Rotatable eye for doll and doll with same
Through the purely mechanical structure design, the problem of existing doll eyes is difficult to rotate in all directions and low safety is solved, and the doll eyes design with all directions and high safety is achieved.
Patent Information
- Application Number
- CN202422331555.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-09-24
AI Technical Summary
The eyes of existing dolls are difficult to achieve flexible rotation at all angles and have problems such as safety hazards and high maintenance costs.
It adopts a purely mechanical structure design, including a face shell, a fixed shell, a back shell and a rotatable eye sphere assembly, which realizes full rotation and opening and closing of the eyes through manual operation, avoiding the use of batteries and circuit boards.
It realizes the all-round and all-angle rotation of the doll's eyes, good handling, high safety, and not easy to damage, and low maintenance costs.
Smart Images

Figure CN223275879U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a doll component, in particular to a pair of rotating eyes for a doll.
[0002] The utility model also relates to a doll with the above-mentioned eyes which can rotate. Background Art
[0003] There are a wide variety of toys and dolls available on the market. With the rise of AI and video, more and more families are demanding greater realism from their dolls. Dolls, especially baby dolls, are currently very popular, and girls everywhere seem to love them. Various dress-up dolls, career-changing dolls, and learning dolls are all very popular. The eyes are the most important part of a doll, and since they can be animated in various ways, realism is a higher priority. Currently, dolls with moving eyes use traditional methods, such as using a pull cord to control the movement, or using magnets to pull the eyelids up or down, creating the illusion of opening or closing the eyes. However, there are currently few dolls with self-moving eyes, and none that can move their eyes from all angles from the front, nor do any dolls that can simultaneously move their eyes and open and close their eyelids. Furthermore, there are no dolls that allow children to manipulate their eyes at will.
[0004] Of course, there are some dolls on the market that are controlled by high-end electronic components. The dolls' eyes will rotate under the power of the electronic components, and there are different modes of rotation. The arms can also move with the eyes. Such dolls are equipped with batteries and circuit boards inside, and their safety performance is not high. It is easy to electrocute children. At the same time, electronic products are easily damaged after being bumped, and the cost of replacing circuit boards is relatively high. Utility Model Content
[0005] The purpose of the utility model is to overcome the technical problems in the prior art and provide a doll with rotating eyes that has a relatively simple structure, allows players and children to quickly and easily open and close the eyes by themselves, and flexibly rotate the eyeballs in all directions and angles, has good controllability, is purely mechanically manufactured with a good feel, is not easy to damage, does not require electricity, and is highly safe.
[0006] The technical solution of the utility model for a doll with rotating eyes is as follows: it comprises: a face shell, a fixed shell, a back shell and two rotatable eyeball assemblies, the fixed shell being detachably arranged between the face shell located in the front and the back shell located in the rear, the rotatable eyeball assemblies located on the left and right sides being rotatably arranged between the fixed shell and the back shell, the front end of the rotatable eyeball assembly extending out of the front surface of the face shell of the fixed shell, the rotatable eyeball assembly comprising an eyelid assembly and an eyeball assembly, the eyeball assembly being rotatably arranged in the eyelid assembly, the eyelid assembly wrapping the eyeball assembly, two eye sockets being arranged at the eye positions of the face shell, eye socket holes and opening windows being arranged at positions of the fixed shell and the eyelid assembly corresponding to the positions of the eye sockets, a portion of the eyeball assembly being exposed outside the opening window and the eye sockets, and the two sides of the eyelid assembly being rotatably arranged between the fixed shell and the back shell.
[0007] The utility model provides a doll with rotating eyes, which can also be:
[0008] The eyeball assembly includes an anterior eyeball, a pupil body and a posterior eyeball body. The pupil body is detachably arranged between the anterior eyeball body and the posterior eyeball body. The anterior eyeball body and the posterior eyeball body have corresponding shapes and sizes. A through hole is opened in the front part of the anterior eyeball body. The front surface of the pupil body passes through the front surface of the anterior eyeball body through the through hole. The outer walls of the anterior eyeball body and the posterior eyeball body are in releasable contact with the inner wall of the eyelid assembly.
[0009] The front surface of the pupil body is a curved surface.
[0010] The rear surface of the pupil body is a plane.
[0011] The front surface of the pupil body is a transparent body, and pupil and vitreous body pattern images or pattern objects are arranged behind the transparent body.
[0012] An elastic device is provided between the rear portion of the pupil body and the inner surface of the posterior eyeball.
[0013] The eyelid assembly includes an upper eyelid body and a lower eyelid body, which are detachably fixedly connected. The upper eyelid body and the lower eyelid body can be rotatably mounted on the left and right sides between the fixed shell and the back shell.
[0014] The two lower eyelid bodies and the two upper eyelid bodies are each provided with a side semi-axis at the relatively farthest outer ends, and the two upper eyelid bodies and the two lower eyelid bodies are each provided with a middle semi-axis at the relatively closest inner ends. The side semi-axis and the middle semi-axis on the upper eyelid body and the corresponding lower eyelid body are connected to form a side rotating shaft and a middle rotating shaft, and the side rotating shaft and the middle rotating shaft can be rotatably set between the fixed shell and the back shell.
[0015] The left and right inner sides and the middle position of the fixed shell are respectively provided with a front card slot and a front middle card slot, and the left and right inner sides and the middle position of the back shell are respectively provided with a rear card slot and a rear middle card slot, the front card slot and the rear card slot are positioned correspondingly, the front middle card slot and the rear middle card slot are positioned correspondingly, the side rotating shaft can be rotatably set in the side hole slot formed by the front card slot and the rear card slot, and the middle rotating shaft can be rotatably set in the middle hole slot formed by the front middle card slot and the rear middle card slot.
[0016] The upper part of the upper eyelid body and the lower part of the lower eyelid body are provided with raised eyelid opening and closing limit blocks, and the front side of the eyelid opening and closing limit blocks is releasably abutted against the edge of the eye socket of the face shell or the raised circle provided on the rear wall of the eye socket.
[0017] The utility model provides a doll with rotatable eyes, comprising: a face shell, a fixed shell, a back shell and two rotatable eyeball assemblies, wherein the fixed shell is detachably arranged between the face shell located in the front and the back shell located in the back, the rotatable eyeball assemblies located on the left and right sides can be rotatably arranged between the fixed shell and the back shell, the front end of the rotatable eyeball assembly extends out of the front surface of the face shell of the fixed shell, the rotatable eyeball assembly comprises an eyelid assembly and an eyeball assembly, the eyeball assembly can be rotatably arranged in the eyelid assembly, the eyelid assembly wraps the eyeball assembly, two eye sockets are arranged at the eye position of the face shell, eye socket holes and opening windows are arranged at positions of the fixed shell and the eyelid assembly corresponding to the positions of the eye sockets, a part of the eyeball assembly is exposed outside the opening window and the eye socket, and the two sides of the eyelid assembly can be rotatably arranged between the fixed shell and the back shell. In this way, the face shell serves to provide players or children with a comfortable, realistic, and natural-looking face. The shape, size, and local convex and concave features of the face shell correspond to the facial features of the doll. The rotatable eyeball assembly is rotatably disposed between the fixed shell and the back shell, and rotates between the fixed and back shells. Furthermore, because the front end of the rotatable eyeball assembly extends beyond the front surfaces of the fixed shell and the face shell, players or children can rotate the eyeballs by directly manipulating the extended rotatable eyeball assembly. Furthermore, the rotatable eyeball assembly includes the eyeball assembly and the eyelid assembly. When the eyelid assembly is rotated downward or upward, the eye sockets of the face shell appear to be visible. When the eyelids are turned downward, the doll's eyes are closed, while when they are turned upward, the doll's eyes are open. The opening window on the eyelid assembly is used to display the eyeball assembly and allows the player or child to push the eyeball assembly wrapped in the eyelid assembly through the opening window, thereby pushing or turning the eyeball assembly to rotate within the eyelid assembly. The eyeball assembly can be rotated upward, downward, left, right, or freely rotated at other angles to achieve the rotation of the doll's eyes. Therefore, the eyes can be opened and closed manually, and the left or right eyelid can be opened and closed and the eyeball rotated separately, or the left and right eyelids can be opened and closed and the left and right eyeballs can be rotated at the same time. The full name is a mechanical structure, and all manual operations have a good feel and good controllability. There is no battery or circuit board, so children are prevented from being electrocuted when rotating the eyeball assembly, improving the overall safety of the doll, not easy to damage, and relatively low maintenance costs.
[0018] Therefore, the advantages of the rotating eyes for dolls of the present invention over the prior art are: a relatively simple structure, enabling children to quickly and easily open and close the eyes by themselves, and flexibly rotate the eyeballs in all directions and angles, good controllability, pure mechanical manufacturing with a good feel, not easy to damage, no need for electricity, and high safety.
[0019] Another object of the present invention is to overcome the technical problems in the prior art and provide a doll with rotating eyes that has a relatively simple structure, enables children to quickly and easily open and close the eyes by themselves, and flexibly rotate the eyeballs in all directions and angles, has good controllability, is purely mechanically manufactured with a good feel, is not easy to damage, does not require electricity, and is highly safe.
[0020] The technical solution of a doll of the present utility model is as follows: it includes eyes that can rotate for a doll, and the eyes that can rotate for a doll include: a face shell, a fixed shell, a back shell and two rotatable eyeball assemblies, the fixed shell being detachably arranged between the face shell located in the front and the back shell located in the rear, the rotatable eyeball assemblies located on the left and right sides being rotatably arranged between the fixed shell and the back shell, the front end of the rotatable eyeball assemblies extending out of the fixed shell and the front surface of the face shell, the rotatable eyeball assembly including an eyelid assembly and an eyeball assembly, the eyeball assembly being rotatably arranged in the eyelid assembly, the eyelid assembly wrapping the eyeball assembly, two eye sockets being arranged at the eye position of the face shell, eye socket holes and opening windows being arranged at positions of the fixed shell and the eyelid assembly corresponding to the positions of the eye sockets, a portion of the eyeball assembly being exposed outside the opening window and the eye sockets, and the two sides of the eyelid assembly being rotatably arranged between the fixed shell and the back shell. In this way, the doll's eyes can be mechanically rotated. The face shell serves to provide a more realistic and natural-looking face that is intuitively visible to players or children. The shape, size, and local convex and concave features of the face shell correspond to the facial features of the doll. The rotatable eyeball assembly is rotatably disposed between the fixed shell and the back shell, and the rotatable eyeball assembly rotates between the fixed shell and the back shell. Furthermore, because the front end of the rotatable eyeball assembly extends beyond the front surfaces of the fixed shell and the face shell, players or children can rotate the eyeballs by directly manipulating the extended rotatable eyeball assembly. Furthermore, the rotatable eyeball assembly includes the eyeball assembly and the eyelid assembly. When the eyelid assembly is rotated downward or upward, the eye sockets of the face shell are displayed externally. When the eyelids are turned downward, the doll's eyes are closed, while when the eyelids are turned upward, the doll's eyes are open. The opening window on the eyelid assembly is used to display the eyeball assembly and allows the player or child to push the eyeball assembly wrapped in the eyelid assembly through the opening window, thereby pushing or turning the eyeball assembly to rotate within the eyelid assembly. The eyeball assembly can be rotated upward, downward, left, right, or freely rotated at other angles to achieve the rotation of the doll's eyes. Therefore, the eyes can be opened and closed manually, and the left or right eyelid can be opened and closed and the eyeball rotated separately, or the left and right eyelids can be opened and closed and the left and right eyeballs can be rotated at the same time. The full name is a mechanical structure, and all manual operations have a good feel and good controllability. There is no battery or circuit board, so children are prevented from being electrocuted when rotating the eyeball assembly, improving the overall safety of the doll, not easy to damage, and relatively low maintenance costs.
[0021] Therefore, the advantages of the doll with rotating eyes of the present invention over the prior art are: a relatively simple structure, enabling children to quickly and easily open and close the eyes by themselves, and flexibly rotate the eyeballs in all directions and angles, good controllability, pure mechanical manufacturing with a good feel, not easy to damage, no need for electricity, and high safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 A schematic diagram of the entire front portion of the face of an embodiment of a doll with rotating eyes according to the present invention.
[0023] Figure 2 A rear perspective diagram of an embodiment of the utility model for a doll with rotating eyes.
[0024] Figure 3 An exploded front view of an embodiment of the utility model of a doll with rotating eyes.
[0025] Figure 4 An exploded rear view of an embodiment of the utility model of a doll with rotating eyes.
[0026] Figure 5 An exploded view of the eyeball assembly of an embodiment of the utility model for a doll with rotating eyes.
[0027] Figure 6 A schematic diagram of an embodiment of the utility model doll.
[0028] Figure 7 Another schematic diagram of an embodiment of the utility model doll
[0029] Figure 8 Another schematic diagram of an embodiment of the utility model doll
[0030] Description of the figure number:
[0031] 1...Front shell 2...Fixed shell 3...Back shell 4...Eye socket
[0032] 5… fenestration 6… anterior eyeball 7… pupil 8… posterior eyeball
[0033] 9…through hole 10…pupil stop ring 11…fixing ring 12…upper eyelid
[0034] 13... Lower eyelid body 14... Locking block 15... Fixing block 16... Alignment block
[0035] 17…Side half shaft 18…Middle half shaft 19…Fixing stud 20…Front side slot
[0036] 21…Front center slot 22…Rear side slot 23…Rear center slot 24…Eye socket
[0037] 25… Raised ring 26… Eyelid opening and closing limit block DETAILED DESCRIPTION
[0038] The present invention will be further described in detail below with reference to the accompanying drawings and in combination with specific embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0039] The utility model is a doll with rotating eyes, please refer to Figures 1 to 8The relevant figures include: a face shell 1, a fixed shell 2, a back shell 3 and two rotatable eyeball assemblies, the fixed shell 2 is detachably arranged between the face shell 1 located in the front and the back shell 3 located in the rear, the rotatable eyeball assemblies located on the left and right sides can be rotatably arranged between the fixed shell 2 and the back shell 3, the front end of the rotatable eyeball assembly extends out of the front surface of the face shell 1 of the fixed shell 2, the rotatable eyeball assembly includes an eyelid assembly and an eyeball assembly, the eyeball assembly can be rotatably arranged in the eyelid assembly, the eyelid assembly wraps the eyeball assembly, two eye sockets 4 are arranged at the eye position of the face shell 1, eye socket holes 24 and opening windows 5 are respectively arranged at the positions corresponding to the positions of the eye sockets 4, a part of the eyeball assembly is exposed outside the opening window 5 and the eye socket 4, and the two sides of the eyelid assembly are rotatably arranged between the fixed shell 2 and the back shell 3. In this way, the face shell 1 serves to provide players or children with a comfortable, realistic, and natural-looking face. The shape, size, and local convex and concave features of the face shell 1 correspond to the facial features of the doll. The rotatable eyeball assembly is rotatably disposed between the fixed shell 2 and the back shell 3, and rotates between the fixed shell 2 and the back shell 3. Furthermore, because the front end of the rotatable eyeball assembly extends beyond the fixed shell 2 and the front surface of the face shell 1, players or children can rotate their eyeballs by directly manipulating the extended rotatable eyeball assembly. Furthermore, the rotatable eyeball assembly includes the eyeball assembly and the eyelid assembly. When the eyelid assembly is rotated downward or upward, the eye sockets 4 of the face shell 1 are visible to the outside. When the eyelids are turned downward, the doll's eyes are closed, while when the eyelids are turned upward, the doll's eyes are open. The opening window 5 on the eyelid assembly is used to display the eyeball assembly and allows the player or child to push the eyeball assembly wrapped in the eyelid assembly through the opening window 5, thereby pushing or moving the eyeball assembly to rotate within the eyelid assembly. The eyeball assembly can be rotated upward, downward, left, right, or freely rotated at other angles to achieve the rotation of the doll's eyes. Therefore, the eyes can be opened and closed manually, and the left or right eyelid can be opened and closed and the eyeball rotated separately, or the left and right eyelids can be opened and closed and the left and right eyeballs can be rotated at the same time. The full name is a mechanical structure. All manual operations have a good feel and good controllability. There is no battery or circuit board, so children are prevented from being electrocuted when rotating the eyeball assembly, which improves the overall safety of the doll, is not easy to damage, and has a relatively low maintenance cost.Therefore, the advantages of the rotating eyes of the doll of the present invention over the prior art are: a relatively simple structure, allowing children to quickly and easily open and close the eyes themselves, and flexibly rotate the eyeballs in all directions and angles, good controllability, a purely mechanical manufacturing feel, not easy to damage, no electricity required, and high safety. Based on the previous technical solution, a further preferred technical solution is: the back shell 3 and the fixed shell 2 are both fixedly connected by shell screws, and the fixed shell 2 and the front shell 1 are bonded and fixed. In this way, the shell screws are screwed sequentially to the back shell 3 and the fixed shell 2, and the fixing method is simple and firm, which facilitates the installation and removal of internal components. A further preferred technical solution is: fixing studs 19 are provided at corresponding positions on the upper and lower parts of the fixed shell 2 and the back shell 3, and the shell screws pass through the fixing studs 19 to detachably fix the fixed shell 2 and the back shell 3. In this way, the shell screws are screwed sequentially through the fixing studs 19 at corresponding positions on the back shell 3 and the fixed shell 2 to fix the two together, making it convenient to fix and disassemble. The doll can be a baby, or an animal such as a dinosaur, a rabbit, a pig, etc. As long as the doll has eyes, the rotating eyes of the present invention can be used.
[0040] The utility model is a doll with rotating eyes, please refer to Figures 1 to 8In the relevant figures, based on the previous technical solution, the eyeball assembly can also include an anterior eyeball 6, a pupil 7, and a posterior eyeball 8. The pupil 7 is detachably arranged between the anterior eyeball 6 and the posterior eyeball 8. The anterior eyeball 6 and the posterior eyeball 8 have corresponding shapes and sizes. The anterior eyeball 6 has a through hole 9 formed in the front portion thereof. The front surface of the pupil 7 passes through the through hole 9 and then exits the front surface of the anterior eyeball 6. The outer walls of the anterior eyeball 6 and the posterior eyeball 8 are in releasable contact with the inner wall of the eyelid assembly. In this way, the pupil 7 is sandwiched between the anterior eyeball 6 and the posterior eyeball 8. At the same time, the front surface of the pupil 7 passes through the through hole 9 and then exits the front surface of the anterior eyeball 6. The pupil 7 and the anterior eyeball 6 are combined, making the shape and pattern of the eyes of a doll or puppet more realistic and authentic. This structure is more tactile and more realistic than simply pasting a picture on a sphere. The front eyeball 6 and the back eyeball 8, together with the pupil body 7 sandwiched between the two, form the whole eyeball assembly, which is wrapped in the eyelid assembly. Specifically, the front outer surface of the front eyeball 6 and the back surface of the back eyeball 8 are in contact with the inner wall of the eyelid assembly. Of course, it can also be partial contact or most contact. As long as it is in contact, it can ensure that the front eyeball 6 and the back eyeball 8 have effective support, thereby facilitating their rotational movement in the eyelid assembly. The utility model is a doll with rotating eyes. Based on the previous technical solution, a further preferred technical solution is: the front eyeball 6, the pupil body 7 and the back eyeball 8 are buckled together to form a sphere, and the sphere is located in the eyelid assembly. In this way, the front eyeball 6, the pupil 7, and the back eyeball 8 are buckled together to form a sphere, which is just wrapped in the eyelid assembly. Then, the sphere fits the shape of the doll's eyeball better. At the same time, the eyeball assembly can be rotated at any angle after being moved inside the eyelid assembly, making rotation more convenient, fast, and easy. A further preferred technical solution can also be based on the previous technical solution, in which the middle of the back eyeball 8 is provided with a fixing ring 11 protruding forward, and the front end of the fixing ring 11 is against the rear end of the pupil 7. In this way, the fixing ring 11 presses the pupil 7 tightly against the front eyeball 6, and the pupil 7 will not retreat. Then, when the pupil 7 is rotated, it rotates together with the front eyeball 6 and the back eyeball 8. A pupil limiting ring 10 can also be provided at the rear of the pupil 7, and the front surface of the pupil limiting ring 10 is against the position of the front eyeball 6 located around the through hole 9. The setting of the pupil limiting ring 10 ensures that the rear part of the pupil body 7 is pressed against the inner wall of the front eye body 6 at the edge of the through hole 9 on the front eye body 6, further ensuring that the pupil body 7 will not fall out from behind the through hole 9.
[0041] The utility model is a doll with rotating eyes, please refer to Figures 1 to 8 Based on the previous technical solution, a further preferred technical solution is that the front surface of the pupil body 7 is a curved surface. This better matches the surface of the doll's real eye, making the doll more realistic. A further preferred technical solution based on the previous technical solution is that the rear surface of the pupil body 7 is a flat surface. This allows for a closer connection with the rear eyeball 8, providing a better feel. A further preferred technical solution based on the previous technical solution is that the outer edge of the pupil body 7 aligns with the edge of the through hole 9 in the front eyeball 6, forming a complete curved surface. In this way, a pupil pattern is formed on the pupil body 7. The pupil pattern of the pupil body 7 and the front surface of the front eyeball 6 form the white of the eye and the pupil, creating a smooth and integrated surface, further enhancing the realism of the eyeball assembly. A further preferred technical solution based on the previous technical solution is that the front surface of the pupil body 7 is transparent, with pupil and vitreous humor patterns or objects placed behind the transparent body. This creates a translucent, reflective, and realistic eye. Of course, a pupil pattern or design can also be directly affixed to the surface of the pupil body 7. A further preferred technical solution based on the previous technical solution is that an elastic device is provided between the rear portion of the pupil body 7 and the inner surface of the posterior eyeball 8. The elastic device serves to press the pupil body 7 into the through hole 9 on the anterior eyeball 6, and maintains a certain degree of elasticity when the player or child rotates the eyeball assembly, making the feel more realistic and closer to the real thing. A further preferred technical solution based on the previous technical solution is that an eyeball spring can be provided in the gap between the fixing ring 11 and the inner wall of the rear portion of the posterior eyeball 8. The bottom of the eyeball spring abuts against the inner wall of the posterior eyeball 8, and the top of the eyeball spring abuts against the rear portion of the pupil retaining ring 10 of the pupil body 7. This way, the pupil body 7 is elastic after passing through the through hole 9, providing a better feel when pressed, and effectively pressing the pupil body 7 against the anterior eyeball 6. Specifically, the eyeball spring can be a compression spring. The advantages of using the compression spring are low cost and a relatively uniform and powerful force for pressing the pupil body 7 against the front eyeball body 6 .
[0042] The utility model is a doll with rotating eyes, please refer to Figures 1 to 8Based on the previous technical solution, a further preferred technical solution is as follows: the eyelid assembly includes an upper eyelid body 12 and a lower eyelid body 13, which are detachably fixedly connected. The upper eyelid body 12 and the lower eyelid body 13 are rotatably mounted on both sides between the fixed shell 2 and the back shell 3. In this way, the upper eyelid body 12 and the lower eyelid body 13 are detachably fixedly connected to form a shell, which can enclose the eyeball assembly and allow the eyeball assembly to rotate freely within the body after the upper eyelid body 12 and the lower eyelid body 13 are fastened together. The upper eyelid body 12 and the lower eyelid body 13 are rotatably mounted on both sides between the back shell 3 and the fixed shell 2, so that the shell of the upper eyelid body 12 and the lower eyelid body 13 can be rotated backward or flipped forward, thereby correspondingly realizing the state of the upper eyelid rotating downward to close the eyelid, or realizing the state of the upper eyelid rotating upward to open the eyelid to open the eye. Of course, it can also be rotated to a half position to realize the state of half-open and half-closed eyes. These are all mechanical structures to realize manual opening and closing of the eyes and rotation of the eyeballs, so the hand feel is better, and the cost is low, the structure is simple and the operability is better. No electricity is used, and the player and children will not be electrocuted, and the safety factor is high. A further preferred technical solution based on the previous technical solution may also be: the rear parts of the upper eyelid body 12 and the lower eyelid body 13 are detachably fixed by a locking block 14 and a fixing block 15, the locking block 14 is arranged at the rear part of the upper eyelid body 12, the fixing block 15 is arranged at the rear part of the lower eyelid body 13, and a part of the locking block 14 covers the rear part of the fixing block 15. In this way, the upper eyelid body 12 and the lower eyelid body 13 are detachably fixed together by detachably fixing the locking block 14 and the fixing block 15. The locking block 14 and the fixing block 15 can both be fixed or integrally formed at the rear parts of the upper eyelid body 12 and the lower eyelid body 13. Of course, the positions of the locking block 14 and the fixing block 15 can also be swapped, that is, the locking block 14 is arranged at the rear part of the lower eyelid body 13, and the fixing block 15 is arranged at the rear part of the upper eyelid body 12. A further preferred technical solution based on the previous technical solution may also be: the locking block 14 and the fixing block 15 are detachably connected via an eyelid fixing screw. Specifically, the eyelid fixing screw passes through the locking block 14 and the fixing block 15 in sequence, securing the two together. This provides a more secure fixation, facilitates removal and installation, and facilitates subsequent maintenance and replacement. A further preferred technical solution based on the previous technical solution may also be: an alignment block 16 is provided on the upper eyelid body 12 or the lower eyelid body 13, the inner wall of which releasably abuts against the outer wall of the rear portion of the lower eyelid body 13 and the upper eyelid body 12.When installed in this way, the rear outer walls of the upper eyelid body 12 and the lower eyelid body 13 are against the alignment block 16, so that after the positions are aligned, the lower eyelid body 13 and the upper eyelid body 12 can be directly installed and detachably fixed together.
[0043] The utility model is a doll with rotating eyes, please refer to Figures 1 to 8Based on the previous technical solution, a further preferred technical solution is as follows: the two lower eyelid bodies 13 and the two upper eyelid bodies 12 are each provided with a lateral semi-axis 17 at the relatively farthest outer ends, and the two upper eyelid bodies 12 and the two lower eyelid bodies 13 are provided with a middle semi-axis 18 at the relatively closest inner ends. The lateral semi-axis 17 and the middle semi-axis 18 on the upper eyelid bodies 12 and the corresponding lower eyelid bodies 13 are connected to form a lateral rotation axis and a middle rotation axis, and the lateral rotation axis and the middle rotation axis are both rotatably disposed between the fixed shell 2 and the back shell 3. Because the dolls have two eyes, the two upper eyelid bodies 12 and the two lower eyelid bodies 13 are respectively provided. The upper eyelid body 12 and the lower eyelid body 13 on the left side constitute the left eyelid assembly, and the upper eyelid body 12 and the lower eyelid body 13 on the right side constitute the right eyelid assembly. The side semi-axes 17 on the outer sides of the upper eyelid body 12 and the lower eyelid body 13 corresponding to the same side constitute a side rotating shaft, and the middle semi-axes 18 on the inner sides of the upper eyelid body 12 and the lower eyelid body 13 corresponding to the same side form a middle rotating shaft. The side rotating shaft and the middle rotating shaft are loosely clamped by the fixed shell 2 and the back shell 3, and the side rotating shaft and the middle rotating shaft can be rotatably arranged between the back shell 3 and the fixed shell 2, so that when the eyelids are moved up and down by players or children, the eyelids are turned up to open the eyes, or the eyelids are dropped to close the eyes. Based on the above technical solution, a further preferred technical solution may be: a front side slot 20 and a front middle slot 21 are respectively provided on the left and right inner sides and the middle position of the fixed shell 2, a rear side slot 22 and a rear middle slot 23 are respectively provided on the left and right inner sides and the middle position of the back shell 3, the front side slot 20 and the rear side slot 22 are positioned correspondingly, the front middle slot 21 and the rear middle slot 23 are positioned correspondingly, the side rotating shafts are rotatably disposed in the side hole slots formed by the front side slots 20 and the rear side slots 22, and the middle rotating shafts are rotatably disposed in the middle hole slots formed by the front middle slots 21 and the rear middle slot 23. In this way, when the fixed shell 2 and the back shell 3 are detachably docked, the side rotating shafts are rotatably disposed in the side hole slots where the side rotating shafts and the middle rotating shafts are respectively engaged with the front side slots 20 and the rear side slots 22. The intermediate shaft is rotatably mounted within the intermediate slot between the front-center slot 21 and the rear-center slot 23. This allows the side shafts and the intermediate shaft to be rotatably secured between the fixed housing 2 and the back housing 3. A further preferred embodiment of the aforementioned technical solution is that the upper portion of the upper eyelid body 12 and the lower portion of the lower eyelid body 13 are provided with raised eyelid opening and closing stoppers 26, the front sides of which releasably engage raised rings 25 on the edges of the eye sockets 4 of the face housing 1.A circle of rearward-protruding raised rings 25 is provided around the eye socket hole 4 of the face shell 1. The function of the raised ring 25 is to facilitate the alignment of the fixed shell 2 and fix the two together, and to facilitate the rotation of the eyelid opening and closing limit block 26 to counteract it, thereby limiting the upward and downward flipping of the eyelid assembly or limiting the eyelid assembly to rotate back and forth to a set angle. After exceeding the angle range, the eyelid opening and closing limit block 26 is stuck on the edge around the eye socket hole 4 or the rear surface of the raised ring 25, thereby limiting the rotation angle of the eyelid assembly.
[0044] A doll of this utility model, please refer to Figures 1 to 8The relevant figures in the figure, in addition to the technical solution described above, may also include the aforementioned rotating eyes for the doll. Thus, the doll's eyes are mechanically rotatable. The face shell 1 provides a realistic and natural-looking face for the player or child to visually experience. The shape, size, and local convex and concave features of the face shell 1 correspond to the facial features of the doll. A rotatable eyeball assembly is rotatably disposed between the fixed shell 2 and the back shell 3, rotating between the fixed shell 2 and the back shell 3. Furthermore, because the front end of the rotatable eyeball assembly extends beyond the front surfaces of the fixed shell 2 and the face shell 1, the player or child can rotate the eyeball by directly manipulating the extended rotatable eyeball assembly. Furthermore, the rotatable eyeball assembly includes the eyeball assembly and the eyelid assembly. When the eyelid assembly is rotated downward or upward, the doll's eyes are visible through the eye sockets 4 of the face shell 1. When the eyelids are turned downward, the doll's eyes are closed, while when the eyelids are turned upward, the doll's eyes are open. The opening window 5 on the eyelid assembly is used to display the eyeball assembly and allows the player or child to push the eyeball assembly wrapped in the eyelid assembly through the opening window 5, thereby pushing or moving the eyeball assembly to rotate within the eyelid assembly. The eyeball assembly can be rotated upward, downward, left, right, or freely rotated at other angles to achieve the rotation of the doll's eyes. Therefore, the eyes can be opened and closed manually, and the left or right eyelid can be opened and closed and the eyeball rotated separately, or the left and right eyelids can be opened and closed and the left and right eyeballs can be rotated at the same time. The full name is a mechanical structure. All manual operations have a good feel and good controllability. There is no battery or circuit board, so children are prevented from being electrocuted when rotating the eyeball assembly, which improves the overall safety of the doll, is not easy to damage, and has a relatively low maintenance cost. Therefore, the advantages of the doll with rotating eyes of the present invention over the prior art are: a relatively simple structure, enabling children to quickly and easily open and close the eyes by themselves, and flexibly rotate the eyeballs in all directions and angles, good controllability, pure mechanical manufacturing with a good feel, not easy to damage, no need for electricity, and high safety.
[0045] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0046] The above examples of the present invention are described in detail. However, these are merely preferred embodiments of the present invention and should not be construed as limiting the scope of its implementation. Those skilled in the art will readily appreciate that other variations or modifications based on the above descriptions are possible. It is not necessary and impossible to provide an exhaustive list of all possible implementations. Obvious variations or modifications arising therefrom remain within the scope of protection of the present invention.
Claims
1. A doll with rotating eyes, characterized in that: include: A face shell, a fixed shell, a back shell and two rotatable eyeball assemblies, the fixed shell being detachably arranged between the face shell located in the front and the back shell located in the back, the rotatable eyeball assemblies located on the left and right sides being rotatably arranged between the fixed shell and the back shell, the front end of the rotatable eyeball assembly extending out of the fixed shell and the front surface of the face shell, the rotatable eyeball assembly comprising an eyelid assembly and an eyeball assembly, the eyeball assembly being rotatably arranged in the eyelid assembly, the eyelid assembly wrapping the eyeball assembly, two eye sockets being arranged at the eye position of the face shell, eye socket holes and opening windows being arranged at positions corresponding to the positions of the eye sockets of the fixed shell and the eyelid assembly, a portion of the eyeball assembly being exposed outside the opening window and the eye socket, and the two sides of the eyelid assembly being rotatably arranged between the fixed shell and the back shell.
2. The rotating eyes for a doll according to claim 1, characterized in that: The eyeball assembly includes an anterior eyeball, a pupil body and a posterior eyeball body. The pupil body is detachably arranged between the anterior eyeball body and the posterior eyeball body. The anterior eyeball body and the posterior eyeball body have corresponding shapes and sizes. A through hole is opened in the front part of the anterior eyeball body. The front surface of the pupil body passes through the front surface of the anterior eyeball body through the through hole. The outer walls of the anterior eyeball body and the posterior eyeball body are in releasable contact with the inner wall of the eyelid assembly.
3. The rotating eyes for a doll according to claim 2, characterized in that: The front surface of the pupil body is a curved surface.
4. The rotating eyes for a doll according to claim 3, characterized in that: The rear surface of the pupil body is a plane.
5. The rotating eyes for a doll according to claim 2, characterized in that: The front surface of the pupil body is a transparent body, and pupil and vitreous body pattern images or pattern objects are arranged behind the transparent body.
6. The rotating eyes for a doll according to claim 2, characterized in that: An elastic device is provided between the rear portion of the pupil body and the inner surface of the posterior eyeball.
7. The rotating eyes for a doll according to any one of claims 1 to 6, characterized in that: The eyelid assembly includes an upper eyelid body and a lower eyelid body, which are detachably fixedly connected. The upper eyelid body and the lower eyelid body can be rotatably mounted on the left and right sides between the fixed shell and the back shell.
8. The rotating eyes for a doll according to claim 7, characterized in that: The two lower eyelid bodies and the two upper eyelid bodies are each provided with a side semi-axis at the relatively farthest outer ends, and the two upper eyelid bodies and the two lower eyelid bodies are each provided with a middle semi-axis at the relatively closest inner ends. The side semi-axis and the middle semi-axis on the upper eyelid body and the corresponding lower eyelid body are connected to form a side rotating shaft and a middle rotating shaft, and the side rotating shaft and the middle rotating shaft can be rotatably set between the fixed shell and the back shell.
9. The rotating eyes for a doll according to claim 8, characterized in that: The left and right inner sides and the middle position of the fixed shell are respectively provided with a front card slot and a front middle card slot, and the left and right inner sides and the middle position of the back shell are respectively provided with a rear card slot and a rear middle card slot, the front card slot and the rear card slot are positioned correspondingly, the front middle card slot and the rear middle card slot are positioned correspondingly, the side rotating shaft can be rotatably set in the side hole slot formed by the front card slot and the rear card slot, and the middle rotating shaft can be rotatably set in the middle hole slot formed by the front middle card slot and the rear middle card slot.
10. The rotating eyes for a doll according to claim 7, characterized in that: The upper part of the upper eyelid body and the lower part of the lower eyelid body are provided with raised eyelid opening and closing limit blocks, and the front side of the eyelid opening and closing limit blocks is releasably abutted against the edge of the eye socket of the face shell or the raised circle provided on the rear wall of the eye socket.
11. A doll, characterized in that: The invention relates to a doll comprising the rotatable eyes according to any one of claims 1 to 6.