[0001] The present invention relates to a modular wheel assembly for a wheelchair. The present
invention also relates to a wheelchair comprising two modular wheel assemblies.
[0002] Power wheelchairs or motorized wheelchairs, power chairs, or electric wheelchairs,
are traditionally equipped with an energy source, such as batteries, to power the
wheelchair. Many different styles of power chair drive systems exist, among them four-wheeled
power chairs that have a front wheel drive or a rear wheel drive.
[0003] Converting a power chair from front wheel drive to rear wheel drive is usually done
by rotating the seat around relative to the power chair base to create either a front
wheel driven power chair, or a rear wheel driven power chair. For example,
US 6,290,011 B1 describes a front wheel/rear wheel drive convertible wheelchair, where a seat assembly
is adapted to be reversed in direction relative to a seat support. Here, the user
either faces forward with the drive wheels at the front or at the rear. To reverse
this, the seat is rotated 180° an then re-fixed.
[0004] However, converting a wheelchair from front wheel drive to rear wheel drive by rotating
the seat has several disadvantages. As for example, the center of gravity is never
optimized for each of both cases, since the relationship between the user and seat
mass to wheel position remains similar between front wheel drive and rear wheel drive.
This 'compromise' results in reduced stability and drive traction.
[0005] Also, where the seat has powered options such as recline, tilt and lift, the obvious
location for the wiring connections between the seating and powerbase would be near
the rear of the seat. This is where the actuators are generally located and where
the tilt 'hinge' point is. Therefore, rotation of the seat through 180° requires the
re-routing of the connecting wires. In one configuration of the seat, this requires
the wires to run across the top of the batteries from the rear of the seat to the
front of the base. Therefore, different wires of different lengths are required when
converting between front wheel drive and rear wheel drive.
[0006] Therefore, there is need for an improved wheel assembly for a wheelchair and a wheelchair
that overcome the above mentioned disadvantages.
[0007] This need is achieved according to the invention by a modular wheel assembly for
a wheelchair, comprising a frame member; and at least one castor wheel attached to
the frame member, and at least one drive wheel attached to the frame member, wherein
the frame member comprises at least one first connection member for connecting the
modular wheel assembly to a connection point on a modular power chair base of the
wheelchair.
[0008] In one example, the modular wheel assembly comprises at least one castor arm adapted
to carry the castor wheel, preferably the castor arm comprises at least one castor
fork for supporting the castor wheel.
[0009] In the example above, the drive wheel is arranged offset to a first side of the frame
member out of alignment of a centerline of the frame member in a first configuration,
and the drive wheel is arranged offset to the second side of the frame member out
of alignment of the centerline of the frame member in a second configuration, wherein
the second side is opposite to the first side.
[0010] Also, in the above example, in the first configuration, the castor arm is spaced
to the second side to carry the castor wheel out of alignment of the centerline of
the frame member, and
in the second configuration, the castor arm is spaced to the first side to carry the
castor wheel out of alignment of the centerline of the frame member.
[0011] In another example, the frame member comprises at least one second connection member
for connecting the modular wheel assembly to the connection point on the modular power
chair base of the wheelchair.
[0012] In the example above, the position of the second connection member is offset essentially
in the same horizontal plane from the position of the first connection member, preferably
offset by a distance ranging from 20mm to 100mm, preferably offset by a distance of
40mm, and wherein a connection of the first connection member to the connection point
corresponds to a front wheel drive mode configuration of the wheelchair, and a connection
of the second connection member to the connection point corresponds to a rear wheel
drive mode configuration of the wheelchair.
[0013] Also, in the example above, the first connection member is arranged on the frame
member so that the drive wheel is positioned away from the center of the modular power
chair base when the modular wheel assembly is connected to the connection point on
the modular power chair base of the wheelchair, and wherein the second connection
member is arranged on the frame member so that the drive wheels are positioned towards
the centre of the modular power chair base when the modular wheel assembly is connected
to the connection point on the modular power chair base of the wheelchair.
[0014] In yet another example, the modular wheel assembly comprises at least one suspension
member, wherein the frame member is adapted to support the suspension member.
[0015] In another example, the modular wheel assembly comprises at least one motor mount
arm adapted to carry at least one motor and the drive wheel.
[0016] Furthermore, the invention provides a wheelchair, comprising at least one modular
power chair base comprising at least one connection point on each side of the modular
power chair base for connecting at least one modular wheel assembly to each side of
the modular power chair base; and at least two modular wheel assemblies according
to the invention, wherein one modular wheel assembly is connected to each side of
the modular power chair base.
[0017] In one example, the two modular wheel assemblies comprise one modular wheel assembly
of the first configuration, and one modular wheel assembly of the second configuration.
[0018] In the above example, the wheelchair is adapted to be converted between the front
wheel drive mode configuration and the rear wheel drive mode configuration by swapping
the two modular wheel assemblies on the sides of the of the modular power chair base.
[0019] In one example, the wheelchair comprises a seat mounted on top of the modular power
chair base, preferably the seat is rigidly fixed to the modular power chair base.
[0020] In another example, the wheelchair comprises at least one leg support and/or at least
one foot support.
[0021] In yet another example, the modular power chair base comprises at least one further
connection point on each side of the modular power chair base for connecting the first
connection member or the second connection member of the modular wheel assemblies
to each side of the modular power chair base.
[0022] Thus, the invention is based on the surprising finding that by keeping the orientation
of the seat to power chair base constant, the wiring connections between the seat
and the power chair base remains also constant. Advantageously, the wiring looms are
always the same whether the chair is configured front wheel drive or rear wheel drive.
Therefore, only one design of looms needs to be utilized. Also, the location of the
seat height adjustment posts and seat interface remains constant to the battery box
as well as the location of the controller within the battery box, and the location
of the rear lights relative to the battery box. Hence, the design of the chair can
be simplified. Also, since the arrangement of the key components is always the same,
training and documentation as regards spares and maintenance is simplified. This also
reduces the amount of spare parts needed for the design.
[0023] In a further advantage, the frame member comprises at least one first connection
member and a second connection member for connecting the modular wheel assembly to
a connection point on the base of the wheelchair. Here, the first connection member
can be arranged on the frame member so that the drive wheels are positioned towards
the centre of the power chair base, and the second connection member can be arranged
on the frame member so that the drive wheels are positioned away from the power chair
base.
[0024] This allows to compensate for different relationships between the drive wheels and
the base structure of the wheelchair so that the centre of gravity can be optimized
for front wheel drive and rear wheel drive. In particular, when rear wheel drive is
chosen, it is important for good traction between the drive wheels and the ground
that the rear wheels are located in a forward direction, i.e. towards the wheelchair
centre. If the wheels are located towards the rear of the structure, i.e. towards
the battery box, then the traction will be limited. The seat location on the rear
wheel drive wheelchair base will be towards the front of the base to accommodate the
footrests protruding down from the seat structure in front of the base structure.
Because the seat has to be located in a forward location, i.e. due to physical space
then the centre of gravity will be between the centre of the wheelchair structure
and a little forward of this. Whereas, when forward wheel drive is chosen, traction
is rarely an issue as the center of gravity position is always towards the front,
i.e. to accommodate the footrest as described above, near to where the drive wheels
are located. However, forward wheel drive wheelchairs suffer from stability issues,
because the center of gravity is near to the front of the chair there is a tendency
for the chairs to tip forward when stopping quickly or going down slopes.
[0025] Therefore, by using the first and second connection members for connecting the modular
wheel assembly to the connection point on the power chair base improves 'tipping'
stability.
[0026] Also, by using modular wheel assemblies, the modular wheel assemblies can be located
onto the power chair base in both a front wheel drive and rear wheel drive configuration
by swapping the two modular wheel assemblies from the left hand side to the right
hand side of the power chair base and vice versa.
[0027] Further, by providing the modular wheel assemblies in a first configuration, and
in a second configuration allows to achieve a small lateral width between the castor
wheel when used in a front wheel drive configuration, which provides a more stable
driving performance, and a larger lateral width between the castor wheels when used
in a rear wheel drive configuration which provides more space to accommodate the castor
wheels and footrest.
[0028] Further advantages and features of the invention are presented in the following description
in which a preferred embodiment of the invention is shown by the help of the enclosed
figures, in which
- Figures 1a, 1b
- are perspective views of a wheelchair according to embodiments of the invention configured
in a front wheel drive mode and in a rear wheel drive mode;
- Figure 2
- is a side view of a modular wheel assembly according to one embodiment of the invention;
- Figures 3a, 3b
- are top views of a wheelchair according to embodiments of the invention configured
in a front wheel drive mode and in a rear wheel drive mode; and
- Figures 4a, 4b
- are side views of a wheelchair according to embodiments of the invention configured
in a front wheel drive mode and in a rear wheel drive mode, and having foot supports
installed.
[0029] Figures 1a, 1b show perspective views of a wheelchair 1, 1' according to embodiments
of the invention configured in a front wheel drive mode and in a rear wheel drive
mode.
[0030] As shown in figure 1a, the wheelchair 1 comprises two modular wheel assemblies 3,
3', where one of the modular wheel assemblies 3, 3' is connected to each side of the
wheelchair 1 at a modular power chair base 5. The modular wheel assemblies 3, 3' comprise
a frame member 7, 7' comprising a castor wheel 9, 9' and a drive wheel 11, 11' each.
In the shown example, the modular wheel assemblies 3, 3' also comprise a castor arm
13, 13' with a castor fork 15, 15' each for supporting the respective castor wheel
9, 9'. Also, as it can be seen from figure 1a, the wheelchair 1, 1' comprises a motor
mount arm 17, 17' that carries a motor 19, 19' and the drive wheel 11, 11'.
[0031] The wheelchair 1,1' shown in figures 1a, 1b comprises a seat 21 mounted on top of
the modular power chair base 5.
[0032] Modular wheel assemblies 3, 3' according to a first configuration and of a second
configuration are mounted on the modular power chair base 5. In the first configuration,
the drive wheel 11 is arranged offset to a first side of the frame member 7 out of
alignment of a centerline of the frame member 7 so that the drive wheel 11 sticks
out to the side of the wheelchair 1. In the second configuration the drive wheel 11'
sticks out to the opposite side of the wheelchair 1 as it can be best seen from figure
1b. However, the skilled person would know that the invention could be also carried
out when two identical wheels assemblies are installed on both sides of the modular
power chair base, where the drive wheels are essentially arranged in alignment with
the centerline of the frame member.
[0033] As it can be seen from figure 1a, the wheelchair 1 has the larger drive wheels 11,
11' at the front. In this mode, the centre of gravity is more forward of the centre
of the modular power chair base 5, i.e. near the drive wheels 11, 11' to ensure traction
between the tires and ground. When such a wheelchair 1 is driven on an uneven surface
or at higher speeds, the wheelchair 1 tends to 'fish tail'. This is an unintended
motion of the rear of the wheelchair 1 oscillating left/right. Small directional corrections
at the drive wheels 11, 11' or changes in direction caused by the road surface are
exaggerated at the rear extremity of the wheelchair 1. Also often associated with
this is castor flutter; castor flutter is the rapid and uncontrolled oscillation of
the castor wheels 9, 9'.
[0034] This is initiated by the 'fish tailing' and caused by the relatively low downward
load on the castor wheels 9, 9', i.e. due to the forward centre of gravity, and relatively
heavy mass of the castor wheels 9, 9'. This phenomenon gets worse at higher speeds.
Therefore, small lateral dimensions between the castor wheels 9, 9' provides a better
(more stable) driving performance.
[0035] Figure 1b essentially shows the arrangement of figure 1a, however, the the two modular
wheel assemblies 3, 3' are swapped on the sides of the of the modular power chair
base 5. Thus, the wheelchair 1' is adapted to be converted from a front wheel drive
mode to a rear wheel drive mode (and vice versa) by swapping the two modular wheel
assemblies 3, 3' on the sides of the of the modular power chair base 5. In the rear
wheel drive mode configuration that is shown in figure 1b, the larger drive wheels
11, 11' are at the rear. Therefore the castor wheels 9, 9' and their support are located
at the front of the wheelchair 1', in the same area where the footrests (not shown
in figures 1a, 1b) could be located.
[0036] Figure 2 shows a side view of a modular wheel assembly 3 according to one embodiment
of the invention. The shown modular wheel assembly could be one of the modular wheel
assemblies 3 shown in figures 1a, 1b.
[0037] As it can be seen from the figure, the modular wheel assembly 3 comprises a first
connection member 23a, and a second connection member 23b. The position of the second
connection member 23b is offset from the position of the first connection member 23a.
For example, the connection members 23a, 23b could be offset in the same horizontal
plane by a distance ranging from 20mm to 100mm, preferably offset by a distance of
20mm. Both connection members 23a, 23b are suitable to be connected to the connection
point on the modular power chair base 5 of the wheelchair. However, depending on whether
a front wheel drive mode or a rear wheel drive mode is desired by the user, only one
of the connection members 23a, 23b is connected to the connection point. Therefore,
the first connection member 23a is arranged on the frame member 7 so that the drive
wheel 11 is positioned away from the center of the modular power chair base 5 when
the modular wheel assembly 3 is connected to the connection point on the modular power
chair base 5 of the wheelchair by the first connection member 23a, and the second
connecting 23b member is arranged on the frame member 7 so that the drive wheel 11
is positioned towards the centre of the modular power chair base 5 when the modular
wheel assembly 3 is connected to the connection point on the modular power chair base
5 of the wheelchair by the second connection member 23b.
[0038] Therefore, in the shown embodiment, a connection of the first connection member 23a
to the connection point on the modular power chair base 5 corresponds to a front wheel
drive mode of the wheelchair, and a connection of the second connection member 23b
to the connection point corresponds to a rear wheel drive mode of the wheelchair.
However, in another embodiment, which is not shown in the figures, there could be
alternatively, i.e. to achieve the same effect, two connection points arranged on
each side of the modular power base 5 that connect to one connection member on the
modular power chair base.
[0039] Figures 3a, 3b are top views of a wheelchair 1, 1' according to embodiments of the
invention configured in a front wheel drive mode and in a rear wheel drive mode. The
shown wheelchairs 1, 1' and modular wheel assemblies 3, 3' could be the wheelchairs
and modular wheel assemblies that are shown in the previous figures. Figure 3a shows
the wheelchair 1 in a front wheel drive mode as also shown in figure 1a, and figure
3b shows the wheelchair 1' in a rear wheel drive mode as also shown in figure 1b.
Both figures 3a, 3b show that the castor arms 13, 13' could be also spaced, e.g. bend,
to a side of the frame members 7, 7' to carry the respective castor wheel 9, 9' out
of alignment of the centerline of the respective frame member 7, 7'.
[0040] Advantageously, by having the castor arms 13, 13' shaped as shown in figures 3a,
3b allows to achieve small lateral dimensions between the castor wheels 11, 11' when
the wheelchair 1 is configured in the front wheel drive mode to provide a better,
i.e. more stable, driving performance. On the other hand, when the modular wheel assemblies
3, 3' are swapped around on the modular power base of the wheelchair 1' as shown in
figure 3b, i.e. the wheelchair 1' is configured in the rear wheel drive mode, larger
lateral dimensions between the castor wheels 11, 11' provides more space to accommodate
the castors and footrests (not shown in figures 3a, 3b).
[0041] Figures 4a, 4b are side views of a wheelchair 1, 1' according to embodiments of the
invention configured in a front wheel drive mode and in a rear wheel drive mode, and
having a foot support 25 installed.
[0042] Wheelchairs normally provide a leg/foot support, these come in two general formats:
Individual footrests - one left, one right of the centreline. These can be fixed or
swing away to aid user access. They come in various leg angles and can be electrical
operated.
Centre Mount footrest - one single device located on the wheelchair centerline (not
shown in figures 4a, 4b).
[0043] As it can be seen from the figures, the foot supports 25 are located on the front
edge of the wheelchair seat 21, the clinical aim is to provide a 90° knee angle, i.e.
the angle between the thigh and lower leg. To minimize the overall length of the wheelchair
1,1', i.e. to minimize the turning circle, and to provide a stable chair, i.e. one
that does not tip forward, the seat front edge and the drive wheels usual coincide.
Therefore the usual footrest used on front wheel drive wheelchairs 1 are Centre mount
version as these avoid collisions with the drive wheels. However, the design according
to the invention allows to use one common foot support 25 that can be used for both
modes.
[0044] The features disclosed in this specification, the claims and the figures maybe important
for the claimed invention, taken separately or in any combination, for the respective
different embodiments.
Reference sign list
[0045]
- 1, 1'
- wheel chair
- 3, 3'
- modular wheel assembly
- 5
- modular power chair base
- 7, 7'
- frame member
- 9, 9'
- castor wheel
- 11, 11'
- drive wheel
- 13, 13'
- castor arm
- 15, 15'
- castor fork
- 17, 17'
- motor mount arm
- 19, 19'
- motor
- 21
- seat
- 23a, 23b
- first and second connection member
- 25
- foot support
1. A modular wheel assembly (3, 3') for a wheelchair (1, 1'), comprising:
a frame member (7, 7'); and
at least one castor wheel (9, 9') attached to the frame member (7, 7'), and at least
one drive wheel (11, 11') attached to the frame member (7, 7'),
characterized in that
the frame member (7, 7') comprises at least one first connection member (23a) for
connecting the modular wheel assembly (3, 3') to a connection point on a modular power
chair base (5) of the wheelchair (1, 1').
2. The modular wheel assembly (3, 3') according to claim 1,
characterized in that
the modular wheel assembly (3, 3') comprises:
at least one castor arm (13, 13') adapted to carry the castor wheel (9, 9'), preferably
the castor arm (13, 13') comprises at least one castor fork (15, 15') for supporting
the castor wheel (9, 9').
3. The modular wheel assembly (3, 3') according to claim 2, characterized in that
in a first configuration, the drive wheel (11, 11') is arranged offset to a first
side of the frame member (7, 7') out of alignment of a centerline of the frame member
(7, 7'), and in a second configuration, the drive wheel (11, 11') is arranged offset
to the second side of the frame member (7, 7') out of alignment of the centerline
of the frame member (7, 7'), wherein the second side is opposite to the first side.
4. The modular wheel assembly (3, 3') according to claim 3, characterized in that
in the first configuration, the castor arm (13, 13') is spaced to the second side
to carry the castor wheel (9, 9') out of alignment of the centerline of the frame
member (7, 7'), and in the second configuration, the castor arm (13, 13') is spaced
to the first side to carry the castor wheel (9, 9') out of alignment of the centerline
of the frame member (7, 7').
5. The modular wheel assembly (3, 3') according to one of the preceding claims,
characterized in that
the frame member (7, 7') comprises at least one second connection member (23b) for
connecting the modular wheel assembly (3, 3') to the connection point on the modular
power chair base (5) of the wheelchair (1, 1').
6. The modular wheel assembly (3, 3') according to claim 5, characterized in that
the position of the second connection member (23b) is offset essentially in the same
horizontal plane from the position of the first connection member (23a), preferably
offset by a distance ranging from 20mm to 100mm, preferably offset by a distance of
40mm, and wherein a connection of the first connection member (23a) to the connection
point corresponds to a front wheel drive mode configuration of the wheelchair (1,
1'), and a connection of the second connection member (23b) to the connection point
corresponds to a rear wheel drive mode configuration of the wheelchair (1, 1').
7. The modular wheel assembly (3, 3') according to claims 5 or 6, characterized in that
the first connection member (23a) is arranged on the frame member (7, 7') so that
the drive wheel (11, 11') is positioned away from the center of the modular power
chair base (5) when the modular wheel assembly (3, 3') is connected to the connection
point on the modular power chair base (5) of the wheelchair (1, 1'), and wherein
the second connection member (23b) is arranged on the frame member (7, 7') so that
the drive wheels (11, 11') are positioned towards the centre of the modular power
chair base (5) when the modular wheel assembly (3, 3') is connected to the connection
point on the modular power chair base (5) of the wheelchair (1, 1').
8. The modular wheel assembly (3, 3') according to one of the preceding claims,
characterized in that
the modular wheel assembly (3, 3') comprises:
at least one suspension member, wherein the frame member (7, 7') is adapted to support
the suspension member.
9. The modular wheel assembly (3, 3') according to one of the preceding claims,
characterized in that
the modular wheel assembly (3, 3') comprises:
at least one motor mount arm (17, 17') adapted to carry at least one motor (19, 19')
and the drive wheel (11, 11').
10. A wheelchair (1, 1'), comprising:
at least one modular power chair base (5) comprising at least one connection point
on each side of the modular power chair base (5) for connecting at least one modular
wheel assembly (3, 3') to each side of the modular power chair base (5); and
at least two modular wheel assemblies according to claims 1 to 9, wherein one modular
wheel assembly (3, 3') is connected to each side of the modular power chair base (5).
11. The wheelchair (1, 1'), according to claim 10, characterized in that the two modular wheel assemblies comprise one modular wheel assembly (3, 3') of the
first configuration, and one modular wheel assembly (3, 3') of the second configuration.
12. The wheelchair (1, 1'), according to claims 10 or 11, characterized in that the wheelchair (1, 1') is adapted to be converted between the front wheel drive mode
configuration and the rear wheel drive mode configuration by swapping the two modular
wheel assemblies on the sides of the of the modular power chair base (5).
13. The wheelchair (1, 1'), according to one of claims 10 to 12, characterized in that the wheelchair (1, 1') comprises a seat (21) mounted on top of the modular power
chair base (5), preferably the seat (21) is rigidly fixed to the modular power chair
base (5).
14. The wheelchair (1, 1'), according to one of claims 10 to 13, characterized in that the wheelchair (1, 1') comprises at least one leg support and/or at least one foot
support (25).
15. The wheelchair (1, 1'), according to one of claims 10 to 14, characterized in that
the modular power chair base (5) comprises at least one further connection point on
each side of the modular power chair base (5) for connecting the first connection
member (23a) or the second connection member (23b) of the modular wheel assemblies
(3, 3') to each side of the modular power chair base (5).