Composition Factor from Fluidity Spiral Length Formula

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Composition Factor From Fluid is refers to a parameter indicating the fluidity of a material during casting processes, crucial for assessing its ability to fill intricate mold cavities effectively. Check FAQs
CFf=389.6+SLf-0.228T37.846
CFf - Composition Factor From Fluid?SLf - Fluidity Spiral Length?T - Pouring Temperature of Molten Metal?

Composition Factor from Fluidity Spiral Length Example

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With units
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Here is how the Composition Factor from Fluidity Spiral Length equation looks like with Values.

Here is how the Composition Factor from Fluidity Spiral Length equation looks like with Units.

Here is how the Composition Factor from Fluidity Spiral Length equation looks like.

5.6376Edit=389.6+0.04Edit-0.228500Edit37.846
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Composition Factor from Fluidity Spiral Length Solution

Follow our step by step solution on how to calculate Composition Factor from Fluidity Spiral Length?

FIRST Step Consider the formula
CFf=389.6+SLf-0.228T37.846
Next Step Substitute values of Variables
CFf=389.6+0.04m-0.228500°C37.846
Next Step Convert Units
CFf=389.6+0.04m-0.228773.15K37.846
Next Step Prepare to Evaluate
CFf=389.6+0.04-0.228773.1537.846
Next Step Evaluate
CFf=5.6376314537864
LAST Step Rounding Answer
CFf=5.6376

Composition Factor from Fluidity Spiral Length Formula Elements

Variables
Composition Factor From Fluid
Composition Factor From Fluid is refers to a parameter indicating the fluidity of a material during casting processes, crucial for assessing its ability to fill intricate mold cavities effectively.
Symbol: CFf
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Fluidity Spiral Length
Fluidity Spiral Length is measured for the fluidity which is represented by the length of the spiral solidified.
Symbol: SLf
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Pouring Temperature of Molten Metal
Pouring Temperature of Molten Metal is the temperature at which the molten metal is poured into the casting mold, impacting the solidification rate.
Symbol: T
Measurement: TemperatureUnit: °C
Note: Value should be greater than 0.

Other formulas in Fluidity Test category

​Go Fluidity spiral length
FSL=37.846CF+(0.228Tpc)-389.6
​Go Composition factor for gray cast iron
CF=C%+(0.25Si%)+(0.5P%)
​Go Pouring Temperature from Fluidity Spiral Length
Tp=389.6+F.S.L-37.846C.F0.228

How to Evaluate Composition Factor from Fluidity Spiral Length?

Composition Factor from Fluidity Spiral Length evaluator uses Composition Factor From Fluid = (389.6+Fluidity Spiral Length-0.228*Pouring Temperature of Molten Metal)/37.846 to evaluate the Composition Factor From Fluid, Composition Factor from Fluidity Spiral Length is a parameter used in foundry practice to adjust the composition of the metal alloy, particularly in cast iron, to achieve the desired fluidity during casting. Composition Factor From Fluid is denoted by CFf symbol.

How to evaluate Composition Factor from Fluidity Spiral Length using this online evaluator? To use this online evaluator for Composition Factor from Fluidity Spiral Length, enter Fluidity Spiral Length (SLf) & Pouring Temperature of Molten Metal (T) and hit the calculate button.

FAQs on Composition Factor from Fluidity Spiral Length

What is the formula to find Composition Factor from Fluidity Spiral Length?
The formula of Composition Factor from Fluidity Spiral Length is expressed as Composition Factor From Fluid = (389.6+Fluidity Spiral Length-0.228*Pouring Temperature of Molten Metal)/37.846. Here is an example- 5.637631 = (389.6+0.04-0.228*773.15)/37.846.
How to calculate Composition Factor from Fluidity Spiral Length?
With Fluidity Spiral Length (SLf) & Pouring Temperature of Molten Metal (T) we can find Composition Factor from Fluidity Spiral Length using the formula - Composition Factor From Fluid = (389.6+Fluidity Spiral Length-0.228*Pouring Temperature of Molten Metal)/37.846.
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