Technical Field
[0001] The present invention relates to a quick release device adapted to removably connect
together a first and a second longitudinal tubes of a wheelchair.
[0002] The present invention relates also to a wheelchair that can be easily and quickly
dissociated so as to permit it to be easily placed inside an automobile or other suitable
conveyance.
Prior Art and the Problem Underlying the Invention
[0003] The portability of a wheelchair is an important consideration to many wheelchair
users. In particular, it is often desirable that a wheelchair be easily broken down
so that it can readily and conveniently transported in an automobile or other suitable
conveyance. One known solution to this problem consists in assembling different parts
of the wheelchair with quick release assemblies that can be locked and unlocked without
any tools, thereby allowing the user to easily make such a disassembling operation.
However, such quick release assemblies do not securely connect together the different
parts of the wheelchair. Indeed, a risk exists that the user inadvertently forgets
to position the quick release assemblies in their locking position. In this case,
two parts connected by such quick release assemblies may therefore be disconnected
when the user is sitting in the wheelchair. If such a disconnection occurs when the
wheelchair is running fast and if said parts correspond to frames which are supported
on the ground by the rear wheels and the caster wheels respectively, such an event
may lead to dramatic consequences for the user.
[0004] US 2009/194974 discloses a foldable wheelchair comprising a locking mechanism.
[0005] Thus, a first objective of the present invention is to provide a quick release device
specifically designed so as to prevent an accidental disengagement of the parts of
the wheelchair that are connected together by said quick release device.
[0006] A second objective of the present invention is to provide a quick release device
that can be adapted to various wheelchair configurations without significant modification
of the wheelchair.
[0007] A third objective of the present invention is to provide a wheelchair in which two
frames supported on the ground by the rear wheels and the caster wheels respectively
are removably and securely connected together.
Summary of Invention
[0008] In an aspect, the present invention provides a quick release device adapted to removably
connect together a first and a second longitudinal tubes of a wheelchair, said quick
release device comprising:
- a first tubular element fixedly connected to said first longitudinal tube;
- a second tubular element fixedly connected to said second longitudinal tube, said
second tubular element being adapted to be telescopically received inside said first
tubular element;
- a clamping assembly adapted to clamp said first tubular element on said second tubular
element to prevent an axial movement of said second tubular element relative to said
first tubular element, said clamping assembly comprising:
- a C-shaped ring integral with or adapted to house an end portion of said first tubular
element through which is inserted said second tubular element, said ring having two
opposite projections delimiting a longitudinal slit extending along its whole length,
said projections being provided with through-holes defining a first axial direction;
- a locking rod extending through said through-holes and having a first and a second
ends extending outside said ring, said first end being fixedly connected to a nut
and said second end being fixedly connected to a pivot element defining a second axial
direction;
- a lever having a handle end and a pivot end, said pivot end having a cavity adapted
to receive said pivot element and being configured so as to pivotally connect the
lever to the locking rod around said first and second axial directions;
wherein said pivot end is configured so as to force said projections toward one another
when said lever pivots around said second axial direction from an open position to
a closed position, thereby clamping said first tubular element against said second
tubular element;
wherein said locking rod is configured so as to be positioned, in a locking position
of said lever, at least partially inside a groove provided in the outer surface of
said second tubular element, thereby preventing the axial movement of said second
tubular element relative to said first tubular element, and, in an unlocking position
of said lever, outside said groove, thereby permitting the axial movement of said
second tubular element relative to said first tubular element, whereby the second
tubular element has a conical-shaped end adapted to bear against a conical-shaped
shoulder of a flexible sleeve provided with a plurality of longitudinal slits, said
sleeve being slidably received inside said first tubular element and urged against
said conical-shaped end by resilient means, thereby limiting or, preferably, eliminating
the play between said first tubular element and said second tubular element.
[0009] Further aspects and preferred embodiments are provided in the appended claims.
[0010] Thus configured, the quick release device according to the invention permits to removably
connect together the first longitudinal tube and the second longitudinal tube and
prevents an accidental disengagement of said tubes when the user forgets to position
the lever in its closed position. Indeed, if the lever is maintained in its locking
position, the locking rod prevents an axial movement of the second longitudinal tube,
fixedly connected to the second tubular element, relative to the first longitudinal
tube, fixedly connected to the first tubular element.
Brief Description of the Drawings
[0011] The wheelchair of the present invention will be described in further detail further
below, when useful with reference to the attached drawings, which show an exemplary
wheelchair frame according to the invention.
Figure 1 is a perspective view of a wheelchair according to an embodiment of the present invention,
the wheelchair being in its normal position of use.
Figure 2 is a similar view to that of Figure 1, the front frame being disconnected from the
seat frame.
Figure 3 is a similar view to that of Figure 1, the wheelchair being in its position of transport.
Figure 4 is an exploded perspective view of the quick release device that connects the front
frame and the seat frame of the wheelchair of Figure 1 at their right side.
Figure 5 is a longitudinal sectional view of the quick release device of Figure 4, in the
locking and closed position of the lever, when connected to the first longitudinal
tube.
Figure 6a is a perspective view of the quick release device of Figure 4, in the locking and
closed position of the lever, the second tubular element being not shown.
Figure 6b is a similar view to that of Figure 6a, the C-shaped ring and the first tubular element
being not shown.
Figure 7a is an end view of the clamping assembly of the quick release device of Figure 6a.
Figure 7b is an enlarged view of the detail A of Figure 7a.
Figure 8a is a perspective view of the quick release device of Figure 4, in the unlocking and
open position of the lever, the second tubular element being not shown.
Figure 8b is a similar view to that of Figure 8a, the C-shaped ring and the first tubular element
being not shown.
Figure 9a is an end view of the clamping assembly of the quick release device of Figure 8a.
Figure 9b is an enlarged view of the detail A of Figure 9a.
Figure 10 is an enlarged perspective view of the lever of the quick release device of Figure
4.
Figure 11 is an enlarged perspective view of the spacer ring of the quick release device of
Figure 4.
Detailed Description of the Preferred Embodiment
[0012] For the purpose of the present specification, situations and directions of elements
of the wheelchair of the present invention are determined by the perspective of a
user seated in the wheelchair. Accordingly, the rear side of the wheelchair corresponds
to the top right side of Figure 1. The situations or directions "up" or "top" and
"down" or "bottom", "rear" or "back" and "front", "behind" and "in front", "upper"
and "lower", "lateral" and "central" follow the same rule. A longitudinal direction
corresponds to a back-to-front direction and a lateral direction corresponds to a
left-to-right direction. The terms "forward" or "forwardly" and "rearward" or "rearwardly"
refer to the direction of motion of the wheelchair. The horizontal corresponds to
the plane tangential to the rear and front wheels and positioned under said wheels
when the wheelchair is its normal position of use. A horizontal plane corresponds
to a plane parallel to the horizontal. The vertical, or a vertical plane, corresponds
to a plane perpendicular to the horizontal.
[0013] Figure 1 shows a wheelchair according to the present invention. Apart that the wheelchair
100 comprises a quick release device 10 according to the present invention, said wheelchair
100 is almost identical to the wheelchair that was disclosed in the European patent
application no.
11194954.7 filed by the Applicant, the content of which is integrated by reference into the
present application. The wheelchair 100 comprises a main frame 110 and a front frame
120 removably connected thereto. The main frame 110 is supported on the ground by
left and right rear wheels 111a and 111b and the front frame 120 is supported on the
ground by left and right front wheels 121a and 121b. The front wheels 121a, 121b are
preferably casters and the rear wheels 111a, 111b are preferably drive wheels, which
may be manually driven or power driven. The main frame 110 includes a seat frame 112
and a backrest frame 114. The seat frame 112 includes longitudinally extending frame
profiles, such as left and right tubes 118a and 118b, for supporting a seat plate
116, which may preferably be in the form of a semi-rigid or rigid pan integral with
said tubes 118a and 118b, as shown. Said left and right tubes 122a and 122b of the
front frame 120 are removably connected to said left and right tubes 118a and 118b
of the seat frame 112 via left and right quick release devices 10.
[0014] As shown in Figures 4 and 5, each quick release device 10 comprises a first tubular
element 12 slidably received inside and fixedly connected to one of the tubes 118a
or 118b of the seat frame 112, preferably via screws (not shown) adapted to be received
inside bores of the first tubular element 12 and the tube 118a or 118b respectively.
In particular, the first tubular element 12 may advantageously comprise a first series
of spaced-apart, longitudinally extended bores 13 disposed along the left side thereof
and a second series of spaced-apart, longitudinally extended bores 13 disposed along
the right side thereof, said bores 13 being adapted to be aligned with corresponding
spaced-apart, longitudinally extended bores 113 provided in the tube 118a or 118b
and receive the threaded rod of a screw such that said first tubular element 12 can
be fixedly connected to said tube 118a or 118b. The quick release device 10 comprises
also a second tubular element 14 fixedly connected to one of the tubes 122a or 122b
of the front frame 120, said second tubular element 14 being adapted to be telescopically
received inside said first tubular element 12. To limit or, preferably, eliminate
the play between the first tubular element 12 and the second tubular element 14, said
second tubular element 14 has a conical-shaped end 14a adapted to bear against a conical-shaped
shoulder 16a of a flexible sleeve 16 provided with a plurality of longitudinal slits
16b extending along a portion of its length, said sleeve 16 being slidably received
inside said first tubular element 12 and urged against said conical-shaped end 14a
by resilient means. In the embodiment shown, the resilient means consists in a coil
spring 18, one rear end thereof abutting against an abutment provided inside the tube
118a or 118b and one front end thereof abutting against a rear end 16c of the flexible
sleeve 16. The second tubular element 14 has also a thin annular portion 14c disposed
along its length, said annular portion 14c having a higher outer diameter relative
to the outer diameter of the front end of said tubular element 14 so as to define
an abutment against which abuts that the second longitudinal tube 122a or 122b when
said second tubular element 14 is correctly positioned inside said second longitudinal
tube 122a or 122b.
[0015] The quick release device 10 comprises also a clamping assembly 20 adapted to clamp
the first tubular element 12 on the second tubular element 14, thereby preventing
an axial movement of said second tubular element 14 relative to said first tubular
element 12, and, thus, preventing an axial movement of the tube 122a, respectively
122b, of the front frame 120 relative to the tube 118a, respectively 118b, of the
seat frame 112. In the embodiment shown, this clamping assembly 20 comprises a C-shaped
ring 21 integral with an end portion 12a of the first tubular element 12 through which
is inserted the second tubular element 14, said ring 21 having two opposite projections,
respectively an upper projection 21a and a lower projection 21b, delimiting a longitudinal
slit 21c extending along its whole length, said projections 21a, 21b being respectively
provided with through-holes 21e, 21f defining a first axial direction XX'. In the
embodiment shown, said first axial direction XX' is vertical or substantially vertical.
Furthermore, the end portion 12a is advantageously provided with a longitudinal slit
12a
1 substantially aligned with the slit 21c so that the internal diameter of the end
portion 12a can be reduced when the projections 21a, 21b are forced toward one another.
In a further embodiment (not shown) of the present invention, the ring 21 may be separate
from the first tubular element 12. In this case, the ring 21 may be adapted to house
the end portion 12a of the first tubular element 12 and the end portion 12a may be
provided with upper and lower through-holes aligned with the through-holes 21e, 21f
of the ring 21 when said ring 21 is correctly positioned relative to said end portion
12a.
[0016] The clamping assembly 20 comprises also a locking rod 22 extending through said through-holes
21 e, 21f and having an upper and a lower ends 22a, 22b extending outside the ring
21, said upper end 22a being threadedly connected to a nut 23, said nut 23 abutting
against an upper face of the upper projection 21a, and said lower end 22b being fixedly
connected to a cylindrical-shaped pivot element 24 defining a second axial direction
YY', said pivot element 24 being received into a cylindrical-shaped cavity 25a
1 provided in a pivot end 25" of a lever 25 and said locking rod 22 extending through
an arc-shaped aperture 25a
2 provided in said pivot end 25" and leading to said cavity 25a
1. In the embodiment shown, said second axial direction YY' is horizontal or substantially
horizontal. Thus configured, the lever 25 can pivot around the first and second axial
directions XX' and YY' when the user moves the lever 25 via its handle end 25'. In
particular, and as better explained in the following paragraphs, several successive
movements of the lever 25 can be done so as to disengage the second tubular element
14 from the first tubular element 12. The user can firstly pivot the lever 25 around
the second axial direction YY' in the clockwise direction (when seen from the left
side of the wheelchair) from a closed locking position (as illustrated in Figures
1 and 6a), in which its handle end 25' is substantially horizontal and rearwardly
oriented, the upper face 25b thereof being upwardly oriented, to an open locking position
(not shown), in which said handle end 25' is substantially vertical and downwardly
oriented, said upper face 25b being rearwardly oriented. During this movement, the
lever 25 pivots by an angle substantially equal to 90° around the second axial direction
YY'. Thereafter, the user can pivot the lever 25 around the first axial direction
XX' from said open locking position to an open unlocking position, as illustrated
in Figure 8a, in which its handle end 25' is substantially vertical and downwardly
oriented, the upper face 25b being forwardly oriented. During this movement, the lever
25 pivots by an angle substantially equal to 180° around the first axial direction
XX'. Finally, the user can pivot the lever 25 around the second axial direction YY'
from said open unlocking position to a closed unlocking position, as illustrated in
Figure 2, in which its handle end 25' is substantially horizontal and forwardly oriented,
the upper face 25b being upwardly oriented. During this movement, the lever 25 pivots
by an angle substantially equal to 90° around the second axial direction YY'. In the
open unlocking position of the lever 25, the second tubular element 14 is disconnected
from the first tubular element 12 and is free to move along the longitudinal direction,
as illustrated in Figure 2, thereby permitting the disassembling of the front frame
120. Thereafter, the wheelchair 100 can be positioned in its position of transport,
as illustrated in Figure 3, in which the drive wheels 111a and 111b are disconnected
from the main frame 110 and the backrest frame 114 are folded so as to be positioned
parallel and close to the seat frame 112. In this position, the front frame 120 can
be positioned under the seat frame 112 so that the dimensions of the wheelchair 100
are highly reduced.
[0017] As better explained in the following paragraphs, when the lever 25 pivots around
the second axial direction YY' from the open locking, respectively unlocking, position
to the closed locking, respectively unlocking, position, the pivot end 25" is configured
so as to force the projections 21a, 21b of the ring 21 toward one another, thereby
clamping the first tubular element 12 against the second tubular element 14. Furthermore,
when the lever 25 pivots around the first axial direction XX' from the open locking
position to the open unlocking position, the locking rod 22 moves from a first position,
in which it is positioned at least partially inside a groove 14b
1 provided in the outer surface of an annular portion 14b of the second tubular element
14, thereby preventing the axial movement of the second tubular element 14 relative
to the first tubular element 12, to a second position, in which it is positioned outside
said groove 14b
1, thereby permitting the axial movement of the second tubular element 14 relative
to the first tubular element 12. Thus configured, the quick release device 10 permits
to removably connect together the tube 122a, respectively 122b, to the tube 118a,
respectively 118b, and prevents an accidental disengagement of said tubes 118a, 122a,
respectively 118b, 122b, when the user forgets to position the lever 25 in its closed
locking position illustrated in Figure 6a. Indeed, if the lever 25 is maintained in
its open locking position, the locking rod 22 prevents an axial movement of the tube
122a, respectively 122b, fixedly connected to the second tubular element 14, relative
to the tube 118a, respectively 118b, fixedly connected to the first tubular element
12.
[0018] Further details relative to the clamping assembly 20 are illustrated in Figures 6a
to 11.
[0019] As illustrated in Figures 6a, 6b and 7a, 7b, when the lever 25 is in its closed (as
shown) or open locking position, a recess 22c
1 provided in a central section 22c of the locking rod 22 extends at least partially
inside the slit 21c separating the projections 21a and 21b of the ring 21, said central
section 22c being positioned at least partially inside an approximately cylindrical
aperture 21g of the ring 21, said aperture 21g being adapted to receive the annular
portion 14b of the second tubular element 14 that is provided with the groove 14b
1. Therefore, when the second tubular element 14 is correctly positioned inside the
first tubular element 12, said groove 14b
1 is positioned in front of the slit 21c, thereby permitting to position the central
section 22c of the locking rod 22 inside said groove 14b
1 when the lever is in its closed or open locking position. Thus, in said closed or
open locking position of the lever 25, the second tubular element 14 can not be disengaged
from the first tubular element 12.
[0020] As illustrated in Figures 8a, 8b and 9a, 9b, when the lever 25 is in its closed or
open (as shown) unlocking position, the recess 22c
1 extends at least partially inside the aperture 21g, said central section 22c being
positioned outside said aperture 21g. Therefore, when the lever 25 is in its open
unlocking position, nothing prevents the second tubular element 14 to axially move
relative to the first element 12. Thus, in said open unlocking position of the lever
25, the second tubular element 14 can be disengaged from the first tubular element
12.
[0021] As illustrated in Figure 10, the pivot end 25" of the lever is shaped like a clevis
and comprises two opposite wings 25 "a, 25 "b provided with through-holes 25"a
1, 25"b
1 so as to allow the positioning of the pivot element 24, said wings 25"a, 25"b having
an approximately oblong shape and said pivot element 24 being positioned relative
to said wings 25 "a, 25 "b so as to define an eccentric. Thus configured, the pivot
end 25" defines a cam surface that causes the nut 23 to be pulled toward the lever
25 as the lever 25 moves from its open locking, respectively unlocking, position to
its closed locking, respectively unlocking, position, thereby forcing the projections
21a, 21b toward one another. The wings 25"a, 25"b are rounded at their periphery and
resting on a spacer ring 26, illustrated in Figure 11, positioned between the lever
25 and the C-shaped ring 21 along the locking rod 22, the surface of said spacer ring
26a which is in contact with said wings 25 "a, 25"b having a rounded profile adapted
to receive said wings and permit the pivoting movement of said lever around the second
axial direction YY' between its open locking, respectively unlocking, position and
its closed locking, respectively unlocking, position.
[0022] The above detailed description with reference to the drawings illustrates rather
than limit the invention. There are numerous alternatives, which fall within the scope
of the appended claims.
1. A quick release device (10) adapted to removably connect together a first and a second
longitudinal tubes (118a, 122a; 118b, 122b) of a wheelchair (100), said quick release
device comprising:
- a first tubular element (12) fixedly connectable to said first longitudinal tube
(118a, 118b);
- a second tubular element (14) fixedly connectable to said second longitudinal tube
(122a, 122b),
said second tubular element being adapted to be telescopically received inside said
first tubular element;
- a clamping assembly (20) adapted to clamp said first tubular element (12) on said
second tubular element (14) to prevent an axial movement of said second tubular element
(14) relative to said first tubular element (12), said clamping assembly comprising:
- a C-shaped ring (21) integral with or adapted to house an end portion (12a) of said
first tubular element (12) through which is inserted said second tubular element (14),
said ring having two opposite projections (21a, 21b) delimiting a longitudinal slit
(21c) extending along its whole length, said projections being provided with through-holes
(21e, 21f) defining a first axial direction (XX');
- a locking rod (22) extending through said through-holes (21 e, 21f) and having a
first and a second ends (22a, 22b) extending outside said ring (21), said first end
(22a) being fixedly connected to a nut (23) and said second end (22b) being fixedly
connected to a pivot element (24) defining a second axial direction (YY');
- a lever (25) having a handle end (25') and a pivot end (25"), said pivot end (25")
having a cavity (25a1) adapted to receive said pivot element (24) and being configured so as to pivotally
connect the lever (25) to the locking rod (22) around said first and second axial
directions (XX', YY');
wherein said pivot end (25") is configured so as to force said projections (21a, 21b)
toward one another when said lever (25) pivots around said second axial direction
(YY') from an open position to a closed position, thereby clamping said first tubular
element (12) against said second tubular element (14);
wherein said locking rod (22) is configured so as to be positioned, in a locking position
of said lever (25), at least partially inside a groove (14b1) provided in the outer surface of said second tubular element (14), thereby preventing
the axial movement of said second tubular element (14) relative to said first tubular
element (12), and, in an unlocking position of said lever (25), outside said groove
(14b1), thereby permitting the axial movement of said second tubular element (14) relative
to said first tubular element (12),
characterised in that the second tubular element (14) has a conical-shaped end (14a) adapted to bear against
a conical-shaped shoulder (16a) of a flexible sleeve (16) provided with a plurality
of longitudinal slits (16b), said sleeve (16) being slidably received inside said
first tubular element (12) and urged against said conical-shaped end (14a) by resilient
means (18), thereby limiting or, preferably, eliminating the play between said first
tubular element (12) and said second tubular element (14).
2. The quick release device (10) of claim 1, wherein the movement of the lever (25) from
its locking position to its unlocking position occurs when it pivots around the first
axial direction (XX') from its open position.
3. The quick release device (10) of claim 2, wherein the movement of the lever (25) from
its locking position to its unlocking position occurs when it pivots by an angle substantially
equal to 180 degrees around the first axial direction (XX') from its open position.
4. The quick release device (10) of any one of the preceding claims, wherein the ring
(21) comprises an approximately cylindrical aperture (21g) adapted to receive the
second tubular element (14) and wherein the locking rod (22) comprises at least one
central section (22c) having a recess (22c1), said central section (22c) being configured so as to be positioned, in the locking
position of the lever (25), at least partially inside said aperture (21g), said recess
(22c1) extending at least partially inside the slit (21c) separating the projections (21a,
21b) of the ring (21), and, in the unlocking position, outside said aperture (21g),
said recess (22c1) extending al least partially inside said aperture (21g).
5. The quick release device (10) of any one of the preceding claims, wherein the pivot
end (25") of the lever (25) defines a cam surface that causes the nut (23) to be pulled
toward the lever (25) as said lever (25) moves from its open position to its closed
position, thereby forcing said projections (21 a, 21 b) toward one another.
6. The quick release device (10) of claim 5, wherein the pivot end (25") is shaped like
a clevis and comprises two opposite wings (25"a, 25"b) provided with through-holes
(25"a1, 25"b1) so as to allow the positioning of the pivot element (24), said wings (25"a, 25"b)
having an approximately oblong shape and said pivot element (24) being positioned
relative to said wings (25"a, 25"b) so as to define an eccentric.
7. The quick release device (10) of claim 6, wherein the wings (25"a, 25"b) are rounded
at their periphery and resting on a spacer ring (26) positioned between the lever
(25) and the C-shaped ring (21) along the locking rod (22), the surface (26a) of said
spacer ring (26) which is in contact with said wings (25"a, 25"b) having a rounded
profile adapted to receive said wings (25"a, 25"b) and permit the pivoting movement
of said lever (25) around the second axial direction (YY') between its open position
and its closed position.
8. The quick release device (10) of claim 1, wherein the resilient means (18) consist
in a coil spring, one rear end thereof abutting against an abutment provided inside
the first longitudinal tube (118a, 118b) and one front end thereof abutting against
a rear end (16c) of the flexible sleeve (16).
9. The quick release device (10) of any one of the preceding claims, wherein the first
tubular element (12) comprises a first series of spaced-apart bores (13) and a second
series of spaced-apart bores (13), said bores (13) being adapted to be aligned with
corresponding bores (113) provided in the first longitudinal tube (118a, 118b) and
receive the threaded rod of a screw such that said first tubular element (12) can
be fixedly connected to said first longitudinal tube (118a, 118b).
10. The quick release device (10) of any one of the preceding claims, wherein the end
portion (12a) of the first tubular element (12) is provided with a longitudinal slit
(12a1) substantially aligned with the slit (21c) separating the projections (21a, 21b)
of the ring (21) so that the internal diameter of said end portion (12a) can be reduced
when said projections (21a, 21b) are forced toward one another.
11. The quick release device (10) of any one of the preceding claims, wherein the second
tubular element (14) has a thin annular portion (14c) disposed along its length, said
annular portion (14c) having a higher outer diameter relative to the outer diameter
of the front end of said second tubular element (14) so as to define an abutment against
which abuts that the second longitudinal tube (122a, 122b) when said second tubular
element (14) is correctly positioned inside said second longitudinal tube (122a, 122b).
12. A wheelchair (100) comprising:
- a seat frame (112) supported on the ground by left and right drive wheels (111a,
111b), said seat frame (112) including first left and right longitudinal tubes (118a,
118b),
- a front frame (120) supported on the ground by left and right caster wheels (121a,
121b), said front frame (120) including second left and right longitudinal tubes (122a,
122b),
wherein said first left and said second left, respectively said first right and said
second right, longitudinal tubes (118a, 122a; 118b, 122b) are removably connected
together by a left, respectively a right, quick release device (10) according to any
one of the preceding claims.
13. The wheelchair (100) of claim 12, wherein the seat frame (112) supports a rigid or
semi-rigid seat plate (116).
14. The wheelchair (100) of claim 13, wherein the seat plate (116) is integral with the
first left and right longitudinal tubes (118a, 118b).
1. Schnell lösbare Vorrichtung (10), die zum lösbaren Miteinanderverbinden eines ersten
und eines zweiten Längsrohrs (118a, 122a; 118b, 122b) eines Rollstuhls (100) ausgeführt
ist, wobei die schnell lösbare Vorrichtung Folgendes umfasst:
- ein fest mit dem ersten Längsrohr (118a, 118b) verbindbares erstes röhrenförmiges
Element (12);
- ein fest mit dem zweiten Längsrohr (122a, 122b) verbindbares zweites röhrenförmiges
Element (14),
wobei das zweite röhrenförmige Element zur teleskopischen Aufnahme in dem ersten röhrenförmigen
Element ausgeführt ist;
- eine Klemmanordnung (20), die zum Klemmen des ersten röhrenförmigen Elements (12)
an das zweite röhrenförmige Element (14) zum Verhindern einer Axialbewegung des zweiten
röhrenförmigen Elements (14) relativ zu dem ersten röhrenförmigen Element (12) ausgeführt
ist, wobei die Klemmanordnung Folgendes umfasst:
- einen C-förmigen Ring (21), der integral mit einem Endteil (12a) des ersten röhrenförmigen
Elements (12), durch den das zweite röhrenförmige Element (14) eingeführt wird, ausgebildet
oder zu dessen Aufnahme ausgeführt ist, wobei der Ring zwei einander gegenüberliegende
Vorsprünge (21a, 21b) aufweist, die einen Längsschlitz (21c) begrenzen, der entlang
seiner ganzen Länge verläuft, wobei die Vorsprünge mit Durchgangslöchern (21e, 21f)
versehen sind, die eine erste Axialrichtung (XX') definieren;
- eine Verriegelungsstange (22), die sich durch die Durchgangslöcher (21e, 21f) erstreckt
und ein erstes und ein zweites Ende (22a, 22b) aufweist, die sich außerhalb des Rings
(21) erstrecken, wobei das erste Ende (22a) fest mit einer Mutter (23) verbunden ist
und das zweite Ende (22b) fest mit einem Schwenkelement (24) verbunden ist, das eine
zweite Axialrichtung (YY') definiert;
- einen Hebel (25) mit einem Griffende (25') und einem Schwenkende (25"), wobei das
Schwenkende (25") einen Hohlraum (24a1) aufweist, der zur Aufnahme des Schwenkelements (24) ausgeführt ist und dazu konfiguriert
ist, den Hebel (25) und die Verriegelungsstange (22) um die erste und die zweite Axialrichtung
(XX', YY') schwenkbar zu verbinden;
wobei das Schwenkende (25") dazu konfiguriert ist, die Vorsprünge (21a, 21 b) zueinander
zu zwingen, wenn der Hebel (25) aus einer geöffneten Position in eine geschlossene
Position um die zweite Axialrichtung (YY') schwenkt, wodurch das erste röhrenförmige
Element (12) an das zweite röhrenförmige Element (14) geklemmt wird;
wobei die Verriegelungsstange (22) dazu konfiguriert ist, in einer Verriegelungsposition
des Hebels (25) zumindest teilweise innerhalb einer in der Außenfläche des zweiten
röhrenförmigen Elements (14) vorgesehenen Nut (14b1) positioniert zu werden, wodurch die Axialbewegung des zweiten röhrenförmigen Elements
(14) relativ zum ersten röhrenförmigen Element (12) verhindert wird, und in einer
Entriegelungsposition des Hebels (25) außerhalb der Nut (14b1) positioniert zu werden, wodurch die Axialbewegung des zweiten röhrenförmigen Elements
(14) relativ zum ersten röhrenförmigen Element (12) gestattet wird,
dadurch gekennzeichnet, dass das zweite röhrenförmige Element (14) ein konisch geformtes Ende (14a) aufweist,
das zur Anlage an eine konisch geformte Schulter (16a) einer flexiblen Hülse (16)
ausgeführt ist, die mit mehreren Längsschlitzen (16b) versehen ist, wobei die Hülse
(16) verschiebbar in dem ersten röhrenförmigen Element (12) aufgenommen ist und durch
elastische Mittel (18) gegen das konisch geformte Ende (14a) gedrückt wird, wodurch
das Spiel zwischen dem ersten röhrenförmigen Element (12) und dem zweiten röhrenförmigen
Element (14) eingeschränkt oder vorzugsweise beseitigt wird.
2. Schnell lösbare Vorrichtung (10) nach Anspruch 1, wobei die Bewegung des Hebels (25)
aus seiner Verriegelungsposition in seine Entriegelungsposition erfolgt, wenn er aus
seiner geöffneten Position um die erste Axialrichtung (XX') schwenkt.
3. Schnell lösbare Vorrichtung (10) nach Anspruch 2, wobei die Bewegung des Hebels (25)
aus seiner Verriegelungsposition in seine Entriegelungsposition erfolgt, wenn er aus
seiner geöffneten Position um einen Winkel, der im Wesentlichen gleich 180 Grad beträgt,
um die erste Axialrichtung (XX') schwenkt.
4. Schnell lösbare Vorrichtung (10) nach einem der vorhergehenden Ansprüche, wobei der
Ring (21) eine ungefähr zylindrische Öffnung (21g) umfasst, die dazu ausgeführt ist,
das zweite röhrenförmige Element (14) aufzunehmen, und wobei die Verriegelungsstange
(22) mindestens einen mittleren Abschnitt (22c) umfasst, der eine Aussparung (22c1) aufweist, wobei der mittlere Abschnitt (22c) dazu konfiguriert ist, in der Verriegelungsposition
des Hebels (25) zumindest teilweise innerhalb der Öffnung (21g) positioniert zu werden,
wobei die Aussparung (22c1) zumindest teilweise innerhalb des die Vorsprünge (21a, 21b) des Rings (21) trennenden
Schlitzes (21c) verläuft, und in der Entriegelungsposition außerhalb der Öffnung (21g)
positioniert zu werden, wobei die Aussparung (22c1) zumindest teilweise innerhalb der Öffnung (21g) verläuft.
5. Schnell lösbare Vorrichtung (10) nach einem der vorhergehenden Ansprüche, wobei das
Schwenkende (25") des Hebels (25) eine Nockenfläche definiert, die bewirkt, dass die
Nut (23) zu dem Hebel (25) gezogen wird, wenn sich der Hebel (25) aus seiner geöffneten
Position in seine geschlossene Position bewegt, wodurch die Vorsprünge (21 a, 21 b)
zueinander gezwungen werden.
6. Schnell lösbare Vorrichtung (10) nach Anspruch 5, wobei das Schwenkende (25") wie
ein Gabelkopf geformt ist und zwei einander gegenüberliegende Flügel (25"a, 25"b)
umfasst, die mit Durchgangslöchern (25"a1, 25"b1) versehen sind, um die Positionierung des Schwenkelements (24) zu gestatten, wobei
die Flügel (25"a, 25"b) eine ungefähr längliche Form aufweisen und das Schwenkelement
(24) relativ zu den Flügeln (25"a, 25"b) positioniert ist, um einen Exzenter zu definieren.
7. Schnell lösbare Vorrichtung (10) nach Anspruch 6, wobei die Flügel (25"a, 25"b) an
ihrem Umfang abgerundet sind und an einem entlang der Verriegelungsstange (22) zwischen
dem Hebel (25) und dem C-förmigen Ring (21) positionierten Abstandsring (26) anliegen,
wobei die Fläche (26a) des Abstandsrings (26), die mit den Flügeln (25"a, 25"b) in
Kontakt steht, ein abgerundetes Profil aufweist, das dazu ausgeführt ist, die Flügel
(25"a, 25"b) aufzunehmen und die Schwenkbewegung des Hebels (25) um die zweite Axialrichtung
(YY') zwischen seiner geöffneten Position und seiner geschlossenen Position zu gestatten.
8. Schnell lösbare Vorrichtung (10) nach Anspruch 1, wobei die elastischen Mittel (18)
aus einer Schraubenfeder bestehen, von der ein hinteres Ende gegen eine Anlagefläche
stößt, die innerhalb des ersten Längsrohrs (118a, 118b) vorgesehen ist, und von der
ein vorderes Ende gegen ein hinteres Ende (16c) der flexiblen Hülse (16) stößt.
9. Schnell lösbare Vorrichtung (10) nach einem der vorhergehenden Ansprüche, wobei das
erste röhrenförmige Element (12) eine erste Reihe von beabstandeten Bohrungen (13)
und eine zweite Reihe von beabstandeten Bohrungen (13) umfasst, wobei die Bohrungen
(13) zur Ausrichtung auf im ersten Längsrohr (118a, 118b) vorgesehene entsprechende
Bohrungen (113) und Aufnahme des Gewindeschafts einer Schraube ausgeführt sind, so
dass das erste röhrenförmige Element (12) fest mit dem ersten Längsrohr (118a, 118b)
verbunden werden kann.
10. Schnell lösbare Vorrichtung (10) nach einem der vorhergehenden Ansprüche, wobei der
Endteil (12a) des ersten röhrenförmigen Elements (12) mit einem Längsschlitz (12a1) versehen ist, der auf den die Vorsprünge (21a, 21b) des Rings (21) trennenden Schlitz
(21c) im Wesentlichen ausgerichtet ist, so dass der Innendurchmesser des Endteils
(12a) reduziert werden kann, wenn die Vorsprünge (21a, 21b) zueinander gezwungen werden.
11. Schnell lösbare Vorrichtung (10) nach einem der vorhergehenden Ansprüche, wobei das
zweite röhrenförmige Element (14) einen dünnen ringförmigen Teil (14c) aufweist, der
entlang seiner Länge angeordnet ist, wobei der ringförmige Teil (14c) bezüglich des
Außendurchmessers des vorderen Endes des zweiten röhrenförmigen Elements (14) einen
größeren Außendurchmesser aufweist, um eine Anlagefläche zu definieren, gegen die
das zweite Längsrohr (122a, 122b) anstößt, wenn das zweite röhrenförmige Element (14)
ordnungsgemäß in dem zweiten Längsrohr (122a, 122b) positioniert ist.
12. Rollstuhl (100), umfassend:
- einen Sitzrahmen (112), der durch ein linkes und ein rechtes Antriebsrad (111a,
111b) auf dem Boden gestützt wird, wobei der Sitzrahmen (112) ein erstes linkes und
ein erstes rechtes Längsrohr (118a, 118b) enthält,
- einen Vorderrahmen (120), der durch ein linkes und ein rechtes Laufrad (121a, 121b)
auf dem Boden gestützt wird, wobei der Vorderrahmen (120) ein linkes und ein rechtes
Längsrohr (122a, 122b) enthält,
wobei das erste linke und das zweite linke bzw. das erste rechte und das zweite rechte
Längsrohr (118a, 122a; 118b, 122b) durch eine linke bzw. eine rechte schnell lösbare
Vorrichtung (10) nach einem der vorhergehenden Ansprüche lösbar miteinander verbunden
sind.
13. Rollstuhl (100) nach Anspruch 12, wobei der Sitzrahmen (112) eine starre oder halbstarre
Sitzplatte (116) stützt.
14. Rollstuhl (100) nach Anspruch 13, wobei die Sitzplatte (116) integral mit dem ersten
linken und dem ersten rechten Längsrohr (118a, 118b) ist.
1. Dispositif de désaccouplement rapide (10) conçu pour raccorder l'un à l'autre, de
manière amovible, un premier et un second tube longitudinal (118a, 122a; 118b, 122b)
d'un fauteuil roulant (100), ledit dispositif de désaccouplement rapide comprenant
:
- un premier élément tubulaire (12) pouvant être raccordé de manière fixe audit premier
tube longitudinal (118a, 118) ;
- un second élément tubulaire (14) pouvant être raccordé de manière fixe audit second
tube longitudinal (122a, 122b), ledit second élément tubulaire étant conçu pour être
reçu de manière télescopique à l'intérieur dudit premier élément tubulaire ;
- un ensemble de fixation par serrage (20) conçu pour fixer par serrage ledit premier
élément tubulaire (12) sur ledit second élément tubulaire (14) afin d'empêcher un
déplacement axial dudit second élément tubulaire (14) par rapport audit premier élément
tubulaire (12), ledit ensemble de fixation par serrage comprenant :
- une bague en forme de C (21) faisant partie intégrante d'une partie d'extrémité
(12a) dudit premier élément tubulaire (12) ou conçue pour accueillir celle-ci, à travers
laquelle est inséré ledit second élément tubulaire (14), ladite bague comportant deux
saillies opposées (21a, 21b) délimitant une fente longitudinale (21c) s'étendant le
long de la totalité de sa longueur, lesdites saillies étant pourvues de trous traversants
(21e, 21f) définissant une première direction axiale (XX') ;
- une goupille de verrouillage (22) s'étendant à travers lesdits trous traversants
(21e, 21f) et comportant une première et une seconde extrémité (22a, 22b) s'étendant
à l'extérieur de ladite bague (21), ladite première extrémité (22a) étant raccordée
de manière fixe à un écrou (23) et ladite seconde extrémité (22b) étant raccordée
de manière fixe à un élément formant pivot (24) définissant une seconde direction
axiale (YY') ;
- un levier (25) comportant une extrémité formant poignée (25') et une extrémité de
pivotement (25"), ladite extrémité de pivotement (25") comportant une cavité (25a1) conçue pour recevoir ledit élément formant pivot (24) et étant configurée de façon
à raccorder de manière pivotante le levier (25) à la goupille de verrouillage (22)
autour desdites première et seconde directions axiales (XX', YY') ;
ladite extrémité de pivotement (25") étant configurée de façon à déplacer lesdites
saillies (21a, 21b) l'une vers l'autre de manière forcée lorsque ledit levier (25)
pivote autour de ladite seconde direction axiale (YY') d'une position ouverte à une
position fermée, ceci fixant par serrage ledit premier élément tubulaire (12) contre
ledit second élément tubulaire (14) ;
ladite goupille de verrouillage (22) étant configurée de façon à être positionnée,
dans une position de verrouillage dudit levier (25), au moins partiellement à l'intérieur
d'une rainure (14b1) prévue dans la surface extérieure dudit second élément tubulaire (14), ceci empêchant
le déplacement axial dudit second élément tubulaire (14) par rapport audit premier
élément tubulaire (12) et, dans une position de déverrouillage dudit levier (25),
à l'extérieur de ladite rainure (14b1), ceci permettant le déplacement axial dudit second élément tubulaire (14) par rapport
audit premier élément tubulaire (12),
caractérisé en ce que ledit second élément tubulaire (14) comporte une extrémité de forme conique (14a)
conçue pour venir en appui contre un épaulement de forme conique (16a) d'un manchon
souple (16) pourvu d'une pluralité de fentes longitudinales (16b), ledit manchon (16)
étant reçu à coulissement à l'intérieur dudit premier élément tubulaire (12) et poussé
contre ladite extrémité de forme conique (14a) par des moyens élastiques (18), ceci
limitant ou, de préférence, éliminant le jeu entre ledit premier élément tubulaire
(12) et ledit second élément tubulaire (14).
2. Dispositif de désaccouplement rapide (10) selon la revendication 1, dans lequel le
déplacement du levier (25) de sa position de verrouillage à sa position de déverrouillage
se produit lorsqu'il pivote autour de la première direction axiale (XX') à partir
de sa position ouverte.
3. Dispositif de désaccouplement rapide (10) selon la revendication 2, dans lequel le
déplacement du levier (25) de sa position de verrouillage à sa position de déverrouillage
se produit lorsqu'il pivote d'un angle essentiellement égal à 180 degrés autour de
la première direction axiale (XX') à partir de sa position ouverte.
4. Dispositif de désaccouplement rapide (10) selon l'une quelconque des revendications
précédentes, dans lequel la bague (21) comprend une ouverture (21g) approximativement
cylindrique conçue pour recevoir le second élément tubulaire (14) et dans lequel la
goupille de verrouillage (22) comprend au moins une section centrale (22c) comportant
un évidement (22c1), ladite section centrale (22c) étant configurée de façon à être positionnée, dans
la position de verrouillage du levier (25), au moins partiellement à l'intérieur de
ladite ouverture (21g), ledit évidement (22c1) s'étendant au moins partiellement à l'intérieur de la fente (21c) séparant les saillies
(21a, 21b) de la bague (21) et, dans la position de déverrouillage, à l'extérieur
de ladite ouverture (21g), ledit évidement (22c1) s'étendant au moins partiellement à l'intérieur de ladite ouverture (21g).
5. Dispositif de désaccouplement rapide (10) selon l'une quelconque des revendications
précédentes, dans lequel l'extrémité de pivotement (25") du levier (25) définit une
surface formant came qui amène l'écrou (23) à être tiré en direction du levier (25)
à mesure que ledit levier (25) se déplace de sa position ouverte à sa position fermée,
ceci déplaçant lesdites saillies (21 a, 21 b) l'une vers l'autre de manière forcée.
6. Dispositif de désaccouplement rapide (10) selon la revendication 5, dans lequel l'extrémité
de pivotement (25") présente la forme d'une chape et comprend deux ailettes opposées
(25"a, 25"b) pourvues de trous traversants (25"a1, 25"b1) de façon à permettre le positionnement de l'élément formant pivot (24), lesdites
ailettes (25"a, 25"b) présentant une forme approximativement oblongue et ledit élément
formant pivot (24) étant positionné par rapport auxdites ailettes (25"a, 25"b) de
façon à définir un excentrique.
7. Dispositif de désaccouplement rapide (10) selon la revendication 6, dans lequel les
ailettes (25"a, 25"b) sont arrondies au niveau de leur périphérie et sont en appui
sur une bague formant entretoise (26) positionnée entre le levier (25) et la bague
en forme de C (21) le long de la goupille de verrouillage (22), la surface (26a) de
ladite bague formant entretoise (26) qui est en contact avec lesdites ailettes (25"a,
25"b) présentant un profil arrondi conçu pour recevoir lesdites ailettes (25"a, 25"b)
et permettre le mouvement de pivotement dudit levier (25) autour de la seconde direction
axiale (YY') entre sa position ouverte et sa position fermée.
8. Dispositif de désaccouplement rapide (10) selon la revendication 1, dans lequel les
moyens élastiques (18) consistent en un ressort hélicoïdal, une extrémité arrière
de celui-ci se trouvant en butée contre une butée prévue à l'intérieur du premier
tube longitudinal (118a, 118b) et une extrémité avant de celui-ci se trouvant en butée
contre une extrémité arrière (16c) du manchon souple (16).
9. Dispositif de désaccouplement rapide (10) selon l'une quelconque des revendications
précédentes, dans lequel le premier élément tubulaire (12) comprend une première série
d'orifices espacés (13) et une seconde série d'orifices espacés (13), lesdits orifices
(13) étant conçus pour être alignés sur des orifices correspondants (113) prévus dans
le premier tube longitudinal (118a, 118b) et recevoir la tige filetée d'une vis de
telle sorte que ledit premier élément tubulaire (12) puisse être raccordé de manière
fixe audit premier tube longitudinal (118a, 118b).
10. Dispositif de désaccouplement rapide (10) selon l'une quelconque des revendications
précédentes, dans lequel la partie d'extrémité (12a) du premier élément tubulaire
(12) est pourvue d'une fente longitudinale (12a1) essentiellement alignée sur la fente
(21c) séparant les saillies (21a, 21b) de la bague (21) de telle sorte que le diamètre
intérieur de ladite partie d'extrémité (12a) puisse être réduit lorsque lesdites saillies
(21a, 21b) sont déplacées l'une vers l'autre de manière forcée.
11. Dispositif de désaccouplement rapide (10) selon l'une quelconque des revendications
précédentes, dans lequel le second élément tubulaire (14) comporte une partie annulaire
(14c) mince disposée le long de sa longueur, ladite partie annulaire (14c) présentant
un diamètre extérieur supérieur par rapport au diamètre extérieur de l'extrémité avant
dudit second élément tubulaire (14) de façon à définir une butée contre laquelle vient
buter le second tube longitudinal (122a, 122b) lorsque ledit second élément tubulaire
(14) est positionné correctement à l'intérieur dudit second tube longitudinal (122a,
122b).
12. Fauteuil roulant (100) comprenant :
- une structure d'assise (112) supportée sur le sol par des roues motrices gauche
et droite (111a, 111b), ladite structure d'assise (112) comprenant des premiers tubes
longitudinaux gauche et droit (118a, 118b),
- une structure avant (120) supportée sur le sol par des roues pivotantes gauche et
droite (121a, 121b), ladite structure avant (120) comprenant des seconds tubes longitudinaux
gauche et droit (122a, 122b), dans lequel ledit premier tube longitudinal gauche et
ledit second tube longitudinal gauche, respectivement ledit premier tube longitudinal
droit et ledit second tube longitudinal droit (118a, 122a ; 118b, 122b), sont raccordés
l'un à l'autre, de manière amovible, par un dispositif de désaccouplement rapide (10)
gauche, respectivement un dispositif de désaccouplement rapide (10) droit, selon l'une
quelconque des revendications précédentes.
13. Fauteuil roulant (100) selon la revendication 12, dans lequel la structure d'assise
(112) supporte une plaque d'assise (116) rigide ou semi-rigide.
14. Fauteuil roulant (100) selon la revendication 13, dans lequel la plaque d'assise (116)
fait partie intégrante des premiers tubes longitudinaux gauche et droit (118a, 118b).