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Project title: Develop a model in Ansys
Type of cooperation: One-time project
Section: Engineering. Drawings
Prepayment: without prepayment
Payment methods: Cash, Bank transfer, Electronic money
Acceptance of requests: from 2024-04-13 until 2024-04-28
Type of cooperation: One-time project
Section: Engineering. Drawings
Prepayment: without prepayment
Payment methods: Cash, Bank transfer, Electronic money
Acceptance of requests: from 2024-04-13 until 2024-04-28
Project description:
Good afternoon.
The services of an Ansys specialist are required. We are developing a solution for spectral analysis of molten metals and we need to develop a model for selecting the optimal parameters of the submersible probe, as well as calculating the amplitude of fluctuations in the metal level in the sampler.
The diagram of the device is attached (there are also more detailed drawings)
Description of the device:
The fireproof probe (2), which is a cardboard pipe (12) closed from the end with a ceramic sleeve (13) with a quartz permeator (14) is immersed in a container with a melt of metal (11). Immersion of the probe (2) in the metal melt is carried out using a metal rod (1), inside which are installed: fiber optic cable (9) with an optical head (18), cables connecting the anti-electrode (17) and electrode (19) and a tube supply of inert gas (nitrogen or argon) (7). Under the action of ferrostatic melt pressure, a liquid metal sample flows through the inlet (14) into the chamber of the sampler (14). Due to the dynamic pressure of the flow of inert gas entering the chamber of the sampler through the tube (7), the level of the metal sample in the sampler chamber is stabilized at the level of the outlet hole (15). Using the antielectrode (17) installed in the sampler, the electric spark generator excites a plasma torch on the surface of this sample. Radiation of plasma through the optical head (18) via fiber optic cable (9) is transmitted to the input of the spectrometer, where the spectrum is formed, processed and analyzed.
Good afternoon.
The services of an Ansys specialist are required. We are developing a solution for spectral analysis of molten metals and we need to develop a model for selecting the optimal parameters of the submersible probe, as well as calculating the amplitude of fluctuations in the metal level in the sampler.
The diagram of the device is attached (there are also more detailed drawings)
Description of the device:
The fireproof probe (2), which is a cardboard pipe (12) closed from the end with a ceramic sleeve (13) with a quartz permeator (14) is immersed in a container with a melt of metal (11). Immersion of the probe (2) in the metal melt is carried out using a metal rod (1), inside which are installed: fiber optic cable (9) with an optical head (18), cables connecting the anti-electrode (17) and electrode (19) and a tube supply of inert gas (nitrogen or argon) (7). Under the action of ferrostatic melt pressure, a liquid metal sample flows through the inlet (14) into the chamber of the sampler (14). Due to the dynamic pressure of the flow of inert gas entering the chamber of the sampler through the tube (7), the level of the metal sample in the sampler chamber is stabilized at the level of the outlet hole (15). Using the antielectrode (17) installed in the sampler, the electric spark generator excites a plasma torch on the surface of this sample. Radiation of plasma through the optical head (18) via fiber optic cable (9) is transmitted to the input of the spectrometer, where the spectrum is formed, processed and analyzed.
Attached files:
Attached files are available only to Freelancers and the project author
Attached files are available only to Freelancers and the project author