Design method of multi-functional variable-parameter viscous damper and damper

A viscous damper and design method technology, applied in the field of vibration reduction, can solve the problems of slow growth of damping force, temperature-induced stress concentration of long-span bridges, limited increase of damping force, etc., to achieve simple installation and later maintenance, avoid temperature The effect of causing stress concentration and reducing the purchase cost of equipment

Active Publication Date: 2017-06-13
中铁桥研科技有限公司 +2
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  • Abstract
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  • Application Information

AI Technical Summary

Problems solved by technology

A viscous damper with a small speed index will generate a large damping force at an extremely low speed. Taking the speed index of piston movement as 0.1 as an example, when the damping valve speed of the viscous damper is V=0.005V max , the damping force F corresponding to the viscous damper D =0.5887F D max , where V max and F D max are the maximum speed and maximum damping force of the viscous damper damper valve respectively. Under the action of strong temperature difference, long-span bridges are prone to strong nonlinear time-varying temperature difference effects, resulting in serious temperature-induced stress in the structure of long-span bridges Concentration and temperature-induced deformation cause serious structural damage; viscous dampers with small velocity exponents have a limited increase in damping force when the damping valve speed is high, which is not conducive to improving the seismic performance of the structure under strong earthquakes
If a viscous damper with a large velocity index is selected, the damping force increases slowly at low speeds, and the bridge may have a large displacement under the action of vehicle braking and slight wind vibration, resulting in viscous damping Structural components such as devices and expansion joints are prone to fatigue damage
It can be seen that the applicable scenarios of traditional fixed-parameter viscous dampers are relatively single. Generally, multiple viscous dampers of different specifications are used in cable-stayed bridges to solve the above problems. For example, Wuhan Tianxingzhou road-rail cable-stayed bridge Dual combined dampers are used. On the one hand, twelve 40-ton magneto-rheological dampers are used in the longitudinal direction of the bridge to limit the small vibration caused by braking. On the other hand, large-scale dampers with a maximum output of 200 tons are used to control the future earthquake and other loads of the main bridge. drift, which will inevitably increase the difficulty of construction and installation and the cost of the project

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  • Design method of multi-functional variable-parameter viscous damper and damper
  • Design method of multi-functional variable-parameter viscous damper and damper
  • Design method of multi-functional variable-parameter viscous damper and damper

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Embodiment Construction

[0048] The present invention will be described in further detail below in conjunction with the accompanying drawings and embodiments.

[0049] The embodiment of the present invention provides a design method of a variable parameter multifunctional viscous damper, according to the damping coefficient C of the viscous damper i with velocity exponent α i As the velocity V of the damping valve changes, the constitutive relation curve of the viscous damper is divided into several stages, and the arc-shaped surface of the damping valve in the viscous damper is designed according to the constitutive relation curve. Specific steps are as follows:

[0050] S1, according to the damping coefficient C of the viscous damper i with velocity exponent α i With the change of the damping valve speed V, the damping force of the viscous damper is expressed as a piecewise function as Formula I as follows:

[0051]

[0052] The three-section curved surface of the damper valve in the viscous ...

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Abstract

The invention discloses a design method of a multi-functional variable-parameter viscous damper and the damper, and relates to the technical field of shock absorbing. The design method of the multi-functional variable-parameter viscous damper includes the steps that according to the damping factor C I and the speed factor alpha I, varying with the change of the speed V of a damper valve, of the viscous damper, a constitutive relation curve of the viscous damper is divided into a plurality of phases; according to the constitutive relation curve, three curved surfaces of the damper valve in the viscous damper are designed; and the first curved surface, the second curved surface and the third curved surface correspond to the phase I, the phase II, and the phase III. According to the design method, the viscous damper can automatically adjust damping force based on the movement speed of a damper piston, and meet requirements for a plurality of application scenarios in the same bridge. The viscous damper can effectively protect the bridge against damage caused by temperature-resulted deformation, is beneficial for reducing displacements caused by wind vibration and external loads of brakes so that devices, such as the viscous damper and expansion joints, can be prevented from premature fatigue and damage, and is beneficial for improving the seismic resistance of the bridge structure.

Description

technical field [0001] The invention relates to the technical field of vibration reduction, in particular to a design method of a multifunctional viscous damper with variable parameters and the damper. Background technique [0002] A common viscous damper is usually composed of a cylinder, a piston, a piston rod and a damping medium. The damping medium is filled in the two cavities at the front and rear of the piston. The piston rod and the piston can slide in the inner cavity of the cylinder. During the sliding process of the piston, the damping medium flows from one cavity to the other through the passage between the piston and the cylinder. body. [0003] Damping coefficient and velocity exponent are two important parameters reflecting the mechanical performance of viscous damper. A viscous damper with a small speed index will generate a large damping force at an extremely low speed. Taking the speed index of piston movement as 0.1 as an example, when the damping valve ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F16F9/32F16F9/49G06F17/50E01D19/00
CPCE01D19/00F16F9/3207F16F9/49G06F30/17
Inventor 汪正兴王波马长飞刘鹏飞荆国强柴小鹏王翔伊建军孙家龙阮小丽吴肖波
Owner 中铁桥研科技有限公司
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