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Sleeve built-in spring type guide rail type three-directional vibration control method

A built-in spring and rail-type technology, which is applied in the field of mechanical vibration, can solve problems such as easy toppling and damage, and achieve the effect of improving service life and reducing damage

Active Publication Date: 2016-11-16
国机集团科学技术研究院有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] In view of the deficiencies in the prior art, the purpose of the present invention is to provide a three-way vibration control method with a spring inside the sleeve and a guide rail type, which can effectively improve the problems that objects are easily dumped and damaged due to earthquakes or other vibrations.

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  • Sleeve built-in spring type guide rail type three-directional vibration control method

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Embodiment Construction

[0025] Below, in conjunction with accompanying drawing and specific embodiment, the present invention is described further:

[0026] figure 1 It is a structural schematic diagram of a sleeve built-in spring type guide rail type three-way vibration control method disclosed in the embodiment of the present invention;

[0027] A three-way vibration control structure of a spring-type guide rail with a built-in sleeve includes a horizontal two-way mechanical guide rail vibration-damping bearing platform structure, a vertical bearing platform plate 07 and a plurality of sleeve-built-in steel spring structures, and a horizontal two-way mechanical guide rail vibration-damping bearing platform The structure includes two layers of horizontal X-direction platform 01 and horizontal Y-direction platform 04 that are perpendicular to each other. The horizontal X-direction rail fastener 02 is set on the lower surface of the horizontal X-direction platform 01, and the horizontal X-direction ra...

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Abstract

The invention discloses a sleeve built-in spring type guide rail type three-directional vibration control method. The method comprises the steps that a large-stroke high-energy-consumption shock absorption structure with a three-directional low-pass filtering function is formed by a horizontal bidirectional mechanical guide rail shock absorption bearing table structure and a plurality of sleeve built-in steel spring structures; the horizontal bidirectional mechanical guide rail shock absorption bearing table structure enables a horizontal X-direction bearing table plate and a horizontal Y-direction bearing table plate to freely slide in the direction X and the direction Y through two stages of bearing table plate structures comprising the horizontal X-direction bearing table plate and the horizontal Y-direction bearing table plate which are perpendicular to each other and a connecting manner that horizontal guide rails and horizontal guide rail connecting fasteners are adopted between the two stages of bearing table plate structures; and an inner ring sleeve structure and an outer ring sleeve structure in each sleeve built-in steel spring structure deform through a vertical built-in shock absorption spring with the two ends fixedly connected with the inner top end of the inner ring sleeve structure and the inner bottom end of the outer ring sleeve structure correspondingly to achieve vertical mutual movement. According to the sleeve built-in spring type guide rail type three-directional vibration control method, the problem that articles are prone to toppling over and being damaged due to earthquakes or other vibration can be solved.

Description

technical field [0001] The invention belongs to the field of mechanical vibration, and in particular relates to a three-way vibration control method of a sleeve built-in spring type guide rail type. Background technique [0002] At present, most of the following methods are used to solve the problem of objects being easily dumped and damaged by earthquakes or other vibrations in vibration control projects such as cultural relics display, article exhibition, fragile article placement, and industrial equipment placement: 1) Adopt Large pieces of concrete are used as the foundation; 2) Lightweight display cabinets are used to fix vulnerable products in the display cabinets; 3) Two-dimensional vibration-reducing (shock) bearing platform structures are used; 4) Vertically supported shock absorbers are used . These design schemes play a very limited role in protecting the displayed items under the actual strong vibration (seismic) action. These schemes have the following defects...

Claims

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Application Information

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IPC IPC(8): F16F15/20
CPCF16F15/20
Inventor 徐建张同亿胡明祎黄伟曹雪生黄尽才张松石诚
Owner 国机集团科学技术研究院有限公司