Isolation system of the heat water pumps can be simplified as a double sources exciting and double output double-deck vibration isolation system model, expressions of transmitted power flow and vibration speed to the basement are deduced based on the double sources exciting and double output double-deck vibration isolation system electric-force(E-F) analog picture, the curves of power flow and vibration speed transmitted to basement how the upper deck vibration isolation and intermediate mass effect are drawn by using mat lab program. The results show that the adjusting the upper deck vibration isolation stiffness parameters has little effect on the amplitude of vibration power flow, increasing intermediate mass can move first peak to the low frequency, increasing intermediate mass can obviously reduce t transmitted power flow and transmitted vibration speed amplitude to the basement.


    Access

    Access via TIB

    Check availability in my library

    Order at Subito €


    Export, share and cite



    Title :

    Research on Vibration Isolation Parameters of Double-Deck Isolation System of Heat Water Pump


    Contributors:


    Publication date :

    2013


    Size :

    5 Seiten




    Type of media :

    Conference paper


    Type of material :

    Print


    Language :

    English




    Ship exposed deck provided with vibration isolation floor and vibration isolation floor laying method

    MA WEIFENG / WANG HAIBIN / WANG FEI et al. | European Patent Office | 2023

    Free access

    Stewart vibration isolation platform with double-layer vibration isolation supporting legs

    ZHAO DAN / ZHANG HONGWEI / PENG BO et al. | European Patent Office | 2021

    Free access

    VIBRATION ISOLATION SYSTEM

    CHANG ERIC E-LEE / FIERRO EMMANUEL / MILLER KIRK A et al. | European Patent Office | 2020

    Free access

    VIBRATION ISOLATION SYSTEM

    WANG TONGAN / HORNICK DAVID C / MAXON JOHN W JR et al. | European Patent Office | 2017

    Free access

    VIBRATION ISOLATION SYSTEM

    WANG TONGAN / HORNICK DAVID C / MAXON JR JOHN W et al. | European Patent Office | 2020

    Free access