Ni-Mo Alloy Powder

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seat: Shanghai
Validity to: Long-term effective
Last update: 2019-11-02 03:08
Browse the number: 174
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Product details

LAP100.29A1: Add Ni(1.70-2.00%)and Mo(0.40-0.60%)into the molten steel,which enables all alloy elements fully integrated into the molten steel The powder has high strength and good heat treatment performance This type of power is mainly used for production of forging parts and high strength sintered parts.

·The alloy elements distribute uniformly without segregation, which has uniform sinteredphysical and chemical properties.

·By adding Mo and Ni can improve the strength, toughness, wear resistance and hardenability of sintered parts.

·Suitable for production of uniform sintered parts;high strength, heat treated parts.

 

Product standard and content(wt%)
Composition Fo C S Si M P O M Ni
Standard balance ≤0.01 ≤0.015 ≤0.05 ≤0.15 ≤0.020 ≤0.20 0.40-0.60 1.70-2.00
Classic - 0.005 0.014 0.02 0.13 0.015 0.14 0.5 1.78

 

Sieve analysis(particle size distribution)
um 180 180/150 150/106 106/75 75/45 -45
wt% ≤1 ≤10 balance balance balance 15-30
Classic trace 2 19.6 25.2 28.2 25

 

LAP100.29A2: Add Cr, Ni, Mo, Co into the molten steel, which enables the all alloy elements fully integrated into the molten steel. The powder has high strength,good heat treatment performance and corrosion resistance. This type of power is mainly used for production of high strength sintered machine parts, wear resistant parts, corrosion resistant in bad working environment sintered parts,e.g.valve seats.

·The alloy elements distribute uniformly and without segregation, which has uniform physical and chemical sintering properties.

·This type of powder can be used to produce high strength, corrosion resistance,wear resistance and oxidation resistance sintered structural parts.

 

Product standard and content(wt%)
Composition Fe C S Si Mn P O Mo Ni Co Cr Cu
Standard balance ≤0.01 ≤0.015 ≤0.05 0.20-0.50 ≤0.020 ≤0.20 0.35-0.65 0.50-0.90 0.30-0.50 0.10-0.30 ≤0.50
Classic - 0.005 0.013 0.02 0.25 0.015 0.14 0.52 0.71 0.35 0.2 0.38

 

Sieve analysis(particle size distribution)
um 180 180/150 150/106 106/75 75/45 -45
wt% ≤1 ≤10 balance balance balance 15-30
Classic trace 1 16 27 29.8 26.2

 

LAP100.29A4: Add Ni, Mo, Mn into the molten steel, enables all alloy elements fully integrated into the molten steel. Bying adding Ni, Mo and Mn, it effectively improves the tensile strength and mechanical properties of the powder, and improves the comprehensive mechanical properties of the PM parts. It is mainly used for sintered mechanical parts with good hardenability and high strength.

·Powder metallurgy sinter hardening process is rapidly becoming a low-cost process technology for improving the hardness and strength of PM parts.

·Powder metallurgy sinter hardening process is a process when the PM part's partial or all microstructure is transformed into a martensite structure during the cooling stage. This process omits a quenching process after sintering, it has the technical advantages of energy saving, time saving and high efficiency.

 

Product standard and content(wt%)
Composition Fe C Si S P Mn Ni Mo O
Standard balance ≤0.01 ≤0.05 ≤0.015 ≤0.02 0.35-0.55 1.3-1.5 1.15-1.4 ≤0.20
Classic - 0.005 0.03 0.01 0.012 0.47 1.4 1.3 0.1

 

Sieve analysis(particle size distribution)
um 180 180/150 150/106 106/75 75/45 -45
wt% <1 <10 balance balance balance 15-30
Classic 0 1.5 20.4 25.5 30.8 21.8

 

Package and delivery

1000kg per big flexbag and 25kg per small bag packed into one big bag.




Application

This type of metal powder can be used for the material of powder metallurgy sinter component parts.


http://www.lwpowder.com/

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