EP2717826B1 - Patienten-hubliege - Google Patents

Patienten-hubliege Download PDF

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Publication number
EP2717826B1
EP2717826B1 EP12728179.8A EP12728179A EP2717826B1 EP 2717826 B1 EP2717826 B1 EP 2717826B1 EP 12728179 A EP12728179 A EP 12728179A EP 2717826 B1 EP2717826 B1 EP 2717826B1
Authority
EP
European Patent Office
Prior art keywords
elevating
guide columns
column structure
patient bed
bed according
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP12728179.8A
Other languages
German (de)
English (en)
French (fr)
Other versions
EP2717826A1 (de
Inventor
André KNAACK
Christian Hart
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hoerbiger Automatisierungstechnik Holding GmbH
Original Assignee
Hoerbiger Automatisierungstechnik Holding GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hoerbiger Automatisierungstechnik Holding GmbH filed Critical Hoerbiger Automatisierungstechnik Holding GmbH
Priority to PL12728179T priority Critical patent/PL2717826T3/pl
Publication of EP2717826A1 publication Critical patent/EP2717826A1/de
Application granted granted Critical
Publication of EP2717826B1 publication Critical patent/EP2717826B1/de
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61GTRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
    • A61G13/00Operating tables; Auxiliary appliances therefor
    • A61G13/02Adjustable operating tables; Controls therefor
    • A61G13/06Adjustable operating tables; Controls therefor raising or lowering of the whole table surface

Definitions

  • the present invention relates to a patient lifting table, in particular in the form of a treatment couch or an operating table, comprising a lifting structure which can be raised and lowered by means of a lifting structure, wherein the lifting structure comprises a telescopic lifting column with a two mutually parallel spaced apart, a cylindrical surface having guide columns having fixed columnar structure, relative to this linearly displaceable movable column structure and acting between the fixed and the movable column structure lifting drive comprises.
  • Patient elevators are known in various designs and in use. Depending on their specific purpose and the regulations in force in the country concerned, such patient lifts must satisfy different requirements, not only with regard to the lifting capacity provided, but also, for example, with regard to different bending moments, which are different from those used Telescopic lifting column can be included without affecting their reliability.
  • the movable column structure comprises a column jacket, with the inside of the guide columns enclosing stiffening tubes are rigidly connected. In the stiffening tubes the respective circumference of the associated guide column comprehensive, ie encompassing bush-like guide elements are added.
  • the present invention has set itself the task of providing a patient Hubliege of the generic type, which despite relatively low production costs not only complies with the applicable minimum requirements in various countries, but not significantly exceeded.
  • the invention is thus characterized in particular by the fact that the fixed pillar structure has a spacer element extending substantially over its entire height between the guide pillars.
  • a continuous spacer element keeps the two guide columns over the entire axial extent at the predetermined distance, so that the risk that the guide columns deform at high loads, is extremely limited.
  • This allows, as the two guide pillars are stiffened by said continuous spacer element consistently to each other, the use of comparatively slender - possibly even tubular, ie hollow - guide columns, which allows an equally compact and inexpensive construction, in particular the use of standardized parts ( For example, piston rods) as a starting point for the guide columns contribute significantly to reduce costs.
  • the spacer element is laterally grooved, so that the guide columns are received in the throat of the spacer element. This favors again substantially the above-explained stiffening of the two guide columns by the spacer element in the sense of providing a highly rigid fixed column structure with the least possible effort, ie at low cost.
  • the invention is characterized in that the sliding shells have a substantially half-shell shape.
  • the sliding shells engage on both sides laterally on the unit consisting of the two guide columns and the at least one spacing element arranged therebetween.
  • each slide block is equipped with two axially spaced sliding shells. This promotes a low-wear high-precision guidance of the movable column structure on the fixed column structure.
  • the sliding shells are secured in the sliding blocks in the axial direction of the guide columns by embedding in deepened recordings of the sliding blocks, in which respect in particular by corresponding two-sided steps or paragraphs in the sliding blocks axial securing takes place in both directions.
  • the sliding shells in case of need - with removable movable column structure - easily replaceable.
  • a fixing of the sliding shells in the sliding blocks by a - possibly combined - rivet and / or an adhesive connection.
  • the spacer element of the fixed pillar structure can be carried out in certain applications with particular advantage in the form of a solid spacer plate, in which case a fixation of the guide columns on the spacer plate can be done in particular by pinning.
  • a fixation of the guide columns on the spacer plate can be done in particular by pinning.
  • the spacer element of the fixed column structure in the sense of another preferred embodiment of the present invention, designed as chambered and / or with inner stiffening rib extruded profile, for example made of aluminum.
  • Such designed as an extruded spacer can be optimized in the sense described above in terms of its own elasticity and tuned to the requirements that the movable column structure backlash under a defined bias, ie with a desired contact force of the sliding shells on the guide columns on which the two guide columns and that arranged between them Distance element comprehensive unit is performed.
  • the design of the spacer element as an extruded profile makes it possible in a simple manner for it to have a cavity arranged between the guide columns, in which at least one linear actuator (for example hydraulic cylinder) assigned to the lifting drive is arranged.
  • the lifting drive can act in this way in the plane defined by the two guide columns, which is favorable for static reasons. Also in static terms is favorable if the extruded profile has a substantially closed peripheral surface.
  • the lateral grooves already mentioned above, in which the guide columns are accommodated, have support ribs against which the guide columns abut locally, ie typically along a linear contact surface.
  • Such support ribs (or support webs) can be reworked with little effort, especially in the context of a tolerance compensation, which relates to the dimensions of the extruded profile and / or the guide columns.
  • a tolerance compensation which relates to the dimensions of the extruded profile and / or the guide columns.
  • the like is possible only with a much higher technical complexity.
  • the guide columns on a circular cylindrical surface are preferably solid, rod-shaped (see below), but depending on the rest of the construction but also a tubular design of the guide columns is considered. It is particularly advantageous if the guide columns each have a hard chromium-plated surface.
  • the spacer element is preferably mounted on a base plate, which in the case of the execution of the spacer element as a spacer plate latter preferably stiffened by means of support plates relative to the base plate.
  • Such support plates are particularly preferably arranged only on one side of the spacer plate in the interest of a telescopic lifting column as compact as possible.
  • the two guide columns are preferably fixed at their lower ends via a base plate to which they are connected
  • the two guide columns can be connected to each other in the region of their upper ends by means of a cross member, in which case said cross member preferably engages in frontal recesses of the guide columns.
  • said cross member preferably engages in frontal recesses of the guide columns.
  • the movable column structure comprises a clamp on which the two slide blocks are mounted. It is particularly advantageous if at least one of the two sliding blocks is adjustably attached to the bracket, in which case in particular two axially, ie in the longitudinal direction of the guide columns spaced from each other screw-locking arrangements can be provided. By means of such an adjustment possibility, the game can be adjusted, in particular to compensate for possible tolerances of the guide columns and / or the sliding shells. Such a design is particularly useful if the spacer element in the form of a solid spacer plate, which does not have a clearance compensating and / or tolerances balancing inherent elasticity, is executed.
  • the sliding blocks may even form an integral part of other components of the movable column structure, e.g. be integrally formed on a circumferentially substantially closed tubular structural element, which encloses the fixed pillar structure and receives in itself.
  • the tubular structural element which is substantially closed in the circumferential direction can in particular be produced in one piece, for example by extrusion.
  • the aforementioned embodiment of the movable pillar structure such that it comprises a circumferentially substantially closed tubular structural element is not only favorable from a static point of view. This also favors the manufacturing flexibility in terms of a cost-effective modular design. This can also contribute if arranged on the outer peripheral surface of the tubular structural element extending in the direction of displacement T-slots, in which in particular functionally relevant components (eg adjusting cylinder, valve blocks, hydraulic unit) can tie the patient Hubliege.
  • functionally relevant components eg adjusting cylinder, valve blocks, hydraulic unit
  • the tubular structural element preferably has an upper, preferably plate-shaped closure structure on which the lifting drive engages, wherein the upper closure structure particularly preferably has openings through which pass the upper ends of the guide columns in the fully lowered position of the movable column structure.
  • the working stroke of the lifting structure can be optimized.
  • a hydraulic lifting drive which advantageously comprises a hydraulic unit arranged on the movable column structure.
  • the present invention can be used both in patient lifting beds with a lifting structure having a single-stage telescopic lifting column and in patient lifting beds whose lifting structure has a multi-stage telescopic lifting column. It should also be pointed out that the advantages set forth above and / or in the following description of an exemplary embodiment, which are associated with the lifting structure according to the invention, can in any case be achieved to a considerable extent if the fixed column structure instead of an assembly assembled from the two guide columns and the spacer element a functionally identical one-piece, for example, emerged from an extruded unit comprises.
  • Such a one-piece unit would consist of two edge profile cylinder profile sections respectively assuming a guiding function, each having a surface in the form of a cylindrical section and an intermediate profile section arranged between the two edge profile sections, which essentially has a supporting and stiffening function.
  • FIGS. 1 to 4 the drawing reproduced, for raising and lowering a (not shown) Lying structure of a patient Hubliege certain lifting structure 1 in a first embodiment comprises a - in this case single-stage - telescopic lifting column with a lower fixed pillar structure 2 and a relative to this linearly displaceable upper movable pillar structure.
  • the fixed column structure 2 comprises as main components a base plate 4, two vertically, parallel aligned guide columns 5, a spacer element 6 in the form of a arranged between the two guide columns 5 spacer plate 7 and a support structure 8.
  • the two guide columns 5 are solid with a circular cylindrical, Hard chromed surface executed. They are bolted to the base plate 4 from below.
  • the guide columns 5 are furthermore connected by means of a cross-member 10, which may possibly engage in corresponding end-side recesses of the guide columns 5 and is fixed to these by means of screws 12, connected together.
  • the cross member 10 covers the spacer plate 7 from above.
  • the support structure 8 comprises two upright support plates 13, which are screwed to both the base plate 4 and the spacer plate 7, wherein the two support plates 13 are further connected to stiffen the support structure 8 via two connectors 14.
  • the movable column structure 3 in turn comprises a torsionally rigid support 15, which is essentially composed of a back plate 16 and two side plates 17 bolted thereto. Between the two side plates 17 extend - at different heights - two with them screwed traversal plates 18 and further, as the upper end of the movable column structure 3, a top plate 47. Further, at each of the two side plates 17 in the region of the lower end portion of the movable column structure a Support plate 19 attached. These support plates 19 are on one side over the side plates 17 to form a the column structure 2 laterally encompassing bracket 20.
  • a sliding block 22 is attached to each of the support plates 19.
  • the slide blocks 22 each have a substantially semi-cylindrical recess 23 adapted to the contour of the guide columns 5.
  • In the recesses 23 are, with axial distance from each other, respectively two shots 24 incorporated.
  • In this half-shell-shaped sliding cups 25 are embedded, which consist of bronze with a POM sliding coating.
  • the sliding cups 25 are secured against rotation in the associated receptacle 24 in the circumferential direction.
  • the slide blocks 22 are attached to the respective associated support plate 19 adjustable.
  • two screw-locking arrangements 27 are provided per sliding block.
  • the lifting column also has a hydraulic lifting drive acting between the fixed column structure 2 and the movable column structure 3.
  • This comprises a hydraulic unit 32 arranged on the movable column structure 3, a lifting valve accommodated in the valve arrangement 33 and a lifting cylinder arrangement 34 with a hydraulic cylinder-piston unit 35.
  • the cylinder 36 is fixed to the movable pillar structure 3, namely the top plate 47, the piston rod 37, however, on the fixed pillar structure 2, namely at the foot plate 4.
  • the upper pillar structure has a cavity in which the hydraulic cylinder-piston unit 35 is received, so that the lift cylinder assembly 34 from the movable pillar structure 3 at least a part of the axial height is fully enclosed.
  • the mounting frame 38 which at the upper end of the telescopic lifting column - via an intermediate frame 46 - gimbal articulated and on which the lounger structure of the patient Hubliege is to be mounted.
  • this two pivot cylinder arrangements 39 and 40 are provided, of which the respective cylinder 41 and 42 is articulated via bearing blocks 43 on the movable support structure 3, the respective piston rod 44 and 45, however
  • the two pivot cylinder assemblies 39 and 40 are fed by the hydraulic unit 32, wherein the Swivel cylinder assemblies 39 and 40 associated with valves in the valve assembly 33 are housed.
  • the spacer element 6 of the stationary column structure 2 is embodied here as an extruded profile 50 of a substantially rectangular basic shape and with a substantially closed outer peripheral surface formed by longitudinal side walls 51 and transverse side walls 52.
  • the extruded profile 50 is equipped with inner stiffening ribs 53, resulting in a plurality of chambers 54, including a disposed between the guide columns 5 cavity 55.
  • the hydraulic cylinder-piston unit 35 is received.
  • the extruded profile 50 recesses 56 in which screws can be screwed, by means of which the extruded profile 50 is connected to the base plate 4.
  • the receiving of the guide columns 5 serving throats 9 are executed in the transverse side walls 52 of the extruded profile 50.
  • the grooves 9 have support ribs 57, on which the guide columns 5 localized, in this case, in particular, lie along narrow line-shaped contact surfaces.
  • connection 58 of the cylinder-piston unit 35 recesses 59 are provided in the upper region of the extruded profile 50 in one of the stiffening ribs 53 and one of the longitudinal side walls 51, into which said connection 58 enters when the movable column structure 3 is completely lowered.
  • the movable pillar structure 3 comprises a circumferentially substantially closed tubular structural element 60 which also constitutes an extrusion and encloses and accommodates the fixed pillar structure 2.
  • the sliding blocks 22, in the half-shell-shaped receptacles 24, the half-shell-shaped sliding shells 25 are accommodated here form an integral part of the movable column structure 3, by being integrally formed on the tubular structural element 60.
  • the sliding cups 25 are fixed here in the sliding blocks 22 by a combined rivet and adhesive connection.
  • the tubular structural element 60 has an upper terminating structure in the form of a top plate 47 on which the lifting drive engages.
  • the cylinder of the cylinder-piston unit 35 is connected to the head plate by means of the screw 62.
  • the top plate 47 is in turn connected to the tubular structural element 60 by means of four screws 64, which are screwed into corresponding recesses 63 of the tubular structural element 60.
  • the top plate 47 has openings 65 through which in the complete lowered position of the movable column structure 3, the upper ends of the guide columns 5 pass through.
  • the above-described embodiment can be modified according to a preferred development to the effect that the arranged between the two guide columns cavity 55 of the extruded profile 50 does not receive a separate hydraulic cylinder-piston unit 35, but rather - circular cylindrical running, suitably closed at the end (with piston rod passage) and provided with a hydraulic connection - directly forms the cylinder of a lifting cylinder assembly.
  • the piston of the lifting cylinder assembly would accordingly be performed sealingly in this development directly in the cavity 55 of the extruded profile 50.
  • the present invention further developing feature that the spacer member has at least one cylindrical cavity, in which a piston of the lifting drive sealing is guided, so that the spacer element and the lifting drive form an integrated assembly.

Landscapes

  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Biomedical Technology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Accommodation For Nursing Or Treatment Tables (AREA)
  • Invalid Beds And Related Equipment (AREA)
EP12728179.8A 2011-06-08 2012-06-06 Patienten-hubliege Active EP2717826B1 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL12728179T PL2717826T3 (pl) 2011-06-08 2012-06-06 Podnoszona leżanka dla pacjenta

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102011103546A DE102011103546A1 (de) 2011-06-08 2011-06-08 Patienten-Hubliege
PCT/EP2012/002396 WO2012167919A1 (de) 2011-06-08 2012-06-06 Patienten-hubliege

Publications (2)

Publication Number Publication Date
EP2717826A1 EP2717826A1 (de) 2014-04-16
EP2717826B1 true EP2717826B1 (de) 2015-05-27

Family

ID=46319685

Family Applications (1)

Application Number Title Priority Date Filing Date
EP12728179.8A Active EP2717826B1 (de) 2011-06-08 2012-06-06 Patienten-hubliege

Country Status (6)

Country Link
EP (1) EP2717826B1 (pl)
CN (1) CN103596538B (pl)
BR (1) BR112013030654A2 (pl)
DE (1) DE102011103546A1 (pl)
PL (1) PL2717826T3 (pl)
WO (1) WO2012167919A1 (pl)

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102014109376B4 (de) 2014-07-04 2017-11-09 MAQUET GmbH Operationstischfuß für einen Operationstisch
DE102014109375A1 (de) 2014-07-04 2016-01-07 MAQUET GmbH Operationstischsäule für einen Operationstisch
DE102014109377B4 (de) * 2014-07-04 2017-11-16 MAQUET GmbH Vorrichtung zur Höhenverstellung eines Operationstischs und Operationstisch mit einer derartigen Vorrichtung
US10206841B2 (en) * 2017-01-06 2019-02-19 Aktiebolaget Skf Actuation system for controlling the movement of a table
FR3083695B1 (fr) * 2018-07-10 2020-06-26 Steris Colonne de levage, notamment pour une table d'operation
DE102018127389B3 (de) 2018-11-02 2019-12-19 HAWE Altenstadt Holding GmbH Hydraulische Hubsäule
CN110613578A (zh) * 2019-09-23 2019-12-27 宁波科艺医疗器械有限公司 一种双向平移头板可升降眼科手术台

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19607968A1 (de) * 1996-03-01 1997-09-04 Herbert Brustmann Behandlungsliege
DE10113807C1 (de) * 2001-03-21 2002-08-14 Herbert Brustmann Höhenverstellbare Tragsäule eines Behandlungstisches, insbesondere für chirurgische Eingriffe
JP4087809B2 (ja) * 2004-03-31 2008-05-21 株式会社モリタ製作所 昇降台の昇降機構、この昇降機構を用いた昇降台
CN2766880Y (zh) * 2004-12-30 2006-03-29 杭州华源伽玛医疗设备投资有限公司 治疗床升降机构
DE102005050856B4 (de) * 2005-10-24 2009-11-12 Herbert Brustmann Behandlungstisch
CZ16500U1 (cs) * 2006-03-31 2006-05-11 Linet, Spol. S R. O. Teleskopický zvedák, zejména pro výskové prestavení nemocnicního luzka
PL2197406T3 (pl) * 2007-09-13 2015-01-30 Linak As Kolumna podnośnikowa do stołów zabiegowych, łóżek szpitalnych i rehabilitacyjnych

Also Published As

Publication number Publication date
CN103596538B (zh) 2016-02-24
WO2012167919A1 (de) 2012-12-13
PL2717826T3 (pl) 2015-10-30
CN103596538A (zh) 2014-02-19
EP2717826A1 (de) 2014-04-16
DE102011103546A1 (de) 2012-12-13
BR112013030654A2 (pt) 2016-11-29

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