7 July 2023 Crack propagation in calcium fluoride single crystals
Jonathan Salem, Richard Rogers, Charles He
Author Affiliations +
Abstract

Structural design of optical components launched into space requires fracture mechanics properties. To perform component design of a calcium fluoride (CaF2) prism, the fracture toughness and slow crack growth (SCG) parameters were measured on the {100}, {110}, and {111} low index planes. The fracture toughness is lowest on the {111} plane at 0.35 ± 0.01 MPa√m with a very flat cleavage surface exhibited during both fracture toughness and strength testing. SCG was significant on the {111} plane with a power law exponent of n = 30 ± 8. For engineering purposes, SCG was insignificant on the {100} and {110} planes with n > 75. The facture surfaces have distinct patterns that are indicative of the cleavage plane. Biaxial testing with disks implies that design for general multiaxial states should be based on {111} strength and crack growth properties.

© 2023 Society of Photo-Optical Instrumentation Engineers (SPIE)
Jonathan Salem, Richard Rogers, and Charles He "Crack propagation in calcium fluoride single crystals," Optical Engineering 62(7), 077102 (7 July 2023). https://doi.org/10.1117/1.OE.62.7.077102
Received: 19 February 2023; Accepted: 14 June 2023; Published: 7 July 2023
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KEYWORDS
Crystals

Calcium

Fluoride

Supercontinuum generation

Mirrors

Elasticity

Optical engineering

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