Work Done by Hydraulic Press Solution

STEP 0: Pre-Calculation Summary
Formula Used
Work Done by Hydraulic Press per Second = (Weight Lifted by Plunger*Distance Moved by Weight in Hydraulic Press)/Time to Move Weight in Press
W = (Wp*D)/T
This formula uses 4 Variables
Variables Used
Work Done by Hydraulic Press per Second - (Measured in Joule) - Work Done by Hydraulic Press per Second is defined as the amount of energy transferred or converted per second by the hydraulic press.
Weight Lifted by Plunger - (Measured in Newton) - Weight Lifted by Plunger is defined as the amount of load that is lifted by the plunger when a certain amount of force is acting on it.
Distance Moved by Weight in Hydraulic Press - (Measured in Meter) - Distance Moved by Weight in Hydraulic Press is defined as the length travelled when the weight is lifted by plunger according to the way of force acts on it.
Time to Move Weight in Press - (Measured in Second) - Time to Move Weight in Press is the amount of time that is required to move the weight in an hydraulic press.
STEP 1: Convert Input(s) to Base Unit
Weight Lifted by Plunger: 1450 Newton --> 1450 Newton No Conversion Required
Distance Moved by Weight in Hydraulic Press: 1.18 Meter --> 1.18 Meter No Conversion Required
Time to Move Weight in Press: 650 Second --> 650 Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
W = (Wp*D)/T --> (1450*1.18)/650
Evaluating ... ...
W = 2.63230769230769
STEP 3: Convert Result to Output's Unit
2.63230769230769 Joule --> No Conversion Required
FINAL ANSWER
2.63230769230769 2.632308 Joule <-- Work Done by Hydraulic Press per Second
(Calculation completed in 00.004 seconds)

Credits

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Created by Shareef Alex
velagapudi ramakrishna siddhartha engineering college (vr siddhartha engineering college), vijayawada
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Verified by Ravi Khiyani
Shri Govindram Seksaria Institute of Technology and Science (SGSITS), Indore
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Hydraulic Press Calculators

Weight Lifted by Hydraulic Press
​ LaTeX ​ Go Weight Lifted by Plunger = (Force on Hydraulic Press Plunger*Area of Hydraulic Ram)/Area of Plunger of Hydraulic Press
Force Acting on Hydraulic Plunger
​ LaTeX ​ Go Force on Hydraulic Press Plunger = Weight Lifted by Plunger*Area of Plunger of Hydraulic Press/Area of Hydraulic Ram
Mechanical Advantage of Hydraulic Press given Weight and Force
​ LaTeX ​ Go Mechanical Advantage of Hydraulic Press = Weight Lifted by Plunger/Force on Hydraulic Press Plunger
Mechanical Advantage of Hydraulic Press
​ LaTeX ​ Go Mechanical Advantage of Hydraulic Press = Area of Hydraulic Ram/Area of Plunger of Hydraulic Press

Work Done by Hydraulic Press Formula

​LaTeX ​Go
Work Done by Hydraulic Press per Second = (Weight Lifted by Plunger*Distance Moved by Weight in Hydraulic Press)/Time to Move Weight in Press
W = (Wp*D)/T

What is hydraulic press?

A hydraulic press is a machine press using a hydraulic cylinder to generate a compressive force.[1] It uses the hydraulic equivalent of a mechanical lever, and was also known as a Bramah press after the inventor, Joseph Bramah, of England.

What is work done ?

Work done is defined as product of the force and the distance over which the force is applied. Work is done when a force is applied to an object and the object is moved through a distance.

How to Calculate Work Done by Hydraulic Press?

Work Done by Hydraulic Press calculator uses Work Done by Hydraulic Press per Second = (Weight Lifted by Plunger*Distance Moved by Weight in Hydraulic Press)/Time to Move Weight in Press to calculate the Work Done by Hydraulic Press per Second, Work Done by Hydraulic Press formula is defined as the energy transferred or transformed from one form to another when a hydraulic press is operated, which is a crucial aspect in hydraulic machines, as it determines the overall efficiency and performance of the system. Work Done by Hydraulic Press per Second is denoted by W symbol.

How to calculate Work Done by Hydraulic Press using this online calculator? To use this online calculator for Work Done by Hydraulic Press, enter Weight Lifted by Plunger (Wp), Distance Moved by Weight in Hydraulic Press (D) & Time to Move Weight in Press (T) and hit the calculate button. Here is how the Work Done by Hydraulic Press calculation can be explained with given input values -> 2.632308 = (1450*1.18)/650.

FAQ

What is Work Done by Hydraulic Press?
Work Done by Hydraulic Press formula is defined as the energy transferred or transformed from one form to another when a hydraulic press is operated, which is a crucial aspect in hydraulic machines, as it determines the overall efficiency and performance of the system and is represented as W = (Wp*D)/T or Work Done by Hydraulic Press per Second = (Weight Lifted by Plunger*Distance Moved by Weight in Hydraulic Press)/Time to Move Weight in Press. Weight Lifted by Plunger is defined as the amount of load that is lifted by the plunger when a certain amount of force is acting on it, Distance Moved by Weight in Hydraulic Press is defined as the length travelled when the weight is lifted by plunger according to the way of force acts on it & Time to Move Weight in Press is the amount of time that is required to move the weight in an hydraulic press.
How to calculate Work Done by Hydraulic Press?
Work Done by Hydraulic Press formula is defined as the energy transferred or transformed from one form to another when a hydraulic press is operated, which is a crucial aspect in hydraulic machines, as it determines the overall efficiency and performance of the system is calculated using Work Done by Hydraulic Press per Second = (Weight Lifted by Plunger*Distance Moved by Weight in Hydraulic Press)/Time to Move Weight in Press. To calculate Work Done by Hydraulic Press, you need Weight Lifted by Plunger (Wp), Distance Moved by Weight in Hydraulic Press (D) & Time to Move Weight in Press (T). With our tool, you need to enter the respective value for Weight Lifted by Plunger, Distance Moved by Weight in Hydraulic Press & Time to Move Weight in Press 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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