Suspension bush
US-2021402838-A1 · Dec 30, 2021 · US
US11001279B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11001279-B2 |
| Application number | US-201715461525-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 17, 2017 |
| Priority date | Mar 18, 2016 |
| Publication date | May 11, 2021 |
| Grant date | May 11, 2021 |
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The invention relates to an anti-vibration device ( 100 ), for example intended for a railroad application, comprising: a first frame ( 10 ), a second frame ( 20 ), a shock absorbing structure ( 30 ) for the vibrations, situated between the two frames ( 10, 20 ), and at least one fire barrier layer ( 40 ) at least partially covering the shock absorbing structure ( 30 ); characterized in that said at least one fire barrier layer ( 40 ) is a polychloroprene-based elastomer including at least one fire retardance agent chosen from among alumina trihydrate or magnesium hydroxide.
Opening claim text (preview).
The invention claimed is: 1. An anti-vibration device ( 100 ), the anti-vibration device comprising: a first frame ( 10 ), a second frame ( 20 ), a shock absorbing structure ( 30 ) for the vibrations, situated between the first and second frames ( 10 , 20 ), and at least one fire barrier layer ( 40 ) at least partially covering the shock absorbing structure ( 30 ); wherein said at least one fire barrier layer ( 40 ), of thickness comprised between 05 mm and 3 cm, is a polychloroprene-based elastomer including at least one fire retardance agent chosen from among alumina trihydrate or magnesium hydroxide, the polychloroprene base represents between 80 parts and 100 parts of the polychloroprene-based elastomer forming the at least one fire barrier ( 40 ), and for 100 parts of the elastomer forming the at least one fire barrier, the aluminum trihydrate or magnesium hydroxide represents between 10 and 300 parts, and wherein the at least one fire retardance agent has a specific surface of at least 5 m 2 /g. 2. The anti-vibration device according to claim 1 , wherein the fire barrier layer ( 40 ) includes a curing agent chosen from among: zinc oxide (ZnO), diarylparaphenylenediamine, magnesium oxide (MgO), or made from a mixture thereof. 3. The anti-vibration device according to claim 1 , wherein the fire barrier layer ( 40 ) comprises a chemical adhesion agent between the fire barrier layer ( 40 ) and the shock absorbing structure ( 30 ). 4. The anti-vibration device according to claim 3 , wherein the chemical adhesion agent represents at most 20 parts. 5. The anti-vibration device according to claim 1 , wherein the fire barrier layer ( 40 ) includes at least one implementing agent, for example Bis(Pentabromophenyl)ethane, stearic acid, chlorinated paraffin or a mixture thereof. 6. The anti-vibration device according to claim 1 , wherein the fire barrier layer ( 40 ) includes at least one mechanical strengthening agent, for example carbon black and/or antimony trioxide. 7. The anti-vibration device according to claim 1 , wherein the fire barrier layer ( 40 ) comprises at least one other elastomer, for example an elastomer making it possible to improve the implementation, the mechanical properties or the gas impermeability of the polychloroprene. 8. The anti-vibration device according to claim 1 , wherein: the first frame ( 10 ) forms an inner frame; the second frame ( 20 ) forms an outer frame; and the vibration shock absorbing structure ( 30 ) assumes the form of a laminate with an elastomer layer ( 301 )/layer of a non-elastomer material ( 302 ) more rigid than the elastomer, and including a first face ( 31 ) fixed to the inner frame ( 10 ), a second face ( 32 ) fixed to the outer frame ( 20 ), a third face ( 33 ) extending between the inner frame ( 10 ) and the outer frame ( 20 ), and a fourth face ( 34 ), opposite the third face ( 33 ) and also extending between the inner frame ( 10 ) and the outer frame ( 20 ), said third and fourth faces ( 33 , 34 ) therefore being faces not fastened to the inner and outer frames; the fire barrier layer ( 40 ) also being situated on at least one ( 34 ) of the faces ( 33 , 34 ) not connected to the inner ( 10 ) and outer ( 20 ) frames. 9. The anti-vibration device according to claim 8 , wherein the non-elastomer material ( 302 ) is metal. 10. The anti-vibration device according to claim 1 , wherein said at least one fire retardance agent is alumina trihydrate. 11. A railroad vehicle comprising an anti-vibration device according to claim 1 . 12. The railroad vehicle according to claim 11 , wherein the railroad vehicle comprises one of a train or a tram. 13. The railroad vehicle according to claim 12 , wherein the train is a subway train.
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