Micromachines (Oct 2021)

Curved Film Microstructure Arrays Fabricated via Mechanical Stretching

  • Qiushu Zhang,
  • Bei Peng,
  • Mengqi Chu,
  • Pan Wen,
  • Song Wang,
  • Jintao Xu

DOI
https://doi.org/10.3390/mi12111281
Journal volume & issue
Vol. 12, no. 11
p. 1281

Abstract

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We report on curved film microstructure arrays fabricated through polydimethylsiloxane (PDMS) film buckling induced by mechanical stretching. In the process of the microstructure preparation, a PDMA film is glued on a bidirectionally prestretched PDMS sheet that has a square distributed hole array on its surface. After releasing the prestrain, the film microstructure array is created spontaneously. The fabricated microstructures possess a spherical surface and demonstrate very good uniformity. The film microstructure arrays can serve as microlens arrays with a focal length of 1010 μm. The microstructure formation mechanism is investigated via theoretical analysis and numerical simulation. The simulation results agree well with the experimental results. The prestrain applied by mechanical stretching during the fabrication has an important effect on the shape of the resulting film microstructures. The microstructure geometry can be easily tuned through controlling the applied prestrain.

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