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Nichrome Alloy-NiCr 80 20 wire mesh

Specification

Material: NiCr 80 20 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

Nichrome wire mesh, also known as NiCr Mesh, nickel-chromium wire mesh, or chromium-nickel wire mesh is a family of alloys of nickel, chromium, and often iron, and possibly other elements. Nichrome alloy wire & mesh is commonly used as resistance wire, heating elements in things like toasters and heaters, and a few other related applications.

A common nichrome alloy wire mesh is 80/20 Ni Cr wire mesh, NiCr80 20 wire mesh, or Cr20Ni80 wire mesh, which is of 80% nickel and 20% chromium by mass.   
Besides 80/20 NiCr wire mesh, there are many other combinations of metals for various applications.

EQUIVALENT STANDARDS

INDUSTEEL TRADEMARKS

UNS

ASTM

EURONORMS EN

SUS

 

N06003

N06003

EN 2.4869

 

Chemical Composition of Nichrome wire mesh and 80/20 NiCr wire mesh

Ni

Cr

Al

Cu

Fe

Mn

S

P

Si

C

75.0

Min

19.0-

21.0

0.3

Max

0.5

Max

1.0

Max

1.0

Max

.015

Max

.02

Max

0.5-

2.0

0.15

Max

Physical Properties of Nichrome wire mesh and 80/20 NiCr wire mesh.

Physical Properties

Cr20Ni80

Cr30Ni70

Cr15Ni60

Cr20Ni35

Cr20Ni30

Density(g/cm3)

8.4

8.1

8.2

7.9

7.9

Melting point approx.( ºC)

1400

1380

1390

1390

1390

Max. continuous service temp. 

of element(ºC)

1200

1250

1150

1100

1100

Resistivity at 20ºC 

(μΩ·m)

1.09±0.05

1.18±0.05

1.12±0.05

1.00±0.05

1.04±0.05

Thermal conductivity 

(KJ/m·h·ºC)

60.3

45.2

45.2

43.8

43.8

Coefficient of lines expansion

(α×10-6/ºC)

18

17

17

19

19

Elongation at rupture(%)

>20

>20

>20

>20

>20

Micrographic structure

Austenite

Austenite

Austenite

Austenite

Austenite

Magnetic properties

Nonmagnetic

Nonmagnetic

Nonmagnetic

Weak magnetic

Weak magnetic

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

-Resistance heating elements
-Heating elements of industrial electric furnace
-Household heating devices.
-Water and air heaters

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Inconel Wire Mesh – The Ultimate Solution for Industries

Overview

Known widely in the engineering sector, Inconel wire mesh shows excellent strength, resistance to oxidation, corrosion and even extreme foehn winds. It is used for aerospace, marine, chemical processing and power generation industries, allowing for efficacy and reliability in the most ghastly conditions. This article focuses on issues, purposes, and pros of Inconel wire mesh, while also stating Metart Building Tech as one of the leading suppliers of the product.

What is Inconel Wire Mesh

Inconel is designed nickel-chromium based superalloy that best operates in extreme conditions. Compared to other materials, Inconel wire mesh provides superior capabilities it does not get stressed or corroded and oxidation becomes several times easier. It is a requisite for sectors that require great filtering, structural soundness and durability.

Inconel Wire Mesh's crucial attributes.

1. High Temperature Sustainability to Function

It is able to withstand greater than 1000 degree celcius without fainting making it ideal for industrial and high heat purposes.

2. Corrosion Resistance of the Greatest Level

Incredibly resistant to oxidation, acidic environments, and chemicals in seawater making it extremely favourable in marine and chemical arenas.

3. Greater Toughness and Sturdiness

Extracts from the surface microclimate have been presented as markers which help indicate the stresses and temperatures under which crystals interact.

4. Flexible Weaving Patterns

These patterns can be supplied in basic, twill or Dutch style weaves to suit particular industrial needs.

Applications of Inconel Wire Mesh In The Industry

1. Aerospace Industry

Jet engines, turbines, exhaust parts and heat shields must withstand tremendous thermal stresses, which make this material essential.

2. Chemical Processing

Used for filtering, supporting catalysts, and heat exchangers in strong corrosive environments.

3. Marine and Offshore Operations

It has excellent resistance to saltwater which is useful in oil rigs, desalination stations, and other underwater constructions.

4. Power Generation

High performance Inconel 625 is widely used in nuclear reactors and steam generators, where high operational temperatures are normal.

5. Automotive And Gas Turbines

Inconel parts can be used in manifolds turbocharger turbines and other highly stressed and heated mobile components.

Why Metart Building Tech is the Best For Inconel Wire Mesh?

Metart Building Tech is one of the best manufacturers of Inconel wire mesh of any type, for practically any industry. Their Inconel wire mesh products made with Nickel Alloy 600 (Inconel 600) Wire Mesh is specially manufactured with great care and accuracy which makes them stand out from the rest of the market.

Benefits of Metart Building Tech’s Inconel Wire Mesh

Metart Being the Industry Leader, the weave patterns on their Inconel wire mesh products do not suffer from loosening or wearing off due to the use of more advanced weaving machinery.

• Custom Fabrication - Different sizes of the mesh, wire diameters, and weaving styles are available as per the needs of the application.

• Strict Quality Assurance - Compliance with international standards ensures superior performance and reliability.

• Industry Expertise – Many years of experience delivering specialized solutions for critical industries.

Conclusion

Inconel wire mesh is ideal for industries that need materials that can withstand very high temperatures, heat, and pressure. For extreme industrial applications where durability, heat resistance, and corrosion protection are of utmost importance, this is the most dependable option.

Metart Building Tech, as a manufacturer, provides the industry with the best Inconel 600 wire mesh that goes beyond set standards.

Check out Metart Building Tech’s collection of nickel alloy 600 wire mesh and find the perfect solution for your industrial application.

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