• Title/Summary/Keyword: Drag Finishing

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Machining Evaluation of Carbide Drill and Cermet Reamer Using Polishing Media Based on Drag Finishing Process (드래그 피니싱 공정 기반 폴리싱 연마제를 이용한 초경 드릴 및 서멧 리머 공구의 가공 평가)

  • Ha, Jeong-Ho;Sa, Min-Woo
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.21 no.2
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    • pp.23-30
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    • 2022
  • After drilling, reaming is required to process a workpiece for obtaining an excellent surface quality. In general, a cermet is defined as a "composite of a ceramic hard phase and metal-bonded phase." Cermets have excellent abrasion resistance, thermal resistance, and performance in finishing operations that require surface roughness and processing precision. However, although cermets have significant advantages, research on them is insufficient. In this study, workpiece SM45C was machined using drills and cermet reamers. The cermet reamer was processed for drag finishing for 0, 4, and 6 min. The experimental results showed the effects of drag finishing on surface roughness and dimensional accuracy.

Superhydrophobic and Hydrophobic Anodic Aluminum Anodic Oxide Layer: A Review (초발수성 및 발수성 알루미늄 양극산화피막의 최신 연구 동향)

  • Lee, Junghoon
    • Journal of the Korean institute of surface engineering
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    • v.51 no.1
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    • pp.11-20
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    • 2018
  • Hydrophobic and Superhydrophobic surfaces are promising technology for the surface finishing of metallic materials due to its water-repellency. Realization of highly water-repellent surface on aluminum and its alloys provides various functionalities for real application fields. In order to realize the hydrophobic/superhydrophobic surfaces on aluminum and its alloys, various technologies have been demonstrated. Especially, traditional anodic oxidation for aluminum has been widely employed for the morphological texturing of surfaces, which is essential to enhance the hydrophobic efficiency. De-wetting superhydrophobic surface on aluminum provides various exceptional properties, such as anti-corrosion, anti-/de-icing, anti-biofouling, drag reduction, self-cleaning and liquid separation. Nevertheless, the durability and stability of superhydrophobic surfaces still remain challenges for their actual applications in engineering systems and industry. In this review, the theoretical/experimental studies and current technical limitations on the hydrophobic and superhydrophobic surface using anodic oxidation of aluminum have been summarized.