Method for producing Fe—Cr alloy
US-12137501-B2 · Nov 5, 2024 · US
US11338341B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11338341-B2 |
| Application number | US-201816615222-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 24, 2018 |
| Priority date | May 24, 2017 |
| Publication date | May 24, 2022 |
| Grant date | May 24, 2022 |
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A plant for cleaning rolled metal strips provided with a superficial layer of oxide, the plant comprising unwinding means for unwinding at least one coil of rolled strip and pickling means for pickling said rolled strip; wherein there are provided measuring means for measuring the thickness of the superficial layer of oxide, arranged between said unwinding means and said pickling means. A relating cleaning method is also claimed.
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The invention claimed is: 1. A cleaning plant for cleaning rolled metal strips provided with a superficial layer of oxide, the plant comprising: unwinding means for unwinding at least one coil of rolled strip; pickling means for pickling said rolled strip; measuring means for measuring a thickness of the superficial layer of oxide, said measuring means being arranged between said unwinding means and said pickling means; characterized in that said measuring means comprises at least one laser source cooperating with a fiber optic spectrometer, defining a LIBS system (Laser Induced Breakdown Spectroscopy) also adapted to analyze a composition of the oxide and a concentration of constituents of the oxide, said fiber optic spectrometer being adapted to measure a presence of oxygen while a laser of said at least one laser source penetrates the rolled strip towards a non-oxidized base material; wherein at least one scale breaking device is provided between the unwinding means and the pickling means; wherein there are provided weight sensors to weigh an amount of scales detached from the rolled strip by means of the at least one scale breaking device and suction devices aided by brushing devices, to collect the oxide detached so as to weigh said oxide. 2. The cleaning plant according to claim 1 , wherein said measuring means are arranged between the at least one device for breaking scale and the pickling means or between the unwinding means and the at least one device for breaking scale. 3. The cleaning plant according to claim 1 , wherein there are provided first measuring means, arranged between the unwinding means and the at least one device for breaking scale, and second measuring means arranged between the at least one device for breaking scale and the pickling means. 4. The cleaning plant according to claim 1 , wherein, in each area of the cleaning plant where there are provided said measuring means, at least one measuring means is arranged above a rolled strip feed line and at least one further measuring means is arranged below the rolled strip feed line. 5. The cleaning plant according to claim 1 , wherein there is provided a processing unit for processing measurement data originating from said measuring means and adjusting operational parameters of said pickling means. 6. The cleaning plant according to claim 5 , wherein there are provided optical detection means for detecting a strip cleaning level, said optical detection means being arranged downstream of said pickling means. 7. The cleaning plant according to claim 6 , wherein said processing unit is configured to process strip cleaning level data originating from said optical detection means, and possibly further adjust operational parameters of said pickling means. 8. The cleaning plant according to claim 1 , wherein said pickling means comprise at least one chemical pickling tank, or dry pickling systems, or dry pickling systems followed by at least one chemical pickling tank, or first dry pickling systems followed by second dry pickling systems. 9. The cleaning plant according to claim 8 , wherein said dry pickling systems are laser pickling devices and/or mechanical pickling devices. 10. The cleaning plant according to claim 1 , wherein there is provided a software, installed in the LIBS system and adapted to calculate the thickness of the superficial layer of oxide, defined by a depth of a layer of eroded material, by means of the at least one laser source, at an erosion time in which said fiber optic spectrometer starts to detect absence of oxygen, an erosion rate by means of the laser being known.
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