Dynamic Failure of Multi-layer MEMS at High Loading Rates: Experiments and Simulations

Abstract

Microelectromechanical Systems (MEMS) are increasingly used in critical military applications involving high loading rate for which failure modes can develop that are not present under static loading. We focused on understanding the dynamic failure response of multilayer MEMS at the material and structural scales. Findings/significance: We have performed static and dynamic failure experiments on polysilicon, and on Au and PZT/metal MEMS (from Army Research Laboratory.) The effects of loading rate, material, and geometry were studied. Findings show that failure modes are highly dependent on loading rate and geometry, and include material failure, structural failure or delamination. In addition, MEMS response mayMicroelectromechanical Systems (MEMS) are increasingly used in critical military applications involving high loading rate for which failure modes can develop that are not present under static loading. We focused on understanding the dynamic failure response of multilayer MEMS at the material and structural scales. Findings/significance: We have performed static and dynamic failure experiments on polysilicon, and on Au and PZT/metal MEMS (from Army Research Laboratory.) The effects of loading rate, material, and geometry were studied. Findings show that failure modes are highly dependent on loading rate and geometry, and include material failure, structural failure or delamination. In addition, MEMS response may

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Document Details

Document Type
Technical Report
Publication Date
Jul 04, 2008
Accession Number
ADA507505

Entities

People

  • Ioannis Chasiotis
  • John Lambros

Organizations

  • University of Illinois Urbana–Champaign

Tags

Communities of Interest

  • Advanced Electronics

DTIC Thesaurus Topics

  • Composite Materials
  • Engineering
  • Failure Mode And Effect Analysis
  • Films
  • Geometry
  • Materials
  • Mechanical Properties
  • Mechanics
  • Microelectromechanical Systems
  • Military Research
  • Simulations
  • Strain Rate
  • Stress Strain Relations
  • Stresses
  • Students
  • Tensile Strength
  • Thin Films

Fields of Study

  • Engineering

Readers

  • Nanofabrication and Microfabrication.
  • Structural Health Monitoring of Composite Structures.

Technology Areas

  • Microelectronics
  • Microelectronics - Microelectromechanical Systems