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Improved structure of multiple segment hinge

A technique for improving structures and hinges, applied to pivot connections, building structures, hinged panels, etc., capable of solving problems that have not been specifically taught or revealed

Active Publication Date: 2016-04-20
FIRST DOME
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

None of these topics are specifically taught or revealed in the above references

Method used

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  • Improved structure of multiple segment hinge
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  • Improved structure of multiple segment hinge

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Experimental program
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Embodiment Construction

[0048] see figure 1 , figure 2 , the improved multi-section shaft structure of the present invention includes a combination of active joints, follower joints and torsion joints, which are represented by reference numerals 10, 70 and 100, respectively. The figure shows that the active joint group 10, the follower joint group 70 and the torsion joint group 100 respectively form a plurality or a plurality of plate body shapes, and jointly merge and combine a plurality of shaft pins to form a multi-joint shaft structure.

[0049] In order to facilitate the description of the connection relationship between the components, in the following related descriptions, the figure 2 The marked centerline or baseline (guideline) C is the reference position; the direction close to the baseline C is described as the "inward" direction, and the direction away from the baseline C is described as the "outward" direction.

[0050] figure 1 , figure 2 It depicts that the active joint group 1...

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Abstract

An improved multi-joint turning axle structure is provided and includes a driven joint assembly, a driving joint assembly and a torsion joint assembly. The driving joint assembly and the torsion joint assembly respectively include two opposing joint plates and at least one link unit connected therebetween. The driven joint assembly is disposed between the two opposing joint plates of one of the driving joint assembly and the torsion joint assembly, and includes at least two driven plates. The two driven plates have synchronous actuating portions at opposing ends thereof to form a synchronous motion. The inner ends of the joint plates of the driving joint assembly and the torsion joint assembly are respectively aligned with the outer ends of the driven plates. The outer ends of the link unit are aligned with the inner ends of the driven plates. Under a condtion that the opposing joint plates of the driving joint assembly and the torsion joint assembly have a torsion function, the opposing joint plates of the driving joint assembly and the torsion joint assembly can be turned smoothly through a plurality of turning centers.

Description

technical field [0001] The invention relates to an improved structure of a multi-section rotating shaft; in particular, it refers to a rotating shaft structure that can be combined with an electronic device to form a plurality of rotating shaft centers, which can improve the degree of freedom of rotation and enable the electronic device to have a torsion effect. In effect, turn to open or close more smoothly. Background technique [0002] The pivot or shaft that can rotate freely due to external force is used to assemble on electronic devices, such as mobile phones, notebook computers, PDAs, digital cameras, e-books, etc., so that the cover, display screen or view window can be rotated and has The opening and closing action is a prior art. For example, Chinese Taiwan Patents No. 97222022 "Rotating Shaft Structure", No. 96217011 "Pivot Positioning Member", and No. 98207366 "Pivot Structure" provide typical embodiments. [0003] Assuming that an electronic device such as a n...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F16C11/04
CPCH04M1/0216H04M1/022E05D7/1072G06F1/1681E05D3/06E05D3/122E05Y2999/00
Inventor 徐安赐戴伟翰林君翰
Owner FIRST DOME