[go: up one dir, main page]

USRE26162E - Vehicle seat rebound control - Google Patents

Vehicle seat rebound control Download PDF

Info

Publication number
USRE26162E
USRE26162E US26162DE USRE26162E US RE26162 E USRE26162 E US RE26162E US 26162D E US26162D E US 26162DE US RE26162 E USRE26162 E US RE26162E
Authority
US
United States
Prior art keywords
seat
damping
movement
suspension system
suspension
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired
Application number
Publication date
Application granted granted Critical
Publication of USRE26162E publication Critical patent/USRE26162E/en
Expired legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/50Seat suspension devices
    • B60N2/502Seat suspension devices attached to the base of the seat
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/50Seat suspension devices
    • B60N2/505Adjustable suspension including height adjustment
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/50Seat suspension devices
    • B60N2/506Seat guided by rods
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/50Seat suspension devices
    • B60N2/54Seat suspension devices using mechanical springs
    • B60N2/548Torsion springs, e.g. torsion helicoidal springs

Definitions

  • This invention relates to a seat suspension system and more particularly to a seat shock absorbing system for rough riding vehicles.
  • the suspension system With such a shock absorbing system, the suspension system is etfectively damped and the driver is relieved from excessive bouncing and retains full control of his vehicle under all road conditions. Once the condition has been passed. the shock absorber may be disconnected from the suspension system by a manual release thus returning the seat to normal suspension operation and giving a smooth ride from the suspension system alone.
  • the primary object of this invention is to provide a seat suspension system which will effectively cushion undue rebound from extremely rough road conditions.
  • a further object of this invention is to provide a hydraulic shock absorber system for a seat to effectively damp the seat suspension system by automatically adding the shock absorbing system to the suspension system upon hitting an extremely rough road condition.
  • a still further object of the present invention is to provide a shock absorbing system which can be added to present seat suspension systems at a minimum of cost.
  • a final object of this invention is to provide a shock absorbing system for seats which operates only when an extremely rough road condition is encountered.
  • FIGURE 1 is a side elevation of a seat structure embodying the present invention and shown mounted on a supporting or base part.
  • FIGURE 2 is a vertical section taken on line 22 in FIGURE 1 showing the suspension system in the normal position with the shock absorber detached.
  • FIGURE 3 is a vertical section similar to FIGURE 2 showing the suspension system in the depressed position and the shock absorber in its operative position.
  • FIGURE 4 is a top view partly in section showing the shock absorbing system disconnected.
  • FIGURE 5 is a side elevation of the shock absorber in the operative position.
  • FIGURE 6 is a detail view of the shock absorber latch.
  • a seat 10 having a frame 12 made of tubing and supporting a seat cushion 14 and a back cushion 16.
  • the frame 12 has a front plate 18 and a rear plate 20 bctween which a torsion suspension system 22 is mounted.
  • the torsion suspension system 22 includes [rod] rods 23 and rubber torsion spring 24. the rods 23 being journaled in the rear plate 20 and connected to springs 24 which are mounted on the front plate 18.
  • a pair of crank arms 26 are rigidly secured to each torsion rod 23 and extend outwardly therefrom to pivotally engage links 28.
  • each crank arm 26 inclines downwardly to a degree and this angularity is compensated for by the links 28 which are connected to bearings 30 mounted in bearing housings 32 on base frame 34.
  • downward movement of the seat 10 produces a torque through crank arms 26 on rods 23 and springs 24.
  • the torque thus set up will return the seat to a normal position.
  • the seat moves downward at a rate faster than can be compensated for by the torsion system the seat would normally bottom and jar the driver.
  • a shock absorber 36 is suspended under the back cushion 16 and includes a cylinder 46 and a piston assembly 48 that is slidable within the cylinder.
  • the cylinder is connected to one of the crank arms 26 by an arm 38 and a bracket 50.
  • the piston assembly includes a piston 49. a yoke 52 and a connector 54 which slides in a bearing 40 in housing 41.
  • the connector has a frustoconical nose cone 56 and a groove 58 located immediately behind the nose.
  • the housing 41 is mounted on a side plate 42 which has an aperture located therein.
  • On the side of the plate remote from the housing a spring biased latch 44 is mounted.
  • FIGURE 6 immediately adjacent aperture 45.
  • the latch is pivoted at 62 and is biased to a lock position by a spring 64 so that it overlaps aperture 45.
  • the shock absorber 36 floats in the bearing in response to movements of the crank arm 26. Whenever sufficient travel is imparted to the shock absorber, the nose 56 of the connector will force the latch open against the bias of the spring 64 and when the groove 58 is opposite the latch, the spring will snap the latch into the groove. The shock absorber will then be operative to damp the amplitude of vibration of the suspension system. When the rough condition has passed the driver need only depress handle 66 to free the connector 54. The springs will draw the piston within the cylinder for free riding operation.
  • a seat structure having a seat part and a base part, means for resiliently suspending the seat part from the base part for vibratory movement with respect thereto, damping means mounted for operative connection between said seat part and said base part, but normally inoperative to influence the relative vibratory movement therehetween. and means automatically responsive to predetermined amplitude of vibratory movement between said parts to operatively connect said damping means to and between said parts to render the damping means operative to dampen vibratory movements between said parts.
  • a damping system comprising, a damper having relatively moveable members, means for connecting one member of the damper to the suspension means, means for slidably connecting the other member of the damper to one of said parts so that the damper has no influence on the suspension system, means on said one of said parts for operatively locking the damper to said one part so that the damper dissipates the energy and reduces the motion of the suspension system and means for disengaging the locking means from the damper.
  • connection means for the other member and said one of said parts comprises a sleeve bearing mounted in a bearing housing which is secured to said one of said parts, and said other member slidably engages the bearing.
  • a seat structure comprising a seat and a frame, a torsion suspension means for mounting said seat on said frame for relative vibratory movement, a damping means inoperatively secured to the suspension system and normally ineffective to influence relative vibratory move ment of said parts, locking means responsive to predetermined amplitude of vibratory movement between said parts to automatically and releasably connect the damping means to said suspension system and render the same effective to absorb and cushion the vibratory movements of said parts, and means for releasing said locking means to restore the damping means to normal, ineffective condition.
  • a shock absorber for a seat having a torsion suspension system comprising a cylinder, a piston assembly in cluding a piston and a connecting rod reciprocally engaging the cylinder.
  • means for connecting the piston assembly to the seat said last mentioned connecting means including a bearing secured to the seat so that the connecting rod slidably engages said bearing, said connecting rod having a locking groove and a frusto-conical nose cone, and means on the seat for engaging the groove in response to a condition so that the shock absorber is operatively locked to the suspension system.
  • a shock absorbing system for a seat structure comprising a cylinder, a piston assembly slidably engaging said cylinder, a seat, a frame, means for suspending said seat on said frame, means for connecting the cylinder to said suspension means so that it responds to the move ments of said suspension means, means for slidably connecting the piston to the seat, said seat including a latch adjacent said slidable means, means biasing the latch into engagement with the slidable means, means on said pis ton for engaging said latch in response to a condition whereby said cylinder and piston effectively damp the motion of the suspension system.
  • a pedestal, a seat, a torsion spring .ruvpenrion mounting the scat on the pedestal for oscillating movement of the seat relative to the pedestal, said suspension including shock absorbing means adapted to be rendered in eflcctive and ineffective conditions for dumping the oscillating movement of the scat, and means opcroblc by a person sitting on the seat to change the shock absorbing means from one condition to the other.
  • a seat a seat suspension having (1 base frame, a seat-support in spaced relation to the base frame and upon which the seat is mounted, means including an arm joining the base frame and seat support for permitting oscillating movement of the seat and seat-support relative to said base frame, torsion spring means energized by the arm upon movement of the seat and seatsupport, shock-absorbing means adapted to be rendered in. effective and ineflcctive conditions for damping the oscillating movement of the seat and seat-support, and means operable by a person sitting on the seat to change the shock-absorbing means from one condition to the other.
  • a resilient seat suspension having a seat-support and means mounting the seat-support for oscillating movement in a path, a seal carried by mid scatsupport and movable therewith, said suspension also including shock-absorbing means adapted to be rendered in effective and ineffective conditions for dumping the 0scilluting movement of the seat and seat-support, and means operable by a person sitting on said seat to change the shock absorbing means from one condition to the other.
  • a vehicle seat assembly comprising a seat part and a base part means joining the base and seat part for permitting oscillating movement of the seat part relative to the base part, the means including spring means and damping means with said spring and dumping means pro viding dificrcnt natural frequencies for the seat part, said damping means including a cylinder member and a piston member slidably engaged with said cylinder member with said two members being operable to yieldingly resist and damp relative sliding movement between said members, one of said members being connected to one of said parts and the other of said members being connected to said other of said parts for relative movement in respect thereto so as to avoid relative movement between said members during said oscillatory movement and thus render .raid damping means ineffective for dumping said oscillating movement, restraining means to prevent said relative movement between said other of said members and said other of said parts and thereby cause relative movement between said members during said oscillating movement and thus render said damping means in on cffcctivc condition and means operable by a person sitting on the seat for
  • a seat suspension having a scat-support part and a base frame part, and means joining the sent-support part and base frame part for permitting oicillating movement of the sent-support part relative to said base frame part; said means including spring means and dumping means, the natural frequency of the seat-.rupport when subjected to the action of both the spring and dumping means being different from its natural frequency when subjected to the action of only the spring mcans, said damping means including a cylinder member and a piston mcmbcr slidably engaged with said cylinder member with said two members being operable to yieldingly resist and damp rclurivc sliding movement between mid members, one of said members being pivotally conncctcd to one of said parts and the other of said members being connected to raid other of said parts for relative movement in respect thereto so as to avoid relative movement bctwccn said members during said oscillatory movement and thus rcndcr said damping mcnns incjjcctivc for
  • a seat part and a base part upon which the seat is mounted and means joining the base and seat parts for permitting oscillating movement of the seat part relative to the base part; said means including spring and damping means, the natural frequency of the seat when subjected to the action of both the spring and damping means being diflerent from its natural frequency when subjected to the action of only the spring means, and means for rendering efiective and inefiective the damping action of the damping means independently of the damping action of said spring means.
  • a seat and a base upon which the seat is mounted and means joining the base and seat for permitting oscillating movement of the seat relative to the base; said means including spring and damping means, the natural frequency of the seat when subjected to the action of the spring and damping means being different from 6 its natural frequency when subjected to the action of only the means, and means operable by a person sitting on the seat to render ineflective the damping action of the damping means.

Landscapes

  • Engineering & Computer Science (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • Transportation (AREA)
  • Mechanical Engineering (AREA)
  • Seats For Vehicles (AREA)

Description

Feb. 21, 1967 A. K. SIMONS ETAL Re. 26,162
VEHICLE SEAT REBOUND CONTROL Original Filed May 8, 1959 2 Sheets-Sheet 1 'l a r 4| 1 s2 I w o 1 as F INVENTORS 34 26 2 26 nuuson K. mans ARTHUR 0. must. Hm-wev N- ENQLER F IG .3
ATTOGNI'Y Feb. 21, 1967 A. K. SIMONS ETAL 26,162
VEHICLE SEAT REBOUND CONTROL Original Filed May 8, 1959 2 Sheets-Sheet 2 FIGS United States Patent 26,162 VEHICLE SEAT REBOUND CONTROL Allison K. Simons, West Bylleet, England, and Arthur 0.
Radke, Wauwatosa, and Harvey N. Tengler, New Berlin, Wis., assignors to Bostrom Corporation, Milwaukee, Wis., a corporation of Wisconsin Original No. 3,061,260, dated Oct. 30, 1962, Ser. No. 811,995, May 8, 1959. Application for reissue May 20, 1963, Ser. No. 282,202
13 Claims. (Cl. 248-400) Matter enclosed in heavy brackets appears in the original patent but forms no part of this reissue specification; matter printed in italics indicates the additions made by reissue.
This invention relates to a seat suspension system and more particularly to a seat shock absorbing system for rough riding vehicles.
The design of a seat for a rough riding vehicle that is subject to intermittent, abnormally rough riding conditions presents special problems. The main springs in such vehicles are necessarily stronger and therefore produce relatively high frequency vibrations when the vehicle is driven on rough roads. Under these conditions the driver is subjected to severe bouncing and full control of the vehicle is diflicult, if not impossible, until the speed of the vehicle has been reduced or the road condition has been passed. This condition was formerly corrected by utilizing a separate seat suspension to damp and reduce the frequency of the vibrations transmitted to the seat from the main springs so that the driver would not be subjected to high frequency and high amplitude vibration and thus provide a relatively smooth ride. These seat suspensions were designed for a relatively rough operation but where a severe road condition was encountered the amplitude of vibration of the seat suspension system was increased to such an extent that the seat would either bottom, or bounce the driver up off of the seat, jarring him to such an extent that he was unable to maintain proper control of the vehicle. There has been a growing appreciation of this problem of providing proper seating for drivers to reduce driver fatigue caused by excessive vibrating and unexpected jolts encountered under rough road conditions and to maintain proper control of the vehicle. A solution to this problem has been found by providing a shock absorbing system within the seat suspension system which does not become active until an extremely rough road condition is encountered. With such a shock absorbing system, the suspension system is etfectively damped and the driver is relieved from excessive bouncing and retains full control of his vehicle under all road conditions. Once the condition has been passed. the shock absorber may be disconnected from the suspension system by a manual release thus returning the seat to normal suspension operation and giving a smooth ride from the suspension system alone.
The primary object of this invention is to provide a seat suspension system which will effectively cushion undue rebound from extremely rough road conditions.
A further object of this invention is to provide a hydraulic shock absorber system for a seat to effectively damp the seat suspension system by automatically adding the shock absorbing system to the suspension system upon hitting an extremely rough road condition.
A still further object of the present invention is to provide a shock absorbing system which can be added to present seat suspension systems at a minimum of cost.
A final object of this invention is to provide a shock absorbing system for seats which operates only when an extremely rough road condition is encountered.
Other objects and advantages will be pointed out in, or be apparent from, the specification and claims, as will "ice obvious modifications of the single embodiment shown in the drawings in which:
FIGURE 1 is a side elevation of a seat structure embodying the present invention and shown mounted on a supporting or base part.
FIGURE 2 is a vertical section taken on line 22 in FIGURE 1 showing the suspension system in the normal position with the shock absorber detached.
FIGURE 3 is a vertical section similar to FIGURE 2 showing the suspension system in the depressed position and the shock absorber in its operative position.
FIGURE 4 is a top view partly in section showing the shock absorbing system disconnected.
FIGURE 5 is a side elevation of the shock absorber in the operative position.
FIGURE 6 is a detail view of the shock absorber latch.
Referring now to the drawings in detail. there is shown a seat 10 having a frame 12 made of tubing and supporting a seat cushion 14 and a back cushion 16. The frame 12 has a front plate 18 and a rear plate 20 bctween which a torsion suspension system 22 is mounted. The torsion suspension system 22 includes [rod] rods 23 and rubber torsion spring 24. the rods 23 being journaled in the rear plate 20 and connected to springs 24 which are mounted on the front plate 18. A pair of crank arms 26 are rigidly secured to each torsion rod 23 and extend outwardly therefrom to pivotally engage links 28. It will be noted that each crank arm 26 inclines downwardly to a degree and this angularity is compensated for by the links 28 which are connected to bearings 30 mounted in bearing housings 32 on base frame 34. In operation, downward movement of the seat 10 produces a torque through crank arms 26 on rods 23 and springs 24. The torque thus set up will return the seat to a normal position. When the seat moves downward at a rate faster than can be compensated for by the torsion system the seat would normally bottom and jar the driver.
A shock absorber 36 is suspended under the back cushion 16 and includes a cylinder 46 and a piston assembly 48 that is slidable within the cylinder. The cylinder is connected to one of the crank arms 26 by an arm 38 and a bracket 50. The piston assembly includes a piston 49. a yoke 52 and a connector 54 which slides in a bearing 40 in housing 41. The connector has a frustoconical nose cone 56 and a groove 58 located immediately behind the nose. The housing 41 is mounted on a side plate 42 which has an aperture located therein. On the side of the plate remote from the housing a spring biased latch 44 is mounted. FIGURE 6, immediately adjacent aperture 45. The latch is pivoted at 62 and is biased to a lock position by a spring 64 so that it overlaps aperture 45.
The shock absorber 36 floats in the bearing in response to movements of the crank arm 26. Whenever sufficient travel is imparted to the shock absorber, the nose 56 of the connector will force the latch open against the bias of the spring 64 and when the groove 58 is opposite the latch, the spring will snap the latch into the groove. The shock absorber will then be operative to damp the amplitude of vibration of the suspension system. When the rough condition has passed the driver need only depress handle 66 to free the connector 54. The springs will draw the piston within the cylinder for free riding operation.
Although but one embodiment of the present invention has been illustrated and described, it will be apparent to those skilled in the art that various changes and modifications may be made therein without departing from the spirit of the invention or from the scope of the appended claims.
We claim:
1. A seat structure having a seat part and a base part, means for resiliently suspending the seat part from the base part for vibratory movement with respect thereto, damping means mounted for operative connection between said seat part and said base part, but normally inoperative to influence the relative vibratory movement therehetween. and means automatically responsive to predetermined amplitude of vibratory movement between said parts to operatively connect said damping means to and between said parts to render the damping means operative to dampen vibratory movements between said parts.
2. The combination with a seat structure having a seat part. a base part and means for suspending said seat part on said base part. a damping system comprising, a damper having relatively moveable members, means for connecting one member of the damper to the suspension means, means for slidably connecting the other member of the damper to one of said parts so that the damper has no influence on the suspension system, means on said one of said parts for operatively locking the damper to said one part so that the damper dissipates the energy and reduces the motion of the suspension system and means for disengaging the locking means from the damper.
3. The combination according to claim 2 in which the connecting means for the other member and said one of said parts comprises a sleeve bearing mounted in a bearing housing which is secured to said one of said parts, and said other member slidably engages the bearing.
4. A seat structure comprising a seat and a frame, a torsion suspension means for mounting said seat on said frame for relative vibratory movement, a damping means inoperatively secured to the suspension system and normally ineffective to influence relative vibratory move ment of said parts, locking means responsive to predetermined amplitude of vibratory movement between said parts to automatically and releasably connect the damping means to said suspension system and render the same effective to absorb and cushion the vibratory movements of said parts, and means for releasing said locking means to restore the damping means to normal, ineffective condition.
5. A shock absorber for a seat having a torsion suspension system, comprising a cylinder, a piston assembly in cluding a piston and a connecting rod reciprocally engaging the cylinder. means for connecting said cylinder to the suspension system. means for connecting the piston assembly to the seat, said last mentioned connecting means including a bearing secured to the seat so that the connecting rod slidably engages said bearing, said connecting rod having a locking groove and a frusto-conical nose cone, and means on the seat for engaging the groove in response to a condition so that the shock absorber is operatively locked to the suspension system.
6. A shock absorbing system for a seat structure comprising a cylinder, a piston assembly slidably engaging said cylinder, a seat, a frame, means for suspending said seat on said frame, means for connecting the cylinder to said suspension means so that it responds to the move ments of said suspension means, means for slidably connecting the piston to the seat, said seat including a latch adjacent said slidable means, means biasing the latch into engagement with the slidable means, means on said pis ton for engaging said latch in response to a condition whereby said cylinder and piston effectively damp the motion of the suspension system.
7, In combination, a pedestal, a seat, a torsion spring .ruvpenrion mounting the scat on the pedestal for oscillating movement of the seat relative to the pedestal, said suspension including shock absorbing means adapted to be rendered in eflcctive and ineffective conditions for dumping the oscillating movement of the scat, and means opcroblc by a person sitting on the seat to change the shock absorbing means from one condition to the other.
8. In combination, a seat, a seat suspension having (1 base frame, a seat-support in spaced relation to the base frame and upon which the seat is mounted, means including an arm joining the base frame and seat support for permitting oscillating movement of the seat and seat-support relative to said base frame, torsion spring means energized by the arm upon movement of the seat and seatsupport, shock-absorbing means adapted to be rendered in. effective and ineflcctive conditions for damping the oscillating movement of the seat and seat-support, and means operable by a person sitting on the seat to change the shock-absorbing means from one condition to the other.
9. In combination, a resilient seat suspension having a seat-support and means mounting the seat-support for oscillating movement in a path, a seal carried by mid scatsupport and movable therewith, said suspension also including shock-absorbing means adapted to be rendered in effective and ineffective conditions for dumping the 0scilluting movement of the seat and seat-support, and means operable by a person sitting on said seat to change the shock absorbing means from one condition to the other.
10. A vehicle seat assembly comprising a seat part and a base part means joining the base and seat part for permitting oscillating movement of the seat part relative to the base part, the means including spring means and damping means with said spring and dumping means pro viding dificrcnt natural frequencies for the seat part, said damping means including a cylinder member and a piston member slidably engaged with said cylinder member with said two members being operable to yieldingly resist and damp relative sliding movement between said members, one of said members being connected to one of said parts and the other of said members being connected to said other of said parts for relative movement in respect thereto so as to avoid relative movement between said members during said oscillatory movement and thus render .raid damping means ineffective for dumping said oscillating movement, restraining means to prevent said relative movement between said other of said members and said other of said parts and thereby cause relative movement between said members during said oscillating movement and thus render said damping means in on cffcctivc condition and means operable by a person sitting on the seat for actuating said restraining means and altering the effectiveness of the damping means independently of the spring means to change the natural frequency of the seat.
11. A seat suspension having a scat-support part and a base frame part, and means joining the sent-support part and base frame part for permitting oicillating movement of the sent-support part relative to said base frame part; said means including spring means and dumping means, the natural frequency of the seat-.rupport when subjected to the action of both the spring and dumping means being different from its natural frequency when subjected to the action of only the spring mcans, said damping means including a cylinder member and a piston mcmbcr slidably engaged with said cylinder member with said two members being operable to yieldingly resist and damp rclurivc sliding movement between mid members, one of said members being pivotally conncctcd to one of said parts and the other of said members being connected to raid other of said parts for relative movement in respect thereto so as to avoid relative movement bctwccn said members during said oscillatory movement and thus rcndcr said damping mcnns incjjcctivc for dumping said oscillating movement, restraining means to prevent said relative movement between said other of said members and said other of said parts and thereby cause relative movement between said members during raid oscillating movement and thus render said damping means in an cficctivc condition, and means for actuating said restraining moons and thus rendering cflcctive and ineffective the 5 damping action of the damping means independently of the spring means.
12. In combination, a seat part and a base part upon which the seat is mounted, and means joining the base and seat parts for permitting oscillating movement of the seat part relative to the base part; said means including spring and damping means, the natural frequency of the seat when subjected to the action of both the spring and damping means being diflerent from its natural frequency when subjected to the action of only the spring means, and means for rendering efiective and inefiective the damping action of the damping means independently of the damping action of said spring means.
13. In combination, a seat and a base upon which the seat is mounted, and means joining the base and seat for permitting oscillating movement of the seat relative to the base; said means including spring and damping means, the natural frequency of the seat when subjected to the action of the spring and damping means being different from 6 its natural frequency when subjected to the action of only the means, and means operable by a person sitting on the seat to render ineflective the damping action of the damping means.
References Cited by the Examiner The following references, cited by the Examiner, are of record in the patented file of this patent or the original patent.
CLAUDE A. LE ROY, Primary Examiner.
N. F. MARTIN, Examiner.
US26162D Vehicle seat rebound control Expired USRE26162E (en)

Publications (1)

Publication Number Publication Date
USRE26162E true USRE26162E (en) 1967-02-21

Family

ID=2095565

Family Applications (1)

Application Number Title Priority Date Filing Date
US26162D Expired USRE26162E (en) Vehicle seat rebound control

Country Status (1)

Country Link
US (1) USRE26162E (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3519241A (en) * 1966-05-31 1970-07-07 Fritzmeier Kg Georg Rocker guide for sprung seats
US4788747A (en) 1986-12-19 1988-12-06 Avm, Inc. Counterbalance apparatus with transverse pneumatic spring and bellcrank linkage

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3519241A (en) * 1966-05-31 1970-07-07 Fritzmeier Kg Georg Rocker guide for sprung seats
US4788747A (en) 1986-12-19 1988-12-06 Avm, Inc. Counterbalance apparatus with transverse pneumatic spring and bellcrank linkage

Similar Documents

Publication Publication Date Title
US2489981A (en) Seat suspension for all implements
US1998477A (en) Ring spring suspension for automobiles
US4714227A (en) Seat suspension for an off-road vehicle
CA1141644A (en) Fore and aft seat suspension
US3599232A (en) Vehicle seat suspension system
US2357825A (en) Seat
US3061260A (en) Vehicle seat rebound control
US2892482A (en) Vehicle seat mounting units
US4998592A (en) Passive mechanical damping system for a truck
US2714001A (en) Resilient support
US8955832B1 (en) Seat suspension for terrain working vehicles
US2705633A (en) Shock absorbing means for railroad car trucks
US2303567A (en) Resilient seat mounting
US2366730A (en) Floating chair type seat
USRE26162E (en) Vehicle seat rebound control
US9469227B2 (en) Rear mounted vehicle seat suspension
US4401290A (en) Stabilized seat
GB1407591A (en) Suspension systems for vehicle seats
US1875500A (en) Vehicle seat
US3275277A (en) Vehicle seat
US2704112A (en) Tractor seat having adjustable spring support
US2833552A (en) Dynamic vibration damper
US2641307A (en) Seat support
US2601886A (en) Resiliently mounted vehicle seat
US3211411A (en) Vehicle seat