Reverse filling carbon and temperature drop-in sensor
US-2016209342-A1 · Jul 21, 2016 · US
US11592363B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11592363-B2 |
| Application number | US-201916434901-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 7, 2019 |
| Priority date | Jun 12, 2018 |
| Publication date | Feb 28, 2023 |
| Grant date | Feb 28, 2023 |
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The present invention relates to a sampler for taking samples from a molten metal bath, particularly a molten steel bath, the sampler comprising:a carrier tube having an immersion end;a sample chamber assembly arranged on the immersion end of the carrier tube, the sample chamber assembly comprising a cover plate and a housing, wherein the housing comprises an immersion end having an opening;an inflow conduit having a first end for receiving molten metal and a second end, opposite the first end, wherein the second end is in communication with the opening, wherein the opening is configured to receive the molten metal from the inflow conduit;a measuring head, wherein the sample chamber and the second end of the inflow conduit are at least partly arranged in the measuring head; anda de-oxidant material arranged along a central axis of the inflow conduit, wherein at least part of the de-oxidant material is arranged near the second end of the inflow conduit inside the measuring head, and wherein the inflow conduit comprises first coupling means, arranged on the second end of the inflow conduit, wherein the de-oxidant material comprises second coupling means, to interact with the first coupling means on the inflow conduit to anchor the de-oxidant material in a position along the central axis of the inflow conduit. The invention also relates to a sampler for taking samples from a molten metal bath, particularly a molten steel bath, the sampler comprising:a carrier tube having an immersion end;a sample chamber assembly arranged on the immersion end of the carrier tube, the sample chamber assembly comprising a cover plate and a housing, wherein the housing comprises an immersion end having an opening;an inflow conduit having a first end for receiving molten metal and a second end, opposite the first end, wherein the second end is in communication with the opening, wherein the opening is configured to receive the molten metal from the inflow conduit;a measuring head, wherein the sample chamber and the second end of the inflow conduit are at least partly arranged in the measuring head; anda metal bushing, wherein the metal bushing coupling the inflow conduit to the sample chamber.
Opening claim text (preview).
The invention claimed is: 1. A sampler for taking samples from a molten metal bath, the sampler comprising: a carrier tube having an immersion end; a sample chamber assembly arranged on the immersion end of the carrier tube, the sample chamber assembly comprising a cover plate and a housing, wherein the housing comprises an immersion end having an opening; an inflow conduit having a first end for receiving a molten metal sample and a second end, opposite the first end, wherein the second end is in communication with the opening, wherein the opening is configured to receive the molten metal sample from the inflow conduit; a sampler head, wherein the sample chamber assembly and the second end of the inflow conduit are at least partly arranged in the sampler head; and a de-oxidant material anchored in a position and arranged along a central axis of the inflow conduit, wherein at least part of the de-oxidant material is arranged near the second end of the inflow conduit inside the sampler head, and wherein the de-oxidant material comprises at least one protrusion and a material of the inflow conduit comprises at least one recess, the at least one protrusion engaging the at least one recess to anchor the de-oxidant material, or wherein the de-oxidant material comprises at least one recess and the material of the inflow conduit comprises at least one projection, the at least one protrusion engaging the at least one recess to anchor the de-oxidant material. 2. The sampler of claim 1 , wherein the de-oxidant material comprises an aluminum material. 3. The sampler of claim 1 , wherein the de-oxidant material is shaped as a flat sheet having a thickness of 0.05 to 0.2 mm. 4. The sampler of claim 1 , wherein the amount of the de-oxidant material ranges from to 0.1% to 0.5% of the mass of the molten metal sample to be sampled from the molten metal bath. 5. The sampler of claim 1 , wherein the inflow conduit comprises a quartz material. 6. The sampler of claim 5 , wherein the quartz material is a fused quartz material. 7. The sampler of claim 1 , wherein the molten metal sample is a molten steel. 8. The sampler of claim 1 , wherein the de-oxidant material is shaped as a flat sheet having a thickness of 0.1 to 0.15 mm. 9. The sampler of claim 1 , wherein the amount of the de-oxidant material ranges from to 0.2% to 0.3% of the mass of the molten metal sample to be sampled from the molten metal bath. 10. The sampler of claim 1 , wherein the de-oxidant material comprises at least one of a zirconium material and a titanium material. 11. The sample of claim 1 , wherein the housing and the flat cover plate are held together with a clamp.
adapted for sampling molten metals · CPC title
adapted for sampling molten metals · CPC title
in liquid state, e.g. molten metals · CPC title
in the liquid or fluent state {(burettes, pipettes B01L3/02; sampling of ground water E02D1/06; metering by volume of fluids or fluent solid material G01F11/00, G01F13/00)} · CPC title
specially profiled (F16L9/003 takes precedence) · CPC title
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