1. Field of the Invention
This innovation pertains to a hedge shear structure, especially to the new multidimensional architecture of the positioning switching mechanism of the extendable tube.
2. Description of Related Art
To accommodate different cutting span, generic hedge shears have an extendable and adjustable structure. Traditional hedge shears use eccentric rotating method to achieve the purpose of positioning and switchable adjustments. However, such operating method can cause slacks as user applies forces opposite to the rotating direction during operation causing deficiencies such as loosening and disengaging. Another legendary switching method is achievable by pushing the sliding positioning button, such method is preferable than the previous but involved continuous switching and sliding to achieve positioning and switchable adjustments is not ideal in terms of operation conveniences and requires future enhancements. On the other hand, the profile structure of the existing hedge shear is either circular or oval and is prone to physical deficiencies such as bending and deformation cause by structural strength issues after long operating durations.
Thus, how to develop an ideal and practical hedge shear extendable handle structure are the expectation of the users and the development goal of the industry.
To facilitate your honor, the patent examiner to have a further understanding and clarification on the purpose, characteristics and functionality of this innovation, please reference the listed figures with the detail descriptions as follow:
First, please reference illustrations in
An outer tube 10: One side of the outer tube is use for the integration with the handle 11 assembly (
An inner tube 20: One side of the H-shape profile structure inner tube is use to connect to the hedge shear blade 15 (
A core tube 30 is female joint on the perimeter of the outer tube 10 with a perforation slot 31 corresponding to the perforation 12 on the outer tube 10.
A sliding block 40 is sliding joint with the inner diffusion slot 21 on the inner tube 20 with axial and radial displacement allowance. On top of the sliding block 40 is a pillar 41 protruding through perforation slot 22, puncture 14, perforation 12 and perforation slot 31. A locating block 42 situated between the sliding block 40 and the pillar 41 and used to secure the outer 10 and inner tube 20 in a fix position when the sliding block 40 shifted upward and locked with the positioning fillisters 23 on the perforation slot 22 of the inner tube.
A press button 50 is installed on the top of the pillar 41 on the sliding block 40 by means of the binding post 51 located on the bottom.
A spring 60 is assembled between the press button 50 and the core tube 30 to push the press button 50 to an upward position with the sliding block 40 under normal condition. The core tube 30 also provides a protruding ring 32 on the perimeter of the perforation slot 31 to tightly fasten the spring 30 bottom. A fixing pivot 43 is located on the center of the sliding block 40 pillar 41 to form a fixing edge 52 with the binding post 51 on the bottom of the press button 50. A cotter block 53 is piercing radially through the press button 50, then the binding post 51. The cotter block stops at the bottom of the sliding block 40 fixing pivot 43 securing the press button 50 and sliding block 40.
The theory and operations of this innovation is describe as follow:
Please reference
Please further reference
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