DTE ehf.

Iceland

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IP Type
        Patent 11
        Trademark 2
Jurisdiction
        World 5
        Canada 4
        United States 4
Date
2025 3
2024 4
2023 2
2022 3
Before 2021 1
IPC Class
G01N 21/71 - Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light thermally excited 11
G01J 3/443 - Emission spectrometry 6
G01N 33/205 - Metals in liquid state, e.g. molten metals 5
G01N 21/15 - Preventing contamination of the components of the optical system or obstruction of the light path 1
G01N 21/85 - Investigating moving fluids or granular solids 1
NICE Class
09 - Scientific and electric apparatus and instruments 2
42 - Scientific, technological and industrial services, research and design 2
Status
Pending 5
Registered / In Force 8

1.

IMPROVED METHOD FOR ENABLING ACCURATE MEASUREMENTS OF HIGH VAPOR PRESSURE ELEMENTS IN MOLTEN METAL USING LASER-INDUCED BREAKDOWN SPECTROSCOPY

      
Document Number 03306072
Status Pending
Filing Date 2024-10-02
Open to Public Date 2025-04-10
Owner DTE EHF. (Iceland)
Inventor
  • Leosson, Kristjan
  • Porarinsdottir, Kristbjorg Anna

IPC Classes  ?

  • G01J 3/443 - Emission spectrometry
  • G01N 21/71 - Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light thermally excited

2.

IMPROVED METHOD FOR ENABLING ACCURATE MEASUREMENTS OF HIGH VAPOR PRESSURE ELEMENTS IN MOLTEN METAL USING LASER-INDUCED BREAKDOWN SPECTROSCOPY

      
Application Number IS2024050014
Publication Number 2025/074450
Status In Force
Filing Date 2024-10-02
Publication Date 2025-04-10
Owner DTE EHF. (Iceland)
Inventor
  • Leósson, Kristján
  • Þórarinsdóttir, Kristbjörg Anna

Abstract

A method for allowing reproducible, precise, and substantially temperature independent quantitative measurements of one or more high vapor pressure elements in a liquid metal or alloy sample using Laser Induced Breakdown Spectroscopy (LIBS) or other similar methods. The method introduces one or more selectively reactive species and a substantially inert carrier gas to modify the local environment at and around the sampling point of the liquid metal or alloy. This results in a significant and immediate reduction of the vapor effects on LIBS signals of high vapor pressure species in metal or alloy melts, partially eliminating the temperature-dependence of the high vapor pressure elements and their dependence on spurious environmental factors, reducing the associated uncertainty in the LIBS measurements.

IPC Classes  ?

  • G01N 21/71 - Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light thermally excited
  • G01J 3/443 - Emission spectrometry

3.

IN-SITU ELEMENTAL ANALYSIS OF LIGHT METALS IN FURNACES AND MOLTEN METAL BATHS

      
Application Number IS2024050011
Publication Number 2025/046634
Status In Force
Filing Date 2024-09-02
Publication Date 2025-03-06
Owner DTE EHF. (Iceland)
Inventor Leósson, Kristján

Abstract

An apparatus and method for safe, timely and precise analytical composition measurements of a body of molten metal or alloy arranged in a metal furnace using an evacuated hollow tube to extract a sample of a melt from the body of molten metal or alloy. With the invention, the need for human intervention in sample extraction may be minimized, e.g., transportation of and preparation of a sample. The method comprises configuring a hollow tube to a metal furnace, establishing vacuum conditions within the hollow tube to extract the molten metal or alloy into the hollow tube to form a liquid metal or alloy column within said tube and carrying out elemental composition measurements on said liquid metal or alloy using known techniques such as Laser Induced Breakdown Spectroscopy (LIBS).

IPC Classes  ?

  • G01N 21/71 - Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light thermally excited
  • G01N 21/85 - Investigating moving fluids or granular solids

4.

SYSTEM AND METHOD FOR PERFORMING LASER-INDUCED BREAKDOWN SPECTROSCOPY MEASUREMENTS ON MOLTEN METAL SAMPLES

      
Application Number 18690242
Status Pending
Filing Date 2022-09-07
First Publication Date 2024-12-26
Owner DTE EHF (Iceland)
Inventor
  • Gudmundsson, Sveinn Hinrik
  • Leosson, Kristjan

Abstract

LIBS measurement systems are disclosed that are configured to monitor the temperature of a molten metal sample during cooling of the molten metal sample in a crucible, and to initiate a LIBS measurement after the temperature of the molten metal sample satisfies measurement temperature criteria. The system may also monitor the temperature of an empty crucible to assist in ensuring that the crucible temperature is (i) sufficiently high to ensure that after the molten metal sample is delivered to the crucible and cools to satisfy the measurement temperature criteria, a sufficiently low cooling rate of the molten metal sample occurs during the LIBS measurement, and (ii) optionally sufficiently low to avoid an unnecessarily long cooling time of the molten metal sample prior to satisfying the measurement temperature criteria and initiation of the LIBS measurement. The LIBS measurement system may be mobile and battery-powered, and may include an integrated calibration station.

IPC Classes  ?

  • G01N 21/71 - Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light thermally excited
  • G01N 33/205 - Metals in liquid state, e.g. molten metals

5.

dte

      
Application Number 1817876
Status Registered
Filing Date 2024-09-05
Registration Date 2024-09-05
Owner DTE ehf. (Iceland)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Scientific, research, weighing, measuring, signalling, detecting, testing, inspecting and teaching apparatus and instruments; apparatus and instruments for recording, transmitting, reproducing or processing sound, images or data; computer software applications, downloadable; recorded and downloadable media; blank digital or analogue recording and storage media; chemical laboratory apparatus and instruments. Scientific and technological services and research and design relating thereto; industrial analysis, industrial research and industrial design services; quality control and authentication services; design and development of computer hardware and software; chemical research and analysis; software as a service [saas].

6.

DTE

      
Serial Number 79407674
Status Pending
Filing Date 2024-09-05
Owner DTE ehf. (Iceland)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Scientific, research, measuring, signalling, detecting, testing, and inspecting, apparatus and instruments, namely, portable and stationary chemical composition analyzers, automated liquid-metal laser-induced breakdown spectroscopy (LIBS) analyzers, robots for automated extraction and sampling of molten metals; apparatus and instruments for recording, transmitting, reproducing or processing sound, images, or data; downloadable computer software applications for real-time chemical composition analysis in the field of molten metal processing; Pre-recorded media, namely, downloadable videos, digital training materials, and electronic publications featuring real-time chemical analysis, process control for the aluminum and metal production industries; Blank digital storage media; recording media in the nature of blank CD-ROMs and USB drives for storing and recording data, sound, or video related to industrial process monitoring, molten metal analysis, and chemical composition measurement; chemical laboratory apparatus and instruments, namely, portable and stationary chemical composition analyzers, and automated liquid-metal laser-induced breakdown spectroscopy (LIBS) analyzers for real-time process control in molten metal processing Scientific and technological services, namely, aluminum smelter potroom management relating to optimization of tapping schedules, extending the operational lifetime of pots, reducing the risk of error through next-to-pot analysis, instant detection of sample contamination, and minimizing laboratory costs; Scientific and technological services, namely, analysis of molten metal using robotic extraction of metal for correct routing of materials for an aluminum smelter cast house, optimizing furnace charging, and facilitating aluminum alloy processing; Scientific and technological services, namely, optimization of furnace loading, increasing throughput, enhancing energy efficiency, minimizing scrap and rework, and improving operator safety; Scientific and technological services, namely, aluminum smelter launder services to provide fully automated chemical composition analysis for primary metal and alloys using stationary equipment for generating a complete chemical profile during casting; Industrial molten metal analysis; industrial research in the field of molten metal processing, aluminum production, and real-time chemical composition measurement; industrial design services relating to analytical instruments and process monitoring systems; industrial design services; quality control for others; Quality control for others in the field of metal production and processing; authentication of metal composition and material quality through real-time chemical analysis; design and development of computer hardware and software; chemical research and analysis; Software as a service (SAAS) services featuring software for data acquisition, visualization, and analysis in the field of molten metal processing and aluminum production; providing online non-downloadable software for monitoring, storing, and managing real-time chemical composition and process data from analytical measurement devices

7.

Method and apparatus for quantitative chemical analysis of liquid metals and alloys

      
Application Number 18255392
Grant Number 12455246
Status In Force
Filing Date 2021-12-02
First Publication Date 2024-03-21
Grant Date 2025-10-28
Owner DTE EHF. (Iceland)
Inventor
  • Gudmundsson, Sveinn Hinrik
  • Leosson, Kristjan

Abstract

A modified method and apparatus for measuring elements in a liquid metal or alloy sample (23) with Laser Induced Breakdown Spectroscopy (LIBS). The apparatus comprises a pulsed excitation laser (1) and an instrument head (6) comprising a laser path channel (10), laser excitation optics (2), receiving optics for receiving emission from a plasma (3) created by the interaction of the laser (1) and the sample (23), an open-bottom chamber (5) extending upwardly from a flat bottom surface (7) of the instrument head (6), the laser path channel (10) extending to said chamber (5), and preferably a gas channel (12) for feeding gas to the open-bottom chamber (5). The laser (1) and laser excitation optics (2) are configured such that when the instrument head (6) is at a distance from a sample surface in the range of 1-10 mm, the focal point of the pulsed excitation laser is beneath the sample surface at a distance which is more than one Rayleigh length of the focused excitation laser beam.

IPC Classes  ?

  • G01N 21/71 - Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light thermally excited
  • G01N 33/205 - Metals in liquid state, e.g. molten metals
  • G01N 21/15 - Preventing contamination of the components of the optical system or obstruction of the light path

8.

SYSTEM AND METHOD FOR PERFORMING LASER-INDUCED BREAKDOWN SPECTROSCOPY MEASUREMENTS ON MOLTEN METAL SAMPLES

      
Document Number 03230773
Status Pending
Filing Date 2022-09-07
Open to Public Date 2023-03-16
Owner DTE EHF. (Iceland)
Inventor
  • Gudmundsson, Sveinn Hinrik
  • Leosson, Kristjan

Abstract

LIBS measurement systems are disclosed that are configured to monitor a temperature of a molten metal sample (10) during cooling of the molten metal sample in a crucible (20), and to initiate a LIBS measurement after the temperature of the molten metal sample satisfies measurement temperature criteria. The system may also monitor the temperature of an empty crucible to assist in ensuring that the crucible temperature is (i) sufficiently high to ensure that after the molten metal sample is delivered to the crucible and cools to satisfy the measurement temperature criteria, a sufficiently low cooling rate of the molten metal sample occurs during the LIBS measurement, and (ii) optionally sufficiently low to avoid an unnecessarily long cooling time of the molten metal sample prior to satisfying the measurement temperature criteria and initiation of the LIBS measurement. The LIBS measurement system may be mobile and battery-powered, and may include an integrated calibration station (500).

IPC Classes  ?

  • G01N 21/71 - Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light thermally excited

9.

SYSTEM AND METHOD FOR PERFORMING LASER-INDUCED BREAKDOWN SPECTROSCOPY MEASUREMENTS ON MOLTEN METAL SAMPLES

      
Application Number IS2022050007
Publication Number 2023/037392
Status In Force
Filing Date 2022-09-07
Publication Date 2023-03-16
Owner DTE EHF. (Iceland)
Inventor
  • Gudmundsson, Sveinn Hinrik
  • Leosson, Kristjan

Abstract

LIBS measurement systems are disclosed that are configured to monitor a temperature of a molten metal sample (10) during cooling of the molten metal sample in a crucible (20), and to initiate a LIBS measurement after the temperature of the molten metal sample satisfies measurement temperature criteria. The system may also monitor the temperature of an empty crucible to assist in ensuring that the crucible temperature is (i) sufficiently high to ensure that after the molten metal sample is delivered to the crucible and cools to satisfy the measurement temperature criteria, a sufficiently low cooling rate of the molten metal sample occurs during the LIBS measurement, and (ii) optionally sufficiently low to avoid an unnecessarily long cooling time of the molten metal sample prior to satisfying the measurement temperature criteria and initiation of the LIBS measurement. The LIBS measurement system may be mobile and battery-powered, and may include an integrated calibration station (500).

IPC Classes  ?

  • G01N 21/71 - Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light thermally excited

10.

Non-immersive method and apparatus for quantitative analysis of liquid metals and alloys

      
Application Number 17615572
Grant Number 12436138
Status In Force
Filing Date 2019-05-31
First Publication Date 2022-07-28
Grant Date 2025-10-07
Owner DTE EHF. (Iceland)
Inventor
  • Gudmundsson, Sveinn Hinrik
  • Matthiasson, Jon
  • Leosson, Kristjan

Abstract

A non-contact, non-immersive method and apparatus are provided for accurately measuring quantitatively one or more elements in liquid metal or alloy samples using laser-induced breakdown spectroscopy (LIBS). The method is particularly useful for process and/or quality control within the metallurgy industry for accurately and very quickly measuring minor component or impurity elements in liquid metal in the production process, without touching the liquid metal and without the need for cooling and solidifying samples for analysis. In the method and apparatus a pre-determined distance is dynamically maintained between emission receiving optics and the surface of a liquid sample being analysed and the instrument does not come in contact with the liquid metal surface. Liquid samples are heated and/or maintained at a desired temperature. For many elements, values for limit-of-detection, measurement repeatability and accuracy about or below 1 ppm are achieved using this method.

IPC Classes  ?

  • G01N 21/71 - Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light thermally excited
  • G01J 3/443 - Emission spectrometry
  • G01N 33/205 - Metals in liquid state, e.g. molten metals

11.

METHOD AND APPARATUS FOR QUANTITATIVE CHEMICAL ANALYSIS OF LIQUID METALS AND ALLOYS

      
Application Number EP2021084060
Publication Number 2022/117768
Status In Force
Filing Date 2021-12-02
Publication Date 2022-06-09
Owner DTE EHF. (Iceland)
Inventor
  • Gudmundsson, Sveinn Hinrik
  • Leosson, Kristjan

Abstract

A modified method and apparatus for measuring elements in a liquid metal or alloy sample (23) with Laser Induced Breakdown Spectroscopy (LIBS). The apparatus comprises a pulsed excitation laser (1) and an instrument head (6) comprising a laser path channel (10), laser excitation optics (2), receiving optics for receiving emission from a plasma (3) created by the interaction of the laser (1) and the sample (23), an open-bottom chamber (5) extending upwardly from a flat bottom surface (7) of the instrument head (6), the laser path channel (10) extending to said chamber (5), and preferably a gas channel (12) for feeding gas to the open-bottom chamber (5). The laser (1) and laser excitation optics (2) are configured such that when the instrument head (6) is at a distance from a sample surface in the range of 1-10 mm, the focal point of the pulsed excitation laser is beneath the sample surface at a distance which is more than one Rayleigh length of the focused excitation laser beam.

IPC Classes  ?

  • G01N 21/71 - Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light thermally excited
  • G01J 3/443 - Emission spectrometry
  • G01N 33/205 - Metals in liquid state, e.g. molten metals

12.

METHOD AND APPARATUS FOR QUANTITATIVE CHEMICAL ANALYSIS OF LIQUID METALS AND ALLOYS

      
Document Number 03200889
Status Pending
Filing Date 2021-12-02
Open to Public Date 2022-06-09
Owner DTE EHF. (Iceland)
Inventor
  • Gudmundsson, Sveinn Hinrik
  • Leosson, Kristjan

Abstract

A modified method and apparatus for measuring elements in a liquid metal or alloy sample (23) with Laser Induced Breakdown Spectroscopy (LIBS). The apparatus comprises a pulsed excitation laser (1) and an instrument head (6) comprising a laser path channel (10), laser excitation optics (2), receiving optics for receiving emission from a plasma (3) created by the interaction of the laser (1) and the sample (23), an open-bottom chamber (5) extending upwardly from a flat bottom surface (7) of the instrument head (6), the laser path channel (10) extending to said chamber (5), and preferably a gas channel (12) for feeding gas to the open-bottom chamber (5). The laser (1) and laser excitation optics (2) are configured such that when the instrument head (6) is at a distance from a sample surface in the range of 1-10 mm, the focal point of the pulsed excitation laser is beneath the sample surface at a distance which is more than one Rayleigh length of the focused excitation laser beam.

IPC Classes  ?

  • G01J 3/443 - Emission spectrometry
  • G01N 21/71 - Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light thermally excited
  • G01N 33/205 - Metals in liquid state, e.g. molten metals

13.

NON-IMMERSIVE METHOD AND APPARATUS FOR QUANTITATIVE ANALYSIS OF LIQUID METALS AND ALLOYS

      
Document Number 03142175
Status In Force
Filing Date 2019-05-31
Open to Public Date 2020-12-03
Grant Date 2025-12-16
Owner DTE EHF. (Iceland)
Inventor
  • Gudmundsson, Sveinn Hinrik
  • Matthiasson, Jon
  • Leosson, Kristjan

Abstract

A non-contact, non-immersive method and apparatus are provided for accurately measuring quantitatively one or more elements in liquid metal or alloy samples using laser-induced breakdown spectroscopy (LIBS). The method is particularly useful for process and/or quality control within the metallurgy industry for accurately and very quickly measuring minor component or impurity elements in liquid metal in the production process, without touching the liquid metal and without the need for cooling and solidifying samples for analysis. In the method and apparatus a pre-determined distance is dynamically maintained between emission receiving optics and the surface of a liquid sample being analysed and the instrument does not come in contact with the liquid metal surface. Liquid samples are heated and/or maintained at a desired temperature. For many elements, values for limit-of-detection, measurement repeatability and accuracy about or below 1 ppm are achieved using this method.

IPC Classes  ?

  • G01J 3/443 - Emission spectrometry
  • G01N 21/71 - Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light thermally excited