Density conversion

Convert Pound per cubic inch to Kilogram per cubic meter

1 pound per cubic inch (lb/in³) equals 27,679.904710203125 kilogram per cubic meter (kg/m³). Enter any value below to convert from lb/in³ to kg/m³.

Enter a value and choose units. Results update instantly.

1 lb/in³ = 27,679.9047102031 kg/m³

All Density units

From 1 lb/in³
UnitValue
Kilogram per cubic meter kg/m³ 27,679.9047102031
Gram per cubic centimeter g/cm³ 27.6799047102
Gram per liter g/L 27,679.9047102031
Kilogram per liter kg/L 27.6799047102
Pound per cubic foot lb/ft³ 1,728
Pound per cubic inch lb/in³ 1
Ounce per cubic inch oz/in³ 16
Recent conversions
  1. Your recent conversions stay on this device.

Formula

lb/in³ to kg/m³ conversion formula

Use this relationship for a direct conversion:

kg/m³ = lb/in³ x 27,679.904710203125

Worked example

2 lb/in³ = 55,359.8094204063 kg/m³.

Unit factors are exact where underlying mass and length definitions are exact.

Quick reference

Pound per cubic inch to Kilogram per cubic meter table

Pound per cubic inch (lb/in³)Kilogram per cubic meter (kg/m³)
0.01276.799047102
0.12,767.9904710203
127,679.9047102031
255,359.8094204063
5138,399.5235510156
10276,799.0471020312
25691,997.6177550781
501,383,995.2355101563
1002,767,990.4710203125
1,00027,679,904.7102031261

From unit

About the pound per cubic inch

International pound divided by cubic international inch.

Symbol: lb/in³

To unit

About the kilogram per cubic meter

The coherent SI density unit.

Symbol: kg/m³

Keep converting

Related conversions

Source

Conversion standard

Definitions are checked against NIST SP 811: Density units. Calculations use full internal precision before display rounding.

View the complete density converter

Questions

lb/in³ to kg/m³ FAQ

How do you convert pound per cubic inch to kilogram per cubic meter?

Use the formula kg/m³ = lb/in³ x 27,679.904710203125. 1 pound per cubic inch (lb/in³) equals 27,679.904710203125 kilogram per cubic meter (kg/m³).

Is the lb/in³ to kg/m³ conversion exact?

Unit factors are exact where underlying mass and length definitions are exact.