1. Field of the Invention
The present invention relates to bracket designs for fastening to support frames in a cabinet of a machine to support a sliding rail and more particularly, to a bracket assembly, which is adjustable to fit different configurations of mounting through holes of different design of support frames.
2. Description of the Related Art
Brackets are commonly used for mounting in a cabinet of a machine to support sliding rails. In order to facilitate bracket dismounting without tools, brackets for this purpose are configured to provide mounting posts that can be detachably fastened to respective mounting through holes of mating support frames in a cabinet of a machine. However, because the mounting through holes of different designs of support frames from different manufacturers have different configurations, different brackets with different configurations of mounting posts should be selectively used. Brackets with multi-segment mounting posts are created. The multi-segment mounting posts can be into different configurations of mounting through holes to force different segments thereof into friction engagement with different configurations of mounting through holes. However, due to insufficient bearing surface area between the respective segments of the multi-segment mounting posts and the respective mounting through holes, the brackets are less stable after installation.
The present invention has been accomplished under the circumstances in view. It is therefore the main object of the present invention to provide a bracelet assembly, which is adjustable to fit different configurations of mounting through holes of different designs of support frames.
To achieve this and other objects of the present invention, a bracket assembly comprises a bracket and a positioning mechanism. The bracket comprises a base frame. The positioning mechanism comprises a fixed block unit and a movable block unit. The fixed block unit comprises a locating block fixedly mounted on the base frame of the bracket and defining a front side and a back side opposite to the front side, and a plurality of first mounting posts respectively extended from the front side of the locating block in a parallel manner. The movable block unit comprises a base block coupled to the locating block and axially movable relative to the locating block between a forward position and a backward position, and a plurality of second mounting posts respectively extended from the base block and respectively disposed in axial alignment with the first mounting posts and insertable through the back side and front side of the locating block of the fixed block unit to surround the respective first mounting posts. The first mounting posts and the second mounting posts have different cross sections. When the base block of the movable block unit of the positioning mechanism is moved to the forward position, the second mounting posts are extended out of the front side of the locating block around the respective first mounting posts and protruded over respective distal ends of the respective first mounting posts. On the contrary, when the base block of the movable block unit of the positioning mechanism is moved to from the forward position to the backward position, the second mounting posts are received inside the locating block to let the first mounting posts be exposed outside the locating block and the movable block unit for mounting. Thus, the user can selectively use the first mounting posts or the second mounting posts for fastening the bracket assembly to different configurations of mounting through holes of different designs of support frames.
Referring to
The bracket 1 comprises a base frame 11, and at least one, for example, two hook members 12 bilaterally extended from one end of the base frame 11.
The positioning mechanism 2 comprises a fixed block unit 21 and a movable block unit 22. The fixed block unit 21 comprises a locating block 211 fixedly mounted on one end of a top wall of the base frame 11 of the bracket 1, and a plurality of first mounting posts 212 extended from one side, namely, the front side of the locating block 211 in a parallel manner. The movable block unit 22 comprises a base block 221, two second mounting posts 222 located at two opposite sides of the base block 221 and respectively disposed in axial alignment with the first mounting posts 212. The base block 221 is connected to an opposite side, namely, the back side of the locating block 211. The locating block 211 comprises two insertion slots 2111 adapted for receiving the respective second mounting posts 222. The second mounting posts 222 are hollow posts. The insertion slots 2111 and the second mounting posts 222 have the same cross section so that the second mounting posts 222 can be inserted through the locating block 211 to surround the respective first mounting posts 212. Further, the first mounting posts 212 and the second mounting posts 222 have different outer configurations. In this embodiment, the first mounting posts 212 are round posts. The second mounting post 222 are hollow rectangular posts. The fixed block unit 21 further comprises two guide rods 213 extended from the back side of the locating block 211 and respectively in axial alignment with the first mounting posts 212, and a position-limiting post 214 extended from the back side of the locating block 211 and equally spaced between the two guide rods 213 in a parallel manner. The bracket assembly further comprises two spring members 23 respectively mounted around the guide rods 213 and positioned in the respective second mounting posts 222 with respective opposite ends thereof respectively stopped against the locating block 211 and respective inside walls of the second mounting posts 222, and a constraint member 24 pivotally connected to the position-limiting post 214 to let the base block 221 of the movable block unit 22 be disposed between the constraint member 24 and the locating block 211. The base block 221 of the movable block unit 22 comprises an accommodation open chamber 2211 adjacent to the position-limiting post 214 for accommodating the constraint member 24, and two stopper protrusions 2212 respectively disposed at opposing top and bottom sides relative to the accommodation open chamber 2211 for stopping against the constraint member 24.
Referring to
Referring to
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