Has been some confusion on the board, particularly when discussing the "Harman Index" as to Centipoise viscosity and Cst Viscosity.
Look at a J300 table (old now, anyone got a link to the new one with the 12s and 8s in it ???)
Cold cranking and HTHS are in Cp, while KV40 and Kv100 ... the former are called the "dynamic" viscosity, and the latter "kinematic". The dynamic, is the KV times the density at the test point.
What's the difference ?
Because a lot of SI units are based around fundamental properties of water, for a fluid of SG=1, they are the same...e.g. Engineering Toolbox conversion table but only when density is 1.
So if you are wanting to have cst equivalence of the CP viscosities, you have to divide the Cp by the density of the fluid at that temperature...To convert the cst to Cp, multiply by the density.
So to explain what was going on This thread
Originally Posted By: Shannow
Basically, use the KV40 and KV100 into the widman operational viscosity calculator, and calculate for 150C...multiply by density, and 0.885.
The 0.885 is the density corrector for 15C to 150C.
Look at a J300 table (old now, anyone got a link to the new one with the 12s and 8s in it ???)
Cold cranking and HTHS are in Cp, while KV40 and Kv100 ... the former are called the "dynamic" viscosity, and the latter "kinematic". The dynamic, is the KV times the density at the test point.
What's the difference ?
Because a lot of SI units are based around fundamental properties of water, for a fluid of SG=1, they are the same...e.g. Engineering Toolbox conversion table but only when density is 1.
So if you are wanting to have cst equivalence of the CP viscosities, you have to divide the Cp by the density of the fluid at that temperature...To convert the cst to Cp, multiply by the density.
So to explain what was going on This thread
Originally Posted By: Shannow
Basically, use the KV40 and KV100 into the widman operational viscosity calculator, and calculate for 150C...multiply by density, and 0.885.
The 0.885 is the density corrector for 15C to 150C.