Casting method and associated device
12042851 ยท 2024-07-23
Assignee
Inventors
- Jackie LEUNG (Hamilton, CA)
- Stephen Daeyoung CHUNG (Mississauga, CA)
- Joydeep SENGUPTA (Hamilton, CA)
- Tim RAYNER (Oakville, CA)
Cpc classification
B22D11/16
PERFORMING OPERATIONS; TRANSPORTING
B22D11/165
PERFORMING OPERATIONS; TRANSPORTING
B22D46/00
PERFORMING OPERATIONS; TRANSPORTING
B22D11/108
PERFORMING OPERATIONS; TRANSPORTING
B22D11/201
PERFORMING OPERATIONS; TRANSPORTING
International classification
B22D11/16
PERFORMING OPERATIONS; TRANSPORTING
B22D11/108
PERFORMING OPERATIONS; TRANSPORTING
B22D2/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method of casting a steel semi-product wherein a liquid steel is poured from a ladle to a tundish through a shroud including the steps of determining the light intensity emitted from the surface of the liquid steel in the tundish, detecting, based on said determined intensity, the presence of an open-eye at the surface of the liquid steel and emitting an alert towards an operator when an open-eye is detected.
Claims
1. A method of casting a steel semi-product comprising: pouring a liquid steel from a ladle to a tundish through a shroud; determining a light intensity emitted from a surface of the liquid steel in the tundish; detecting, based on the determined intensity, the presence of an open-eye at the surface of the liquid steel; and emitting an alert towards an operator when an open-eye is detected.
2. The method as recited in claim 1 further comprising, between the determination and detection steps, a step of calculating, based on the determined intensity, a size of the open-eye.
3. The method as recited in claim 2 wherein the emitting step is performed only if the calculated size of the open-eye is superior or equal to a predetermined threshold size.
4. The method as recited in claim 2 wherein the calculation step is performed using a regression model.
5. The method as recited in claim 1 further comprising, after the emitting step, a step of pouring powder to the surface of the liquid steel in the tundish.
6. The method as recited in claim 1 wherein the determination step is performed using a baseline of intensity representative of a steel surface without open eye.
7. A casting equipment with an open-eye alerter configured to implement the method as recited in claim 1; comprising: a ladle; a tundish; a mold; a measurer configured to capture data representative of a light intensity, the measurer being located so as to be able to capture light emitted from a surface in the tundish; and a processor configured to receive the captured data representative of the light intensity and comprising: i. a determinator configured to determine the light intensity emitted from the surface of the liquid steel in the tundish, ii. a detector configured to detect presence of an open-eye at the surface of the liquid steel, based on said determined intensity, and iii. an alert emitter configured to emit an alert towards an operator when the open-eye is detected.
8. The casting equipment as recited in claim 7 wherein the measurer is a light transmitter.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Other characteristics and advantages of the invention will emerge clearly from the description of it that is given below by way of an indication and which is in no way restrictive, with reference to the appended figures in which:
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DETAILED DESCRIPTION
(7) Elements in the figures are illustration and may not have been drawn to scale.
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(11) As shown in
(12) In a second step 110, the presence of an open-eye at the surface of the liquid steel is detected based on the previously determined intensity. This can be performed for example by determining a baseline of intensity representative of continuous layer of power, without open-eye. If the determined light intensity is above this baseline, it means that an open-eye is present.
(13) After this second step 110, an optional step 111 may be performed which consists in calculating the size of the detected open-eye. To do so a regression model can be used. This regression model is built by correlating open eye size, measured through direct observation, to respective light intensity signal for multiple open eyes of various size. As a result, size of future open eyes can be predicted using said model.
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(15) After the second detection step 110 or the optional calculation step 111, the third step 120 is performed which consists in emitting an alert towards an operator when an open-eye is detected (see
(16) Determination 100, detection 110, alert emission 120, calculation 111 steps are preferentially performed by at least one processor 50 with a determinator 51, detector 52 and signal emitter 53, all shown schematically in
(17) When an alert is emitted in step 120, tundish powder is poured on the surface of the steel to cover the open-eye. This may be done either by an operator or through an automatic pouring device receiving instructions from the operator or directly by a processor performing the detection and/or the calculation steps.
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(19) With the method according to the invention it is possible to detect tundish open-eyes and alert quickly an operator so as to reduce impacts on product quality and equipment duration.