4 fracture toughness, 5 flexural strength, Gc kalore technical manual – GC EUROPE Kalore User Manual

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Fracture Toughness (MPa)

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Estelite Quick

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Flexural Strength (Mpa)

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Estelite Quick

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GC Kalore technical manual

6.4 Fracture Toughness

Fracture toughness, a measure of a
material’s ability to resist the propagation
of a formed crack, is defined as the
toughness against bending stress. the
toughness is calculated as the underlying
area of a stress-strain curve. a higher
value for fracture toughness implies
greater resistance to the catastrophic
propagation of cracks. KALORE
demonstrated high resistance to crack
propagation (Fig. 17).

Independent Testing - OHSU

independent testing of fracture toughness
was conducted by Dr. Ferracane at OHSU
School of Dentistry in accordance with
ASTM E399. Samples (2.5 mm x 5 mm x 25
mm) were made in stainless steel molds,
and a razor blade notch was created at
the mid-span with an a/w of 0.5 (where a
= the length of the notch and w = the
sample height). Specimens were light-
cured for 40 seconds from the top and
bottom in the triad ii unit. the samples
were stored in water at 37ºC for 24 hours
and then tested for three-point bending
(20 mm span) on a universal testing
machine at a cross-head speed of 0.254
mm/minute. the fracture toughness was
determined using the maximum load
(there was no evidence of plastic
deformation). Data was analyzed by the
ANOVA/Tukey’s test to compare the
composites (p < 0.05). The fracture
toughness of all composites was found to
be the same, except for TPH3 (Fig. 18).

6.5 Flexural Strength


The flexural strength was measured in
accordance with ISO4049:2000. KALORE
demonstrated high flexural strength
(Fig. 19).

Figure 17. Fracture toughness of various composite materials.

Source: GC Corporation.

Figure 18. Fracture toughness.

Figure 19. Flexural strength of various composite materials.

Source: GC Corporation.

a. Not statistically different (p=0.05)

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