Magnetofluid simulation eye for simulation product
By using magnetofluid to simulate eyes, the design utilizes a magnetic field to control the formation of the iris and sclera within a transparent container. This solves the problems of low realism and insufficient dynamic expression in the simulation of eyes in anthropomorphic products, enabling more creative dynamic changes and enhancing the product's appeal and emotional resonance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHONGQING MEISHENG TECH CO LTD
- Filing Date
- 2025-05-29
- Publication Date
- 2026-05-19
AI Technical Summary
Existing anthropomorphic products suffer from problems such as low realism, insufficient dynamic expression, and weak creativity in eye simulation.
A magnetofluid is used to simulate an eye, which includes a transparent container, a magnetic field generator, and a substrate. By controlling the magnetic field generator to generate a magnetic field, the magnetofluid forms a simulated iris, sclera, and pupil within the transparent container, achieving dynamic changes.
It enhances the dynamic expressiveness and creativity of anthropomorphic products, thereby increasing their appeal and emotional resonance.
Smart Images

Figure CN224252085U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to anthropomorphic products, particularly anthropomorphic toys, eye-shaped car headlights, simulated eyes for robots, sculptures, etc. Background Technology
[0002] The eyes are the windows to the soul, and various anthropomorphic products often express emotions by highlighting the eyes, even making static anthropomorphic subjects come alive.
[0003] Anthropomorphic eyes possess immense commercial and emotional value in the field of creative electronics. In recent years, specially designed electronic displays have frequently been used as the subject of these anthropomorphic designs; however, issues such as a lack of realism and a deficiency in humanistic considerations persist. In summary, current technologies for simulating eyes suffer from low realism, insufficient dynamic expression, and a lack of creativity. Summary of the Invention
[0004] The purpose of this utility model is to provide
[0005] A magnetofluid simulated eye for use in biomimetic products, characterized in that: the magnetofluid simulated eye includes a biomimetic eyeball, a substrate, and a magnetic field generating device.
[0006] The lifelike eyeball comprises a transparent container and a magnetic fluid within the transparent container.
[0007] The transparent container faces the viewer from the front and has a substrate at the back. The substrate has colored dots.
[0008] The magnetic field generating device is located behind the substrate.
[0009] When the magnetic field generator is powered on and generates a magnetic field, viewed from the front of the transparent container, the magnetic fluid inside the container forms a simulated iris, and the substrate outside the magnetic fluid forms a simulated sclera.
[0010] Furthermore, the substrate is a substrate plate located behind the transparent container, or a coating applied to the side of the transparent container facing away from the viewer.
[0011] Furthermore, the transparent container is filled with a transparent medium and nano-magnetic fluid.
[0012] Furthermore, the colored dots on the substrate are round dots and are located within the magnetic field range of the magnetic field generating device. When the magnetic field generating device is energized and generates a magnetic field, the simulated iris formed by the magnetofluid blocks the colored dots.
[0013] Furthermore, the magnetic field generating device is an electromagnet that generates a ring-shaped magnetic field distribution. When the magnetic field generating device is energized and generates a magnetic field, when viewed from the front of the transparent container, a cavity is formed in the middle of the magnetofluid inside the container, and this cavity is the simulated pupil of the eye.
[0014] Furthermore, the switching and intensity of the magnetic field generator are controlled by the control system.
[0015] Furthermore, one, two, or more magnetohydrodynamic (MHD) simulated eyes are installed on the same simulated product. A single control system is used to control the operation of the magnetic field generators of these MHD simulated eyes, or each MHD simulated eye uses an independent control system to control the operation of its magnetic field generator.
[0016] Furthermore, the anthropomorphic products include animal-shaped toys, eye-shaped car headlights, cartoon models, cartoon toys, robots, sculptures, statues, lifelike animal products, or lifelike...
[0017] People and products.
[0018] The technical effect of this invention is undeniable. The unique magnetostatic morphology characteristics of magnetofluids, under the influence of an electrically controlled magnetic field generator, can produce a lifelike expression that simulates the eye, with a highly creative dynamic flow effect. This can be used to enrich the agility of the eye, enhance product appeal, and bring more pleasure and emotional resonance to people's lives. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of this utility model;
[0020] Figure 2 Dynamic demonstration diagram of this utility model;
[0021] Figure 3 This is a physical image of Example 3;
[0022] Figure 4 This is an installation diagram for Example 3.
[0023] In the figure: an artificial eyeball (1), a transparent container (101), a simulated sclera (102), a simulated iris (103), a simulated pupil (104), a substrate (2), a color dot (201), a occluded color dot (s201), a magnetic field generating device (3), a control module (4), an ambient light (5), a speaker (6), an interface (7), an ear structure (8), a nose structure (9), and a shell (10). Detailed Implementation
[0024] The present invention will be further described below with reference to embodiments, but it should not be construed as the scope of the present invention being limited to the following embodiments. Various substitutions and modifications made based on ordinary technical knowledge and conventional methods in the art without departing from the above-described technical concept of the present invention should be included within the protection scope of the present invention.
[0025] Example 1:
[0026] See Figure 1 A magnetofluid simulated eye for a biomimetic product includes a biomimetic eyeball 1, a substrate, and a magnetic field generating device 3.
[0027] The simulated eyeball 1 includes a transparent container 101 and a magnetic fluid within the transparent container 101. In this embodiment, the transparent container 101 is filled with a transparent medium such as water or oil (with a certain amount of air allowed), and the magnetic fluid is inside the transparent medium and is influenced by the magnetic field generating device 3 (i.e., an electromagnet).
[0028] The transparent container 101 faces the viewer from the front and has a substrate at the back. The substrate is a substrate plate 2 or a coating formed by paint. In this embodiment, a white substrate plate 2 is provided at the back. The substrate plate 2 has colored dots 201. In this embodiment, the substrate plate 2 is a circular white cardboard attached to the back of the transparent container 101, and the colored dots 201 are black dots near the center of the white cardboard.
[0029] The magnetic field generating device 3 is located behind the substrate 2. In this embodiment, the magnetic field generating device 3 is an electromagnet controlled by a control system installed in the control module 4. The control system can control the on / off state of the electromagnet and the magnitude of the magnetic field.
[0030] like Figure 2 As shown in part (a), when the magnetic field generating device 3 is not powered on and does not generate a magnetic field, the substrate 2 and the colored dots 201 on it can be viewed from the front of the transparent container 101, thus avoiding the appearance of "white eyes".
[0031] like Figure 2 As shown in parts (b) and (c), when the magnetic field generator 3 is energized and produces...
[0032] When a magnetic field is generated, viewed from the front of the transparent container 101, the magnetic fluid inside the container is affected by the magnetic field and gathers in the middle of the transparent container 101. At this time, the gathered magnetic fluid forms a simulated iris 103, which is a simulated eye, and the substrate plate 2 on the outside of the magnetic fluid forms a simulated sclera 102, which is a simulated eye. Moreover, the gathered magnetic fluid at this time blocks the color dot 201 (as shown by s201 in the figure).
[0033] Example 2:
[0034] The main structure of this embodiment is the same as that of Embodiment 1, and further, as follows: Figure 2 Part (c) and Figure 3 As shown in part (e), the magnetic field generating device 3 is an electromagnet that generates a ring-shaped magnetic field distribution. When the magnetic field generating device 3 is energized and generates a magnetic field, when viewed from the front of the transparent container 101, a cavity is formed in the middle of the magnetic fluid inside the container, which is the simulated pupil 104 of the simulated eye.
[0035] It is worth noting that by controlling the strength of the magnetic field (which can be achieved by controlling the current / voltage of the electromagnet and the distance between the electromagnet and the magnetic fluid, etc.), changes in the morphology of the magnetic fluid can be realized. In the embodiments, the changes in the magnetic fluid can also be controlled by vibration and tactile pressure. These changes in the shape of the magnetic fluid make the simulated eye more dynamic and achieve a better visual experience.
[0036] In the embodiments, when two or more magnetic fluid simulated eyes are installed on the same simulated product, the same control system can be used to control the working state of the magnetic field generating device 3 of these magnetic fluid simulated eyes, so that the changes of the two or more magnetic fluid simulated eyes are more synchronized; or each magnetic fluid simulated eye can use an independent control system to control the working state of its magnetic field generating device 3, so that the changes of each magnetic fluid simulated eye are inconsistent, in order to achieve the needs of specific emotional expression, etc.
[0037] Example 3:
[0038] The main structure of this embodiment is the same as that of Embodiment 2. It is worth noting that the anthropomorphic products described in this utility model include animal-shaped toys, eye-shaped car headlights, cartoon models, cartoon toys, robots, sculptures, statues, and lifelike animal or human figures. For example, such as... Figure 3 As shown, the product is modeled after a cartoon panda. Figure 3 The eyes of the cartoon panda in the picture are simulated eyes for this utility model. For example... Figure 4 The two simulated eyes shown are installed in the same housing 10, and the same control system is used to control the working state of the magnetic field generating device 3 of the two simulated eyes, so that the magnetohydrodynamics inside the two simulated eyes can be generated. Figure 3 The pattern in part e. Furthermore, in this embodiment, the cartoon panda is a speaker product, internally equipped with an ambient light 5, a speaker 6, and an audio / video interface 7 on the casing. (And...) Figure 3 Similarly, this invention can also be applied to simulated eyes for robots, sculptures, etc., as well as eye-shaped car lights.
Claims
1. A magnetohydrodynamic simulated eye for use in biomimetic products, characterized in that: The magnetohydrodynamic simulated eye includes a realistic eyeball (1), a substrate, and a magnetic field generating device (3); The simulated eyeball (1) includes a transparent container (101) and a magnetic fluid inside the transparent container (101); The transparent container (101) faces the viewer from the front and has a substrate at the back; the substrate has colored dots (201); The magnetic field generating device (3) is located behind the substrate; When the magnetic field generating device (3) is powered on and generates a magnetic field, when viewed from the front of the transparent container (101), the magnetic fluid inside the container forms a simulated iris (103) of a simulated eye, and the substrate outside the magnetic fluid forms a simulated sclera (102) of a simulated eye.
2. The magnetohydrodynamic simulated eye for an object-like product according to claim 1, characterized in that: The substrate is a substrate plate (2) located behind the transparent container (101), or a coating applied to the side of the transparent container (101) facing away from the viewer.
3. A magnetofluid simulated eye for a biomimetic product according to claim 1, characterized in that: The transparent container (101) is filled with a transparent medium and nano-magnetic fluid.
4. A magnetofluid simulated eye for a biomimetic product according to claim 1, characterized in that: The color dots (201) on the substrate are round dots and are located within the magnetic field range of the magnetic field generating device (3); when the magnetic field generating device (3) is powered on and generates a magnetic field, the simulated iris (103) formed by the magnetic fluid blocks the color dots (201).
5. A magnetofluid simulated eye for a biomimetic product according to claim 1 or 3, characterized in that: The magnetic field generating device (3) is an electromagnet that generates a ring magnetic field distribution. When the magnetic field generating device (3) is energized and generates a magnetic field, when viewed from the front of the transparent container (101), a cavity is formed in the middle of the magnetic fluid in the container, which is the simulated pupil (104) of the simulated eye.
6. A magnetofluid simulated eye for a biomimetic product according to claim 5, characterized in that: The anthropomorphic products include animal-shaped toys, eye-shaped car lights, cartoon models, cartoon toys, robots, sculptures, statues, lifelike animal products, or lifelike human products.