Claims
- 1. A process for separating inclusions and inclusion clusters from a stream of molten metal or alloy, including the steps of:
- (A) providing a flotation box having:
- primary chamber means for directing a stream through said flotation box as a substantially laminar flow;
- secondary chamber means located within and spaced above the bottom of said primary chamber means defining a secondary chamber for containing a substantially stagnant pool of molten metal or alloy for separating and entrapping inclusions and inclusion clusters which rise up through said stagnant pool from within the molten metal or alloy flowing through said primary chamber means;
- said secondary chamber means formed by a portion of two lateral walls of said flotation box and two transverse baffles extending between the lateral walls, said baffles having bottom surfaces spaced above a bottom of said primary chamber means;
- said primary chamber means having entry and exit channels formed by outer walls of said flotation box and said baffles;
- said primary chamber means further having a through-passage defined by said bottom surfaces of the baffles and the bottom of the primary chamber means and arranged below the entry channel and the exit channel;
- said through-passage providing a flow path between said entry and exit means for directing a stream of molten metal or alloy under the secondary means and in fluid contact with said secondary chamber;
- said entry channel, exit channel, and through-passage having cross sections, taken transverse to the direction of flow of a stream of metal or alloy through each of said channels and passage, of substantially equal area for enhancing the laminar flow characteristics of said stream of molten metal or alloy flowing through said primary chamber means; and
- (B) feeding molten metal or alloy to said flotation box comprising the steps of:
- directing said stream through the primary chamber as a substantially laminar flow;
- containing a substantially stagnant pool of molten metal or alloy in said secondary chamber;
- separating and entrapping inclusions and inclusion clusters with a stream of molten metal or alloy which rise up into said secondary chamber from the molten metal or alloy flowing through the primary chamber; and
- causing said stream to flow downward through said entry channel, beneath said secondary chamber in said through-passage and in fluid contact with said secondary chamber and upward through said exit channel.
- 2. The process of claim 1 including the steps of:
- providing a first supply passage in flow communication with the entry channel for supplying molten metal or alloy to the entry channel;
- providing a second supply passage in flow communication with the exit channel for receiving molten metal or alloy from the exit channel,
- said first and second supply passages having cross sections, taken transverse to the direction of flow of a stream of metal or alloy through each of said supply passages, of substantially equal area to each other and to said entry and exit channels, and said through-passage for enhancing the laminar flow characteristics of said stream of molten metal or alloy.
- 3. A flotation box for separating inclusions and inclusion clusters from a stream of molten metal or alloy comprising:
- primary chamber means for directing a stream through said flotation box as a substantially laminar flow;
- secondary chamber means located within and spaced above the bottom of said primary chamber means defining a secondary chamber for containing a substantially stagnant pool of molten metal or alloy for separating and entrapping inclusions and inclusion clusters which rise up through said stagnant pool from within the molten metal or alloy flowing through said primary chamber means;
- said secondary chamber means formed by a portion of two lateral walls of said flotation box and two transverse baffles extending between the lateral walls, said baffles having bottom surfaces spaced above a bottom of said primary chamber means;
- said primary chamber means having entry and exit channels formed by outer walls of said flotation box and said baffles;
- said primary chamber means further having a through-passage defined by said bottom surfaces of the baffles and the bottom of the primary chamber means and arranged below the entry channel and the exit channel;
- said through-passage providing a flow path between said entry and exit means for directing a stream of molten metal or alloy under the secondary means and in fluid contact with said secondary chamber;
- said entry channel, exit channel, and through-passage having cross sections, taken transverse to the direction of flow of a stream of metal or alloy through each of said channels and passage, of substantially equal area for enhancing the laminar flow characteristics of said stream of molten metal or alloy flowing through said primary chamber means.
- 4. The flotation box of claim 3 wherein said through passage has a height extending from the bottom of said primary chamber means to the bottom surfaces of said transverse baffles, a width defined by the distance between said lateral walls and a length defined by the distance between said outer walls.
- 5. The flotation box of claim 4 further including:
- a first supply passage means in flow communication with the entry channel for supplying molten metal or alloy to the entry channel;
- a second supply passage means in flow communication with the exit channel for receiving molten metal or alloy from the exit channel;
- said first and second supply passage means each having cross sections, taken transverse to the direction of flow of a stream of metal or alloy through each of said supply means of substantially equal area with said entry and exit channels, and said through-passage for enhancing the laminar flow characteristics of said stream of molten material or alloy flowing through said flotation box.
- 6. The flotation box of claim 3 wherein said first and second supply passage means, said primary chamber means, and said secondary chamber means have a substantially equal width for enhancing the laminar flow characteristics of the molten metal or alloy.
Parent Case Info
This application is a continuation of application Ser. No. 26,147, filed Apr. 2, 1979 now abandoned.
US Referenced Citations (11)
Foreign Referenced Citations (1)
Number |
Date |
Country |
50-38366 |
Dec 1975 |
JPX |