T Type Thermocouple Bare Wire

  • Price:

    Negotiable

  • minimum:

  • Total supply:

  • Delivery term:

    The date of payment from buyers deliver within days

  • seat:

    Jiangsu

  • Validity to:

    Long-term effective

  • Last update:

    2023-11-21 04:48

  • Browse the number:

    161

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Company Profile

Suzhou Nickel Alloy Co., Ltd

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Contact:nickel(Mr.)  

Email:

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Area:Jiangsu

Address:Jiangsu

Website:http://www.ohmwire.com/ http://nickel.taiyue-online.com/

Product details

Cu-CuNi thermocouple (type T) is also named Cu- Constantan thermocouple. The positive leg Cu(TP) is made by pure Copper, and the main chemical composition of negative leg Constantan (TN) is Cu: Ni≈ 55%: 45%. Although EN, TN, JN are all called Constantan, TN and EN don not give the same EMF output curve as JN. EN and TN are able to interchange but they are not interchangeable with JN. The operating temperature range of type T thermocouple is -200~350℃, Due to the low resistance of oxidation that Copper has, it is not advisable to go beyond that range.



Type T thermocouple has good resistance to oxidation, high EMF output, with good temperature accuracy, sensitivity and stability. In the temperature range -200~0℃, it has better property, the year stability is less than ±3μV .



 


































TYPE



Chemical Composition%



Ni



Cu



Mn



Si



Fe



TP



/



100



/



/



/



TN



45



55



/



/



/




 






Standard:IEC60584-1




 


































TYPE



EMF Versus Pt.67(mV)



100℃



200℃



300℃



TP



4.229~4.325



9.238~9.334



14.792~14.932



TN



0.763~0.783



1.826~1.846



3.137~3.161



TP-TN



3.484~3.524



7.412~7.488



11.655~11.771




 






Physical Properties:




 































Type



Density at 20℃(g/cm³)



Melting point(℃)



Tensile Strength(Soft annealed condition in 20℃)(Mpa)



Elongation(Soft annealed condition in 20℃)(%)



Resistivity at 20℃ (μΩ.m)



TP



9



1084



≥190



≥20



0.018



TN



8.9



1220



≥390



≥25



0.5




 

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