The present invention relates to a socket holding frame assembly, and more particularly to a socket holding frame assembly that can hold a position and a direction of a socket securely.
With reference to
However, the conventional socket holding frame can only hold sockets having specific diameters, and the positions of the sockets cannot be changed or adjusted. Therefore, the conventional socket holding frame is not versatile and convenient in use.
With reference to
However, the holding bases 72 of the conventional socket holding frame are not rotatable relative to the track base 70. Therefore, after a socket is held on one of the holding bases 72, the direction of the socket is fixed and is not rotatable and adjustable. Thus, to check the dimension mark on the socket is inconvenient. In addition, the holding bases 72 cannot be held securely on the track base 70, so the holding bases 72 are easily moved unintentionally relative to the track base 70 when an external force is applied to the socket holding frame.
With reference to
However, the holding bases 82 can be held at predetermined positons and directions firmly, so the sockets on the holding bases 82 are easily moved or rotated unintentionally when an external force is applied to the socket holding frame. Therefore, the conventional socket holding frame is not convenient in use.
To overcome the shortcomings, the present invention tends to provide a socket holding frame assembly to mitigate or obviate the aforementioned problems.
The main objective of the invention is to provide a socket holding frame assembly that can hold sockets at fixed positions and in fixed directions securely.
The socket holding frame assembly has a track base, multiple holding bases, and multiple fasteners. The track base has a bottom panel, a track channel, and a connection portion. The track channel is defined in the bottom panel. The connection portion is formed through the bottom panel. The holding bases are mounted slidably and rotatably in the track channel in the track base. Each holding base has a connection hole defined in a bottom of the holding base. The fasteners are mounted through the connection portion in the bottom panel from a bottom surface of the bottom panel and are screwed respectively into the connection holes in the holding bases.
Other objects, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
The track base 10 is elongated, has an H-shaped cross section, and comprises a bottom panel 11 and two side panels 12. The side panels 12 are connected respectively with two sides of the bottom panel 11 to define a track channel 14 in the bottom panel 11 and between the bottom panel 11 and the side panels 12. The bottom panel 11 has a connection portion 16 formed through the bottom panel 11. In the first embodiment, the connection portion 16 is an elongated through hole.
The holding bases 20 are mounted slidably and rotatably in the track channel 14 in the track base 10 and comprise a bottom base 22 and a holding portion 24. The bottom base 22 may be a circular board and is mounted slidably and rotatably in the track channel 14 in the track base 10. The holding portion 24 is formed on and protrudes from a top surface of the bottom base 22 and is adapted to connect with a socket. Accordingly, sockets can be put on the track base 10 via the holding bases 20. In addition, each holding base 20 has a respective connection hole 26 defined in a bottom of the holding base 20.
The fasteners 30 are mounted through the connection portion 16 in the bottom panel 11 from a bottom surface of the bottom panel 11 and are screwed into the connection holes 26 in the holding bases 20 respectively. Accordingly, the holding bases 20 can be held in position securely by the fasteners 30. In the first embodiment, each fastener 30 is a self-tapping screw, and the connection holes 26 in the holding bases 20 are blind holes. In an alternative embodiment, each fastener 30 is a bolt, and the connection holes 26 in the holding bases 20 are threaded holes.
In use, with reference to
Because the holding bases 20 are securely held on the track base 10 by the fasteners 30, the positions and directions of the holding bases 20 will not be changed unintentionally even when an external force is applied to the socket holding frame assembly. Therefore, the use of the socket holding frame assembly is stable and convenient. To change the positions or directions of the holding bases 20 and the sockets 50, the fasteners 30 are released and the holding bases 20 can be moved or rotated relative to the track channel 14 in the track base 10. After the holding bases 20 are moved to desired positions or directions, the fasteners 30 are screwed into the connection holes 26 in the holding bases 20. Consequently, the positons and directions of the sockets 50 can be conveniently adjusted.
In practice, multiple sockets 50 having different sizes are mounted on the holding portions 24 of the holding bases 20 and are arranged along the track base 10 by size. Accordingly, the sockets 50 can be well classified on the track base 10 and are easily taken for use.
With reference to
With reference to
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 function of the invention, the disclosure is illustrative only, and changes may be made in detail, 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.