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Magnetron Sputtering Molybdenum Rhenium Alloy MoRe: Opening a New Era of High Performance Metal Materials

Time:2023-10-20Number:855

With the rapid development of science and technology, metal materials play an important role in various fields. andMagnetron Sputtering Molybdenum Rhenium Alloy CoatingMoRe, as a high-performance material, has attracted widespread attention for its unique physical and chemical properties and wide range of applications. This article will analyze the advantages and application prospects of MoRe alloy from multiple dimensions, aiming to provide readers with a comprehensive understanding and recognition.

1、 Preparation and Characteristics of Molybdenum Rhenium Alloy MoRe

1.1 Preparation Method of Molybdenum Rhenium Alloy MoRe

Molybdenum rhenium alloy MoRe can be prepared by powder metallurgy method. This method can obtain alloy materials with good performance by precisely controlling the material ratio and sintering process.

1.2 Characteristics of MoRe in Molybdenum Rhenium Alloy

The biggest feature of MoRe alloy is that its rhenium content can improve the plasticity and strength of molybdenum, making it a solid solution strengthening alloy. For example, adding 35% rhenium to molybdenum alloy can achieve a rolling deformation of up to 90% at room temperature. This indicates that the molybdenum rhenium alloy MoRe has excellent plasticity and strength.

2、 The Wide Application of Molybdenum Rhenium Alloy MoRe

2.1 High speed rotating X-ray tube target material

Molybdenum rhenium alloy MoRe is widely used as a target material for high-speed rotating X-ray tubes due to its excellent thermal conductivity and high melting point. By using MoRe alloy targets, the efficiency and stability of X-ray tubes can be improved, while extending their service life.

2.2 Long life grating for microwave communication

In microwave communication, molybdenum rhenium alloy MoRe can withstand high temperature and high frequency working conditions as a grid material. Its excellent corrosion resistance and conductivity make it an important material in microwave communication equipment.

2.3 Space reactor core heating tube

Molybdenum rhenium alloy MoRe can also be used for heating tubes in space reactor cores. Due to its high temperature resistance, radiation resistance, and high thermal conductivity, it can maintain a stable working state in extreme space environments and has extremely high reliability.

2.4 High temperature furnace heating element

In addition, molybdenum rhenium alloy MoRe can also be used as a material for high-temperature furnace heating elements, with good high-temperature resistance and oxidation resistance. In high-temperature environments, it can provide a stable heat source to meet the needs of high-temperature heating.

2.5 High temperature thermocouple

Molybdenum rhenium alloy MoRe is also widely used in high-temperature thermocouples. Using MoRe alloy as thermocouple material can provide more accurate and reliable temperature measurement results, improving the accuracy and reliability of temperature detection.

2.6 Structural Materials in Aerospace

Moreover, MoRe alloy can also be used as a structural material in the aerospace industry. Especially Mo-5% Re and Mo-41% Re alloy materials are widely used in the aerospace industry due to their excellent performance and reliability.

2.7 High temperature structural materials

In addition, Mo-50% Re alloy material has excellent corrosion resistance and mechanical strength at high temperatures, making it suitable for the preparation of high-temperature structural materials and meeting the requirements of high-temperature working conditions.

Conclusion: Molybdenum rhenium alloy MoRe, as a high-performance material with unique properties, has attracted great attention for its wide range of applications and excellent performance. adoptMagnetron Sputtering Molybdenum Rhenium Alloy CoatingThe preparation of MoRe can obtain alloy materials with good plasticity and strength. From our in-depth analysis of the application of molybdenum rhenium alloy MoRe in different fields, we can conclude that its application prospects are very broad. With the continuous advancement of technology, it is believed that the molybdenum rhenium alloy MoRe will demonstrate its unique advantages in more fields and make greater contributions to the development of human society.
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