HIGH GAMMA PRIME NICKEL BASED SUPERALLOY AND METHOD OF MANUFACTURING OF TURBINE ENGINE COMPONENTS
The present invention relates to a high gamma prime nickel-based superalloy, a use of the superalloy, and a method for manufacturing a turbine engine part by welding, 3D additional manufacturing, casting, and hot forming. The superalloy comprises: 9.0-10.5 wt% of Cr; 20-22 wt% of Co; 1.0-1.4 wt% of...
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Format | Patent |
Language | English Korean |
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03.03.2021
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Abstract | The present invention relates to a high gamma prime nickel-based superalloy, a use of the superalloy, and a method for manufacturing a turbine engine part by welding, 3D additional manufacturing, casting, and hot forming. The superalloy comprises: 9.0-10.5 wt% of Cr; 20-22 wt% of Co; 1.0-1.4 wt% of Mo; 5.0-5.8 wt% of W; 2.0-6.0 wt% of Ta; 3.0-6.5 wt% of Al; 0.2-1.5 wt% of Hf; 0.01-0.16 wt% of C; 0-1.0 wt% of Ge; 0-1.0 wt% of Si; 0-0.2 wt% of Y; 0-0.015 wt% of B; 1.5-3.5 wt% of Re; and Ni and the remainder of impurities.
본 발명은 고 감마 프라임 니켈계 초합금, 그것의 용도 및 용접, 3D 첨가 제조, 주조 및 열간 성형에 의한 터빈 엔진 부품의 제조 방법에 관한 것이고, 상기 초합금은 9.0 내지 10.5 중량% Cr, 20 내지 22 중량% Co, 1.0 내지 1.4 중량% Mo, 5.0 내지 5.8 중량% W, 2.0 내지 6.0 중량% Ta, 3.0 내지 6.5 중량% Al, 0.2 내지 1.5 중량% Hf, 0.01 내지 0.16 중량% C, 0 내지 1.0 중량% Ge,0 내지 1.0 중량% Si, 0 내지 0.2 중량% Y,0 내지 0.015 중량% B, 1.5 내지 3.5 중량% Re, 및 니켈 및 잔부의 불순물을 포함한다. |
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AbstractList | The present invention relates to a high gamma prime nickel-based superalloy, a use of the superalloy, and a method for manufacturing a turbine engine part by welding, 3D additional manufacturing, casting, and hot forming. The superalloy comprises: 9.0-10.5 wt% of Cr; 20-22 wt% of Co; 1.0-1.4 wt% of Mo; 5.0-5.8 wt% of W; 2.0-6.0 wt% of Ta; 3.0-6.5 wt% of Al; 0.2-1.5 wt% of Hf; 0.01-0.16 wt% of C; 0-1.0 wt% of Ge; 0-1.0 wt% of Si; 0-0.2 wt% of Y; 0-0.015 wt% of B; 1.5-3.5 wt% of Re; and Ni and the remainder of impurities.
본 발명은 고 감마 프라임 니켈계 초합금, 그것의 용도 및 용접, 3D 첨가 제조, 주조 및 열간 성형에 의한 터빈 엔진 부품의 제조 방법에 관한 것이고, 상기 초합금은 9.0 내지 10.5 중량% Cr, 20 내지 22 중량% Co, 1.0 내지 1.4 중량% Mo, 5.0 내지 5.8 중량% W, 2.0 내지 6.0 중량% Ta, 3.0 내지 6.5 중량% Al, 0.2 내지 1.5 중량% Hf, 0.01 내지 0.16 중량% C, 0 내지 1.0 중량% Ge,0 내지 1.0 중량% Si, 0 내지 0.2 중량% Y,0 내지 0.015 중량% B, 1.5 내지 3.5 중량% Re, 및 니켈 및 잔부의 불순물을 포함한다. |
Author | LIBURDI JOSEPH GONCHAROV ALEXANDER B LOWDEN PAUL |
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DocumentTitleAlternate | 고 감마 프라임 니켈계 초합금 및 터빈 엔진 부품의 제조방법 |
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Snippet | The present invention relates to a high gamma prime nickel-based superalloy, a use of the superalloy, and a method for manufacturing a turbine engine part by... |
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SubjectTerms | ALLOYS CASTING CHANGING THE PHYSICAL STRUCTURE OF NON-FERROUS METALS ANDNON-FERROUS ALLOYS CHEMISTRY CLADDING OR PLATING BY SOLDERING OR WELDING CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING FERROUS OR NON-FERROUS ALLOYS INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIRCHEMICAL OR PHYSICAL PROPERTIES MACHINE TOOLS MAKING METALLIC POWDER MANUFACTURE OF ARTICLES FROM METALLIC POWDER MEASURING METAL-WORKING NOT OTHERWISE PROVIDED FOR METALLURGY PERFORMING OPERATIONS PHYSICS POWDER METALLURGY SOLDERING OR UNSOLDERING TESTING TRANSPORTING TREATMENT OF ALLOYS OR NON-FERROUS METALS WELDING WORKING BY LASER BEAM WORKING METALLIC POWDER |
Title | HIGH GAMMA PRIME NICKEL BASED SUPERALLOY AND METHOD OF MANUFACTURING OF TURBINE ENGINE COMPONENTS |
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