FIELD: technological processes.
SUBSTANCE: ion-plasma application of the multilayer coating is carried out. First, a lower layer of titanium nitride and silicon is applied at the ratio, wt %: titanium 98.0-98.4, silicon 1.6-2.0. Then, an intermediate layer of nitride of a titanium, silicon and aluminium compound is applied at the ratio, wt %: titanium 87.7-91.9, silicon 1.1-1.3, aluminium 7.0-11.0. Then, a top layer of titanium nitride is applied. The application of the coating layers is carried out by three cathodes arranged horizontally in one plane, the first of which is made of a titanium and silicon alloy, the second one is made of a titanium and aluminium alloy and arranged opposite the first one, and the third one is made of titanium and arranged between them, the lower layer being applied using the first cathode and the third cathode, the intermediate layer - using all three cathodes, and the upper layer - using the third cathode.
EFFECT: increasing the cutting tool efficiency.
1 tbl
Title | Year | Author | Number |
---|---|---|---|
METHOD FOR PRODUCTION OF MULTILAYER COATING FOR CUTTING TOOL | 2017 |
|
RU2643758C1 |
METHOD OF PRODUCING MULTI-LAYER COATING FOR CUTTING TOOL | 2016 |
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METHOD OF PRODUCING SANDWICHED COATING FOR CUTTING TOOL | 2015 |
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METHOD OF MAKING MULTILAYER COATING FOR CUTTING TOOL | 2011 |
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RU2461656C1 |
METHOD OF PRODUCING SANDWICHED COATING FOR CUTTING TOOL | 2015 |
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RU2622528C1 |
METHOD OF PRODUCING SANDWICHED COATING FOR CUTTING TOOL | 2015 |
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RU2622529C1 |
PROCEDURE FOR PRODUCTION OF MULTI-LAYER COATING FOR CUTTING TOOL | 2010 |
|
RU2428512C1 |
METHOD FOR OBTAINING MULTI-LAYERED COATING FOR CUTTING TOOL | 2011 |
|
RU2464341C1 |
Authors
Dates
2017-12-18—Published
2017-03-10—Filed