• Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36
  • Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36
  • Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36
  • Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36
  • Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36
  • Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36

Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36

Product Type: Thermal bimetallic
Material: Ni36 Mn72Ni10Cu18
Carbon Content: Low Carbon
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Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36 pictures & photos
Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36
US $30-35 / kg
Min. Order: 50 kg
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Basic Info.

Model NO.
RB-1 NIy
Than bending
20.8
resistivity
1.13
density
7.7g/cm³
Allows the use of temperature
-70~200
Modulus of elasticity
113000
use
Thermal protector
Linear temperature
-20~150
Temperature curvature
39.0%±5%
Transport Package
Wooden Case
Specification
negotiable
Trademark
tankii
Origin
China
HS Code
7408229000
Production Capacity
30tons/Month

Packaging & Delivery

Package Size
30.00cm * 30.00cm * 30.00cm
Package Gross Weight
10.000kg

Product Description

Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36

A bimetallic strip is used to convert a temperature change into mechanical displacement. The strip consists of two strips of different metals which expand at different rates as they are heated, usually steel and copper, or in some cases steel and brass. The strips are joined together throughout thecir length by riveting, brazing or welding. The different expansions force the flat strip to bend one way if heated, and in the opposite direction if cooled below its initial temperature. The metal with the higher coefficient of thermal expansion is on the outer side of the curve when the strip is heated and on the inner side when cooled
The sideways displacement of the strip is much larger than the small lengthways expansion in either of the two metals. This effect is used in a range of mechanical and electrical devices. In some applications the bimetal strip is used in the flat form. In others, it is wrapped into a coil for compactness. The greater length of the coiled version gives improved sensitivity.
 
Grade RB1
High expansion layer Mn75Ni15Cu10
Low expansion layer Ni36
 
 
Description:
Chemical composition(%)
 
Grade C Si Mn P S Ni Cr Cu Fe
Ni36 ≤0.05 ≤0.3 ≤0.6 ≤0.02 ≤0.02 35~37 - - Bal.
 
Grade C Si Mn P S Ni Cr Cu Fe
Mn75Ni15Cu10 ≤0.05 ≤0.5 Bal. ≤0.02 ≤0.02 14~16 - 9~11 ≤0.8

Physical properties
>Density (g/cm3): 7.7
> Allowable temperature (ºC): -70~ 200
 Linear temperature (ºC): -20~ 150
>Electrical resistivity (μΩ*m): 1.13 ±5% (20ºC)
>Thermal conductivity ( W/m. ºC): 6
>Bending K / 10-6 ºC-1(20~135ºC): 20.8
> Elastic Modulus, E/GPa 113~142
 Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36

Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36
Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36
Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36
Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36
Bimetal Strip High Expansion Layer Mn75Ni15Cu10 Low expansion layer Ni36

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