Mar 12, 2024 Xabar QOLDIRISH

What Is The Difference Between Pure Nickel N02200 (Ni200) And N02201 (Ni201)?

What is the difference between pure nickel N02200 (Ni200) and N02201 (Ni201)?

 

The following article explains how to distinguish the pure nickel alloy grades N02200 (Ni200) and N02201 (Ni201):

First, give some basic introduction to N02200 (Ni200) and N02201 (Ni201):

N02200/Ni200 pure nickel is a multifunctional and extremely important metal material. It is widely used in industry because of its good strength and plastic toughness. In addition to forming valuable alloys with other metals, pure nickel has good properties. Used alone as corrosion-resistant structural materials and functional materials. In fact, pure nickel used as corrosion-resistant structural materials is a nickel-carbon alloy containing carbon.
N02201/No2201 pure nickel is a multifunctional and extremely important metal material. It is widely used in industry because of its good strength and plastic toughness. In addition to forming valuable alloys with other metals, pure nickel has good properties Used alone as corrosion-resistant structural materials and functional materials. In fact, pure nickel used as corrosion-resistant structural materials is a nickel-carbon alloy containing carbon.
In summary, the N02200 (Ni200) and N02201 (Ni201) mentioned above are both pure nickel alloys, which also contain the metallic element carbon, making them also called nickel-carbon alloys.

What is the difference between pure nickel N02200 (Ni200) and N02201 (Ni201)?

What is the difference between pure nickel N02200 (Ni200) and N02201 (Ni201)?

N02200/Ni200 chemical metal composition (%):

Carbon C: Less than or equal to 0.15,
Silicon Si: Less than or equal to 0.35,
Manganese Mn: Less than or equal to 0.35,
Sulfur S: Less than or equal to 0.01,
Nickel: 99,
Cobalt Co: 99,
Iron Fe: Less than or equal to 0.40,
Copper Cu: Less than or equal to 0.25.
N02201 (Ni201) chemical metal composition (%):

Carbon C: Less than or equal to 0.02,
Silicon Si: Less than or equal to 0.35,
Manganese Mn: Less than or equal to 0.35,
Sulfur S: Less than or equal to 0.01,
Nickel: 99,
Cobalt Co: 99,
Iron Fe: Less than or equal to 0.40,
Copper Cu: Less than or equal to 0.25.

N02200/No2200 corresponding grades:

National brand number: N8,
American label: Nickel200, No2200,
German brand number: 2.4066, Nickel99.2
N02201/No2201 corresponding grades:

National brand number: N6,
American label: Nickel201, No2201,
German brand number: 2.4068, Nickel99

Regarding the corrosion resistance properties of N02200 (Ni200) and N02201 (Ni201) materials complained about in this article, the following is a brief introduction:

Corrosion resistance of N02200 (Ni200): It corrodes very slowly in the atmosphere. It has good corrosion resistance in seawater and HCl in various hydrochloric acids. However, it should be used with caution in HIC acids with high flow rates. It is not available in H3PO4 and HNO3. , H2SO4 can only be used in H2SO4 without air, has good corrosion resistance in high temperature anhydrous HF, has good corrosion resistance in high temperature chlorine and HCl, has good corrosion resistance in chlorine and fluorine gas corrosion resistance.

N02201/No2201 Corrosion Resistance: It corrodes very slowly in the atmosphere. HCl has good corrosion resistance in seawater and various hydrochloric acids. However, it should be used with caution in HIC acids with high flow rates. It is not usable in H3PO4 and HNO3. H2SO4 can only be used in airless H2SO4. It has good corrosion resistance in high-temperature anhydrous HF, has good corrosion resistance in high-temperature chlorine and HCl, and has good corrosion resistance in chlorine and fluorine gases. Corrosion resistance, and its welding resistance to intergranular corrosion will be even better (mainly due to its reduced carbon content).

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