1. Field of the Invention
The present invention relates to a retractable tube assembly and more particularly, to a positioning structure for a retractable tube assembly.
2. Description of the Related Art
A conventional retractable tube assembly is known comprising a retractable tube set and a rotary bottom block pivotally coupled to the retractable tube set for controlling the position of a tightening up member to lock or unlock the retractable tube set. The rotary bottom block has a hole accommodating a positioning member and a spring member. The positioning member has a rod onto which the spring member is sleeved. The spring member imparts an outward pressure to the positioning member to force the positioning member against the bottom wall of the retractable tube set so that the positioning member can be moved in and out of at least one recess in the bottom wall of the retractable tube set to lock or unlock the retractable tube assembly.
According to the aforesaid design, the spring member is sleeved onto the rod of the positioning member, and the spring force of the spring member is directly acted upon the bottom side of the positioning member. During operation, the positioning member may be tilted with the spring member and stuck in between the bottom wall of the retractable tube set and the top wall of the rotary bottom block, resulting in failure of the mechanism. Further, when rotating the rotary bottom block between the locking position and the unlocking position, a concentration of stress may be produced in the hole of the rotary bottom block, causing damage to the structure of the hole of the rotary bottom block. Damage of the structure of the hole of the rotary bottom block causes a positioning problem of the rotary bottom block in the retractable tube set.
The present invention has been accomplished under the circumstances in view. It is one objective of the present invention to provide a positioning structure for a retractable tube assembly, which is easy to operate and durable in use.
To achieve this objective of the present invention, the positioning structure for a retractable tube assembly having a retractable tube set and a rotary knob for locking the rotary knob to the retractable tube comprises a positioning member and a spring member. The retractable tube set has at least one recess in a bottom wall thereof. The rotary knob has a receiving hole and is pivotally coupled to the bottom wall of the retractable tube set and rotatable relative to the retractable tube set to aim the receiving hole at the recess. The positioning member is axially movably mounted in the receiving hole of the rotary knob, having a bottom hole. The spring member is disposed between the bottom hole of the positioning member and the receiving hole of the rotary knob for pushing the positioning member into the recess to further lock the rotary knob to the retractable tube set.
Referring to
The tube set 40 comprises an inner tube 41, and an outer tube 42 sleeved onto the inner tube 41 and axially movable along the inner tube 41. The outer tube 42 has the bottom end thereof mounted with a grip 43. The inner tube 41 has the bottom end thereof mounted with locating means (not shown) for controlling positioning of the outer tube 42 relative to the inner tube 41 so as to further change the length of the tube set 40. The grip 43 has a sector groove 46 and two semicircle recesses 48 in the bottom wall 45 thereof.
The rotary knob 50 has a top plane 52, a receiving hole 54 in the top plane 52, and a tubular split retaining bolt 56 upwardly extending from the center of the top plane 52. The tubular split retaining bolt 56 is pivotally coupled to the bottom wall 45 of the grip 43 and fixedly connected to the locating means at the inner tube 41, having a protruding portion 58 received in the sector groove 46 of the rotary knob 50. Rotating the rotary knob 50 causes rotation of the locating means at the inner tube 41 relative to the outer tube 42 to lock the outer tube 42 to the inner tube 41 or to unlock the outer tube 42 from the inner tube 41. As shown in
The positioning member 20 is a cylindrical member having a rounded top end at the top side of the cylindrical body 24 thereof and a cylindrical bottom hole 22 in the bottom end of the cylindrical body 24. The positioning member 20 is inserted into the receiving hole 54 of the rotary knob 50 and axially movable in the receiving hole 54.
The spring member 30 is a compression spring, having one end stopped at the inside wall of the receiving hole 54 of the rotary knob 50 and the other end stopped at the inside wall of the cylindrical bottom hole 22 of the positioning member 20. The spring member 30 imparts a pressure to the positioning member 20 toward the tube set 40. When turning the rotary knob 50, the positioning member 20 is movably stopped the top side thereof at the bottom wall 45 of the grip 43, and can be alternatively shifted between the semicircle recesses 48 in the bottom wall 45 of the grip 43 to lock the rotary knob 50 to the tube set 40.
Referring to
Number | Date | Country | Kind |
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94200862 | Jan 2005 | TW | national |