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Automated comparison · 67% overlap

316L vs X6Cr17: 67% composition overlap. Moderate differences, generally not direct substitutes.

316L vs X6Cr17

Side-by-side chemical composition and mechanical property comparison.

Overview

316L

1.4404

Stainless SteelAustenitic

Low-carbon austenitic stainless steel with molybdenum addition. Superior corrosion resistance to 304, especially against chlorides and pitting. Standard choice for chemical processing, marine, medical implants, and pharmaceutical equipment.

X6Cr17

1.4016

Stainless SteelFerritic

THE standard ferritic stainless steel — 16-18% Cr, no Ni. Non-hardenable, magnetic, lower cost than austenitic grades. Good corrosion resistance for indoor/mild environments. Used for kitchen sinks, automotive trim, washing machine drums, architectural panels, and catering equipment. Not suitable for welding thick sections (grain coarsening). AISI 430.

316LX6Cr17
Material Number1.44041.4016
CategoryStainless SteelStainless Steel
StandardEN 10088-2EN 10088-2

Chemical composition (wt%)

Element316LX6Cr17Overlap
C0–0.03%0–0.08%OK
Si0–1%0–1%OK
Mn0–2%0–1%OK
P0–0.045%≤ 0.04%OK

Mechanical properties

Property316LX6Cr17Unit
tensile_strength520–680400–600MPa
yield_strength≥ 220≥ 240MPa
elongation≥ 40≥ 20%

Compatibility Assessment

316L and X6Cr17 have moderate differences (67% overlap). They are generally not direct substitutes. Consider the specific requirements of your application.

Automated assessment based on composition analysis

Frequently Asked Questions

Is 316L the same as X6Cr17?

316L and X6Cr17 have a 67% composition overlap. They are generally not directly interchangeable.

Can I replace 316L with X6Cr17?

Generally not recommended. The compositions differ significantly (67% overlap). These materials have different alloying concepts and are intended for different applications.

What is the difference between 316L and X6Cr17?

The main differences are in the following elements: Cr. 316L is a Stainless Steel grade, while X6Cr17 is a Stainless Steel grade.

Related Comparisons

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Data provided for reference only. Always verify against the applicable specification for critical applications.

All data is for reference only. Equivalents indicate similarity, not identity. Always verify against the applicable specification for safety-critical applications. materialref.com accepts no liability for decisions based on this data.