The shear modulus, also known as the modulus of rigidity, measures how much a material can deform or change its shape when subjected to shear stress. In simpler terms, it quantifies a substance’s resistance to being twisted or sheared.
For instance, Imagine holding a book with one hand on the top and the other on the bottom, then trying to tilt or deform it by sliding your hands in opposite directions. The shear modulus characterises how much the book resists this kind of deformation caused by shear stress.
The shear modulus (G) is mathematically related to the shear stress (τ) and the shear strain (γ) in a material. The formula for shear modulus is given by:
G=τ/γ
Where:
This equation expresses how the shear modulus quantifies the ratio of shear stress to shear strain, representing a material’s resistance to deformation under shear loading.
The unit of shear modulus (G) is the pascal (Pa).
Bio-based epoxy resins are eco-friendly alternatives to traditional, petroleum-based epoxy resins. These resins are important…
Modulus is defined as the slope of the straight-line section of a stress (σ) versus…
The rank of a matrix corresponds to the count of linearly independent rows or columns…
The critical strain energy release rate (Gc) is often associated with linear elastic fracture mechanics…
The equation of flow of heat represents Fourier's Law of Heat Conduction, describing the heat…
Real Expansion: Real expansion refers to the actual increase in volume of a substance due…