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Electrode Induction Metal Powder Atomization Equipment , 100kw Gas Atomization Equipment

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Easy Fashion Metal Products Co., Ltd.
City:changsha
Province/State:hunan
Country/Region:china
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Electrode Induction Metal Powder Atomization Equipment , 100kw Gas Atomization Equipment

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Brand Name :EasyFashion
Certification :ISO9001:2008
Place of Origin :China
MOQ :1 set
Price :To be discussed
Payment Terms :T/T, Western Union
Supply Ability :2-10 sets per year
Delivery Time :180 working days
Packaging Details :standard packing, wooden cases
Total power :100kw
Melting capacity :5kg or 10kg (calculated by the density of Ti)
Feeding methods :intermittent feeding type
Powder size :D50=45μm
Gas consumption :high pure Ar or N2
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Electrode Induction Melting Inert Gas Atomization (EIGA) Equipemnt

Overview

Principle: Under vacuum or inert gas protection, the slowly rotating feedstock rod is heated by high frequency induction coil and melted inductively and continuously in the absence of crucible. Then the molten falls free, flows into atomization system and is crushed into a large number of small liquid droplets by high pressure inert gas from atomizer spray plate. Then small liquid droplets are solidified into spherical partical powders in flight. Feedstock doesn’t contact with crucible and fluid limiting diversion tube, so it doesn’t get pollution.

Features:

1. It can produce high melting and alive metal powders with spherical shape and ultra-high purity, such as Mg, Al, Ti, Ni, W, Mo and its alloy powder, ceramic powder etc..

2. Low energy consumption.

3. Alloy electrode is needed to be melted and electrode segregation results in uneven chemical composition of alloy powder.

Specifications

  • Total power: 100kW

l Melting capacity: 5kg or 10kg (calculated by the density of Ti)

l Feeding methods: single or continuous feeding by 10pcs each time.

l Feeding speed: rotating speed 1~30r/min; slow: 1~50mm/min (adjustable); fast: 200mm/min (constantly).

l Powder size: D50=about 45μm.

l Recovery rate: ≥ 95%

l Gas consumption: high pure Ar or N2.

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