Various Surface Modifications: Technical Materials for Understanding Thermal Spraying
A presentation material explaining the "thermal spraying method," which can coat almost all materials, is a gift!
We are offering a presentation document explaining the simple technique of "thermal spraying," which involves spraying a coating material melted at high temperatures! Please consider the thermal spraying method, which allows for flexible responses regardless of the base material's properties, shape, or coating thickness! The thermal spraying methods for surface modification include plasma spraying, explosion spraying, flame spraying, and arc spraying, with coating materials such as metals, alloys, ceramics, glass, and polymers. The purposes vary, including surface hardening, heat resistance, wear resistance, and the addition of special functions. [For more details, please download the catalog or feel free to contact us.]
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【Features】 ○ Coating of almost all materials → The principle is simple → A technology that sprays molten coating material at high temperatures → Can coat not only metals but also almost all materials ○ No restrictions on the shape of the base material → Plating and deposition require placing the material in a tank or furnace for reaction → Thermal spraying uses a gun to spray, allowing for large sizes → Coating can also be done on specific areas, such as only the damaged parts ○ Thick coatings can be achieved → Melted ceramics collide with the base material, flatten, and stack to form a coating → Enables quick application of thick coatings → Ensures high reliability as both protective and functional coatings ○ Infinite material options for coatings → For plating, ionization is required; for deposition, vaporization is necessary → For thermal spraying, any material that can be "solid at room temperature and liquid when heated" is acceptable → Moreover, it can be melted at high temperatures (up to 10,000°C in plasma spraying) → High melting point ceramics can be utilized ○ No worries about thermal effects on the base material → Although the coating material is melted at high temperatures, the heat retained by the sprayed particles is minimal → They solidify almost instantly ● For more details, please contact us or download the catalog.
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NCI introduced the core technology of the ceramic thermal spraying, the Low-Cry process, in Japan for the first time, and for half a century, it has supported rocket development. NCI has consistently pursued the Low-Cry process, leading and evolving ceramic thermal spraying. Thanks to the know-how of the Low-Cry process, it is possible to provide outstanding functions and quality, such as plasma, hybrid, high-speed flame, and surface patterns. NCI's thermal spraying technology is widely utilized in advanced technology fields, offering high-quality solutions unique to NCI.