IP Library › Granted Patent US 10,514,076
Granted Patent B2
US 10,514,076 · App. 15/844,637 · Granted Dec 24, 2019

Shock absorber for aircrafts

Inventors: Yu Tian (Jiangsu, CN); Wenyan Jiang (Jiangsu, CN)
Assignee: Haoxiang Electric Energy (Kunshan) Co., Ltd.
F16F7/12F16F15/08B64C2201/127B64D47/08F16F2224/025F16F2224/0225F16F2230/0005F16F2232/08F16F2234/02F16F2234/08G03B15/006
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Quick Facts
Patent No.
US 10,514,076
App. No.
15/844,637
Granted
Dec 24, 2019
Kind
B2
Abstract

A shock absorber includes an upper vibration damping sheet and a lower vibration damping sheet. Multiple first vibration dampers and a second vibration damper are located between the upper vibration damping sheet and the lower vibration damping sheet; the first vibration dampers are close to an edge of both the upper vibration damping sheet and the lower vibration damping sheet. One end of the second vibration damper is located on the lower vibration damping sheet and is far away from the edge of the lower vibration damping sheet, the other end of the second vibration damper extends towards the upper vibration damping sheet along an axial direction of the lower vibration damping sheet, whereby when a carrier moves, the shock absorber provides a damping effect for a gimbal through the first vibration dampers and the second vibration damper. An aircraft includes the shock absorber mentioned above and a gimbal.

Claims (21)

1. A shock absorber for an aircraft, comprising an upper vibration damping sheet for connecting with a carrier, and a lower vibration damping sheet for connecting with a gimbal, wherein:

multiple first vibration dampers and a second vibration damper are located between the upper vibration damping sheet and the lower vibration damping sheet;

the first vibration dampers are close to an edge of both the upper vibration damping sheet and the lower vibration damping sheet, wherein: one end of each of the first vibration dampers is connected with the upper vibration damping sheet, the other end of each of the first vibration dampers is connected with the lower vibration damping sheet;

one end of the second vibration damper is located on the lower vibration damping sheet and is far away from the edge of the lower vibration damping sheet, the other end of the second vibration damper extends towards the upper vibration damping sheet along an axial direction of the lower vibration damping sheet,

whereby when the carrier moves, the shock absorber provides a damping effect for the gimbal through the first vibration dampers and the second vibration damper;

the first vibration dampers are rubber vibration dampers, the second vibration damper is a foam vibration damper.

2. The shock absorber, as recited in claim 1 , wherein the rubber vibration dampers are cylindrical or spherical, the foam vibration damper is cylindrical or spherical.

3. The shock absorber, as recited in claim 1 , wherein: the second vibration damper is located at a center of the lower vibration damping sheet, and a gap is provided between the other end of the second vibration damper and the upper vibration damping sheet.

4. A shock absorber for an aircraft, comprising an upper vibration damping sheet for connecting with a carrier, and a lower vibration damping sheet for connecting with a gimbal, wherein:

multiple first vibration dampers are located between the upper vibration damping sheet and the lower vibration damping sheet;

multiple second vibration dampers are located on the lower vibration damping sheet and evenly distributed along a radial direction around a center of the lower vibration damping sheet;

the first vibration dampers are close to an edge of both the upper vibration damping sheet and the lower vibration damping sheet, wherein: one end of each of the first vibration dampers is connected with the upper vibration damping sheet, the other end of each of the first vibration dampers is connected with the lower vibration damping sheet;

one end of each of the second vibration dampers is located on the lower vibration damping sheet and is far away from the edge of the lower vibration damping sheet, the other end of each of the second vibration dampers extends towards the upper vibration damping sheet along an axial direction of the lower vibration damping sheet,

whereby when the carrier moves, the shock absorber provides a damping effect for the gimbal through the first vibration dampers and the second vibration dampers.

5. A shock absorber for an aircraft, comprising an upper vibration damping sheet for connecting with a carrier, and a lower vibration damping sheet for connecting with a gimbal, wherein:

multiple first vibration dampers are located between the upper vibration damping sheet and the lower vibration damping sheet;

a second vibration damper is located at a center of the lower vibration damper and extends towards the upper vibration damping sheet along an axial direction of the lower vibration damper;

the first vibration dampers are close to an edge of both the upper vibration damping sheet and the lower vibration damping sheet, wherein: one end of each of the first vibration dampers is connected with the upper vibration damping sheet, the other end of each of the first vibration dampers is connected with the lower vibration damping sheet;

one end of the second vibration damper is located on the lower vibration damping sheet and is far away from the edge of the lower vibration damping sheet, the other end of the second vibration damper extends towards the upper vibration damping sheet along an axial direction of the lower vibration damping sheet,

whereby when the carrier moves, the shock absorber provides a damping effect for the gimbal through the first vibration dampers and the second vibration damper;

both the upper vibration damping sheet and the lower vibration damping sheet are rectangles with a size matching with each other; an amount of the first vibration dampers is four and respectively located at an edge of four vertexes of the rectangle.

Priority Claims (1)
CN 2016 2 1396525 · Dec 19, 2016 · national
Continuity (1)
Related Publication 20180128338A1 · May 10, 2018