Norm

NEN-EN-ISO 10846-2:2005 Ontw. en

Akoestiek en trillingen - Laboratoriummeting van trillingsakoestische overdrachtseigenschappen van verende elementen - Deel 2: Directe methode voor de bepaling van dynamische translatie stijfheid van draagveren

  • Deze norm is ingetrokken sinds 01-09-2008

31,83

Over deze norm

Status Ingetrokken
Aantal pagina's 34
Commissie Akoestiek
Gepubliceerd op 01-12-2005
Taal Engels
This part of ISO 10846 specifies a method for determining the dynamic transfer stiffness for translations of resilient supports, under specified preload. The method concerns the laboratory measurement of vibrations on the input side and blocking output forces and is called "the direct method." The method is applicable to test elements with parallel flanges (see Figure 1). Resilient elements, which are the subject of this part of ISO 10486, are those, which are used to reduce: - the transmission of vibration in the lower part of the audible frequency range (typically 20 Hz to 500 Hz) to a structure which may, for example, radiate unwanted fluid-borne sound (airborne, waterborne or others), and - the transmission of low-frequency vibration (typically 1 Hz to 80 Hz), which may, for example, act upon human subjects or cause damage to structures of any size when vibration is too severe. The data obtained according to the method specified in this part of ISO 10846 can be used for: - product information provided by manufacturers and suppliers; - information during product development; - quality control; - calculation of the transfer of vibration energy through isolators.

Details

ICS-code 17.140.01
Nederlandse titel Akoestiek en trillingen - Laboratoriummeting van trillingsakoestische overdrachtseigenschappen van verende elementen - Deel 2: Directe methode voor de bepaling van dynamische translatie stijfheid van draagveren
Engelse titel Acoustics and vibration - Laboratory measurement of vibro-acoustic transfer properties of resilient elements - Part 2: Direct method for determination of the dynamic stiffness of resilient supports for translatory motion
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