooking.
[0083] According to the above-described embodiments of the present disclosure, a model toy and a cooking toy of the following aspects may be provided.
[0084] According to the first aspect, the model toy includes: a main body; a placing table, which is arranged in the main body and has at least one main body side through hole penetrating the placing table in the vertical direction; a tray, which has at least one tray side through hole penetrating the tray in the vertical direction and is placed on the placing table so that at least one tray side through hole overlaps with at least one main body side through hole in the vertical direction; a rotating shaft arranged below the placing table; an operating part, which is arranged in the main body and is configured to rotatably operate the rotating shaft; at least one conversion part, which is arranged around the axis of the rotating shaft and is configured to convert the rotational motion of the rotating shaft around the axis into reciprocating motion in the vertical direction; and at least one moving part, which is arranged between the placing table and the at least one conversion part and is configured to move in the vertical direction by interfering with the at least one conversion part according to the rotation of the rotating shaft around the axis, wherein the at least one moving part includes at least one through part, which is configured to pass through at least one main body side through hole and at least one tray side through hole by moving upward and protrude upward from the at least one tray side through hole.
[0085] With this configuration, by placing the tray on the placement table and rotating the rotating shaft by the operating portion, the through portion of the moving portion can be made to protrude upward from the tray via the conversion portion of the rotating shaft. Therefore, for example, when the rotating shaft is rotationally operated in a state where a figure imitating a cooking object is accommodated in the tray, the figure in the tray is pushed upward by the through portion and bulges, giving the impression that the figure has expanded and been cooked. In this way, by rotating the rotating shaft by the operating portion, the figure in the tray changes from a pre-cooking state to a post-cooking state, so the user can easily and effectively enjoy the game that imitates the change of state before and after cooking.
[0086] In the model toy according to the second aspect, at least one conversion portion has a shape protruding radially from the outer peripheral surface of the rotation shaft.
[0087] With this configuration, by making the protruding length of the conversion part greater than the distance between the conversion part and the moving part, the conversion part can interfere with the moving part when the rotating shaft rotates. Therefore, a specific configuration of the conversion part for converting the rotational motion of the rotating shaft into the vertical motion of the moving part can be provided.
[0088] In the model toy according to the third aspect, a protruding tip portion of at least one conversion portion is chamfered.
[0089] With this configuration, since the tip end portion of the conversion portion is rounded by chamfering, for example, compared to a case where the tip end portion of the conversion portion has an angular shape, as the rotation shaft rotates, when the moving portion is pushed upward by the conversion portion, the moving portion is smoothly pushed upward by the conversion portion as the rotation shaft rotates. Therefore, the upward movement of the moving portion operated by the rotation of the rotation shaft can be made smooth.
[0090] In the model toy according to the fourth aspect, the rotating shaft includes a covering portion extending radially from an outer peripheral surface of the rotating shaft and configured to cover a portion of the main body, and according to rotation of the rotating shaft about the axis, the portion of the main body is exposed from the covering portion.
[0091] With this configuration, for example, by making the portion of the main body covered by the covering have a color scheme different from that of the covering, the state in which the color scheme of the covering is visible is switched to a state in which the color scheme of the portion of the main body exposed from the covering is visible when the rotating shaft rotates, so that the user can feel that the model toy seems to be powered on as the rotating shaft rotates, which enhances the realism of the model toy.
[0092] In the model toy according to the fifth aspect, at least one main body side through hole has a plurality of main body side through holes, at least one tray side through hole has a plurality of tray side through holes, the number of the plurality of tray side through holes corresponds to the number of the plurality of main body side through holes, the plurality of main body side through holes include: a first main body side through hole group having a first main body side through hole; and a second main body side through hole group having a second main body side through hole, the plurality of tray side through holes include: a first tray side through hole group corresponding to the first main body side through hole group and having a first tray side through hole; and a second tray side through hole group corresponding to the second main body side through hole group and having a second tray side through hole, and at least one moving part includes: a first main body side through hole group corresponding to the first main body side through hole group and the first A first movable portion of the tray side through hole group; and a second movable portion corresponding to the second main body side through hole group and the second tray side through hole group, at least one through portion includes: a first through portion, which is arranged in the first movable portion and is configured to penetrate the first tray side through hole and the first main body side through hole; and a second through portion, which is arranged in the second movable portion and is configured to penetrate the second tray side through hole and the second main body side through hole, and at least one conversion portion includes: a first conversion portion, which is configured to interfere with the first movable portion when rotated around the axis of the rotation shaft by a first angle; and a second conversion portion, which is configured to interfere with the second movable portion when rotated around the axis of the rotation shaft by a second angle greater than the first angle.
[0093] With this configuration, the first through-portion of the first moving part and the second through-portion of the second moving part protrude upward from the tray at different times according to the rotation of the rotating shaft. Therefore, for example, when a figure is accommodated in the tray and the rotating shaft is rotationally operated, a part of the figure overlapping with the through-portion of the first moving part and a part overlapping with the second through-portion of the second moving part are pushed upward and raised from the first and second through-portions at different times, so that the user obtains the impression that the figure has been gradually expanded in stages. In addition, for example, when a plurality of figures are accommodated in the tray and the rotating shaft is rotationally operated, a figure overlapping with the first through-portion of the first moving part and a figure overlapping with the second through-portion of the second moving part among the plurality of figures are pushed upward and raised from the first and second through-portions at different times, so that the user obtains the impression that the plurality of figures have been expanded individually. Therefore, the sense of reality of the model toy can be further enhanced.
[0094] The cooking toy according to the first aspect includes: a main body; a placing table, which is arranged in the main body and has a main body side through hole penetrating the placing table in the vertical direction; a tray, which has a tray side through hole penetrating the tray in the vertical direction and is placed on the placing table so that the tray side through hole overlaps with the main body side through hole in the vertical direction; a rotating shaft arranged below the placing table; an operating part, which is arranged in the main body and configured to rotatably operate the rotating shaft; and a conversion part, which is arranged around the axis of the rotating shaft and configured to convert the rotating motion of the rotating shaft around the axis into The tray comprises a tray-side through-hole, wherein the tray-side through-hole is provided with a receiving portion, the receiving portion having a tray-side through-hole and configured to allow the figure to be received in the receiving portion so as to be able to move upward, wherein the moving portion comprises a through-hole, the through-hole being configured to pass through the main body side through-hole and the tray side through-hole by moving upward and to protrude upward from the tray side through-hole.
[0095] With this configuration, when the user accommodates the figure in the tray, places the tray on the placement table, and rotates the operating shaft by the operating portion, the through portion of the moving portion protrudes upward from the tray via the conversion portion of the rotating shaft, so that the figure in the tray is pushed upward by the through portion and bulges. Therefore, the user obtains the impression that the figure that is the cooking object has expanded in the tray and is cooked. Therefore, the user can easily and effectively enjoy the game that imitates the state change before and after cooking.
[0096] In the cooking toy according to the second aspect, the housing portion includes a claw portion having a claw shape and configured to hold the figure that has moved upward in the housing portion.
[0097] With this configuration, the figure that is raised (moved upward) in the tray by the rotation operation of the rotation shaft is held in the raised position by the claw. Therefore, even when the figure is raised by the rotation operation of the rotation shaft and then the tray is removed from the placement table, the figure remains raised in the tray. (In other words, the user feels as if the cooking object remains in an expanded state). Therefore, the cooking object remains in the expanded state. Therefore, the realism of the model toy can be further enhanced.
[0098] Although various embodiments of the present disclosure have been described, the present disclosure is not limited to the above-mentioned various embodiments, and various changes can be made without departing from the scope thereof. For example, in various embodiments, cake models and small cake models imitating sponge cakes have been exemplified as image bodies, but such limitations are not intended, and various shapes imitating food bodies can be used. In addition, in various embodiments, a configuration protruding from the rotating shaft in a generally plate-like shape has been exemplified as a conversion portion; however, for example, a crank-shaped portion can be provided on the rotating shaft as a conversion portion. In this case, by arranging the moving portion above the crank-shaped portion, the rotational motion of the rotating shaft can be converted into a reciprocating motion of the moving portion in the vertical direction by the crank-shaped portion.
Claims
1. A model toy, comprising: main body; A placement table, which is disposed in the main body and has at least one main body side through hole penetrating the placement table in a vertical direction; a tray having at least one tray-side through-hole penetrating the tray in a vertical direction and placed on a placement table so that the at least one tray-side through-hole overlaps with the at least one body-side through-hole in a vertical direction; A rotating shaft, which is arranged below the placing table; an operating portion provided in the main body and configured to rotationally operate the rotating shaft; at least one conversion portion disposed around the axis of the rotating shaft and configured to convert the rotational motion of the rotating shaft around the axis into a reciprocating motion in a vertical direction; and at least one moving portion, which is disposed between the placement table and the at least one conversion portion and is configured to move in a vertical direction by interfering with the at least one conversion portion according to the rotation of the rotation shaft around the axis, The at least one moving portion includes at least one through portion configured to pass through the at least one main body side through hole and the at least one tray side through hole by moving upward and to protrude upward from the at least one tray side through hole. 2 . The model toy according to claim 1 , wherein at least one conversion portion has a shape protruding radially from an outer peripheral surface of the rotation shaft. 3 . The model toy according to claim 2 , wherein a protruding tip portion of at least one conversion portion is chamfered.
4. The model toy according to claim 1, wherein the rotating shaft includes a covering portion extending radially from an outer peripheral surface of the rotating shaft and configured to cover a portion of the main body, and wherein a portion of the main body is exposed from the covering portion according to the rotation of the rotation shaft about the axis.
5. The model toy according to any one of claims 1 to 4, wherein at least one of the main body side through holes has a plurality of main body side through holes, wherein the at least one tray-side through hole has a plurality of tray-side through holes, the number of the plurality of tray-side through holes corresponding to the number of the plurality of body-side through holes, The plurality of main body side through holes include: A first main body side through hole group, the first main body side through hole group having a first main body side through hole; and A second main body side through hole group, the second main body side through hole group having second main body side through holes, wherein the plurality of tray side through holes include: a first tray-side through-hole group corresponding to the first body-side through-hole group and having first tray-side through-holes; and a second tray side through hole group, the second tray side through hole group corresponding to the second body side through hole group and having second tray side through holes, Wherein, at least one moving part comprises: a first moving portion corresponding to the first body-side through-hole group and the first tray-side through-hole group; and a second moving portion corresponding to the second body-side through-hole group and the second tray-side through-hole group, At least one through-hole comprises: a first through portion provided in the first moving portion and configured to penetrate the first tray-side through hole and the first body-side through hole; and a second through portion provided in the second moving portion and configured to penetrate the second tray-side through hole and the second main body-side through hole, and Wherein, at least one conversion unit comprises: a first conversion portion configured to interfere with the first moving portion when rotated by a first angle around an axis of the rotation shaft; and The second conversion portion is configured to interfere with the second moving portion when the second conversion portion is rotated about the axis of the rotation shaft by a second angle greater than the first angle.
6. A cooking toy, comprising: main body; A placement table, which is arranged in the main body and has a main body side through hole penetrating the placement table in the vertical direction; A tray having a tray-side through hole penetrating the tray in a vertical direction and placed on a placement table so that the tray-side through hole overlaps with the body-side through hole in a vertical direction; A rotating shaft, which is arranged below the placing table; an operating portion provided in the main body and configured to rotationally operate the rotating shaft; a conversion portion disposed around the axis of the rotating shaft and configured to convert the rotational motion of the rotating shaft around the axis into a reciprocating motion in a vertical direction; a moving portion provided between the placement table and the conversion portion and configured to move in the vertical direction by interfering with the conversion portion as the rotation shaft rotates about the axis, and an image body imitating the shape of a cooking object, wherein the tray includes a receiving portion having a tray-side through hole and configured to allow the figure to be received in the receiving portion so as to be able to move upward, and The moving portion includes a through portion configured to pass through the main body side through hole and the tray side through hole by moving upward and to protrude upward from the tray side through hole. 7 . The cooking toy according to claim 6 , wherein the housing portion includes a claw portion having a claw shape and configured to hold the figure that has moved upward in the housing portion.
Citation Information
Patent Citations
Toy set, and manufacturing method of simulation food
JP2018164492A