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Liquid enclosed vibration absorber

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TLDR
In this article, the rubber vibration absorber body 3 is equipped between the holding cylinder 11 of the lower fitting metal 1 and the upper fitting metal 2, and the ring 30 is stuck at the outer surface of lower portion of absorber body 3 and the diaphragm 5 is equipped on the bottom of the middle cylinder 4.
Abstract
PROBLEM TO BE SOLVED: To provide a liquid enclosed vibration absorber which is applied easily for complex car loading styles, their dimensions and also is assembled easily and gets necessary strength and is improved in durability and reliability. SOLUTION: The rubber vibration absorber body 3 is equipped between the holding cylinder 11 of the lower fitting metal 1 and the upper fitting metal 2. The ring 30 is stuck at the outer surface of lower portion of absorber body 3. The diaphragm 5 is equipped on the bottom of the middle cylinder 4. The partition 6 is equipped on the inner surface of cylinder 4. The top of cylinder 4 is inserted into the lower portion of cylinder 32. The outer edge in top side of middle cylinder 4 is calked and fixed on the flange portion 31 of the ring. The chamber between the partition 6 and the absorber body 3 is liquid chamber 7a and the chamber 7b is between the partition 6 and diaphragm 5. The orifice 8 is connected between the chamber 7a and 7b. The middle cylinder 4 is pressed into the holding cylinder 11. The stopper 9 is equipped over the upper fitting metal 2 and is calked and fixed on the top edge of cylinder 11.

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Patent

Fluid-filled vibration damping device

TL;DR: In this article, a fluid filled vibration-damping device includes an elastic body disposed between a first mounting member and a second mounting member, and exhibits vibration damping action on the basis of flow action of the non-compressible fluid created within the fluid chamber during vibration input.
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TL;DR: In this paper, a stopper metal fitting is adapted for easy and reliable positioning with respect to and fixing to the main body metal fitting and for inhibiting itself from deviation or the like when loaded by the stopper action.
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