Shock isolation device with orthogonal guide rails, and design method thereof

A design method and rail-type technology, applied in the direction of shock absorbers, mechanical equipment, springs/shock absorbers, etc., can solve the problem of overturning of shock isolation devices

Pending Publication Date: 2019-11-29
四川省龙丹纳科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The purpose of the present invention is to provide an orthogonal guide rail type shock isolation device, which solves the problem that the shock isolation device overturns due to the center of gravity of the upper plate exceeding the range of the lower plate when the upper plate and the lower plate of the shock isolation device are dislocated.

Method used

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  • Shock isolation device with orthogonal guide rails, and design method thereof
  • Shock isolation device with orthogonal guide rails, and design method thereof
  • Shock isolation device with orthogonal guide rails, and design method thereof

Examples

Experimental program
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Effect test

Embodiment 1

[0085] This embodiment is realized through the following technical solutions: an orthogonal guide rail type shock-isolating device, including two shock-isolating plates arranged up and down on the upper plate 100 and the lower plate 200 and a set of shock-isolating plates arranged between the two shock-isolating plates The vibration isolation assembly includes two linear guide rails, a slider, and four return spring assemblies.

[0086] The two linear guides are A# linear guide and B# linear guide respectively;

[0087] One slider is A# slider;

[0088] The four return spring assemblies are respectively A# return spring assembly, B# return spring assembly, C# return spring assembly, and D# return spring assembly.

[0089] The shock-isolation plate is a homogeneous square plate, and the square mounting surface of the shock-isolation plate has two non-diagonal central axes: P central axis and Q central axis.

[0090] The upper plate 100 is fixedly installed with the A# linear ...

Embodiment 2

[0105] This embodiment is optimized on the basis of embodiment 1, such as Figure 1-Figure 8 As shown, a kind of orthogonal rail-type shock isolation device includes two shock-isolation plates arranged up and down on the upper plate 100 and the lower plate 200 and a set of shock-isolation components arranged between the two shock-isolation plates. The shock assembly includes four linear guide rails, four sliders, and eight return spring assemblies.

[0106] The four linear guide rails are I# linear guide rail 3101, II# linear guide rail 3102, III# linear guide rail 3103, and IV# linear guide rail 3104;

[0107] Four slide blocks are respectively I# slide block 3201, II# slide block 3202, III# slide block 3203, IV# slide block 3204;

[0108] The eight return spring assemblies are respectively I# return spring assembly 3301, II# return spring assembly 3302, III# return spring assembly 3303, IV# return spring assembly 3304, V# return spring assembly 3305, VI# return spring assem...

Embodiment 3

[0151] An orthogonal guide rail-type shock isolation device, comprising two shock-isolation plates, an upper plate 100 and a lower plate 200, a set of shock-isolation components arranged between the two shock-isolation plates, and a braking device connecting the two shock-isolation plates. 400; the shock-isolation assembly is composed of two sets of linear guide rail assemblies 310, one set of sliding seats 320, and two sets of reset connectors 330.

[0152] A group of linear guide rail assemblies 310 are installed on a vibration isolation plate to form a vibration isolation plate assembly, the vibration isolation plate is the upper plate 100, the vibration isolation plate assembly is the upper vibration isolation plate assembly, and the vibration isolation plate is the vibration isolation plate assembly of the lower plate 200 It is the lower shock-absorbing plate assembly, and two sets of linear guide rail assemblies 310 installed on the two shock-absorbing flat plates are arr...

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Abstract

The invention discloses a shock isolation device with orthogonal guide rails. The shock isolation device with the orthogonal guide rails comprises an upper plate, a lower plate, two shock isolation flat plates arranged at the top and the bottom, and a shock isolation assembly, wherein the shock isolation assembly comprises two groups of linear guide rail assemblies, a group of slide seats, and twogroups of return connection elements; the two groups of linear guide rail assemblies installed on the two shock isolation flat plates separately are orthogonally arranged; one slide seat is connectedwith the two groups of linear guide rail assemblies at the top and the bottom simultaneously, and connected with floating ends of the two groups of return connection elements simultaneously, and fixed ends away from a slide assembly, of the two groups of return connection elements, are installed on two shock isolation plate assemblies separately; and in a normal working state, the shock isolationassembly limits the gravity center of each shock isolation flat plate to be always located in an area where the two shock isolation flat plates are mutually superposed. According to the shock isolation device with the orthogonal guide rails, the overall anti-overturning capacity of the shock isolation device is improved; and the shock isolation device with a new structure can be independently used.

Description

technical field [0001] The invention relates to the field of shock isolation technology, in particular to an orthogonal guide rail type shock isolation device and a design method thereof. Background technique [0002] Earthquakes are becoming more and more frequent, and my country is one of the countries most seriously threatened by earthquake disasters. The country's most important weapon, disaster prevention first. In order to effectively protect the earthquake safety of important equipment and materials in all walks of life in areas threatened by earthquakes in our country, we need to take scientific and effective earthquake protection measures. Therefore, in order to improve the anti-seismic performance of precision equipment or important cultural relics, it is very necessary to take effective anti-seismic measures and protection to improve the safety factor of disaster prevention. [0003] With the development of shock absorption and isolation technology at home and a...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F16F15/02F16F15/04F16F7/00
CPCF16F7/00F16F15/022F16F15/04
Inventor 高梧李元杰刘兢兢潘宇鑫蒋欧龙超然
Owner 四川省龙丹纳科技有限公司
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