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Cathodic Arc Deposition Equipment
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Diamond Steel File TiN hard coating machine-RTAC1200

Diamond Steel File TiN hard coating machine-RTAC1200

Brand Name: ROYAL
Model Number: RTAC1400
MOQ: 1 set
Price: negotiable
Payment Terms: L/C,D/A,D/P,T/T
Supply Ability: 15 sets per month
Detail Information
Place of Origin:
Made in China
Certification:
CE
Chamber:
Vertical Orientation, 1-door,
Material:
Stainless Steel 304/316
Vacuum Technology:
Arc Evaporation, Arc Ion Plating
Deposition Sources:
Cylinder Arc Or Circular Arc Cathodes
Coating Films:
Metal Film Plating, Titanium Nitride, Titanium Carbide, Zirconium Nitride, Chromium Nitride, TiAlN, CrC
Industrial Applications:
Ceramic And Glass House Wares, Stainless Steel Table Ware, Steel Sheet, Furniture, Table, Chair, Watches And Clocks, Hard Coatings On Tools
Factory Location:
Shanghai City, China
Worldwide Service:
Poland - Europe; Iran- West Asia & Middle East, Turkey, India, Mexico- South America
Training Service:
Machine Operation, Maintenance, Coating Process Recipes, Program
Warranty:
Limited Warranty 1 Year For Free, Whole Life For Machine
OEM & ODM:
Available, We Support Tailor Made Design And Fabrication
Packaging Details:
Export standard, to be packed in new cases/cartons, suitable for long-distance ocean/air and inland transportation.
Supply Ability:
15 sets per month
Highlight:

tin coating machine

,

titanium coating machine

Product Description

PVD TiN and PVD CrN Functional Coatings:

1. TiN (Titanium Nitride) Hardness: 2000~2300 HV, Thickness: 2~6 microns

2. CrN (Chrome Nitride) Hardness: 1700~2100 HV, Thickness: 2~10 microns

3. High Hardness, Low Coeffient of Friction, longer using time (more than 3~5 times)


Hard Coatings on Tools

Hard coatings, formed by reactive Physical Vapor Deposition ( PVD) processes, based on plasma technology,are becoming widely used in the tool industries.

The most common vaporization sources for the ion plating of hard coatings are unbalanced-magnetron- -sputtering sources, and cathodic-arc-vaporization sources. Bombardment during deposition is commonly achieved by applying a negative bias (-200 to -300 volts ) to the substrate and accelerating positive ions to the surface from a plasma. A high ratio of bombarding ions to depositing atoms is important for densifying the depositing material. In the unbalanced-magnetron-sputtering source, few of the sputtered atoms are ionized; but in the cathodic arc sources, a high percentage of the vaporized atoms are ionized. Because these “ film ions ” have a higher mass than do the gas ions, they are better able to sputter surfaces and densify films by “ atomic peening.”


PVD (Physical Vapor Deposition) coatings are utilized on diamond files to enhance their performance, durability, and versatility. Diamond files are abrasive tools used for shaping, sharpening, and finishing various materials such as metals, ceramics, and stones. Applying PVD coatings to diamond files can improve their cutting efficiency, wear resistance, and overall longevity.

Here's how the process of applying PVD coatings to diamond files typically works:

Cleaning and Preparation: The diamond files are cleaned thoroughly to remove any contaminants that could interfere with the coating process.

Masking: Certain areas of the diamond file might be masked off to prevent coating where it's not needed.

Loading into Vacuum Chamber: The diamond files are loaded into a vacuum chamber along with the material to be used for the coating.

Evaporation: The coating material is evaporated within the vacuum chamber, forming a vapor.

Deposition: The vaporized material condenses onto the surface of the diamond file, creating a thin, uniform coating that adheres well to the diamond substrate.

Post-Treatment: Depending on the specific requirements, post-treatment processes like heat treatment may be applied to further enhance the coating's properties.

Benefits of applying PVD coatings to diamond files include:

Increased Hardness: PVD coatings can enhance the hardness of the diamond file, making it more resistant to wear and extending its lifespan.

Improved Cutting Performance: Coatings can improve the cutting efficiency and precision of the diamond file.

Reduced Friction: Coatings can reduce friction during cutting, leading to smoother operations.

Resistance to Chemicals and Corrosion: PVD coatings can provide protection against chemical reactions and corrosion, maintaining the integrity of the diamond file.

Common PVD coatings used on diamond files include titanium nitride (TiN), titanium carbonitride (TiCN), and chromium nitride (CrN), among others.

If you have any more specific questions or need further details about PVD coatings on diamond files, feel free to ask!

Technical SPECIFICATION:


MODEL   RTAC-1200
MATERIAL Stainless Steel (S304)
CHAMBER SIZE Φ1200*1400mm (H)
CHAMBER TYPE Cylinder, vertical, single door
SINGLE PUMP PACKAGE Rotary Piston Vacuum Pump
Roots Vacuum Pump
Roots Pump
TECHNOLOGY Cathodic Arc Evaporation, Ion Plating
POWER SUPPLY Arc sources power supply + Bias Power supply
DEPOSITION SOURCE 14 Cathodic Arc Sources
CONTROL PLC+Touch Screen
GAS Gas Mass Flow Meters
SAFETY SYSTEM Numerous safety interlocks to protect operators and equipment
COOLING Cooling Water
CLEANING Arc Discharge
POWER MAX. 75 KW

AVERAGE POWER

CONSUMPTION

35 KW


4.  Coating Product Samples by Arc Vacuum Coater

Diamond Files TiN and CrN coating


Diamond Steel File TiN hard coating machine-RTAC1200 0


Diamond Steel File TiN hard coating machine-RTAC1200 1


Please contact us for more specifications, Royal Technology is honored to provide you total coating solutions.