• Title/Summary/Keyword: 레이저 패터닝

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Surface Patterning and Characterization of Food Packaging Films Using Femtosecond Laser (펨토초 레이저를 이용한 식품포장 필름의 표면 패터닝 및 특성)

  • Youngjin Cho
    • KOREAN JOURNAL OF PACKAGING SCIENCE & TECHNOLOGY
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    • v.29 no.2
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    • pp.111-118
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    • 2023
  • In this study, the feasibility of laser patterning on the surface of food packaging polymer film was confirmed, and the surface patterning process conditions of femtosecond laser were established. In addition, it was proved that the surface properties of the film can be changed and controlled through the fabrication of various patterned films on the surface of food packaging films such as HDPE, PP, and PET. Various patterned surfaces, including large-scale circular patterns induced by a single femtosecond laser pulse, roughness patterns achieved by overlapping single pulses by 30%, straight line patterns, roughness patterns obtained by overlapping straight line patterns, and grid patterns formed by intersecting straight line patterns were fabricated. The characteristics of the patterned HDPE, PP, and PET films, based on the surface pattern structure and size, were analyzed using SEM, AFM, and contact angle measurements. Compared to the surface of each control film without femtosecond laser patterning, the contact angles of the surfaces of large-area circular patterning HDPE and PP films, large-area roughness patterning HDPE and PP films by overlapping 30% of single pulses, and large-area roughness patterning PET film by overlapping rectilinear patterning were in the range of 27.1-37.5 degree. This indicated that the HDPE, PP, and PET films became more hydrophilic after patterning. On the other hand, the HDPE film patterned with a large-scale grid pattern exhibited a contact angle of 120.4 degree, indicating that the HDPE film became more hydrophobic after patterning. Therefore, films that have been changed to hydrophilic surfaces through patterning can be used in anti-fouling applications where proteins, cells, viruses, and other food materials do not adhere or are easily detached. In addition, if a superhydrophobic surface of 150 degrees or more is fabricated through more precise lattice patterning in the future, it will be possible to use it for superhydrophobic surface applications such as self-cleaning.

총론: 레이저 패터닝 & 코팅

  • 아이코 나라자키
    • The Optical Journal
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    • s.174
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    • pp.34-36
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    • 2019
  • 본 호에서는 광을 사용한 재료표면의 고기능화에 착안해서 레이저 광을 이용한 패터닝(patterning)과 코팅기술을 주제로 해서 특집을 기획했다.

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Precise Laser Marking for Wireless Communication Devices (무선부품용 레이저 정밀 마킹)

  • 주영철;송오성;정영순
    • Proceedings of the KAIS Fall Conference
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    • 2003.06a
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    • pp.113-115
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    • 2003
  • 우리가 타자기로 글을 쓸 때는 먹지리본을 햄머가 가격하여 종이 위에 글씨 청태의 먹이 묻는 원리로 진행된다. 이러한 원리를 미세 패터닝에 응용하여, 해머 역할을 하는 Nd-YAG 레이저로 유리기판/100nm Cr(먹지)// 실리콘기판 (종이) 구조의 적충물에 조사시켜 Cr이 실리콘기판 위에 전사됨으로써 미세 패터닝이 가능한지 확인하였다. 제안된 미세 패터닝은 TeraBit/in²급 고밀도 정보저장 또는 반도체 공정의 생산성 향상을 위해 응용이 가능하다. 선폭 50 ㎛급 레이저를 주사속도 200과 1500 ㎜/s, Q스위치 조건을 10,000~50,000 ㎐로 변화시키며 마킹을 실시한 결과 Cr의 전사는 진행되지 않았으나, 최종적으로 입사 선폭의 33% 이하로 마킹이 가능하여 비싼 광학계를 가진 레이저를 대치하여 보다 정말한 마킹이 가능함을 확인하였다.

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유기 자기조립 단분자막과 나노프로브 레이저 패터닝을 이용한 금속박막 미세 형상 가공 기술

  • 최무진;장원석;김재구;조성학;황경현
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.05a
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    • pp.159-159
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    • 2004
  • 금속 박막 위의 알칸티올분자의 흡착에 의한 자기조립단분자막(Self-Assembled Monolayers)은 접착 방지, 마찰 저하 등의 기능을 가진 코팅층으로서의 응용과 분자 또는 생분자의 미세 구조물 형성을 위한 방법으로 널리 연구되어지고 있다. 이러한 연구 중에서 특히 자기조립단분자막의 매우 얇은 두께와 금속 박막의 선택적 식각을 위한 안정적인 리지스트(Photo Resist)로서의 특징을 활용한 극미세 패터닝에 대한 연구가 활발히 진행되고 있다.(중략)

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Development of Laser Typing Process for the High Density Recording (고밀도 기록을 위한 레이저 타이핑 공정 개발)

  • 주영철;송오성;정영순
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.4 no.3
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    • pp.317-321
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    • 2003
  • A conventional typewriter types letters by hammering a carbon ribbon which is attached at a paper. The laser typing process which write a micro pattern of Chrome on a silicon wafer has been developed. A glass that is coated with 100 nm Chrome (Carbon ribbon) is attached on a silicon wafer (paper). An Nd-Yag laser (hammer) is irradiated on the glass, and the Chrome is transferred on the silicon wafer. Micro patterns are made by controlling laser beam trajectory. The suggested micro pattering can be used at the high density data storage of TeraBit/in$^2$ or at the improvement of productivity of semiconductor manufacturing procedure.

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