Material selection chart 10000 Ceramics Strength - Density SigN4 Ti alloys Metals Composites. | A0 Steels Ni alloys Sic Al alloys W CFRP Metals and polymers: yield strength Ceramics and glasses: MOR El astomers:tensile tear strength Composites: tensile failure Tungsten alloys 1000 Polymers and elastomers Mg alloys, Tungsten carbide GFRP PEEK P PET PMMA Copper alloys 100 Wood to grain Natural materials 10 Rigid polymer foams Zinc alloys Lead alloys Foams Concrete Butyl Silicone Wood rubber 1 to grain Guide lines for minimum mass design elastomers Cork 0.1 Flexible pofymer loams MFA, O4 0.01 0.01 0.1 1 10 Density, p (Mg/m3) Figure 1. Strength vs Density chart Strength, of (MPa)
Material selection chart 10000 Ceramics Strength - Density SigN4 Ti alloys Metals Composites. | A0 Steels Ni alloys Sic Al alloys W CFRP Metals and polymers: yield strength Ceramics and glasses: MOR El astomers:tensile tear strength Composites: tensile failure Tungsten alloys 1000 Polymers and elastomers Mg alloys, Tungsten carbide GFRP PEEK P PET PMMA Copper alloys 100 Wood to grain Natural materials 10 Rigid polymer foams Zinc alloys Lead alloys Foams Concrete Butyl Silicone Wood rubber 1 to grain Guide lines for minimum mass design elastomers Cork 0.1 Flexible pofymer loams MFA, O4 0.01 0.01 0.1 1 10 Density, p (Mg/m3) Figure 1. Strength vs Density chart Strength, of (MPa)
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
Related questions
Question
![Material selection chart
10000
Strength - Density
Ceramics
| SigNa
Ti alloys
Metals
Composites.
Al203
Steels
Sic
Ni alloys
Al alloys
CFRP
Metals and polymers: yield strength
Ceramics and glasses: MOR
El astomers:tensile tear strength
Composites: tensile failure
Tungsten
alloys
1000
Mg alloys
Polymers and
elastomers
Tungsten
carbide
GFRP
PEEK
PET
PA
-Copper
alloys
100
PMMA
Natural
Wood
to grain
materials
10
Rigid polymer
foams
Zinc alloys
Lead alloys
Foams
Concrete
Butyl
Silicone
Guide lines for
minimum mass
design
Wood rubber
1 to grain
elastomers
Cork
0.1
Flexible pofymer
loáms
MFA, 04
0.01
0.01
0.1
1
10
Density, p (Mg/m3)
Figure 1. Strength vs Density chart
Strength, of (MPa)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdd024361-a7b2-47d1-99ac-d67b7514e9ec%2F47296e08-693d-4b62-ad7b-9d9a103ad061%2Fl14oltj_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Material selection chart
10000
Strength - Density
Ceramics
| SigNa
Ti alloys
Metals
Composites.
Al203
Steels
Sic
Ni alloys
Al alloys
CFRP
Metals and polymers: yield strength
Ceramics and glasses: MOR
El astomers:tensile tear strength
Composites: tensile failure
Tungsten
alloys
1000
Mg alloys
Polymers and
elastomers
Tungsten
carbide
GFRP
PEEK
PET
PA
-Copper
alloys
100
PMMA
Natural
Wood
to grain
materials
10
Rigid polymer
foams
Zinc alloys
Lead alloys
Foams
Concrete
Butyl
Silicone
Guide lines for
minimum mass
design
Wood rubber
1 to grain
elastomers
Cork
0.1
Flexible pofymer
loáms
MFA, 04
0.01
0.01
0.1
1
10
Density, p (Mg/m3)
Figure 1. Strength vs Density chart
Strength, of (MPa)
![(b)
design guideline.
Using the material selection chart provided (Figure 1) and appropriate
(i)
Select suitable materials for the skateboard deck as a panel under the
following conditions: (1) minimum strength is 100 MPa, (2) a high strength per
unit mass and (3) the design guideline passing through centre of the wood
bubble. Show your design constraint lines on the graph provided and list the
selected materials.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdd024361-a7b2-47d1-99ac-d67b7514e9ec%2F47296e08-693d-4b62-ad7b-9d9a103ad061%2F9ukcvo_processed.jpeg&w=3840&q=75)
Transcribed Image Text:(b)
design guideline.
Using the material selection chart provided (Figure 1) and appropriate
(i)
Select suitable materials for the skateboard deck as a panel under the
following conditions: (1) minimum strength is 100 MPa, (2) a high strength per
unit mass and (3) the design guideline passing through centre of the wood
bubble. Show your design constraint lines on the graph provided and list the
selected materials.
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