Stress and Material Calculators
These stress calculator and material tools cover ultimate tensile stress, angular deflection of a hollow shaft, Mohr's circle, specific work, and cable force.
Mohr’s Circle Calculator
This Mohr’s circle calculator finds the principal stresses and the maximum shear stress from a 2D…
Open calculator Stress and MaterialAngular Deflection of a Shaft Calculator
This angular deflection calculator finds how much a shaft twists under an applied torque, for solid…
Open calculator Stress and MaterialCable Force Calculator
This cable force calculator finds the tension in two symmetric support cables that hold a hanging…
Open calculator Stress and MaterialSpecific Work Calculator
This specific work calculator finds the work done per unit mass, a common quantity in thermodynamics…
Open calculator Stress and MaterialUltimate Tensile Stress Calculator
This ultimate tensile stress calculator finds the maximum stress a material withstands before failure, from the…
Open calculatorAbout Stress and Material Calculators
These stress calculator and material tools cover ultimate tensile stress, angular deflection of a hollow shaft, Mohr's circle, specific work, and cable force. Pick a tool below for an instant result with the formula.
Material and stress analysis must be precise. These tools apply the standard stress and strain equations, defining each variable so your analysis is dependable.
Calculators in this category
- Mohr's Circle Calculator
- Ultimate Tensile Stress Calculator
- Angular Deflection of a Shaft Calculator
- Specific Work Calculator
- Cable Force Calculator
Frequently Asked Questions
What can I calculate for stress and materials?
Ultimate tensile stress, angular deflection of a hollow shaft, principal stresses via Mohr's circle, specific work, and cable force. Each tool covers one task.
Are these tools free to use?
Yes. Every calculator on this page is free, needs no signup, and works in your browser on mobile and desktop.
Are the stress formulas shown?
Yes. Each page states the equation, defines load, area, and geometry, and includes a numeric example.