Bed with a retractable side barrier

Information

  • Patent Grant
  • 7712165
  • Patent Number
    7,712,165
  • Date Filed
    Thursday, July 10, 2008
    16 years ago
  • Date Issued
    Tuesday, May 11, 2010
    14 years ago
Abstract
A bed has a retractable barrier combining vertical movement and transverse movement. The barrier comprises two parallel arms forming portions of a deformable parallelogram system, and each arm is attached the frame by a two-element telescopic mechanism comprising an inner element and an outer element that are constrained relative to each other by a shape connection suitable for varying the transverse position of the barrier element while it is being moved vertically.
Description

The present application claims priority, under 35 U.S.C. ยง119(a), of French National Application No. 07 56470 which was filed Jul. 13, 2007 and which is hereby incorporated by reference herein.


BACKGROUND

The present disclosure relates to a bed with a retractable side barrier, and more particularly to a bed comprising a side barrier element that is movable between a high position and a low position in which it is retracted under the edge of the bed. The present disclosure relates more particularly to a mechanism that moves the barrier between its high position and its retracted, low position.


A patient bed is known that includes at least one retractable side barrier. The bed comprises a bottom bedstead or frame supporting a bedding plane, together with a side barrier element extending along the side of the frame. The barrier element, the frame of the bed (more particularly a longitudinal member thereof), and two parallel arms (respectively attached to the frame and to said barrier elements via hinges) form a deformable parallelogram mechanism enabling the barrier element to be moved between two stable positions, a high position above the mattress of the bed, to prevent a patient from falling out of bed, and a low position close to the frame of the bed. The barrier is lowered when it is desired to transfer the patient to give the patient care.


Several factors need to be taken into consideration when developing such a bed.


For the purpose of moving the bed (which is mounted on casters) it is desirable for the overall transverse size of the bed to be as small as reasonably possible so that it can pass through relatively narrow doors or so that it can be situated in small elevators.


Conversely, patient comfort may require a mattress to be as wide as possible.


Furthermore, when transferring a patient between a stretcher and the bed, it is desirable for the distance between the edge of the stretcher and the edge of the mattress to be as small as possible, the barrier then naturally being in its lowered position.


For all these reasons, proposals have been made for the barrier to be retractable under the mattress, beside the frame, when the barrier is in its lowered position. Mechanisms have therefore been devised for lowering the barrier, and then retracting it under the bed while it is in its low position. To follow such a path the barrier moves vertically downwards and while turning in its own plane, followed by moving transversely so as to become situated under the mattress and prevent the barrier constituting a troublesome obstacle while moving the bed or while moving a stretcher up to the bed.


SUMMARY

The mechanisms disclosed herein make it possible to improve the motion of such a barrier by combining rotation and transverse displacement so as to enable the barrier to be retracted in a single movement.


More particularly, the mechanism disclosed herein provides a bed with a retractable side barrier, the bed comprising a bed frame, a side barrier element extending along one side of said frame, and two parallel arms attached respectively via hinges to said frame and to said barrier element, wherein each arm is attached to said bed frame by a two-element telescopic mechanism comprising an inner element and an outer element, one of the elements being fastened to the frame and the other to said arm, and wherein these two elements are constrained relative to each other by a shape connection suitable for causing the transverse position of said barrier element to vary continuously while it is being moved in vertical pivoting.


When the barrier element is in its low position, the telescopic mechanism is fully retracted so that both arms of the side barrier element are retracted.


In some embodiments, for each telescopic mechanism, the element that is secured to the frame of the bed contains the element that is fastened to the arm. It may be welded to the frame.


According to one possibility, the shape connection comprises a stud carried by one element and a groove formed in the other element.


The studs of the two telescopic mechanisms enable the two movements, one in rotation and the other in transverse translation, to be combined, and they also enable the barrier to be attached to the element that is secured to the frame of the bed.


In one possible variant, for each telescopic mechanism, the stud is secured to the inner element and projects outwards, being engaged in the groove formed in the outer element.


The inverse arrangement is also possible, i.e. the stud may be secured to the outer element and project inwards, being engaged in the groove formed in the inner element.


The shape of the groove is adapted to the desired motion.





BRIEF DESCRIPTION OF THE DRAWINGS

The mechanisms disclosed herein can be better understood and other features thereof appear better in the light of the following description of a bed in accordance with this disclosure, given purely by way of example and made with reference to the accompanying drawings, in which:



FIG. 1 is a fragmentary diagrammatic view of a bed with a retractable side barrier in accordance with this disclosure, the barrier being raised;



FIG. 2 is a view similar to FIG. 1, the barrier being lowered;



FIG. 3 is a detail view seen looking along arrow III of FIG. 1;



FIG. 4 is a detail view seen looking along arrow IV of FIG. 2;



FIG. 5 is a detail view showing a variant; and



FIG. 6 is a detail view showing another variant.





DETAILED DESCRIPTION

In the drawings, there can be seen a patient bed 11, having a retractable side barrier comprising a bottom frame 13 supporting the bedding (mattress 15), a side barrier element 17 extending along a longitudinal side of the frame, and two parallel arms 19 respectively attached by hinges to the frame and to the barrier element. Together, the above-mentioned elements form a kind of deformable parallelogram enabling the barrier element to be moved substantially parallel to itself, essentially by pivoting the arms.


In accordance with this embodiment, each arm 19 is connected to the frame of the bed via a two-element telescopic mechanism 21 having an inner element 22 and an outer element 23. The inner element 22 can move by sliding and in rotation inside the outer element 23. In this example, the outer element is fastened to the frame, e.g. welded thereto. It is oriented perpendicularly to the longitudinal direction of the bed. The other element, i.e. the inner element 22, is fastened to one end of the corresponding arm 19.


These two elements 22, 23 are constrained relative to one another by a coupling arrangement comprising a stud 25 and a groove 26. In the illustrative example, the groove 26 is helical and extends only partially around element 23 which is tubular. In some embodiments, the groove 26 is sufficiently long to permit the pin 25 to rotate through about 180 degrees while moving inwardly and outwardly when barrier element 17 is raised and lowered. Barrier element 17 may be a siderail of a hospital bed, for example. Fashioning groove 26 such that the angles of rotation of pin 25 is either more or less than 180 degrees is contemplated by this disclosure, as well.


More precisely, in the example shown in FIGS. 1 to 4, the stud 25 is secured to the inner element and projects outwards, being engaged in the groove 26 formed in the wall of the outer element. Each telescopic mechanism thus provides the connection between the frame 13 and one of the arms 19. They are substantially identical, thus making it possible to vary the transverse position of the barrier element 17 (hinged on the other ends of the two arms) while simultaneously moving it in vertical pivoting.



FIG. 5 shows a variant in which the stud 25a is secured to the outer element 23 and projects inwards, being engaged in a groove 26a formed in the inner element. This groove may be a simple groove formed in the surface of the cylindrical inner element 22. The groove 26a, in some embodiments, is helical and extends around element 22, which may be a solid post or a tubular post in some embodiments. In some embodiments, the groove 26a is sufficiently long to permit the element 22 to rotate through about 180 degrees while moving inwardly and outwardly when barrier element 17 (not shown in FIG. 5) is raised and lowered. Fashioning groove 26a such that the angle of rotation of element 22 is either more or less than 180 degrees is contemplated by this disclosure, as well.


Another variant is shown in FIG. 6 in which the inner element 22 carries two studs 35 projecting outwards and co-operating with parallel edges of a cam 37 defined in the wall of the outer element. The two studs 35 and the cam 37 define the connection having the above-mentioned shape. The cam is formed in the wall of the outer element by two cutouts or notches 39, with the two end portions of the sleeve constituting said outer element 23. The sleeve is secured to the bottom frame 13. This variant makes it possible to obtain said outer and 23 directly by molding, without any subsequent machining. The edges of cam 37 (shown in phantom in FIG. 6) may be helical in some embodiments. The cam 37 may be fashioned, in some embodiments, to permit pins 35 to rotate through about 180 degrees while moving inwardly and outwardly when barrier element 17 (not shown in FIG. 6) is raised and lowered. Fashioning groove 26a such that the angle of rotation of pins 35 is either more or less than 180 degrees is contemplated by this disclosure, as well.

Claims
  • 1. A bed with a retractable side barrier, the bed comprising a bed frame,a side barrier element extending along one side of said frame, andtwo parallel arms pivotably coupled to said frame and to said barrier element, wherein each arm is attached to said bed frame by a telescopic mechanism comprising an inner element and an outer element, one of the elements being fastened to the frame and the other to said arm, and wherein these two elements are constrained relative to each other by a shape connection that is configured to force the transverse position of said barrier element relative to the bed frame to vary continuously while the barrier element is being raised and lowered, wherein the shape connection comprises one of a helical groove and a helical cam that is provided on one of the inner and outer elements and that extends between a top of one of the inner and outer elements that has the helical groove or cam and a bottom of one of the inner and outer elements that has the helical groove or cam so that relative rotation between the inner and outer elements through about 180 degrees is permitted.
  • 2. A bed according to claim 1, wherein said shape connection comprises a stud carried by one of the inner and outer elements.
  • 3. A bed according to claim 2, wherein for each telescopic mechanism, said stud is secured to the inner element and projects outwards.
  • 4. A bed according to claim 2, wherein for each telescopic mechanism, said stud is secured to the outer element and projects inwards.
  • 5. A bed according to claim 1, wherein said shape connection comprises two studs carried by the inner element.
  • 6. A bed according to claim 5, wherein, if the shape connection comprises the helical cam, said cam is formed in the wall of the outer element by two cutouts or notches formed in the two end portions thereof.
  • 7. A bed according to claim 1, wherein, for each telescopic mechanism, the element that is fastened to the frame contains the element that is fastened to said arm.
Priority Claims (1)
Number Date Country Kind
07 56470 Jul 2007 FR national
US Referenced Citations (77)
Number Name Date Kind
2195955 Hillenbrand Apr 1940 A
2478028 Travis Aug 1949 A
2587291 Des Rochers Feb 1952 A
2658211 Bendersky Nov 1953 A
2676341 Leone et al. Apr 1954 A
2722017 Burst et al. Nov 1955 A
2766463 Bendersky Oct 1956 A
2817854 Pratt Dec 1957 A
2817855 Pratt Dec 1957 A
2871490 Balonick Feb 1959 A
3002200 Murcott Oct 1961 A
3012255 Diehl Dec 1961 A
3023781 Constanti May 1962 A
3045259 Mayer Jul 1962 A
3055020 Mann Sep 1962 A
3081463 Williams et al. Mar 1963 A
3220024 Nelson Nov 1965 A
3419922 Malherbe Jan 1969 A
3506989 Ross et al. Apr 1970 A
3526008 Pruim Sep 1970 A
3585659 Burst et al. Jun 1971 A
3641598 Feldstein Feb 1972 A
3840917 Taylor Oct 1974 A
3851345 Benoit et al. Dec 1974 A
3855654 Pivacek Dec 1974 A
3865434 Sully Feb 1975 A
3930273 Stern Jan 1976 A
3932903 Adams et al. Jan 1976 A
3971083 Peterson Jul 1976 A
4103376 Benoit et al. Aug 1978 A
4183015 Drew et al. Jan 1980 A
4186456 Huempfner Feb 1980 A
4612679 Mitchell Sep 1986 A
4641385 Peters et al. Feb 1987 A
4653129 Kuck et al. Mar 1987 A
4747171 Einsele et al. May 1988 A
4949410 Failor et al. Aug 1990 A
4985946 Foster et al. Jan 1991 A
4987623 Stryker et al. Jan 1991 A
4993089 Solomon et al. Feb 1991 A
5083334 Huck et al. Jan 1992 A
5129117 Celestina et al. Jul 1992 A
5187824 Stryker Feb 1993 A
5394580 Foster et al. Mar 1995 A
5604942 Allevato et al. Feb 1997 A
5732423 Weismiller et al. Mar 1998 A
5784732 Vail Jul 1998 A
5802636 Corbin et al. Sep 1998 A
5878452 Brooke et al. Mar 1999 A
6021533 Ellis et al. Feb 2000 A
6167580 Draheim et al. Jan 2001 B1
6182310 Weismiller et al. Feb 2001 B1
6253397 Bartow et al. Jul 2001 B1
6360385 Lewandowski Mar 2002 B1
6397416 Brooke et al. Jun 2002 B2
6446283 Heimbrock et al. Sep 2002 B1
6622323 Zerhusen et al. Sep 2003 B2
6640361 Heimbrock et al. Nov 2003 B2
6658680 Osborne et al. Dec 2003 B2
6691345 Nanahara Feb 2004 B2
6751815 Heimbrock et al. Jun 2004 B2
6779209 Ganance Aug 2004 B2
6829793 Brooke et al. Dec 2004 B2
6851142 Stryker et al. Feb 2005 B2
6874179 Hensley et al. Apr 2005 B2
6938289 Morin Sep 2005 B2
6951036 Lemire Oct 2005 B2
7028352 Kramer et al. Apr 2006 B2
7073220 Simmonds et al. Jul 2006 B2
7082630 Castonguay et al. Aug 2006 B2
7107637 Kuek et al. Sep 2006 B2
7412734 Stryker et al. Aug 2008 B2
20020144348 Ganance Oct 2002 A1
20060090259 Castonguay et al. May 2006 A1
20060277683 Lamire et al. Dec 2006 A1
20090007334 Stryker et al. Jan 2009 A1
20090139028 Morin et al. Jun 2009 A1
Foreign Referenced Citations (11)
Number Date Country
3510707 Oct 1986 DE
0 680 714 Nov 1995 EP
1 053 735 Nov 2000 EP
1 108 410 Jun 2001 EP
1 243 207 Sep 2002 EP
09206177 Aug 1997 JP
09276340 Oct 1997 JP
WO 9817153 Apr 1998 WO
WO 0232271 Apr 2002 WO
WO 03070061 Aug 2003 WO
WO 2007019692 Feb 2007 WO
Related Publications (1)
Number Date Country
20090013465 A1 Jan 2009 US