EP2182082B1 - Method and device for tempering a steel sheet body - Google Patents

Method and device for tempering a steel sheet body Download PDF

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Publication number
EP2182082B1
EP2182082B1 EP08105692.1A EP08105692A EP2182082B1 EP 2182082 B1 EP2182082 B1 EP 2182082B1 EP 08105692 A EP08105692 A EP 08105692A EP 2182082 B1 EP2182082 B1 EP 2182082B1
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EP
European Patent Office
Prior art keywords
contact
temperature
steel sheet
steel
sheet body
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EP08105692.1A
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German (de)
French (fr)
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EP2182082B2 (en
EP2182082A1 (en
Inventor
Jürgen Kaiser
Udo Bach
Vasily Ploshikhin
Andrey Prihodovsky
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Neue Materialien Bayreuth GmbH
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Neue Materialien Bayreuth GmbH
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Application filed by Neue Materialien Bayreuth GmbH filed Critical Neue Materialien Bayreuth GmbH
Priority to EP08105692.1A priority Critical patent/EP2182082B2/en
Priority to PCT/DE2009/075064 priority patent/WO2010048951A1/en
Publication of EP2182082A1 publication Critical patent/EP2182082A1/en
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    • CCHEMISTRY; METALLURGY
    • C21METALLURGY OF IRON
    • C21DMODIFYING THE PHYSICAL STRUCTURE OF FERROUS METALS; GENERAL DEVICES FOR HEAT TREATMENT OF FERROUS OR NON-FERROUS METALS OR ALLOYS; MAKING METAL MALLEABLE, e.g. BY DECARBURISATION OR TEMPERING
    • C21D1/00General methods or devices for heat treatment, e.g. annealing, hardening, quenching or tempering
    • C21D1/62Quenching devices
    • C21D1/673Quenching devices for die quenching
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21JFORGING; HAMMERING; PRESSING METAL; RIVETING; FORGE FURNACES
    • B21J1/00Preparing metal stock or similar ancillary operations prior, during or post forging, e.g. heating or cooling
    • B21J1/06Heating or cooling methods or arrangements specially adapted for performing forging or pressing operations
    • CCHEMISTRY; METALLURGY
    • C21METALLURGY OF IRON
    • C21DMODIFYING THE PHYSICAL STRUCTURE OF FERROUS METALS; GENERAL DEVICES FOR HEAT TREATMENT OF FERROUS OR NON-FERROUS METALS OR ALLOYS; MAKING METAL MALLEABLE, e.g. BY DECARBURISATION OR TEMPERING
    • C21D1/00General methods or devices for heat treatment, e.g. annealing, hardening, quenching or tempering
    • C21D1/34Methods of heating

Definitions

  • the invention relates to a method and a device for tempering a steel sheet body.
  • metal sheets or sheet metal parts made of high-strength steel alloys are used, for example, in automobile bodies, which allow for the same strength a design with lower sheet thickness.
  • high strength sheets sometimes do not have sufficient deformability on cold forming. Therefore, for forming workpieces made of high-strength metal sheets forming processes at elevated temperatures, ie hot forming processes, such as the so-called press hardening used.
  • the sheet metal plates to be formed are fully austenitized by heating to a temperature above A c3 (so-called austenitization) and then placed in a pressing tool, formed (so-called hot forming) and cooled in the tool and hardened (so-called direct press hardening).
  • roller pass furnaces are used to heat the sheet steel body during austenitizing.
  • the steel sheet body is placed in the oven and heated relatively slowly during the passage through the roller conveyor.
  • the residence time of the steel sheet body within the furnace is typically about 5 to 10 minutes.
  • the forming phase of the process is initiated, with the two halves of the tool being closed.
  • the mold halves must be closed to the temperature of the martensitic microstructure transformation (approx. 400 ° C) before the sheet steel body cools down.
  • the formed component remains in the mold and is further quenched, thereby completing the induced martensitic microstructure transformation and achieving the final properties of the component.
  • the transport between the furnace and the pressing tool represents a fault-prone process step.
  • the temperature of the sheet material can be limited control and control during transport, since the temporal and thermal conditions during the transfer of the steel sheet body from the furnace into a subsequent forming tool not exactly defined and can be safely reproduced. This can lead to uncontrollable changes in the properties of the sheet material and thus the Umform s.
  • the sheet materials when they come out of the oven a relatively high temperature. This leads to an increased wear on the forming tool.
  • the cycle times required for the hot forming increase, since a relatively long period of time is necessary for the cooling of the sheet material in the tool to a temperature that allows the demoulding.
  • DE 10 2007 009 937 A1 describes a method for tempering a sheet steel body between austenitizing and hot working. Initially, a heating to a predetermined temperature.
  • the object of the invention is to provide a method and apparatus for temperature control of at least one steel sheet body between the austenitizing and the hot forming, by means of which the material properties of the steel sheet body can be adjusted exactly and homogeneously.
  • the steel sheet body located at austenitizing temperature is fixed in position, at least one first contact plate is brought into contact with at least one first surface portion of the steel sheet body and at least one second contact plate with at least one second Surface portion of the steel sheet body brought into contact.
  • the contact plates are flat substantially or completely formed according to the contour of the surface portions of the sheet steel body and in the state of contact with the steel sheet body arranged substantially parallel to each other. At least one contact plate has during the contacting of the steel sheet body with respect to the steel sheet body lower temperature.
  • the temperature in at least a portion of the at least one lower temperature contact plate is controlled by a temperature control device during contacting of the steel sheet body with the contact plates.
  • the temperature control of the contact plate with a lower temperature is effected by a standing with at least one of the contact plates in connection as an inductive or conductive heat source energy source.
  • a sheet steel body here are both single substantially planar-shaped sheets and steel blanks, as well as three-dimensionally shaped sheet metal body made of steel and also components that are composed of several such sheets understood.
  • the austenitizing temperature is understood to mean the temperature above A c3 at which the steel sheet body was austenitized.
  • the method according to the invention can be used variably.
  • the temperature which the contact plate has or on which the steel sheet body is brought, as well as the period of time for which the contact between contact plates and steel sheet body, can be chosen almost arbitrarily.
  • the contact between sheet steel body and contact plates may be formed such that the contact plates and the sheet steel body touch directly. However, it may also be an intermediate layer, such as a contact agent, which improves the temperature balance between the contact plate and sheet steel body, be present.
  • the area associated with the contact plates surface portions can both extend over large parts of the sheet steel body or completely cover this and form only small, localized areas of the sheet steel body. If only locally limited areas are connected to the contact plates, a local thermal treatment of the steel sheet body can be carried out.
  • a sheet metal plate made of a steel of the composition 22MnB5 and having an AlSi10 coating as steel sheet body located at austenitizing temperature is fixed between a first contact plate and a second contact plate.
  • the contact plates have a temperature between 400 ° C and 600 ° C. After the sheet steel body has been contacted by the contact plates for a period of, for example, 10 seconds to 120 seconds, it is placed in a forming tool and hot worked.
  • the device according to the invention is designed to carry out the method according to the invention and has a first surface formed contact plate, a second flat contact plate, which is arranged substantially parallel to the first contact plate, at least one inductive or conductive heat source for temperature control of the contact plates, which communicates with at least one of the contact plates, a closing device for varying the distance of the mutually parallel Contact plates and a temperature control device for controlling the temperature in at least a portion of the at least one contact plate at a lower temperature during the contacting of the steel sheet body with the contact plates.
  • the contact plates can both be made of the same material as well as of different materials.
  • contact plates that are heated made of a metallic material, such as steel.
  • Contact plates that are not heated may preferably be made of both metallic and non-metallic materials. In a particularly advantageous manner, contact plates that are not heated, made of an insulating material. This has the advantage that the heat loss is reduced.
  • the contact plates may have an insulating layer. Also, the heat loss can be reduced thereby.
  • Fig. 1 shows a schematic sectional view of an embodiment of the method according to the invention.
  • the steel sheet body 1 has been brought by the displacement of the first contact plate 2 by means of the closing device 11 in the direction 4 with the first contact plate 2 in contact.
  • a first surface portion 6 of the sheet steel body 1 is in communication with the first contact plate 2.
  • the first surface section 6 lies on the upper side of the sheet metal and the second surface section 7 is located on the underside of the sheet metal.
  • first surface portion 6 and the second surface portion 7 correspond to a portion of the top or bottom of the flat sheet steel body 1.
  • first surface portion 6 and the second surface portion 7 of the entire bottom or the entire top of a flat sheet steel body 1 correspond.
  • the contact plates 2, 3 are formed flat in accordance with the contour of the surface sections 6, 7 of the steel sheet body 1 and are arranged running parallel to one another in the state of contacting with the metal body 1.
  • the contacting can be designed such that the first contact plate 2 and the second contact plate 3 are brought into contact with the steel sheet body 1 simultaneously. But it can also first a contact plate. 2 be brought into contact with the sheet steel body 1 and only later, a second contact plate 3 added.
  • the second contact plate 3 is or was brought by an energy source 5 to a relative to the steel sheet body 1 lowered temperature.
  • the contact plate 3 is brought to a temperature which is above room temperature but below the austenitizing temperature.
  • Energy source 5 is understood below to mean any device that can be used to heat objects.
  • a cooling device This can either be mounted in the immediate vicinity of one or both of the contact plates 2, 3 or integrated in them.
  • 2.3 cooling channels can be introduced into one or both contact plates. This allows the passage of liquid or gaseous coolants through the contact plates 2,3, resulting in a particularly accurate cooling.
  • the cooling device can thus regulate the temperature of the contact plates 2.3 particularly precisely.
  • the contact plates 2, 3 are arranged running parallel to one another.
  • the second contact plate 3 has an insulation layer 8. By this insulating layer 8, the heat or cooling loss can be reduced.
  • the temperature of the steel sheet body 1 can be kept constant. However, it is also possible to vary the temperature of the steel sheet body 1 in the course of contacting by the defined change in the temperatures of the contact plates 2.3. Thus, a very variable adaptation of the temperature-time curve is possible.
  • the temperature profile along a contact plate 2, 3 can be designed such that an almost constant temperature is established over the entire contact plate 2, 3.
  • the contact plate 2, 3 can also be heated or cooled in such a way that regions with different temperatures form within the contact plate 2, 3.
  • the first surface portion 6 brought into contact with the contact plates 2, 3 and the second surface portion 7 of the sheet steel body 1 may be the same size. However, they can also have different sizes (not shown).
  • a temperature control device 9 and a temperature control device 10 may be attached on the contact plate 2. Furthermore, a temperature sensor element (not shown) may also be attached. This allows the measurement of the temperature of the steel sheet body 1 and / or the contact plates 2,3. The temperature measured in this way can serve, for example, as an input variable for the temperature control device 9 and / or the temperature control device 10, which controls and / or controls the temperature-time profile of the thermal treatment.
  • the temperature control device 9 can in this case control both the energy source 5 and the cooling device and thus ensure a particularly accurate temperature control of the contact plates 2.3 and thus the sheet steel body 1.
  • the method can also be configured such that a plurality of steel sheet bodies 1 are simultaneously brought into contact with at least one first and / or one at least one second contact plate simultaneously.
  • Fig. 2 shows a schematic sectional view of another embodiment of the method according to the invention.
  • the steel sheet body 1 was brought by moving the first contact plate 2 with this and a second contact plate 3 in contact.
  • the displacement of the two contact plates 2, 3 arranged parallel to one another takes place through the closing device 11.
  • the first contact plate 2 is or was brought to a temperature lowered relative to the steel sheet body by an energy source 5 and a cooling device (not shown).
  • the second contact plate 3 is or was brought by a further energy source 5 and a further cooling device (not shown) to a relative to the steel sheet body elevated temperature.
  • the first contact plate 2 and the second contact plate 3 can be brought by the energy sources 5 and the cooling devices both to the same temperature and to different temperatures.
  • Fig. 3a shows a schematic sectional view of a first process step to a temperature of the contact plates.
  • the first contact plate 2 and the second contact plate 3 are brought into mutual contact with each other before contacting with the steel sheet body.
  • the second contact plate 3 is heated by the power source 5 to a temperature which is above room temperature and below the Austenitmaschinestemperatur.
  • the temperature is subsequently transferred to the first contact plate 2 which is in contact with the second contact plate 3.
  • Fig. 3b shows a schematic sectional view of a second method step to an application of the contact plates, which conform to the in Fig. 3a followed by the process step.
  • the first contact plate 2 and the second contact plate 3 are separated from each other.
  • the steel sheet body 1 located at austenizing temperature is introduced between the separate contact plates 2, 3.
  • Fig. 3c shows a schematic sectional view of a third method step for an application of the contact plates 2 and 3, which conform to the in Fig. 3b followed by the process step.
  • the first contact plate 2 and the second contact plate 3 were brought into contact with the steel sheet body 1 by closing the closing device 11. In this case, both the first contact plate 2 and the second contact plate 3 have a relation to the steel sheet body 1 lowered temperature.

Abstract

The method of tempering a steel platebody (1) between the austenization and hot-working comprises fixing the steel platebody, which is at austenization temperature, at a position, contacting a first contact plate (2) with a first surface portion (6) of the steel platebody, contacting a second contact plate (3) with a second surface portion (7) of the steel platebody, and forming the contact plates flatly or completely corresponding to the contour of the surface portions and arranging the contact plates parallel to each other in the state of contacting with the steel platebody. The method of tempering a steel platebody (1) between the austenization and hot-working comprises fixing the steel platebody, which is at austenization temperature, at a position, contacting a first contact plate (2) with a first surface portion (6) of the steel platebody, contacting a second contact plate (3) with a second surface portion (7) of the steel platebody, and forming the contact plates flatly or completely corresponding to the contour of the surface portions and arranging the contact plates parallel to each other in the state of contacting with the steel platebody in a running manner. The contact plates have a low temperature of 400-600[deg] C during the contacting step. The contact plates are pressed on the steel platebody. The method comprises regulating and/or controlling the temperature in a partial area of one contact plate with low temperature by a temperature regulating and/or controlling device before and/or during the contacting of the steel platebody with the contact plates. The method further comprises a step of removing the contact plates. The steel platebody is directly deformed in a subsequent step and the first and second surface portions lie in the or in the vicinity of the deformed area. One of the contact plates is cooled. The steel platebody comprises aluminum-silicon-protective layer or zinc protective layer. An independent claim is included for a device for tempering a steel platebody between the austenization and the hot-working.

Description

Die Erfindung betrifft ein Verfahren und eine Vorrichtung zur Temperierung eines Stahlblechkörpers.The invention relates to a method and a device for tempering a steel sheet body.

Zur Gewichtsreduzierung werden beispielsweise in Automobilkarosserien Metallbleche bzw. Blechformteile aus hochfesten Stahllegierungen eingesetzt, die bei gleicher Festigkeit eine Auslegung mit geringerer Blechdicke ermöglichen. Hochfeste Bleche weisen jedoch bisweilen bei einer Kaltumformung kein ausreichendes Formänderungsvermögen auf. Daher werden zur Umformung von Werkstücken aus hochfesten Metallblechen Umformprozesse bei erhöhten Temperaturen, d.h. Warmumformprozesse, wie das sogenannte Presshärten, eingesetzt. Hierbei werden die umzuformenden Blechplatinen durch Erwärmung auf eine Temperatur oberhalb Ac3 vollständig austenitisiert (sog. Austenitisierung) und anschließend in ein Presswerkzeug eingelegt, umgeformt (sog. Warmumformen) und im Werkzeug abgekühlt und gehärtet (sog. direktes Presshärten).For weight reduction, metal sheets or sheet metal parts made of high-strength steel alloys are used, for example, in automobile bodies, which allow for the same strength a design with lower sheet thickness. However, high strength sheets sometimes do not have sufficient deformability on cold forming. Therefore, for forming workpieces made of high-strength metal sheets forming processes at elevated temperatures, ie hot forming processes, such as the so-called press hardening used. Here, the sheet metal plates to be formed are fully austenitized by heating to a temperature above A c3 (so-called austenitization) and then placed in a pressing tool, formed (so-called hot forming) and cooled in the tool and hardened (so-called direct press hardening).

In der industriellen Produktionspraxis kommen zur Erwärmung des Stahlblechkörpers während des Austenitisierens Rollendurchlauföfen zum Einsatz. Dabei wird der Stahlblechkörper in den Ofen gegeben und während des Durchlaufs durch den Rollendurchlaufofen relativ langsam aufgeheizt. Die Verweildauer des Stahlblechkörpers innerhalb des Ofens beträgt typischerweise ca. 5 bis 10 Minuten.
Nachdem der Stahlblechkörper den Ofen durchlaufen hat bzw. durch andere Wärmeverfahren erhitzt wurde, wird diese umgehend in ein Presswerkzeug eingelegt. Dann wird die Umformphase des Prozesses eingeleitet, wobei die beiden Hälften des Werkzeugs geschlossen werden. Durch den Kontakt mit dem in der Regel wassergekühlten Werkzeug kommt es während der Umformung zur schnellen Abkühlung des Stahlblechkörpers. Die Schließung der Werkzeughälften muss vor der Abkühlung des Stahlblechkörpers auf die Temperatur der martensitischen Gefügeumwandlung (ca. 400 °C) erfolgen. Nachdem dieser Umformschritt abgeschlossen ist, bleibt das umgeformte Bauteil im Werkzeug liegen und wird weiter abgeschreckt, wodurch die induzierte martensitische Gefügeumwandlung abgeschlossen und die Endeigenschaften des Bauteils erreicht werden.
In industrial production practice, roller pass furnaces are used to heat the sheet steel body during austenitizing. The steel sheet body is placed in the oven and heated relatively slowly during the passage through the roller conveyor. The residence time of the steel sheet body within the furnace is typically about 5 to 10 minutes.
After the steel sheet body has passed through the oven or was heated by other heating methods, this is immediately inserted into a pressing tool. Then the forming phase of the process is initiated, with the two halves of the tool being closed. By contact with the usually water-cooled tool comes during the rapid cooling of the steel sheet body. The mold halves must be closed to the temperature of the martensitic microstructure transformation (approx. 400 ° C) before the sheet steel body cools down. After this forming step is completed, the formed component remains in the mold and is further quenched, thereby completing the induced martensitic microstructure transformation and achieving the final properties of the component.

Der Transport zwischen dem Ofen und dem Presswerkzeug stellt einen fehlerträchtigen Prozessschritt dar. So lässt sich während des Transports die Temperatur des Blechwerkstoffs nur bedingt steuern und kontrollieren, da die zeitlichen und thermischen Rahmenbedingungen bei der Übergabe des Stahlblechkörpers vom Ofen in ein nachfolgendes Umformwerkzeug nicht genau definiert und sicher reproduziert werden können. Dies kann zu unkontrollierbaren Änderungen der Eigenschaften des Blechwerkstoffs und damit des Umformverhaltens führen.The transport between the furnace and the pressing tool represents a fault-prone process step. Thus, the temperature of the sheet material can be limited control and control during transport, since the temporal and thermal conditions during the transfer of the steel sheet body from the furnace into a subsequent forming tool not exactly defined and can be safely reproduced. This can lead to uncontrollable changes in the properties of the sheet material and thus the Umformverhaltens.

Auch besitzen die Blechwerkstoffe, wenn sie aus dem Ofen kommen, eine relativ hohe Temperatur. Dies führt zum einen zu einem erhöhten Verschleiß am Umformwerkzeug. Zum anderen erhöhen sich die für die Warmumformung benötigten Taktzeiten, da für die Abkühlung des Blechwerkstoffes im Werkzeug auf eine Temperatur, die das Entformen zulässt, eine relativ lange Zeitspanne nötig ist.Also, the sheet materials when they come out of the oven, a relatively high temperature. This leads to an increased wear on the forming tool. On the other hand, the cycle times required for the hot forming increase, since a relatively long period of time is necessary for the cooling of the sheet material in the tool to a temperature that allows the demoulding.

DE 10 2007 009 937 A1 beschreibt ein Verfahren zur Temperierung eines Stahlblechkörpers zwischen der Austenitisierung und dem Warmumformen. erfolgt zunächst eine Erwärmung auf eine vorbestimmte Temperatur. DE 10 2007 009 937 A1 describes a method for tempering a sheet steel body between austenitizing and hot working. Initially, a heating to a predetermined temperature.

Anschließend erfolgt eine Abkühlung durch den Kontakt des Stahlblech körpers mit zwei parallel zueinander angeordneten Kontaktplatten. Hierbei erfolgt die Abkühlung möglichst schnell. Falls der Stahlblechkörper auf die gewünschte Temperatur abgekühlt worden ist, wird die Kontaktplatte sofort entfernt.Subsequently, a cooling takes place by the contact of the steel sheet body with two mutually parallel contact plates. Here, the cooling takes place as quickly as possible. If the sheet steel body has been cooled to the desired temperature, the contact plate is removed immediately.

Ferner beschreibt DE 10 2007 009 937 A1 eine Vorrichtung mit parallel zueinander angeordneten Kontaktplatten und einer Schließvorrichtung zur Variation des Abstandes der Kontaktplatten zueinander.Further describes DE 10 2007 009 937 A1 a device with mutually parallel contact plates and a closing device for varying the distance of the contact plates to each other.

Aufgabe der Erfindung ist es, ein Verfahren und eine Vorrichtung zur Temperierung mindestens eines Stahlblech körpers zwischen der Austenitisierung und dem Warmumformen bereitzustellen, mit Hilfe derer die Werkstoffeigenschaften des Stahlblech körpers exakt und homogen eingestellt werden können.The object of the invention is to provide a method and apparatus for temperature control of at least one steel sheet body between the austenitizing and the hot forming, by means of which the material properties of the steel sheet body can be adjusted exactly and homogeneously.

Diese Aufgabe wird durch ein Verfahren mit den Merkmalen des Patentanspruchs 1 realisiert. Vorteilhafte Ausführungsformen des Verfahrens werden in den Unteransprüchen 2 - 9 realisiert. Für die Vorrichtung wird die Aufgabe durch die Merkmale des Patentanspruchs 10 gelöst. Vorteilhafte Ausführungsformen der Vorrichtung werden in den Unteransprüchen 11 - 14 realisiert.This object is achieved by a method having the features of patent claim 1. Advantageous embodiments of the method are realized in the subclaims 2-9. For the device, the object is solved by the features of claim 10. Advantageous embodiments of the device are realized in the subclaims 11-14.

Bei dem erfindungsgemäßen Verfahren zur Temperierung mindestens eines Stahlblechkörpers zwischen der Austenitisierung und dem Warmumformen wird der sich auf Austenitisierungstemperatur befindende Stahlblechkörper in seiner Lage fixiert, mindestens eine erste Kontaktplatte mit mindestens einem ersten Flächenabschnitt des Stahlblechkörpers in Kontakt gebracht und mindestens eine zweite Kontaktplatte mit mindestens einem zweiten Flächenabschnitt des Stahlblechkörpers in Kontakt gebracht. Die Kontaktplatten sind flächig im wesentlichen oder vollständig entsprechend der Kontur der Flächenabschnitte des Stahlblechkörpers ausgebildet und im Zustand der Kontaktierung mit dem Stahlblech körper im wesentlichen parallel zueinander verlaufend angeordnet. Mindestens eine Kontaktplatte besitzt während der Kontaktierung des Stahlblechkörpers eine gegenüber dem Stahlblechkörper niedrigere Temperatur. Die Temperatur in mindestens einem Teilbereich der mindestens einen Kontaktplatte mit niedrigerer Temperatur wird während der Kontaktierung des Stahlblechkörpers mit den Kontaktplatten durch eine Temperaturregeleinrichtung geregelt. Die Temperierung der Kontaktplatte mit niedrigerer Temperatur erfolgt durch eine mit mindestens einer der Kontaktplatten in Verbindung stehende als induktive oder konduktive Wärmequelle ausgebildete Energiequelle.In the method according to the invention for tempering at least one steel sheet body between the austenitizing and the hot forming, the steel sheet body located at austenitizing temperature is fixed in position, at least one first contact plate is brought into contact with at least one first surface portion of the steel sheet body and at least one second contact plate with at least one second Surface portion of the steel sheet body brought into contact. The contact plates are flat substantially or completely formed according to the contour of the surface portions of the sheet steel body and in the state of contact with the steel sheet body arranged substantially parallel to each other. At least one contact plate has during the contacting of the steel sheet body with respect to the steel sheet body lower temperature. The temperature in at least a portion of the at least one lower temperature contact plate is controlled by a temperature control device during contacting of the steel sheet body with the contact plates. The temperature control of the contact plate with a lower temperature is effected by a standing with at least one of the contact plates in connection as an inductive or conductive heat source energy source.

Unter einem Stahlblechkörper werden hierbei sowohl einzelne im wesentlichen planar geformte Bleche und Blechplatinen aus Stahl, als auch dreidimensional geformte Blechformkörper aus Stahl und auch Bauteile, die aus mehreren derartiger Bleche aufgebaut sind, verstanden.Under a sheet steel body here are both single substantially planar-shaped sheets and steel blanks, as well as three-dimensionally shaped sheet metal body made of steel and also components that are composed of several such sheets understood.

Unter der Austenitisierungstemperatur wird diejenige oberhalb von Ac3 liegende Temperatur verstanden, bei der der Stahlblechkörper austenitisiert wurde.The austenitizing temperature is understood to mean the temperature above A c3 at which the steel sheet body was austenitized.

Durch den Kontakt der Kontaktplatten mit dem Stahlblechkörper wird eine schnelle Temperierung, d.h. eine Abkühlung von der Austenitisierungstemperatur auf eine niedrigere Temperatur, erreicht. Wird der Stahlblechkörper anschließend in einem Warmumformprozess umgeformt, so erfolgt diese Umformung zeitlich nach dem erfindungsgemäßen Temperierverfahren. Dadurch wird die Wärmebelastung der Umformwerkzeuge verringert und die Taktzeiten verringert.By the contact of the contact plates with the steel sheet body is a rapid tempering, i. cooling from the austenitizing temperature to a lower temperature. If the steel sheet body is subsequently shaped in a hot forming process, this transformation takes place temporally according to the temperature control method according to the invention. This reduces the heat load on the forming tools and reduces the cycle times.

Durch das erfindungsgemäße Verfahren ist es möglich, eine genau definierte Temperatur in die Bereiche des Stahlblechkörpers, die mit den Kontaktflächen in Verbindung stehen, einzubringen. Dadurch können die sich durch die Temperierung einstellenden Werkstoffeigenschaften sehr exakt und homogen eingestellt werden.By means of the method according to the invention, it is possible to introduce a precisely defined temperature into the regions of the steel sheet body which are in contact with the contact surfaces. As a result, the material properties that arise as a result of the temperature control can be adjusted very precisely and homogeneously.

Das erfindungsgemäße Verfahren ist variabel einsetzbar. Insbesondere können die Temperatur, die die Kontaktplatte besitzt bzw. auf die der Stahlblechkörper gebracht wird, sowie die Zeitspanne, für die die Kontaktierung zwischen Kontaktplatten und Stahlblechkörper besteht, nahezu beliebig gewählt werden. So ist es möglich, das erfindungsgemäße Verfahren variabel an die gewünschten Parameter der Temperierung sowie an den zu behandelnden Werkstoff anzupassen.The method according to the invention can be used variably. In particular, the temperature which the contact plate has or on which the steel sheet body is brought, as well as the period of time for which the contact between contact plates and steel sheet body, can be chosen almost arbitrarily. Thus, it is possible to variably adapt the method according to the invention to the desired parameters of the temperature control and to the material to be treated.

Der Kontakt zwischen Stahlblechkörper und Kontaktplatten kann derart ausgebildet sein, dass sich die Kontaktplatten und der Stahlblechkörper direkt berühren. Es kann allerdings auch eine Zwischenschicht, wie etwa ein Kontaktmittel, das den Temperaturausgleich zwischen Kontaktplatte und Stahlblechkörper verbessert, vorhanden sein.The contact between sheet steel body and contact plates may be formed such that the contact plates and the sheet steel body touch directly. However, it may also be an intermediate layer, such as a contact agent, which improves the temperature balance between the contact plate and sheet steel body, be present.

Es kann sowohl nur ein Stahlblechkörper als auch mehrere Stahlblechkörper gleichzeitig zwischen den Kontaktplatten erfasst werden.It can be detected both between the contact plates at the same time only a sheet steel body and several steel sheet body.

Die mit den Kontaktplatten in Verbindung stehenden Flächenabschnitte können sich sowohl über weite Teile des Stahlblechkörpers erstrecken bzw. diesen vollkommen bedecken als auch nur kleine, lokal begrenzte Bereiche des Stahlblechkörpers bilden. Stehen nur lokal begrenzte Bereiche mit den Kontaktplatten in Verbindung kann dadurch eine lokale thermische Behandlung des Stahlblechkörpers durchgeführt werden.The area associated with the contact plates surface portions can both extend over large parts of the sheet steel body or completely cover this and form only small, localized areas of the sheet steel body. If only locally limited areas are connected to the contact plates, a local thermal treatment of the steel sheet body can be carried out.

In einem bevorzugten Ausführungsbeispiel des Verfahrens wird eine sich auf Austenitisierungstemperatur befindende flach ausgebildete Blechplatine aus einem Stahl der Zusammensetzung 22MnB5 mit einer AlSi10-Beschichtung als Stahlblechkörper zwischen einer ersten Kontaktplatte und einer zweiten Kontaktplatte fixiert. Die Kontaktplatten weisen eine Temperatur zwischen 400°C und 600°C auf. Nachdem der Stahlblechkörper durch die Kontaktplatten für eine Zeitspanne von beispielsweise 10 s bis 120 s kontaktiert wurde, wird er in ein Umformwerkzeug gegeben und warmumgeformt.In a preferred embodiment of the method, a sheet metal plate made of a steel of the composition 22MnB5 and having an AlSi10 coating as steel sheet body located at austenitizing temperature is fixed between a first contact plate and a second contact plate. The contact plates have a temperature between 400 ° C and 600 ° C. After the sheet steel body has been contacted by the contact plates for a period of, for example, 10 seconds to 120 seconds, it is placed in a forming tool and hot worked.

Weitere vorteilhafte Ausgestaltungen des Verfahrens können folgende zusätzliche Merkmale aufweisen:

  • Mindestens eine Kontaktplatte kann während der Kontaktierung eine Temperatur zwischen 300 °C und 800 °C, vorzugsweise zwischen 400 °C und 600 °C, besitzen.
  • Die Kontaktplatten können auf den Stahlblechkörper gepresst werden. Dies hat den Vorteil, dass ein Kontakt zwischen Kontaktplatten und Metallkörper besonders sicher gewährleistet wird. Darüber hinaus ist dadurch eine Minimierung der Verzüge besonders wirkungsvoll möglich.
  • Die Temperatur der mindestens einen Kontaktplatte mit höherer Temperatur kann vor und/oder während der Kontaktierung des Stahlblechkörpers mit den Kontaktplatten durch eine Temperaturregeleinrichtung geregelt werden.
  • Die Temperatur der mindestens einen Kontaktplatte mit höherer Temperatur kann vor und/oder während der Kontaktierung des Stahlblechkörpers mit den Kontaktplatten durch eine Temperaturkontrolleinrichtung kontrolliert werden.
  • Die Temperatur kann in mindestens einem Teilbereich der mindestens einen Kontaktplatte mit höherer Temperatur vor und/oder während der Kontaktierung des Stahlblechkörpers mit den Kontaktplatten durch eine Temperaturregeleinrichtung geregelt werden.
  • Es kann in einem weiteren Verfahrensschritt mindestens eine Kontaktplatte entfernt werden. Dadurch wird es möglich, die Ausbildung des Temperaturprofils des Metallkörpers durch das Entfernen einer oder mehrerer Kontaktplatten zu beeinflussen.
  • Mindestens eine der Kontaktplatten kann gekühlt werden. Durch die aktive Kühlung der Kontaktplatten kann die Temperatur des Stahlblechkörpers exakt gesteuert werden. Insbesondere kann dadurch die Abkühlgeschwindigkeit des Stahlblechkörpers genau eingestellt werden.
  • Der Stahlblechkörper kann eine Schutzschicht, insbesondere ein Al-Si-Schutzschicht oder eine Zinkschutzschicht, aufweisen. Insbesondere können hochfeste, verzinkte Bleche und Blechformteile aus dem Karosseriebau eingesetzt werden. Bei derartigen Metallkörpern mit einer Zinkschicht verhindert der Kontakt zwischen Metallkörper und Kontaktplatte die Beschädigung bzw. Zerstörung der Zinkschicht.
Further advantageous embodiments of the method may have the following additional features:
  • At least one contact plate may have a temperature between 300 ° C and 800 ° C, preferably between 400 ° C and 600 ° C, during the contacting.
  • The contact plates can be pressed onto the sheet steel body. This has the advantage that a contact between contact plates and metal body is ensured particularly secure. In addition, thereby minimizing the delays is particularly effective possible.
  • The temperature of the at least one contact plate with a higher temperature can before and / or during the contacting of the Steel sheet body are controlled by the contact plates by a temperature control device.
  • The temperature of the at least one contact plate with a higher temperature can be controlled before and / or during the contacting of the sheet steel body with the contact plates by a temperature control device.
  • The temperature can be regulated in at least a portion of the at least one contact plate with a higher temperature before and / or during the contacting of the sheet steel body with the contact plates by a temperature control device.
  • It can be removed in a further process step, at least one contact plate. This makes it possible to influence the formation of the temperature profile of the metal body by removing one or more contact plates.
  • At least one of the contact plates can be cooled. By actively cooling the contact plates, the temperature of the sheet steel body can be controlled exactly. In particular, this allows the cooling rate of the steel sheet body to be set accurately.
  • The steel sheet body may have a protective layer, particularly an Al-Si protective layer or a zinc protective layer. In particular, high-strength, galvanized sheets and sheet metal parts can be used from the body shop. In such metal bodies with a zinc layer, the contact between metal body and contact plate prevents the damage or destruction of the zinc layer.

Die erfindungsgemäße Vorrichtung ist zur Durchführung des erfindungsgemäßen Verfahrens ausgebildet und weist eine erste flächig ausgebildete Kontaktplatte, eine zweite flächig ausgebildete Kontaktplatte, welche im Wesentlichen parallel zur ersten Kontaktplatte angeordnet ist, mindestens eine induktiv oder konduktive Wärmequelle zur Temperierung der Kontaktplatten, welche mit mindestens einer der Kontaktplatten in Verbindung steht, eine Schließvorrichtung zur Variation des Abstandes der parallel zueinander angeordneten Kontaktplatten sowie eine Temperaturregeleinrichtung zur Regelung der Temperatur in mindestens einem Teilbereich der mindestens einen Kontaktplatte mit niedrigerer Temperatur während der Kontaktierung des Stahlblechkörpers mit den Kontaktplatten auf.The device according to the invention is designed to carry out the method according to the invention and has a first surface formed contact plate, a second flat contact plate, which is arranged substantially parallel to the first contact plate, at least one inductive or conductive heat source for temperature control of the contact plates, which communicates with at least one of the contact plates, a closing device for varying the distance of the mutually parallel Contact plates and a temperature control device for controlling the temperature in at least a portion of the at least one contact plate at a lower temperature during the contacting of the steel sheet body with the contact plates.

Vorteilhafte Ausgestaltungen der Vorrichtung können folgende zusätzliche Merkmale aufweisen:

  • Die Vorrichtung kann eine Temperaturkontrolleinrichtung aufweisen.
  • Die Kontaktplatten können aus einem Metall und/oder aus Keramik bestehen.
  • Die mindestens eine Wärmequelle kann in einer Kontaktplatte integriert sein.
  • Mindestens eine Kontaktplatte kann Kühlkanäle aufweisen.
Advantageous embodiments of the device may have the following additional features:
  • The device may have a temperature control device.
  • The contact plates may be made of a metal and / or ceramic.
  • The at least one heat source can be integrated in a contact plate.
  • At least one contact plate may have cooling channels.

Die Kontaktplatten können sowohl alle aus dem gleichen Werkstoff als auch aus unterschiedlichen Werkstoffen hergestellt sein. Vorzugsweise bestehen Kontaktplatten, die erwärmt werden, aus einem metallischen Werkstoff, beispielsweise aus Stahl.The contact plates can both be made of the same material as well as of different materials. Preferably, contact plates that are heated, made of a metallic material, such as steel.

Kontaktplatten, die nicht erwärmt werden, können bevorzugt sowohl aus metallischen als auch nicht-metallischen Werkstoffen hergestellt werden. In besonders vorteilhafter Weise werden Kontaktplatten, die nicht erwärmt werden, aus einem Isolationsmaterial hergestellt. Dies hat den Vorteil, dass der Wärmeverlust verringert wird.Contact plates that are not heated may preferably be made of both metallic and non-metallic materials. In a particularly advantageous manner, contact plates that are not heated, made of an insulating material. This has the advantage that the heat loss is reduced.

Die Kontaktplatten können eine Isolationsschicht aufweisen. Auch dadurch kann der Wärmeverlust verringert werden.The contact plates may have an insulating layer. Also, the heat loss can be reduced thereby.

Die Erfindung ist anhand von Ausführungsbeispielen in den Zeichnungsfiguren weiter erläutert. Es zeigen:

Fig. 1
eine schematische Schnittdarstellung einer Ausführungsform des erfindungsgemäßen Verfahrens,
Fig. 2
eine schematische Schnittdarstellung einer weiteren Ausführungsform des erfindungsgemäßen Verfahrens,
Fig. 3a
eine schematische Schnittdarstellung eines ersten Verfahrensschrittes zu einer Temperierung der Kontaktplatten,
Fig. 3b
eine schematische Schnittdarstellung eines zweiten Verfahrensschrittes zu einer Anwendung der Kontaktplatten,
Fig. 3c
eine schematische Schnittdarstellung eines dritten Verfahrensschrittes zu einer Anwendung der Kontaktplatten.
The invention is further explained by means of embodiments in the drawing figures. Show it:
Fig. 1
a schematic sectional view of an embodiment of the method according to the invention,
Fig. 2
a schematic sectional view of another embodiment of the method according to the invention,
Fig. 3a
1 is a schematic sectional view of a first method step for tempering the contact plates;
Fig. 3b
FIG. 2 is a schematic sectional view of a second method step for using the contact plates. FIG.
Fig. 3c
a schematic sectional view of a third method step for an application of the contact plates.

Fig. 1 zeigt in schematischer Schnittdarstellung eine Ausführungsform des erfindungsgemäßen Verfahrens. Der Stahlblechkörper 1 ist durch das Verschieben der ersten Kontaktplatte 2 mit Hilfe der Schließvorrichtung 11 in Richtung 4 mit der ersten Kontaktplatte 2 in Kontakt gebracht worden. Ein erster Flächenabschnitt 6 des Stahlblechkörpers 1 steht mit der ersten Kontaktplatte 2 in Verbindung. Der erste Flächenabschnitt 6 liegt auf der Blechoberseite und der zweite Flächenabschnitt 7 befindet sich auf der Blechunterseite. Fig. 1 shows a schematic sectional view of an embodiment of the method according to the invention. The steel sheet body 1 has been brought by the displacement of the first contact plate 2 by means of the closing device 11 in the direction 4 with the first contact plate 2 in contact. A first surface portion 6 of the sheet steel body 1 is in communication with the first contact plate 2. The first surface section 6 lies on the upper side of the sheet metal and the second surface section 7 is located on the underside of the sheet metal.

In der in Fig. 1 dargestellten Ausführungsform entsprechen der erste Flächenabschnitt 6 und der zweite Flächenabschnitt 7 einen Teilbereich der Ober- bzw. Unterseite des flach ausgebildeten Stahlblechkörpers 1. Es sind jedoch auch Ausführungsformen möglich, in denen der erste Flächenabschnitt 6 bzw. der zweite Flächenabschnitt 7 der gesamten Unterseite bzw. der gesamten Oberseite eines flach ausgebildeten Stahlblechkörpers 1 entsprechen.In the in Fig. 1 illustrated embodiment, the first surface portion 6 and the second surface portion 7 correspond to a portion of the top or bottom of the flat sheet steel body 1. However, embodiments are also possible in which the first surface portion 6 and the second surface portion 7 of the entire bottom or the entire top of a flat sheet steel body 1 correspond.

Außerdem ist der Stahlblechkörper 1 mit der zweiten Kontaktplatte 3 in Kontakt gebracht worden. Ein zweiter Flächenabschnitt 7 steht mit der zweiten Kontaktplatte 3 in Verbindung.In addition, the steel sheet body 1 has been brought into contact with the second contact plate 3. A second surface portion 7 is in communication with the second contact plate 3.

Dabei sind die Kontaktplatten 2,3 flächig entsprechend der Kontur der Flächenabschnitte 6,7 des Stahlblechkörpers 1 ausgebildet und im Zustand der Kontaktierung mit dem Metallkörper 1 parallel zueinander verlaufend angeordnet.In this case, the contact plates 2, 3 are formed flat in accordance with the contour of the surface sections 6, 7 of the steel sheet body 1 and are arranged running parallel to one another in the state of contacting with the metal body 1.

In der Ausführungsform nach Fig. 1 wird durch die Schließvorrichtung 11 die Kontaktplatte 2 in ihrem Abstand zur Kontaktplatte 3 variiert. Dadurch ist das Auseinander- und Zusammenfahren der Kontaktplatten 2,3 und damit die Kontaktierung eines zwischen diesen eingebrachten Stahlblechkörpers 1 möglich.In the embodiment according to Fig. 1 is varied by the closing device 11, the contact plate 2 in their distance from the contact plate 3. As a result, the moving apart and moving together of the contact plates 2.3 and thus the contacting of a steel sheet body 1 introduced between these is possible.

Zur Kontaktierung der Kontaktplatten 2,3 mit dem Stahlblechkörper 1 sind jedoch auch anders aufgebaute Schließvorrichtungen geeignet. So kann entweder nur eine Kontaktplatte oder mehrere Kontaktplatten verschiebbar sein.For contacting the contact plates 2,3 with the sheet steel body 1 but also differently constructed locking devices are suitable. Thus, either only one contact plate or several contact plates can be displaced.

Die Kontaktierung kann derart gestaltet sein, dass die erste Kontaktplatte 2 und die zweite Kontaktplatte 3 simultan mit dem Stahlblechkörper 1 in Kontakt gebracht werden. Es kann aber auch zunächst eine Kontaktplatte 2 mit dem Stahlblechkörper 1 in Kontakt gebracht werden und erst zeitlich später eine zweite Kontaktplatte 3 hinzukommen.The contacting can be designed such that the first contact plate 2 and the second contact plate 3 are brought into contact with the steel sheet body 1 simultaneously. But it can also first a contact plate. 2 be brought into contact with the sheet steel body 1 and only later, a second contact plate 3 added.

Die zweite Kontaktplatte 3 wird bzw. wurde durch eine Energiequelle 5 auf eine gegenüber dem Stahlblechkörper 1 erniedrigte Temperatur gebracht. Mit anderen Worten wird bzw. wurde die Kontaktplatte 3 auf eine Temperatur gebracht, die zwar oberhalb der Raumtemperatur liegt, jedoch unterhalb der Austenitisierungstemperatur. Unter Energiequelle 5 wird im weiteren jede Einrichtung verstanden, die zur Erwärmung von Gegenständen eingesetzt werden kann.The second contact plate 3 is or was brought by an energy source 5 to a relative to the steel sheet body 1 lowered temperature. In other words, the contact plate 3 is brought to a temperature which is above room temperature but below the austenitizing temperature. Energy source 5 is understood below to mean any device that can be used to heat objects.

Nicht in den Figuren dargestellt ist eine Kühlvorrichtung. Diese kann entweder in unmittelbarer Nähe zu einer oder zu beiden der Kontaktplatten 2,3 angebracht sein oder in diese integriert sein. Beispielsweise können in eine oder in beide Kontaktplatten 2,3 Kühlkanäle eingebracht sein. Dies ermöglicht die Durchleitung von flüssigen oder gasförmigen Kühlmitteln durch die Kontaktplatten 2,3 , was zu einer besonders exakten Kühlung führt.Not shown in the figures is a cooling device. This can either be mounted in the immediate vicinity of one or both of the contact plates 2, 3 or integrated in them. For example, 2.3 cooling channels can be introduced into one or both contact plates. This allows the passage of liquid or gaseous coolants through the contact plates 2,3, resulting in a particularly accurate cooling.

Im Zusammenspiel mit der Energiequelle 5 kann die Kühlvorrichtung die Temperatur der Kontaktplatten 2,3 damit besonders exakt regeln.In interaction with the power source 5, the cooling device can thus regulate the temperature of the contact plates 2.3 particularly precisely.

Die Kontaktplatten 2,3 sind dabei parallel zueinander verlaufend angeordnet. Die zweite Kontaktplatte 3 weist eine Isolationsschicht 8 auf. Durch diese Isolationsschicht 8 kann der Wärme- bzw. Kühlverlust verringert werden.The contact plates 2, 3 are arranged running parallel to one another. The second contact plate 3 has an insulation layer 8. By this insulating layer 8, the heat or cooling loss can be reduced.

Während der Kontaktierung der Kontaktplatten 2,3 mit dem Stahlblechkörper 1 kann die Temperatur des Stahlblechkörpers 1 konstant gehalten werden. Es ist jedoch auch möglich die Temperatur des Stahlblechkörpers 1 im Verlauf der Kontaktierung durch die definierte Änderung der Temperaturen der Kontaktplatten 2,3 zu variieren. Somit ist eine sehr variable Anpassung des Temperatur-Zeit-Verlaufs möglich.During the contacting of the contact plates 2, 3 with the steel sheet body 1, the temperature of the steel sheet body 1 can be kept constant. However, it is also possible to vary the temperature of the steel sheet body 1 in the course of contacting by the defined change in the temperatures of the contact plates 2.3. Thus, a very variable adaptation of the temperature-time curve is possible.

Der Temperaturverlauf entlang einer Kontaktplatte 2,3 kann derart ausgebildet sein, dass sich über die gesamte Kontaktplatte 2,3 eine nahezu konstante Temperatur einstellt. Die Kontaktplatte 2,3 kann jedoch auch derart erwärmt oder gekühlt werden, dass sich innerhalb der Kontaktplatte 2,3 Bereiche mit unterschiedlichen Temperaturen bilden. Somit wird es möglich in unterschiedlichen Bereichen des Stahlblechkörper 1 unterschiedliche Temperatur-Zeit-Verläufe zu verwirklichen und damit eine selektive und individuell an den Anwendungszweck angepasste Temperaturbeaufschlagung einzelner Teilbereiche der Flächenabschnitte 6 und 7 des Stahlblechkörpers 1 zu erzielen.The temperature profile along a contact plate 2, 3 can be designed such that an almost constant temperature is established over the entire contact plate 2, 3. However, the contact plate 2, 3 can also be heated or cooled in such a way that regions with different temperatures form within the contact plate 2, 3. Thus, it becomes possible to realize different temperature-time profiles in different areas of the steel sheet body 1 and thus to achieve a selective and individually adapted to the application temperature application of individual portions of the surface portions 6 and 7 of the sheet steel body 1.

Der mit den Kontaktplatten 2,3 in Kontakt gebrachten erste Flächenabschnitt 6 und zweite Flächenabschnitt 7 des Stahlblechkörpers 1 können die gleiche Größe besitzen. Sie können jedoch auch unterschiedliche Größen besitzen (nicht abgebildet).The first surface portion 6 brought into contact with the contact plates 2, 3 and the second surface portion 7 of the sheet steel body 1 may be the same size. However, they can also have different sizes (not shown).

An der Kontaktplatte 2 ist eine Temperaturregeleinrichtung 9 und eine Temperaturkontrolleinrichtung 10 angebracht sein. Ferner kann auch ein Temperatursensorelement (nicht abgebildet) angebracht sein. Dies ermöglicht die Messung der Temperatur des Stahlblechkörpers 1 und/oder der Kontaktplatten 2,3. Die auf diese Weise gemessene Temperatur kann beispielsweise als Eingangsgröße für die Temperaturregeleinrichtung 9 und/oder die Temperaturkontrolleinrichtung 10 dienen, die den Temperatur-Zeit-Verlauf der thermischen Behandlung steuert und/oder regelt bzw. kontrolliert. Die Temperaturregeleinrichtung 9 kann hierbei sowohl die Energiequelle 5 als auch die Kühlvorrichtung steuern und damit für eine besonders exakte Temperierung der Kontaktplatten 2,3 und damit des Stahlblechkörpers 1 sorgen.On the contact plate 2, a temperature control device 9 and a temperature control device 10 may be attached. Furthermore, a temperature sensor element (not shown) may also be attached. This allows the measurement of the temperature of the steel sheet body 1 and / or the contact plates 2,3. The temperature measured in this way can serve, for example, as an input variable for the temperature control device 9 and / or the temperature control device 10, which controls and / or controls the temperature-time profile of the thermal treatment. The temperature control device 9 can in this case control both the energy source 5 and the cooling device and thus ensure a particularly accurate temperature control of the contact plates 2.3 and thus the sheet steel body 1.

Das Verfahren kann auch derart ausgestaltet sein, dass gleichzeitig mehrere Stahlblechkörper 1 gleichzeitig im Kontakt mit mindestens einer ersten und/oder einer mindestens einer zweiten Kontaktplatte in Kontakt gebracht werden.The method can also be configured such that a plurality of steel sheet bodies 1 are simultaneously brought into contact with at least one first and / or one at least one second contact plate simultaneously.

Fig. 2 zeigt eine schematische Schnittdarstellung einer weiteren Ausführungsform des erfindungsgemäßen Verfahrens. Der Stahlblechkörper 1 wurde durch Verschieben der ersten Kontaktplatte 2 mit dieser sowie einer zweiten Kontaktplatte 3 in Kontakt gebracht. Dabei erfolgt die Verschiebung der beiden parallel zueinander angeordneten Kontaktplatten 2,3 durch die Schließvorrichtung 11. Die erste Kontaktplatte 2 wird bzw. wurde durch eine Energiequelle 5 und eine Kühlvorrichtung (nicht dargestellt) auf eine gegenüber dem Stahlblechkörper erniedrigte Temperatur gebracht. Die zweite Kontaktplatte 3 wird bzw. wurde durch eine weitere Energiequelle 5 und eine weitere Kühlvorrichtung (nicht dargestellt) auf eine gegenüber dem Stahlblechkörper erhöhte Temperatur gebracht. Dabei können die erste Kontaktplatte 2 und die zweite Kontaktplatte 3 durch die Energiequellen 5 und die Kühlvorrichtungen sowohl auf die gleiche Temperatur als auch auf unterschiedliche Temperaturen gebracht werden. Fig. 2 shows a schematic sectional view of another embodiment of the method according to the invention. The steel sheet body 1 was brought by moving the first contact plate 2 with this and a second contact plate 3 in contact. In this case, the displacement of the two contact plates 2, 3 arranged parallel to one another takes place through the closing device 11. The first contact plate 2 is or was brought to a temperature lowered relative to the steel sheet body by an energy source 5 and a cooling device (not shown). The second contact plate 3 is or was brought by a further energy source 5 and a further cooling device (not shown) to a relative to the steel sheet body elevated temperature. In this case, the first contact plate 2 and the second contact plate 3 can be brought by the energy sources 5 and the cooling devices both to the same temperature and to different temperatures.

Fig. 3a zeigt eine schematische Schnittdarstellung eines ersten Verfahrensschrittes zu einer Temperierung der Kontaktplatten. Die erste Kontaktplatte 2 und zweite Kontaktplatte 3 werden zeitlich vor der Kontaktierung mit dem Stahlblechkörper in gegenseitigen Kontakt zueinander gebracht. Anschließend wird die zweite Kontaktplatte 3 durch die Energiequelle 5 auf eine Temperatur aufgeheizt, die oberhalb von Raumtemperatur und unterhalb der Austenitisierungstemperatur liegt. Die Temperatur überträgt sich anschließend auf die mit der zweiten Kontaktplatte 3 in Kontakt stehenden ersten Kontaktplatte 2. Fig. 3a shows a schematic sectional view of a first process step to a temperature of the contact plates. The first contact plate 2 and the second contact plate 3 are brought into mutual contact with each other before contacting with the steel sheet body. Subsequently, the second contact plate 3 is heated by the power source 5 to a temperature which is above room temperature and below the Austenitisierungstemperatur. The temperature is subsequently transferred to the first contact plate 2 which is in contact with the second contact plate 3.

Fig. 3b zeigt eine schematische Schnittdarstellung eines zweiten Verfahrensschrittes zu einer Anwendung der Kontaktplatten, der sich an den in Fig. 3a dargestellten Verfahrensschritt anschließt. Die erste Kontaktplatte 2 und die zweite Kontaktplatte 3 werden voneinander getrennt. Der sich auf Austenitisierungstemperatur befindende Stahlblechkörper 1 wird zwischen die getrennten Kontaktplatten 2,3 eingeführt. Fig. 3b shows a schematic sectional view of a second method step to an application of the contact plates, which conform to the in Fig. 3a followed by the process step. The first contact plate 2 and the second contact plate 3 are separated from each other. The steel sheet body 1 located at austenizing temperature is introduced between the separate contact plates 2, 3.

Fig. 3c zeigt eine schematische Schnittdarstellung eines dritten Verfahrensschrittes zu einer Anwendung der Kontaktplatten 2 und 3, der sich an den in Fig. 3b dargestellten Verfahrensschritt anschließt. Die erste Kontaktplatte 2 und die zweite Kontaktplatte 3 wurden durch Schließen der Schließvorrichtung 11 mit dem Stahlblechkörper 1 in Kontakt gebracht. Dabei besitzen sowohl die erste Kontaktplatte 2 als auch die zweite Kontaktplatte 3 eine gegenüber dem Stahlblechkörper 1 erniedrigte Temperatur. Fig. 3c shows a schematic sectional view of a third method step for an application of the contact plates 2 and 3, which conform to the in Fig. 3b followed by the process step. The first contact plate 2 and the second contact plate 3 were brought into contact with the steel sheet body 1 by closing the closing device 11. In this case, both the first contact plate 2 and the second contact plate 3 have a relation to the steel sheet body 1 lowered temperature.

BEZUGSZEICHENLISTELIST OF REFERENCE NUMBERS

11
StahlblechkörperSheet steel body
22
Erste KontaktplatteFirst contact plate
33
Zweite KontaktplatteSecond contact plate
44
Richtungdirection
55
Energiequelleenergy
66
Erster FlächenabschnittFirst surface section
77
Zweiter FlächenabschnittSecond surface section
88th
Isolationsschichtinsulation layer
99
TemperaturregeleinrichtungTemperature control device
1010
TemperaturkontrolleinrichtungTemperature control device
1111
Schließvorrichtungclosing device

Claims (14)

  1. Method for controlling the temperature of at least one steel sheet body between austenitization and hot forming,
    wherein
    - the steel sheet body (1) which is at austenitization temperature is fixed in position,
    - at least one first contact plate (2) is brought into contact with at least one first surface portion (6) of the steel sheet body (1),
    - at least one second contact plate (3) is brought into contact with at least one second surface portion (7) of the steel sheet body (1),
    - the contact plates (2, 3) have an areal form substantially or entirely corresponding to the contour of the surface portions (6, 7) of the steel sheet body (1), and are arranged extending substantially parallel to one another when in contact with the steel sheet body (1), and
    - at least one contact plate (2, 3) is at a lower temperature than the steel sheet body (1) when it makes contact with the steel sheet body (1), characterized in that:
    - the temperature in at least one partial region of the at least one contact plate (2, 3) at a lower temperature is controlled by a temperature controlling device (9) during contact between the steel sheet body (1) and the contact plates (2, 3), and
    - the temperature of the contact plate (2, 3) at a lower temperature is controlled by an energy source which is connected to at least one of the contact plates (2, 3) and is in the form of an inductive or conductive heat source (5).
  2. Method according to Claim 1, wherein, during contact, the at least one contact plate (2, 3) at a lower temperature is at a temperature of between 300°C and 800°C, preferably of between 400°C and 600°C.
  3. Method according to either of the preceding claims, wherein the contact plates (2, 3) are pressed onto the steel sheet body (1).
  4. Method according to one of the preceding claims, wherein the temperature in at least one partial region of the at least one contact plate (2, 3) at a lower temperature is controlled by a temperature monitoring device (10) before and/or during contact between the steel sheet body (1) and the contact plates (2, 3) .
  5. Method according to one of the preceding claims, wherein at least one contact plate (2, 3) is removed in a further method step.
  6. Method according to one of the preceding claims, wherein the steel sheet body (1) is formed in an immediately following working step, and the at least one first surface portion (6) and second surface portion (7) lie in or in the vicinity of the region to be formed.
  7. Method according to one of the preceding claims, wherein the at least one contact plate is cooled.
  8. Method according to one of the preceding claims, wherein the steel sheet body (1) has a protective layer, in particular an Al-Si protective layer or a zinc protective layer.
  9. Method according to one of the preceding claims, wherein the temperature of the contact plate at a lower temperature is controlled by the energy source which is connected to at least one of the contact plates (2, 3) and is in the form of an inductive or conductive heat source (5) and by a cooling apparatus.
  10. Apparatus for carrying out the method according to one of the preceding claims, having
    - a first contact plate (2) formed in an areal manner,
    - a second contact plate (3) which is formed in an areal manner and is arranged substantially parallel to the first contact plate (2),
    - a closing apparatus (11) for varying the distance between the contact plates (2, 3) arranged parallel to one another,
    characterized by:
    - a temperature controlling device (9) for controlling the temperature in at least one partial region of the at least one contact plate (2, 3) at a lower temperature during contact between the steel sheet body (1) and the contact plates (2, 3), and
    - at least one inductive or conductive heat source (5) for controlling the temperature of the contact plates (2, 3), which is connected to at least one of the contact plates (2, 3).
  11. Apparatus according to Claim 10, wherein the apparatus has a temperature monitoring device (10) .
  12. Apparatus according to either of Claims 10 and 11, wherein the contact plates (2, 3) consist of metal and/or of ceramic.
  13. Apparatus according to one of Claims 10-12, wherein the at least one heat source (5) is integrated in one of the contact plates (2, 3).
  14. Apparatus according to one of Claims 10-13, wherein at least one of the contact plates has cooling ducts.
EP08105692.1A 2008-10-29 2008-10-29 Method and device for tempering a steel sheet body Not-in-force EP2182082B2 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP08105692.1A EP2182082B2 (en) 2008-10-29 2008-10-29 Method and device for tempering a steel sheet body
PCT/DE2009/075064 WO2010048951A1 (en) 2008-10-29 2009-10-28 Method and apparatus for controlling the temperature of a steel sheet element

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP08105692.1A EP2182082B2 (en) 2008-10-29 2008-10-29 Method and device for tempering a steel sheet body

Publications (3)

Publication Number Publication Date
EP2182082A1 EP2182082A1 (en) 2010-05-05
EP2182082B1 true EP2182082B1 (en) 2013-12-25
EP2182082B2 EP2182082B2 (en) 2018-01-24

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP08105692.1A Not-in-force EP2182082B2 (en) 2008-10-29 2008-10-29 Method and device for tempering a steel sheet body

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EP (1) EP2182082B2 (en)
WO (1) WO2010048951A1 (en)

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EP2182082B2 (en) 2008-10-29 2018-01-24 Neue Materialien Bayreuth GmbH Method and device for tempering a steel sheet body
SE533881C2 (en) 2010-03-16 2011-02-22 Gestamp Hardtech Ab Pressure curing plant and means of pressure curing
DE102010049802A1 (en) * 2010-10-27 2012-05-03 Schuler Smg Gmbh & Co. Kg Method and device for determining the hardness of a press-hardened component
EP2639536B8 (en) 2012-03-15 2019-06-26 Benteler Automobiltechnik GmbH Kiln assembly and method for operating the kiln assembly
DE102012102193B4 (en) 2012-03-15 2017-04-13 Benteler Automobiltechnik Gmbh Furnace plant and method for operating the furnace
FR2988401B1 (en) 2012-03-23 2014-04-25 Snecma Propulsion Solide HOLDING TOOLS FOR THERMAL TREATMENT OF METALLIC PARTS
DE102012110649C5 (en) * 2012-11-07 2018-03-01 Benteler Automobiltechnik Gmbh Thermoforming line and method for producing a hot-formed and press-hardened motor vehicle component
DE102012110650C5 (en) * 2012-11-07 2017-12-14 Benteler Automobiltechnik Gmbh Hot forming line for the production of hot-formed and press-hardened sheet steel products
DE102013101489B3 (en) * 2013-02-14 2014-06-05 Benteler Automobiltechnik Gmbh Heat treatment line and method for operating the heat treatment line
DE102013108972B4 (en) * 2013-08-20 2016-03-17 Benteler Automobiltechnik Gmbh Temperature control station with induction heating
PL2905346T3 (en) * 2014-01-23 2021-03-08 Schwartz Gmbh Heat treatment process
DE102014104398B4 (en) * 2014-03-28 2016-06-16 Benteler Automobiltechnik Gmbh Heating device for conductive heating of a sheet metal blank
DE102014104922B4 (en) 2014-04-07 2017-10-19 Voestalpine Stahl Gmbh Apparatus and method for cooling sheet steel blanks
DE102014105519B4 (en) 2014-04-17 2016-05-12 Schuler Pressen Gmbh Apparatus and method for precooling sheet steel blanks
DE102015115049B4 (en) 2015-09-08 2018-04-26 Thyssenkrupp Ag Method and device for adjusting a mechanical property of a workpiece made of steel

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US5435378A (en) 1991-06-04 1995-07-25 Process And Equipment Development, Inc. Apparatus for accurately heating and cooling articles
DE102007009937A1 (en) 2007-03-01 2008-09-04 Schuler Smg Gmbh & Co. Kg Metal plate shaping heats the plate to a given temperature, which is then clamped between two cooling elements before pressing
EP2014777B1 (en) 2007-07-11 2013-01-09 Neue Materialien Bayreuth GmbH Method and device for thermal treatment of metal sheet
EP2182082B2 (en) 2008-10-29 2018-01-24 Neue Materialien Bayreuth GmbH Method and device for tempering a steel sheet body

Also Published As

Publication number Publication date
WO2010048951A1 (en) 2010-05-06
EP2182082B2 (en) 2018-01-24
EP2182082A1 (en) 2010-05-05

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