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Mean Coefficient of Thermal Expansion (b)

Thermal Conductivity

 

 

Grade or type

UNS No

Density (kg/m3)

Elastic Modulus (a) GPa

0-100oC µm/m/ oC

0-315oC µm/m/ oC

0-538oC µm/m/ oC

At 100oC W/m.K

At 500oC W/m.K

Specific Heat 0-100oC J/kg.K

Electrical Resistivity nOhms.m

201

S20100

7800

197

15.7

17.5

18.4

16.2

21.5

500

690

202

S20200

7800

-

17.5

18.4

19.2

16.2

21.6

500

690

301

S30100

8000

193

17.0

17.2

18.2

16.2

21.5

500

720

302

S30200

8000

193

17.2

17.8

18.4

16.2

21.5

500

720

302B

S30215

8000

193

16.2

18.0

19.4

15.9

21.6

500

720

303

S30300

8000

193

17.2

17.8

18.4

16.2

21.5

500

720

304

S30400

8000

193

17.2

17.8

18.4

16.2

21.5

500

720

304L

S30403

8000

193

17.2

17.8

18.4

16.3

21.5

500

720

302HQ

S30430

8000

193

17.2

17.8

-

11.2

21.5

500

720

304N

S30451

8000

196

17.2

17.8

18.4

16.3

21.5

500

720

305

S30500

8000

193

17.2

17.8

18.4

16.2

21.5

500

720

308

S30800

8000

193

17.2

17.8

18.4

15.2

21.6

500

720

309

S30900

8000

200

15.0

16.6

17.2

15.6

18.7

500

780

310

S31000

8000

200

15.9

16.2

17.0

14.2

18.7

500

780

314

S31400

7800

200

-

15.1

-

17.5

20.9

500

770

316

S31600

8000

193

15.9

16.2

17.5

16.2

21.5

500

740

316L

S31603

8000

193

15.9

16.2

17.5

16.3

21.5

500

740

316N

S31651

8000

196

15.9

16.2

17.5

14.4

-

500

740

317

S31700

8000

193

15.9

16.2

17.5

16.2

21.5

500

740

317L

S31703

8000

200

16.5

-

18.1

14.4

-

500

790

321

S32100

8000

193

16.6

17.2

18.6

16.1

22.2

500

720

329

S32900

7800

186

10.1

11.5

-

-

-

460

750

330

N08330

8000

196

14.4

16.0

16.7

-

-

460

1020

347

S34700

8000

193

16.6

17.2

18.6

16.1

22.2

500

730

384

S38400

8000

193

17.2

17.8

18.4

16.2

21.5

500

790

409

S40900

7800

200

11.7

12.0

12.4

24.9

-

460

-

410

S41000

7800

200

9.9

11.4

11.6

24.9

28.7

460

570

416

S41600

7800

200

9.9

11.0

11.6

24.9

28.7

460

570

420

S42000

7800

200

10.3

10.8

11.7

24.9

-

460

550

430

S43000

7800

200

10.4

11.0

11.4

26.1

26.3

460

600

430F

S43020

7800

200

10.4

11.0

11.4

26.1

26.3

460

600

431

S43100

7800

200

10.2

12.1

-

20.2

-

460

720

434

S43400

7800

200

10.4

11.0

11.4

-

26.3

460

600

436

S43600

7800

200

9.3

-

-

23.9

26.0

460

600

440C

S44004

7800

200

10.2

-

-

24.2

-

460

600

444

S44400

7800

200

10.0

10.6

11.4

26.8

-

420

620

446

S44600

7800

200

10.4

10.8

11.2

20.9

24.4

500

670

630

S17400

7500

196

10.8

11.6

-

18.3

23.0

460

800

631

S17700

7800

204

11.0

11.6

-

16.4

21.8

460

830

+

N08904

7900

195

16.0

17.5

-

14.0

-

500

950

+

S30815

7800

200

16.3

17.3

18.0

14.0

18.0

500

-

+

S31803

7800

200

13.7

14.7

-

19.0

-

480

850

+

S32304

7800

200

13.0

-

-

16.0

-

470

850

+

S32750

7800

200

13.0

14.0

-

17.0

-

470

-

3CR12

S41003

7800

205

10.8

11.3

12.0

31.0

32.0

480

570

4565S

S34565

8000

190

14.5

16.3

17.2

14.5

-

510

920

+

S32760

7600

190

12.8

13.8

-

14.4

-

480

850

(a) 1GPa = 1000MPa
(b) µm/m/oC = x 10-6/oC(c) 1% flow in 10,000 hours at 540oC
Magnetic permiability of all 300 series austenitic steels in the annealed condition is approximately 1.02
+ Proprietary alloy names apply


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Related References:
Physical Properties Table of Metals
Physical Properties of Stainless Steel
Physical Properties of Stainless Steel and Carbon Steel
Physical Properties of Gases at Standard Temperature Pressure
Physical Properties of HDG Hot-Dip Galvanized
Physical Properties of Zirconium
EN 10088-1 Elevated Temperature Physical Properties of Steel

304 Physical Properties
304H Physical Properties
304L Physical Properties
309S Physical Properties
310S Physical Properties
316L Physical Properties
317L Physical Properties
321 Physical Properties
347 Physical Properties
410 Physical Properties
410S Physical Properties
430 Physical Properties
S32101 Physical Properties
S31803 S32205 Physical Properties
S32304 Physical Properties
S32750 Physical Properties
Stainless Steel Pipe Specifications

S32304 S31803 S32205 S32750 Mechanical Properties
Mechanical Properties of Stainless Steel
Aluminum Pipes Mechanical Properties
Definition Of Mechanical Properties
Physical Properties of Stainless Steel
Metals listed in order of their properties
Physical Properties of Stainless Steel and Carbon Steel
Mechanical Properties of High Temperature & Corrosion Resistant Alloys
Stainless Steel Tube Dimension
Stainless Steel Tubes L H Grade
Stainless Steel Properties Description
Stainless Steel Cold Working Properties
304/304L/304LN/304H tubing and pipe
Stainless Steel Pipes Sizes
Stainless Steel-ASTM-Material Grade-Standard
Seawater Resistance of Stainless Steel Tubes
Physical Properties of Stainless Steel and Carbon Steel
ASTMA312/A213/A269/A511/A376/A789/A790 DIN17456/17458 JIS3459/3463 DNV Chemical Compostion
International Conversion Table For Stainless Steel
Stainless Steel Relative Cost Data
Select Stainless Steel Grade by Characteristics and Usage
Selection of Stainless Steels from Corrosion Resistance, Mechanical Physical Properties
Select Materials for Heat Exchanger Tubes with Substantial Pressure difference
Select Stainless Steel by high temperature condition refer table
Properties at Cryogenic Temperatures of Stainless Steel Tubes
The Effect of carbon on corrosion resistance-304 316 304L 316L
Comparison of grades 316/1.4401 and 316L/1.4404/1.4432 to 316Ti /1.4571
The difference between Stainless Steel Tubing and Cooper Tubing in Shell and Tube Heat Exchanger
Various elements on the performance of stainless steel and the impact and role of organizations


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