CH1016

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CH1016 Chemical composition:

Fe Cr Ni W Mo Nb N V B Ce Mn Si P S C
Min Bal 19 32 5 2.6 0.9 0.13 0.1
Max 22 36 6 3.3 1.4 0.25 0.3 0.01 0.05 1.8 0.6 0.02 0.015 0.08

CH1016 Physical properties:

Density 8.31g/cm³
Linear expansion coefficient 14~17
Thermal conductivity 12~23W/m°C
Specific heat capacity 450~800(J/kg℃)

CH1016 Mechanical properties:

Standard number Variety Heat treatment Tensile properties Long-lasting performance
θ/℃ σb/MPa σp0.2/MPa δ₅/% ψ/% θ/℃ σ/MPa τ/h δ₅/% ψ/%
 

GJB 1952A

HB 5418

Cold-rolled plate  

(1140~

1180)℃/AC

20 ≥735 ≥35
750 ≥360 ≥30 ——
9000 ≥185 ≥40 900 69 ≥20 ≥20
 

 

HB 5417

HB 5410

 

Bars and rings

 

 

1160℃/AC

20 ≥705 ≥35 ≥40
750 ≥390 ≥30 ≥35 750 I 180 ≥23
137 ≥100
9000 ≥185 ≥40 ≥45 900 69 ≥24 ≥20 ≥30

CH1016 Alloy properties:

High temperature resistance: It has excellent high temperature resistance, can work for a long time at high temperatures from 700°C to 850°C, and can maintain stable mechanical properties and oxidation resistance.

Corrosion resistance: The alloy can still show good corrosion resistance in high temperature and corrosive media, and has excellent acid, alkali and salt resistance.

High strength performance: It has high yield strength and tensile strength, and can withstand large stress and working load in high temperature environment.

Fatigue properties: After special treatment, the alloy has excellent fatigue life and fatigue strength.

CH1016 Uses of alloys:

Hua Nickel CH1016 alloy has been used in the manufacture of aero engine combustion chamber plate stamping parts and welded structural parts and other high-temperature parts, such as load-bearing elements, structural shells, mounting edges, mounts and pipe joints, as well as parts that work for a short time below 1000°C.

CH1016 Process performance:

Welding process: The alloy has good welding process performance. It can be joined by argon arc welding and contact welding; Automatic argon arc welding without filler should adopt a small welding current and a lower welding speed, otherwise it is easy to produce undercut defects. Since the oxidation resistance of the alloy is slightly worse than that of nickel-based alloys, attention should be paid to strengthening the protection during argon arc welding.

Heat treatment: the only heat treatment method for parts is solution treatment; The final solution treatment temperature is 1160°C±10°C, and the intermediate heat treatment temperature is 1080°C±10°C, and the solution temperature is 1000°C or higher to relieve welding stress. Before heat treatment, the surface oil, cutting coolant and other dirt should be cleaned to avoid local corrosion of the surface during heat treatment.

Relevant standards:

GJB1952A 、GJB 5301、 HB 5417、 GH1016 、HB 5418 、GH1016 、HB5419、 GH1016 、HB/Z140

Detail datasheet