Gasverstoven poeder

Inhoudsopgave

Gas atomization is a specialized manufacturing process to produce fine metallic powders with precise composition and consistent particle sizes. The powders find application across automotive, aerospace, medical, and industrial sectors.

Overzicht van gas atomized powder

Tafel 1: Summary of the Gas Atomization Process

ParameterDetails
Raw MaterialsMetals like titanium, aluminum, steels, nickel alloys in form of ingots, electrodes or wire
Process PrincipleMelting feedstock and breaking up molten metal stream into fine droplets using high pressure gas jets
Atomizing GasesAir, Nitrogen, Argon
Solidification Rate10^3 – 10^5 °C/s
Final ProductsSpherical metal powders with controlled size ranging from 10 microns to 500 microns

Controlled gas flow rates, precise atomization nozzles and specialized cooling designs enable the production of fine, spherical powders.

gas atomized powder

Toepassingen van Gas Atomized Powders

Tafel 2: Major Application Areas of Gas Atomized Powder

IndustrieToepassingsvoorbeelden
Additieve productie3D printing of aerospace and medical components
Poeder SpuitgietenManufacture of small, complex metal parts with better mechanical properties
Thermische spuitcoatingsFeedstock powder for wear and corrosion resistant coatings
Metaal spuitgietenSmall precision components like gears and cutting tool tips
Brazing PastesNickel and aluminum based brazing filler metal powders

The consistent powder characteristics like particle size distribution, purity and morphology make gas atomized powders a preferred feedstock across powder metallurgy processes.

Advantages Over Alternatives

Tafel 3: Benefits of Gas Atomized Powder Over Other Types

ParameterVoordeel
DeeltjesvormHighly spherical morphology gives excellent flowability
DeeltjesgroottecontroleConsistent microstructure which minimizes defects in finished components
Composition ConsistencyPrecise control over alloying elements ensures reliable mechanical properties
Cost EffectivenessHigher yields compared to water atomization with easier powder recovery
Product CustomizationFlexibility to tailor powder composition and particle sizes as per application

The combination of precision, consistency and flexibility makes gas atomization a versatile powder production technique at commercial scales.

Typische specificaties

Tabel 4: Typical Specification Range for Gas Atomized Powders

ParameterBereik
MaterialenTitanium, Aluminum, Steels, Nickel, Copper alloys
Deeltjesgrootte10 to 500 μm
DeeltjesgrootteverdelingTight distribution with SG > 0.9
Zuurstofgehalte100 – 1000 ppm range
Stikstofgehalte< 100 ppm
VormHighly spherical > 80%
Schijnbare dichtheidUp to 65% of pure metal

The properties can be tailored over a wide range as per intended usage across industries.

Voors vs. Tegens

Tabel 5: Advantages and Limitations of Gas Atomization

PluspuntenNadelen
Consistent particle characteristicsLimitations on alloying additions like reactive elements
Cost effective for higher volumesInitial equipment capital cost relatively high
Wide range of alloy familiesHandling of fine pyrophoric powders requires care
Scale-up to tonnage quantities feasiblePost-processing often required to remove satellites and fines

Despite growing expertise globally, gas atomized powder still requires significant process development and qualification efforts by end-users to apply successfully for niche applications.

Veelgestelde vragen

Q: Does gas atomization allow single crystal powder production?

A: Very challenging – the rapid solidification rates create fine grained microstructures. Specialized variants like Electrode Induction-melting Gas Atomization (EIGA) can yield some fraction of single crystal particles.

Q: What is the typical nitrogen content range for gas atomized titanium powder?

A: With best practices, N2 levels of 100-500 ppm can be achieved for gas atomized titanium powder. This expands AM capability versus other variants with higher oxygen/nitrogen which negatively impacts mechanical performance.

Q: What is the key difference between gas and water atomized metal powders?

A: Gas atomization allows better particle shape and size control. Water atomization yields faster cooling rates but experiences more oxidation and satellite particle issues during powder production and recovery.

ken meer 3D-printprocessen

Delen op

Facebook
Twitteren
LinkedIn
WhatsAppen
E-mail
metalen 3dp-logo klein

Metal3DP Technology Co., LTD is een toonaangevende leverancier van oplossingen voor additieve productie, met hoofdkantoor in Qingdao, China. Ons bedrijf is gespecialiseerd in 3D-printapparatuur en hoogwaardige metaalpoeders voor industriële toepassingen.

Onderzoek om de beste prijs en een op maat gemaakte oplossing voor uw bedrijf te krijgen!

gerelateerde artikelen

titaancarbidepoeder

Titaniumcarbide poeder

Titaancarbidepoeder is een extreem hard keramisch materiaal dat wordt gebruikt in een verscheidenheid aan industriële toepassingen die een hoge hardheid, slijtvastheid, thermische geleidbaarheid, en

Lees meer >
zuiver nikkelpoeder

Nikkel zuiver poeder

Zuiver nikkelpoeder is een zeer veelzijdig metaalpoeder met unieke eigenschappen die het geschikt maken voor verschillende geavanceerde toepassingen in verschillende industrieën. Dit artikel biedt

Lees meer >

Over Met3DP

Video afspelen

Recente update

Ons product

NEEM CONTACT MET ONS OP

Nog vragen? Stuur ons nu een bericht! Na ontvangst van uw bericht behandelen wij uw verzoek met een heel team. 

Koop Metal3DP's
Productbrochure

Ontvang de nieuwste technologie, innovaties en bedrijfsnieuws.