TEMPERATURE CONTROL STATION FOR PARTIALLY THERMALLY TREATING A METAL COMPONENT
20200232053 ยท 2020-07-23
Inventors
Cpc classification
F27D2009/0089
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
C21D9/0062
CHEMISTRY; METALLURGY
F27B2009/128
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F27D15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
C21D2221/10
CHEMISTRY; METALLURGY
F27B2009/126
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F27D15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
C21D1/18
CHEMISTRY; METALLURGY
F27B2009/124
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
C21D9/00
CHEMISTRY; METALLURGY
C21D1/18
CHEMISTRY; METALLURGY
Abstract
Disclosed is a tempering station for the partial heat treatment of a metal component, the station including a processing plane arranged in the tempering station, at least one nozzle, aligned to the processing plane, for discharging of a fluid flow for the cooling of at least a first sub-area of the component, and at least one nozzle box, arranged above the processing plane. The at least one nozzle box forms at least one nozzle area in which the at least one nozzle is at least partially arrangeable and/or which at least partially delimits a propagation of the fluid flow, with the at least one nozzle box being at least partially formed with a ceramic material. The tempering station permits a sufficiently reliable thermal delimitation of heat treatment measures partially acting on the component and/or a sufficiently reliable thermal separation of different heat treatment procedures partially acting on the component.
Claims
1. Tempering station for the partial heat treatment of a metal component, arranged with one processing plane in the tempering station, on which the component is arrangeable, at least one nozzle, which is vertically aligned with the processing plane, and is provided and arranged for discharging a fluid flow for cooling at least a first sub-area of the component, and at least one nozzle box, which is arranged above the processing plane wherein the at least one nozzle box forms at least one nozzle area in which the at least one nozzle is at least partially arrangeable and/or which at least partially limits the propagation of the fluid flow, and wherein the at least one nozzle box is formed at least partially with a ceramic material.
2. Tempering station for the partial heat treatment of a metal component, with a processing plane arranged in the heating station, in which the component is arrangeable, at least one nozzle, which is vertically aligned with the processing plane, and is provided and arranged for discharging a fluid flow for cooling at least a first sub-area of the component, at least one heat source, which is provided and arranged to provide heat energy to at least a second sub-area of the component and at least one nozzle box, which is arranged above the processing plane, wherein the at least one nozzle box forms at least one nozzle area in which the at least one nozzle is at least partially arrangeable and/or at least partially limits the propagation of the fluid flow, and wherein the at least one nozzle box forms at least one heating area separate from the at least one nozzle area, in which heating area the heat source is at least partially arrangeable and/or at least partially limits the propagation of heat energy.
3. Tempering station according to claim 1, wherein the at least one nozzle box is at least partially formed with a fiber-reinforced ceramic material.
4. Tempering station according to claim 1, wherein the at least one nozzle box is at least partially formed with an alumina ceramic.
5. Tempering station according to claim 1, wherein a nozzle field comprising a plurality of nozzles is at least partially arranged in at least one nozzle area.
6. Tempering station according to claim 1, wherein the at least one nozzle area is shaped such that it spans an area of the processing plane, in which the at least one first partial area of the component is arrangeable.
7. Tempering station according to claim 1, wherein the at least one nozzle box is at least partially formed double-walled and/or comprises at least partially an insulating material.
8. Apparatus for the heat treatment of a metal component, comprising at least: a heated first furnace, a tempering station downstream of the first furnace, which is designed according to claim 1.
9. The apparatus of claim 8, further comprising at least: a heatable second furnace downstream of the tempering station, and/or a press hardening tool downstream of the tempering station (1) and/or the second furnace.
10. Use of a nozzle box at least partially formed with a ceramic material in a tempering station, for the partial heat treating of a metal component.
11. Tempering station according to claim 2, wherein the at least one nozzle box is at least partially formed with a fiber-reinforced ceramic material.
12. Tempering station according to claim 2, wherein the at least one nozzle box is at least partially formed with an alumina ceramic.
13. Tempering station according to claim 2, wherein a nozzle field comprising a plurality of nozzles is at least partially arranged in at least one nozzle area.
14. Tempering station according to claim 2, wherein the at least one nozzle area is shaped such that it spans an area of the processing plane, in which the at least one first partial area of the component is arrangeable.
15. Tempering station according to claim 2, wherein the at least one nozzle box is at least partially formed double-walled and/or comprises at least partially an insulating material.
Description
[0038] The invention and the technical environment will be explained in more detail with reference to the figures. It should be noted that the invention should not be limited by the exemplary embodiments shown. In particular, unless explicitly stated otherwise, it is also possible to extract partial aspects of the facts explained in the figures and to combine them with other components and/or findings from other figures and/or the present description. In the Figures:
[0039]
[0040]
[0041]
[0042]
[0043]
[0044] In
[0045] According to the illustration according to
[0046] The nozzle area 8 and the heating area 11 are separated from each other (thermally) by means of the nozzle box, so that the component 2 can be impressed with a temperature profile with differently tempered sub-areas which are as exactly delimited as possible from one another. Due to the fact that a distinct temperature difference between the first sub-area 6 and the second sub-area 10 is set in the first sub-area 6 by the cooling by means of the nozzle 4, after a hardening in a tempering station 1 downstream press-hardening tool (not shown here) in the sub-areas 6, 10 set different material structure and/or strength properties, wherein in the cooled first sub-area 6 a ductile structure and/or a lower hardness can be set than in the second sub-area 10.
[0047]
[0048] Moreover,
[0049]
[0050]
[0051] A tempering station and a device for the heat treatment of a metal component are disclosed herein, which at least partially resolves problems identified by the prior the art. In particular, the tempering station and the apparatus permit a sufficiently reliable thermal delimitation of heat treatment measures partially acting on the component and/or a sufficiently reliable thermal separation of different heat treatment procedures partially acting on the component.
LIST OF REFERENCE NUMBERS
[0052] 1 Tempering station [0053] 2 Component [0054] 3 Processing plane [0055] 4 Nozzle [0056] 5 Fluid flow [0057] 6 First sub-area [0058] 7 Nozzle box [0059] 8 Nozzle area [0060] 9 Heat source [0061] 10 Second sub-area [0062] 11 Heating area [0063] 12 Nozzle box [0064] 13 Insulating material [0065] 14 Apparatus [0066] 15 First furnace [0067] 16 Second furnace [0068] 17 Press-hardening tool [0069] 18 Wall