Abstract
高温热电偶材料PtRh40/PtRh20合金性能研究
Prorerties of PtRh40/PtRh20 High-temperature Thermocouple Wires
Received:July 16, 2012  
DOI:
中文关键词: 金属材料  热电偶  Pt-Rh合金  电阻率  抗拉强度  硬度
英文关键词: metal materials  thermocouple  Pt-Rh alloy  resistivity  tensile strength  hardness
基金项目:重庆市科技攻关计划项目(cstc2012gg-yyjs50006)资助。
Author NameAffiliationE-mail
WU Baoan Chongqing Materials Research Institute, Chongqing 400707, China wubaoan@163.com 
LIU Qingbin Chongqing Materials Research Institute, Chongqing 400707, China  
CHEN Demao Chongqing Materials Research Institute, Chongqing 400707, China  
WANG Jiansheng Chongqing Materials Research Institute, Chongqing 400707, China  
TANG Huiyi Chongqing Materials Research Institute, Chongqing 400707, China  
Chen Xiaojun Chongqing Materials Research Institute, Chongqing 400707, China  
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中文摘要:
      PtRh40/PtRh20高温热电偶长期使用温度为1750℃,主要用于飞机尾焰高温测量,属于非标热电偶,目前国内主要依靠进口。研究了PtRh40、PtRh20退火温度与合金电阻率、抗拉强度及加工率与抗拉强度、硬度的关系,并测试了PtRh40/PtRh20热电偶热电性能。结果表明:抗拉强度随退火温度的升高先升高再急剧下降,最后稳定在一个平台,两者大约在900℃时抗拉强度降至最低;电阻率均随退火温度升高而升高;抗拉强度与硬度均随加工率的增加而提高;PtRh40/PtRh20配对热电势相对ASTM E1751-2000标准热电势测试结果为在1200℃时误差为1℃,在1500℃时误差2℃,在1700℃时误差1℃。
英文摘要:
      The long-term using temperature of PtRh40/PtRh20 high-temperature thermocouple wire is 1750℃. PtRh40/PtRh20 is belong to non-standard thermocouple, and mainly applies to measure the aircraft efflux plasma temperature. The influences of annealing temperature on the tensile strength and resistivity of PtRh40 and PtRh20 alloy wires, and the influences of the cold working on tensile strength and vickers hardness of the wires were studied. The results indicated that the tensile strengths increased with the increase of annealing temperature at first, then decreased sharply, finally it is stable forming a platform. The resistivities were increased with the annealing temperature, and the tensile strength and hardness were increased with the cold working. The errors of matching thermoelectric potential of PtRh40- PtRh20 relative to ASTM E1751-2000 standard thermoelectric power is 1℃ at 1200℃, 2℃ at 1500℃, and 1℃ at 1700℃.
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