Stainless Steel 416 Wire Alloy

Stainless Steel 416 has a density of approximately 7.75 g/cm³ (0.280 lb/in³) and is composed of 12.00–14.00% chromium, 1.00% maximum silicon, 1.25% maximum manganese, 0.15% maximum carbon, and 0.15% minimum sulfur, with the balance consisting of iron. It is a tough, heat-treatable martensitic stainless steel known for its excellent machinability, strength, hardness, and wear resistance. The intentional sulfur addition improves chip formation and machining performance, making Type 416 one of the easiest stainless steel grades to machine. This combination of machinability and mechanical performance makes Stainless Steel 416 an excellent choice for shafts, fasteners, valve components, fittings, gears, wire forms, and other precision-machined industrial applications.

Terms for Stainless Steel 416 Wire Alloys Available

416 stainless steel wire is identified under multiple naming conventions, including grade, alloy, and UNS designations; depending on the specification, industry, or standard being used.

    • 416 Stainless Steel
    • Stainless Steel 416
    • Type 416
    • AISI 416
    • Alloy 416
    • UNS S41600
    • SS 416
    • SS416
    • Grade 416
    • Free Machining Stainless Steel
    • Free-Cutting Stainless Steel
    • Sulfur-Modified Stainless Steel
    • Machinable Martensitic Stainless Steel
    • 13Cr Free Machining Stainless Steel
    • 13% Chromium Stainless Steel
    • SAE 416
    • EN 1.4005
    • X12CrS13
    • SUS 416 (Japan)
    • DIN 1.4005
    • W.Nr. 1.4005
    • ASTM 416
    • Chromium Martensitic Stainless Steel
    • Heat Treatable Stainless Steel
    • High Machinability Stainless Steel

Other Names for Stainless Steel 416

Stainless steel 416 alloys are known by several names depending on the standard, specification, or drawing being used. Understanding these alternate names matters because the same alloy can appear under different designation systems across quotes, certifications, standards, and legacy prints. For buyers and engineers working with wire, this is especially important, since Stainless Steel 416 may be referenced through material standards tied to specific product forms and applications rather than by one simple trade name alone.

  • Stainless Steel 416 / 416 Stainless Steel

    Stainless Steel 416 is the plain-language commercial name used by manufacturers, distributors, engineers, and buyers throughout the stainless steel industry. This name can be further shortened to SS416 or SS 416. Best for website copy, product pages, blogs, and non-technical sales language where readability and recognition are most important. It is one of the most widely recognized market-facing names for the alloy and the easiest designation for buyers who are searching by common stainless steel grade rather than by a formal standards designation such as UNS S41600 or EN 1.4005.
  • Type 416

    Type 416 is the traditional “Type” grade designation used throughout stainless steel specifications and industry practice and appears in technical descriptions, engineering standards, and material references for Stainless Steel 416. Best for technical sales sheets, alloy descriptions, engineering drawings, and legacy documents where stainless steel grades are identified using the traditional Type system. Many engineers, buyers, and metallurgists still reference stainless grades in “Type” terminology, making this designation familiar, easy to recognize, and well aligned with longstanding industry documentation.

  • AISI 416

    AISI 416 is the designation derived from the American Iron and Steel Institute (AISI) stainless steel grade classification system. Best for engineering discussions, procurement cross-references, technical specifications, and older North American documents that continue to use AISI terminology. The use of AISI 416 immediately identifies the material as the widely recognized free-machining martensitic stainless steel grade rather than simply a commercial trade name, making it useful for technical communication, material selection, and specification review across a wide range of industries.

  • Alloy 416

    Alloy 416 is a general commercial shorthand and conversational naming style used throughout the metals industry when the stainless steel family is already understood. Best for casual product discussions, internal communication, sales conversations, and simplified technical language where the audience already knows the material is stainless steel. It is concise, recognizable, and easy to read, but it is less precise than formal designation systems because the term “alloy” by itself does not identify the governing specification, standards organization, or numbering system associated with the material.
  • UNS S41600

    UNS S41600 is the official Unified Numbering System (UNS) designation for Stainless Steel 416. Best for formal material identification, cross-referencing between industry standards, quality assurance documentation, mill certifications, engineering specifications, and multi-standard procurement requirements. This designation serves as the clearest and most unambiguous identifier when matching Stainless Steel 416 across different specification systems and international standards. It is especially useful when a drawing, certification, purchase order, or compliance document requires a formal material designation rather than a commercial or trade-style name.

  • Grade 416

    Grade 416 is a generic technical descriptor commonly used in datasheets, engineering references, technical articles, and educational materials for the alloy. Best for technical overviews, material comparisons, specification discussions, and informational content. It reads naturally in explanatory writing and is particularly useful when comparing stainless steel grades, such as Grade 416 vs. Grade 410 or Grade 416 vs. Grade 420. Because it uses straightforward technical language rather than a specific standards designation, Grade 416 is widely understood by engineers, buyers, students, and industry professionals across a broad range of machining and industrial applications.

  • Free Machining Stainless Steel

    Free Machining Stainless Steel is a common technical description for Stainless Steel 416 because it was specifically developed to provide superior machinability compared to other martensitic stainless steel grades. Best for precision-machined components, shafts, fasteners, fittings, valve parts, and high-volume manufacturing applications. This designation highlights the alloy’s sulfur-enhanced chemistry, which improves chip formation and machining performance while maintaining the strength, hardness, and heat-treatable properties associated with martensitic stainless steels.

  • Free-Cutting Stainless Steel

    Free-Cutting Stainless Steel is a common technical description for Stainless Steel 416 because of its enhanced machinability and chip-breaking characteristics during machining operations. Best for precision-machined parts, fittings, valve components, shafts, fasteners, and high-volume production applications. This designation highlights the alloy’s sulfur-modified chemistry, which improves cutting performance and manufacturing efficiency while maintaining the strength, hardness, and heat-treatable properties of a martensitic stainless steel.

  • Sulfur-Modified Stainless Steel

    Sulfur-Modified Stainless Steel is a common technical description for Stainless Steel 416 because sulfur is intentionally added to improve machinability and chip control during machining operations. Best for precision-machined components, fittings, valve parts, shafts, fasteners, and high-volume manufacturing applications. This designation highlights the alloy’s enhanced machining performance, allowing faster production rates and improved tool life while maintaining the strength, hardness, and heat-treatable characteristics of a martensitic stainless steel.

  • Machinable Martensitic Stainless Steel

    Machinable Martensitic Stainless Steel is a common technical description for Stainless Steel 416 because it combines the heat-treatable strength and hardness of martensitic stainless steels with enhanced machinability. Best for precision-machined components, shafts, valve parts, fittings, fasteners, and other applications requiring efficient manufacturing and reliable mechanical performance. This designation highlights the alloy’s sulfur-enhanced chemistry, which improves cutting characteristics while preserving the strength, wear resistance, and heat-treatable properties that make Stainless Steel 416 a popular choice for machining-intensive applications.

  • 13Cr Free Machining Stainless Steel

    13Cr Free Machining Stainless Steel is a chemistry-based designation commonly used to describe Stainless Steel 416 based on its approximate 13% chromium content and enhanced machinability. Best for precision-machined components, fittings, valve parts, shafts, fasteners, and industrial manufacturing applications. This designation highlights the alloy’s sulfur-modified chemistry, which improves chip control and machining performance while maintaining the strength, hardness, corrosion resistance, and heat-treatable properties characteristic of martensitic stainless steels.

  • 13% Chromium Stainless Steel

    13% Chromium Stainless Steel is a chemistry-based designation commonly used to describe Stainless Steel 416 based on its approximate 13% chromium content. Best for educational content, alloy comparisons, and technical discussions focused on stainless steel chemistry. This designation highlights the chromium addition that provides Stainless Steel 416 with its corrosion resistance while supporting the martensitic structure that enables enhanced strength, hardness, wear resistance, and excellent machinability.

  • SAE 416

    SAE 416 is a designation associated with the Society of Automotive Engineers (SAE) material numbering system and is commonly referenced in engineering, manufacturing, and procurement environments where SAE standards and terminology are used. Best for machining applications, engineering documentation, material specifications, and cross-referencing between industry standards. The use of SAE 416 clearly identifies the material as the widely recognized free-machining martensitic stainless steel grade, helping engineers and buyers align material requirements across drawings, specifications, certifications, and purchasing documents.
  • EN 1.4005

    EN 1.4005 is the European material number designation for Stainless Steel 416 within the EN (European Norm) standards system. Best for European engineering specifications, international procurement, material certifications, technical documentation, and cross-referencing between global stainless steel standards. The use of EN 1.4005 immediately identifies the material according to a standardized European classification, making it easier to match Stainless Steel 416 across international supply chains and regulatory requirements. This designation is widely recognized throughout Europe and is commonly found on mill certificates, engineering drawings, quality documentation, and material specifications where compliance with European standards is required.
  • X12CrS13

    X12CrS13 is the European chemical designation for Stainless Steel 416 and is commonly used in EN standards, engineering specifications, material certifications, and technical documentation. Best for European engineering drawings, international procurement, and applications where the alloy’s chemistry must be clearly identified. The designation X12CrS13 describes the alloy based on its chemical composition, indicating a sulfur-modified martensitic stainless steel containing approximately 13% chromium. This designation is widely recognized throughout Europe and can be cross-referenced to EN 1.4005, UNS S41600, and other equivalent Stainless Steel 416 specifications.
  • SUS 416

    SUS 416 is the Japanese Industrial Standards (JIS) designation for Stainless Steel 416 and is widely used throughout Japan and in global supply chains that source, manufacture, or specify materials according to Japanese standards. Best for international procurement, engineering specifications, material certifications, manufacturing documentation, and cross-referencing between global stainless steel standards. The use of SUS 416 immediately identifies the material as the Japanese equivalent of Stainless Steel 416, making it easier for engineers, buyers, and quality professionals to verify material compatibility across regional specifications. This designation frequently appears on Japanese engineering drawings, mill certificates, and technical documents and serves as a recognized international reference for this free-machining martensitic stainless steel grade.
  • DIN 1.4005

  • W.Nr. 1.4005

    W.Nr. 1.4005 is the Werkstoffnummer (material number) designation for Stainless Steel 416 and is widely used in European engineering specifications, certifications, and technical documentation. Best for international procurement, material cross-referencing, and quality documentation. The designation W.Nr. 1.4005 provides a standardized material identifier that helps engineers and buyers match Stainless Steel 416 across European and global standards systems while identifying it as a free-machining martensitic stainless steel grade.
  • ASTM 416

    ASTM 416 is a common reference to Stainless Steel 416 when specified under ASTM material standards. Best for engineering specifications, procurement documents, quality requirements, and manufacturing applications that follow ASTM standards. The designation ASTM 416 helps identify the alloy within ASTM-controlled specifications and is frequently used in technical documentation, certifications, and material purchasing requirements, particularly where superior machinability, heat-treatable properties, and reliable mechanical performance are important.

  • Chromium Martensitic Stainless Steel

    Chromium Martensitic Stainless Steel is a broad technical description used to classify Stainless Steel 416 based on its chromium content and martensitic crystal structure. Best for educational content, metallurgy discussions, and technical overviews of stainless steel families. This designation highlights the alloy’s chromium-based corrosion resistance and its ability to be heat treated for increased strength, hardness, and wear resistance, while also emphasizing the enhanced machinability that distinguishes Stainless Steel 416 from many other martensitic stainless steel grades.

  • Heat Treatable Stainless Steel

    Heat Treatable Stainless Steel is a common technical description for Stainless Steel 416 because it can be hardened and strengthened through heat treatment. Best for precision-machined components, shafts, valve parts, fasteners, fittings, and industrial equipment requiring enhanced mechanical performance. This designation highlights one of the alloy’s most valuable characteristics: the ability to achieve higher hardness, strength, and wear resistance through heat treatment while maintaining the excellent machinability that makes Stainless Steel 416 a preferred choice for machining-intensive applications.

  • High Machinability Stainless Steel

    High Machinability Stainless Steel is a common technical description for Stainless Steel 416 because it offers some of the best machining characteristics among stainless steel grades. Best for precision-machined components, fittings, shafts, valve parts, fasteners, and high-volume manufacturing operations. This designation highlights the alloy’s sulfur-enhanced chemistry, which improves chip control, cutting performance, and production efficiency while maintaining the strength, hardness, and heat-treatable properties of a martensitic stainless steel.

Stainless Steel 416 Wire Alloy Chemical Composition

Stainless Steel 416 has a density of approximately 7.75 g/cm³ (0.280 lb/in³) and is composed of 12.00–14.00% chromium, 1.00% maximum silicon, 1.25% maximum manganese, 0.15% maximum carbon, and 0.15% minimum sulfur, with the balance consisting of iron. It is a tough, heat-treatable martensitic stainless steel known for its excellent machinability, strength, hardness, and wear resistance. The intentional sulfur addition improves chip formation and machining performance, making Type 416 one of the easiest stainless steel grades to machine. This combination of machinability and mechanical performance makes Stainless Steel 416 an excellent choice for shafts, fasteners, valve components, fittings, gears, wire forms, and other precision-machined industrial applications.

Stainless Steel 416 Wire Alloy Benefits

  • Corrosion Resistance: Stainless steel wire alloys resist rust and oxidation, making them ideal for harsh environments.
  • High Strength & Durability: Experience excellent tensile strength and long-lasting performance, even under heavy loads.
  • Heat & Temperature Resistance: Maintain structural integrity and performance in high-temperature applications.
  • Low Maintenance: Stainless steel requires minimal upkeep due to its self-healing chromium oxide layer.
  • Recyclability: Stainless steel is 100% recyclable, making it an environmentally sustainable material choice.

Which Industries Use Stainless Steel 416 Wire Alloys?

Stainless steel wire alloys are used in various industries, including:

  • Aerospace: Stainless steel wire alloys are used in aircraft cables, fasteners and structural components for their strength and corrosion resistance.
  • Automotive: Found in exhaust systems, springs and safety components, stainless steel wire enhances durability and heat resistance.
  • Marine: Used in rigging, mooring and corrosion-resistant marine hardware to withstand exposure to seawater.
  • Medical & Healthcare: Stainless steel wire is vital for surgical instruments, orthodontic applications, and medical implants due to its biocompatibility.
  • Oil & Gas: Stainless steel wire is utilized in safety cables, wire mesh screens and high-pressure components in harsh drilling environments.

What Diameters Are Available for Stainless Steel 416 Wire Alloys?

Sunset Wire can manufacture custom diameters of SS416 for your project. Common sizes of Type 416 include:

  • 0.0625 inches
  • 0.092 inches
  • 0.105 inches
  • 0.120 inches
  • 0.125 inches
  • 0.135 inches
  • 0.145 inches
  • 0.148 inches
  • 0.156 inches
  • 0.162 inches
  • 0.177 inches
  • 0.1875 inches
  • 0.192 inches
  • 0.225 inches
  • 0.243 inches
  • 0.250 inches
  • 0.312 inches
  • 0.375 inches
  • 0.437 inches
  • 0.500 inches

Stainless Steel 416 Made to Order

Sunset Wire stocks a large inventory of stainless steel wire to ensure you get it fast. Get your wire in 1 lb cans, 1 lb spools or 5 lb spools. Other spool sizes are available upon request.

Why Choose Sunset Wire?

Sunset Wire provides domestically drawn wire in various diameters, lengths and packages. Get your stainless steel wire delivered anywhere in the US thanks to our large inventory and dedicated supply chain management capabilities.

  • Built on 70+ years of industry experience
  • Certifications include AS9100
  • All wire is proudly made in the USA
  • Fast shipping speed to get your wire on time
  • Sustainable packaging that aligns with your green initiatives

Frequently Asked Questions

What are stainless steel wire alloys?
Stainless steel wire alloys are high-strength, corrosion-resistant wires composed of iron, chromium, nickel and other elements. They are designed to provide superior durability and heat resistance across various applications.

Announcing our new wire calculator!