首页> 外国专利> METHOD OF IMPROVING EROSION RESISTANCE OF COMPRESSOR BLADES OF GAS-TURBINE ENGINE MADE OF TITANIUM ALLOYS

METHOD OF IMPROVING EROSION RESISTANCE OF COMPRESSOR BLADES OF GAS-TURBINE ENGINE MADE OF TITANIUM ALLOYS

机译:钛合金制燃气轮机压气机叶片耐蚀性改善方法

摘要

FIELD: chemistry.;SUBSTANCE: invention relates to mechanical engineering and can be used in aircraft engine building. The method of improving erosion resistance of compressor blades of a gas-turbine engine made of titanium alloys includes ion-beam cleaning of a surface followed by deposition of an ion-plasma multilayer coating in the form of a given number of pairs of layers consisting a layer of titanium with a metal and a layer of compounds of titanium with a metal and nitrogen. The surface undergoes electrolytic-plasma polishing before ion-beam cleaning. The metal used in the layers of titanium with a metal and layers of compounds of titanium with a metal and nitrogen is vanadium. The layer of titanium with vanadium is deposited with a thickness of 0.2-0.3 mcm, and the layer of compounds of titanium with vanadium and nitrogen has a thickness of 1.1-2.2 mcm, with total thickness of the multilayer coating of 5.0-7.0 mcm. The layers of compounds of titanium with vanadium are deposited in argon ion-assisted mode and layers of compounds of titanium with vanadium and nitrogen are deposited in nitrogen ion-assisted mode.;EFFECT: effective protection of blades made of titanium alloys from erosion while simultaneously increasing endurance limit and cyclic life.;9 cl, 1 ex
机译:技术领域本发明涉及机械工程并且可以用于飞机发动机制造中。改善由钛合金制成的燃气涡轮发动机的压气机叶片的耐腐蚀性的方法包括对表面进行离子束清洁,然后沉积给定数量的成对层形式的离子等离子多层涂层,该层对包括一层钛与金属和一层钛与金属和氮的化合物。在清洁离子束之前,对表面进行电解等离子抛光。钛与金属的层以及钛与金属和氮的化合物的层中使用的金属是钒。沉积具有钒的钛层的厚度为0.2-0.3mcm,并且具有钒和氮的钛化合物的层的厚度为1.1-2.2mcm,多层涂层的总厚度为5.0-7.0mcm。钛和钒的化合物层以氩离子辅助方式沉积,钛和钒和氮的化合物层以氮离子辅助方式沉积。效果:有效保护钛合金制成的叶片免受腐蚀,同时增加耐力极限和循环寿命。; 9 cl,1 ex

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