MONEL
INCONEL
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AEETHER

INCOLOY
HASTELLOY
UNS N06455

Hastelloy Alloy
C-4

W.Nr. 2.4610
  1. AEETHER
  2. GRADES
  3. Hastelloy C-4
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Learn about Hastelloy C-4
Products Available
Introduction
Main Standards
Chemical Composition
Data Sheet
Applications
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Introduction

logo of solid solution strengthened alloy

Solid Solution
Strengthened Alloy

Nickel
Chromium
Molybdenum
Corrosion
Resistance
91
Mechanical
Behavior
70
Purity
91

Overview

As a leading supplier & manufacturer in China, AEETHER supply cost-effective Hastelloy C-4 Products.

HASTELLOY® C-4 alloy (UNS N06455) is the most (microstructurally) stable of the widely used nickel-chromium-molybdenum materials, which are well known for their resistance to many aggressive chemicals, in particular hydrochloric acid, sulfuric acid, and chlorides. This stability means that the alloy can be welded without fear of sensitization, i.e. the nucleation and growth of deleterious, second phase precipitates in the grain boundaries of the weld heat-affected zone (HAZ).

Like other nickel alloys, it is ductile, easy to form and weld, and possesses exceptional resistance to stress corrosion cracking in chloride-bearing solutions (a form of degradation to which the austenitic stainless steels are prone). With its high chromium and molybdenum contents, it is able to withstand both oxidizing and non-oxidizing acids, and is resistant to pitting and crevice attack in the presence of chlorides and other halides.

Resistance to Pitting & Crevice Corrosion

HASTELLOY® C-4 alloy exhibits high resistance to chloride-induced pitting and crevice attack, forms of corrosion to which the austenitic stainless steels are particularly prone. To assess the resistance of alloys to pitting and crevice attack, it is customary to measure their Critical Pitting Temperatures and Critical Crevice Temperatures in acidified 6 wt.% ferric chloride, in accordance with the procedures defined in ASTM Standard G 48. These values represent the lowest temperatures at which pitting and crevice attack are encountered in this solution, within 72 hours.

Resistance to Stress Corrosion Cracking

One of the chief attributes of the nickel alloys is their resistance to chloride-induced stress corrosion cracking. A common solution for assessing the resistance of materials to this extremely destructive form of attack is boiling 45% magnesium chloride (ASTM Standard G 36), typically with stressed U-bend samples. As is evident from the following results, the two nickel alloys, C-4 and 625, are much more resistant to this form of attack than the comparative, austenitic stainless steels. The tests were stopped after 1,008 hours (six weeks).

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Main Standards

ASTM B622
Seamless Pipe & Tube
ASTM B619
Welded Pipe & Tube
ASTM B626
Welded Pipe & Tube
ASTM B366
Fittings
ASTM B574
Billet, Rod and Bar
ASTM B575
Plate, Sheet and Strip
AWS A5.14 ERNiCrMo-7
Filler Metal
AWS A5.11 ENiCrMo-7
Welding Electrode

Chemical Composition

Data Sheet

Physical Properties

Density g/cm3 8.64
lb/in.3 0.312

Mechanical Properties

Form Test Temperature Thickness Yield Strength
(0.2% Offset)
Tensile Strength Elongation
°F °C in mm ksi MPa ksi MPa %
Sheet RT RT 0.065 1.7 60.3 416 111.4 768 52
Sheet 400 204 0.065 1.7 58.5 403 102.4 706 49
Sheet 600 316 0.065 1.7 53.8 371 97.9 675 52
Sheet 800 427 0.065 1.7 46.4 320 95.2 656 64
Sheet RT RT 0.125 3.2 61 421 116.2 801 54
Sheet 400 204 0.125 3.2 46.4 320 98.3 678 54
Sheet 600 316 0.125 3.2 43.9 303 97.5 672 59
Sheet 800 427 0.125 3.2 43.9 303 93.4 644 62
Sheet 1000 538 0.125 3.2 43.4 299 93.5 645 55
Sheet RT RT 0.156 4 53 365 113.5 783 55
Sheet 400 204 0.156 4 39.9 275 99.9 689 55
Sheet 600 316 0.156 4 36.1 249 95.3 657 61
Sheet 800 427 0.156 4 36.2 250 95.1 656 68
Plate RT RT 0.25 6.3 48.8 336 111.3 767 58
Plate 400 204 0.25 6.3 42.8 295 104 717 54
Plate 600 316 0.25 6.3 40.8 281 103.3 712 55
Plate 800 427 0.25 6.3 37 255 99 683 60
Plate RT RT 0.375 9.5 51.6 356 114.7 791 59
Plate 400 204 0.375 9.5 43.6 301 105.4 727 56
Plate 600 316 0.375 9.5 39.1 270 102.1 704 59
Plate 800 427 0.375 9.5 37.4 258 96.3 657 62
Plate 1000 538 0.375 9.5 33 228 93.3 643 52
Plate RT RT 0.5 12.7 48.6 335 116.8 805 63
Plate 400 204 0.5 12.7 38.3 264 105.2 725 61
Plate 600 316 0.5 12.7 35.8 247 102.5 707 65
Plate 800 427 0.5 12.7 34.2 236 99.8 688 66
Plate 1000 538 0.5 12.7 29.8 205 92.1 635 71
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Applications

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