METHOD OF ELECTROEROSION MACHINING A METAL WORKPIECE IN A DIELECTRIC FLUID RESTING ON AN IMMISCIBLE,HEAVIER,ELECTROLYTIC SOLUTION
1,136,956. Electro erosion. A. P. GROMOV, E. N. LUKASHEVA, A. V. GLAZKOV, A. L. LIVSHITS, V. E. POLOTSKY, M. V. SCHERBAK and V. V. POZHALKIN. 7 April, 1966, No. 15550/66. Heading B3V. In an electro-erosion process, the workpiece 2 and electrode 5 are immersed in a bath of liquid consisting of at lea...
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creator | ANATOLY PAVLOVICH GROMOV MIKHAIL VENEDIKTOVICH SCHERBAK ANATOLY VASILIEVICH GLAZKOV ABRAM LAZAREVICH LIVSHITS VLADIMIR VASILIEVICH POZHALKIN EVGENIA NIKOLAEVNA LUKASHEVA VADIM EVGENIEVICH POLOTSKY |
description | 1,136,956. Electro erosion. A. P. GROMOV, E. N. LUKASHEVA, A. V. GLAZKOV, A. L. LIVSHITS, V. E. POLOTSKY, M. V. SCHERBAK and V. V. POZHALKIN. 7 April, 1966, No. 15550/66. Heading B3V. In an electro-erosion process, the workpiece 2 and electrode 5 are immersed in a bath of liquid consisting of at least two immiscible components 3, 4 of different specific weights, and a further more dense liquid is caused to pass downwards through the working area for removing the erosion residue and for cooling the bath. The upper layer of liquid 3 is preferably oil or kerosene and the lower layer 4 is an alkali, weak acid, solution of neutral salts or water. This is withdrawn with the erosion residue through an outlet 6. Water or an aqueous solution of acids, salts or alkalis is circulated to a distributer 7 where it passes downwardly through the lighter liquid 3; alternatively it may also be fed through ducts in the electrode 5. Reference is made to the erosion of hard alloys and heat resistant steels. |
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Electro erosion. A. P. GROMOV, E. N. LUKASHEVA, A. V. GLAZKOV, A. L. LIVSHITS, V. E. POLOTSKY, M. V. SCHERBAK and V. V. POZHALKIN. 7 April, 1966, No. 15550/66. Heading B3V. In an electro-erosion process, the workpiece 2 and electrode 5 are immersed in a bath of liquid consisting of at least two immiscible components 3, 4 of different specific weights, and a further more dense liquid is caused to pass downwards through the working area for removing the erosion residue and for cooling the bath. The upper layer of liquid 3 is preferably oil or kerosene and the lower layer 4 is an alkali, weak acid, solution of neutral salts or water. This is withdrawn with the erosion residue through an outlet 6. Water or an aqueous solution of acids, salts or alkalis is circulated to a distributer 7 where it passes downwardly through the lighter liquid 3; alternatively it may also be fed through ducts in the electrode 5. 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Electro erosion. A. P. GROMOV, E. N. LUKASHEVA, A. V. GLAZKOV, A. L. LIVSHITS, V. E. POLOTSKY, M. V. SCHERBAK and V. V. POZHALKIN. 7 April, 1966, No. 15550/66. Heading B3V. In an electro-erosion process, the workpiece 2 and electrode 5 are immersed in a bath of liquid consisting of at least two immiscible components 3, 4 of different specific weights, and a further more dense liquid is caused to pass downwards through the working area for removing the erosion residue and for cooling the bath. The upper layer of liquid 3 is preferably oil or kerosene and the lower layer 4 is an alkali, weak acid, solution of neutral salts or water. This is withdrawn with the erosion residue through an outlet 6. Water or an aqueous solution of acids, salts or alkalis is circulated to a distributer 7 where it passes downwardly through the lighter liquid 3; alternatively it may also be fed through ducts in the electrode 5. 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Electro erosion. A. P. GROMOV, E. N. LUKASHEVA, A. V. GLAZKOV, A. L. LIVSHITS, V. E. POLOTSKY, M. V. SCHERBAK and V. V. POZHALKIN. 7 April, 1966, No. 15550/66. Heading B3V. In an electro-erosion process, the workpiece 2 and electrode 5 are immersed in a bath of liquid consisting of at least two immiscible components 3, 4 of different specific weights, and a further more dense liquid is caused to pass downwards through the working area for removing the erosion residue and for cooling the bath. The upper layer of liquid 3 is preferably oil or kerosene and the lower layer 4 is an alkali, weak acid, solution of neutral salts or water. This is withdrawn with the erosion residue through an outlet 6. Water or an aqueous solution of acids, salts or alkalis is circulated to a distributer 7 where it passes downwardly through the lighter liquid 3; alternatively it may also be fed through ducts in the electrode 5. Reference is made to the erosion of hard alloys and heat resistant steels.</abstract><oa>free_for_read</oa></addata></record> |
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subjects | APPARATUS THEREFOR CHEMISTRY ELECTROLYTIC OR ELECTROPHORETIC PROCESSES MACHINE TOOLS METAL-WORKING NOT OTHERWISE PROVIDED FOR METALLURGY PERFORMING OPERATIONS PROCESSES FOR THE ELECTROLYTIC REMOVAL OF MATERIALS FROMOBJECTS SUCH WORKING COMBINED WITH OTHER FORMS OF WORKING OF METAL TRANSPORTING WORKING OF METAL BY THE ACTION OF A HIGH CONCENTRATION OFELECTRIC CURRENT ON A WORKPIECE USING AN ELECTRODE WHICH TAKESTHE PLACE OF A TOOL |
title | METHOD OF ELECTROEROSION MACHINING A METAL WORKPIECE IN A DIELECTRIC FLUID RESTING ON AN IMMISCIBLE,HEAVIER,ELECTROLYTIC SOLUTION |
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