Cylindrical Shear Spring | Online Calculator

Springs Calculators







Cylindrical Shear Spring

In this calculation, a cylindrical spring representing an elastic element with an inner diameter D1, outer diameter D2 and height H is considered.

The spring is under load F, acting in axial direction. As a result of calculations, an axial deformation Y and shear stress τ in the elastic element are determined.

For the calculation, the elastic modulus E and Poisson's ratio ν of the spring should be specified.

Cylindrical shear spring calculation
Shear spring calculation

INITIAL DATA

D2 - Elastic element outer diameter;


D1 - Elastic element inner diameter;


H - Spring height;


E - Young's modulus;


ν - Poisson's ratio;


F - Load.

RESULTS DATA

Y - Spring axial deflection;


τ - Shear stress.

Diameter (D2)

Diameter (D1)

Height (H)

Young's modulus (Е)

Poisson's ratio (ν)

Load (F)

Deflection (Y)

Shear stress (τ)

Hi, friends!

Thank you for using our site, I hope you find it useful.
There have never been, and never will be, ads or paid content here. However, I must ask for your help with hosting and domain payments. Also, your support can help us create new useful calculators :-)

You can support us through the portals:

Solana - BSsqYZjFcwq5tuiroPBRWyEZp4KxcG7JFUgiwrD8TpT9

Ethereum - 0x76aeBC7874180bF334c673268BF0e8ebDf5CC553

Bitcoin (Taproot) - bc1p9w2w8wnjm2f6c9rm0fksr5fszhv8pnt0az5tt57xfrjzf4mm3mzqxhfwwm

Bitcoin (Native Segwit) - bc1qa8xgz5g0q9n25wvcnuxrsyclz7umn66dtpkhhz

BASIC FORMULAS

Deflection:

Y = (F / 2π*H*G)*ln(D2/D1);

Shear stress:

τ = F / π*H*D1.

INITIAL DATA

D2 - Elastic element outer diameter;


D1 - Elastic element inner diameter;


H - Spring height;


E - Young's modulus;


ν - Poisson's ratio;


F - Load.

RESULTS DATA

Y - Spring axial deflection;


τ - Shear stress.

OTHER CALCULATORS

AREA MOMENTS OF INERTIA
BEAM CALCULATORS
TORSION OF BARS
CIRCULAR FLAT PLATES
BUCKLING
ELASTIC CONTACT
IMPACT LOADS
NATURAL FREQUENCIES
PRESSURED SHELLS
FLUID DYNAMIC
COMPOSITES
SPRINGS
THREAD CONNECTIONS
SHAFT CONNECTIONS
BEARINGS
DRIVES
FATIGUE
HEAT TRANSFER