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| Material solutions in the aerospace industry

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Rheniumet, a subsidiary of UMM, has excellent mechanical properties even at high temperatures of 2000 ℃ due to its alloy pure rhenium or rhenium-based superalloys, so it is used in the fields of aviation, aerospace, and space science for high temperature and high strength in thermodynamic drive devices. Almost all parts have rhenium. The thrust-to-weight ratio of aero-engines continues to increase, and the technical performance requirements for engine turbine blade materials are also continuously improved. The successful development and large-scale application of nickel-based rhenium-containing superalloys (with rhenium 2%-7%) have become large-scale aviation vehicles. The trend of modernization and high-speed development provides the most important material guarantee.
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In addition, because rhenium has unparalleled high temperature performance of other elements, it is used in rockets, missiles, near-space supersonic vehicles, satellites and space drive devices. Rhenium is the most popular material for aerospace scientists. The combustion chambers and tail nozzles of rockets, missiles, supersonic vehicles, the tail nozzles of satellite orbital control engines, and the electron launch tubes and electrical contactors in space physics devices are all places where rhenium materials can show their talents.

 


 

Materials for engines, combustion chambers and gas turbines in aerospace, aviation, heavy ships, thermal power, weapons and other heavy industry equipment fields, in high temperature and high pressure operating environments   Other alloy materials with creep resistance, ablation resistance, high wear resistance and high strength for similar high temperature and high pressure conditions   Special electrodes and electron tubes for aerospace electric propulsion systems, extreme materials for smallscale nuclear reactor drive devices in space

 

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Tungsten Rhenium alloy Sheet/Plate
Tungsten Rhenium alloy Sheet/Plate
Tungsten rhenium alloy is an alloy composed of tungsten and rhenium, among which the common rhenium content is 3%, 5%, 25% and 26%. Tungsten rhenium alloy has good electrical conductivity, ductility and processability, and its wire can be used for high temperature thermocouple and cathode wire.
WRe Alloy Sheet/Plate:WRe3%, WRe5%, WRe25%, WRe26%
Tungsten Rhenium alloy Rod/Bar
Tungsten Rhenium alloy Rod/Bar
Tungsten rhenium alloy is an alloy composed of tungsten and rhenium, among which the common rhenium content is 3%, 5%, 25% and 26%. Tungsten rhenium alloy has good electrical conductivity, ductility and processability, and its wire can be used for high temperature thermocouple and cathode wire.
WRe Rod/Bar:WRe3%, WRe5%, WRe25%, WRe26%
Molybdenum Rhenium Alloy Tube
Molybdenum Rhenium Alloy Tube
Mo-Re alloy is Molybdenum Alloyed with 41% or 47.5% of Rhenium(nominal content of Rhenium is 50%), which has good ductility, weld ability, formability and strength.  Mo-Re alloy keeps high ductile even after used in high temperature.  Mo-Re alloy are widely used for electronics, nuclear and aerospace applications.
Molybdenum Rhenium Alloy Plate
Molybdenum Rhenium Alloy Plate
Mo-Re alloy is Molybdenum Alloyed with 41% or 47.5% of Rhenium(nominal content of Rhenium is 50%), which has good ductility, weld ability, formability and strength.  Mo-Re alloy keeps high ductile even after used in high temperature.  Mo-Re alloy are widely used for electronics, nuclear and aerospace applications. Specification:0.2 min.×(10-500)×1000 max.
Molybdenum Rhenium Alloy Rod/Bar
Molybdenum Rhenium Alloy Rod/Bar
Mo-Re alloy is Molybdenum Alloyed with 41% or 47.5% of Rhenium(nominal content of Rhenium is 50%), which has good ductility, weld ability, formability and strength.  Mo-Re alloy keeps high ductile even after used in high temperature.  Mo-Re alloy are widely used for electronics, nuclear and aerospace applications.
Diameter:φ1~φ17mm  
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