700/314 Moo 6 Bangna-Trad KM. 57, Tambon Don Hua Roh, Amphur Muang,Chonburi 20000 Thailand
Objective
To increase the overall hardness of the workpiece, enhance wear resistance, and improve durability during service.
Objective
∙ To increase hardness, toughness, and overall strength of the workpiece.
∙ To improve mechanical flexibility.
∙ To enhance fatigue resistance.
Objective
∙ To increase the overall hardness of the workpiece, enhance wear resistance, and improve durability during service.
Objective
∙ To increase the surface hardness of the workpiece, thereby improving wear resistance and fatigue strength, while maintaining a tough and ductile core capable of absorbing impact loads effectively.
These coatings are applied as thin films onto the workpiece using titanium-based compounds (Ti) through PVD Coating (Physical Vapor Deposition) technology. In this process, the coating material is vaporized in a vacuum environment and condensed onto the tool surface, enhancing hardness, wear resistance, and extending the service life of various tools.
These coatings are applied as thin films onto the workpiece using chromium-based compounds (Cr) through PVD Coating (Physical Vapor Deposition) technology. In this process, the coating material is vaporized in a vacuum environment and deposited onto the surface of the workpiece.
The resulting coatings enhance hardness, wear resistance, and extend the service life of various tools.
These coatings are applied as thin films onto the workpiece and enhanced through the addition of elements such as Cr, Al, Si, and Nb. This technique produces films with combined and improved properties suitable for a wide range of applications.
The C-Series belongs to the Diamond-Like Carbon (DLC) coating group.
DLC coatings are carbon-based thin films composed of a mixed bonding structure:
sp³ (diamond-like bonds) that provide high hardness
sp² (graphite-like bonds) that offer excellent lubricity and low friction
This combination results in coated surfaces with superior smoothness, reduced friction, high hardness, and outstanding wear resistance.
An HC Meter is an instrument used to measure magnetic properties of metals, particularly magnetic induction and coercive force (Hc). These values help evaluate the microstructure and overall material quality after heat treatment or hardening processes.
Hardness testers are used to measure a material’s resistance to indentation, scratching, or deformation, providing an indication of its hardness level. At Thai Tohken Thermo, we employ four primary hardness testing methods, along with advanced analytical tools, as described below.
An optical microscope is a fundamental tool used to examine the microstructure of metallic materials. After etching or chemical treatment, it allows clear observation of phases, grain structures, and metallurgical characteristics within the material.
A spectrometer is used to analyze the chemical composition of a material. It operates on the principle of light spectrum emission or absorption generated by atoms or molecules. A detector measures the intensity of light at various wavelengths, and the resulting data is converted into a spectrum graph. This provides accurate identification and quantification of elements present in the sample.
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