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velagapudi ramakrishna siddhartha engineering college (vr siddhartha engineering college), vijayawada
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Total volume of liquid displaced in hydraulic cylinder Solution

STEP 0: Pre-Calculation Summary
Formula Used
total_volume = Area of ram*Distance moved by weight
V = A*D
This formula uses 2 Variables
Variables Used
Area of ram - Area of ram is defined as the area covered by the large ram in which a piston or plunger is displaced by the pressure of a fluid. (Measured in Square Meter)
Distance moved by weight - Distance moved by weight is defined as the length travelled when the weight is lifted by plunger according to the way of force acts on it . (Measured in Meter)
STEP 1: Convert Input(s) to Base Unit
Area of ram: 50 Square Meter --> 50 Square Meter No Conversion Required
Distance moved by weight: 50 Meter --> 50 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
V = A*D --> 50*50
Evaluating ... ...
V = 2500
STEP 3: Convert Result to Output's Unit
2500 Cubic Meter --> No Conversion Required
FINAL ANSWER
2500 Cubic Meter <-- Total volume
(Calculation completed in 00.000 seconds)

9 Hydraulic press Calculators

Force required at the end of the Hydraulic lever
Force_required_at_the_end_of_hydraulic_lever = Weight lifted by plunger*(Length of lever/Lift of ram)*(Area of plunger/Area of ram) Go
Weight lifted by Hydraulic press given length of lever
Weight_lifted_by_hydraulic_plunger = Force at end of lever*(Lift of ram/Length of lever)*(Area of ram/Area of plunger) Go
Work done by the hydraulic press
Work_done_by_the_hydraulic_press_per_second = (Weight lifted by plunger*Distance Traveled)/Time Go
Force acting on hydraulic plunger
Force_acting_on_hydraulic_plunger = (Weight lifted by plunger*Area of plunger)/Area of ram Go
Weight lifted by hydraulic press
Weight_lifted_by_hydraulic_plunger = (Force acting on plunger*Area of ram)/Area of plunger Go
Number of strokes performed by hydraulic plunger or pump
Number_of_strokes_performed_by_hydraulic_plunger_or_pump = Total volume of liquid displaced/Volume displaced per stroke Go
Mechanical advantage of hydraulic press in terms of weight and force
mechanical_advantage = Weight lifted by plunger/Force acting on plunger Go
Total volume of liquid displaced in hydraulic cylinder
total_volume = Area of ram*Distance moved by weight Go
Leverage of the Hydraulic press
leverage = Lift of ram/Length of lever Go

Total volume of liquid displaced in hydraulic cylinder Formula

total_volume = Area of ram*Distance moved by weight
V = A*D

What is total volume of a displaced fluid ?

The total volume of displaced fluid is equivalent to the volume of a cylinder fully immersed in a fluid or to that fraction of the volume below the surface of a cylinder partially submerged in a liquid.

What is fluid power hydraulic cylinder?

The cylinder converts pneumatic or hydraulic pressure into thrust to perform useful work. ... Both air and hydraulic cylinders come in ram, telescoping, single-acting/spring-return, double-acting, double rod end, rodless, and tandem types.

How to Calculate Total volume of liquid displaced in hydraulic cylinder?

Total volume of liquid displaced in hydraulic cylinder calculator uses total_volume = Area of ram*Distance moved by weight to calculate the Total volume, The Total volume of liquid displaced in hydraulic cylinder formula is defined as product of area of hydraulic ram and distance moved by weight. Total volume is denoted by V symbol.

How to calculate Total volume of liquid displaced in hydraulic cylinder using this online calculator? To use this online calculator for Total volume of liquid displaced in hydraulic cylinder, enter Area of ram (A) & Distance moved by weight (D) and hit the calculate button. Here is how the Total volume of liquid displaced in hydraulic cylinder calculation can be explained with given input values -> 2500 = 50*50.

FAQ

What is Total volume of liquid displaced in hydraulic cylinder?
The Total volume of liquid displaced in hydraulic cylinder formula is defined as product of area of hydraulic ram and distance moved by weight and is represented as V = A*D or total_volume = Area of ram*Distance moved by weight. Area of ram is defined as the area covered by the large ram in which a piston or plunger is displaced by the pressure of a fluid & Distance moved by weight is defined as the length travelled when the weight is lifted by plunger according to the way of force acts on it .
How to calculate Total volume of liquid displaced in hydraulic cylinder?
The Total volume of liquid displaced in hydraulic cylinder formula is defined as product of area of hydraulic ram and distance moved by weight is calculated using total_volume = Area of ram*Distance moved by weight. To calculate Total volume of liquid displaced in hydraulic cylinder, you need Area of ram (A) & Distance moved by weight (D). With our tool, you need to enter the respective value for Area of ram & Distance moved by weight and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Total volume?
In this formula, Total volume uses Area of ram & Distance moved by weight. We can use 9 other way(s) to calculate the same, which is/are as follows -
  • mechanical_advantage = Weight lifted by plunger/Force acting on plunger
  • Weight_lifted_by_hydraulic_plunger = (Force acting on plunger*Area of ram)/Area of plunger
  • Force_acting_on_hydraulic_plunger = (Weight lifted by plunger*Area of plunger)/Area of ram
  • leverage = Lift of ram/Length of lever
  • Force_required_at_the_end_of_hydraulic_lever = Weight lifted by plunger*(Length of lever/Lift of ram)*(Area of plunger/Area of ram)
  • Weight_lifted_by_hydraulic_plunger = Force at end of lever*(Lift of ram/Length of lever)*(Area of ram/Area of plunger)
  • Work_done_by_the_hydraulic_press_per_second = (Weight lifted by plunger*Distance Traveled)/Time
  • total_volume = Area of ram*Distance moved by weight
  • Number_of_strokes_performed_by_hydraulic_plunger_or_pump = Total volume of liquid displaced/Volume displaced per stroke
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