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Thermocouples of molybdenum and iridium alloys for more stable vacuum- high temperature performance

机译:钼和铱合金热电偶可提供更稳定的真空高温性能

摘要

Thermocouples of the present invention provide stability and performance reliability in systems involving high temperatures and vacuums by employing a bimetallic thermocouple sensor wherein each metal of the sensor is selected from a group of metals comprising molybdenum and iridium and alloys containing only those two metals. The molybdenum, iridium thermocouple sensor alloys provide bare metal thermocouple sensors having advantageous vapor pressure compatibilities and performance characteristics. The compatibility and physical characteristics of the thermocouple sensor alloys of the present invention result in improved emf, temperature properties and thermocouple hot junction performance. The thermocouples formed of the molybdenum, iridium alloys exhibit reliability and performance stability in systems involving high temperatures and vacuums and are adaptable to space propulsion and power systems and nuclear environments.
机译:本发明的热电偶通过采用双金属热电偶传感器在涉及高温和真空的系统中提供稳定性和性能可靠性,其中传感器的每种金属选自包括钼和铱的金属和仅包含这两种金属的合金。钼铱热电偶传感器合金提供了具有有利的蒸气压兼容性和性能特征的裸金属热电偶传感器。本发明的热电偶传感器合金的相容性和物理特性导致改善的电动势,温度特性和热电偶热结性能。由钼,铱合金形成的热电偶在涉及高温和真空的系统中显示出可靠性和性能稳定性,并且适用于空间推进和电力系统以及核环境。

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