1. Field of the Invention
The present invention relates to a curved surface actuating mechanism, and more particularly to an actuating mechanism, applicable for opening and closing or controlling the rotating angle of eyelids for a doll.
2. Description of Related Art
As the mass has increasingly quickened their pace in the society, great intangible pressure is accumulated day by day, so most of people feel excessively psychological pressure and thus gradually turn to poor health. Therefore, people hope to express their mood through the interaction with a doll or through the doll itself, thereby partially relieving the psychological pressure. Although there are numerous dolls available in the current market, the dolls cannot fully express people's feelings, for example, sometimes the facial expression is too stiff, and sometimes the expression styles are not abundant enough.
Referring to
In view of the above, the present invention is directed to a drive structure capable of driving two eyelids of a doll to make opening and closing motions at any angle independently, and also driving the eyelids to rotate at any angle.
In order to solve the above problem, the technical means provided by the present invention is to provide a curved surface actuating mechanism, capable of making moving or rotating motions. The actuating mechanism includes: a main shaft; a first drive unit, having a first drive wheel fitted on the main shaft and independently rotating on the main shaft and a first driving member; a second drive unit, having a second drive wheel fitted on the main shaft and independently rotating on the main shaft and a second driving member for driving the second drive wheel; a sleeve, fitted on the main shaft between the first drive wheel and the second drive wheel, independently rotating on the main shaft, and having a vertical split shaft; a third drive unit, having a third drive wheel fitted on the vertical split shaft and engaged with the first drive wheel and the second drive wheel at the same time; a curved surface having a link lever fixed to the third drive wheel. Therefore, if the first drive wheel and the second drive wheel rotate at the same time in the same direction, the third drive wheel is restrained by the first drive wheel and the second drive wheel to make the gear set operations along the axle center of the first drive wheel and the second drive wheel, thereby achieving the motions of opening or closing the curved surface (i.e., the eyelids of the doll). In order to rotate the curved surface in situ, the first drive wheel and the second drive wheel are made to rotate at the same time in opposite directions, such that the third drive wheel rotates around its own axial line and then drives the curved surface to rotate by a certain angle.
In order to solve the above problem, another technical means provided by the present invention is to provide a curved surface actuating mechanism, capable of making moving or rotating motions. The actuating mechanism includes a first drive unit, a second drive unit, a third drive unit, and a curved surface of an upper eyelid. The first drive unit has a first drive wheel and a first driving member. The second drive unit has a second drive wheel and a second driving member. The second drive wheel is co-axial with the first drive wheel. The third drive unit has a pair of third drive wheels serially connected by a shaft lever. The third drive wheel is engaged with the first drive wheel and the second drive wheel at the same time. The curved surface is fixed to the third drive wheel by using the link lever. Therefore, if the first drive wheel and the second drive wheel rotate at the same time in the same direction, the third drive wheel is restrained by the first drive wheel and the second drive wheel to rotate along the axle center of the first drive wheel and the second drive wheel, thereby making motions of opening or closing the curved surface. In order to rotate the curved surface in situ, the first drive wheel and the second drive wheel are made to rotate at the same time in opposite directions, such that the third drive wheel rotates around its own axial line and then drives the curved surface to rotate at a certain angle.
In the present invention, the first drive wheel, the second drive wheel, and the third drive wheel may all be gears or friction wheels. The third drive unit may operate around the axle center of the first drive wheel and the second drive wheel to form a gear set.
The efficacies achieved by the present invention lie in that, in the eyelid structure of the present invention, the eyes are moved independently, and the left and right eyes of the doll are respectively designed as an independent set, i.e., the motions of one eye may be controlled independently. Furthermore, the eyelid structure of the present invention has a two-dimensional orientation, which is capable of controlling complicated moving and rotating motions precisely and accurately, thereby enhancing the interpretive ability of the expressions of the doll.
In order to make the aforementioned and other objects, features and advantages of the present invention comprehensible, embodiments accompanied with figures are described in detail below.
It is to be understood that both the foregoing general description and the following detailed description are exemplary, and are intended to provide further explanation of the invention as claimed.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
The preferred embodiments of the present invention are illustrated below with reference to the accompanied drawings.
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In the structure of the aforementioned embodiment, the first drive wheel 311 is pivoted to the fixed first shaft 30, the second drive wheel 321 is pivoted to the fixed second shaft 301, and the pair of third drive wheels 331 are engaged with the first drive wheel 311 and the second drive wheel 321 up and down, so as to form a gear set. When the first drive wheel 211 and the second drive wheel 221 rotate in the same direction, the first drive wheel 311 and the second drive wheel 321 restrain the third drive wheel 331, so that the third drive wheel 331 cannot rotate around its own axial line, but rotate around the axle center of the first shaft 30 and the second shaft 301 as a whole. Therefore, the curved surface 34 connected to the third drive wheel 331 also moves and rotates around the same axle center, thereby achieving the motions of opening and closing an eyelid. In addition, when the first drive wheel 311 and the second drive wheel 321 rotate in opposite directions, the restrained third drive wheel 331 rotates around its own axial line in situ.
Therefore, the curved surface 34 connected to the third drive wheel 331 also rotates around its own axial line in situ, and thus, such a motion may simulate a tilt angle formed by the eyelid when an eyebrow is raised upwards or lowered downwards.
As shown in
Each of the aforementioned embodiments of the present invention may be mounted in an eye region of a doll, and in each eye, the eyelid is formed by the curved surface controlled by the curved surface actuating mechanism, and then the motions of the eyelid is controlled thereby.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the present invention cover modifications and variations of this invention provided they fall within the scope of the following claims and their equivalents.
Number | Date | Country | Kind |
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096141127 | Nov 2007 | TW | national |