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    • 2. 发明专利
    • MANUFACTURE OF FERROUS SPHERICAL PARTICLE
    • JPH01259101A
    • 1989-10-16
    • JP8538988
    • 1988-04-08
    • NIPPON STEEL CORPHAMADA JUKO
    • MATSUO MASATAKAKURAYOSHI KAZUMIFUKUOKA HIROMI
    • B22F1/00
    • PURPOSE:To easily manufacture ferrous spherical particles having only a little iron oxide by charging ferrous powder in combustion flame gas together with inert gas and melting and sphering the ferrous powder in the flame. CONSTITUTION:The oxygen-propane flame 2 and the ferrous powder 3 are injected from a burner 1. The above ferrous powder 3 is come into the burner 1 together with inert gas 9 of nitrogen gas, etc., through a pipe 4 from a hopper 5 and injected from powder injection holes 11. On the other hand, the oxygen 6 and the propane 7 are come into the burner 1 through a gas controller 8 to become the oxygen-propane mixed gas and injected from flame holes 10 to form the flame 2. The powder injection holes 11 and the flame holes 10 in the burner 1 are arranged as circularly sandwich-state. By this constitution, the ferrous powder 3 is injected into the flame 2 while preventing oxidation with the inert gas. By this method, the ferrous powder 3 is melted and perfectly sphered with surface tension and the ferrous spherical particle having only a little iron oxide is obtd. through cooling process.
    • 6. 发明专利
    • LANCE DEVICE
    • JPH01273989A
    • 1989-11-01
    • JP10370388
    • 1988-04-26
    • NIPPON STEEL CORPNIPPON ALUMINIUM MFG
    • MATSUO MASATAKAMATSUOKA KENJI
    • F27D1/16B05B7/16
    • PURPOSE:To simplify a connection between a major lance inner passage and an extremity end lance inner passage and enable it to meet a required cooling characteristic by a method wherein a fluid passage within the major lance is constructed by a plurality of pipes independent of each other and cooling water passages for the major lance and the extremity end lance are made independent of each other. CONSTITUTION:An extremity end lance 7 has a multi-pipe structure except an extremity end burner 12. It is formed with a propane gas passage G, an auxiliary powder material passage P, an oxygen passage S, a cooling water supplying passage W1 and a cooling water discharging passage W2, respectively. These passages are connected to a fluid passage within the major lance 5 through annular grooves 30-33. A water supplying passage (a cooling water jacket) is provided within a thick wall part of an outer wall 20 and is connected to a cooling water passage 37 formed in a rotary coupling 6. With this arrangement, each of passages within the major lance 5 communicates with a corresponding passage within the extremity end lance 7 however the extremity end lance 7 is rotated within the rotary coupling 6.
    • 8. 发明专利
    • THERMAL SPRAYING DIRECTION VARIABLE TYPE LANCE DEVICE
    • JPH01148355A
    • 1989-06-09
    • JP22066088
    • 1988-09-02
    • NIPPON STEEL CORPNIPPON ALUMINIUM MFG
    • MATSUO MASATAKAMORIMOTO YASUYUKI
    • B05B7/16B05B7/20
    • PURPOSE:To continuously perform thermal spray of a required part without thermal damage by forming both lance main body and burner into a multiple- pipe structure respectively and concentrically joining both in a curve part and also forming a cooling water passage surrounding an angle regulation mechanism to the outermost side part of the multiple-pipe structure. CONSTITUTION:At the time of repairing a converter and a degaussing furnace, etc., in the case of rotating a part 74 to be driven via gears 81, 82 by a driving shaft 80, a burner 8 is rotated around the center line J of a tilted basic end part and the tip part of the burner is changed between alternate long and two short dashes lines and the thermal spraying direction F is changed according thereto. Therefore both base wall and the peripheral wall of the converter, etc., can be continuously thermally-sprayed. In this case, since the driving shaft 80 and the gears 81, 82 for regulating the angle of the burner 8 are surrounded with a cooling water passage Wr provided on the outermost part of the inside of a multiple-pipe structure, these parts are prevented from being sustained with damage due to heat.