[0001] The invention relates to an adjusting member for adjusting a leg of a work- or desktop
for bringing this at predetermined heights as described in the preamble of the main
claim.
[0002] Such an adjusting member is known by
US-A-2 614012. In case of this known member said one part, which can be rotated by means of said
operating arm, is provided with no more than two cams (7,8) arranged in longitudinal
direction, while said other part is provided with a large number of slots for being
able to accomodate said cams at a great number of heights.
[0003] This means that only a stable position of the parts can be obtained when the play
between the cams and slots is very small. So manufacturing of said parts will be expensive
in particular concerning the part in the inner wall of which said slots have to be
provided.
[0004] Further the lower part will have to be prevented from rotating when the upper part
is rotated for moving the cams out of said slots. In view of this at least two legs
will have to be present the lower parts of which have to be connected to prevent the
rotation of said lower parts of said legs. By this the shape of this known adjusting
member is very limited as appears e. g. from fig. 2, 3 and 4 of said publication.
[0005] Now the object of the invention is to provide an adjusting member by which said disadvantages
ar removed.
[0006] According to the invention this is obtained by the features as described in the characterizing
portion of claim 1.
[0007] By this only a limited portion of the related part has to be provided with inner
slots and no connection between the lower parts of said legs is necessary. By this
the production costs can be lowered and the legs can be shaped acoording to the wishes
of the designer.
[0008] According a prefered embodiment said shaft comprises a first shaft part provided
with at least one row of cams and a second shaft part to which said operating arm
is affixed, which parts can be coupled by a snap connection.
[0009] Further said shaft can be provided with a resilient lip mounted to the lower extremity
of it for forming a stop. On insertion of the one part into the other part the resilient
lip is compressed and the shaft can move through the passage in the other part while
in the opposite direction the lip remains in the original position and the stop hits
the fixedly mounted other part of said adjusting member.
[0010] According to a second embodiment, it is provided for, that the one part having at
least one row of cams, is fixedly mounted in the lower tube portion of the leg and
the other part is rotatably mounted in the upper tube portion of said leg. Here, the
second part substantially comprises a receiving member fixedly mounted in the upper
tube portion and a sleeve is rotatably received in said receiving member, the slots
for receiving said cams on the one part being provided at the inside of the sleeve.
[0011] In this embodiment, the upper tube portion of the leg slides into the lower tube
portion of the leg since the receiving member is preferably mounted at the free extremity
of the upper tube portion. Further, by providing the cam recesses in the sleeve near
the receiving member, the point of engagement of first and second portions will be
at a distance from the upper edge of the lower tube portion of the leg and the highest
possible degree of stability of the assembly will be obtained.
[0012] The receiving member is preferably made of two halves, engaging one another e.g.
by a snap connection. This offers a simple possibility to enclose the sleeve rotatably
between said two halves of said receiving member. Here, it is further provided for,
that the sleeve rotatably received in said receiving member has at least one circumferentially
extending guiding rim and said receiving member has a corresponding guiding track
or guiding tracks for receiving the guiding rim or guiding rims.
[0013] The operating arm in the second embodiment is mounted at or near the extremity of
the rotatable shaft and extends from the top within the leg near to or directly below
the top to beyond said leg.
[0014] According to a further elaboration, means are provided for forcing said rotatably
shaft having at least one row of cams or the rotatable sleeve having cam recesses
into the first position, in which the first and second parts are locked in relation
to one another.
This prevents the shaft having at least one row of cams or the rotatable shaft having
cam recesses will move in the second position unintentionally, in which a passage
for the cams is provided and the work- or tabletop will suddenly move to an oblique
position or will slide down completely.
[0015] A simple embodiment is provided in that these means substantially comprise spring
means engaging the operating arm. The height adjustment will then only be possible
by moving the operating arm against the action of the spring, which will almost certainly
exclude uncontrolled movements.
[0016] Another embodiment provides for that a taper is arranged within the cam recesses,
such that first and second parts are forced into the first position in which said
first and second parts are locked in relation to one another in axial direction. Therefore,
in order to rotate the operating arm it is necessary that first the part of the table
or the desk above the tube portion of the leg concerned is moved upwards at least
across the height of the taper.
Such an oblique taper is an extremly effective protection in the locked position.
[0017] The invention is further explained by way of the example given in the drawing, in
which:
- figs. 1A, B
- illustrate a cross-section of a leg comprising two parts with an adjusting member
according to the first embodiment received therein;
- fig. 2
- illustrates in plan view and partly in cross-section the leg according to fig. 1;
- figs. 3A,B
- illustrate a view and cross-section of a shaft having two rows of cams according to
the first embodiment;
- fig. 4
- illustrates a cross-section of a leg comprising two tube portions with an adjusting
member according to the second embodiment received therein;
- figs. 5A-I
- illustrate a longitudinal section of the adjusting member according to the second
embodiment, a detail thereof, as well as som cross-sections.
[0018] Fig. 1A indicates schematically a leg 1 of e.g. a worktable or desk having a top
beam 22 and a top 23 comprising two telescopic tube portions 2, 3. The leg 1 mounts
the adjusting member 4 comprising a part 5 fixedly placed in the lower tube portion
3 and a shaft 6 engaging the upper tube portion 2 and being provided with two opposite
rows of cams 7, 8. Although configurations having e.g. one row of cams or more than
one row of cams are possible, an embodiment having two rows is preferred since it
can be manufactured in a relatively simple way and it is furthermore very stable.
[0019] The fixed part 5 bears on the lower tube portion 3 with edge 9 and is provided with
a central passage 10 of a substantially round shape, see also Fig. 1B, in which the
shaft 6 is received loosely. Following said passage 10, opposite slots 11 have been
mounted which provide passage to the cams of said rows of cams 7, 8. By rotating the
shaft 6 to a position in which the rows of cams 7, 8 are aligned with the slots 11
with the help of operating arm 12, the shaft 6 can be moved in height in relation
to the fixed portion 5 and with it the tube portions 2, 3 of the leg 1.
[0020] Fig. 1B illustrates the shaft 6 with the rows of cams 7, 8 in two different positions.
In the first position, with said cams 7, 8 in one line in the drawing from left to
right, the cams 7, 8 are located in cam recesses 24 and first and second parts 6,
5 are locked in relation to one another in axial direction. By rotating the shaft
6 across an angle of approximately 45° in the drawing, the cams 7, 8 will be aligned
with the slots 11 and first and second portions can be moved in axial direction in
relation to one another.
[0021] In the example illustrated, the shaft 6 consists of two parts 13, 14 being coupled
to a snap connection. Said snap connection is designed in such a way that the shaft
parts 13, 14 can not rotate in relation to one another, e.g. by having them engage
one another with a radially extending profile. The shaft 6 will only be executed in
two parts if mounting the shaft into an upper tube portion of a leg would be too complicated
or impossible on account of the shape and/or dimensions. However, it is preferred
to produce the shaft 6 as an integral part.
[0022] At the top, an axial portion 16 of a smaller diameter is provided in the shaft 6,
a collar part 17 being slid across said axial portion 16. Collar part 17 is provided
with a slot 18 extending along a large part of the circumference, with which it can
be slid into a recess provided for it in the leg 1. Collar part 17 is preferably made
of a resilient material so that it can enclose the shaft far enough and can always
remain located around the shaft in this way. See also Fig. 2. The recess for the collar
part 17, instead of in leg 1, can also be provided in a top beam mounted on leg 1.
However, the structure is preferably always such, that operating arm 12 ends closely
below or against the bottom side of a work- or desktop.
[0023] Fig. 3A shows that a resilient lip 19 is arranged at the bottom side of the shaft
6 at the extremity. Lip 19 is provided with a stop 20. By manufacturing the shaft
6 or the shaft part 14 from a resilient plastic, such a lip 19 can be realized simply
by cutting it from a hollow shaft part 14. Said lip 19 with stop 20, having a bevel
at the bottom, serves for being able to project said shaft part 14 through fixed part
5 and to prevent that it can be removed from the fixed part in opposite direction
without further measures.
[0024] Fig. 3B illustrates a cross-section along line A-A in Fig. 3A. It is cearly visible
that the shaft 6 is substantially massive and that it is further only provided with
recesses 25 at both sides. This leads to savings in material and in weight.
[0025] Fig. 4 illustrates schematically a leg 1 of a worktable having a top beam 22 and
a top 23, in which the leg comprises an upper and a lower tube portion 2, 3. In this
embodiment, the upper tube portion 2 slides into the lower tube portion 3. The shaft
26 having rows of cams 7, 8 is fixedly mounted in the lower tube portion 3 on an attachment
fitting 27. A receiving member 28 having a rotatable sleeve 29 fixedly mounted therein,
is mounted in the bottom of upper tube portion 2, see Fig. 5.
[0026] Fig. 5A illustrates a section in longitudinal direction of fixed shaft 26 having
rows of cams 7, 8, the receiving member 28 and the rotatable sleeve 29. Said rotatable
sleeve 29 extends across the full length of the upper tube portion 2 and has its operating
arm 12 projecting beyond said upper tube portion 2 and then ends closely below the
worktop. Fig. 5 illustrates a cross-section of the sleeve 29 along the line S-S. At
this level, the rotatable sleeve is a hollow sleeve without any further provisions.
[0027] Fig. 5C illustrates a cross-section along the line R-R with said receiving member
28, the rotatable sleeve 29 and the fixed shaft 26 having cams 6,7. Receiving member
28 comprises two halves 30, 31 engaging one another with snap connections 32. The
connecting means 33, 34 which together can constitute said snap connections 32 are
mounted in openings 35 recessed to that end in said receiving member 28. This cross-section
was taken between subsequent cams 7, 8 so that the cams are not visible here. What
can be seen is that slots 36 have been made in the rotatable sleeve 29, which are
intended for inserting the cams 7, 8. Said cams 7, 8 of the fixedly mounted shaft
26 are in one line in the drawing from left to right and the rotatable sleeve will
have to be rotated clockwise across an angle of approximately 45° for having the slots
36 correspond to the cams 7, 8 so as to able to adjust the rotatable sleeve 29 with
receiving member 28 in relation to the fixed shaft 26.
[0028] The cross-section according to fig. 5D was taken according to the line P-P at the
level of the cams 7, 8 and illustrates again said receiving member 28 comprising two
halves, rotatable sleeve 29 and fixed shaft 26 with cams 7, 8. Following the slots
36 extending in longitudinal direction, cam recesses 37 have been mounted, in which
the cams 7, 8 can be locked. In the position indicated, the cams 7, 8 are in the cam
recesses 37 and rotatable sleeve 29 with receiving member 28 are locked in axial direction
in relation to fixed shaft 26.
[0029] The slots 36 and the cam recesses 37 have been made in the portion of the rotatable
sleeve 29 which is in the receiving member 28, see also Fig. 5G. Said slots 36 connect
to the hollow profile of said rotatable sleeve 29 located above it, so that the fixed
shaft 26 can slide further into it if the worktop would be set to the smallest adjustable
height.
[0030] Figs. 5A and 5F further show that the rotatable sleeve 29 is provided with a circumferentially
extending guiding rim 38 accomodated in a guide track 39 mounted in said receiving
member 28. In the drawing, a further guide rim 41 and a guide track 40 intended for
it has been mounted over it between the successive openings 35 with connecting means
33, 34 for the snap connection 32 between both halves of the receiving member 28.
Finally, fig. 5G indicates how the forces are transferred from the upper tube portion
2 of the leg 1 to the fixed shaft 26.
[0031] Figs. 5E and 5F illustrate successive cross-sections through the massive shaft 26.
[0032] Figs. 5H and 5I illustrate the attachment of the operating arm 12 on the rotatable
sleeve 29. Said operating arm 12 comprises a fitting piece 43 which must be able to
be placed on to the extremity of the rotatable sleeve 29 within the outer circumference
42 of the upper tube portion 2 across the elongated head piece 44. After that, said
fitting piece 43 can be rotated to the correct position in relation to a passage 45
and the actual arm portion can be projected to the outside through it. Subsequently,
a retaining piece 46 is slid across the head piece 44 in which said retaining piece
46 has a pin 47 protruding into an opening 48 intended for it in said fitting piece
43. In this structure, said rotatable sleeve 29 is rotated across an angle by pushing
arm 12 inwards. Except for the conversion from translation to rotation, the structure
is also meant for guiding the arm 12 outwards at both sides of a leg with the same
parts.
1. Adjusting member for adjusting a leg (1) of a work- or desktop (23) for bringing this
at a predetermined height, said leg (1) comprises two telescopic tube portions (2,3),
characterized in that said adjusting member (4) comprising two telescopic parts and locking means being
present for locking said telescopic parts (2,3) in respect of each other, said locking
means comprising two parts (5,6), one being a shaft (6,26) having a row of cams (7,8)
arranged in longitudinal direction of it and the other part (5) being provided with
slots (11) for accomodating one or more of said cams (7), an operating arm (12) being
present for rotating one of said parts (5,6) over a given angle for unlocking and
locking said cams (7) and slots (11), said adjusting member (4) being positioned inside
said tube portions (2,3), the shaft (6,26) of said adjusting member (4) being rotatably
mounted to one (2) of said tube portions whereas the second part (5) is fixedly positioned
in the other tube portion (3).
2. Adjusting member according to claim 1, characterized in that said shaft (6) comprises a first shaft part (14) provided with at least one row of
cams (7,8) and a second shaft part (13) to which said operating arm (12) is affixed,
which parts can be coupled by a snap connection.
3. Adjusting member according to claim 1 or 2, characterized in that said shaft (6) is provided with a resilient lip (19) mounted to the lower extremity
of it for forming a stop (20).
4. Adjusting member according to claim 1, characterized in that said first part (6) is provided with a web-shaped recess along the circumference
near its upper extremity, said recess having a smaller diameter than said first part
with wich it is intended to engage a complementary part in said upper tube portion
of said leg (1).
5. Adjusting member according to claim 4, characterized in that a flange part of a resilient material is arranged at the web-shaped recess, said
flange part being intended to engage a complementary part in the upper tube portion
of said leg (1).
1. Einstellungselement zum Einstellen eines Beins (1) einer Arbeits- oder Schreibtischplatte
(23), um diese auf eine vorher festgelegte Höhe zu bringen, wobei das genannte Bein
(1) zwei ausziehbare Rohrabschnitte (2, 3) umfasst, dadurch gekennzeichnet, dass das Einstellungselement (4) zwei ausziehbare Teile umfasst und ein Arretiermittel
vorhanden ist, um die genannten ausziehbaren Teile (2, 3) miteinander zu arretieren,
wobei das genannte Arretiermittel zwei Teile (5, 6) umfasst, von denen eines ein Schaft
(6, 26) mit einer Reihe Nocken (7, 8) ist, die in Längsrichtung davon angeordnet sind,
und das andere Teil (5) mit Schlitzen (11) zum Aufnehmen eines oder mehrerer der Nocken
(7) versehen ist, wobei ein Betätigungsarm (12) zum Drehen eines der genannten Teile
(5, 6) über einen gegebenen Winkel zum Lösen und Arretieren der genannten Nocken (7)
und Schlitze (11) vorhanden ist, wobei das genannte Einstellungselement (4) in den
genannten Rohrabschnitten (2, 3) positioniert ist, wobei der Schaft (6, 26) des genannten
Einstellungselements (4) drehbar an einem (2) der genannten Rohrabschnitte montiert
ist, wohingegen der zweite Teil (5) unbeweglich in dem anderen Rohrabschnitt (3) positioniert
ist.
2. Einstellungselement nach Anspruch 1, dadurch gekennzeichnet, dass der genannte Schaft (6) einen ersten Schaftteil (14), der mit mindestens einer Reihe
Nocken (7, 8) versehen ist, und einen zweiten Schaftteil (13), an den der genannte
Betätigungsarm (12) befestigt ist, umfasst, wobei diese Teile durch eine Schnappverbindung
gekuppelt werden können.
3. Einstellungselement nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass der genannte Schaft (6) mit einem elastischen Ansatz (19) versehen ist, der an dem
unteren Ende davon montiert ist, um einen Anschlag (20) zu bilden.
4. Einstellungselement nach Anspruch 1, dadurch gekennzeichnet, dass der genannte erste Teil (6) um den Umfang herum in der Nähe seines oberen Endes mit
einer stegförmigen Aussparung versehen ist, wobei die genannte Aussparung einen kleineren
Durchmesser als der erste Teil aufweist, mit dem es in einen komplementären Teil in
dem genannten oberen Rohrabschnitt des genannten Beins (1) eingreifen soll.
5. Einstellungselement nach Anspruch 4, dadurch gekennzeichnet, dass ein Flanschteil aus einem elastischen Material an der stegförmigen Aussparung angeordnet
ist, wobei der genannte Flanschteil in einen komplementären Teil in dem oberen Rohrabschnitt
des genannten Beins (1) eingreifen soll.
1. Pièce de réglage pour régler un pied (1) d'un plan de travail ou d'un dessus de bureau
(23) pour amener celui-ci à une hauteur prédéterminée, ledit pied (1) comprend deux
parties de tube télescopiques (2, 3), caractérisée en ce que des moyens de blocage sont présents pour bloquer lesdites parties télescopiques (2,
3) l'une par rapport à l'autre, lesdits moyens de blocage comprenant deux parties
(5, 6), l'une étant une tige (6, 26) ayant une rangée de cames (7, 8) agencées dans
une direction longitudinale de celle-ci et l'autre partie (5) étant munie de fentes
(11) pour recevoir une ou plusieurs desdites cames (7), un bras d'actionnement (12)
étant présent pour faire tourner l'une desdites parties (5, 6) sur un angle donné
pour débloquer et bloquer lesdites cames (7) et fentes (11), ladite pièce de réglage
(4) étant positionnée à l'intérieur desdites parties de tube (2, 3), la tige (6, 26)
de ladite pièce de réglage (4) étant montée de manière rotative sur l'une (2) desdites
parties de tube alors que la seconde partie (5) est positionnée fixement dans l'autre
partie de tube (3).
2. Pièce de réglage selon la revendication 1, caractérisée en ce que ladite tige (6) comprend une première partie de tige (14) munie d'au moins une rangée
de cames (7, 8) et d'une seconde partie de tige (13) sur laquelle ledit bras d'actionnement
(12) est fixé, lesquelles parties peuvent être assemblées par un raccord à encliquetage.
3. Pièce de réglage selon la revendication 1 ou 2, caractérisée en ce que ladite tige (6) est munie d'une lèvre élastique (19) montée à l'extrémité inférieure
de celle-ci pour former une butée (20).
4. Pièce de réglage selon la revendication 1, caractérisée en ce que ladite première partie (6) est munie d'un évidement en forme d'âme le long de la
circonférence près de son extrémité supérieure, ledit évidement ayant un diamètre
plus petit que ladite première partie avec laquelle il est destiné à venir en prise
avec une partie complémentaire dans ladite partie de tube supérieure dudit pied (1).
5. Pièce de réglage selon la revendication 4, caractérisée en ce qu'une partie de bride en matériau élastique est agencée sur l'évidement en forme d'âme,
ladite partie de bride étant destinée à venir en prise avec une partie complémentaire
dans la partie de tube supérieure dudit pied (1).