The present invention relates to a socket assembly including a control member which is rotatably mounted to the socket and allows the object engaged with the socket to quickly release from the socket.
A conventional socket generally includes a polygonal hole for accommodating the object such as a bolt head or a nut, the socket is driven by a hand tool so as to loosen the object from another object. However, when the bolt is threadedly connect to a board for example, and located in a deep position, when using the socket to loosen the bolt, the loosened bolt drops from the socket due to gravity and the user cannot retrieve the bolt conveniently. Some sockets are equipped with a spring ring which is engaged with the socket such that the loosened bolt can be retained in the socket. The bolt and the socket are then removed from the deep position and the bolt can be pulled out from the socket. Nevertheless, if the object is a nut which is completely received in the socket, the user cannot conveniently pick the nut out from the socket.
The present invention intends to provide a socket assembly which is cooperated with a control member which controls the path that the object is allowed to drop from the socket.
The present invention relates to a socket assembly that comprises a socket and a control member, wherein the socket includes an engaging hole in a first end thereof and a mounting hole in a second end of the socket. The mounting hole includes a plurality of insides and yield recesses located alternatively between the insides. A rail is defined in an outer periphery of the socket and shares an axis of the socket. A control member is rotatably mounted to the socket and has a through hole defined centrally therethrough. A plurality of stops extend inward from an inner periphery of the through hole. A ridge extends inward from an inner periphery thereof and the ridge is movably engaged with the rail. A polygonal object has sides and corners connected between the sides. A distance “B1” from an axis of the object to each one of the sides is not larger than a distance “A1” from an axis of the control member to each one of the stops of the control member. The distance “A1” is not larger than a distance “B2” from the axis of the object to each of the corners of the object and a distance “C2” from the axis of the socket to each of the yield recesses of the socket. A distance “B2” is not larger than a distance “A2” from the axis of the control member to the inner periphery of the through hole.
The primary object of the present invention is to provide a socket assembly which has a control member rotatably mounted thereto and the control member includes stops which are located at the path along which the object in the socket may drop. The stops are removed away from the path by rotating the control member so that the object in the socket can easily drop from the socket.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings which show, for purposes of illustration only, a preferred embodiment in accordance with the present invention.
Referring to
The control member 2 is rotatably mounted to the socket 1 and includes an operation section 21 and a function section 22. The function section 22 is a ring-shaped portion and the operation section 21 is connected axially to the function section 22. The function section 22 includes a through hole 220 defined centrally therethrough and a plurality of stops 221 extend inward from an inner periphery of the through hole 220. The stops 221 are made by resilient material so that the stops 221 can be deformed inward when mounting the socket 1 to the object 4. The control member 2 further includes a plurality of notches 223 defined in an inner periphery of the through hole 220 so that the bead 31 of the positioning unit 3 in the socket 1 is removably engaged with one of the notches 223 so as to position the control member 2 to the socket 1. A ridge 222 extends inward from an inner periphery thereof so as to be movably engaged with a rail 13 defined in an outer periphery of the socket 1, in this embodiment, the rail 13 is a groove. The rail 13 shares an axis of the socket 1.
The polygonal object 4 such as a nut includes six sides 41 and six corners 42 are connected between the sides 41. A distance “B1” from an axis of the object 4 to each one of the sides 41 is not larger than a distance “A1” from an axis of the control member 2 to each one of the stops 221 of the control member 2. The distance “A1” is not larger than a distance “B2” from the axis of the object 4 to each of the corners 42 of the object 4 and a distance “C2” from the axis of the socket 1 to each of the yield recesses 122 of the socket 1. A distance “B2” is not larger than a distance “A2” from the axis of the control member 2 to the inner periphery of the through hole 220.
Further referring to
The positioning unit 3 can be a one-piece unit such as a single spring or a single rod with a rounded end.
It is noted that the shape of the mounting hole 12 of the socket 1 can be any known shape such as the shapes shown in
While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.
Number | Date | Country | Kind |
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096211947 | Jul 2007 | TW | national |