This disclosure relates generally to an adjustable furniture piece, and more specifically to a table with an adjustable worksurface.
Tables with adjustable worksurfaces are well known. Such systems are commonly used, for example, in office buildings or in home offices.
Typically, the worksurface is adjusted by pivoting it about a longitudinal axis such that, in the pivoted position, a portion of the worksurface is positioned above the axis of rotation, and a portion of the worksurface is positioned below the axis of rotation. Such a configuration may reduce the vertical displacement of the center of mass of the worksurface during adjustment.
Also, it is common for tables with adjustable worksurfaces to have central support legs, or to have two or more legs whose upper ends are positioned below the central portion of the table. While such a configuration may facilitate the pivoting arrangement discussed above, it may also frustrate and/or prevent a user from being able to sit in a chair at the end of such a table, as the central leg(s) may interfere with the chair and/or the legs of the user.
The following introduction is provided to introduce the reader to the more detailed discussion to follow. The introduction is not intended to limit or define any claimed or as yet unclaimed invention. One or more inventions may reside in any combination or sub-combination of the elements or process steps disclosed in any part of this document including its claims and figures.
In accordance with a broad aspect, there is provided a furniture piece comprising: a worksurface; a longitudinal frame member; a pair of end frame mechanisms positioned at opposing ends of the longitudinal frame member, each end frame mechanism comprising: a lower end frame member secured to the longitudinal frame member, an upper end frame member secured to a lower surface of the worksurface, and a linkage coupling the upper and lower end frame members, the linkage being configured to permit movement of the upper end frame member relative to the lower end frame member; and at least two legs extending downwardly from each lower end frame member for supporting the furniture piece; wherein upper surfaces of the lower end frame members define a substantially horizontal plane, and wherein the worksurface is configured to move between a first position wherein an upper surface of the worksurface is substantially horizontal and a second inclined position wherein the upper surface of the worksurface is located at an angle to the substantially horizontal plane, and wherein, in the second position, the entire worksurface is located above the substantially horizontal plane.
In some embodiments, the linkage comprises, at each end frame mechanism, a first arm rotationally coupled to both the upper and lower end frame member, and a second arm rotationally coupled to both the upper and lower end frame member.
In some embodiments, the first arm is longer than the second arm.
In some embodiments, the furniture piece further comprises a longitudinal support member extending between the first arms of the pair of end frame mechanisms.
In some embodiments, the linkage further comprises, at each end frame mechanism, a biasing member rotationally coupled to both the upper and lower end frame members, the biasing member being configured to extend and urge the worksurface towards the second position.
In some embodiments, the biasing member comprises a gas piston.
In some embodiments, in the second position, the angle between the upper surface of the worksurface and the substantially horizontal plane is greater than 45 degrees.
In some embodiments, in the second position, the angle between the upper surface of the worksurface and the substantially horizontal plane is about 70 degrees.
In some embodiments, the at least two legs extend downwardly from opposing ends of each lower end frame member.
In some embodiments, the entire upper surface of the worksurface remains above the substantially horizontal plane as the worksurface is moved between the first position and the second position.
In some embodiments, at least one of the end frame mechanisms further comprises a latching system for restraining the worksurface in the first position, the latching system comprising: a latching bar positioned in a latching bar recess of the upper end frame member, the latching bar having at least one latching protrusion that projects from a lower surface of the upper end frame member; and at least one latching recess provided in an upper surface of the lower end frame member, wherein, when the worksurface is in the first position, the at least one latching protrusion is received in the at least one latching recess; wherein the latching bar is configured to move within the latching bar recess between: a latched position in which, when the worksurface is in the first position, the at least one latching protrusion and the at least one latching recess cooperatively retain the worksurface in the first position, and an unlatched position.
In some embodiments, at least one of the end frame mechanisms further comprises a lockout system for restraining the worksurface in the second position, the lockout system comprising: a lockout arm having a first end pivotally coupled to a central portion of the first arm and a second end having a guide protrusion; and a lockout arm guide positioned in the upper end frame member, the lockout arm guide defining a path for the guide protrusion between a first path end and a second path end, the second path end being configured such that the guide protrusion may be releasably retained at the second path end; wherein, when the worksurface is in the second position and the guide protrusion is retained at the second path end, the lockout arm prevents the first arm from rotating relative to the upper end frame member.
In some embodiments, the furniture piece further comprises a release bar configured to move the latching bar from the latched position to the unlatched position, and configured to release the guide protrusion from the second path end.
In accordance with another broad aspect, there is provided a furniture piece comprising: a worksurface; a support frame having a first end, a second end, and an upper surface, the upper surface defining a horizontal plane; a linkage for coupling the support frame to the worksurface; wherein the linkage is configured to permit movement of the worksurface between a first position wherein the worksurface is substantially parallel to the horizontal plane and a second position wherein the worksurface is located at an angle to the horizontal plane; and a first pair of legs extending downwardly from the first end of the support frame and a second pair of legs extending downwardly from the second end of the support frame, wherein upper ends of the legs in each of the first and second pair of legs are spaced apart from each other by at least 300 mm.
In some embodiments, the linkage comprises a first arm rotationally coupled to both the support frame and the worksurface, and a second arm rotationally coupled to both the both the support frame and the worksurface.
In some embodiments, the first arm is longer than the second arm.
In some embodiments, the linkage comprises two linkages, and further comprising a longitudinal support member that extends between the first arms of the linkage.
In some embodiments, the linkage further comprises a biasing member rotationally coupled to both the support frame and the worksurface, the biasing member being configured to extend and urge the worksurface towards the second position.
In some embodiments, the biasing member comprises a gas piston.
In some embodiments, in the second position, the angle between the worksurface and the horizontal plane is greater than 45 degrees.
In some embodiments, in the second position, the worksurface is entirely above the horizontal plane.
In some embodiments, the entire worksurface remains above the horizontal plane as the worksurface is moved between the first position and the second position.
In some embodiments, the upper ends of the legs in each of the first and second pair of legs are spaced apart from each other by at least 400 mm.
In some embodiments, the linkage further comprises a lockout system for restraining the worksurface in the second position, the lockout system comprising: a lockout arm having a first end pivotally coupled to a central portion of the first arm and a second end having a guide protrusion; and a lockout arm guide positioned in an upper end frame member secured to the worksurface, the lockout arm guide defining a path for the guide protrusion between a first path end and a second path end, the second path end being configured such that the guide protrusion may be releasably retained at the second path end; wherein, when the worksurface is in the second position and the guide protrusion is retained at the second path end, the lockout arm prevents the first arm from rotating relative to the upper end frame member.
In some embodiments, the furniture piece further comprises a latching system for restraining the worksurface in the first position, the latching system comprising: a latching bar positioned in a latching bar recess of the upper end frame member, the latching bar having at least one latching protrusion that projects from a lower surface of the upper end frame member; and at least one latching recess provided in an upper surface of a lower end frame member, wherein, when the worksurface is in the first position, the at least one latching protrusion is received in the at least one latching recess; wherein the latching bar is configured to move within the latching bar recess between: a latched position in which, when the worksurface is in the first position, the at least one latching protrusion and the at least one latching recess cooperatively retain the worksurface in the first position, and an unlatched position.
In some embodiments, the furniture piece further comprises a release bar configured to move the latching bar from the latched position to the unlatched position, and configured to release the guide protrusion from the second path end.
It will be appreciated by a person skilled in the art that a method or apparatus disclosed herein may embody any one or more of the features contained herein and that the features may be used in any particular combination or sub-combination.
These and other aspects and features of various embodiments will be described in greater detail below.
For a better understanding of the described embodiments and to show more clearly how they may be carried into effect, reference will now be made, by way of example, to the accompanying drawings in which:
The drawings included herewith are for illustrating various examples of articles, methods, and apparatuses of the teaching of the present specification and are not intended to limit the scope of what is taught in any way.
Various apparatuses, methods and compositions are described below to provide an example of an embodiment of each claimed invention. No embodiment described below limits any claimed invention and any claimed invention may cover apparatuses and methods that differ from those described below. The claimed inventions are not limited to apparatuses, methods and compositions having all of the features of any one apparatus, method or composition described below or to features common to multiple or all of the apparatuses, methods or compositions described below. It is possible that an apparatus, method or composition described below is not an embodiment of any claimed invention. Any invention disclosed in an apparatus, method or composition described below that is not claimed in this document may be the subject matter of another protective instrument, for example, a continuing patent application, and the applicant(s), inventor(s) and/or owner(s) do not intend to abandon, disclaim, or dedicate to the public any such invention by its disclosure in this document.
Furthermore, it will be appreciated that for simplicity and clarity of illustration, where considered appropriate, reference numerals may be repeated among the figures to indicate corresponding or analogous elements. In addition, numerous specific details are set forth in order to provide a thorough understanding of the example embodiments described herein. However, it will be understood by those of ordinary skill in the art that the example embodiments described herein may be practiced without these specific details. In other instances, well-known methods, procedures, and components have not been described in detail so as not to obscure the example embodiments described herein. Also, the description is not to be considered as limiting the scope of the example embodiments described herein.
While the apparatus and methods disclosed herein are described specifically in relation to a worksurface having a rectangular shape, it will be appreciated that the apparatus and methods may alternatively be used with worksurfaces having any other shape.
Lower end frame member 1100 has a first end 1102, a second end 1104, and first and second downwardly extending projections 1106, 1108, for mounting a pair of table legs to the lower end frame member. In the illustrated embodiment, each projection 1106, 1108 is inserted into a hollow portion at the upper end of a table leg. Projections 1106, 1108 may be secured to the table legs using any suitable coupling method. For example the projections 1106, 1108 may be threaded or otherwise configured to be mechanically coupled to a table leg (e.g. using a screw and a threaded insert in a table leg, using a set screw or other mechanical fastener, etc.). Optionally, a suitable adhesive may be used to secure projections 1106, 1108 to its respective table leg.
As shown, projections 1106, 1108 extend downwardly from lower end frame member 1100, and are configured for insertion into a hollow upper portion of the legs. It will be appreciated that other configurations of leg securement may be possible. For example, lower end frame member 1100 may alternatively have first and second bores or recesses into which an upper portion of table legs may be inserted and secured. Lower end frame member 1100 also has a horizontally extending projection 1109, for mounting to an end of a frame member (e.g. an elongate member 160 having a rectangular cross-sectional profile, as shown in e.g.
As shown, projection 1109 extends outwardly from lower end frame member 1100, and is configured for insertion into a hollow end portion of a frame member. It will be appreciated that other configurations may be possible. For example, lower end frame member 1100 may alternatively have one or more bores or recesses into which one or more projections extending from an end of a frame member may be inserted and secured.
As shown in
Returning to
The upper and lower end frame members 1200, 1100 are connected to each other by linkage 1300. Linkage 1300 guides the movement of the upper end frame member 1200 relative to lower end frame member 1100. Accordingly, as will be discussed further below with respect to
As shown in
In the illustrated embodiment, each end of the arms 1310, 1320 are rotationally coupled to one of end frame members 1100, 1200 by positioning an arm sleeve 1330 in a bore 1335 at the end of the arm, positioning a pair of bushings 1332 within a bore of the arm sleeve 1330, and positioning a shoulder screw 1334 through the bushings 1332 and into a bore in the end frame member. In some embodiments, a threaded insert (not shown) may be secured in the end frame member for receiving the shoulder screw 1334.
When arms 1310, 1320 are rotationally secured to the upper and lower end frame members 1200, 1100, the arms and end frame members may be characterized as a four-bar linkage. It will be appreciated that the lengths of the arms 1310, 1320 (i.e. L1, L2 in
Apparatus 1000 is shown with an optional biasing member 1400 for imparting a force onto the upper end frame member when the worksurface is being adjusted.
Biasing member 1400 is preferably configured to be biased towards an extended state. In the illustrated embodiment, biasing member 1400 comprises a gas spring, which may also be referred to as a gas piston. The gas piston has a cylinder 1410 (which may be referred to as a pressure tube) and an internal piston (not shown) with a piston rod 1420 extending from one end of the cylinder 1410. The gas spring is filled with compressed gas (e.g. nitrogen) that provides the spring force.
Gas piston 1400 is thus normally biased toward an extended state, e.g. piston rod 1420 is normally extended from cylinder 1410. Pushing piston rod 1420 towards and into the cylinder 1410 reduces the volume in the cylinder and the gas is further compressed. This creates an increase in force for the gas spring which, as will be appreciated, depends on e.g. the diameter of the piston rod and the volume of the cylinder.
The internal piston may also have a small opening (e.g. a nozzle) through which gas can flow, thus allowing the piston rod to move inwardly and/or outwardly from the cylinder 1410 at a defined speed. Thus, gas spring 1400 can be configured to impart a force on a worksurface at a relatively constant rate of motion (i.e. at a substantially constant velocity). It will be appreciated that variant designs of gas pistons or other suitable biasing members may be used in alternative embodiments. It will also be appreciated that the cylinder size, stroke length, and/or extension force of gas piston 1400 may be selected based on e.g. the mass of the worksurface, travel distance, etc. For example, gas piston 1400 may have an extension force of from about 150 to about 350 N, and have a travel of from about 80 to about 100 mm.
In the illustrated embodiment, an end 1405 of the gas piston is rotationally coupled to upper end frame member 1200 using a clevis pin 1430 and a cotter pin 1435, and an end 1425 of the piston rod 1420 is rotationally coupled to lower end frame member 1100 using a clevis pin 1430 and a cotter pin 1435. It will be appreciated that any suitable rotational coupling method may alternatively be used.
Notably, as seen in
The operation of a furniture piece with an adjustable worksurface will now be described with reference to
In
As shown in
In the inclined position shown in
As noted above, as the worksurface is adjusted from the level position towards the inclined position shown in
Also, the linkages 1300 and/or gas pistons 1400 are preferably configured so that when worksurface 120 is in the inclined position (e.g. as shown in
Notably, during adjustment of worksurface 120 between the level position and the inclined position, the entire worksurface 120 remains above a horizontal plane defined by the upper surfaces 1105 of lower end frame members 1100. This may have one or more advantages as compared to typical ‘flip-top’ tables in which the worksurface is rotated about a longitudinal axis, whereby, in an inclined position, a portion of the worksurface is below the axis of rotation. For example, as shown in
Also, end frame mechanisms 1000 allow the upper ends of legs 140 to be spaced apart from each other. For example, the distance WL between projections 1106, 1108 (see
Apparatus 1000 preferably includes an optional latching mechanism for positively restraining the upper and lower end frame members in a retracted position (e.g. as shown in 3B, 4G, 6, and 12A).
As shown in
As shown in
As illustrated in
Latching bar 1540 is mounted to upper end frame member 1200 in a manner that allows latching bar 1540 to be displaced (e.g. slid) longitudinally relative to upper end frame member 1200. Such an arrangement allows hooks 1562, 1564 to be displaced (e.g. slid) between an unlatched position in which the hooks are closer to first end 1202 of upper end frame member 1200 and a latched position in which the hooks are closer to second end 1204. Preferably, latching bar 1540 is mechanically biased towards the latched position, e.g. using spring 1590 or a suitable alternative biasing member.
In such an arrangement, when upper and lower end frame members 1200, 1100 are in the retracted position with hooks 1562, 1564 positioned in recesses 1162, 1164 and with the latching bar 1540 in the latched position, hooks 1562, 1564 and hook engagement protrusions 1163, 1165 cooperatively retain (e.g. latch) the upper and lower end frame members 1200, 1100 in the retracted position. To release the upper and lower end frame members 1200, 1100 from the retracted position, latching bar 1540 may be displaced (e.g. slid) longitudinally to the unlatched position, in which the hook engagement protrusions 1163, 1165 no longer prevent hooks 1562, 1564 from being removed from recesses 1162, 1164.
Referring now to
Apparatus 1000 also preferably includes an optional lockout mechanism for positively restraining the upper and lower end frame members and in an extended position (e.g. as shown in
As shown in
As shown in
The second end 1534 of the path 1530 is configured so that the guide protrusion 1516 can be releasably retained at the second end 1534. In the illustrated embodiment, the second end 1534 has a detent 1536 for releasably engaging guide protrusion 1516 when it is at the second end 1534 of the path. More specifically, when guide protrusion 1516 travels along path 1530 and reaches the second end 1534, guide protrusion 1516 engages detent 1536.
Preferably, an optional detent guide, such as resilient detent guide 1538, is provided in path 1530 to promote the engagement of guide protrusion 1516 and detent 1536 as guide protrusion 1516 approaches the second path end 1534.
As shown in
Turning to
Latching bar 1540 is configured so that it can be displaced (e.g. slid) longitudinally to unlatch the upper and lower end frame members 1200, 1100 when they are in the retracted position, and to release lockout arm 1510 from restraining the upper and lower end frame members 1200, 1100 when they are in the extended position.
In the example illustrated in
In the illustrated example, a pivotable member 1700 is provided at the first end 1202 of both upper end frame members 1200, and the pivotable members are coupled to each other via a release bar 175 that extends between them. Accordingly, to release either the latching mechanism (e.g. to permit the worksurface to be adjusted from the level position towards the inclined position) or the lockout mechanism (e.g. to permit the worksurface to be adjusted from the inclined position towards the level position), a user simply pivots the release bar 175 away from the underside of worksurface 120.
While the illustrated example provides for a single release mechanism for both the latching mechanism and the lockout mechanism, it will be appreciated that separate release mechanisms may alternatively be provided. Also, while a pivotable release member 1700 is shown, alternative release systems may alternatively be used. For example, a translational member may be used, requiring a user to e.g. pull or slide release bar 175 away from the first ends 1202 of upper end frame members 1200 to displace latching bar 1540 longitudinally towards the first end 1202.
A variant embodiment of table 100 is shown in
Preferably, as seen in
Optionally, as shown in
As used herein, the wording “and/or” is intended to represent an inclusive-or. That is, “X and/or Y” is intended to mean X or Y or both, for example. As a further example, “X, Y, and/or Z” is intended to mean X or Y or Z or any combination thereof.
While the above description describes features of example embodiments, it will be appreciated that some features and/or functions of the described embodiments are susceptible to modification without departing from the spirit and principles of operation of the described embodiments. For example, the various characteristics which are described by means of the represented embodiments or examples may be selectively combined with each other. Accordingly, what has been described above is intended to be illustrative of the claimed concept and non-limiting. It will be understood by persons skilled in the art that other variants and modifications may be made without departing from the scope of the invention as defined in the claims appended hereto. The scope of the claims should not be limited by the preferred embodiments and examples, but should be given the broadest interpretation consistent with the description as a whole.