Suspension of a vehicle seat

4969624
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Inventors

Ustelentsev, Lev I.
Pogorelova, Galina N.

Application #

430114

Filed

Nov-1-1989

Published

Nov-13-1990

Current US Class

188/267
248/550
248/562
248/599
248/638
267/136
267/140.11

International Classes

F16M 013/00

Field of Search

248/599 248/562 248/636 248/550 248/638 267/136 267/140.1 188/267

Assignee

Vsesojuzny Nauchno-Issledovatelsky Institut Okhrany Truda i Tekhniki (Chelyabinsk, SU)

Examiners

Chin-Shue; Alvin C.

Attorney, Agent or Firm

Fleit, Jacobson, Cohn, Price, Holman and Stern

US Patent References

4624435   Electro-magnetic vi...

Referenced by:

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Citation

Cite This Patent

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Abstract
A suspension of a vehicle seat comprises a bearing plate to which the vehicle seat is secured, a first base mounted on the floor of the vehicle cabin, and mechanical resilient elements provided between the first base and bearing plate. Arranged vertically in line with the axis of symmetry of the first base is an electrodynamic exciter including a second base, a magnetic circuit in the form of outer and inner cylindrical elements, two groups of coils secured at the inside surface of the outer element of the magnetic circuit and at the outside surface of the inner element of the magnetic circuit. The electrodynamic exciter further comprises a guide mechanism in the form of a cup with a cover plate. Attached to the cover plate of the cup of the guide mechanism is a magnetic unit. The electrodynamic exciter also comprises a first stop mechanism positioned between the outer element of the magnetic circuit and cup of the guide mechanism, and a second stop mechanism mounted on a rod received in a central hole of the cover plate of the guide mechanism.
 
Claims
What is claimed is:

1. A suspension of a vehicle seat comprising a bearing plate to which the vehicle seat is secured;

a first base having an outer perimeter and mounted on the floor of the vehicle cabin;

mechanical resilient elements secured about the outer perimeter of said first base between said bearing plate and first base;

an electrodynamic exciter arranged vertically in line with the axis of symmetry of said first base and parallel with said mechanical resilient elements; a second base of said electrodynamic exciter having inside and outside diameters, fabricated from a nonmagnetic material, and secured on said first base; a magnetic circuit of said electrodynamic exciter having outer and inner cylindrical elements arranged concentrically relative to each other; said outer cylindrical element of said magnetic circuit having outside and inside surfaces and being secured about the outside diameter of said second base; said inner cylindrical element of said magnetic circuit having outside and inside surfaces and being secured about the inside diameter of said second base; two groups of coils of said electrodynamic exciter electrically connected in series opposition; said coils of the first group being secured at the inside surface of said outer cylindrical element of said magnetic circuit; said coils of the second group being secured at the outside surface of said inner cylindrical magnetic circuit; a guide mechanism of said electrodynamic exciter having the form of a cup; the cup of said guide mechanism having upper and lower ends and a cylindrical wall, and being mounted at the outside surface of said outer cylindrical element of said magnetic circuit to be capable of vertical movement; bearings provided at the cylindrical wall of said cup of the guide mechanism to facilitate the vertical movement; a cover plate of said guide mechanism secured at the upper end of said cup and having a central hole; a rod of said guide mechanism having first and second ends, and received by the first end in said central hole of said cover plate of the guide mechanism for free movement therein, and having its second end secured to said bearing plate; a magnetic unit of said electrodynamic exciter having outside and inside surfaces, made up of successively secured annular pole pieces and annular permanent magnets, attached on said cover plate of the cup of said guide mechanism, accommodated between said outer and inner cylindrical elements of said magnetic circuit with a clearance between the outside surface of said magnetic unit and inside surface of said outer cylindrical element of said magnetic circuit and with a clearance between the inside surface of said magnetic unit and outside surface of said inner cylindrical element of said magnetic circuit; a first stop mechanism of said electrodynamic exciter provided between said outer cylindrical element of said magnetic circuit and said cup of said guide mechanism; a second stop mechanism of said electrodynamic exciter secured on said cover plate of said guide mechanism.



Description
FIELD OF THE INVENTION

This invention relates generally to mechanical engineering, and more particularly to suspensions of a vehicle seat.

The invention can find application in locomotives, aircrafts, helicopters, sea-going vessels, and trucks for protecting the driver operating the vehicle against the harmful effect of low-frequency vibration, as well as for damping mechanical vibrations to which electrical measuring and electronic instruments, precision mechanisms and other devices are exposed, such as in machine tool manufacture, vehicle engineering, and instrument making.

BACKGROUND OF THE INVENTION

There is known a suspension of a vehicle seat (cf., SU, A, No. 662,384) in which protection against vibration is ensured by adjusting the dynamic rigidity of resilient elements of the shock absorber. The resilient elements are made of lengths of a multicore cable having ends thereof secured between a support base and a movable shell secured on a post to be capable and a movable shell secured on a post to be capable of rotation about its own axis. The resilient elements are characterized by dynamic rigidity of a magnitude equal to the magnitude of the static rigidity. Variations in the angle of turn of the shell relative to the base lead to a change in the inclination angle of the cable lengths and dynamic rigidity of the resilient elements of the shock absorber.
 
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