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Nickel Alloy C276-Hastelloy C276 wire mesh

Specification

Material: Hastelloy C276 wire

Type: Industrial Special Alloy Wire Mesh

Weave Pattern: Plain Weave, Twill Weave, Dutch Weave, Crimped Weave, etc.

Mesh Count: Custom made.

Wire Diameter: Custom made.

Width: Custom made

Length: 30M and other custom length.

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Introduction

Nickel Alloy C-276 wire mesh, also sold as its brand name Hastelloy® C-276 wire mesh, UNS N10276 wire mesh and 2.4819 wire mesh, is a nickel-molybdenum-chromium supper alloy, with the addition of tungsten and extremely low content of carbon and silicon which will minimizes carbide precipitation during welding to maintain corrosion resistance in as-welded structures. Hastelloy C276 wire mesh performs excellent resistance in a wide variety of chemical process environments including those with ferric and cupric chlorides, hot contaminated organic and inorganic media, chlorine, formic and acetic acids, acetic anhydride, seawater, brine and hypochlorite and chlorine dioxide solutions.


Although there are several variations of the Hastelloy nickel alloy, Hastelloy C276 is by far the most widely used one.

EQUIVALENT STANDARDS

INDUSTEEL TRADEMARKS

UNS

ASTM

EURONORMS EN

SUS

 

N10276

N10276

EN 2.4819

NiMo16Cr15W

 

Chemical Composition of Nickel Alloy C-276 and Hastelloy® C276 wire mesh

Ni

Cr

Mo

Fe

W

Mn

Co

V

Si

C

S

P

57.0 Balance

14.5-16.5

15.0-17.0

4.0- 7.0

3.0- 4.5

1.0Max

2.5Max

0.35Max

.08Max

0.01Max

.03Max

.04Max

Physical Properties of Nickel Alloy C-276 and Hastelloy® C276 wire mesh.

Physical Property

British Units

Metric Units

Density

RT

0.321 lb/in3

RT

8.89 g/cm3

Electrical Resistivity

RT

48.4 μohm.in

RT

1.23 μohm.m

200°F

48.7 μohm.in

100°C

1.24 μohm.m

400°F

49.0 μohm.in

200°C

1.25 μohm.m

600°F

49.5 μohm.in

300°C

1.26 μohm.m

800°F

49.8 μohm.in

400°C

1.26 μohm.m

1000°F

50.6 μohm.in

500°C

1.28 μohm.m

-

-

600°C

1.30 μohm.m

Thermal Conductivity

100°F

71 Btu.in/h.ft2.°F

50°C

10.5 W/m.°C

200°F

77 Btu.in/h.ft2.°F

100°C

11.2 W/m.°C

400°F

90 Btu.in/h.ft2.°F

200°C

12.9 W/m.°C

600°F

104 Btu.in/h.ft2.°F

300°C

14.7 W/m.°C

800°F

117 Btu.in/h.ft2.°F

400°C

16.5 W/m.°C

1000°F

132 Btu.in/h.ft2.°F

500°C

18.3 W/m.°C

Mean Coefficient of Thermal Expansion

75-200°F

6.2 μin/in.°F

24-100°C

11.2 μm/m.°C

75-400°F

6.7 μin/in.°F

24-200°C

12.0 μm/m2.°C

77-600°F

7.1 μin/in.°F

24-300°C

12.7 μm/m.°C

77-800°F

7.3 μin/in.°F

24-400°C

13.1 μm/m.°C

77-1000°F

7.4 μin/in.°F

24-500°C

13.3 μm/m.°C

77-1100°F

7.8 μin/in.°F

24-600°C

13.8 μm/m.°C

Magnetic Permeability

200 oersted

1.0002

15.9 kA/m

1.0002

Specific Heat

RT

0.102 Btu/lb.°F

RT

427 J/kg.°C

Dynamic Modulus of Elasticity

RT

29.8 x 106psi

RT

205 GPa

400°F

28.3 x 106psi

200°C

195 GPa

600°F

27.3 x 106psi

300°C

189 GPa

800°F

26.4 x 106psi

400°C

183 GPa

1000°F

25.5 x 106psi

500°C

178 GPa

Melting Range

2415-2500°F

-

1323-1371°C

-

Poisson’s Ratio

-

-

RT

0.31

Specification List:

Mesh Count

/Inch

Wire Diameter

Aperture

Open Area

%

Weight (LB)

/100 Square Foot

Inch

MM

Inch

MM

1 × 1

.080

2.03

.920

23.37

84.6

41.1

2 × 2

.063

1.60

.437

11.10

76.4

51.2

3 × 3

.054

1.37

.279

7.09

70.1

56.7

4 × 4

.063

1.60

.187

4.75

56.0

104.8

4 × 4

.047

1.19

.203

5.16

65.9

57.6

5 × 5

.041

1.04

.159

4.04

63.2

54.9

6 × 6

.035

.89

.132

3.35

62.7

48.1

8 × 8

.028

.71

.097

2.46

60.2

41.1

10 × 10

.025

.64

.075

1.91

56.3

41.2

10 × 10

.020

.51

.080

2.03

64.0

26.1

12 × 12

.023

.584

.060

1.52

51.8

42.2

12 × 12

.020

.508

.063

1.60

57.2

31.6

14 × 14

.023

.584

.048

1.22

45.2

49.8

14 × 14

.020

.508

.051

1.30

51.0

37.2

16 × 16

.018

.457

.0445

1.13

50.7

34.5

18 × 18

.017

.432

.0386

.98

48.3

34.8

20 × 20

.020

.508

.0300

.76

36.0

55.2

20 × 20

.016

.406

.0340

.86

46.2

34.4

24 × 24

.014

.356

.0277

.70

44.2

31.8

30 × 30

.013

.330

.0203

.52

37.1

34.8

30 × 30

.012

.305

.0213

.54

40.8

29.4

30 × 30

.009

.229

.0243

.62

53.1

16.1

35 × 35

.011

.279

.0176

.45

37.9

29.0

40 × 40

.010

.254

.0150

.38

36.0

27.6

50 × 50

.009

.229

.0110

.28

30.3

28.4

50 × 50

.008

.203

.0120

.31

36.0

22.1

60 × 60

.0075

.191

.0092

.23

30.5

23.7

60 × 60

.007

.178

.0097

.25

33.9

20.4

70 × 70

.0065

.165

.0078

.20

29.8

20.8

80 × 80

.0065

.165

.0060

.15

23.0

23.2

80 × 80

.0055

.140

.0070

.18

31.4

16.9

80 × 80

.0047

.119

.0078

.198

39

11.39

90 × 90

.005

.127

.0061

.16

30.1

15.8

100 × 100

.0045

.114

.0055

.14

30.3

14.2

100 × 100

.004

.102

.0060

.15

36.0

11.0

100 × 100

.0035

.089

.0065

.17

42.3

8.3

 

Mesh Count/

Inch

Wire Diameter

Type of Weave

Warp wire dia.

Weft wire dia.

inch

mm

inch

mm

12x64

0.023

0.58

0.0165

0.42

Plain

14x88

0.019

0.48

0.012

0.30

Plain

14x110

0.016

0.40

0.011

0.28

Plain

24x110

0.014

0.355

0.010

0.25

Plain

Application

-Almost anything used around sulfuric acid (heat exchangers, evaporators, filters, and mixers)
-Bleach plants and digesters for the manufacturing of paper and pulp
-Components used around sour gas
-Marine engineering
-Waste treatment
-Pollution control

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