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Sec.5: Materials - Sandwich Structures [Table of Contents] Sec.7: Joints and Interfaces

DNV-OS-C501 Composite Components

[-] Sec.6: Failure Mechanisms & Design Criteria

SECTION 6
Failure Mechanisms & Design Criteria

[-] A: Mechanisms of failure
A100: General
A200: FRP laminates - failure mechanisms and failure type
A300: Sandwich structures - failure mechanisms and failure type
A400: Displacements and long term failure mechanisms and failure type
A500: Link between failure modes and failure mechanisms
[-] B: Design criteria - general approach
B100: General
B200: Design criteria for single loads
B300: Design criteria for combined loads
B400: Time dependency and influence of the environment
[-] C: Fibre failure
C100: General
C200: Fibre failure at the ply level
C300: Fibre failure check using a modified Tsai-Wu criterion
C400: Special considerations for fibre failure under inplane compressive loads
C500: Fibre failure checked by component testing
C600: Fracture mechanics approach
[-] D: Matrix cracking
D100: General
D200: Matrix failure based on simple stress criterion
D300: Matrix failure based on Puck's criterion
D400: Obtaining orientation of the failure surface
D500: Matrix cracking caused only by shear
D600: Matrix failure checked by component testing
[-] E: Delamination
E100: General
E200: Onset of delamination
E300: Delamination growth
[-] F: Yielding
F100: General
[-] G: Ultimate failure of orthotropic homogenous materials
G100: General
[-] H: Buckling
H100: Concepts and definitions
H200: General requirements
H300: Requirements when buckling resistance is determined by testing
H400: Requirements when buckling is assessed by analysis
[-] I: Displacements
I100: General
[-] J: Long term static loads
J100: General
J200: Creep
J300: Stress relaxation
J400: Stress rupture - stress corrosion
[-] K: Long term cyclic loads
K100: General
K200: Change of elastic properties
K300: Initiation of fatigue damage
K400: Growth of fatigue damage
[-] L: Impact
L100: General
L200: Impact testing
L300: Evaluation after impact testing
[-] M: Wear
M100: General
M200: Calculation of the wear depth
M300: Component testing
[-] N: High / low temperature / fire
N100: General
[-] O: Resistance to explosive decompression
O100: Materials
O200: Interfaces
[-] P: Special aspects related to sandwich structures
P100: General
P200: Failure of sandwich faces
P300: Failure of the sandwich core
P400: Failure of the sandwich skin-core interface
P500: Buckling of sandwich structures
[-] Q: Chemical decomposition / galvanic corrosion
Q100: General
[-] R: Requirements for other design criteria
R100: General


H: Qualification of material properties [Table of Contents] A: Mechanisms of failure