Soft cloth-wrapped velvet toy with movable and adjustable skeleton structure

By introducing movable skeleton components into cloth velvet toys, the problem that cloth velvet toys cannot maintain their posture stably is solved, and multi-angle movement and styling adjustment of the head, legs, arms and body are achieved, improving the playability and fun of the toys.

CN223055074UActive Publication Date: 2025-07-04DONGGUAN KUMO ANIMATION MODEL CO LTD
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Patent Information

Application Number
CN202421233609.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-01
Publication Date
2025-07-04
Estimated Expiration
2034-06-01

AI Technical Summary

Technical Problem

The existing cloth velvet toys cannot maintain a fixed posture stably, and the changing shape of cloth velvet toys cannot maintain a posture for a long time, and the lack of movable connection structure leads to insufficient playability and fun.

Method used

The movable skeleton assembly is adopted, including cross connectors, triangle connectors, corner connectors and movable connection sections. Through the combination of these connectors and movable connection sections, the movable connection and deformation support of the head, legs, arms and body are realized, forming a diverse shape.

Benefits of technology

It realizes multi-angle movement and styling adjustment of the head, legs, arms and body, enhancing the playability and fun of the toys.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223055074U_ABST
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Abstract

The utility model discloses a flexible cloth stuffed toy with a movable and adjustable skeleton structure, which comprises a cloth layer, a polyurethane layer and a movable skeleton component which are sequentially distributed from outside to inside, the cloth layer and the polyurethane layer form a toy main body, the toy main body comprises a head part, a body part, legs and arm parts, and the movable skeleton component is arranged on the body part. The movable skeleton assembly is used for providing connection support for relative movement of the head, the legs, the arms and the body and providing movable support for self deformation of the legs and the arms; the movable framework assembly comprises a cross-shaped connecting piece, a triangular connecting piece, a corner connecting piece and a movable connecting joint. By arranging the movable framework assembly, the head, the legs and the arms can move at different angles relative to the body, meanwhile, the shapes of the legs, the arms and the body can be adjusted, the shapes of the toy are more diversified, and playability and interestingness are higher.
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Description

Technical Field

[0001] The utility model relates to the technical field of plush toys, in particular to a soft plush toy with an adjustable movable skeleton structure. Background Technique

[0002] Plush toys are toys made mainly of cloth, plush, chemical fiber, etc. through processes such as design, cutting, sewing, filling, and assembly.

[0003] Existing plush toys are divided into two types: those with a fixed shape and those with a changeable shape. Among them, the plush toys with a fixed shape can only maintain one posture, and even if it is changed, it will quickly reset to the initial shape. For the plush toys with a changeable shape, they are in a soft state and can freely change their postures, but they cannot stably maintain a fixed posture. Based on this, a soft plush toy with an adjustable movable skeleton structure is provided. Summary of the Invention

[0004] The purpose of the utility model is to provide a soft plush toy with an adjustable movable skeleton structure to solve the problems in the above background.

[0005] To achieve the above purpose, the utility model provides the following technical solution: A soft plush toy with an adjustable movable skeleton structure, including a fabric layer, a polyurethane layer, and a movable skeleton assembly distributed from outside to inside in sequence. The fabric layer and the polyurethane layer form the toy body. The toy body includes a head, a body part, legs, and arms. The head, the body part, and the legs are distributed from top to bottom in sequence. The arms are symmetrically distributed on both sides of the body part. The movable skeleton assembly is used to provide connection support for the relative movement of the head, legs, and arms with the body part, and at the same time provide movement support for the self-deformation of the legs and arms.

[0006] The movable skeleton assembly includes a cross connector, a triangular connector, a corner connector, and a movable connection joint.

[0007] The cross connector and the triangular connector are respectively distributed at the upper and lower ends inside the body part. The corner connector is distributed on the side of the arm part close to the body part.

[0008] A number of movable connection joints are provided, and multiple movable connection joints form movable bone joints. The cross connector is connected to the triangular connector, and the corner connector is connected to the triangular connector through the movable bone joints. Moreover, the top of the cross connector and the bottom of the triangular connector are respectively connected to the head and the legs through the movable bone joints.

[0009] As a further scheme of the utility model: The movable connection joint includes a movable ball, a conical connection block, and a movable ball groove.

[0010] The conical connecting block is fixed to the top of the movable ball, and the movable ball groove is formed at the top of the conical connecting block;

[0011] The adjacent two movable connecting joints are movably connected by engaging the movable ball with the movable ball groove.

[0012] As a further solution of the present invention: the cross-shaped connecting piece includes a middle connecting block, a first conical block, a first connecting ball, and a first ball groove;

[0013] The first conical blocks are respectively fixed to the bottom ends on both sides of the middle connecting block, the first connecting ball is fixed to the end of the first conical block away from the middle connecting block, and the first ball groove is integrally formed at the top of the middle connecting block;

[0014] The interior of the head is distributed with a first movable joint composed of a plurality of movable connecting joints. The first movable joint extends into the interior of the body part and is clamped with the first ball groove through the lowermost movable ball to realize the movable connection between the head and the body part.

[0015] As a further solution of the present invention: the corner connecting piece includes an L-shaped connecting block, a third connecting ball, and a third ball groove;

[0016] The third connecting ball is fixed to the bottom end of the vertical inclined part of the L-shaped connecting block, and the third ball groove is integrally formed on one side of the horizontal part of the L-shaped connecting block;

[0017] Inside the body part, second movable joints composed of a plurality of movable connecting joints are symmetrically arranged on both sides of the cross-shaped connecting piece. The second movable joints are movably connected to the middle connecting block by sleeving the first ball groove outside the first connecting ball;

[0018] The L-shaped connecting block is distributed inside the arm part and the one side of the horizontal part protrudes to the joint of the body part and the arm part. The L-shaped connecting block is movably connected to the second movable joint by sleeving the third ball groove outside the movable ball, thereby realizing the movable connection between the arm part and the body part.

[0019] As a further solution of the present invention: a third movable joint composed of a plurality of movable connecting joints is arranged inside the arm part. The third movable joint is movably connected to the L-shaped connecting block by sleeving the movable ball groove with the third connecting ball.

[0020] As a further solution of the present invention: the triangular connecting piece includes a convex connecting block, a second conical block, a second connecting ball, and a second ball groove;

[0021] The second conical blocks are symmetrically fixed to the two sides of the bottom of the L-shaped connecting block, the second connecting ball is fixed to the bottom of the second conical block, and the second ball groove is integrally formed at the top of the convex connecting block;

[0022] Inside the body part, a fourth movable joint composed of a plurality of movable connection joints is arranged between the cross-shaped connecting piece and the triangular connecting piece. The top of the fourth movable joint is sleeved with the first connecting ball through a movable ball groove, and the bottom is sleeved with the second ball groove through a movable ball, so as to realize the movable connection between the cross-shaped connecting piece and the triangular connecting piece.

[0023] As a further solution of the present utility model: a fifth movable joint composed of a plurality of movable connection joints is arranged inside the leg part. The top of the fifth movable joint extends into the body part and is sleeved with the third ball groove through a movable ball groove, so as to realize the movable connection between the leg part and the body part.

[0024] Compared with the prior art, the beneficial effects of the present utility model are:

[0025] By arranging the movable joint assembly, the head, leg part, and arm part can move at different angles with respect to the body part. At the same time, the leg part, arm part, and body part can all be adjusted in shape, making the shapes of the toys more diverse and the playability and interestingness stronger. Description of the Drawings

[0026] Figure 1 is a schematic structural diagram of the present utility model;

[0027] Figure 2 is a perspective structural view of the present utility model;

[0028] Figure 3 is a schematic structural diagram of the cross-shaped connecting piece of the present utility model;

[0029] Figure 4 is a schematic structural diagram of the triangular connecting piece of the present utility model;

[0030] Figure 5 is a schematic structural diagram of the corner connecting piece of the present utility model;

[0031] Figure 6 is a schematic structural diagram of the movable connection joint of the present utility model.

[0032] In the figure: 1. Toy main body; 101. Head; 102. Body part; 103. Leg part; 104. Arm part; 2. Movable joint assembly; 201. Cross-shaped connecting piece; 2011. Middle connecting block; 2012. First tapered block; 2013. First connecting ball; 2014. First ball groove; 202. Triangular connecting piece; 2021. Convex connecting block; 2022. Second tapered block; 2023. Second connecting ball; 2024. Second ball groove; 203. Corner connecting piece; 2031. L-shaped connecting block; 2032. Third connecting ball; 2033. Third ball groove; 204. Movable connection joint; 2041. Movable ball; 2042. Tapered connecting block; 2043. Movable ball groove. Detailed implementation mode

[0033] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present invention.

[0034] Please refer to Figures 1 to 6 , in the embodiment of the present invention, a soft fabric plush toy with a movable and adjustable skeleton structure includes a fabric layer, a polyurethane layer, and a movable skeleton assembly 2 distributed in sequence from the outside to the inside. The fabric layer and the polyurethane layer form a toy main body 1. The toy main body 1 includes a head 101, a body part 102, legs 103, and arm parts 104. The head 101, the body part 102, and the legs 103 are distributed in sequence from top to bottom, and the arm parts 104 are symmetrically distributed on both sides of the body part 102. The movable skeleton assembly 2 is used to provide connection support for the relative movement of the head 101, the legs 103, and the arm parts 104 with the body part 102, and at the same time provide movement support for the self-deformation of the legs 103 and the arm parts 104;

[0035] The movable skeleton assembly 2 includes a cross connector 201, a triangular connector 202, a corner connector 203, and a movable connection joint 204;

[0036] The cross connector 201 and the triangular connector 202 are respectively distributed at the upper and lower ends inside the body part 102, and the corner connector 203 is distributed on the side of the arm part 104 close to the body part 102;

[0037] A number of movable connection joints 204 are provided, and a plurality of movable connection joints 204 form movable bone joints. The cross connector 201 and the triangular connector 202, and the corner connector 203 and the triangular connector 202 are connected through movable bone joints, and the top of the cross connector 201 and the bottom of the triangular connector 202 are respectively connected to the head 101 and the legs 103 through movable bone joints;

[0038] The movable connection joint 204 includes a movable ball 2041, a tapered connection block 2042, and a movable ball groove 2043;

[0039] The tapered connection block 2042 is fixed to the top of the movable ball 2041, and the movable ball groove 2043 is formed on the top of the tapered connection block 2042;

[0040] Adjacent two movable connection joints 204 are movably connected by engaging the movable ball 2041 with the movable ball groove 2043;

[0041] The cross-shaped connecting piece 201 includes a middle connecting block 2011, a first tapered block 2012, a first connecting ball 2013, and a first ball groove 2014;

[0042] The first tapered blocks 2012 are respectively fixed to both sides of the middle connecting block 2011 at the bottom ends, the first connecting balls 2013 are fixed to the ends of the first tapered blocks 2012 away from the middle connecting block 2011, and the first ball grooves 2014 are integrally formed on the top of the middle connecting block 2011;

[0043] Inside the head 101, a first movable joint composed of a plurality of movable connecting joints 204 is distributed. The first movable joint extends into the body part 102 and is clamped with the first ball groove 2014 through the lowermost movable ball 2041, so as to realize the movable connection between the head 101 and the body part 102.

[0044] In this embodiment, it should be noted that: each component of the toy main body 1 is injection-molded into a shape by polyurethane material. The polyurethane wraps around the outside of the movable skeleton assembly 2, and a plush material is coated on the outside of the inner layer of the polyurethane, so that each component of the toy main body 1 is soft in texture, not only comfortable to hold by hand, but also has good deformability;

[0045] Through the movable connection between the first movable joint composed of a plurality of movable connecting joints 204 and the cross-shaped connecting piece 201, the movable connection between the head 101 and the body part 102 is realized. The head 101 can rotate 360 degrees horizontally around the body part 102, and at the same time, the angle can be adjusted forward and backward, left and right.

[0046] Please refer specifically to Figures 1 to 3 and Figures 5 to 6 , the corner connecting piece 203 includes an L-shaped connecting block 2031, a third connecting ball 2032, and a third ball groove 2033;

[0047] The third connecting ball 2032 is fixed to the bottom end of the vertical inclined part of the L-shaped connecting block 2031, and the third ball groove 2033 is integrally formed on one side of the horizontal part of the L-shaped connecting block 2031;

[0048] Inside the body part 102, second movable joints composed of a plurality of movable connecting joints 204 are symmetrically arranged on both sides of the cross-shaped connecting piece 201. The second movable joints are movably connected to the middle connecting block 2011 by sleeving on the outside of the first connecting balls 2013 through the first ball grooves 2014;

[0049] The L-shaped connecting block 2031 is distributed inside the arm part 104, and the convex part on the lateral side protrudes to the joint between the body part 102 and the arm part 104. The L-shaped connecting block 2031 is sleeved outside the movable ball 2041 through the third ball groove 2033 to realize the movable connection with the second movable joint, and then realize the movable connection between the arm part 104 and the body part 102;

[0050] Inside the arm part 104, there is a third movable joint composed of a plurality of movable connecting joints 204. The third movable joint is sleeved with the L-shaped connecting block 2031 through the movable ball groove 2043 and the third connecting ball 2032 to realize the movable connection.

[0051] In this embodiment: The second movable joint composed of a plurality of movable connecting joints 204 realizes the movable connection between the cross-shaped connecting piece 201 and the corner connecting piece 203, and then realizes the movable connection between the arm part 104 and the body part 102. The arm part 104 can rotate 360 degrees in the vertical direction around the body part 102, and at the same time has a certain horizontal rotation angle;

[0052] At the same time, through the third movable joint composed of a plurality of movable connecting joints 204, the arm part 104 can be freely adjusted to different shapes, making the arm part 104 more flexible, diversified and more interesting;

[0053] It should be further noted that: The L-shaped connecting block 2031 is composed of two tapered blocks fixed end to end, and the distribution angle of the two tapered blocks is greater than 90 degrees, which is used to match the distribution angle between the arm part 104 and the body part 102. The setting of the tapered blocks prevents the L-shaped connecting block 2031 from interfering with the movement of the third movable joint.

[0054] Please refer specifically to Figures 1 to 4 and Figure 6 , the triangular connecting piece 202 includes a convex connecting block 2021, a second tapered block 2022, a second connecting ball 2023, and a second ball groove 2024;

[0055] The second tapered blocks 2022 are symmetrically fixed on both sides of the bottom of the L-shaped connecting block 2031. The second connecting ball 2023 is fixed at the bottom of the second tapered block 2022. The second ball groove 2024 is integrally formed at the top of the convex connecting block 2021;

[0056] Inside the body part 102, between the cross-shaped connecting piece 201 and the triangular connecting piece 202, there is a fourth movable joint composed of a plurality of movable connecting joints 204. The top of the fourth movable joint is sleeved with the first connecting ball 2013 through the movable ball groove 2043, and the bottom is sleeved with the second ball groove 2024 through the movable ball 2041 to realize the movable connection between the cross-shaped connecting piece 201 and the triangular connecting piece 202;

[0057] Inside the leg 103, there is a fifth movable joint composed of a plurality of movable connecting joints 204. The top of the fifth movable joint extends inside the body part 102 and is sleeved with the third ball groove 2033 through the movable ball groove 2043, so as to realize the movable connection between the leg 103 and the body part 102.

[0058] In this embodiment: the movable connection between the triangular connecting piece 202 and the cross connecting piece 201 is realized through the fourth movable joint composed of a plurality of movable connecting joints 204, so that the body part 102 also has a certain deformation adjustment function;

[0059] In addition, through the fifth movable joint composed of a plurality of movable connecting joints 204, the leg 103 can rotate 306 degrees horizontally and move back and forth, left and right around the body part 102. In addition, the leg 103 can also be adjusted to various postures, making the toy more playable and the overall shape of the toy more diverse.

[0060] The above is only the preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and the inventive concept of the present invention, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.

Claims

1. An adjustable movable skeleton structure soft cloth plush toy, comprising a cloth layer, a polyurethane layer and a movable skeleton assembly (2) sequentially distributed from outside to inside. The cloth layer and the polyurethane layer form a toy main body (1). The toy main body (1) includes a head (101), a body part (102), legs (103) and arm parts (104). The head (101), the body part (102) and the legs (103) are sequentially distributed from top to bottom. The arm parts (104) are symmetrically distributed on both sides of the body part (102), and it is characterized in that, The movable skeleton component (2) is used to provide connection support for the relative movement of the head (101), legs (103), arms (104) and body (102), and at the same time provide movement support for the self-deformation of the legs (103) and arms (104); The movable skeleton component (2) includes a cross connector (201), a triangular connector (202), a corner connector (203), and a movable connection joint (204); The cross connector (201) and the triangular connector (202) are respectively distributed at the upper and lower ends inside the body (102), and the corner connector (203) is distributed on one side inside the arm (104) close to the body (102); A number of movable connection joints (204) are provided, and multiple movable connection joints (204) form movable bone joints. The cross connector (201) is connected to the triangular connector (202), and the corner connector (203) is connected to the triangular connector (202) through the movable bone joints. Moreover, the top of the cross connector (201) and the bottom of the triangular connector (202) are respectively connected to the head (101) and the legs (103) through the movable bone joints.

2. The movable adjustable skeleton structure soft package cloth plush toy according to claim 1, characterized in that The movable connection joint (204) includes a movable ball (2041), a conical connection block (2042), and a movable ball groove (2043); The conical connection block (2042) is fixed to the top of the movable ball (2041), and the movable ball groove (2043) is formed on the top of the conical connection block (2042); Adjacent two movable connection joints (204) are movably connected by the engagement of the movable ball (2041) and the movable ball groove (2043).

3. The movable and adjustable skeleton structure soft fabric plush toy according to claim 2, wherein, The cross connector (201) includes a middle connection block (2011), a first conical block (2012), a first connection ball (2013), and a first ball groove (2014); The first conical blocks (2012) are respectively fixed to the bottom ends on both sides of the middle connection block (2011), the first connection ball (2013) is fixed to the end of the first conical block (2012) away from the middle connection block (2011), and the first ball groove (2014) is integrally formed on the top of the middle connection block (2011); Inside the head (101), a first movable bone joint composed of multiple movable connection joints (204) is distributed. The first movable bone joint extends into the body (102) and is clamped to the first ball groove (2014) through the lowermost movable ball (2041) to realize the movable connection between the head (101) and the body (102).

4. The movable adjustable skeleton structure soft package cloth plush toy according to claim 3, characterized in that, The corner connector (203) includes an L-shaped connection block (2031), a third connection ball (2032), and a third ball groove (2033); The third connection ball (2032) is fixed to the bottom end of the vertical inclined part of the L-shaped connection block (2031), and the third ball groove (2033) is integrally formed on one side of the horizontal part of the L-shaped connection block (2031); On both sides of the cross-connector (201) inside the body part (102), a second movable joint composed of a plurality of movable connection joints (204) is symmetrically arranged. The second movable joint is movably connected to the middle connection block (2011) by sleeving the first ball groove (2014) outside the first connection ball (2013). The L-shaped connection blocks (2031) are distributed inside the arm part (104), and one side of the horizontal part protrudes to the joint between the body part (102) and the arm part (104). The L-shaped connection blocks (2031) are movably connected to the second movable joint by sleeving the third ball groove (2033) outside the movable ball (2041), thereby realizing the movable connection between the arm part (104) and the body part (102).

5. The movable and adjustable skeleton structure soft package cloth plush toy according to claim 4, characterized in that, Inside the arm part (104), a third movable joint composed of a plurality of movable connection joints (204) is arranged. The third movable joint is movably connected to the L-shaped connection block (2031) by sleeving the movable ball groove (2043) with the third connection ball (2032).

6. The movable adjustable skeleton structure soft package cloth plush toy according to claim 2, characterized in that, The triangular connector (202) includes a convex connection block (2021), a second tapered block (2022), a second connection ball (2023), and a second ball groove (2024). The second tapered blocks (2022) are symmetrically fixed on both sides of the bottom of the L-shaped connection block (2031). The second connection ball (2023) is fixed at the bottom of the second tapered block (2022). The second ball groove (2024) is integrally formed at the top of the convex connection block (2021). Inside the body part (102), between the cross-connector (201) and the triangular connector (202), a fourth movable joint composed of a plurality of movable connection joints (204) is arranged. The top of the fourth movable joint is sleeved with the first connection ball (2013) through the movable ball groove (2043), and the bottom is sleeved with the second ball groove (2024) through the movable ball (2041) to realize the movable connection between the cross-connector (201) and the triangular connector (202).

7. A movable and adjustable skeleton structure soft cloth plush toy according to claim 6, characterized in that, Inside the leg part (103), a fifth movable joint composed of a plurality of movable connection joints (204) is arranged. The top of the fifth movable joint extends inside the body part (102) and is sleeved with the third ball groove (2033) through the movable ball groove (2043) to realize the movable connection between the leg part (103) and the body part (102).