The materials that can be sprayed by NCI are not limited to ceramics.
The materials that can be thermally sprayed by NCI are not limited to ceramics. For example, self-fluxing alloys. These are nickel or cobalt-based alloys containing more than 1.5% boron and silicon, which are re-melted in an atmosphere of about 1100°C after being thermally sprayed to create an alloy layer that forms a dense, pore-free coating that adheres to the base material. They are characterized by excellent wear resistance. For more details, please download the catalog.
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【Features】 ○ Self-fluxing alloy thermal spray material ○ Material name: Ni-based self-fluxing alloy → Main components: Ni-Cr-B-Si → Coating characteristics: Excellent wear and corrosion resistance → Forms an alloy layer through re-melting at approximately 1,100℃, resulting in a dense, pore-free coating that is bonded to the substrate ○ Material name: Co-based self-fluxing alloy → Main components: Co-Ni-Cr-B-Si → Coating characteristics: Excellent wear and corrosion resistance → Forms an alloy layer through re-melting at approximately 1,100℃, resulting in a dense, pore-free coating that is bonded to the substrate → Used on martensitic stainless steel substrates ○ Material name: WC mixed self-fluxing alloy → Main components: WC-Co-SFA → Coating characteristics: Excellent wear resistance → Used in applications with more severe wear than the above self-fluxing alloys ● 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.