1. Field of the Invention
The invention relates to a telescopic tube or rod, in particular a telescopic tube and cam connecting and locking mechanism for a still camera or video camera tripod.
3. Description of the Related Art
Telescopic tube connecting and locking devices currently on the market for a still camera or video camera are usually either retaining pawl or nut and thread connecting and locking devices. When using such a telescopic tube for a tripod, the telescopic tube can only be extended or contracted by pulling open the retaining pawl or twisting open the nuts on each tube. The operations are rather elaborate. In addition, the telescopic tubes and nuts for such a tripod are rather complex to process, with a higher cost; the retaining pawls or nuts on each tube are rather large, making it inconvenient to store or carry a tripod.
In response to the above deficiency in the existing telescopic tubes for tripods, an object of the present invention is to provide a telescopic tube and cam connecting and locking mechanism that is smaller, easy and flexible to operate, at a lower cost.
According to the invention, a telescopic tube and cam connecting and locking mechanism includes more than two bushings. The diameters of the bushings are not equal. A first bushing with a smaller diameter is slid into and connected to the inside of a second bushing with a larger diameter, and they may slide and rotate relative to one another. The first and second bushings are connected and fastened to each other through a connecting and locking mechanism having an inner clamp bushing placed on one end of the second bushing and a cam device placed on one end of the first bushing. The inner diameter of the aforementioned inner clamp bushing is smaller than the outer diameter of the cam device; this prevents the first bushing from sliding inside the second bushing or rotating to a certain angle without becoming detached.
The aforementioned cam device includes a camshaft and an outer cam bushing. The diameter of the outer cam bushing can be enlarged by the rotating camshaft, so that the cam device can be pushed closely against the inner wall of the second bushing, thus connecting and fastening the first bushing to the second bushing.
According to a preferred embodiment, the aforementioned cam bushing comprises two opposed shells placed opposite each other on the outer surface of the camshaft.
According to a preferred embodiment, there are smooth surfaces or patterns on the outer surfaces of the cam shells.
According to a preferred embodiment, the camshaft of the aforementioned cam device is a blind tube structure with a central cavity. There is a plug in the hollow cavity of the camshaft.
According to a preferred embodiment, cylindrical nubs are provided on the inner clamp bushing and camshaft. The cylindrical nubs on the inner clamp bushing are adapted to holes on the second bushing. The cylindrical nubs on the camshaft are adapted to the holes on the first bushing, thus connecting and fastening the inner clamp bushing and the camshaft in adjacent bushings.
According to a preferred embodiment, a sliding guide rib is provided in the first bushing. There is a sliding guide groove on the camshaft. The guide rib is received in the guide groove, preventing rotation between the first bushing and the cam device when the first bushing rotates.
According to a preferred embodiment, the inner clamp bushing is replaced by an outer clamp bushing placed on one end of the second bushing. The minimum inner diameter of the outer clamp bushing is smaller than the outer diameter of the cam device.
According to a preferred embodiment, the camshaft has a threaded connection to the first bushing.
According to the invention, the diameter of the cam bushing can be enlarged by the rotating camshaft, so that the cam device can be pushed closely against the inner wall of the second bushing, thus connecting and fastening the first bushing to the second bushing. A plug is placed in the hollow cavity of the camshaft, which prevents the camshaft from becoming deformed if it is subject to too much force. The invention reduces the cost and size of a telescopic tube, makes its operations easier and more flexible and easier to store and carry, so that it is especially suitable for use on tripods for still cameras and video cameras.
As shown in
In the present embodiment, the cam device includes a camshaft 4 and an outer cam bushing 3. Outer cam bushing 3 comprises two cam shells. The two cam shells are placed opposite each other on the outer circumference of camshaft 4. There are tooth patterns or knurling on the outer surfaces of the two outer cam bushings. The diameter of outer cam shells 3 can be enlarged by rotating camshaft 4, so that the cam device can be pushed closely against the inner wall of the bushing 1 with a larger diameter, thus connecting and fastening the bushing 6 with a smaller diameter 6 to the bushing with a larger diameter 1. The camshaft 4 is a blind tube structure with a central cavity which receives a plug 5.
In the present embodiment, cylindrical nubs 22, 42 are provided on the inner clamp bushing 2 and camshaft 4, respectively. The cylindrical nubs 22 of inner clamp bushing 2 are adapted to engage the holes 12 provided on the bushing 1 thus connecting and fastening inner clamp bushing 2 to the larger bushing 1. The cylindrical nubs 42 of camshaft 4 are adapted to engage the holes 62 provided on the bushing 6, thus connecting and fastening camshaft 4 to the smaller bushing 6. All nubs 22, 42 have axially facing ramped surfaces to facilitate entry into the corresponding bushing. Sliding guide ribs 7, 8 are provided on the inner walls of respective bushings 1, 6. Sliding guide grooves 31, 41 are provided on bushing shells 3 and camshaft 4 of the cam device. Sliding guide ribs 7 are adapted to sliding guide grooves 31 on shells 3, and sliding guide ribs 8 are adapted to sliding guide grooves 41 on camshaft 4, so that camshaft 4 can move along sliding guide ribs 7, 8 of the bushings and can also rotate by rotating the smaller bushing 6 to expand the shells 3 against the bushing 1, thus achieving the connecting, fastening and locking of the large and small bushings by the cam connecting and locking mechanism.
According to a second embodiment, shown in
According to a fourth embodiment, shown in
According to a fourth embodiment, shown in
Number | Date | Country | Kind |
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200820047222.9 | Apr 2008 | CN | national |