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Axial Elongation Calculator — result sheet
Calculate ideal axial elongation from force, member length, cross-sectional area, and Young’s modulus.
Inputs used
Results
Visual chart
Breakdown
Calculation steps
Returned data table
Formula and methodology
Formula: Elongation=force×length/(area×Young’s modulus).
The result is the small-strain axial extension of a uniform member under a supplied load and modulus.
This result follows the calculator's declared inputs, precision, validation boundaries, and model limits.
Input contract
- Axial force — minimum 0; maximum 1.0E+15
- Original length — minimum 1.0E-6; maximum 1000000
- Cross-sectional area — minimum 1.0E-6; maximum 1000000
- Young’s modulus — minimum 1.0E-6; maximum 1.0E+15
Worked example
| Input | Value |
|---|---|
| Axial force | 10000 |
| Original length | 2 |
| Cross-sectional area | 0.0001 |
| Young’s modulus | 200000000000 |
Elongation =0.001 m.
Assumptions and limits
- Force, length, area, and modulus use compatible units.
- The member is uniform and the load is axial and centered.
- Bending, buckling, plasticity, joints, stress concentrations, self-weight, and fatigue are not modeled.
Calculator note
Source and methodology
Use the official WorldCalculate methodology policy for the source, formula, precision, and boundary standards behind this calculator.
Planning estimate, not financial, medical, legal, or professional advice. © WorldCalculate — reuse with attribution. Built and curated by Hassan ALRowaie.
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