1. Field of the Invention
The present invention relates to a hinge, especially to a hinge for a LCD whereby the LCD can be folded parallel to a base supporting the LCD.
2. Description of the Prior Arts
The rapid increase in popularity of LCD screens with computers has resulted in a corresponding demand for improvements in convenience of use of such screens. That is, the cathode ray had such size and weight it was virtually without variation in its position. The LCD screen opened up significant variations in positions of view. The LCD comprises a screen and a base. The conventional hinge is mounted between the screen and the base. The conventional hinge only can rotate the screen backward and forward to a small angle. The hinge keeps the screen standing upright. Then the contact surface of the upright screen is larger than that of a recumbent screen, and this will make the screen easily to be damaged when the contact surface is larger. Therefore when the LCD is shipping from a manufacturer to a retailer or moved from one desk to another, the screen is easy to be damaged.
To overcome the shortcomings, the present invention provides a hinge to mitigate or obviate the aforementioned problems.
The main object of the present invention is to provide a hinge that can be folded to 90 degrees. The hinge comprises a series of washer, a rotating device, a pivot shaft and a nut. The series of washer has multiple fixed spacers, two rotating spacers, a biasing device and a washer. The rotating device has a circular hole and two protrusions. The pivot shaft has a fixed shaft, a penetrating shaft and a thread.
Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
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With further reference to
Each fixed spacer (11) has a non-circular hole (111), an edge and a cut-out (112). The non-circular hole (111) is formed through each fixed spacer (11). The cut-out (112) is formed on the edge of each fixed spacer (11) and has a first end (113) and a second end (114). The cut-out (112) has a length.
Each rotating spacer (12) has a circular hole (121), an edge and a notch (122). The notch (122) is formed on the edge of each rotating spacer (12) and has a first end (123) and a second end (124). The notch (122) has a length. The length of the cut-out (112) of the fixed spacer (11) is longer than the length of the notch (122) of the rotating spacer (12).
The biasing device (13) has a circular hole (131) formed through the biasing device (13). The washer (14) has a non-circular hole (141) formed through the washer (14).
The rotating device (20) is an L-shaped pivot brake and has a distal end, a proximal end, a circular hole (21) and two protrusions (22). The proximal end is perpendicular to the distal end and has a first side and a second side. The circular hole (21) is formed through the proximal end. The protrusions (22) are formed respectively on the first side and the second side of the proximal end. The protrusions (22) are formed around the circular hole (21).
The pivot shaft (30) has a distal end, a proximal end, a fixed shaft (31), a penetrating shaft (32) and a thread (321). The fixed shaft (31) is formed on the distal end. The penetrating shaft (32) is formed on the proximal end and has a tip. The thread (321) is formed on the tip of the penetrating shaft (32).
When the series of washer (10) and the rotating device (20) are assembled, one of the fixed spacers (11) and one of the rotating spacers (12) are attached to the first side of the rotating device (20) and correspond to the circular hole (21) of the rotating device (20). One of the fixed spacers (11), one of the rotating spacers (12), the other fixed spacer (11), the biasing device (13) and the washer (14) are attached to the second side of the rotating device (20). The protrusions (22) extend into the respective cut-outs (112) and notches (122). Then the pivot shaft (30) is assembled with the series of washer (10) and the rotating device (20). The penetrating shaft (32) extends through the circular holes (121, 21, 131) of the rotating spacers (12), the rotating device (20) and the biasing device (13) and through the non-circular holes (111, 141) of the fixed spacers (11) and the washer (14). Then the nut (40) is screwed onto the thread (321) of the pivot shaft (30).
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With further reference to
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The hinge as described has a number of distinct advantages over a conventional hinge. The hinge can make the screen of the LCD to be folded to keep the screen (60) at a recumbent position. The contact surface of the recumbent screen is smaller than that of an upright screen, such that the recumbent screen (60) is not easily damaged when the LCD is shipping from a manufacturer to a retailer or moved from one desk to another. It is convenient for delivery of the LCD to fold the screen (60) to be parallel to the base (70). All components of the hinge are simple and easy to assemble.
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.