The invention relates to an adjustable-position load supporting arm comprising a framework having on the whole the shape of a deformable parallelogram and provided with at least a fixed link, a mobile link, a first and a second mobile connecting rod and a free end able to support a load.
The invention also relates to a load suspending device comprising such a supporting arm.
More particularly, the invention applies to a supporting arm for a suspending device intended to be used in a medical environment, in particular in an operating room.
A suspending device for an operating room comprises in a general way one or more supporting arms, which can be articulated and suspended to the ceiling of the operating room an which are intended to support a load such as for example an equipment such as a lighting device, a monitor, a camera, etc, or a medical device such as a transfusion or perfusion bottle, etc.
As it is known, the supporting arm comprises at least one tilting element having the shape of a deformable parallelogram, by means of which the supporting arm enables the user to modify in an easy and stable way the angular position of the arm in order to manually position the load for example at a desired height. The user can then put or remove a load once the supporting arm is blocked in position.
To this end, it is known to provide the above-described supporting arm with a mechanism comprising a pneumatic jack which can be provided with a mechanism for blocking the jack. For example, such a supporting arm is known from patent document FR 2 899 309. One drawback of such a supporting arm is that the jack is adapted to support a reduced range of weighting loads. Moreover, the jack of this supporting arm is fixed so as to, on the one hand, position the supporting arm into some desired position or other when the supporting arm supports a load and, on the other hand, to drive the supporting arm into a predetermined inoperative position when the supporting arm does not support any load. For putting a load at the free end of the tilting element, the user must position the supporting arm into this predetermined blocking position in which the mechanism for blocking the jack can block the supporting arm. The user must then move the supporting arm beyond the blocking position thereof in order to be able to unblock and position the supporting arm at the desired place. In some cases, this single predetermined blocking position can be difficult to be reached by the user and not adapted to receive a load.
An adjustable-position load supporting arm is also known from patent documents US-2004/188578, US-2011/315843, FR-2908497, US-2004/084587 and DE-19501028.
The purpose of the invention is to propose another adjustable-position load supporting arm which is able to support various loads and to be loaded in several positions.
For this purpose, the object of the invention is an adjustable-position load supporting arm comprising a framework having on the whole the shape of a deformable parallelogram and provided with at least a fixed link, a mobile link, a first and a second mobile connecting rod and a free end able to support a load, a jack comprising a body and a piston one of which is coupled with the fixed link and the other of which is coupled with at least one of the first and second connecting rods, said jack being able to actuate said first and second connecting rods with respect to said fixed link so as to deform said deformable parallelogram, said jack being of the adjustable-pressure type so that the pressure inside said jack can be adjusted according to the weight of said load supported by said supporting arm, wherein it comprises, at said free end, a connecting piece able to support said load and to be firmly connected to:
in a first configuration, said mobile link so as to have an axis of orientation that is fixed with respect to said fixed link and variable with respect to said first and second connecting rods when said supporting arm shifts position,
in a second configuration, at least one of said first and second connecting rods so as to have an axis of orientation which is variable with respect to said fixed rod and fixed with respect to said first and second connecting rods when said supporting arm shifts position.
With such a load supporting arm, when putting a load onto the supporting arm, for example in order to replace a load with another load having a different weight, i.e. a heavier or lighter load, a user adjusts the interior pressure in the jack according to the weight of this other load. The supporting arm according to the invention is thus compatible with a large variety of equipments or devices. Moreover, the user can fix to the supporting arm a load whose axis will remain either parallel to the width of the parallelogram, i.e. the load is maintained vertical whatever the slope of the supporting arm, or to the length of the parallelogram, i.e. the axis of the load follows the slope of the jack of the supporting arm whatever the slope of the supporting arm.
Such a load supporting arm according to the invention can advantageously have the following features:
the supporting arm comprises a device for blocking the angular position of the first, second connecting rod with respect to the fixed link, the blocking device comprising a toothed rack and a latch one of which is firmly connected to the body of the jack and the other of which is firmly connected to the piston of the jack, the latch being arranged so as to be mobile along the toothed rack and able to cooperate with said toothed rack so as to block the angular position of the first, second connecting rod with respect to the fixed link in a plurality of blocking positions. Advantageously, the load change is thus easy and ergonomic for the user who can block the supporting arm in some desired position or other in order that the user can put a load onto the supporting arm or replace the load with another;
the latch comprises at least one cog intended to be inserted into a notch in the toothed rack in order to block the supporting arm in position. Inserting the cog into a notch in the toothed rack enables to block very efficiently the latch in the toothed rack and thus the supporting arm, for a wide range of weighting loads. As a comparison, friction blocking devices are not sufficient for retaining the supporting arm if the load is too heavy;
the supporting arm comprises a valve coupled with the jack and intended to connect said jack to a device for adjusting the pressure in the jack;
the supporting arm comprises at least one shell forming the second connecting rod jacketing the first connecting rod;
the first connecting rod has the shape of a Y whose basis is pivotally mounted on the fixed link, one branch of which has its free end pivotally mounted on the mobile link and the other branch of which has its free end connected to one end of the jack, the other end of the jack being able to pivot with respect to the fixed link.
The invention applies to a load suspending device comprising at least one articulated arm a first arm of which is arranged so as to be rotatable according to a rotational movement in a first plane and a supporting arm according to the invention connected to the first arm by means of a pivot joint arranged so as to rotate according to a rotational movement in a second plane distinct from the first plane.
The present invention will be better understood and other advantages will clearly arise from the detailed description of an embodiment given as a nonrestrictive example and represented in the annexed drawings in which:
In
Each articulated arm 2 comprises a first arm 3, so-called extension arm, allowing a rotational movement of the articulated arm 2 in the direction of the double arrow F1 in a first plane, here substantially parallel to the ceiling of the operating room, i.e. a horizontal plane. The first arm 3 is connected by means of a pivot joint to a second arm, so-called compensation arm or supporting arm 4, allowing a rotational movement of the articulated arm 2 around a pivot axis 8 in the direction of the double arrow F2 in a second plane substantially perpendicular to the first plane, i.e. here a vertical plane.
It will be understood that, while remaining within the scope of the invention, the supporting arm 4 according to the invention could be mounted on a pivot in any other way, for example on another type of suspending device or directly on a wall or a ceiling of a room.
The free end of the supporting arm 4 is intended to support, via a connecting piece 6, a load (not represented) which can be for example an equipment, such as a lighting device, a monitor, a camera, etc, or a medical device, such as a transfusion or perfusion bottle, etc.
As it can be seen in
As it can be seen in
In a known way per se, the jack 12 is made up of a body 12a in which a piston 12b slides. The body 12a is mounted at its free end so as to swivel on the fixed link 9a in the direction of an axis 12c shifted with respect to the pivot axis 8, and the free end of the piston 12b is connected to the connecting rod 10 and the shell 11 as described below.
Advantageously, the connecting rod 10 comprises here two substantially identical bars 10b, parallel to one another so as to jacket the jack 12, and able to be connected together by means of one or more cross-pieces 10c, as it can be better seen in
Advantageously, the jack 12 is an adjustable-pressure pneumatic jack so that the pressure inside the jack 12 can be adjusted according to the weight of the load supported by the supporting arm 4, as it will be described more in detail below. The gas in the jack 12 can be for example air or nitrogen. The maximum pressure inside the jack 12 is advantageously selected according to the weight of the heaviest load that can be put on the supporting arm 4. For example, when the pressure inside the jack is adjusted between 12 to 30 bars, the supporting arm 4 can support a load up to 40 kg. Preferably, the jack 12 is arranged so as to have a wide range of weights between 5 kg and 40 kg.
As it can be seen in
As it can be seen in
More particularly, as it can be better seen in
In addition, the mobile element 18 of the latch 16 is connected to a flexible connector 23 running along the jack 12 and having at its free end opposite the element 18 a serrated roller 24 allowing a user to make the element 18 slide between the struts 19. The serrated roller 24 moreover allows the user to easily block the element 18 at a high or low position on the toothed rack 15.
As an example, in
More precisely, in a first configuration of the supporting arm 4 represented in
In an alternative embodiment, in a second configuration of the supporting arm 4 represented in
For putting a load onto a supporting arm 4 according to the invention, the user starts with blocking the supporting arm 4 in a desired blocking position, having an unspecified slope, by inserting the cogs 17 of the latch 16 into the notches 21 in the toothed rack 15 provided to this end. To do this, the user can advantageously turn the serrated roller 24 of the flexible connector 23 associated with the cogs 17. Then, if necessary, the user can remove the load already on the supporting arm 4.
The user then puts a load onto the connecting piece 6.
According to the weight of the load thereon, the user advantageously adjusts the pressure inside the jack 12 via the valve 13 by connecting a device for adjusting the pressure in a known way per se. The maximum pressure inside the jack 12 is preferably selected according to the maximum admissible load weight to be fixed at the end 5 of the supporting arm 4. As an example, the pressure can be adjusted at 30 bars if the maximum admissible load weight is 40 kilograms. The user can thus pass very easily from one load to another, heavier or lighter.
Once the pressure inside the jack 12 is adjusted, the user can unblock the supporting arm 4, by removing the cogs 17 of the latch 16 from the notches 21 in the toothed rack 15, by turning the serrated roller 24 of the flexible connector 23. Thanks to the retaining force exerted by the jack 12, the supporting arm 4 then remains in position. The supporting arm 4 is then ready to be moved in all the slope positions desired by the user by making it pivot around the pivot axis 8 in the direction of the arrow F2 represented for example in
In particular, once the pressure inside the jack 12 is adjusted to the maximum weighting load supported by the supporting arm 4, one can advantageously put onto the supporting arm 4 a variable weighting load, as for example a perfusion pocket intended to empty in time or any other medical device of variable weight.
Of course, the present invention is not limited to the preceding description of embodiments which can be somewhat modified while remaining within the scope of the invention.
Number | Date | Country | Kind |
---|---|---|---|
12 53259 | Apr 2012 | FR | national |
Number | Name | Date | Kind |
---|---|---|---|
871400 | Hall | Nov 1907 | A |
1050672 | MacIntosh | Jan 1913 | A |
3160379 | Gardella | Dec 1964 | A |
6012693 | Voeller et al. | Jan 2000 | A |
7546994 | Altonji et al. | Jun 2009 | B2 |
20040084587 | Oddsen | May 2004 | A1 |
20040188578 | Turner | Sep 2004 | A1 |
20080111042 | Papendieck et al. | May 2008 | A1 |
20110315843 | Hung | Dec 2011 | A1 |
Number | Date | Country |
---|---|---|
1466999 | Apr 1969 | DE |
19501028 | Jul 1996 | DE |
2908497 | May 2008 | FR |
Entry |
---|
French Search Report for FR 1253259, dated Jan. 22, 2013. |
Number | Date | Country | |
---|---|---|---|
20130264449 A1 | Oct 2013 | US |