Self-centering assembly member
A self-centering and component-based technology, which is applied to building components, building structures, walls, etc., can solve the problems of low construction efficiency and achieve the effect of improving construction efficiency and facilitating local adjustment and repair
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Embodiment 1
[0029] Such as figure 2 As shown in -6, the embodiment of the present invention provides a self-centering assembly member, including: a first panel 01, a second panel 02, and an eccentric shaft assembly 03; The hook portion 011 of the first panel is provided with a through threaded hole 12 along the thickness direction of the first panel; one end of the second panel 02 is fixedly connected with the end of the first panel 01 away from the hook portion 011, and is connected with the second panel 01. A panel 01 together forms a right angle; a through hole 21 is opened along the thickness direction of the second panel 02; an eccentric axial component 03 is passed through the through hole 21 and is fixedly connected with the second panel 02, including An outer bushing 31 and an inner bushing 32 , the inner bushing 32 is provided with an internal thread, and a radial telescopic member 33 is connected between the inner bushing 32 and the outer bushing 31 .
[0030] Both the first p...
Embodiment 2
[0041] Such as Figure 7 , Figure 8 As shown, the difference from the first embodiment above lies in the structural form of the eccentric axial assembly. The radially telescopic member 33 of the eccentric axial assembly includes at least three springs, and one end of the spring is hinged on the inner sleeve. 32, the other end of the spring is hinged on the inner wall of the outer sleeve 31; all the springs are uniformly distributed along the circumference of the outer sleeve 31 or the inner sleeve 32. The performance parameters of the spring can be selected according to the specific use conditions. The spring is preferably a column spring, and the expansion and contraction deformation of the spring provides a moving space for the inner sleeve 32 in the radial direction.
Embodiment 3
[0043] see Figure 6b , on the basis of the first and second embodiments above, in order to improve the axial stability of the eccentric shaft assembly 3, a plurality of Rib 36.
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