This non-provisional application claims priority under 35 U.S.C. ยง 119(a) on Patent Application No(s). 106134568 filed in Taiwan, R.O.C. on Oct. 6, 2017, the entire contents of which are hereby incorporated by reference.
The present invention relates to a clamping device and, more particularly, to a screw clamping device for clamping screws.
In general, machines, electronic apparatuses, and fittings are usually assembled and fixed in place by screws. However, screws being tightened or loosened with a screwdriver are likely to fall off the screwdriver for lack of physical connection between the screwdriver and each screw. Furthermore, it is difficult to tighten or loosen screws in limited operating space. Moreover, any screw detached and buried in a machine may damage the machine and thus cause enormous financial losses. Last but not least, physical connection between a screw and a magnetic screwdriver is improved, albeit insufficient, let alone unfit for use with screws made of non-magnetic materials, such as copper, aluminum and stainless steel. In attempt to improve the aforesaid prior art, screw clamping devices are developed to prevent screws from falling off while being tightened or loosened.
In attempt to prevent screws from falling off while being tightened or loosened, some conventional screw clamping devices feature a screwdriver with a tip made of a resilient material. The resilient screwdriver tip is of a special shape and is deformed as soon as the screwdriver is pressed downward under a force. The resilient screwdriver tip thus deformed clamps or releases a screw. However, the resilient screwdriver tip in operation is deformed too little to enable the screwdriver tip to come into contact with a screw. Furthermore, the deformed resilient screwdriver tip is of too low mechanical strength to clamp a screw tightly, thereby causing the screw to loosen. The other conventional screw clamping devices feature a movable mechanism for controlling a chuck to open and shut but have disadvantages as follows: inconvenient to use (because manual operation is required) and structurally complicated.
In view of the aforesaid drawbacks of the prior art, it is an objective of the present invention to provide a screw clamping device whereby screws are clamped to prevent the screws from falling off or even getting missing while being loosened or tightened.
Another objective of the present invention is to provide a screw clamping device coupled to a screwdriver by modularization to further broaden the application of the screw clamping device.
In order to achieve the above and other objectives, the present invention provides a screw clamping device which comprises a body, a pressing unit, a resilient unit, a clamping unit and a connecting unit. The body is a hollow-core cylinder, is subject to axial penetration of a screwdriver, and is movable axially in synchrony with rotation of the screwdriver. The pressing unit is pressed against the body and adapted to press against a surface of a working object. The resilient unit is disposed between the body and the pressing unit. The clamping unit is rotatably connected to the body. The connecting unit has one end connected to the pressing unit and the other end connected to the clamping unit. The connecting unit drives the clamping unit to rotate while the body is moving axially.
While a user is operating the screwdriver, the body is driven to move, whereas the connecting unit drives the clamping unit to rotate and thereby clamp or loosen the screws.
In an embodiment, the clamping unit comprises at least a clamping arm with an end in the form of a C-shaped object.
In an embodiment, an end of the pressing unit comprises an L-shaped object.
In an embodiment, an end of the body has a plurality of dents for receiving the pressing unit and the clamping unit.
In an embodiment, the body has an inner wall, and the screwdriver is in tight contact with the inner wall for fixing the body.
In an embodiment, the clamping arms are in the number of two and symmetrically arranged on the clamping unit, with the two C-shaped objects formed at the two clamping arms, respectively, obliquely in opposite directions.
According to another objective of the present invention, the present invention provides a screw clamping device which comprises a body, a fixing unit, a pressing unit, a resilient unit, a clamping unit and a connecting unit. The body is a hollow-core cylinder which is subject to axial penetration of a screwdriver. The fixing unit is connected to the body axially and fixed with the screwdriver, and the fixing unit is driven to press against the body to move axially when the screwdriver is rotating. The pressing unit presses against the body and is adapted to press against a surface of a working object. The resilient unit is disposed between the body and the pressing unit. The clamping unit is rotatably connected to the body. The connecting unit has one end connected to the pressing unit and another one end connected to the clamping unit. The connecting unit drives the clamping unit to rotate while the body is moving axially.
Thus, the screw clamping device uses the fixing unit to push the body to move axially. When the screwdriver is rotating, the screwdriver only driving the fixing unit to rotate, and the body, the pressing unit, the clamping unit and the connecting unit only move up and down. Therefore, the screw clamping device is more stable in the operation.
In an embodiment, the clamping unit comprises at least a clamping arm with an end in the form of a C-shaped object.
In an embodiment, an end of the pressing unit is an L-shaped object.
In an embodiment, an end of the body has a plurality of dents for receiving the pressing unit and the clamping unit.
In an embodiment, the fixing unit comprises a plurality of screws penetratingly disposed at the fixing unit to press against the screwdriver.
In an embodiment, the clamping arms are in the number of two and symmetrically arranged on the clamping unit, with the two C-shaped objects formed at the two clamping arms, respectively, wherein the two C-shaped objects are oblique in opposite directions.
Implementation of the present invention is hereunder illustrated by specific embodiments. Persons skilled in the art can easily understand other advantages and effects of the present invention by referring to the disclosure contained in the specification.
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Given the aforesaid technical features of the screw clamping device 1 of the present invention, the body 11, the resilient unit 14, the pressing unit 13, the connecting unit 16 and the clamping unit 15 each rotate together with the screwdriver 20. The screw clamping device 1 rotates about the screw 40 without collisions, because the screw 40 is located at the center of each of the two clamping units 15.
As mentioned before, the present invention dispenses with the fixing unit 12, thereby further simplifying the structure of the screw clamping device 1.
The above embodiments are illustrative of the features and effects of the present invention rather than restrictive of the scope of the substantial technical disclosure of the present invention. Persons skilled in the art may modify and alter the above embodiments without departing from the spirit and scope of the present invention. Therefore, the scope of the protection of rights of the present invention should be defined by the appended claims.
Number | Date | Country | Kind |
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106134568 A | Oct 2017 | TW | national |
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1424703 | Work | Aug 1922 | A |
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Number | Date | Country |
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1020160100481 | Aug 2016 | KR |
Entry |
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Robert L Norton, Design Of Machinery, 2012, McGraw-Hill, 5th edition, p. 401, section 8.0 (Year: 2012). |
Number | Date | Country | |
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20190105763 A1 | Apr 2019 | US |