EP2036105A1 - Actionneur pour l'actionnement d'un interrupteur de sécurité - Google Patents

Actionneur pour l'actionnement d'un interrupteur de sécurité

Info

Publication number
EP2036105A1
EP2036105A1 EP06761740A EP06761740A EP2036105A1 EP 2036105 A1 EP2036105 A1 EP 2036105A1 EP 06761740 A EP06761740 A EP 06761740A EP 06761740 A EP06761740 A EP 06761740A EP 2036105 A1 EP2036105 A1 EP 2036105A1
Authority
EP
European Patent Office
Prior art keywords
actuator
actuating
actuator according
connection arrangement
elastic
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.)
Granted
Application number
EP06761740A
Other languages
German (de)
English (en)
Other versions
EP2036105B1 (fr
Inventor
Werner Puri
Joachim Seidl
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.)
Siemens AG
Original Assignee
Siemens AG
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 Siemens AG filed Critical Siemens AG
Publication of EP2036105A1 publication Critical patent/EP2036105A1/fr
Application granted granted Critical
Publication of EP2036105B1 publication Critical patent/EP2036105B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H27/00Switches operated by a removable member, e.g. key, plug or plate; Switches operated by setting members according to a single predetermined combination out of several possible settings
    • H01H27/002Switches operated by a removable member, e.g. key, plug or plate; Switches operated by setting members according to a single predetermined combination out of several possible settings wherein one single insertion movement of a key comprises an unlocking stroke and a switch actuating stroke, e.g. security switch for safety guards

Definitions

  • the invention relates to an actuator for actuating a safety switch with a fastening element, an actuating element and a connection arrangement provided for connecting the fastening element to the actuating element.
  • the invention further relates to a safety switch with such an actuator.
  • Safety switches are usually used to forcibly turn on or off a power supply.
  • the fields of application of safety switches are numerous. In industrial as well as in the private sector application scenarios, such as a protective door, a protective flap, a protective fence or similar arrangements with a safety switch can be realized.
  • such safety switches have a basic design, also called housing, and a separate actuator.
  • This two-part design is based on the way of using the safety switch.
  • the separate actuator and housing are mounted on separate mechanical units to be merged for a particular operating condition.
  • the separate actuator could be mounted on a movable door, whereas the housing of the safety switch could be attached to a wall or door frame.
  • the basic design of the safety switch has a drive head and can be constructed in one or more parts. Furthermore, the switching contacts are arranged in the basic design.
  • the drive head has one or more openings into which the actuator is introduced, for example, to close NC contacts.
  • the actuator In the safe system state, which is given when the danger zone is shielded by a protective device, the actuator is located within the drive head. If, for example, a protective door is opened on which the actuator is located, then this is pulled out of the drive head. This has the consequence that the system is switched off by the positive opening of the NC contact, or is transferred to a safe state. If the system can not be easily switched off or the associated risk can be eliminated, then the safety switch can also be provided to block the protective door.
  • the targeted introduction of the actuator proves to be problematic in the mechanical actuation of the drive head by the operator.
  • the safe insertion of the actuator in the drive head must therefore be ensured under mechanical load and safely trigger despite any deviations from the intended insertion.
  • This tolerance problem arises from the fact that the drive head and the separate actuator are attached to different carriers that allow a certain amount of play. This problem is usually exacerbated by wear of the safety switch, improper handling of the safety device or by inadequate installation already during commissioning. It can be assumed that under normal circumstances the separate actuator has an unavoidable offset to the insertion opening of the drive head. When the actuator is inserted, therefore, the actuator of the insertion opening of the drive head must be able to align.
  • a further problem is the angular insertion of the actuator in the case of flap-like protective objects.
  • This problem is due to the fact that, for example, protective flaps are operated non-linearly, such as, for example, sliding doors.
  • the movement of a protective flap corresponds to a partial rotational movement about an axis of rotation, which is usually determined by hinges. Consequently, the actuator must be under a certain angle to be set previously be inserted into the drive head. This ensures that the actuator is aligned with the same when it reaches an end position in the drive head.
  • actuators are often fastened by means of two screws on a mounting surface, the actuator plate is flexibly mounted on rubber grommets and thus to be able to compensate for tolerances between, for example, a protective door and a frame only to a very limited extent.
  • the holes in the actuator plate are usually much larger than the screw heads of the mounting screws, such actuators must generally be mounted with large-sized lock washers. If the ratio of the lock washer to the operator blade hole does not match (for example, the lock washer could be too small), the rubber grommets can be moved over the head of the bolt, creating a safety hazard.
  • it has a disadvantageous effect with such actuators that only with considerable effort can a desired preferred direction be pretensioned.
  • the invention has for its object to provide a simple and universally applicable actuator that allows tolerance compensation in any direction.
  • connection arrangement at least one, biased by at least one biasing element elastic element, for connecting the fastener having the actuating element.
  • the object is further achieved by a safety switch with the features specified in claim 11.
  • the actuator according to the invention for actuating a safety switch has a fastening element, an actuating element and a connection arrangement for connecting the fastening element to the actuating element.
  • the connection arrangement has at least one elastic element pretensioned by means of at least one pretensioning element for connecting the fastening element to the actuating element.
  • the biasing element assumes the task of biasing the elastic element between the fastening element and the actuating element.
  • the biasing element and optionally also the elastic element are provided for alignment in the direction of actuation.
  • the elastic element ensures an all-round flexible offset or bending of the connection arrangement.
  • the rigidity required for the operation of the connection arrangement can be realized both by the biasing element, the elastic element or by both elements together.
  • the actuating element is resiliently mounted on the fastening element via the elastic element.
  • the prescribed for the safety switch positive opening is ensured here by the rigidity of the biasing element.
  • the actuator is always in a defined position.
  • the actuator can be laterally deflected, compressed, twisted, offset parallel and / or bent by the combination of these two elements. Such an established actuator can move freely in all axes and thus offers the greatest possible tolerance compensation.
  • the biasing member is fixedly connected to the Bet Trents- t Trentselement and the fastener, so that by an example one-piece embodiment loads, such as shocks, shocks or the like, can be intercepted and canceling the actuator is avoided. Should the elastic element break, for example due to high wear or high stress, the actuating element is still connected to the fastening element via the pretensioning element, so that misuse or malfunction can be ruled out.
  • the biasing element is disposed within the elastic member.
  • the elastic element and the biasing element is made in one piece, wherein the elastic properties of the one-piece design change radially, ie substantially perpendicular to the actuation direction.
  • the material density of the connection arrangement decreases continuously or stepwise from the inside to the outside.
  • the actuator has a mechanism for presetting the actuating direction of the actuating element.
  • a mechanism for presetting depending on the application accordingly can be adjusted.
  • the actuator for any conceivable application is universal, virtually as a radius actuator or universal actuator, can be used.
  • a certain angle of the actuating element or a certain direction of actuation by a change in the position of the elastic element and the actuating element relative to each other is adjustable.
  • An actuation direction can here be adjustable by the user, or factory preset.
  • 2 shows a second embodiment of a preset actuator
  • 3 shows a third exemplary embodiment of an angle-adjustable actuator in a first position
  • FIG. 4 shows a fourth exemplary embodiment of an angle-adjustable actuator in a second position
  • FIG. 5 shows a fifth embodiment of an angle-adjustable actuator in a third position.
  • the actuator has an actuator tip 4 as an actuating element and a fastening element designed as a base plate 1 as a fastening element.
  • the connection arrangement between said elements is realized by an elastic element, which is designed as a compression spring 2 and a biasing element, which is designed as a steel cable 3 realized.
  • the compression spring 2 and the steel cable 3 represent simple but inexpensive components that realize a connection arrangement that accomplishes a compensating movement in substantially all directions and also allows the greatest possible tolerance compensation. In addition, it is possible to absorb stresses caused by impacts or shocks.
  • the actuator has only one elastic element, namely the compression spring 2, which is the only element subject to high signs of wear. Even if the spring is broken due to high stress or high wear, the safety function when removing the actuator is not impaired. In addition, damage is immediately recognizable.
  • the actuator has a base plate 1, a compression spring 2, a Steel cable 3 and an actuator tip 4, wherein the actuator tip 4 is preset in the direction of actuation.
  • This default is permanent in this embodiment, so factory preset. The user has no way to manipulate the actuator, which can be a misuse excluded.
  • an unnecessarily large force on the drive head mechanism of the switch can be avoided by the default setting of the actuator and also by its flexibility.
  • the safety switch it may also be advantageous to make the default between see the base plate 1 designed as a fastener and the connection assembly 2, 3, wherein the default is fixed or preset by the user is changeable.
  • a selectable by the user orientation of the actuator tip 4 can be realized for example via a fferfeststell- mechanism.
  • the actuator of this embodiment has an actuator plate 5 between the actuator tip 4 and the connector assembly 2, 3, on which the actuator tip 4 is mounted remotely.
  • the decentralized position is not mandatory here.
  • a central, near-edge or similar positions can also be advantageous depending on the geometry favored by the respective application.
  • an angle adjustment of the actuator tip 4 is adjustable, wherein the steel cable 3 and the compression spring for different angles occupy a different relative position to each other.
  • the steel cable 3 is mounted decentralized within the compression spring 2, wherein the actuator plate 5 inclines together with the actuator tip 4 in the direction that is determined by the shortest distance of the steel cable 3 with the compression spring 2.
  • FIG. 4 shows a fourth exemplary embodiment of an angle-adjustable actuator in a second position.
  • this exemplary actuator can also be used as an actuator preset for a specific actuating direction.
  • this second position which the actuator occupies could also represent a starting position for an actuator, whose actuating direction setting can be varied, for example by the user, by changing the points of application described in FIG.
  • the third, fourth and the following fifth embodiment would be combined in a kind of universal actuator, which is application-related for various actuators.
  • the embodiments three, four and five could be combined into a single one, when the relative position of the compression spring 2 to the steel cable 3 is made variable and the actuation directions of Figures 3 to 5 can be realized by a setting change.
  • this type of universal radius actuator for example, this could be achieved on the one hand by a steel cable mounted on at least one disk whose position can be changed by means of the disk.
  • this disc is rotatable.
  • the pressure spring 2 can be made to change settings by, for example, provided on the base plate 1 and / or on the actuator plate for spring receiving recesses, such as grooves, in particular annular RiI- len, the respective groove a new point of attack or a other actuator direction defined.
  • 5 shows a fifth embodiment of an angle-adjustable actuator in a third position. The comments on FIG 3 and FIG 4 are applicable accordingly.
  • the invention relates to an actuator for actuating a safety switch with a fastening element, an actuating element and a connection arrangement for connecting said elements.
  • a technical teaching is proposed which proposes a universally applicable and cost-effective actuator. For this purpose, the
  • connection assembly with at least one elastic element, which is biased by means of at least one biasing element.
  • the inside bearing of the biasing element within the elastic EIe- Mentes results in a very simple and robust construction of the connection assembly.

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Security & Cryptography (AREA)
  • Lock And Its Accessories (AREA)
  • Switch Cases, Indication, And Locking (AREA)
  • Accommodation For Nursing Or Treatment Tables (AREA)

Abstract

L'invention concerne un actionneur pour l'actionnement d'un interrupteur de sécurité, qui comporte un élément de fixation, un élément d'actionnement et un mécanisme de liaison pour relier les éléments cités. Une solution technique est décrite, qui permet d'obtenir un actionneur économique et utilisable de manière universelle. Le mécanisme de liaison est réalisé avec au moins un élément élastique, lequel est précontraint au moyen d'au moins un élément de précontrainte. Un mécanisme de liaison à structure simple et robuste est ainsi obtenu, en particulier grâce au positionnement côté interne de l'élément de précontrainte à l'intérieur de l'élément élastique.
EP06761740.7A 2006-06-30 2006-06-30 Actionneur pour l'actionnement d'un interrupteur de sécurité Not-in-force EP2036105B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/DE2006/001137 WO2008000199A1 (fr) 2006-06-30 2006-06-30 Actionneur pour l'actionnement d'un interrupteur de sécurité

Publications (2)

Publication Number Publication Date
EP2036105A1 true EP2036105A1 (fr) 2009-03-18
EP2036105B1 EP2036105B1 (fr) 2015-07-29

Family

ID=37719392

Family Applications (1)

Application Number Title Priority Date Filing Date
EP06761740.7A Not-in-force EP2036105B1 (fr) 2006-06-30 2006-06-30 Actionneur pour l'actionnement d'un interrupteur de sécurité

Country Status (5)

Country Link
US (1) US8076597B2 (fr)
EP (1) EP2036105B1 (fr)
CN (1) CN101473395B (fr)
DE (1) DE112006004017A5 (fr)
WO (1) WO2008000199A1 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8631586B2 (en) * 2006-03-31 2014-01-21 Pierre Carol Leroy Energy efficient clothes dryer and child safety barrier therefor
EP3474303B1 (fr) * 2017-10-18 2023-05-17 EUCHNER GmbH + Co. KG Actionneur

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4436199C1 (de) * 1994-10-11 1995-12-14 Bernstein Hans Spezialfabrik Radiusbetätiger für Sicherheitsschalter
DE29516230U1 (de) 1995-10-13 1995-12-07 Hans Bernstein, Spezialfabrik für Schaltkontakte GmbH & Co, 32457 Porta Westfalica Radiusbetätiger für Sicherheitsschalter
CN2296568Y (zh) * 1997-01-03 1998-11-04 广州市芳村区共创电气科技有限公司 一种电力高压开关防空防误操作装置
DE29801192U1 (de) * 1998-01-26 1998-08-20 Hans Bernstein Spezialfabrik für Schaltkontakte GmbH & Co, 32457 Porta Westfalica Radiusbetätiger für Sicherheitsschalter
US6949712B1 (en) * 1999-10-12 2005-09-27 Honeywell International Inc. Actuator
DE10116054C2 (de) * 2001-03-30 2003-03-27 Euchner Gmbh & Co Vorrichtung zum Betätigen eines Sicherheitsschalters
DE10123943C1 (de) * 2001-05-17 2002-07-25 K A Schmersal Gmbh & Co Kg Betätiger für einen Sicherheitsschalter

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO2008000199A1 *

Also Published As

Publication number Publication date
EP2036105B1 (fr) 2015-07-29
US8076597B2 (en) 2011-12-13
US20090189463A1 (en) 2009-07-30
WO2008000199A1 (fr) 2008-01-03
CN101473395B (zh) 2012-12-05
DE112006004017A5 (de) 2009-06-04
CN101473395A (zh) 2009-07-01

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