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Flame Plating Amorphous Alloy Powder Manufacturing Process 300KG High Performance

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Easy Fashion Metal Products Co., Ltd.
City:changsha
Province/State:hunan
Country/Region:china
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Flame Plating Amorphous Alloy Powder Manufacturing Process 300KG High Performance

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Brand Name :Easyfashion Industry
Model Number :EFZKT-300
Certification :CE Certificate
Place of Origin :China
MOQ :1 set
Payment Terms :T/T, D/A, D/P, Western Union
Supply Ability :10 sets per year
Delivery Time :120 days
Packaging Details :standard export wooden cases or containers
Injection pressure :max. 0.1MPa
Feeding Material :10-3 Pa
Leakage volume :less than 10-9Pam3/sec
Smelting capacity :5~50g/based on iron;
Common heating temperature :1200°C
Highest heating temperature :1500°C
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Amorphous Alloy Powder Production Equipment 300 KG For Ti Base In Flame Plating

Overview

1. Amorphous Alloy Powder Production Equipment is the magnetic material processing equipment that continuously produces amorphous alloy powders by using high-speed cooling method.

2. The large-scale production is conducted under protective gas or vacuum condition. The produced powders are mainly used for electrics, electronic components, military industry etc..

Specifications

Vacuum reaching pressure: 10-3 Pa (when filling with specimen and nozzle);

Leakage volume: less than 10-9Pam3/sec;

Injection pressure: max. 0.1MPa;

Smelting capacity: 5~50g/based on iron;

Highest heating temperature: 1500°C;

Common heating temperature: 1200°C;

Cooling roller rotating speed: 100-500rpm (single roller size: Φ200*20mm);

High-frequency output: 5kW;

Output frequency: 100KHz.

Power supply: 3 phases, 220V, 13KVA (clients need to prepare voltage transformer for their own)

Cooling water: 25L/min, water pressure: 0.35MPa (backpressure: less than 0.1MPa)

Inert gas (Ar): displaced capacity 100L/per time, pressure 0.5MPa.

Features

Its working principle refers to that smelted metal is jetted onto quench cooling roller in high-speed rotation under given conditions in Ar gas environment after vacuum exhausting, and then the amorphous thin band is formed though quench cooling process.

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