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Lecture
Failure Mechanisms in MEMS
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Related lectures (31)
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Tensile Curve and Resistance: Material Behavior Analysis
Explores material behavior through tensile curves, resistance, and stress analysis.
Fracture Mechanics: Crack Growth and Weakest Link
Explores fracture mechanics, crack growth, and the weakest link theory, emphasizing the statistical distribution of crack sizes and the significance of the largest crack in material failure.
Weibull Model: Random Data
Explores the Weibull model's application to random data and its significance in analyzing material strength and failure probability.
Toughness of Materials
Covers the concept of toughness of materials, emphasizing resistance to crack propagation and plastic deformation.
Materials Properties and Limiting Behavior
Explores materials properties, failure criteria, stress-strain curves, and fracture strength.
Material Strength and Hardness
Explores material strength, hardness, and toughness, covering ductility, plastic deformation, fracture, and hardness testing methods.
Fracture and Toughness of Materials
Covers stress intensity, fracture, and toughness of materials, including the behavior of ductile and brittle materials.
Statistical Mechanical Resistance: Ceramics
Covers statistical mechanical resistance in ceramics, including Weibull statistic and stable cracking behavior in compression.
Mechanical Properties of Materials: Toughness and Hardness
Explores toughness, hardness, and material properties, including critical crack length and hardness testing methods.
Modeling Shock Response of Brittle Materials
Explores shock response modeling of brittle materials, including spall strength evaluation and shear failure mechanisms.