IP Library Granted Patent US 11,219,937
Granted Patent B2
US 11,219,937 · App. 16/099,411 · Granted Jan 11, 2022

Centering and selective heating

Inventors: Manuel Lopez Lage (Sant Esteve Sesrovires, ES); Jordi Castilla Moreno (Sant Esteve Sesrovires, ES); Daniel Merino Fernandez (Sant Esteve Sesrovires, ES); Oliver Straube (Ludwigsfelde, DE)
Assignee: AUTOTECH ENGINEERING S.L.
B21D22/022B21D37/16C21D1/18C21D1/34C21D9/46C21D1/673C21D9/0068C21D2221/00
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Quick Facts
Patent No.
US 11,219,937
App. No.
16/099,411
Granted
Jan 11, 2022
Kind
B2
Abstract

Centering systems for centering blanks outputted from a furnace in a hot stamping line are provided, the centering system comprising a centering table and a heating system for heating one or more selected zones of the blank while arranged on the centering table. Also provided are methods for manufacturing steel components having hard zones and soft zones, wherein the soft zones are of less mechanical strength than the hard zones. The methods comprise heating a steel blank in a furnace, centering the heated blank on a centering table arranged downstream from the furnace, heating one or more selected zones of the heated blank while the blank is on the centering table, wherein the selected zones are the zones of the blank which are destined to form the hard zones; transferring the blank to a press tool to hot forming the blank, and quenching the selected zones of the blank destined to form the hard zones.

Claims (28)

1. A method for centering, by a centering system, blanks outputted from a furnace in a hot stamping line, wherein in the furnace the blanks are heated to a furnace temperature, the method comprising:

correcting, by a centering table of the centering system, a position of a blank after removing the blank from the furnace,

heating, by applying a heating temperature with a heating system of the centering system, one or more first selected zones of the blank while arranged on the centering table, wherein the heating temperature is greater than, equal to, or less than the furnace temperature, such that (a) if the heating temperature is equal to or greater than the furnace temperature, then a temperature of the one or more first selected zones of the blank is prevented from reaching a temperature below the furnace temperature while the blank is on the centering table, or (b) if the heating temperature is less than the furnace temperature, then the temperature of the one or more first selected zones of the blank reaches a temperature below the furnace temperature while the blank is on the centering table, and wherein the heating system comprises an arrangement of heating elements, each heating element, of the arrangement of heating elements, being selectively turned on or off so as to create a preselected heating pattern to be applied to the blank, and

cooling, at a temperature below the heating temperature with a cooling system of the centering system, one or more second selected zones of the blank while arranged on the centering table to cause the one or more second selected zones of the blank to reach a temperature less than the temperature of the one or more first selected zones while the blank is on the centering table, such that while the blank is on the centering table, the one or more first selected zones has a higher temperature than the one or more second selected zones.

2. The method according to claim 1 , wherein the heating system comprises a base and the heating elements are arranged on the base.

3. The method according to claim 2 , further comprising a support structure for coupling the base to the centering table.

4. The method according to claim 2 , further comprising a support structure for anchoring the base on a floor or for suspending the base from a ceiling or from a wall.

5. The method according to any one of claims 1 and 2 , wherein the heating elements are infrared heaters or induction heaters or resistive heaters or a combination thereof.

6. The method according to any one of claims 1 and 2 , wherein the heating elements are laser heaters or diode laser heaters.

7. The method according to claim 1 , wherein the heating system further comprises at least one contacting element, heated by the heating elements, wherein the at least one contacting element is configured to be in direct contact with the blank.

8. The method according to claim 7 , wherein a temperature of the at least one contacting element that is configured to be in direct contact with the blank is configured to be operated at a range between 850 to 1000° C.

9. A method for centering, by a centering system, blanks outputted from a furnace in a hot stamping line, wherein in the furnace the blanks are heated to a furnace temperature, the method comprising:

correcting, by a centering table of the centering system, a position of a blank after removing the blank from the furnace,

heating, by applying a heating temperature with a heating system of the centering system, one or more first selected zones of the blank while arranged on the centering table, wherein the heating temperature is greater than, equal to, or less than the furnace temperature, such that (a) if the heating temperature is equal to or greater than the furnace temperature, then a temperature of the one or more first selected zones of the blank is prevented from reaching a temperature below the furnace temperature while the blank is on the centering table, or (b) if the heating temperature is less than the furnace temperature, then the temperature of the one or more first selected zones of the blank reaches a temperature below the furnace temperature while the blank is on the centering table, and wherein the heating system comprises an arrangement of heating elements that are arranged with respect to the centering table in selected areas of the centering table and are excluded with respect to remaining areas of the centering table such that the one or more first selected zones of the blank are heated, and

cooling, at a temperature below the heating temperature with a cooling system of the centering system, one or more second selected zones of the blank while arranged on the centering table to cause the one or more second selected zones of the blank to reach a temperature less than the temperature of the one or more first selected zones while the blank is on the centering table, such that while the blank is on the centering table, the one or more first selected zones has a higher temperature than the one or more second selected zones.

10. A method for manufacturing a steel component having hard zones and soft zones, wherein the soft zones are of less mechanical strength than the hard zones, the method comprising:

heating a steel blank in a furnace;

centering the heated blank on the centering table of the centering system according to claim 1 or 9 arranged downstream from the furnace;

applying the heat to the one or more first selected zones of the heated blank while the blank is on the centering table, wherein the one or more first selected zones are the zones of the blank to form the hard zones;

transferring the blank to a press tool;

hot forming the blank in the press tool; and

quenching the one or more first selected zones of the blank to form the hard zones.

11. The method according to claim 10 , wherein heating the blank in the furnace comprises heating the blank above an Ac3 temperature of the steel of the blank.

12. The method according to claim 10 , wherein applying the heat to the one or more first selected zones of the heated blank comprises heating the one or more first selected zones above a heating temperature of the furnace.

13. The method according to claim 10 , wherein applying the heat to the one or more first selected zones of the heated blank while the blank is on the centering table further comprises cooling the one or more second selected zones of the blank with the cooling system.

14. The method according to claim 10 , wherein the blanks remain on the centering table for a period of 15 seconds or less.

15. The method according to claim 13 , wherein the one or more second selected zones of the blank has a temperature ranging between 450° C. and 700° C. when the blank is transferred to the press tool.

16. The method according to claim 10 , wherein a temperature of the blank in the press tool is reduced to 250° C. or lower.

Assignments (2)
CHANGE OF NAME Recorded Nov 11, 2019
From: AUTOTECH ENGINEERING A.I.E.
To: AUTOTECH ENGINEERING S.L.
Reel/Frame 050988/0570 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2018
From: LOPEZ LAGE, MANUEL; CASTILLA MORENO, JORDI; MERINO FERNANDEZ, DANIEL; STRAUBE, OLIVER
To: AUTOTECH ENGINEERING A.I.E.
Reel/Frame 047426/0860 →
Priority Claims (1)
EP 16382394 · Aug 9, 2016 · regional
Continuity (1)
Related Publication 20190193134A1 · Jun 27, 2019