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1

DESIGN AND DEVELOPMENT
OF STRETCH FORMING SETUP
JASPREET SINGH (10406EN013)

TEJ PRAKASH

(10406EN014)

SAHIL DEV

(10406EN016)

RAHUL WALTER

(10406EN017)
2

WHAT IS FORMING?


Metal reshaping process



Uses mechanical deformation



No material removal
3

CHARACTERISTICS OF FORMING PROCESS



Very high required loads and stresses



Large, heavy and expensive machinery



Used in mass production
4

FORMING PROCESSES


Classified by differences in effective stresses


Compressive forming



Tensile forming



Combined compressive and tensile forming



Bending



Shearing
5

COMPRESSIVE FORMING


Uniaxial or multiaxial compressive loading


Rolling



Extrusion



Die forming



Forging



Indenting
6

TENSILE FORMING


Uniaxial or multiaxial tensile stress


Stretching



Expanding



Recessing
7
COMBINED TENSILE AND COMPRESSIVE FORMING



Extrusion



Deep drawing



Spinning



Flange forming



Upset bulging
8

BENDING AND SHEARING


Plastic deformation by bending / shearing load
9

STRETCH FORMING


Forming by combined tensile and bending forces



Two types:





Simple stretch forming
Tangential stretch forming

For fabrication of contours having U-forms
10

SIMPLE STRETCH FORMING


Fixed jaws



Minimum deformation under the die



Sheet expand
11

TANGENTIAL STRETCH FORMING


Movable jaws



Plastic pre strain



Two steps:


Gripping by jaws



Forming by die
12

VIDEO : TANGENTIAL STRETCH FORMING
13

STRETCH FORMING EQUIPMENT IN INDIA



Two types:





Longitudinal
Transverse

Can be integrated to CNC
14

GRIPPING MECHANISM


Two types:


Integral



Discrete
15

PROJECT DESIGN
16

BILL OF MATERIALS
Component × Quantity

Material

Mechanical Properties

1. Sheet ×1

AL-5052

UTS = 227.57 Mpa YS = 193.05MPa

2. Main Bolt × 1

C60(Carbon Steel)

UTS = 736 Mpa YS = 412 MPa

3. Rotating Holder×1

C60(Carbon Steel)

UTS = 736 Mpa YS = 412 MPa

4. Supporting Rod ×1

C60(Carbon Steel)

UTS = 736 Mpa YS = 412 MPa

5. U-Frame ×1

C60(Carbon Steel)

UTS = 736MPa YS = 412MPa

6. Stopper × 2

A-36 Mild Steel

UTS = 399.8 Mpa YS = 250.2 MPa

7. Mini Bolt × 2

A-36 Mild Steel

UTS = 399.8 Mpa YS = 250.2 MPa

8. Base ×1

A-36 Mild Steel

UTS = 399.8 Mpa YS = 250.2 MPa
17

STRESS REQUIRED FOR FORMING

18

NOTATIONS USED

19

DESIGN OF BOLT


20

CONTINUED…

21

CONTINUED…

22

DESIGN OF BASE

23

DESING OF ROTATING HOLDER

24

CONTINUED…

25

CONTINUED…

26

DESIGN OF SUPPORTING ROD

27

CONTINUED…

28

CONTINUED…

29

DESIGN OF U-FRAME

30

CONTINUED…

31

WORKING OF VICE
Five main components


Sheet is fixed

Bolt is rotated
U-frame can rotate about the rod
Always tangential force on the sheet
32

PLANS FOR 8TH SEMESTER


The next step involves designing a die for this specification of sheet so that
is does not get torn.



Fabrication of the components of vice.



Fabrication of die.



Testing of the setup.
33

REFERENCES


Design data hand book by K.Mahadevan and K.Balveer Reddy.



Manufacturing technology by Kalpakjian.



En.wikipedia.org/wiki/sheet_metal.



Literature by training in aluminum application technology(TALAT).



www.sciencedirect.com/science/article/pii/S1003632609602570

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Stretch Forming Setup Design & Development