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ASTM A193 Grade B8ML4CuN Bolts (S31730) DATASHEETASTM A193 Grade B8ML4CuN Bolts (S31730) DATASHEETASTM A193 Grade B8ML4CuN Bolts (S31730) DATASHEETASTM A193 Grade B8ML4CuN Bolts (S31730) DATASHEET
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ASTM A193 GRADE B8ML4CuN & B8ML4CuNA BOLTS — DATASHEET, DIMENSIONS & MECHANICAL PROPERTIES

Ananka Fasteners is a premier global manufacturer and supplier of ASTM A193 Grade B8ML4CuN and B8ML4CuNA Fasteners. Forged from the highly specialized UNS S31730 austenitic stainless steel, these fasteners are engineered for one specific, highly aggressive environment: boiling, concentrated reducing acids. By radically modifying the standard 317L chemistry with a massive 4-5% Copper addition alongside elevated Nickel and Molybdenum, this alloy possesses an extraordinary ability to resist sulfuric and phosphoric acid attacks.

The "L" designation dictates an ultra-low Carbon content (≤ 0.030%), granting total immunity to intergranular corrosion (weld decay) in the heat-affected zone. Because this alloy prioritizes extreme chemical resistance over physical strength (it lacks a high nitrogen charge), its native baseline yield strength is legally established at 25 ksi. While Grade B8ML4CuN undergoes standard carbide solution treatment, the B8ML4CuNA designation mandates post-fabrication annealing to eradicate all residual threading stresses and cap the hardness at 90 HRB for severe stress-corrosion cracking (SCC) immunity. All B8ML4CuN components are strictly supported by EN 10204 Type 3.1 Material Test Certificates (MTC).

■ Proprietary Datasheet Download

For lead chemical engineers, FGD structural designers, and NACE compliance auditors requiring empirical sulfuric acid iso-corrosion curves and yield stress calculations for ASTM A193 B8ML4CuN, the complete technical datasheet must be accessed.

📄

ASTM A193 B8ML4CuN (S31730) — Complete Technical Yield & Iso-Corrosion Datasheet

Contains empirical data for stress simulations, ASTM G31 sulfuric acid immersion tests, and true stress-strain curves. Corporate credentials required.

⬇ ACCESS SECURE DATASHEET PORTAL

■ Mill Test Certificate (MTC) Integration

Because the elite performance of B8ML4CuN relies entirely on massive, non-standard alloy additions, the EN 10204 3.1 Mill Test Certificate (MTC) is the absolute proof of component integrity. Ananka Fasteners’ MTCs for B8ML4CuN explicitly guarantee:

  • High-Copper/High-Nickel Verification: Empirical spectrography proving the precise balance of Copper (4.0-5.0%) and Nickel (15.0-16.5%) required to form the acid-resistant matrix.
  • Ultra-Low Carbon Proof: Verification that Carbon levels do not exceed the strict 0.030% limit, ensuring immunity to weld sensitization.
  • Mechanical Baseline Proof: Destructive test verification proving the batch meets the native 25 ksi minimum yield and high elongation limits.
  • Post-Fabrication Verification (B8ML4CuNA): An explicit statement confirming that carbide solution treatment was performed after all heavy machining and threading operations.
View Our Sample MTC: Download ASTM A193 B8ML4CuN SAMPLE MTC →

■ Material Specifications (ASTM A193 B8ML4CuN / B8ML4CuNA)

Material Type Copper-Alloyed, Molybdenum-Rich Austenitic Stainless Steel
UNS Number S31730
Corresponding Nut Grade ASTM A194 Grade 8ML4CuN (for B8ML4CuN) / Grade 8ML4CuNA (for B8ML4CuNA)
Density 8.00 g/cm³ (8,000 kg/m³)
Primary Resistance Extreme resistance to reducing acids (Sulfuric, Phosphoric, Acetic)
Magnetic Permeability Strictly Non-Magnetic (Highly stable austenite phase due to high Nickel)
Pitting Resistance (PREN) 27.0 - 33.0 (Highly resilient to chloride attack)

■ Dimensions of Heavy Hex Bolts (ASME B18.2.1)

Standard dimensional specifications for ASME B18.2.1 Heavy Hex Bolts. The heavy hex profile provides the expanded bearing footprint necessary to securely distribute compressive loads across flanged joints in heavily corrosive chemical processing pipelines.

Nominal Size (in) Threads per Inch (TPI) Width Across Flats (Max) Head Height (Max) Width Across Corners (Min)
1/2"130.875"0.344"0.969"
5/8"111.062"0.422"1.175"
3/4"101.250"0.500"1.383"
7/8"91.438"0.578"1.589"
1"81.625"0.656"1.796"
1-1/8"8 (UN)1.812"0.734"2.002"
1-1/4"8 (UN)2.000"0.812"2.209"
1-1/2"8 (UN)2.375"0.969"2.622"
2"8 (UN)3.125"1.281"3.449"

■ Chemical Composition (per ASTM A193)

Grade C (Max) Cr Ni Mo (Molybdenum) Cu (Copper) N (Max) Mn / Si (Max)
B8ML4CuN (S31730) 0.030% 17.0 - 19.0% 15.0 - 16.5% 3.00 - 4.00% 4.00 - 5.00% 0.045% 2.00% / 1.00%
Metallurgical Note: The defining characteristic of UNS S31730 is the massive 4-5% Copper (Cu) addition. Standard austenitic steels corrode rapidly in reducing acids like sulfuric acid. The high copper content actively creates a resilient, protective surface film that essentially halts the reducing acid attack. To prevent this much copper from making the metal brittle, the Nickel (Ni) content is driven up to 16.5% to deeply stabilize the austenitic lattice.

■ Mechanical Properties

Grade / Class Tensile Strength (Min) Yield Strength (0.2% Offset) Elongation Reduction of Area Max Hardness
B8ML4CuN (Class 1) 70,000 psi (480 MPa) 25,000 psi (175 MPa) 35% Min 50% Min 96 HRB (223 HBW)
B8ML4CuNA (Class 1A) 70,000 psi (480 MPa) 25,000 psi (175 MPa) 35% Min 50% Min 90 HRB (192 HBW)

*Crucial Engineering Note: Because this alloy lacks the high-nitrogen strengthening mechanism found in other advanced grades, its native yield strength is lower than standard 304/316 (25 ksi vs 30 ksi). Engineers must account for this increased ductility and lower yield threshold when calculating flange torque and clamp loads.

■ Applicable Standards & Specifications

Application Type Bolts & Studs Nuts Grade Designation
Chemical Processing (Sulfuric/Acetic Acid) ASTM A193 ASTM A194 B8ML4CuN / 8ML4CuN
Flue Gas Desulfurization (FGD) ASTM A193 ASTM A194 B8ML4CuNA / 8ML4CuNA
Pulp & Paper Digesters ASME B16.5 ASME B18.2.2 Heavy Hex Series

■ The Engineering Nuance: The Sulfuric Acid Solution

Piping engineers in the chemical processing and fertilizer industries face a unique dilemma. Traditional chlorides attack metal via "oxidizing" corrosion (pitting), which Molybdenum defends against. However, acids like sulfuric and phosphoric attack metal via "reducing" corrosion, which strips the protective oxide layer right off standard Molybdenum-alloyed stainless steels like 316 and 317L, dissolving the bolt.

ASTM A193 B8ML4CuN was explicitly formulated to counter this. By saturating the austenitic matrix with up to 5% Copper, the alloy chemically reacts with the reducing acid to form a highly tenacious cupric film across the thread surfaces. This film arrests the chemical attack, allowing the fastener to survive submerged in warm sulfuric acid concentrations that would destroy standard marine-grade stainless in days.

■ Fastener Types Available

Fastener Category Standard and Specialty Types Available Primary Engineering Function
Chemical Flange Studs Fully Threaded Stud Bolts, Double-End Studs, Weld Studs. Provides reliable clamping for ASME B16.5 flanges inside acid recovery and FGD scrubber networks.
Heavy Industrial Bolts Heavy Hex Bolts, Hex Cap Screws, Socket Head Cap Screws. Direct structural fastening inside pulp digesters and acetic acid distillation columns.
Matched Nuts (A194) Heavy Hex Nuts (Grade 8ML4CuN). Provides identical copper-enriched chemistry across the joint to prevent localized galvanic acid attack.

■ Commercial Supply Chain Dynamics: Why Choose Ananka

The global industrial fastener market requires manufacturing entities capable of blending hyper-scale production volume with microscopic precision. Ananka Fasteners exemplifies the apex of modern industrial hardware manufacturing, servicing over 240 high-value corporate clients spanning more than 40 countries.

  • Stringent Global Certification: Ananka operates under an integrated management system certified to ISO 9001:2015, ISO 14001:2015, and ISO 45001:2018. We hold the prestigious PED 2014/68/EU certification for explosive, high-pressure environments.
  • Exotic Alloy Mastery: Our deep expertise in highly engineered chemical processing alloys extends far beyond UNS S31730; we actively forge and machine superalloys including Alloy 20, Hastelloy C276, Monel 400, and Titanium Grade 5.
  • Customization and Capacity: Utilizing a strict 6-step in-house quality check protocol, we possess the agile manufacturing capacity to rapidly prototype, forge, anneal, test, and ship specialized acid-resistant fasteners globally.

■ Engineering FAQs

  • 1. If B8ML4CuN is so chemically resistant, why is its yield strength lower than standard 304?
    Metallurgical yield strength is heavily dependent on Interstitial atoms like Carbon and Nitrogen. To guarantee absolute immunity to intergranular corrosion when welded, the Carbon is stripped out. Unlike grades B8N or B8MLN, this alloy does not utilize a massive Nitrogen charge to compensate, resulting in an incredibly ductile, chemically bulletproof, but mechanically softer fastener (25 ksi yield vs. 30 ksi).
  • 2. Will B8ML4CuN resist pitting in seawater?
    Yes. While its primary superpower is resisting reducing acids, it still contains 3-4% Molybdenum and high Chromium. This grants it a Pitting Resistance Equivalent Number (PREN) above 27, making it vastly superior to standard 316 (B8M) in chloride and saltwater environments.
  • 3. Is ASTM A193 B8ML4CuNA compliant with NACE MR0175?
    Yes. The "A" designation guarantees a post-fabrication solution anneal, capping the hardness at a maximum of 90 HRB and removing all cold-working stress. Combined with the low-carbon and highly stabilized chemistry, this makes B8ML4CuNA exceptionally resistant to sulfide stress cracking (SSC) in aggressive H2S environments.

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