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1.3912, DIN Ni36 round bar,1.3912, DIN Ni36 forging,1.3912, DIN Ni36 sheet,1.3912, DIN Ni36 coil,1.3912, DIN Ni36 flat bar,1.3912, DIN Ni36 pipe,Lrregular
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  • 1.3912, DIN Ni36 pipe
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1.3912, DIN Ni36

We can produce 1.3912, DIN Ni36 stainless steel round rods, 1.3912, DIN Ni36 forging,sheet,coil,and profiledstrip,Deformed steel,flat steel,mould,steel wire,have all specifications. With DuoNian production experience, strict control 1.3912, DIN Ni36 chemical composition and 1.3912, DIN Ni36 mechanical properties.From casting, forging, steel to hot and cold rolling process, heat treatment, etc, we have the control of professional engineers. We have advanced precision machining equipment, according to the requirements of users machining. in order to achieve the most satisfied with the user requirements.

Production specification

Round bar steel: 1mm to 3500mm
Square-shape steel: 1mm to 4000mm
Plate steel:0.1mm to 4000mm
Width: 10mm to 2500mm
Lenth: We can supply any lenth based on the customer's requirement.
Forging: Shafts with flanks/pipes/tubes/slugs/donuts/cubes/other shapes
Tubings: OD: φ6-1800mm, with wall thickness ranging from 1-35 mm.
Finished goods condition: hot forging/hot rolling + annealing/normalizing + tempering/quenching + tempering/any conditions based on the customer's requirement
Surface conditions: scaled (hot working finish)/ground/rough machining/fine machining/based on the customer's requirement
Furnaces for metallurgical processing: electrode arc + LF/VD/VOD/ESR/Vacuum consumable electrode.
Ultrasonic inspection: 100% ultrasonic inspection for any inperfections or based on the customer's requirementExcellent service for all kinds of industries,with advantages of technologies, equipment and price.
We serve you with our honesty, integrity, and professionality.

1.3912, DIN Ni36 Tool Steel

Designation by Standards

 

Brand Name LH No. Mat. No. DIN EN AISI
ALLOY36 447 1.3912 Ni36 - -



Chemical Composition (in weight %)

C Si Mn Cr Mo Ni V W Others
max. 0.10 - - - - 36.00 - - -



Description
Alloy is a 36% nickel-iron alloy possessing a rate of thermal expansion approximately one-tenth that of carbon steel at temperatures up to 204oC. This is one of the controlled expansion alloys. It has an expansion rate roughly 10% that of standard carbon steels.

Applications
This alloy has been used for applications where dimensional changes due to temperature variation must be minimized such as in radio and electronic devices, aircraft controls, optical and laser system, etc. Alloy has also been used in conjunction with high expansion alloys in applications where a motion is desired when the temperature changes, such as in bimetallic thermostats and in rod and tube assemblies for temperature regulators.

Physical properties (avarage values) at ambient temperature
Modulus of elasticity [103 x N/mm2]: 210
Density [g/cm3]: 8.05
Thermal conductivity [W/m.K]: 72.0
Electric resistivity [Ohm mm2/m]: 0.49
Specific heat capacity[J/g.K]: 0.12
Curie Temperature: 279oC

Coefficient of Linear Thermal Expansion 10-6 oC-1

20-93oC 20-149oC 20-260oC 20-371oC
1.30 2.11 4.18 7.60



Annealing
Heat to 790oC and hold at heat 30 minutes per inch of thickness, then air cool. Heating to temperatures above 538oC relieves the presence of cold work stresses. The higher the temperature, the lower the annealed hardness, as shown in the following table.

Air Treatment Temperature (oC) vs. Hardness Rockwell B

650oC 815oC 980oC 1040oC
87/88 77/78 70/71 66/68

Hardening
To assure optimal dimensional stability, heat to 815oC, hold at heat for 30 minutes per inch of thickness, water quench, reheat to 315oC holding one hour at heat, then air cool. To promote temporal stability (when necessary), alloy has been aged for 24 to 48 hours at 93oC.

Forging
Hot forming temperature: Heat to 1180oC rapidly and cool rapidly following working. Do not soak at temperature.

Machinability
This alloy can be machined employing most common methods. It is known to produce "gummy" chips and is best machined at slow speeds with positive and constant feeds.

Corrosion Resistance
While not designed to be used in corrosive environments, this alloy will withstand some exposure to many mild atmospheres and conditions.

Welding
All common joining techniques can be successfully employed here. When a filler metal is required, it is suggested to use a similar composition alloy, available from the manufacturer.

Cold working
This alloy can be cold upset and swaged successfully.

Grinding and Polishing
A silicon carbide wheel is desirable, preferably a soft wheel which will wear without loading. For finish grinding, a satisfactory grade to start with is No. 80 grit.

Mechanical properties

1.3912, DIN Ni36 Mechanical properties,Our production completely according to the 1.3912, DIN Ni36 standards to meet the 1.3912, DIN Ni36 mechanical performance, can also according to the customer request, to meet the requirements of customers of 1.3912, DIN Ni36 mechanical properties.

Heat treatment

1.3912, DIN Ni36 Heat treatment,Our production completely according to the 1.3912, DIN Ni36 standards to meet the 1.3912, DIN Ni36 Heat treatment, can also according to the customer request, to meet the requirements of customers of 1.3912, DIN Ni36 Heat treatment.

Machining

1.3912, DIN Ni36 Machining,Our production completely according to the 1.3912, DIN Ni36 standards to meet the 1.3912, DIN Ni36 Machining, can also according to the customer request, to meet the requirements of customers of 1.3912, DIN Ni36 Machining.

Welding performance

1.3912, DIN Ni36 Welding performance,Our production completely according to the 1.3912, DIN Ni36 standards to meet the 1.3912, DIN Ni36 Welding performance, can also according to the customer request, to meet the requirements of customers of 1.3912, DIN Ni36 Welding performance.

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