SlideShare uma empresa Scribd logo
1 de 37
Chapter 9 – Stress and
Strain
BUNGEE jumping
utilizes a long elastic
strap which stretches
until it reaches a
maximum length that
is proportional to the
weight of the jumper.
The elasticity of the
strap determines the
amplitude of the
resulting vibrations. If
the elastic limit for
the strap is exceeded,
the rope will break.
Elasticity
Photo © Vol. 10
PhotoDisk/Getty
Objectives: After completion of this
ppt, you should be able to:
• Demonstrate your understanding of
elasticity, elastic limit, stress, strain, and
ultimate strength.
• Write and apply formulas for calculating
Young’s modulus, shear modulus, and
bulk modulus.
• Solve problems involving each of the
parameters in the above objectives.
Elastic Properties of Matter
An elastic body is one that returns to its original
shape after a deformation.
Golf Ball Soccer BallRubber Band
Elastic Properties of Matter
An inelastic body is one that does not return to its
original shape after a deformation.
Dough or Bread Clay Inelastic Ball
Elastic or Inelastic?
An elastic collision loses
no energy. The deform-
ation on collision is fully
restored.
In an inelastic collision,
energy is lost and the
deformation may be
permanent. (Click it.)
An Elastic Spring
A spring is an example of an elastic body that
can be deformed by stretching.
A restoring force, F, acts
in the direction opposite
the displacement of the
oscillating body.
F = -kx
x
F
Hooke’s Law
When a spring is stretched, there is a restoring
force that is proportional to the displacement.
F = -kx
The spring constant
k is a property of the
spring given by:
F
x
m
F
k
x
The spring constant k is a measure
of the elasticity of the spring.
Stress and Strain
Stress refers to the cause of a deformation, and
strain refers to the effect of the deformation.
x
F
The downward force F
causes the displacement x.
Thus, the stress is the force;
the strain is the elongation.
Types of Stress
A tensile stress occurs when
equal and opposite forces are
directed away from each other.
A compressive stress occurs
when equal and opposite
forces are directed toward
each other.
F
W
Tension
F
W
Compression
Summary of Definitions
Stress is the ratio of an applied force F to the
area A over which it acts:
Strain is the relative change in the dimensions or
shape of a body as the result of an applied stress:
F
Stress
A 2 2
N lb
: Pa or
m in.
Units
Examples: Change in length per unit length;
change in volume per unit volume.
Longitudinal Stress and Strain
L
L
A
A
F
For wires, rods, and bars,
there is a longitudinal
stress F/A that produces a
change in length per unit
length. In such cases:
F
Stress
A
L
Strain
L
Example 1. A steel wire 10 m long and
2 mm in diameter is attached to the
ceiling and a 200-N weight is attached
to the end. What is the applied stress?
L
L
A
A
F
First find area of wire:
2 2
(0.002 m)
4 4
D
A
A = 3.14 x 10-6 m2
-6 2
200 N
3.14 x 10 m
F
Stress
A
Stress
6.37 x 107 Pa
Example 1 (Cont.) A 10 m steel wire
stretches 3.08 mm due to the 200 N
load. What is the longitudinal strain?
L
L
Given: L = 10 m; L = 3.08 mm
Longitudinal Strain
3.08 x 10-4
0.00308 m
10 m
L
Srain
L
The Elastic Limit
The elastic limit is the maximum stress a body can
experience without becoming permanently deformed.
W
W
2 m
If the stress exceeds the elastic limit, the final
length will be longer than the original 2 m.
Okay
Beyond limit
F
W
2 m
F
Stress
A
The Ultimate Strength
The ultimate strength is the greatest stress a body can
experience without breaking or rupturing.
If the stress exceeds the ultimate strength,
the string breaks!
F
W
W
W
2 m
F
Stress
A W
W
Example 2. The elastic limit for steel is
2.48 x 108 Pa. What is the maximum
weight that can be supported without
exceeding the elastic limit?
L
L
A
A
F
8
2.48 x 10 Pa
F
Stress
A
Recall: A = 3.14 x 10-6 m2
F = (2.48 x 108 Pa) A
F = (2.48 x 108 Pa)(3.14 x 10-6 m2) F = 779 N
Example 2(Cont.) The ultimate strength
for steel is 4.89 x 108 Pa. What is the
maxi- mum weight that can be
supported without breaking the wire?
L
L
A
A
F
8
4.89 x 10 Pa
F
Stress
A
Recall: A = 3.14 x 10-6 m2
F = (4.89 x 108 Pa) A
F = (4.89 x 108 Pa)(3.14 x 10-6 m2) F = 1536 N
The Modulus of Elasticity
Provided that the elastic limit is not exceeded,
an elastic deformation (strain) is directly
proportional to the magnitude of the applied
force per unit area (stress).
stress
Modulus of Elasticity
strain
Example 3. In our previous example,
the stress applied to the steel wire was
6.37 x 107 Pa and the strain was 3.08 x 10-4.
Find the modulus of elasticity for steel.
L
L
7
-4
6.37 x 10 Pa
3.08 x 10
Stress
Modulus
Strain
Modulus = 207 x 109 Pa
This longitudinal modulus of elasticity is called
Young’s Modulus and is denoted by the symbol Y.
Young’s Modulus
For materials whose length is much greater than the
width or thickness, we are concerned with the
longitudinal modulus of elasticity, or Young’s
Modulus (Y).
'
longitudinal stress
Young s modulus
longitudinal strain
/
/
F A FL
Y
L L A L 2
lb
: Pa
in.
Units or
Example 4: Young’s modulus
for brass is 8.96 x 1011Pa. A
120-N weight is attached to an
8-m length of brass wire; find
the increase in length. The
diameter is 1.5 mm.
8 m
L
120 N
First find area of wire:
2 2
(0.0015 m)
4 4
D
A A = 1.77 x 10-6 m2
or
FL FL
Y L
A L AY
Example 4: (Continued)
8 m
L
120 N
Y = 8.96 x 1011 Pa; F = 120 N;
L = 8 m; A = 1.77 x 10-6 m2
F = 120 N; L = ?
or
FL FL
Y L
A L AY
-6 2 11
(120 N)(8.00 m)
(1.77 x 10 m )(8.96 x 10 Pa)
FL
L
AY
L = 0.605 mmIncrease in length:
Shear Modulus
A
F
Fl
d
A shearing stress alters only the shape of the body,
leaving the volume unchanged. For example,
consider equal and opposite shearing forces F
acting on the cube below:
The shearing force F produces a shearing
angle The angle is the strain and the
stress is given by F/A as before.
Calculating Shear Modulus
F
Stress
A
d
Strain
l
F
F
l
d A
The strain is the angle
expressed in radians:
Stress is
force per
unit area:
The shear modulus S is defined as the ratio of the
shearing stress F/A to the shearing strain :
The shear modulus:
Units are in Pascals.
F A
S
Example 5. A steel stud (S = 8.27 x 1010Pa)
1 cm in diameter projects 4 cm from the
wall. A 36,000 N shearing force is applied to
the end. What is the defection d of the stud?
d
l
F
2 2
(0.01 m)
4 4
D
A
Area: A = 7.85 x 10-5 m2
;
F A F A Fl Fl
S d
d l Ad AS
-5 2 10
(36,000 N)(0.04 m)
(7.85 x 10 m )(8.27 x 10 Pa)
d d = 0.222 mm
Volume Elasticity
Not all deformations are linear. Sometimes an applied
stress F/A results in a decrease of volume. In such
cases, there is a bulk modulus B of elasticity.
Volume stress F A
B
Volume strain V V
The bulk modulus is negative
because of decrease in V.
The Bulk Modulus
Volume stress F A
B
Volume strain V V
Since F/A is generally pressure P, we may write:
/
P PV
B
V V V
Units remain in Pascals (Pa)
since the strain is unitless.
Example 7. A hydrostatic press contains 5
liters of oil. Find the decrease in volume of
the oil if it is subjected to a pressure of
3000 kPa. (Assume that B = 1700 MPa.)
/
P PV
B
V V V
6
9
(3 x 10 Pa)(5 L)
(1.70 x 10 Pa)
PV
V
B
V = -8.82 mL
Decrease in V;
milliliters (mL):
Summary: Elastic and Inelastic
An inelastic body is one that does not return to its
original shape after a deformation.
In an inelastic collision, energy is lost and the
deformation may be permanent.
An elastic collision loses no energy. The deform-
ation on collision is fully restored.
An elastic body is one that returns to its original
shape after a deformation.
A tensile stress occurs when
equal and opposite forces are
directed away from each other.
A compressive stress occurs
when equal and opposite
forces are directed toward
each other.
F
W
Tension
F
W
Compression
Summary
Types of Stress
Summary of Definitions
Stress is the ratio of an applied force F to the
area A over which it acts:
Strain is the relative change in the dimensions or
shape of a body as the result of an applied stress:
F
Stress
A 2 2
N lb
: Pa or
m in.
Units
Examples: Change in length per unit length;
change in volume per unit volume.
Longitudinal Stress and Strain
L
L
A
A
F
For wires, rods, and bars,
there is a longitudinal
stress F/A that produces a
change in length per unit
length. In such cases:
F
Stress
A
L
Strain
L
The Elastic Limit
The elastic limit is the maximum stress a body can
experience without becoming permanently deformed.
The ultimate strength is the greatest stress a body can
experience without breaking or rupturing.
The Ultimate Strength
Young’s Modulus
For materials whose length is much greater than the
width or thickness, we are concerned with the
longitudinal modulus of elasticity, or Young’s
Modulus Y.
'
longitudinal stress
Young s modulus
longitudinal strain
/
/
F A FL
Y
L L A L 2
lb
: Pa
in.
Units or
The Shear Modulus
F
Stress
A
d
Strain
l
F
F
l
d A
The strain is the angle
expressed in radians:
Stress is
force per
unit area:
The shear modulus S is defined as the ratio of the
shearing stress F/A to the shearing strain :
The shear modulus:
Units are in Pascals.
F A
S
The Bulk Modulus
Volume stress F A
B
Volume strain V V
Since F/A is generally pressure P, we may write:
/
P PV
B
V V V
Units remain in Pascals (Pa)
since the strain is unitless.

Mais conteúdo relacionado

Mais procurados

Elasticity Basic Physics - By Harshad Patil. - DMTC - Young Modulus
Elasticity Basic Physics - By Harshad Patil. - DMTC - Young Modulus Elasticity Basic Physics - By Harshad Patil. - DMTC - Young Modulus
Elasticity Basic Physics - By Harshad Patil. - DMTC - Young Modulus Harshad Patil
 
Presentation on Friction (Static, Kinetic and Co-efficient of Friction)
Presentation on Friction (Static, Kinetic and Co-efficient of Friction)Presentation on Friction (Static, Kinetic and Co-efficient of Friction)
Presentation on Friction (Static, Kinetic and Co-efficient of Friction)Md. Sirajul Islam
 
Centripetal & centrifugal forces
Centripetal & centrifugal forces Centripetal & centrifugal forces
Centripetal & centrifugal forces awasthi15
 
Force, types of forces and system of forces
Force, types of forces and system of forcesForce, types of forces and system of forces
Force, types of forces and system of forcesKhanSaif2
 
Properties of matter - Elasticity
Properties of matter - ElasticityProperties of matter - Elasticity
Properties of matter - Elasticityamalajanet
 
Moment of force
Moment of forceMoment of force
Moment of forceja00015
 
types of friction
types of friction types of friction
types of friction vivek vala
 
Elements of Solid Mechanics.ppt
Elements of  Solid Mechanics.pptElements of  Solid Mechanics.ppt
Elements of Solid Mechanics.pptSadia Textile
 
FORCE, TYPES, & SYSTEM OF FORCES
FORCE, TYPES, & SYSTEM OF FORCESFORCE, TYPES, & SYSTEM OF FORCES
FORCE, TYPES, & SYSTEM OF FORCESManish Jha
 

Mais procurados (20)

Elasticity Basic Physics - By Harshad Patil. - DMTC - Young Modulus
Elasticity Basic Physics - By Harshad Patil. - DMTC - Young Modulus Elasticity Basic Physics - By Harshad Patil. - DMTC - Young Modulus
Elasticity Basic Physics - By Harshad Patil. - DMTC - Young Modulus
 
Law of friction
Law of frictionLaw of friction
Law of friction
 
Newton's Laws of Motion
Newton's Laws of Motion Newton's Laws of Motion
Newton's Laws of Motion
 
Presentation on Friction (Static, Kinetic and Co-efficient of Friction)
Presentation on Friction (Static, Kinetic and Co-efficient of Friction)Presentation on Friction (Static, Kinetic and Co-efficient of Friction)
Presentation on Friction (Static, Kinetic and Co-efficient of Friction)
 
Deformation
DeformationDeformation
Deformation
 
Stress strain curve
Stress  strain curveStress  strain curve
Stress strain curve
 
Static Electricity
Static ElectricityStatic Electricity
Static Electricity
 
Centripetal & centrifugal forces
Centripetal & centrifugal forces Centripetal & centrifugal forces
Centripetal & centrifugal forces
 
Young’s modulus
Young’s modulusYoung’s modulus
Young’s modulus
 
Torque
TorqueTorque
Torque
 
Force, types of forces and system of forces
Force, types of forces and system of forcesForce, types of forces and system of forces
Force, types of forces and system of forces
 
Friction, types of friction and different laws of friction
Friction, types of friction and different laws of frictionFriction, types of friction and different laws of friction
Friction, types of friction and different laws of friction
 
Properties of matter - Elasticity
Properties of matter - ElasticityProperties of matter - Elasticity
Properties of matter - Elasticity
 
Moment of force
Moment of forceMoment of force
Moment of force
 
Physics 9
Physics 9Physics 9
Physics 9
 
12 rotational motion
12 rotational motion12 rotational motion
12 rotational motion
 
types of friction
types of friction types of friction
types of friction
 
Elements of Solid Mechanics.ppt
Elements of  Solid Mechanics.pptElements of  Solid Mechanics.ppt
Elements of Solid Mechanics.ppt
 
FORCE, TYPES, & SYSTEM OF FORCES
FORCE, TYPES, & SYSTEM OF FORCESFORCE, TYPES, & SYSTEM OF FORCES
FORCE, TYPES, & SYSTEM OF FORCES
 
Thermal stesses
Thermal stessesThermal stesses
Thermal stesses
 

Destaque

Chp.5 elasticity & fluid
Chp.5  elasticity & fluidChp.5  elasticity & fluid
Chp.5 elasticity & fluidAtindirah Chess
 
Coduction, convection and radiation
Coduction, convection and radiationCoduction, convection and radiation
Coduction, convection and radiationhmsoh
 
Effect Of Elasticity On Herschel - Bulkley Fluid Flow In A Tube
Effect Of Elasticity On Herschel - Bulkley Fluid Flow In A TubeEffect Of Elasticity On Herschel - Bulkley Fluid Flow In A Tube
Effect Of Elasticity On Herschel - Bulkley Fluid Flow In A TubeIJARIDEA Journal
 
Elasticity in Software Design
Elasticity in Software DesignElasticity in Software Design
Elasticity in Software DesignJim Buswell
 
Buoyancy and Archimedes’ Princple
Buoyancy and Archimedes’ PrincpleBuoyancy and Archimedes’ Princple
Buoyancy and Archimedes’ Princpleasifnazarindia
 
Therabands & springs presentation
Therabands & springs  presentationTherabands & springs  presentation
Therabands & springs presentationAbbas khan
 
Components of begg appliance /certified fixed orthodontic courses by Indian d...
Components of begg appliance /certified fixed orthodontic courses by Indian d...Components of begg appliance /certified fixed orthodontic courses by Indian d...
Components of begg appliance /certified fixed orthodontic courses by Indian d...Indian dental academy
 
Springs-mechanical engineering
Springs-mechanical engineeringSprings-mechanical engineering
Springs-mechanical engineeringNikhil Kumar
 
Diploma sem 2 applied science physics-unit 2-chap-1 elasticity
Diploma sem 2 applied science physics-unit 2-chap-1 elasticityDiploma sem 2 applied science physics-unit 2-chap-1 elasticity
Diploma sem 2 applied science physics-unit 2-chap-1 elasticityRai University
 
8494483 pascals-principle
8494483 pascals-principle8494483 pascals-principle
8494483 pascals-principleneamme
 
O level physics formula sheet
O level physics formula sheetO level physics formula sheet
O level physics formula sheetsrhyder21
 
Springs & uses of springs
Springs & uses of springsSprings & uses of springs
Springs & uses of springsSazed Salman
 

Destaque (20)

Lecture 01 stress, strain and elasticity
Lecture 01   stress, strain and elasticityLecture 01   stress, strain and elasticity
Lecture 01 stress, strain and elasticity
 
Chp.5 elasticity & fluid
Chp.5  elasticity & fluidChp.5  elasticity & fluid
Chp.5 elasticity & fluid
 
Elasticity Concepts
Elasticity  ConceptsElasticity  Concepts
Elasticity Concepts
 
Coduction, convection and radiation
Coduction, convection and radiationCoduction, convection and radiation
Coduction, convection and radiation
 
Heat Transfer
Heat TransferHeat Transfer
Heat Transfer
 
Effect Of Elasticity On Herschel - Bulkley Fluid Flow In A Tube
Effect Of Elasticity On Herschel - Bulkley Fluid Flow In A TubeEffect Of Elasticity On Herschel - Bulkley Fluid Flow In A Tube
Effect Of Elasticity On Herschel - Bulkley Fluid Flow In A Tube
 
Elastic behaviour of Springs and Mass on a spring
Elastic behaviour of Springs and Mass on a springElastic behaviour of Springs and Mass on a spring
Elastic behaviour of Springs and Mass on a spring
 
Elasticity in Software Design
Elasticity in Software DesignElasticity in Software Design
Elasticity in Software Design
 
Springs
Springs Springs
Springs
 
Pressure and buoyancy
Pressure and buoyancyPressure and buoyancy
Pressure and buoyancy
 
Buoyancy and Archimedes’ Princple
Buoyancy and Archimedes’ PrincpleBuoyancy and Archimedes’ Princple
Buoyancy and Archimedes’ Princple
 
Therabands & springs presentation
Therabands & springs  presentationTherabands & springs  presentation
Therabands & springs presentation
 
Components of begg appliance /certified fixed orthodontic courses by Indian d...
Components of begg appliance /certified fixed orthodontic courses by Indian d...Components of begg appliance /certified fixed orthodontic courses by Indian d...
Components of begg appliance /certified fixed orthodontic courses by Indian d...
 
Hook's law
Hook's lawHook's law
Hook's law
 
Springs-mechanical engineering
Springs-mechanical engineeringSprings-mechanical engineering
Springs-mechanical engineering
 
Diploma sem 2 applied science physics-unit 2-chap-1 elasticity
Diploma sem 2 applied science physics-unit 2-chap-1 elasticityDiploma sem 2 applied science physics-unit 2-chap-1 elasticity
Diploma sem 2 applied science physics-unit 2-chap-1 elasticity
 
Accelerometer
Accelerometer Accelerometer
Accelerometer
 
8494483 pascals-principle
8494483 pascals-principle8494483 pascals-principle
8494483 pascals-principle
 
O level physics formula sheet
O level physics formula sheetO level physics formula sheet
O level physics formula sheet
 
Springs & uses of springs
Springs & uses of springsSprings & uses of springs
Springs & uses of springs
 

Semelhante a Elasticity 2012

Unit 2 simple stresses and strain
Unit 2 simple stresses and strainUnit 2 simple stresses and strain
Unit 2 simple stresses and strainPratikAkarte2
 
Properties of materials
 Properties of  materials   Properties of  materials
Properties of materials Ehab Hegazy
 
Mechanical Properties Of Fluids Class 11 free pdf download
Mechanical Properties Of Fluids Class 11 free pdf downloadMechanical Properties Of Fluids Class 11 free pdf download
Mechanical Properties Of Fluids Class 11 free pdf downloadVivekanand Anglo Vedic Academy
 
MECHANICAL PROPERTIES OF BULK MATTER STUDY MATERIAL PDF DOWNLOAD
MECHANICAL PROPERTIES OF BULK MATTER STUDY MATERIAL PDF DOWNLOADMECHANICAL PROPERTIES OF BULK MATTER STUDY MATERIAL PDF DOWNLOAD
MECHANICAL PROPERTIES OF BULK MATTER STUDY MATERIAL PDF DOWNLOADVivekanand Anglo Vedic Academy
 
PROPERTIES OF BULK MATTER_Mechnical properties of fluids.pdf
PROPERTIES OF BULK MATTER_Mechnical properties of fluids.pdfPROPERTIES OF BULK MATTER_Mechnical properties of fluids.pdf
PROPERTIES OF BULK MATTER_Mechnical properties of fluids.pdfVivekanand Anglo Vedic Academy
 
Som complete unit 01 notes
Som complete unit 01 notesSom complete unit 01 notes
Som complete unit 01 notessistec
 
Strength.pptx
Strength.pptxStrength.pptx
Strength.pptxjerk4
 
Strengthofmaterialsbyskmondal 130102103545-phpapp02
Strengthofmaterialsbyskmondal 130102103545-phpapp02Strengthofmaterialsbyskmondal 130102103545-phpapp02
Strengthofmaterialsbyskmondal 130102103545-phpapp02Priyabrata Behera
 
1. simple stress and strains
1. simple stress and strains1. simple stress and strains
1. simple stress and strainsMahesh_infomatica
 
9._Mechanical_Properties_of_Solids_1.pptx
9._Mechanical_Properties_of_Solids_1.pptx9._Mechanical_Properties_of_Solids_1.pptx
9._Mechanical_Properties_of_Solids_1.pptxGXRVILLAIN
 
Deformation of Solids Cambridge A Level Physics
Deformation of Solids Cambridge A Level PhysicsDeformation of Solids Cambridge A Level Physics
Deformation of Solids Cambridge A Level PhysicsNPMahardikkaSoejoedi
 
Reg 162 note dr norizal
Reg 162 note dr norizalReg 162 note dr norizal
Reg 162 note dr norizalaliah idris
 

Semelhante a Elasticity 2012 (20)

Elasticity
ElasticityElasticity
Elasticity
 
Stress
StressStress
Stress
 
Unit 2 simple stresses and strain
Unit 2 simple stresses and strainUnit 2 simple stresses and strain
Unit 2 simple stresses and strain
 
Properties of materials
 Properties of  materials   Properties of  materials
Properties of materials
 
Mechanical Properties Of Fluids Class 11 free pdf download
Mechanical Properties Of Fluids Class 11 free pdf downloadMechanical Properties Of Fluids Class 11 free pdf download
Mechanical Properties Of Fluids Class 11 free pdf download
 
MECHANICAL PROPERTIES OF BULK MATTER STUDY MATERIAL PDF DOWNLOAD
MECHANICAL PROPERTIES OF BULK MATTER STUDY MATERIAL PDF DOWNLOADMECHANICAL PROPERTIES OF BULK MATTER STUDY MATERIAL PDF DOWNLOAD
MECHANICAL PROPERTIES OF BULK MATTER STUDY MATERIAL PDF DOWNLOAD
 
PROPERTIES OF BULK MATTER_Mechnical properties of fluids.pdf
PROPERTIES OF BULK MATTER_Mechnical properties of fluids.pdfPROPERTIES OF BULK MATTER_Mechnical properties of fluids.pdf
PROPERTIES OF BULK MATTER_Mechnical properties of fluids.pdf
 
Som complete unit 01 notes
Som complete unit 01 notesSom complete unit 01 notes
Som complete unit 01 notes
 
Strength.pptx
Strength.pptxStrength.pptx
Strength.pptx
 
SM MIT PPT.pdf
SM MIT PPT.pdfSM MIT PPT.pdf
SM MIT PPT.pdf
 
Megha.pdf
Megha.pdfMegha.pdf
Megha.pdf
 
Elasticity
ElasticityElasticity
Elasticity
 
Strengthofmaterialsbyskmondal 130102103545-phpapp02
Strengthofmaterialsbyskmondal 130102103545-phpapp02Strengthofmaterialsbyskmondal 130102103545-phpapp02
Strengthofmaterialsbyskmondal 130102103545-phpapp02
 
Physics (1)
Physics (1)Physics (1)
Physics (1)
 
SOM_M3_Bending stress_
SOM_M3_Bending stress_SOM_M3_Bending stress_
SOM_M3_Bending stress_
 
ELASTICITY NOTES 1.pdf
ELASTICITY NOTES 1.pdfELASTICITY NOTES 1.pdf
ELASTICITY NOTES 1.pdf
 
1. simple stress and strains
1. simple stress and strains1. simple stress and strains
1. simple stress and strains
 
9._Mechanical_Properties_of_Solids_1.pptx
9._Mechanical_Properties_of_Solids_1.pptx9._Mechanical_Properties_of_Solids_1.pptx
9._Mechanical_Properties_of_Solids_1.pptx
 
Deformation of Solids Cambridge A Level Physics
Deformation of Solids Cambridge A Level PhysicsDeformation of Solids Cambridge A Level Physics
Deformation of Solids Cambridge A Level Physics
 
Reg 162 note dr norizal
Reg 162 note dr norizalReg 162 note dr norizal
Reg 162 note dr norizal
 

Mais de mantlfin

Pp104 freefall
Pp104 freefallPp104 freefall
Pp104 freefallmantlfin
 
Kinematic equations of motion
Kinematic equations of motionKinematic equations of motion
Kinematic equations of motionmantlfin
 
1 d chapter 2
1 d chapter 21 d chapter 2
1 d chapter 2mantlfin
 
Position to acceleration.ppt
Position to acceleration.pptPosition to acceleration.ppt
Position to acceleration.pptmantlfin
 
Significant numbers in calculations fall 2014
Significant numbers in calculations fall 2014Significant numbers in calculations fall 2014
Significant numbers in calculations fall 2014mantlfin
 
Ppt accuracy precisionsigfigs 2014 fridays notes
Ppt accuracy precisionsigfigs 2014 fridays notesPpt accuracy precisionsigfigs 2014 fridays notes
Ppt accuracy precisionsigfigs 2014 fridays notesmantlfin
 
Paul's norway trip
Paul's norway tripPaul's norway trip
Paul's norway tripmantlfin
 

Mais de mantlfin (7)

Pp104 freefall
Pp104 freefallPp104 freefall
Pp104 freefall
 
Kinematic equations of motion
Kinematic equations of motionKinematic equations of motion
Kinematic equations of motion
 
1 d chapter 2
1 d chapter 21 d chapter 2
1 d chapter 2
 
Position to acceleration.ppt
Position to acceleration.pptPosition to acceleration.ppt
Position to acceleration.ppt
 
Significant numbers in calculations fall 2014
Significant numbers in calculations fall 2014Significant numbers in calculations fall 2014
Significant numbers in calculations fall 2014
 
Ppt accuracy precisionsigfigs 2014 fridays notes
Ppt accuracy precisionsigfigs 2014 fridays notesPpt accuracy precisionsigfigs 2014 fridays notes
Ppt accuracy precisionsigfigs 2014 fridays notes
 
Paul's norway trip
Paul's norway tripPaul's norway trip
Paul's norway trip
 

Último

Z Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphZ Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphThiyagu K
 
Separation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and ActinidesSeparation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and ActinidesFatimaKhan178732
 
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdfBASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdfSoniaTolstoy
 
How to Make a Pirate ship Primary Education.pptx
How to Make a Pirate ship Primary Education.pptxHow to Make a Pirate ship Primary Education.pptx
How to Make a Pirate ship Primary Education.pptxmanuelaromero2013
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introductionMaksud Ahmed
 
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...EduSkills OECD
 
Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)eniolaolutunde
 
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxiammrhaywood
 
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdfssuser54595a
 
Interactive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communicationInteractive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communicationnomboosow
 
Sanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfSanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfsanyamsingh5019
 
Accessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactAccessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactdawncurless
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdfQucHHunhnh
 
Mastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionMastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionSafetyChain Software
 
Beyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global ImpactBeyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global ImpactPECB
 
Grant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy ConsultingGrant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy ConsultingTechSoup
 

Último (20)

Z Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphZ Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot Graph
 
Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
 
Separation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and ActinidesSeparation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and Actinides
 
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdfBASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
 
How to Make a Pirate ship Primary Education.pptx
How to Make a Pirate ship Primary Education.pptxHow to Make a Pirate ship Primary Education.pptx
How to Make a Pirate ship Primary Education.pptx
 
Código Creativo y Arte de Software | Unidad 1
Código Creativo y Arte de Software | Unidad 1Código Creativo y Arte de Software | Unidad 1
Código Creativo y Arte de Software | Unidad 1
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introduction
 
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
 
Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)
 
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
 
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
 
Interactive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communicationInteractive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communication
 
Sanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfSanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdf
 
Accessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactAccessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impact
 
Staff of Color (SOC) Retention Efforts DDSD
Staff of Color (SOC) Retention Efforts DDSDStaff of Color (SOC) Retention Efforts DDSD
Staff of Color (SOC) Retention Efforts DDSD
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdf
 
Mastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionMastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory Inspection
 
TataKelola dan KamSiber Kecerdasan Buatan v022.pdf
TataKelola dan KamSiber Kecerdasan Buatan v022.pdfTataKelola dan KamSiber Kecerdasan Buatan v022.pdf
TataKelola dan KamSiber Kecerdasan Buatan v022.pdf
 
Beyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global ImpactBeyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global Impact
 
Grant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy ConsultingGrant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy Consulting
 

Elasticity 2012

  • 1. Chapter 9 – Stress and Strain
  • 2. BUNGEE jumping utilizes a long elastic strap which stretches until it reaches a maximum length that is proportional to the weight of the jumper. The elasticity of the strap determines the amplitude of the resulting vibrations. If the elastic limit for the strap is exceeded, the rope will break. Elasticity Photo © Vol. 10 PhotoDisk/Getty
  • 3. Objectives: After completion of this ppt, you should be able to: • Demonstrate your understanding of elasticity, elastic limit, stress, strain, and ultimate strength. • Write and apply formulas for calculating Young’s modulus, shear modulus, and bulk modulus. • Solve problems involving each of the parameters in the above objectives.
  • 4. Elastic Properties of Matter An elastic body is one that returns to its original shape after a deformation. Golf Ball Soccer BallRubber Band
  • 5. Elastic Properties of Matter An inelastic body is one that does not return to its original shape after a deformation. Dough or Bread Clay Inelastic Ball
  • 6. Elastic or Inelastic? An elastic collision loses no energy. The deform- ation on collision is fully restored. In an inelastic collision, energy is lost and the deformation may be permanent. (Click it.)
  • 7. An Elastic Spring A spring is an example of an elastic body that can be deformed by stretching. A restoring force, F, acts in the direction opposite the displacement of the oscillating body. F = -kx x F
  • 8. Hooke’s Law When a spring is stretched, there is a restoring force that is proportional to the displacement. F = -kx The spring constant k is a property of the spring given by: F x m F k x The spring constant k is a measure of the elasticity of the spring.
  • 9. Stress and Strain Stress refers to the cause of a deformation, and strain refers to the effect of the deformation. x F The downward force F causes the displacement x. Thus, the stress is the force; the strain is the elongation.
  • 10. Types of Stress A tensile stress occurs when equal and opposite forces are directed away from each other. A compressive stress occurs when equal and opposite forces are directed toward each other. F W Tension F W Compression
  • 11. Summary of Definitions Stress is the ratio of an applied force F to the area A over which it acts: Strain is the relative change in the dimensions or shape of a body as the result of an applied stress: F Stress A 2 2 N lb : Pa or m in. Units Examples: Change in length per unit length; change in volume per unit volume.
  • 12. Longitudinal Stress and Strain L L A A F For wires, rods, and bars, there is a longitudinal stress F/A that produces a change in length per unit length. In such cases: F Stress A L Strain L
  • 13. Example 1. A steel wire 10 m long and 2 mm in diameter is attached to the ceiling and a 200-N weight is attached to the end. What is the applied stress? L L A A F First find area of wire: 2 2 (0.002 m) 4 4 D A A = 3.14 x 10-6 m2 -6 2 200 N 3.14 x 10 m F Stress A Stress 6.37 x 107 Pa
  • 14. Example 1 (Cont.) A 10 m steel wire stretches 3.08 mm due to the 200 N load. What is the longitudinal strain? L L Given: L = 10 m; L = 3.08 mm Longitudinal Strain 3.08 x 10-4 0.00308 m 10 m L Srain L
  • 15. The Elastic Limit The elastic limit is the maximum stress a body can experience without becoming permanently deformed. W W 2 m If the stress exceeds the elastic limit, the final length will be longer than the original 2 m. Okay Beyond limit F W 2 m F Stress A
  • 16. The Ultimate Strength The ultimate strength is the greatest stress a body can experience without breaking or rupturing. If the stress exceeds the ultimate strength, the string breaks! F W W W 2 m F Stress A W W
  • 17. Example 2. The elastic limit for steel is 2.48 x 108 Pa. What is the maximum weight that can be supported without exceeding the elastic limit? L L A A F 8 2.48 x 10 Pa F Stress A Recall: A = 3.14 x 10-6 m2 F = (2.48 x 108 Pa) A F = (2.48 x 108 Pa)(3.14 x 10-6 m2) F = 779 N
  • 18. Example 2(Cont.) The ultimate strength for steel is 4.89 x 108 Pa. What is the maxi- mum weight that can be supported without breaking the wire? L L A A F 8 4.89 x 10 Pa F Stress A Recall: A = 3.14 x 10-6 m2 F = (4.89 x 108 Pa) A F = (4.89 x 108 Pa)(3.14 x 10-6 m2) F = 1536 N
  • 19. The Modulus of Elasticity Provided that the elastic limit is not exceeded, an elastic deformation (strain) is directly proportional to the magnitude of the applied force per unit area (stress). stress Modulus of Elasticity strain
  • 20. Example 3. In our previous example, the stress applied to the steel wire was 6.37 x 107 Pa and the strain was 3.08 x 10-4. Find the modulus of elasticity for steel. L L 7 -4 6.37 x 10 Pa 3.08 x 10 Stress Modulus Strain Modulus = 207 x 109 Pa This longitudinal modulus of elasticity is called Young’s Modulus and is denoted by the symbol Y.
  • 21. Young’s Modulus For materials whose length is much greater than the width or thickness, we are concerned with the longitudinal modulus of elasticity, or Young’s Modulus (Y). ' longitudinal stress Young s modulus longitudinal strain / / F A FL Y L L A L 2 lb : Pa in. Units or
  • 22. Example 4: Young’s modulus for brass is 8.96 x 1011Pa. A 120-N weight is attached to an 8-m length of brass wire; find the increase in length. The diameter is 1.5 mm. 8 m L 120 N First find area of wire: 2 2 (0.0015 m) 4 4 D A A = 1.77 x 10-6 m2 or FL FL Y L A L AY
  • 23. Example 4: (Continued) 8 m L 120 N Y = 8.96 x 1011 Pa; F = 120 N; L = 8 m; A = 1.77 x 10-6 m2 F = 120 N; L = ? or FL FL Y L A L AY -6 2 11 (120 N)(8.00 m) (1.77 x 10 m )(8.96 x 10 Pa) FL L AY L = 0.605 mmIncrease in length:
  • 24. Shear Modulus A F Fl d A shearing stress alters only the shape of the body, leaving the volume unchanged. For example, consider equal and opposite shearing forces F acting on the cube below: The shearing force F produces a shearing angle The angle is the strain and the stress is given by F/A as before.
  • 25. Calculating Shear Modulus F Stress A d Strain l F F l d A The strain is the angle expressed in radians: Stress is force per unit area: The shear modulus S is defined as the ratio of the shearing stress F/A to the shearing strain : The shear modulus: Units are in Pascals. F A S
  • 26. Example 5. A steel stud (S = 8.27 x 1010Pa) 1 cm in diameter projects 4 cm from the wall. A 36,000 N shearing force is applied to the end. What is the defection d of the stud? d l F 2 2 (0.01 m) 4 4 D A Area: A = 7.85 x 10-5 m2 ; F A F A Fl Fl S d d l Ad AS -5 2 10 (36,000 N)(0.04 m) (7.85 x 10 m )(8.27 x 10 Pa) d d = 0.222 mm
  • 27. Volume Elasticity Not all deformations are linear. Sometimes an applied stress F/A results in a decrease of volume. In such cases, there is a bulk modulus B of elasticity. Volume stress F A B Volume strain V V The bulk modulus is negative because of decrease in V.
  • 28. The Bulk Modulus Volume stress F A B Volume strain V V Since F/A is generally pressure P, we may write: / P PV B V V V Units remain in Pascals (Pa) since the strain is unitless.
  • 29. Example 7. A hydrostatic press contains 5 liters of oil. Find the decrease in volume of the oil if it is subjected to a pressure of 3000 kPa. (Assume that B = 1700 MPa.) / P PV B V V V 6 9 (3 x 10 Pa)(5 L) (1.70 x 10 Pa) PV V B V = -8.82 mL Decrease in V; milliliters (mL):
  • 30. Summary: Elastic and Inelastic An inelastic body is one that does not return to its original shape after a deformation. In an inelastic collision, energy is lost and the deformation may be permanent. An elastic collision loses no energy. The deform- ation on collision is fully restored. An elastic body is one that returns to its original shape after a deformation.
  • 31. A tensile stress occurs when equal and opposite forces are directed away from each other. A compressive stress occurs when equal and opposite forces are directed toward each other. F W Tension F W Compression Summary Types of Stress
  • 32. Summary of Definitions Stress is the ratio of an applied force F to the area A over which it acts: Strain is the relative change in the dimensions or shape of a body as the result of an applied stress: F Stress A 2 2 N lb : Pa or m in. Units Examples: Change in length per unit length; change in volume per unit volume.
  • 33. Longitudinal Stress and Strain L L A A F For wires, rods, and bars, there is a longitudinal stress F/A that produces a change in length per unit length. In such cases: F Stress A L Strain L
  • 34. The Elastic Limit The elastic limit is the maximum stress a body can experience without becoming permanently deformed. The ultimate strength is the greatest stress a body can experience without breaking or rupturing. The Ultimate Strength
  • 35. Young’s Modulus For materials whose length is much greater than the width or thickness, we are concerned with the longitudinal modulus of elasticity, or Young’s Modulus Y. ' longitudinal stress Young s modulus longitudinal strain / / F A FL Y L L A L 2 lb : Pa in. Units or
  • 36. The Shear Modulus F Stress A d Strain l F F l d A The strain is the angle expressed in radians: Stress is force per unit area: The shear modulus S is defined as the ratio of the shearing stress F/A to the shearing strain : The shear modulus: Units are in Pascals. F A S
  • 37. The Bulk Modulus Volume stress F A B Volume strain V V Since F/A is generally pressure P, we may write: / P PV B V V V Units remain in Pascals (Pa) since the strain is unitless.