US20040212235A1 - Chair, in particular office chair - Google Patents
Chair, in particular office chair Download PDFInfo
- Publication number
- US20040212235A1 US20040212235A1 US10/792,771 US79277104A US2004212235A1 US 20040212235 A1 US20040212235 A1 US 20040212235A1 US 79277104 A US79277104 A US 79277104A US 2004212235 A1 US2004212235 A1 US 2004212235A1
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- adjusting
- seat support
- chair
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- rotation
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- 230000033001 locomotion Effects 0.000 claims description 9
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- 230000000295 complement effect Effects 0.000 claims description 3
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- 238000007906 compression Methods 0.000 description 11
- 230000001360 synchronised effect Effects 0.000 description 5
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- 240000000528 Ricinus communis Species 0.000 description 1
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Classifications
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47C—CHAIRS; SOFAS; BEDS
- A47C1/00—Chairs adapted for special purposes
- A47C1/02—Reclining or easy chairs
- A47C1/031—Reclining or easy chairs having coupled concurrently adjustable supporting parts
- A47C1/032—Reclining or easy chairs having coupled concurrently adjustable supporting parts the parts being movably-coupled seat and back-rest
- A47C1/03255—Reclining or easy chairs having coupled concurrently adjustable supporting parts the parts being movably-coupled seat and back-rest with a central column, e.g. rocking office chairs
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47C—CHAIRS; SOFAS; BEDS
- A47C1/00—Chairs adapted for special purposes
- A47C1/02—Reclining or easy chairs
- A47C1/031—Reclining or easy chairs having coupled concurrently adjustable supporting parts
- A47C1/032—Reclining or easy chairs having coupled concurrently adjustable supporting parts the parts being movably-coupled seat and back-rest
- A47C1/03205—Reclining or easy chairs having coupled concurrently adjustable supporting parts the parts being movably-coupled seat and back-rest having adjustable and lockable inclination
- A47C1/03233—Reclining or easy chairs having coupled concurrently adjustable supporting parts the parts being movably-coupled seat and back-rest having adjustable and lockable inclination by means of a rack-and-pinion or like gearing mechanism
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47C—CHAIRS; SOFAS; BEDS
- A47C1/00—Chairs adapted for special purposes
- A47C1/02—Reclining or easy chairs
- A47C1/031—Reclining or easy chairs having coupled concurrently adjustable supporting parts
- A47C1/032—Reclining or easy chairs having coupled concurrently adjustable supporting parts the parts being movably-coupled seat and back-rest
- A47C1/03205—Reclining or easy chairs having coupled concurrently adjustable supporting parts the parts being movably-coupled seat and back-rest having adjustable and lockable inclination
- A47C1/03238—Reclining or easy chairs having coupled concurrently adjustable supporting parts the parts being movably-coupled seat and back-rest having adjustable and lockable inclination by means of peg-and-notch or pawl-and-ratchet mechanism
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47C—CHAIRS; SOFAS; BEDS
- A47C1/00—Chairs adapted for special purposes
- A47C1/02—Reclining or easy chairs
- A47C1/031—Reclining or easy chairs having coupled concurrently adjustable supporting parts
- A47C1/032—Reclining or easy chairs having coupled concurrently adjustable supporting parts the parts being movably-coupled seat and back-rest
- A47C1/03261—Reclining or easy chairs having coupled concurrently adjustable supporting parts the parts being movably-coupled seat and back-rest characterised by elastic means
- A47C1/03266—Reclining or easy chairs having coupled concurrently adjustable supporting parts the parts being movably-coupled seat and back-rest characterised by elastic means with adjustable elasticity
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47C—CHAIRS; SOFAS; BEDS
- A47C1/00—Chairs adapted for special purposes
- A47C1/02—Reclining or easy chairs
- A47C1/031—Reclining or easy chairs having coupled concurrently adjustable supporting parts
- A47C1/032—Reclining or easy chairs having coupled concurrently adjustable supporting parts the parts being movably-coupled seat and back-rest
- A47C1/03261—Reclining or easy chairs having coupled concurrently adjustable supporting parts the parts being movably-coupled seat and back-rest characterised by elastic means
- A47C1/03272—Reclining or easy chairs having coupled concurrently adjustable supporting parts the parts being movably-coupled seat and back-rest characterised by elastic means with coil springs
Definitions
- the invention relates to a chair, in particular an office chair, comprising a pedestal; a seat support which supports itself thereon by a chair column; a seat which supports itself on the seat support on at least two portions of support which are spaced apart; a backrest which is fixed to the seat support; an adjusting element for modification of the height of at least one of the portions of support, the adjusting element being rotatable about an adjusting-element axis of rotation; and a turning handle for operation of the adjusting element, the turning handle being connected to the adjusting element and rotatable about a turning-handle axis of rotation.
- a chair of the generic type is known from prior public use. Adjusting the inclination of the seat takes place by a handwheel which is extended downwards out of the seat support. For seat inclination adjustment, a user must get off the chair, which is inconvenient.
- this object is attained by the features wherein the turning handle is connected to the adjusting element via a coupling element for translation of the operating motion of rotation into an adjusting motion; and wherein the adjusting-element axis of rotation and the turning-handle axis of rotation are not in alignment.
- the gist of the invention resides in providing, between the adjusting element and the inclination turning handle, a coupling element which permits a turning moment to be transmitted from the turning handle to the adjusting element, there being no need for the axis of rotation of the adjusting element to align with that of the turning handle.
- This provides for greater freedom of design of the inclination turning handle so that it becomes more freely accessible for a user, in particular when the user is sitting.
- the coupling element can be embodied in such a way that the adjusting-element systems of existing chair constructions can be completed in a constructionally simple way.
- Coupling elements comprising a deviating gear, with the deviating gear being a bevel gear pair which is in particular spur toothed, also permit safe transmission of comparatively high transmission forces.
- a turning handle that is laterally extended out of the seat support part is easily accessible even when the user is sitting.
- An adjusting element in the form of an adjusting screw is not complicated constructionally.
- FIG. 1 is a perspective view of an entire chair
- FIG. 2 is a plan view, partially sectional, of a seat support of the chair according to FIG. 1;
- FIG. 3 is an interrupted plan view, not sectional, of the seat support similar to FIG. 2;
- FIG. 4 is a sectional view on the line IV-IV of FIG. 2;
- FIG. 5 is a sectional view on the line V-V of FIG. 2 with an adjusting screw in a position screwed further out as compared to FIG. 4;
- FIG. 6 is a plan view, similar to FIG. 3, of the seat support, showing another portion thereof;
- FIG. 7 is a sectional view on the line VII-VII of FIG. 6;
- FIG. 8 is a sectional view, similar to FIG. 7, showing another position of two chair seat support parts relative to each other;
- FIG. 9 is a plan view, similar to FIG. 2, of a seat support of an alternative chair
- FIG. 10 is a sectional view on the line X-X of FIG. 9.
- FIG. 11 is a sectional view on the line XI-XI of FIG. 10.
- FIG. 1 illustrates an office chair with a chair stand 1 .
- the chair stand 1 comprises a pedestal 2 which supports itself via castors 3 on the ground.
- An adjustable height chair column 4 is mounted on the pedestal 2 ;
- a seat support 5 is fixed to the upper end of the column 4 .
- the seat support 5 is of two-piece design; it comprises a front seat support part 6 mounted on the chair column 4 and a rear seat support part 7 which, above the chair column 4 , is articulated to the front seat support part 6 by means of a hinge that is rotatable about a pivoting axis 8 .
- a stay pipe 9 which is parallel to the pivoting axis 8 is secured in the front area of the front seat support part 6 .
- a seat 10 supports itself on this stay pipe 9 shortly behind its front edge 11 .
- the stay pipe 9 constitutes a front support section for the seat 10 .
- the seat 10 supports itself by its rear area on a supporting axis 12 which is lodged in the rear seat support part 7 .
- the supporting axis 12 is a rear support section for the seat 10 .
- a seat inclination adjusting device 13 is disposed on the rear seat support part 7 .
- a backrest support 14 with a backrest 15 mounted thereon projects upwards from the rear seat support part 7 on which it is integrally formed.
- a backrest height adjusting device 16 is provided for height adjustment of the backrest 15 relative to the seat 10 .
- the described design of the seat support 5 comprising the arrangement of the seat 10 and the backrest 15 , constitutes a so-called synchronous mechanism.
- a force variation equipment which is designated in its entirety by 17 and will be explained in detail below.
- An adjusting nut 18 which stands out downwards from the front seat support part 6 , is part of the force variation equipment 17 ;
- FIG. 1 illustrates a freely rotatable cap 19 of this adjusting nut 18 .
- Armrests 20 are arranged on the outer ends of the stay pipe 9 in vicinity to the front edge 11 of the seat 10 . Only one armrest 20 is visible in the lateral view of FIG. 1.
- the chair column 4 For height adjustment of the seat support 5 , together with the seat 10 and the backrest 15 , the chair column 4 comprises a known adjustable-length gas spring 21 , which is seen in a plan view in FIG. 3.
- the gas spring 21 is clamped in a clamping device 22 , in the form of a cone, of the front seat support part 6 .
- a valve control pin 23 projects upwards from the gas spring 21 ; when it is pushed into the gas spring 21 , this will open a valve that is located there, enabling the gas spring 21 to be adjusted in length.
- Gas springs of the generic type are illustrated and described for example in U.S. Pat. No. 3,656,593.
- valve control pin 23 For actuation of the valve control pin 23 , provision is made for a two-arm valve control lever 24 which supports itself pivotably on the pivoting axis 8 , as specified for example in DE 43 24 545 A1. A first lever arm 25 of the valve control lever 24 bears against the valve control pin 23 , whereas the second lever arm 26 can be operated by a lever mechanism known from DE 43 24 545 A1.
- any pivoting of the rear seat support part 7 relative to the front seat support part 6 is counteracted by an energy storing device 27 which is a pre-loaded helical compression spring 28 in the exemplary embodiment shown.
- the spring 28 by way of a pivoting abutment 29 seen in particular in FIGS. 2 and 5, supports itself on the front seat support part 6 in an area in vicinity to the front edge 11 of the seat 10 .
- the energy storing device 27 comprises a guide rod 30 which passes through the helical compression spring 28 .
- the helical compression spring 28 supports itself on a guide shoe 31 of the force variation equipment 17 .
- the guide shoe 31 bears against a slide face 32 formed on a first short lever arm 33 of the rear seat support part 7 .
- the lever arm 33 is integral with the rear seat support part 7 , extending from the pivoting axis 8 substantially downwards.
- the rear seat support part 7 has the geometry of an elbow lever.
- the guide shoe 31 is displaceable on the guide rod 30 along the helical compression spring 28 .
- the force variation equipment 17 acts on an adjusting section 34 , opposite the abutment 29 , of the guide rod 30 .
- a connecting section 35 adjoining the adjusting section 34 , of the guide rod 30 passes through the first lever arm 33 of the rear seat support part 7 .
- the connecting section 35 is elbowed in a direction towards the rear seat support part 7 .
- the adjusting section 34 of the guide rod 30 is therefore crimped towards the rear seat support part 7 and arranged in vicinity to the seat support 5 .
- An adjusting screw 36 is part of the force variation equipment 17 ; it is pivotably articulated to the adjusting section 34 of the guide rod 30 by way of a hinge with a pivoting axis 37 .
- the adjusting screw 36 engages with the adjusting nut 18 which is lodged in a bottom wall 38 of the front seat support part 6 rotatably, but nondisplaceably in the direction of the adjusting screw 36 .
- the adjusting nut 18 is provided with a spur toothed conical section 39 .
- An equally spur toothed conical section 40 of an end portion 41 of a turning handle 42 engages with the gear ring of the spur toothed conical section 39 , the two conical sections 39 , 40 forming a spur toothed bevel gear pair.
- An axis of rotation 43 of the adjusting screw 36 and an axis of rotation 44 of the turning handle 42 are not in alignment, but intersect, together making a right angle.
- the end portion 41 is lodged in a side wall 45 of the front seat support part 6 for rotation, but not for displacement axially of the axis of rotation 44 of the turning handle 42 .
- the free end of the turning 42 is an oval handle 46 with recessed grips 47 .
- the handle 46 has a central drilled hole 48 which is closed at the free end of the handle 46 by a cap 49 which is placed on.
- a connecting bolt 50 is inserted into the drilled hole, securing the handle 46 to the end portion 41 of the turning handle 42 .
- the conical sections 39 , 40 constitute a coupling element, by way of which the turning handle 42 is connected to the adjusting screw 36 as an adjusting element.
- the guide rod 30 is pivoted about the hinge of the abutment 29 by way of the hinge with the pivoting axis 37 . In doing so, the guide shoe 31 is displaced on the slide face 32 of the first lever arm 33 , this modifying the distance a of the axis of the energy storing device 27 from the pivoting axis 8 .
- the slide face 32 lies at least approximately on a segment of an arc of a circle, the center of which is above the axis of the hinge of the abutment 29 , a distance b between the pivoting axis of the abutment 29 and the intersection of the axis of the energy storing device 27 by the slide face 32 changes only slightly upon rotation of the turning handle 42 . Therefore these adjustments virtually do not change the preload of the helical compression spring 28 . Bringing the slide face 32 slightly out of center in relation to the hinge formed by the abutment 29 , as described above, helps put into practice that a tensile force, transmitted by the helical compression spring 28 , always acts on the adjusting screw 36 .
- the adjusting screw 36 is always definitely guided in the adjusting nut 18 such that the flanks of the thread of the adjusting screw 36 , which lie on top in FIG. 5, rest on the corresponding flanks of the internal thread of the adjusting nut 18 .
- the interlocking mechanism 50 comprises a lock 51 which is articulated to the front seat support part 6 pivotably about a hinge with a pivoting axis 52 .
- the pivoting axis 52 substantially coincides with the pivoting axis of the abutment 29 .
- the free end, turned away from the pivoting axis 52 , of the lock 51 is provided with a horizontal bolt 53 which is fixed to the lock 51 , passing there-through such that it projects horizontally from the lock 51 on both sides.
- a counterpart body 54 which cooperates with the lock 51 is part of the interlocking mechanism 50 .
- the counterpart body 54 is articulated to the front seat support part 6 pivotably about a hinge with the pivoting axis 55 .
- the pivoting axes 52 , 55 are spaced apart and parallel.
- the counterpart body 54 comprises two parallel and vertical plates 56 which are spaced apart and perpendicular to the pivoting axis 55 . They have a triangular configuration by rough approximation and the side opposite the pivoting axis 55 lies approximately on a segment of an arc of a circle, working as a circumferential locking section 57 ; the pivoting axis 55 is the center of this segment of an arc of a circle.
- the circumferential locking section 57 of the plates 56 is provided with four substantially semi-circular locking receptacles 58 , two locking receptacles of each plate 56 aligning in pairs.
- the width of the locking receptacles 58 is complementary of the bolt 53 of the lock 51 and dimensioned such that the bolt 53 can engage, substantially free from play, with a pair of locking receptacles 58 so that one of the two free ends of the bolt 53 engages with one of the two locking receptacles 58 of the corresponding pair of locking receptacles 58 .
- a link 60 is articulated as a coupling element to the counterpart body 54 .
- the pivoting axes 55 and 59 are spaced apart and parallel.
- the link 60 is articulated to the first short lever arm 33 of the rear seat support part 7 .
- the pivoting axis 61 is parallel to, and spaced from, the pivoting axes 8 and 59 .
- the lock 51 can be operated by an operating handle 63 which extends laterally out of the stay pipe 9 , as seen in FIG. 1.
- FIG. 7 illustrates the interlocking mechanism 50 in a position in which the bolt 53 is allocated to the locking receptacle 58 on the far left in the lateral view of FIGS. 7 and 8. In this position, the rear seat support part 7 and the backrest support 14 are in the most upright position.
- FIG. 8 illustrates the interlocking mechanism 50 in a position in which the bolt 53 is allocated to the locking receptacle 58 on the far right in FIGS. 7 and 8. In this position, the rear seat support part 7 and the backrest support 14 are inclined farthest backwards into a lying position.
- pivoting the rear seat support part 7 about the pivoting axis 8 leads to the counterpart body 54 being further pivoted about the pivoting axis 55 as compared to the distance ratio.
- the link 60 therefore works as a mechanical transmission member, transmitting the pivoting of the counterpart body 54 in relation to the pivoting of the rear seat support part 7 .
- the interlocking mechanism 50 is out of function so that synchronous motion of the seat support parts 6 , 7 relative to each other is possible.
- the synchronous mechanism out of work, i.e. when he wants to interlock the seat support parts 6 , 7 , he will first move the rear seat support part 7 into a desired position relative to the front seat support part 6 by corresponding pressure on the backrest 15 and thus on the rear seat support part 7 via the backrest support 14 .
- the user actuates the operating handle 63 , moving the bolt 53 in a direction towards the circumferential locking section 57 .
- the bolt 53 either immediately engages with the locking receptacle 58 that adjoins it or the user proceeds with finely adjusting the seat support parts 6 , 7 relative to each other by corresponding pressure on the backrest 15 until the bolt 53 engages with the corresponding pair of locking receptacles 58 .
- the synchronous mechanism is interlocked in the desired position of the seat support parts 6 , 7 relative to each other.
- the link 60 ensures finely graduated, discrete positions of the seat support members 6 , 7 relative to each other in spite of the fact that there is not too small a distance from each other of the locking receptacles 58 in the circumferential direction of the circumferential locking section 57 .
- FIGS. 5 to 8 as well as 10 and 11 illustrate details of the seat inclination adjusting device 13 .
- the supporting axis 12 is supported by a first lever arm 70 of an inclination adjusting lever 71 which is pivotable about a pivoting axis 72 that is parallel to the pivoting axis 8 .
- An inclination adjusting screw 75 is articulated to a second lever arm 73 by way of a hinge with a pivoting axis 74 that is equally parallel to the pivoting axis 8 .
- the inclination adjusting screw 75 is mounted axially displaceably and non-rotatably.
- the inclination adjusting nut 76 engages with an inclination adjusting nut 76 which is lodged in a bottom wall 77 of the rear seat support part 7 rotatably, but non-displaceably in the direction of the inclination adjusting screw 75 .
- the inclination adjusting nut 76 has a spur toothed conical section 78 with the gear ring of which engages an equally spur toothed conical section 79 of an end portion 80 of an inclination turning handle 81 .
- the two conical sections 78 , 79 constitute a spur-toothed bevel gear pair.
- An axis of rotation 82 of the adjusting screw 75 and an axis of rotation 83 of the inclination turning handle 81 do not align, but intersect, making a right angle.
- the axes of rotation 44 and 83 of the turning handles 42 and 81 are parallel; the handles 42 and 81 stand out on the same side of the seat support 5 .
- the end portion 80 is lodged in a side wall 84 of a casing 85 for rotation, but against displacement axially of the axis of rotation 83 of the inclination turning handle 81 ; the casing 85 is fixed to the rear seat support part 7 .
- the free end of the turning handle 81 is an oval handle 46 so that, in this regard, reference can be made to the description of the turning handle 42 .
- any rotation of the inclination turning handle 81 is translated by the interengaging conical sections 78 , 79 into an axial adjusting motion of the adjusting screw 75 along the axis of rotation 82 .
- the conical sections 78 , 79 therefore constitute a coupling element by way of which the inclination turning handle 81 is connected to the adjusting screw 75 as an adjusting element.
- the inclination adjusting lever 71 is pivoted about the pivoting axis 72 via the hinge with the pivoting axis 74 . This serves to adjust the height of the supporting axis 12 above the ground and thus the inclination of the seat 10 .
- mechanical coupling of the motions of rotation of the turning handle 42 about the axis of rotation 44 on the one hand and of the adjusting screw 36 about the axis of rotation 43 on the other hand is effected by a flexible shaft, in particular a spring shaft, instead of a bevel gear pair.
- Flexible power transmission shafts of this type are known.
- Such a flexible shaft also serves to enable mechanical coupling to take place of the motions of rotation of the inclination turning handle 81 about the axis of rotation 83 on the one hand and of the adjusting screw 75 about the axis of rotation 82 on the other hand.
- a coupling element with a flexible shaft, in particular a spring shaft has an especially simple structure.
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Abstract
A chair comprises a seat support with a front seat support part and a rear seat support part which is connected thereto via a pivoting axis. Seat inclination can be modified by means of an adjusting element by operation of a turning handle. The turning handle is connected to the adjusting element via a coupling element, with the axes of rotation of the adjusting element and turning handle not being in alignment. This ensures conveniently accessible modification of seat inclination.
Description
- 1. Field of the Invention
- The invention relates to a chair, in particular an office chair, comprising a pedestal; a seat support which supports itself thereon by a chair column; a seat which supports itself on the seat support on at least two portions of support which are spaced apart; a backrest which is fixed to the seat support; an adjusting element for modification of the height of at least one of the portions of support, the adjusting element being rotatable about an adjusting-element axis of rotation; and a turning handle for operation of the adjusting element, the turning handle being connected to the adjusting element and rotatable about a turning-handle axis of rotation.
- 2. Background Art
- A chair of the generic type is known from prior public use. Adjusting the inclination of the seat takes place by a handwheel which is extended downwards out of the seat support. For seat inclination adjustment, a user must get off the chair, which is inconvenient.
- It is an object of the invention to improve a chair of the generic type in such a way that regulating the inclination of the seat of the chair is easily feasible.
- According to the invention, this object is attained by the features wherein the turning handle is connected to the adjusting element via a coupling element for translation of the operating motion of rotation into an adjusting motion; and wherein the adjusting-element axis of rotation and the turning-handle axis of rotation are not in alignment.
- The gist of the invention resides in providing, between the adjusting element and the inclination turning handle, a coupling element which permits a turning moment to be transmitted from the turning handle to the adjusting element, there being no need for the axis of rotation of the adjusting element to align with that of the turning handle. This provides for greater freedom of design of the inclination turning handle so that it becomes more freely accessible for a user, in particular when the user is sitting. The coupling element can be embodied in such a way that the adjusting-element systems of existing chair constructions can be completed in a constructionally simple way.
- Coupling elements comprising a deviating gear, with the deviating gear being a bevel gear pair which is in particular spur toothed, also permit safe transmission of comparatively high transmission forces.
- Given an embodiment of the coupling element according to which a conical gear wheel of the bevel gear pair has an internal thread with which engages an external gear, complementary thereof, of another coupling component of the coupling element, in particular of the adjusting element, mechanical components of known chair constructions can be adopted virtually without modification.
- A turning handle that is laterally extended out of the seat support part is easily accessible even when the user is sitting.
- An adjusting element in the form of an adjusting screw is not complicated constructionally.
- Details of the invention will become apparent from the ensuing description of an exemplary embodiment of the invention, taken in conjunction with the drawing:
- FIG. 1 is a perspective view of an entire chair;
- FIG. 2 is a plan view, partially sectional, of a seat support of the chair according to FIG. 1;
- FIG. 3 is an interrupted plan view, not sectional, of the seat support similar to FIG. 2;
- FIG. 4 is a sectional view on the line IV-IV of FIG. 2;
- FIG. 5 is a sectional view on the line V-V of FIG. 2 with an adjusting screw in a position screwed further out as compared to FIG. 4;
- FIG. 6 is a plan view, similar to FIG. 3, of the seat support, showing another portion thereof;
- FIG. 7 is a sectional view on the line VII-VII of FIG. 6;
- FIG. 8 is a sectional view, similar to FIG. 7, showing another position of two chair seat support parts relative to each other;
- FIG. 9 is a plan view, similar to FIG. 2, of a seat support of an alternative chair;
- FIG. 10 is a sectional view on the line X-X of FIG. 9; and
- FIG. 11 is a sectional view on the line XI-XI of FIG. 10.
- FIG. 1 illustrates an office chair with a
chair stand 1. Thechair stand 1 comprises apedestal 2 which supports itself via castors 3 on the ground. An adjustableheight chair column 4 is mounted on thepedestal 2; aseat support 5 is fixed to the upper end of thecolumn 4. Theseat support 5 is of two-piece design; it comprises a frontseat support part 6 mounted on thechair column 4 and a rearseat support part 7 which, above thechair column 4, is articulated to the frontseat support part 6 by means of a hinge that is rotatable about apivoting axis 8. Astay pipe 9 which is parallel to thepivoting axis 8 is secured in the front area of the frontseat support part 6. Aseat 10 supports itself on thisstay pipe 9 shortly behind itsfront edge 11. Thestay pipe 9 constitutes a front support section for theseat 10. Theseat 10 supports itself by its rear area on a supportingaxis 12 which is lodged in the rearseat support part 7. The supportingaxis 12 is a rear support section for theseat 10. A seat inclination adjusting device 13 is disposed on the rearseat support part 7. - A backrest support14 with a
backrest 15 mounted thereon projects upwards from the rear seat supportpart 7 on which it is integrally formed. A backrestheight adjusting device 16 is provided for height adjustment of thebackrest 15 relative to theseat 10. - The described design of the
seat support 5, comprising the arrangement of theseat 10 and thebackrest 15, constitutes a so-called synchronous mechanism. For modification for the forces that must be overcome by a user upon adjustment or during rocking, provision is made for a force variation equipment which is designated in its entirety by 17 and will be explained in detail below. An adjustingnut 18, which stands out downwards from the frontseat support part 6, is part of theforce variation equipment 17; FIG. 1 illustrates a freelyrotatable cap 19 of this adjustingnut 18. -
Armrests 20 are arranged on the outer ends of thestay pipe 9 in vicinity to thefront edge 11 of theseat 10. Only onearmrest 20 is visible in the lateral view of FIG. 1. - For height adjustment of the
seat support 5, together with theseat 10 and thebackrest 15, thechair column 4 comprises a known adjustable-length gas spring 21, which is seen in a plan view in FIG. 3. Thegas spring 21 is clamped in aclamping device 22, in the form of a cone, of the frontseat support part 6. Avalve control pin 23 projects upwards from thegas spring 21; when it is pushed into thegas spring 21, this will open a valve that is located there, enabling thegas spring 21 to be adjusted in length. Gas springs of the generic type are illustrated and described for example in U.S. Pat. No. 3,656,593. For actuation of thevalve control pin 23, provision is made for a two-armvalve control lever 24 which supports itself pivotably on thepivoting axis 8, as specified for example inDE 43 24 545 A1. Afirst lever arm 25 of the valve control lever 24 bears against thevalve control pin 23, whereas thesecond lever arm 26 can be operated by a lever mechanism known fromDE 43 24 545 A1. - Any pivoting of the rear
seat support part 7 relative to the frontseat support part 6 is counteracted by anenergy storing device 27 which is a pre-loadedhelical compression spring 28 in the exemplary embodiment shown. Thespring 28, by way of a pivotingabutment 29 seen in particular in FIGS. 2 and 5, supports itself on the frontseat support part 6 in an area in vicinity to thefront edge 11 of theseat 10. To this end, theenergy storing device 27 comprises aguide rod 30 which passes through thehelical compression spring 28. By its other end, thehelical compression spring 28 supports itself on aguide shoe 31 of theforce variation equipment 17. Theguide shoe 31 bears against aslide face 32 formed on a firstshort lever arm 33 of the rearseat support part 7. Thelever arm 33 is integral with the rearseat support part 7, extending from thepivoting axis 8 substantially downwards. In this regard, the rear seat supportpart 7 has the geometry of an elbow lever. Theguide shoe 31 is displaceable on theguide rod 30 along thehelical compression spring 28. Theforce variation equipment 17 acts on an adjustingsection 34, opposite theabutment 29, of theguide rod 30. A connectingsection 35, adjoining the adjustingsection 34, of theguide rod 30 passes through thefirst lever arm 33 of the rearseat support part 7. Opposite the section of theguide rod 30 that passes through thehelical compression spring 28, the connectingsection 35 is elbowed in a direction towards the rearseat support part 7. The adjustingsection 34 of theguide rod 30 is therefore crimped towards the rearseat support part 7 and arranged in vicinity to theseat support 5. - An adjusting
screw 36 is part of theforce variation equipment 17; it is pivotably articulated to the adjustingsection 34 of theguide rod 30 by way of a hinge with a pivotingaxis 37. - The distance between the pivoting
axis 8 and theseat support parts helical compression spring 28 on the other is designated by a in FIG. 5. - The adjusting
screw 36 engages with the adjustingnut 18 which is lodged in abottom wall 38 of the frontseat support part 6 rotatably, but nondisplaceably in the direction of the adjustingscrew 36. At the end opposite thecap 19, the adjustingnut 18 is provided with a spur toothedconical section 39. An equally spur toothedconical section 40 of anend portion 41 of a turninghandle 42 engages with the gear ring of the spur toothedconical section 39, the twoconical sections rotation 43 of the adjustingscrew 36 and an axis ofrotation 44 of the turning handle 42 are not in alignment, but intersect, together making a right angle. Theend portion 41 is lodged in aside wall 45 of the frontseat support part 6 for rotation, but not for displacement axially of the axis ofrotation 44 of the turninghandle 42. - The free end of the turning 42 is an
oval handle 46 with recessed grips 47. Thehandle 46 has a central drilledhole 48 which is closed at the free end of thehandle 46 by acap 49 which is placed on. A connectingbolt 50 is inserted into the drilled hole, securing thehandle 46 to theend portion 41 of the turninghandle 42. - Upon rotation of the turning
handle 42, this rotation is translated, via the interengagingconical sections screw 36 along the axis ofrotation 43. Therefore, theconical sections screw 36 as an adjusting element. Upon rotation of the turninghandle 42, theguide rod 30 is pivoted about the hinge of theabutment 29 by way of the hinge with the pivotingaxis 37. In doing so, theguide shoe 31 is displaced on theslide face 32 of thefirst lever arm 33, this modifying the distance a of the axis of theenergy storing device 27 from the pivotingaxis 8. Since theslide face 32 lies at least approximately on a segment of an arc of a circle, the center of which is above the axis of the hinge of theabutment 29, a distance b between the pivoting axis of theabutment 29 and the intersection of the axis of theenergy storing device 27 by the slide face 32 changes only slightly upon rotation of the turninghandle 42. Therefore these adjustments virtually do not change the preload of thehelical compression spring 28. Bringing theslide face 32 slightly out of center in relation to the hinge formed by theabutment 29, as described above, helps put into practice that a tensile force, transmitted by thehelical compression spring 28, always acts on the adjustingscrew 36. As a result, the adjustingscrew 36 is always definitely guided in the adjustingnut 18 such that the flanks of the thread of the adjustingscrew 36, which lie on top in FIG. 5, rest on the corresponding flanks of the internal thread of the adjustingnut 18. - The force by which the
helical compression spring 28 acts on thefirst lever arm 33 of the rearseat support part 7 is not changed; only the active lever arm i.e., the turning moment by which thehelical compression spring 28 acts on the rearseat support part 7 and thus on theseat 10 and thebackrest 15, is changed by modification of the distance a between the axis of theenergy storing device 27 and the pivotingaxis 8. This turning moment is the smaller the smaller the distance a and vice versa. The adjusting forces which are to be applied to the turning handle 42 throughout the adjusting travel of theguide shoe 31 can be kept constant, frictional forces between theguide shoe 31 and theslide face 32 and also the operating forces of the mechanical coupling between theguide rod 30 and the turning handle 42 virtually not changing. - For the joint pivotability of the
seat 10 and thebackrest 15 in the synchronous mechanism to be inactivated against the power of thehelical compression spring 28, provision is made for aninterlocking mechanism 50 seen in FIGS. 6 to 8. The interlockingmechanism 50 comprises alock 51 which is articulated to the frontseat support part 6 pivotably about a hinge with a pivotingaxis 52. The pivotingaxis 52 substantially coincides with the pivoting axis of theabutment 29. The free end, turned away from the pivotingaxis 52, of thelock 51 is provided with ahorizontal bolt 53 which is fixed to thelock 51, passing there-through such that it projects horizontally from thelock 51 on both sides. - A
counterpart body 54 which cooperates with thelock 51 is part of the interlockingmechanism 50. Thecounterpart body 54 is articulated to the frontseat support part 6 pivotably about a hinge with the pivotingaxis 55. The pivoting axes 52, 55 are spaced apart and parallel. Thecounterpart body 54 comprises two parallel andvertical plates 56 which are spaced apart and perpendicular to the pivotingaxis 55. They have a triangular configuration by rough approximation and the side opposite the pivotingaxis 55 lies approximately on a segment of an arc of a circle, working as acircumferential locking section 57; the pivotingaxis 55 is the center of this segment of an arc of a circle. - The
circumferential locking section 57 of theplates 56 is provided with four substantiallysemi-circular locking receptacles 58, two locking receptacles of eachplate 56 aligning in pairs. The width of the lockingreceptacles 58 is complementary of thebolt 53 of thelock 51 and dimensioned such that thebolt 53 can engage, substantially free from play, with a pair of lockingreceptacles 58 so that one of the two free ends of thebolt 53 engages with one of the two lockingreceptacles 58 of the corresponding pair of lockingreceptacles 58. - Via a hinge with a pivoting
axis 59, alink 60 is articulated as a coupling element to thecounterpart body 54. The pivoting axes 55 and 59 are spaced apart and parallel. Via another hinge with a pivotingaxis 61, thelink 60 is articulated to the firstshort lever arm 33 of the rearseat support part 7. The pivotingaxis 61 is parallel to, and spaced from, the pivotingaxes - By way of a
coupling bolt 62, which is fixed to the frontseat support part 6 by means of a support, thelock 51 can be operated by anoperating handle 63 which extends laterally out of thestay pipe 9, as seen in FIG. 1. - FIG. 7 illustrates the interlocking
mechanism 50 in a position in which thebolt 53 is allocated to the lockingreceptacle 58 on the far left in the lateral view of FIGS. 7 and 8. In this position, the rearseat support part 7 and thebackrest support 14 are in the most upright position. - FIG. 8 illustrates the interlocking
mechanism 50 in a position in which thebolt 53 is allocated to the lockingreceptacle 58 on the far right in FIGS. 7 and 8. In this position, the rearseat support part 7 and thebackrest support 14 are inclined farthest backwards into a lying position. - As the distance between the pivoting
axes seat support part 7 about the pivotingaxis 8 leads to thecounterpart body 54 being further pivoted about the pivotingaxis 55 as compared to the distance ratio. Thelink 60 therefore works as a mechanical transmission member, transmitting the pivoting of thecounterpart body 54 in relation to the pivoting of the rearseat support part 7. - Normally the interlocking
mechanism 50 is out of function so that synchronous motion of theseat support parts seat support parts seat support part 7 into a desired position relative to the frontseat support part 6 by corresponding pressure on thebackrest 15 and thus on the rearseat support part 7 via thebackrest support 14. Afterwards the user actuates the operatinghandle 63, moving thebolt 53 in a direction towards thecircumferential locking section 57. Then thebolt 53 either immediately engages with the lockingreceptacle 58 that adjoins it or the user proceeds with finely adjusting theseat support parts backrest 15 until thebolt 53 engages with the corresponding pair of lockingreceptacles 58. Once this is done, the synchronous mechanism is interlocked in the desired position of theseat support parts link 60 ensures finely graduated, discrete positions of theseat support members receptacles 58 in the circumferential direction of thecircumferential locking section 57. - FIGS.5 to 8 as well as 10 and 11 illustrate details of the seat inclination adjusting device 13. For seat inclination adjustment, it is possible to vary the height of the supporting
axis 12 on which the rear portion of the seat supports itself. To this end, the supportingaxis 12 is supported by afirst lever arm 70 of aninclination adjusting lever 71 which is pivotable about a pivotingaxis 72 that is parallel to the pivotingaxis 8. Aninclination adjusting screw 75 is articulated to asecond lever arm 73 by way of a hinge with a pivotingaxis 74 that is equally parallel to the pivotingaxis 8. Theinclination adjusting screw 75 is mounted axially displaceably and non-rotatably. It engages with aninclination adjusting nut 76 which is lodged in abottom wall 77 of the rearseat support part 7 rotatably, but non-displaceably in the direction of theinclination adjusting screw 75. At the end opposite the pivotingaxis 74, theinclination adjusting nut 76 has a spur toothedconical section 78 with the gear ring of which engages an equally spur toothedconical section 79 of anend portion 80 of aninclination turning handle 81. The twoconical sections rotation 82 of the adjustingscrew 75 and an axis ofrotation 83 of theinclination turning handle 81 do not align, but intersect, making a right angle. The axes ofrotation handles seat support 5. Theend portion 80 is lodged in aside wall 84 of acasing 85 for rotation, but against displacement axially of the axis ofrotation 83 of theinclination turning handle 81; thecasing 85 is fixed to the rearseat support part 7. - The free end of the turning
handle 81, as that of the turninghandle 42, is anoval handle 46 so that, in this regard, reference can be made to the description of the turninghandle 42. - Any rotation of the
inclination turning handle 81 is translated by the interengagingconical sections screw 75 along the axis ofrotation 82. Theconical sections inclination turning handle 81 is connected to the adjustingscrew 75 as an adjusting element. Upon rotation of theinclination turning handle 81, theinclination adjusting lever 71 is pivoted about the pivotingaxis 72 via the hinge with the pivotingaxis 74. This serves to adjust the height of the supportingaxis 12 above the ground and thus the inclination of theseat 10. The higher the supportingaxis 12 is set, the more theseat 10 inclines downwards in the direction towards itsfront edge 11. - In another embodiment (not shown), mechanical coupling of the motions of rotation of the turning handle42 about the axis of
rotation 44 on the one hand and of the adjustingscrew 36 about the axis ofrotation 43 on the other hand is effected by a flexible shaft, in particular a spring shaft, instead of a bevel gear pair. Flexible power transmission shafts of this type are known. Such a flexible shaft also serves to enable mechanical coupling to take place of the motions of rotation of theinclination turning handle 81 about the axis ofrotation 83 on the one hand and of the adjustingscrew 75 about the axis ofrotation 82 on the other hand. - A coupling element with a flexible shaft, in particular a spring shaft, has an especially simple structure.
Claims (6)
1. A chair, in particular office chair, comprising
a pedestal (2);
a seat support (5) which supports itself thereon by a chair column (4),
a seat (10) which supports itself on the seat support (5) on at least two portions of support (9, 12) which are spaced apart;
a backrest (15) which is fixed to the seat support (5);
an adjusting element (75) for modification of the height of at least one of the portions of support (9, 12), the adjusting element (75) being rotatable about an adjusting-element axis of rotation (82); and
a turning handle (81) for operation of the adjusting element (75), the turning handle (81) being connected to the adjusting element (75) and rotatable about a turning-handle axis of rotation (83);
wherein the turning handle (81) is connected to the adjusting element (75) via a coupling element (76, 78, 79) for translation of the operating motion of rotation into an adjusting motion; and
wherein the adjusting-element axis of rotation (82) and the turning-handle axis of rotation (83) are not in alignment.
2. A chair according to claim 1 , wherein the coupling element (76, 78, 79) comprises a deviating gear (78, 79).
3. A chair according to claim 2 , wherein the deviating gear (78, 79) is a bevel gear pair which is in particular spur toothed.
4. A chair according to claim 3 , wherein a conical gear wheel (78) of the bevel gear pair (78, 79) has an internal thread with which engages an external gear, complementary thereof, of another coupling component of the coupling element (76, 78, 79), in particular of the adjusting element (75).
5. A chair according to claim 1 , wherein the turning handle (81) is laterally extended out of a seat support part (7).
6. A chair according to claim 1 , wherein the adjusting element (75) is an adjusting screw.
Applications Claiming Priority (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE10309922.0 | 2003-03-07 | ||
DE10309921A DE10309921A1 (en) | 2003-03-07 | 2003-03-07 | Chair, especially office chair |
DE10309920A DE10309920A1 (en) | 2003-03-07 | 2003-03-07 | Chair, especially office chair |
DE10309922A DE10309922A1 (en) | 2003-03-07 | 2003-03-07 | Chair, especially office chair |
Publications (1)
Publication Number | Publication Date |
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US20040212235A1 true US20040212235A1 (en) | 2004-10-28 |
Family
ID=42315213
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Application Number | Title | Priority Date | Filing Date |
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US10/792,772 Expired - Fee Related US6945603B2 (en) | 2003-03-07 | 2004-03-05 | Chair, in particular office chair |
US10/792,771 Abandoned US20040212235A1 (en) | 2003-03-07 | 2004-03-05 | Chair, in particular office chair |
US10/793,770 Expired - Fee Related US7036882B2 (en) | 2003-03-07 | 2004-03-08 | Chair, in particular office chair |
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US10/792,772 Expired - Fee Related US6945603B2 (en) | 2003-03-07 | 2004-03-05 | Chair, in particular office chair |
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US10/793,770 Expired - Fee Related US7036882B2 (en) | 2003-03-07 | 2004-03-08 | Chair, in particular office chair |
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US (3) | US6945603B2 (en) |
EP (3) | EP1454569B1 (en) |
CN (3) | CN100486483C (en) |
AT (3) | ATE338492T1 (en) |
DE (6) | DE10309922A1 (en) |
DK (3) | DK1454566T3 (en) |
ES (3) | ES2309407T3 (en) |
HK (2) | HK1069296A1 (en) |
PL (2) | PL1454566T3 (en) |
ZA (3) | ZA200401855B (en) |
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2003
- 2003-03-07 DE DE10309922A patent/DE10309922A1/en not_active Withdrawn
- 2003-03-07 DE DE10309920A patent/DE10309920A1/en not_active Withdrawn
- 2003-03-07 DE DE10309921A patent/DE10309921A1/en not_active Withdrawn
-
2004
- 2004-03-02 DK DK04004812T patent/DK1454566T3/en active
- 2004-03-02 AT AT04004812T patent/ATE338492T1/en not_active IP Right Cessation
- 2004-03-02 DK DK04004811T patent/DK1454568T3/en active
- 2004-03-02 AT AT04004811T patent/ATE399490T1/en not_active IP Right Cessation
- 2004-03-02 EP EP04004813A patent/EP1454569B1/en not_active Expired - Lifetime
- 2004-03-02 DK DK04004813T patent/DK1454569T3/en active
- 2004-03-02 DE DE502004007465T patent/DE502004007465D1/en not_active Expired - Lifetime
- 2004-03-02 EP EP04004812A patent/EP1454566B1/en not_active Expired - Lifetime
- 2004-03-02 DE DE502004001375T patent/DE502004001375D1/en not_active Expired - Fee Related
- 2004-03-02 AT AT04004813T patent/ATE309721T1/en not_active IP Right Cessation
- 2004-03-02 DE DE502004000132T patent/DE502004000132D1/en not_active Expired - Lifetime
- 2004-03-02 PL PL04004812T patent/PL1454566T3/en unknown
- 2004-03-02 ES ES04004811T patent/ES2309407T3/en not_active Expired - Lifetime
- 2004-03-02 ES ES04004813T patent/ES2255691T3/en not_active Expired - Lifetime
- 2004-03-02 EP EP04004811A patent/EP1454568B1/en not_active Expired - Lifetime
- 2004-03-02 PL PL04004811T patent/PL1454568T3/en unknown
- 2004-03-02 ES ES04004812T patent/ES2273107T3/en not_active Expired - Lifetime
- 2004-03-05 CN CNB2004100079221A patent/CN100486483C/en not_active Expired - Fee Related
- 2004-03-05 ZA ZA200401855A patent/ZA200401855B/en unknown
- 2004-03-05 US US10/792,772 patent/US6945603B2/en not_active Expired - Fee Related
- 2004-03-05 ZA ZA200401854A patent/ZA200401854B/en unknown
- 2004-03-05 ZA ZA200401853A patent/ZA200401853B/en unknown
- 2004-03-05 CN CNA2004100079236A patent/CN1526347A/en active Pending
- 2004-03-05 CN CNB2004100079217A patent/CN100486482C/en not_active Expired - Fee Related
- 2004-03-05 US US10/792,771 patent/US20040212235A1/en not_active Abandoned
- 2004-03-08 US US10/793,770 patent/US7036882B2/en not_active Expired - Fee Related
-
2005
- 2005-03-07 HK HK05101938.8A patent/HK1069296A1/en not_active IP Right Cessation
- 2005-03-07 HK HK05101940.4A patent/HK1069298A1/en not_active IP Right Cessation
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US20090008979A1 (en) * | 2007-04-06 | 2009-01-08 | L & P Property Management Company | Adjustment device for a reclining chair |
US20090008978A1 (en) * | 2007-04-06 | 2009-01-08 | L & P Property Management Company | Adjustment device for adjustable chairs |
US7815257B2 (en) | 2007-04-06 | 2010-10-19 | L & P Property Management Company | Adjustment device for adjustable chairs |
US7866749B2 (en) | 2007-04-06 | 2011-01-11 | L & P Property Management Company | Adjustment device for a reclining chair |
US20100308633A1 (en) * | 2007-10-30 | 2010-12-09 | Donati S.P.A. | mechanism for adjusting the pre-load of a stiffening spring for seats |
US9833074B2 (en) * | 2012-03-08 | 2017-12-05 | Walter Knoll Ag & Co. Kg | Functional chair |
US20150164225A1 (en) * | 2012-03-08 | 2015-06-18 | Walter Knoll Ag & Co. Kg | Functional Chair |
US9027999B2 (en) * | 2012-09-20 | 2015-05-12 | Steelcase Inc. | Control assembly for chair |
USD742677S1 (en) | 2012-09-20 | 2015-11-10 | Steelcase Inc. | Chair |
US20140077551A1 (en) * | 2012-09-20 | 2014-03-20 | Steelcase Inc. | Chair Assembly |
US20140077556A1 (en) * | 2012-09-20 | 2014-03-20 | Steelcase Inc. | Control Assembly for Chair |
US9004597B2 (en) * | 2012-09-20 | 2015-04-14 | Steelcase Inc. | Chair back mechanism and control assembly |
US9010859B2 (en) * | 2012-09-20 | 2015-04-21 | Steelcase Inc. | Chair assembly |
US9022476B2 (en) * | 2012-09-20 | 2015-05-05 | Steelcase Inc. | Control assembly for chair |
US9027998B2 (en) * | 2012-09-20 | 2015-05-12 | Steelcase Inc. | Chair assembly |
US9027997B2 (en) * | 2012-09-20 | 2015-05-12 | Steelcasel Inc. | Chair assembly |
US20140077549A1 (en) * | 2012-09-20 | 2014-03-20 | Steelcase Inc. | Chair Assembly |
US9049935B2 (en) | 2012-09-20 | 2015-06-09 | Steelcase Inc. | Control assembly for chair |
US20140077553A1 (en) * | 2012-09-20 | 2014-03-20 | Steelcase Inc. | Chair Back Mechanism and Control Assembly |
USD742676S1 (en) | 2012-09-20 | 2015-11-10 | Steelcase Inc. | Chair |
US20140077557A1 (en) * | 2012-09-20 | 2014-03-20 | Steelcase Inc. | Control Assembly for Chair |
US9345328B2 (en) | 2012-09-20 | 2016-05-24 | Steelcase Inc. | Chair assembly with upholstery covering |
US9451826B2 (en) | 2012-09-20 | 2016-09-27 | Steelcase Inc. | Chair assembly |
US9462888B2 (en) | 2012-09-20 | 2016-10-11 | Steelcase Inc. | Control assembly for chair |
US9492013B2 (en) | 2012-09-20 | 2016-11-15 | Steelcase Inc. | Chair back mechanism and control assembly |
US9526339B2 (en) | 2012-09-20 | 2016-12-27 | Steelcase Inc. | Control assembly for chair |
US20140077555A1 (en) * | 2012-09-20 | 2014-03-20 | Steelcase Inc. | Chair Assembly |
US9844267B2 (en) | 2012-09-20 | 2017-12-19 | Steelcase Inc. | Chair back mechanism and control assembly |
US9861201B2 (en) | 2012-09-20 | 2018-01-09 | Steelcase, Inc. | Chair assembly |
US9918552B2 (en) | 2012-09-20 | 2018-03-20 | Steelcase Inc. | Control assembly for chair |
US10206507B2 (en) | 2012-09-20 | 2019-02-19 | Steelcase Inc. | Control assembly for chair |
US11304528B2 (en) | 2012-09-20 | 2022-04-19 | Steelcase Inc. | Chair assembly with upholstery covering |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
STCB | Information on status: application discontinuation |
Free format text: ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION |