EP3300815B1 - Holding system for an electronic device - Google Patents

Holding system for an electronic device Download PDF

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Publication number
EP3300815B1
EP3300815B1 EP17193569.5A EP17193569A EP3300815B1 EP 3300815 B1 EP3300815 B1 EP 3300815B1 EP 17193569 A EP17193569 A EP 17193569A EP 3300815 B1 EP3300815 B1 EP 3300815B1
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EP
European Patent Office
Prior art keywords
housing
mounting device
interior space
metallurgical vessel
thermal insulating
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EP17193569.5A
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German (de)
French (fr)
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EP3300815A1 (en
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SMS Group GmbH
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SMS Group GmbH
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Publication of EP3300815A1 publication Critical patent/EP3300815A1/en
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F27FURNACES; KILNS; OVENS; RETORTS
    • F27DDETAILS OR ACCESSORIES OF FURNACES, KILNS, OVENS, OR RETORTS, IN SO FAR AS THEY ARE OF KINDS OCCURRING IN MORE THAN ONE KIND OF FURNACE
    • F27D21/00Arrangements of monitoring devices; Arrangements of safety devices
    • F27D21/04Arrangements of indicators or alarms
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22DCASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
    • B22D11/00Continuous casting of metals, i.e. casting in indefinite lengths
    • B22D11/16Controlling or regulating processes or operations
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22DCASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
    • B22D46/00Controlling, supervising, not restricted to casting covered by a single main group, e.g. for safety reasons

Definitions

  • the invention relates to a receiving device for an electronic device for data transmission for attachment to a metallurgical vessel.
  • the invention also relates to such a metallurgical vessel with the receiving device.
  • the said international patent application is silent about how such a receiving device or encapsulation should specifically be constructed.
  • the WO 2011/101138 A1 discloses a receiving device for an electronic device for data transmission for attachment to a metallurgical vessel according to the preamble of claim 1. Specifically, this international patent application discloses that such a receiving device has a housing with a base plate and side walls and thus spans an interior space for receiving an electronic device , wherein heat insulating material is arranged in the interior of the housing.
  • the invention is based on the object of providing a known receiving device for an electronic device for data transmission for attachment to a metallurgical vessel, as well as a known metallurgical device Further develop the vessel with such a receiving device in such a way that the thermal insulation is improved.
  • the receiving device according to the invention is characterized by fiber material, with which the interior of the receiving device is at least partially filled for embedding the electronic device.
  • This claimed layer-like structure here specifically a housing made of steel and heat-insulating material, in which the electronic device is embedded, for example, advantageously already provides good heat insulation for the electronic device, in particular if it is embedded in the heat-insulating material.
  • the stressed thermal insulation material does not completely fill the interior space.
  • the electronic device is also not embedded in the heat insulating material, but rather the heat insulating material is only in the form of a heat insulating layer which is at least partially applied to the inside of the steel housing, but preferably at least to its base plate.
  • This configuration offers the advantage that, in addition to the thermal insulation layer, further material layers can also be provided in the interior of the housing, which in turn can also make a further contribution to the thermal insulation of the electronic device.
  • the interior space is at least partially filled with the claimed fiber material for embedding the electronic device.
  • the fiber material can be introduced within the interior space spanned by the heat insulating layer or within the interior space of the receiving device or the housing spanned by the refractory concrete.
  • the same materials as for the heat insulating material come into consideration.
  • Both the thermal insulation material and the fiber material can also consist of a combination of said materials.
  • the thermal insulation material or the fiber material insofar as they are used for embedding the electronic device, is transparent to electromagnetic signals, ie. H. in particular are iron-free. Only then is it ensured that the electromagnetic signals transmitted by the electronic device can also be received outside of the recording device.
  • the electronic device is an electronic data transmission device, in particular for determining the position of the metallurgical vessel.
  • the electronic data transmission device preferably uses Bluetooth Low Energy (BLE) for data transmission and, for example, the device is designed in the form of an iBeacon.
  • BLE Bluetooth Low Energy
  • the cup-shaped housing is typically attached, preferably welded, to the outside of the metallurgical vessel.
  • Another The thermal insulation for the electronic device within the receiving device is improved by attaching the housing to the outside of the vessel, preferably only punctually, for example via one or more pins or webs, so that an air cushion remains between the receiving device and the vessel .
  • the air cushion in turn then serves as a further thermal insulation layer.
  • Figure 1 shows a cross section through the receiving device 100 according to the invention for an electronic device 200 for data transmission according to a first embodiment. It can be seen that the receiving device 100 consists of a cup-shaped housing 110 which has a base plate 112 and side walls 114. The housing spans an interior 116.
  • the housing is attached to a metallurgical vessel 300 with the aid of weld seams 310.
  • a heat insulating layer 112 is applied to the side of the base plate 112 facing the interior 116.
  • the electronic device 200 for example an iBeacon, is applied, for example glued, to the heat insulating layer 120.
  • the interior 116 above the electronic device is at least partially filled with a fiber material 140.
  • FIG. 2 shows a second embodiment for the receiving device according to the invention, again in a cross section.
  • the receiving device consists of a cup-shaped housing made of steel, the walls of which are lined on their inside with a heat insulating layer 120.
  • the thermal insulation layer extends not only onto the base plate, but also onto the side walls 114 of the cup-shaped housing.
  • a further layer of refractory concrete 130 is applied to the side of the heat insulating layer 120 facing the interior, as a result of which the interior 116 is further reduced in size.
  • the then remaining interior 116 is filled with the fiber material 140.
  • the electronic device 200 is embedded in this fiber material 140.
  • This multilayer structure advantageously achieves particularly good thermal insulation for the electronic device 200.
  • FIG Figure 3 shows a sectional view through the receiving device according to the invention according to FIG Figure 2 ; the layer-like structure is illustrated again from this sectional illustration.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Furnace Housings, Linings, Walls, And Ceilings (AREA)
  • Thermal Insulation (AREA)

Description

Die Erfindung betrifft eine Aufnahmevorrichtung für ein elektronisches Gerät zur Datenübertragung zur Befestigung an einem metallurgischen Gefäß. Die Erfindung betrifft darüber hinaus auch ein solches metallurgisches Gefäß mit der Aufnahmevorrichtung.The invention relates to a receiving device for an electronic device for data transmission for attachment to a metallurgical vessel. The invention also relates to such a metallurgical vessel with the receiving device.

Im Stand der Technik, z. B. aus der internationalen Patentanmeldung WO 2010/057656 sind derartige Aufnahmevorrichtungen grundsätzlich bekannt. Konkret offenbart diese Patentanmeldung insbesondere, dass sogenannte Radio Frequenzy Identification RFID-Chips an Flüssigstahl-Transporteinheiten gekapselt, insbesondere wärme- und feuchtigkeitsisoliert befestigt sind.In the prior art, e.g. B. from the international Patent application WO 2010/057656 such receiving devices are known in principle. Specifically, this patent application discloses in particular that so-called radio frequency identification RFID chips are encapsulated on liquid steel transport units, in particular fastened in a manner insulated from heat and moisture.

Die besagte internationale Patentanmeldung schweigt sich allerdings darüber aus, wie eine solche Aufnahmeeinrichtung bzw. Kapselung konkret aufgebaut sein soll.The said international patent application is silent about how such a receiving device or encapsulation should specifically be constructed.

Die WO 2011/101138 A1 offenbart eine Aufnahmevorrichtung für ein elektronisches Gerät zur Datenübertragung zur Befestigung an einem metallurgischen Gefäß gemäß dem Oberbegriff des Patentanspruchs 1. Konkret offenbart diese internationale Patentanmeldung, dass eine solche Aufnahmevorrichtung ein Gehäuse mit einer Bodenplatte und Seitenwänden aufweist und somit einen Innenraum aufspannt zur Aufnahme eines elektronischen Gerätes, wobei in dem Innenraum des Gehäuses wärmeisolierendes Material angeordnet ist.The WO 2011/101138 A1 discloses a receiving device for an electronic device for data transmission for attachment to a metallurgical vessel according to the preamble of claim 1. Specifically, this international patent application discloses that such a receiving device has a housing with a base plate and side walls and thus spans an interior space for receiving an electronic device , wherein heat insulating material is arranged in the interior of the housing.

Ausgehend von diesem Stand der Technik liegt der Erfindung die Aufgabe zugrunde, eine bekannte Aufnahmevorrichtung für ein elektronisches Gerät zur Datenübertragung zur Befestigung an einem metallurgischen Gefäß sowie ein bekanntes metallurgisches Gefäß mit einer solchen Aufnahmeeinrichtung dahingehend weiterzubilden, dass die Wärmeisolation verbessert wird.Proceeding from this prior art, the invention is based on the object of providing a known receiving device for an electronic device for data transmission for attachment to a metallurgical vessel, as well as a known metallurgical device Further develop the vessel with such a receiving device in such a way that the thermal insulation is improved.

Diese Aufgabe wird bezüglich der Aufnahmevorrichtung durch den Gegenstand des Patentanspruchs 1 gelöst. Konkret ist die erfindungsgemäße Aufnahmevorrichtung gekennzeichnet durch Fasermaterial, mit welchem der Innenraum der Aufnahmevorrichtung zumindest teilweise ausgefüllt ist zum Einbetten des elektronischen Gerätes.This object is achieved with respect to the receiving device by the subject matter of claim 1. Specifically, the receiving device according to the invention is characterized by fiber material, with which the interior of the receiving device is at least partially filled for embedding the electronic device.

Durch diesen beanspruchten schichtartigen Aufbau, hier konkret Gehäuse aus Stahl und Wärmeisoliermaterial, in welches das elektronische Gerät beispielsweise eingebettet ist, wird vorteilhafterweise bereits eine gute Wärmeisolation für das elektronische Gerät erreicht, insbesondere wenn dieses in dem Wärmeisoliermaterial eingebettet ist.This claimed layer-like structure, here specifically a housing made of steel and heat-insulating material, in which the electronic device is embedded, for example, advantageously already provides good heat insulation for the electronic device, in particular if it is embedded in the heat-insulating material.

Das beanspruchte Wärmeisoliermaterial füllt den Innenraum nicht vollständig aus. Das elektronische Gerät ist auch nicht in das Wärmeisoliermaterial eingebettet, sondern das Wärmeisoliermaterial ist lediglich in Form einer Wärmeisolierschicht ausgebildet, welche zumindest teilweise an der Innenseite des Stahlgehäuses, vorzugsweise jedoch zumindest auf dessen Bodenplatte aufgebracht ist. Diese Ausgestaltung bietet den Vorteil, dass neben der Wärmeisolierschicht auch noch weitere Materialschichten im Inneren des Gehäuses vorgesehen werden können, die ihrerseits ebenfalls einen weiteren Beitrag zur Wärmeisolation des elektronischen Gerätes leisten können.The stressed thermal insulation material does not completely fill the interior space. The electronic device is also not embedded in the heat insulating material, but rather the heat insulating material is only in the form of a heat insulating layer which is at least partially applied to the inside of the steel housing, but preferably at least to its base plate. This configuration offers the advantage that, in addition to the thermal insulation layer, further material layers can also be provided in the interior of the housing, which in turn can also make a further contribution to the thermal insulation of the electronic device.

Mit dem beanspruchten Fasermaterial ist der Innenraum zumindest teilweise ausgefüllt zum Einbetten des elektronischen Gerätes. Das Fasermaterial kann innerhalb des von der Wärmeisolierschicht aufgespannten Innenraumes oder aber innerhalb dem von dem Feuerbeton aufgespannten Innenraum der Aufnahmevorrichtung bzw. des Gehäuses eingebracht sein.The interior space is at least partially filled with the claimed fiber material for embedding the electronic device. The fiber material can be introduced within the interior space spanned by the heat insulating layer or within the interior space of the receiving device or the housing spanned by the refractory concrete.

Bei einer solchen weiteren Schicht z. B. handelt es sich um Feuerbeton, der auf die dem Innenraum zugewandte Seite der Wärmeisolierschicht aufgebracht ist, so dass die Schicht aus Feuerbeton den verbleibenden Innenraum der Aufnahmevorrichtung bzw. des Gehäuses aufspannt.In such a further layer z. B. it is refractory concrete, which is applied to the side of the heat insulating layer facing the interior, so that the layer of refractory concrete spans the remaining interior of the receiving device or the housing.

Bei dem Wärmeisoliermaterial kann es sich beispielsweise um eine der folgenden Materialien handeln:

  • Silikatfaser (SiO2,Al2O3,CaO+MgO);
  • Silikon (Poly(organo)siloxane) mit Mikrohohlglaskugel als Zugabe;
  • Epoxidharz mit Mikrohohlglaskugel als Zugabe;
  • Asbest.
The thermal insulation material can be one of the following materials, for example:
  • Silicate fiber (SiO2, Al2O3, CaO + MgO);
  • Silicone (poly (organo) siloxane) with a hollow glass microsphere as an addition;
  • Epoxy resin with micro hollow glass sphere as an addition;
  • Asbestos.

Für das besagte Fasermaterial kommen beispielsweise die gleichen Materialien wie für das Wärmeisoliermaterial in Frage. Sowohl das Wärmeisoliermaterial wie auch das Fasermaterial können auch aus einer Kombination der besagten Materialien bestehen.For the said fiber material, for example, the same materials as for the heat insulating material come into consideration. Both the thermal insulation material and the fiber material can also consist of a combination of said materials.

Wichtig ist in jedem Fall, dass das Wärmeisoliermaterial oder das Fasermaterial, soweit sie zur Einbettung des elektronischen Gerätes verwendet werden, für elektromagnetische Signale transparent, d. h. insbesondere eisenfrei sind. Nur dann ist sichergestellt, dass die von dem elektronischen Gerät ausgesendeten elektromagnetischen Signale auch außerhalb der Aufnahmevorrichtung empfangen werden können.In any case, it is important that the thermal insulation material or the fiber material, insofar as they are used for embedding the electronic device, is transparent to electromagnetic signals, ie. H. in particular are iron-free. Only then is it ensured that the electromagnetic signals transmitted by the electronic device can also be received outside of the recording device.

Bei dem elektronischen Gerät handelt es sich um eine elektronische Datenübertragungseinrichtung, insbesondere zur Positionsermittlung des metallurgischen Gefäßes. Vorzugsweise verwendet die elektronische Datenübertragungseinrichtung Bluetooth Low Energie (BLE) zur Datenübertragung und beispielsweise ist das Gerät in Form eines iBeacons ausgebildet.The electronic device is an electronic data transmission device, in particular for determining the position of the metallurgical vessel. The electronic data transmission device preferably uses Bluetooth Low Energy (BLE) for data transmission and, for example, the device is designed in the form of an iBeacon.

Die oben genannte Aufgabe der Erfindung wird weiterhin durch ein metallurgisches Gefäß gemäß Anspruch 5 gelöst. Die Vorteile dieser Lösung entsprechen den oben mit Bezug auf die beanspruchte Aufnahmevorrichtung genannten Vorteilen.The above-mentioned object of the invention is also achieved by a metallurgical vessel according to claim 5. The advantages of this solution correspond to the advantages mentioned above with reference to the claimed receiving device.

Das becherförmige Gehäuse ist typischerweise an der Außenseite des metallurgischen Gefäßes befestigt, vorzugsweise angeschweißt. Eine weitere Verbesserung der Wärmeisolierung für das elektronische Gerät innerhalb der Aufnahmevorrichtung wird dadurch erreicht, dass die Befestigung des Gehäuses an der Außenseite des Gefäßes vorzugsweise lediglich punktförmig, beispielsweise über einen oder mehrere Stifte bzw. Stege erfolgt, so dass ein Luftpolster zwischen der Aufnahmevorrichtung und dem Gefäß verbleibt. Das Luftpolster dient dann seinerseits als eine weitere Wärmeisolierschicht.The cup-shaped housing is typically attached, preferably welded, to the outside of the metallurgical vessel. Another The thermal insulation for the electronic device within the receiving device is improved by attaching the housing to the outside of the vessel, preferably only punctually, for example via one or more pins or webs, so that an air cushion remains between the receiving device and the vessel . The air cushion in turn then serves as a further thermal insulation layer.

Der Beschreibung sind drei Figuren beigefügt, wobei

  • Figur 1 einen Querschnitt durch die erfindungsgemäße Aufnahmevorrichtung gemäß einem ersten Ausführungsbeispiel, befestigt an einem metallurgischen Gefäß;
  • Figur 2 einen Querschnitt durch die erfindungsgemäße Aufnahmevorrichtung gemäß einem zweiten Ausführungsbeispiel; und
  • Figur 3 eine Draufsicht auf die erfindungsgemäße Aufnahmevorrichtung zeigt.
The description is accompanied by three figures, where
  • Figure 1 a cross section through the receiving device according to the invention according to a first embodiment, attached to a metallurgical vessel;
  • Figure 2 a cross section through the receiving device according to the invention according to a second embodiment; and
  • Figure 3 shows a plan view of the receiving device according to the invention.

Die Erfindung wird nachfolgend unter Bezugnahme auf die genannten Figuren in Form von Ausführungsbeispielen detailliert beschrieben. In allen Ausführungsbeispielen sind gleiche technische Elemente mit gleichen Bezugszeichen bezeichnet.The invention is described in detail below in the form of exemplary embodiments with reference to the figures mentioned. In all exemplary embodiments, the same technical elements are denoted by the same reference symbols.

Figur 1 zeigt einen Querschnitt durch die erfindungsgemäße Aufnahmevorrichtung 100 für ein elektronisches Gerät 200 zur Datenübertragung gemäß einem ersten Ausführungsbeispiel. Zu erkennen ist, dass die Aufnahmevorrichtung 100 aus einem becherförmigen Gehäuse 110 besteht, welches eine Bodenplatte 112 und Seitenwände 114 aufweist. Das Gehäuse spannt einen Innenraum 116 auf. Figure 1 shows a cross section through the receiving device 100 according to the invention for an electronic device 200 for data transmission according to a first embodiment. It can be seen that the receiving device 100 consists of a cup-shaped housing 110 which has a base plate 112 and side walls 114. The housing spans an interior 116.

Das Gehäuse ist mit Hilfe von Schweißnähten 310 an einem metallurgischen Gefäß 300 befestigt.The housing is attached to a metallurgical vessel 300 with the aid of weld seams 310.

Auf der dem Innenraum 116 zugewandten Seite der Bodenplatte 112 ist eine Wärmeisolierschicht 112 aufgebracht. Auf die Wärmeisolierschicht 120 ist das elektronische Gerät 200, beispielsweise ein iBeacon aufgebracht, beispielsweise geklebt. Der Innenraum 116 über dem elektronischen Gerät ist zumindest teilweise aufgefüllt mit einem Fasermaterial 140.A heat insulating layer 112 is applied to the side of the base plate 112 facing the interior 116. The electronic device 200, for example an iBeacon, is applied, for example glued, to the heat insulating layer 120. The interior 116 above the electronic device is at least partially filled with a fiber material 140.

Figur 2 zeigt ein zweites Ausführungsbeispiel für die erfindungsgemäße Aufnahmevorrichtung, wiederum in einem Querschnitt. Auch bei diesem zweiten Ausführungsbeispiel besteht die Aufnahmevorrichtung aus einem becherförmigen Gehäuse aus Stahl, dessen Wände an ihrer Innenseite mit einer Wärmeisolierschicht 120 ausgekleidet sind. Im Unterschied zu dem ersten Ausführungsbeispiel erstreckt sich die Wärmeisolierschicht nicht nur auf die Bodenplatte, sondern auch auf die Seitenwände 114 des becherförmigen Gehäuses. Auf die dem Innenraum zugewandte Seite der Wärmeisolierschicht 120 ist eine weitere Schicht aus Feuerbeton 130 aufgebracht, wodurch der Innenraum 116 weiter verkleinert wird. Der dann verbleibende Innenraum 116 ist mit dem Fasermaterial 140 ausgefüllt. In dieses Fasermaterial 140 ist das elektronische Gerät 200 eingebettet. Durch diesen mehrschichtigen Aufbau wird vorteilhafterweise eine besonders gute Wärmeisolation für das elektronische Gerät 200 erreicht. Figure 2 shows a second embodiment for the receiving device according to the invention, again in a cross section. In this second exemplary embodiment, too, the receiving device consists of a cup-shaped housing made of steel, the walls of which are lined on their inside with a heat insulating layer 120. In contrast to the first exemplary embodiment, the thermal insulation layer extends not only onto the base plate, but also onto the side walls 114 of the cup-shaped housing. A further layer of refractory concrete 130 is applied to the side of the heat insulating layer 120 facing the interior, as a result of which the interior 116 is further reduced in size. The then remaining interior 116 is filled with the fiber material 140. The electronic device 200 is embedded in this fiber material 140. This multilayer structure advantageously achieves particularly good thermal insulation for the electronic device 200.

Figur 3 zeigt eine Schnittdarstellung durch die erfindungsgemäße Aufnahmevorrichtung gemäß Figur 2; aus dieser Schnittdarstellung wird der schichtartige Aufbau nochmals veranschaulicht. Figure 3 shows a sectional view through the receiving device according to the invention according to FIG Figure 2 ; the layer-like structure is illustrated again from this sectional illustration.

BezugszeichenlisteList of reference symbols

100100
AufnahmevorrichtungCradle
110110
becherförmiges Gehäusecup-shaped housing
112112
BodenplatteBase plate
114114
Seitenwändeside walls
116116
Innenrauminner space
120120
WärmeisoliermaterialThermal insulation material
130130
FeuerbetonRefractory concrete
140140
FasermaterialFiber material
200200
elektronisches Gerät zur Datenübertragungelectronic device for data transmission
300300
metallurgisches Gefäßmetallurgical vessel
310310
SchweißnahtWeld

Claims (7)

  1. Mounting device (100) for electronic apparatus (200) for data transmission for fastening to a metallurgical vessel (300), comprising:
    a housing (110) with a base plate (112) and side walls (114), wherein the housing bounds an interior space (116) for reception of the electronic apparatus (200); and
    thermal insulating material (120) in the interior space (116) of the housing, wherein the thermal insulating material (12) has the form of a thermal insulating layer which is applied at least partly to the inner side of the housing,
    wherein the housing is bowl-shaped and constructed from steel; and
    a layer of refractory concrete (130) is applied to the side, which faces the interior space (116), of the thermal insulating layer (130) so that the layer of refractory concrete bounds the interior space of the mounting device;
    characterised by
    fibre material (140) with which the interior space (116) of the mounting device is at least partly filled for embedding of the electronic apparatus (200).
  2. Mounting device (100) according to claim 1,
    characterised in that
    the thermal insulating material (120) is formed from at least one of the following materials:
    - silicate fibre (SiO2, Al203, CaO+MgO);
    - silicon (poly(organo)siloxane) with hollow glass microbeads as additive;
    - epoxy resin with hollow glass microbeads as additive;
    - asbestos.
  3. Mounting device (100) according to one of the preceding claims,
    characterised in that
    the fibre material (140) is formed from at least one of the following materials:
    - silicate fibre (SiO2, Al203, CaO+MgO);
    - silicon (poly(organo)siloxane) with hollow glass microbeads as additive;
    - epoxy resin with hollow glass microbeads as additive;
    - asbestos.
  4. Mounting device (100) according to any one of the preceding claims,
    characterised in that
    the electronic apparatus (200) is an electronic data transmission device.
  5. Metallurgical vessel (300), particularly for the transport of liquid steel, with a mounting device (100) according to any one of the preceding claims.
  6. Metallurgical vessel (300) according to claim 5,
    characterised in that
    the bowl-shaped housing (110) is secured to the outer side of the metallurgical vessel (300).
  7. Metallurgical vessel (300) according to claim 6,
    characterised in that
    the securing of the housing (110) to the outer side of the vessel is carried out, preferably punctiformly, by way at least one web so that an air cushion remains between the mounting device and the vessel.
EP17193569.5A 2016-09-30 2017-09-27 Holding system for an electronic device Active EP3300815B1 (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102016219129.2A DE102016219129A1 (en) 2016-09-30 2016-09-30 Recording device for an electronic device

Publications (2)

Publication Number Publication Date
EP3300815A1 EP3300815A1 (en) 2018-04-04
EP3300815B1 true EP3300815B1 (en) 2021-06-30

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Application Number Title Priority Date Filing Date
EP17193569.5A Active EP3300815B1 (en) 2016-09-30 2017-09-27 Holding system for an electronic device

Country Status (2)

Country Link
EP (1) EP3300815B1 (en)
DE (1) DE102016219129A1 (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3831510A1 (en) * 2019-12-03 2021-06-09 Primetals Technologies Austria GmbH Transponder arrangement in an element of a metallurgical installation

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102008023683A1 (en) * 2008-05-15 2009-11-19 Finze & Wagner Ingenieurgesellschaft Udi Mbh Holder for electrical components with high thermal insulation capacity
RU2516209C2 (en) 2008-11-20 2014-05-20 Смс Зимаг Аг System to track plant properties
CH702754A2 (en) * 2010-02-19 2011-08-31 Stopinc Ag Monitoring device for a sliding closure, a Giessrohrwechsler or the like on a metallurgical vessel.
CN105210463A (en) * 2013-03-26 2015-12-30 首要金属科技奥地利有限责任公司 Electronics protection housing for accommodating electronics
EP2921564A1 (en) * 2014-03-20 2015-09-23 Siemens VAI Metals Technologies GmbH Metallurgical container

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EP3300815A1 (en) 2018-04-04

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