Infeed given Constant for Grinding Wheel Solution

STEP 0: Pre-Calculation Summary
Formula Used
Feed = (Maximum Undeformed Chip Thickness^2*Surface Speed of Wheel/(Constant for Particular Grinding Wheel*Surface Speed of Workpiece))^2
fin = (tgMax^2*Vt/(K*Vw))^2
This formula uses 5 Variables
Variables Used
Feed - (Measured in Meter) - The Feed is the distance the cutting tool advances along the length of the work for every revolution of the spindle.
Maximum Undeformed Chip Thickness - (Measured in Meter) - Maximum Undeformed Chip Thickness is the thickest layer of material a single abrasive grain on the grinding wheel aims to remove before it breaks the material and forms a chip.
Surface Speed of Wheel - (Measured in Meter per Second) - Surface Speed of Wheel refers to the linear velocity of a point on the grinding wheel's circumference relative to the workpiece during grinding operation.
Constant for Particular Grinding Wheel - Constant for Particular Grinding Wheel is the constant value for the specific grinding wheel used in grinding operation. This constant depends on different grinding wheel parameters.
Surface Speed of Workpiece - (Measured in Meter per Second) - Surface Speed of Workpiece refers to the linear velocity of a point on the workpiece's circumference relative to the grinding wheel.
STEP 1: Convert Input(s) to Base Unit
Maximum Undeformed Chip Thickness: 300 Millimeter --> 0.3 Meter (Check conversion ​here)
Surface Speed of Wheel: 50 Meter per Second --> 50 Meter per Second No Conversion Required
Constant for Particular Grinding Wheel: 13.32346 --> No Conversion Required
Surface Speed of Workpiece: 5.9 Meter per Second --> 5.9 Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
fin = (tgMax^2*Vt/(K*Vw))^2 --> (0.3^2*50/(13.32346*5.9))^2
Evaluating ... ...
fin = 0.00327707936568718
STEP 3: Convert Result to Output's Unit
0.00327707936568718 Meter -->3.27707936568718 Millimeter (Check conversion ​here)
FINAL ANSWER
3.27707936568718 3.277079 Millimeter <-- Feed
(Calculation completed in 00.004 seconds)

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Infeed given Constant for Grinding Wheel Formula

​LaTeX ​Go
Feed = (Maximum Undeformed Chip Thickness^2*Surface Speed of Wheel/(Constant for Particular Grinding Wheel*Surface Speed of Workpiece))^2
fin = (tgMax^2*Vt/(K*Vw))^2

How often should you dress a grinding wheel?

Dull dressing tools glaze the wheel face to produce a dull wheel. To maintain a well-defined and sharp diamond point, rotate the single-point or cone-point tool 1/8 turn at regular intervals. The frequency of these rotations will depend on how often you dress, but a minimum of once per day is a good rule of thumb.

How to Calculate Infeed given Constant for Grinding Wheel?

Infeed given Constant for Grinding Wheel calculator uses Feed = (Maximum Undeformed Chip Thickness^2*Surface Speed of Wheel/(Constant for Particular Grinding Wheel*Surface Speed of Workpiece))^2 to calculate the Feed, Infeed given Constant for Grinding Wheel formula determines the controlled movement of the grinding wheel towards the workpiece to achieve a desired depth of cut or removal of material using grinding wheel constant 'K', which depends upon various parameters of grinding wheel like - material of grinding wheel, size and shape of grinding wheel etc. Feed is denoted by fin symbol.

How to calculate Infeed given Constant for Grinding Wheel using this online calculator? To use this online calculator for Infeed given Constant for Grinding Wheel, enter Maximum Undeformed Chip Thickness (tgMax), Surface Speed of Wheel (Vt), Constant for Particular Grinding Wheel (K) & Surface Speed of Workpiece (Vw) and hit the calculate button. Here is how the Infeed given Constant for Grinding Wheel calculation can be explained with given input values -> 3277.079 = (0.3^2*50/(13.32346*5.9))^2.

FAQ

What is Infeed given Constant for Grinding Wheel?
Infeed given Constant for Grinding Wheel formula determines the controlled movement of the grinding wheel towards the workpiece to achieve a desired depth of cut or removal of material using grinding wheel constant 'K', which depends upon various parameters of grinding wheel like - material of grinding wheel, size and shape of grinding wheel etc and is represented as fin = (tgMax^2*Vt/(K*Vw))^2 or Feed = (Maximum Undeformed Chip Thickness^2*Surface Speed of Wheel/(Constant for Particular Grinding Wheel*Surface Speed of Workpiece))^2. Maximum Undeformed Chip Thickness is the thickest layer of material a single abrasive grain on the grinding wheel aims to remove before it breaks the material and forms a chip, Surface Speed of Wheel refers to the linear velocity of a point on the grinding wheel's circumference relative to the workpiece during grinding operation, Constant for Particular Grinding Wheel is the constant value for the specific grinding wheel used in grinding operation. This constant depends on different grinding wheel parameters & Surface Speed of Workpiece refers to the linear velocity of a point on the workpiece's circumference relative to the grinding wheel.
How to calculate Infeed given Constant for Grinding Wheel?
Infeed given Constant for Grinding Wheel formula determines the controlled movement of the grinding wheel towards the workpiece to achieve a desired depth of cut or removal of material using grinding wheel constant 'K', which depends upon various parameters of grinding wheel like - material of grinding wheel, size and shape of grinding wheel etc is calculated using Feed = (Maximum Undeformed Chip Thickness^2*Surface Speed of Wheel/(Constant for Particular Grinding Wheel*Surface Speed of Workpiece))^2. To calculate Infeed given Constant for Grinding Wheel, you need Maximum Undeformed Chip Thickness (tgMax), Surface Speed of Wheel (Vt), Constant for Particular Grinding Wheel (K) & Surface Speed of Workpiece (Vw). With our tool, you need to enter the respective value for Maximum Undeformed Chip Thickness, Surface Speed of Wheel, Constant for Particular Grinding Wheel & Surface Speed of Workpiece and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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