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Load on screw is defined as the weight (force) of the body that is acted upon the screw threads. Check FAQs
W=Pliμ+tan(α)1-μtan(α)
W - Load on screw?Pli - Effort in lifting load?μ - Coefficient of friction at screw thread?α - Helix angle of screw?

Load on Power Screw given Effort Required to Lift Load Example

With values
With units
Only example

Here is how the Load on Power Screw given Effort Required to Lift Load equation looks like with Values.

Here is how the Load on Power Screw given Effort Required to Lift Load equation looks like with Units.

Here is how the Load on Power Screw given Effort Required to Lift Load equation looks like.

1736.9975Edit=402Edit0.15Edit+tan(4.5Edit)1-0.15Edittan(4.5Edit)
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Load on Power Screw given Effort Required to Lift Load Solution

Follow our step by step solution on how to calculate Load on Power Screw given Effort Required to Lift Load?

FIRST Step Consider the formula
W=Pliμ+tan(α)1-μtan(α)
Next Step Substitute values of Variables
W=402N0.15+tan(4.5°)1-0.15tan(4.5°)
Next Step Convert Units
W=402N0.15+tan(0.0785rad)1-0.15tan(0.0785rad)
Next Step Prepare to Evaluate
W=4020.15+tan(0.0785)1-0.15tan(0.0785)
Next Step Evaluate
W=1736.99747410779N
LAST Step Rounding Answer
W=1736.9975N

Load on Power Screw given Effort Required to Lift Load Formula Elements

Variables
Functions
Load on screw
Load on screw is defined as the weight (force) of the body that is acted upon the screw threads.
Symbol: W
Measurement: ForceUnit: N
Note: Value should be greater than 0.
Effort in lifting load
Effort in lifting load is the force required to overcome the resistance to lift the load.
Symbol: Pli
Measurement: ForceUnit: N
Note: Value should be greater than 0.
Coefficient of friction at screw thread
Coefficient of friction at screw thread is the ratio defining the force that resists the motion of the nut in relation to the threads in contact with it.
Symbol: μ
Measurement: NAUnit: Unitless
Note: Value should be between 0 to 1.
Helix angle of screw
Helix angle of screw is defined as the angle subtended between this unwound circumferential line and the pitch of the helix.
Symbol: α
Measurement: AngleUnit: °
Note: Value should be greater than 0.
tan
The tangent of an angle is a trigonometric ratio of the length of the side opposite an angle to the length of the side adjacent to an angle in a right triangle.
Syntax: tan(Angle)

Other Formulas to find Load on screw

​Go Load on Power Screw given Torque Required to Lift Load
W=(2Mtlidm)(1-μtan(α)μ+tan(α))

Other formulas in Torque Requirement in Lifting Load using Square Threaded Screw category

​Go Effort Required in Lifting load using Power Screw
Pli=W(μ+tan(α)1-μtan(α))
​Go Helix Angle of Power Screw given Effort Required to Lift Load
α=atan(Pli-WμPliμ+W)
​Go Coefficient of Friction of Power Screw given Effort Required to Lift Load
μ=Pli-Wtan(α)W+Plitan(α)
​Go Torque Required to Lift Load given Effort
Mtli=Plidm2

How to Evaluate Load on Power Screw given Effort Required to Lift Load?

Load on Power Screw given Effort Required to Lift Load evaluator uses Load on screw = Effort in lifting load/((Coefficient of friction at screw thread+tan(Helix angle of screw))/(1-Coefficient of friction at screw thread*tan(Helix angle of screw))) to evaluate the Load on screw, Load on Power Screw given Effort Required to Lift Load formula is defined as a heavy or a bulky object that requires effort to move or lift the load. The effort is an applied force to bring desired change to the position (push or lift) of the load. Load on screw is denoted by W symbol.

How to evaluate Load on Power Screw given Effort Required to Lift Load using this online evaluator? To use this online evaluator for Load on Power Screw given Effort Required to Lift Load, enter Effort in lifting load (Pli), Coefficient of friction at screw thread (μ) & Helix angle of screw (α) and hit the calculate button.

FAQs on Load on Power Screw given Effort Required to Lift Load

What is the formula to find Load on Power Screw given Effort Required to Lift Load?
The formula of Load on Power Screw given Effort Required to Lift Load is expressed as Load on screw = Effort in lifting load/((Coefficient of friction at screw thread+tan(Helix angle of screw))/(1-Coefficient of friction at screw thread*tan(Helix angle of screw))). Here is an example- 1736.997 = 402/((0.15+tan(0.0785398163397301))/(1-0.15*tan(0.0785398163397301))).
How to calculate Load on Power Screw given Effort Required to Lift Load?
With Effort in lifting load (Pli), Coefficient of friction at screw thread (μ) & Helix angle of screw (α) we can find Load on Power Screw given Effort Required to Lift Load using the formula - Load on screw = Effort in lifting load/((Coefficient of friction at screw thread+tan(Helix angle of screw))/(1-Coefficient of friction at screw thread*tan(Helix angle of screw))). This formula also uses Tangent (tan) function(s).
What are the other ways to Calculate Load on screw?
Here are the different ways to Calculate Load on screw-
  • Load on screw=(2*Torque for lifting load/Mean Diameter of Power Screw)*((1-Coefficient of friction at screw thread*tan(Helix angle of screw))/(Coefficient of friction at screw thread+tan(Helix angle of screw)))OpenImg
Can the Load on Power Screw given Effort Required to Lift Load be negative?
No, the Load on Power Screw given Effort Required to Lift Load, measured in Force cannot be negative.
Which unit is used to measure Load on Power Screw given Effort Required to Lift Load?
Load on Power Screw given Effort Required to Lift Load is usually measured using the Newton[N] for Force. Exanewton[N], Meganewton[N], Kilonewton[N] are the few other units in which Load on Power Screw given Effort Required to Lift Load can be measured.
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