[0001] This invention relates to an invalid hoist.
[0002] According to the invention there is provided an invalid hoist comprising a mobile
chassis, a mast upstanding from the chassis, a lifting arm pivotably connected to
the upper end of the mast, the lifting arm having a sling hanger or at least one sling
attachment point at or adjacent to one end thereof, and a power operated extendible/retractable
actuator between the lifting arm and a lower part of the mast, the lifting arm being
pivotably connected to the upper end of the mast at a position intermediate its ends
and the actuator being connected to the lifting arm on the side of the pivotable connection
between the lifting arm and the mast remote from said one end of the lifting arm.
[0003] When this hoist is in operation to raise or lower a patient, the weight of the patient
places the actuator under tension as compared with known invalid hoists in which the
weight of the patient places the actuator under compression.
[0004] Preferably, a link is pivotably connected between one end of the actuator and either
the lifting arm or the mast so that if the lifting arm meets with an obstruction during
a lowering operation, the actuator and link will pivot relative to one another so
that the actuator can continue to extend without applying a force to the lifting arm
to urge the latter against the obstruction.
[0005] Preferably, means are provided to de-energise the actuator in response to a lack
of tension applied to the actuator which will occur should the lifting arm meet with
an obstruction during a lowering operation. In this case, the actuator can be connected
to the mast for limited movement relative thereto between a first position which it
occupies when under tension and a second position which is lower than the first position
and which it occupies when not under tension and the means could be in the form of
a microswitch operable to de-energise the actuator when the actuator moves to said
second position.
[0006] The invention will now be more particularly described, by way of example, with reference
to the accompanying drawings, in which:-
Figure 1 is a side view of one embodiment of an invalid hoist according to the present
invention,
Figure 2 is a fragmentary side view showing the connection between the actuator and
the lifting arm on an enlarged scale,
Figure 3 is a fragmentary side view showing the connection between the actuator and
the mast in one condition, and
Figure 4 is a fragmentary side view showing the connection between the actuator and
the mast in another condition.
[0007] Referring now to the drawings, the invalid hoist shown therein has a mobile chassis
10 provided with castors 11, a fixed length mast 12 upstanding from the chassis 10
and a lifting arm 13 pivotably connected intermediate its ends to the upper end of
the mast 12 about a pivot shaft 14.
[0008] A sling hanger 15 is connected to one end of the lifting arm 13 and a motor driven
extendible/retractable actuator 16 is connected between the other end of the lifting
arm 13 and a bracket 17 secured to a lower end portion of the mast 12. The sling hanger
has a plurality of sling attachment points (not shown) for supporting a full body
sling in known manner (see, for example, GB2184706). The actuator 16 is powered by
a rechargeable battery 18.
[0009] The length of the lifting arm 13 between the sling hanger 15 and the mast 12 is greater
than the length of the lifting arm between the mast 12 and the actuator 16.
[0010] A link 18 is connected between the upper end of the actuator 16 and a lug 19 fixed
to said other end of the lifting arm 13. One end of the link 18 is pivotably connected
to the upper end of the actuator 16 and the other end of the link 18 is pivotably
connected to the lug 19. If the lifting arm 13 meets with an obstruction during a
patient lowering operation, the link 18 and actuator 16 will pivot relative to one
another, as shown in Figure 2, so that the actuator 16 can continue to extend without
applying a force to the lifting arm to urge the latter against the obstruction.
[0011] As shown in Figures 3 and 4, the actuator 16 is pivotably connected to the bracket
17 by a pivot pin 20. The pivot pin 20 is fixed relative to the bracket 17 and extends
through an elongate slot 21 formed in the lower end of the actuator 16. The actuator
16 is thus connected to the bracket 17 for limited upwards and downwards movement
determined by the length of the slot 21 and the diameter of the pivot pin 20. A sensor,
typically in the form of a microswitch 22, senses when the actuator 16 is in a lowermost
position and de-energises the actuator 16.
[0012] The leverage applied by the lifting arm 13 (particularly when the sling hanger 15
supports a patient in a sling) will normally place the actuator 16 under tension and,
in this condition, the actuator 16 will adopt in its uppermost position relative to
the bracket 17, as shown in Figure 3. However, if the lifting arm 13 meets with an
obstruction during a patient lowering operation, the actuator 16 will move to its
lowermost position relative to the bracket 17, as shown in Figure 4. The actuator
16 will trip the microswitch 22 and de-energise the actuator.
[0013] A handle 23 is connected to an upper part of a mast so that a helper can move the
hoist along the ground.
[0014] The invalid hoist described above is designed to lift a patient in a full body support
sling. It could, however, be modified to serve as a standing aid for raising a patient
from a seated to a standing position. In this case, the said one end of the lifting
arm can be forked to provide two laterally spaced sling attachment points for attaching
a sling which passes around the back of a patient and below the patient's armpits.
The chassis is provided with a footrest and a knee abutment is provided on the mast.
[0015] The motor driven actuator 16 could be replaced by a fluid pressure operated actuator.
Also, instead of being rigid, the link 18 could be flexible.
1. An invalid hoist comprising a mobile chassis (10), a mast (12) upstanding from the
chassis, a lifting arm (13) pivotably connected to the upper end of the mast, the
lifting arm having a sling hanger (15) or at least one sling attachment point at or
adjacent to one end thereof, and a power operated extendible/retractable actuator
(16) between the lifting arm (13) and a lower part of the mast (12), the lifting arm
(13) being pivotably connected to the upper end of the mast (12) at a position (14)
intermediate its ends and the actuator (16) being connected to the lifting arm (13)
on the side of the pivotable connection between the lifting arm and the mast remote
from said one end of the lifting arm.
2. An invalid hoist as claimed in claim 1, wherein a link (18) is pivotably connected
between one end of the actuator (16) and either the lifting arm (13) or the mast (12)
so that if the lifting arm (13) meets with an obstruction during a lowering operation,
the actuator (16) and link (18) will pivot relative to one another so that the actuator
(16) can continue to extend without applying a force to the lifting arm (13) to urge
the latter against the obstruction.
3. An invalid hoist as claimed in claim 1 or claim 2, wherein means (22) are provided
to de-energise the actuator (16) in response to a lack of tension applied to the actuator(16).
4. An invalid hoist as claimed in claim 3, wherein the actuator (16) is connected to
the mast (12) for limited movement relative thereto between a first position which
it occupies when under tension and a second position which is lower than the first
position and which it occupies when not under tension.
5. An invalid hoist as claimed in claim 4, wherein the said de-energising means is in
the form of a microswitch (22) operable to de-energise the actuator (16) when the
actuator moves to said second position.