![]() ![]() A Wright Method and the Chart Blending Method Provides Cold-Cranking Simulator (CCS) and Mini- Rotary Viscometer (MRV) viscosity calculations Calculates conversions between centistokes and Saybolt or Krebs units Enables VI calculations from kinematic viscosity measurements at any two temperatures Generates kinematic viscosity interpolation reports, and displays SAE and ISO VG Lubricant Specifications tables Provides an interface for analysis of Cold-Cranking Simulator and Mini-Rotary Viscometer data Provides temperature probe constant calculations. Performs oil blending calculations using the W. Whether you’re working with coatings, lubricants, pottings, encapsulants, or sealers, our Viscosity Calculator and Viscosity Conversion Table are user-friendly tools for converting the viscosity of any industrial fluid from one unit of measurement to another. The version 2 release of VISDISK has added a graphing capability and an NBS “best-fit” computation that analyzes multiple kinematic viscosity data points and selects the optimum viscosity curve for the sample data provided. In fact, this rate of momentum flow can be calculated from a simple kinetic picture of the gas: remember the molecules have about a thousand times more room. Weve Made Viscosity Conversion Simple and Convenient. Test data can also be used to generate a complete interpolation report at temperature increments specified by the user. ![]() The velocity of the sphere, combined with the relative densities of the sphere and the liquid, can be used to calculate the viscosity of the liquid. An interpolation component calculates viscosity at any specified temperature or temperature at a desired viscosity. You can measure the viscosity of a liquid by measuring the velocity of a sphere as it falls through the liquid. VISDISK facilitates calculation/verification of kinematic viscosity by providing a data table for input, and then performing complex viscosity and density calculations. VISDISK also provides supporting data analysis capability for several equipment items manufactured by CANNON, including the PolyVISC, Cold-Cranking Simulator (CCS), Bending-Beam Rheometer, and the CANNON Mini-Rotary Viscometer (CMRV). ![]() The VISDISK program brings computerized solutions to many difficult computational problems associated with kinematic viscosity determination. The model could calculate the viscosity very reliably over the entire composition, temperature and viscosity value ranges studied in the work, even for. ![]()
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