45
Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Embed Size (px)

Citation preview

Page 1: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Collisions and fractures

Michel Frémond,University of Roma Tor Vergata,

Laboratorio Lagrangewith

E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Page 2: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

obstacleU

U

Positions of the fractures are unknown

Page 3: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Collision of a point and a fixed plane

The system {Point U Plane} is deformable

Velocity of defomation:

The relative velocity of the point with respect to the plane

We assume collisions are instantaneous

Page 4: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Virtual work of the acceleration force

Actual work

The internal force is defined by its virtual work:

A linear function of the velocity of deformation

Page 5: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Virtual work of the exterior force

Principle of virtual work gives the equation of motion

Page 6: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Constitutive law is needed for the internal percussion

Second law of thermodynamics

Experiments give the answer

Page 7: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 8: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 9: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 10: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

or the Coulomb’s constitutive law in agreement with experiments

Page 11: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

The first law of thermodynamics?The temperature is discontinuous

The theory answers the question,

Does a warm rain droplet turns into ice when falling on a deeply frozen soil?

Page 12: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Collisions of three balls on a plane

at rest

incoming

θ

Multiple collisions of rigid bodies

Velocities after

collision

Page 13: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Collisions of three balls on a plane

at rest

incoming

θMain Ideas:

• The system is deformable

Multiple collisions of rigid bodies

Page 14: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Collision of three balls on a plane

Multiple collisions of rigid bodies

θMain Ideas:

• The system is deformable

• At a distance velocity of deformation

at rest

incoming

Page 15: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Velocities of deformation

O1 O2

O3

AB

e1

e2

e3

S1 S2 S3

A B

(a) (b)

Derivative wrt time of d2AB

Page 16: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Collisions of three balls on a plane

Properties

Existence and uniqueness of solution

Easy numerical method to find the solution

The predictive theory accounts for the physical properties of multiple collisions

Few parameters, identifiable with simple experiments

Page 17: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

3D Examples

Carreau effect: before collision, ball 1 angular velocity = [0,-10,0], linear velocity = [0.5,0,-1]

xy

z

Page 18: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

3D Examples

x

z

Carreau effect: before collision, ball 1 angular velocity = [0,-10,0], linear velocity = [0.5,0,-1]

Page 19: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Collisions of deformable solids

Velocities of deformation

Page 20: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Virtual work of the interior forces

Equations of Motion

Page 21: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 22: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 23: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 24: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

Collisions of solids and liquids

Belly flop of a diver

Skipping stones on the still water of a lake

Page 25: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 26: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 27: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 28: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 29: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 30: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

obstacleU

U

Positions of the fractures are unknown

Page 31: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

The velocities are discontinuous:

with respect to time

)()( xUxU

with respect to space

)()()()()( xUxUxUxUxU lr

N

rightleft

Page 32: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 33: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 34: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 35: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

There are closed form solutions for 1-D problems:

A stone is tied to a chandelier.

Page 36: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 37: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

The impenetrability condition is taken into account by

.0)( Udiv

This is an old idea of Jean Jacques Moreau.

CRAS, 259, 1965, p. 3948-3950, Sur la naissance de la cavitation dans une conduite.

Journal de Mécanique, 5, 1966, p. 439-470, Principes extrémaux pour le problème de la naissance de la cavitation.

Page 38: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 39: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 40: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 41: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

The damage after collision

DivU after collision

Page 42: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

3.125 /U m s

1.001.001.000.990.990.990.980.980.980.980.97

6.25 /U m s div U

1211109876543210

10.90.80.70.60.50.40.30.20.10

divU

Effect of the velocity

Page 43: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi
Page 44: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi

We have a schematic description of this phenomenon with 7 parameters

Page 45: Collisions and fractures Michel Frémond, University of Roma Tor Vergata, Laboratorio Lagrange with E. Bonetti, F. Caselli, E. Dimnet, F. Freddi