Related Experiment Video
Updated: Sep 23, 2025

Author Spotlight: Enhancing Fiber Composite Laminate Quality with the Wet Hand Lay-Up/Vacuum Bag Process
Published on: June 30, 2023
Fracture Toughness of Moldable Low-Temperature Carbonized Elastomer-Based Composites Filled with Shungite and Short
Semen D Ignatyev1, Eugene S Statnik2, Dmitriy Yu Ozherelkov3
1Laboratory of Functional Polymer Materials, NUST MISiS, 119049 Moscow, Russia.
Abstract:
This work evaluated the fracture toughness of the low-temperature carbonized elastomer-based composites filled with shungite and short carbon fibers. The effects of the carbonization temperature and filler content on the critical stress intensity factor (K1) were examined. The K1 parameter was obtained using three-point bending tests for specimens with different l/b ratio (notch depth to sample thickness) ranging from 0.2 to 0.4. Reliable detection of the initiation and propagation of cracks was achieved using an acoustic sensor was attached to the samples during the bending test. The critical stress intensity factor was found to decrease linearly with increasing carbonization temperature. As the temperature increased from 280 to 380 °C, the K1 parameter was drastically reduced from about 5 to 1 MPa·m1/2 and was associated with intense outgassing during the carbonization step that resulted in sample porosity. The carbon fiber addition led to some incremental toughening; however, it reduced the statistical dispersion of the K1 values.
Related Concept Videos
Toughness and Hardness of Aggregate
Stress-Strain Diagram - Brittle Materials
Abrasion Resistance of Concrete
One such test is the revolving disc test, where three plates...
Fiber Reinforced Concrete
Shrinkage in Concrete
When concrete is still in its plastic state, it can undergo a decrease in volume by about 1% of its absolute volume. This decrease is known as plastic shrinkage. It arises either...
Tensile Strength Considerations of Concrete
The dimensions and shape of a concrete specimen...

