<p>This research focuses on developing a highly sensitive and robust thin-film thermocouple, specifically engineered for precise temperature monitoring in new energy vehicle engines. Utilizing nuclear-controlled sputtering technology, the study introduces an innovative NiCr/NiSi thin-film thermocouple. This advanced sensor offers outstanding features, including rapid response time, exceptional precision, and stability, even in demanding environments. By addressing the critical need for accurate temperature data, this advancement promises to significantly enhance the efficiency and safety of new energy vehicles. Furthermore, the findings highlight the potential for widespread application of thin-film thermocouples in the automotive industry, supporting engine performance optimization and ensuring safe vehicle operation.</p>

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Accurate temperature measurement of new energy vehicle engine by using NiCr-NiSi thin film thermocouple

  • Yingyu Chen,
  • Qiao Chen,
  • YanHaoYu Yin,
  • Yutian Yang,
  • Yizhou Wang,
  • Guangxin Kong,
  • Xin Li,
  • Zhihui Liu

摘要

This research focuses on developing a highly sensitive and robust thin-film thermocouple, specifically engineered for precise temperature monitoring in new energy vehicle engines. Utilizing nuclear-controlled sputtering technology, the study introduces an innovative NiCr/NiSi thin-film thermocouple. This advanced sensor offers outstanding features, including rapid response time, exceptional precision, and stability, even in demanding environments. By addressing the critical need for accurate temperature data, this advancement promises to significantly enhance the efficiency and safety of new energy vehicles. Furthermore, the findings highlight the potential for widespread application of thin-film thermocouples in the automotive industry, supporting engine performance optimization and ensuring safe vehicle operation.