Kilopascals to Pounds per Square Inch
1 Kilopascal equals 0.145038 Pounds per Square Inch using exact pascal-based stress definitions.
Direct Answer
1 Kilopascal equals 0.145038 Pounds per Square Inch
This conversion uses exact pascal-based stress definitions.
For 0.1 Kilopascals, the result equals 0.014504 Pounds per Square Inch.
Converter Calculator
0.145038 Pounds per Square Inch (psi)
SwitchExplanation
Formula: Pounds per Square Inch = Kilopascals × 0.145038. Why: this is a cross-system stress conversion. The calculator normalizes the value through pascals, then applies the exact target-unit constant for consistent structural and materials analysis.
Kilopascals (kPa): a stress unit equal to 1,000 pascals, used for lower-range engineering and process-scale stress values.
Pounds per square inch (psi): an imperial stress unit widely used in structural, mechanical, and materials specifications.
This route is useful when translating stress values across SI, metric engineering, and imperial conventions so design calculations, datasheets, and material references stay comparable.
This conversion is purely multiplicative because both units reduce through pascals using fixed stress constants with no offset.
Common Conversion Values
| Kilopascals (kPa) | Pounds per Square Inch (psi) |
|---|---|
| 0.1 | 0.014504 |
| 0.5 | 0.072519 |
| 1 | 0.145038 |
| 5 | 0.725189 |
| 10 | 1.45 |
| 14.7 | 2.132 |
| 29.92 | 4.34 |
| 100 | 14.504 |
| 101.325 | 14.696 |
| 1,000 | 145.038 |
Frequently Asked Questions
How many pounds per square inch are in 1 kilopascal?
1 Kilopascal equals 0.14503773773 Pounds per Square Inch on this page.
What reference model does this Kilopascals to Pounds per Square Inch page use?
This route uses exact pascal-based stress definitions, so the direct answer, calculator, table, and FAQ stay aligned on the same fixed stress relationship.
Can I use decimal values for Kilopascals to Pounds per Square Inch?
Yes. Decimal inputs are supported for Kilopascals to Pounds per Square Inch, and the mirror direction keeps inverse assumptions aligned.