스크린 인쇄용 미세 범프 금속마스크의 변형특성 해석

Translated title of the contribution: Deformation Analysis of a Metal Mask for the Screen Printing of Micro Bumps

Research output: Contribution to journalArticlepeer-review

Abstract

Screen printing is a printing method that uses a woven mesh to support an ink-blocking stencil by transferring ink or other printable materials in order to form an image onto a substrate. Recently, the screen printing method has applied to micro-electronic packaging by using solder paste as a printable material. For the screen printing of solder paste, metal masks containing a number of micro-holes are used as a stencil material. The metal mask undergoes deformation when it is installed in the screen printing machine, which results in the deformation of micro-holes. In the present study, finite element (FE)analysis was performed to predict the amount of deformation of a metal mask. For an efficient calculation of the micro-holes of the metal mask, the sub-domain analysis method was applied to perform FE analyses connecting the global domain (the metal mask) and the local domain (micro-holes). The FE analyses were then performed to evaluate the effects of slot designs on the deformation characteristics, from which more uniform and adjustable deformation of the metal mask can be obtained.
Translated title of the contributionDeformation Analysis of a Metal Mask for the Screen Printing of Micro Bumps
Original languageKorean
Pages (from-to)408-414
Number of pages7
Journal한국생산제조시스템학회지
Volume21
Issue number3
DOIs
StatePublished - Jun 2012

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