Korea Leading Clipper Manufacturer hightech clipper frontier DLCdiamond

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Korea Leading Clipper Manufacturer , high-tech clipper frontier DLC(diamond like carbon) Coating Clipper Blade

Korea Leading Clipper Manufacturer , high-tech clipper frontier DLC(diamond like carbon) Coating Clipper Blade Even now, VOGUERS is developing the most advanced technology clippers for the first time in the world Bucheon Techno Park Ssangyong 3 -Cha, 102 -912, 909, #36 -1, Samjeong-dong, Ojeong-gu, Buchoen-si, Gyeonggi-do, Korea. Tel: 82 -32 -624 -3956~7, Fax: 82 -32 -624 -3958, www. voguers. com, email: telstockkr@yahoo. co. kr

Korea Leading Clipper Manufacturer , high-tech clipper frontier Different types of Carbons Diamond Graphite

Korea Leading Clipper Manufacturer , high-tech clipper frontier Different types of Carbons Diamond Graphite The Taylor-Burton The De Beers Diamond Coal P. 2

Korea Leading Clipper Manufacturer , high-tech clipper frontier DLC ? u What is DLC

Korea Leading Clipper Manufacturer , high-tech clipper frontier DLC ? u What is DLC (Diamond-like Carbon)? - A compound of carbon & hydrogen - Amorphous Solid Carbon Film - High Content of Hydrogen (0~60%) u Synonyms - a-C: H : Hydrogenated amorphous carbon - a-C : amorphous carbon - ta-C: Tetrahedral Amorphous Carbon P. 3

Korea Leading Clipper Manufacturer , high-tech clipper frontier Diamond-like Carbon sp 3 diamond t-a.

Korea Leading Clipper Manufacturer , high-tech clipper frontier Diamond-like Carbon sp 3 diamond t-a. C: H DLC Polymer-like graphite Graphitic sp 2 H P. 4

Korea Leading Clipper Manufacturer , high-tech clipper frontier DLC’s Specifications § High surface hardness:

Korea Leading Clipper Manufacturer , high-tech clipper frontier DLC’s Specifications § High surface hardness: 1500 ~ 8500 Hv → wear resistant coating § Low frictional coefficient: 0. 01 ~ 0. 2 → solid lubricant coating § Chemical safety: acid & basic free reaction → a high corrosive substance § Light penetrability: High penetration at far intra red area → reaction free coating § High surface light: Ra ~0. 3 nm → hard surface coating § low temperature coating: < 70 o. C → no material transformation out of heat while coating P. 5

Korea Leading Clipper Manufacturer , high-tech clipper frontier DLC Merit & Demerit 1. High

Korea Leading Clipper Manufacturer , high-tech clipper frontier DLC Merit & Demerit 1. High hardness 2. Low frictional coefficient 3. Substance connection - buffer layer is necessary for substance connection - buffer layer is designed for substance DLC Buffer Layer buffer layer design for connection Substrate P. 6

Korea Leading Clipper Manufacturer , high-tech clipper frontier Comparison to other coating Called King

Korea Leading Clipper Manufacturer , high-tech clipper frontier Comparison to other coating Called King of Coating Materials Diamond-like Carbon for Hard and Solid Lubrication Coatings wear Frictional coefficient DLC WC Ti. N Cr. N Ti. CN 2. 0 1. 6 1. 2 0. 8 0. 4 0 0 0. 2 0. 4 0. 6 0. 8 1. 0 P. 7

Korea Leading Clipper Manufacturer , high-tech clipper frontier Application DLC Coated Blade P. 8

Korea Leading Clipper Manufacturer , high-tech clipper frontier Application DLC Coated Blade P. 8

Korea Leading Clipper Manufacturer , high-tech clipper frontier Application – Injection mold Slide core

Korea Leading Clipper Manufacturer , high-tech clipper frontier Application – Injection mold Slide core Locking Block Slide Core Guide Rail Locking Block P. 9

Korea Leading Clipper Manufacturer , high-tech clipper frontier Comparison of DLC & other coated

Korea Leading Clipper Manufacturer , high-tech clipper frontier Comparison of DLC & other coated Surface - DLC Coated RMS roughness = 0. 95 nm - Other Coated RMS roughness = 1. 31 nm P. 10

Korea Leading Clipper Manufacturer , high-tech clipper frontier Application DLC Coating Clipper Blades Effects

Korea Leading Clipper Manufacturer , high-tech clipper frontier Application DLC Coating Clipper Blades Effects ● Reduced frictional coefficients ● Improved blade longevity ● Improved the surface hardness ● Reduced the heat generation P. 12