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ASTM A193 Grade B8T / B8TA Bolts (SS 321 Ti Stabilized) DATASHEETASTM A193 Grade B8T / B8TA Bolts (SS 321 Ti Stabilized) DATASHEETASTM A193 Grade B8T / B8TA Bolts (SS 321 Ti Stabilized) DATASHEETASTM A193 Grade B8T / B8TA Bolts (SS 321 Ti Stabilized) DATASHEET
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ASTM A193 GRADE B8T & B8TA BOLTS — DATASHEET, DIMENSIONS & MECHANICAL PROPERTIES

Ananka Fasteners is a global leader in the manufacturing and supply of ASTM A193 Grade B8T and B8TA Fasteners. Forged from AISI 321 austenitic stainless steel (UNS S32100), these fasteners represent a critical solution for high-temperature engineering. The defining metallurgical feature of Grade B8T is its stabilization with Titanium, specifically engineered to prevent intergranular corrosion when the fastener is exposed to the critical "sensitization" temperature range of 425°C to 815°C (800°F to 1500°F).

While Grade B8T requires the raw material to be carbide solution treated, the B8TA designation demands post-fabrication annealing. This final thermal cycle erases all residual cold-working stresses induced by threading, capping the hardness at a strictly enforced 90 HRB. This makes B8TA the premier choice for extreme thermal cycling, chemical refineries, and aerospace exhaust manifolds. All our B8T/B8TA studs, heavy hex bolts, and threaded rods are guaranteed by EN 10204 Type 3.1 Material Test Certificates (MTC).

■ Proprietary Datasheet Download

For lead piping engineers, thermal dynamics specialists, and NACE compliance auditors requiring empirical high-temperature creep resistance data and intergranular corrosion test profiles for ASTM A193 B8T/B8TA, the complete technical datasheet is available via our secure portal.

📄

ASTM A193 B8T / B8TA — Complete Technical Yield & Thermal Datasheet

Contains empirical data for stress simulations, thermal expansion coefficients, and ASTM A262 Practice E corrosion resistance audits. Corporate credentials required.

⬇ ACCESS SECURE DATASHEET PORTAL

■ Mill Test Certificate (MTC) Integration

Because the defining characteristic of B8T/B8TA (Titanium stabilization) is a microstructural chemical balance, the EN 10204 3.1 Mill Test Certificate is the only legal proof of component viability. Ananka Fasteners’ MTCs for B8T explicitly detail:

  • Titanium Multiplier Verification: Empirical spectrography proving that the precise ratio of Titanium is at least 5 times the measured Carbon content.
  • Post-Fabrication Verification (B8TA): An explicit statement confirming that carbide solution treatment was performed after all machining and threading.
  • Hardness Limit Proof (B8TA): Guaranteed laboratory results proving the batch hardness is fully capped below 90 HRB.
  • Mechanical & Traceability Data: Verified yield strength, tensile data, and complete heat number linkage to the original 321 steel melt.
View Our Sample MTC: Download ASTM A193 B8T SAMPLE MTC →

■ Material Specifications (ASTM A193 B8T / B8TA)

Material Type Titanium-Stabilized Austenitic Stainless Steel
UNS Number S32100
Corresponding Nut Grade ASTM A194 Grade 8T (for B8T) / Grade 8TA (for B8TA)
Density 8.00 g/cm³ (8,000 kg/m³)
Service Temperature Limit Up to 815°C (1500°F) continuous; highly resistant to scaling up to 900°C.
Magnetic Permeability Non-Magnetic (B8TA) | Weakly Magnetic at thread roots (B8T Class 1)
Pitting Resistance (PREN) 18.0 - 20.0

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

Standard dimensional specifications for ASME B18.2.1 Heavy Hex Bolts. Heavy hex heads provide the expanded bearing footprint required to distribute high compressive loads across flanged joints operating under intense thermal expansion.

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 Ti (Titanium) Mn (Max) Si (Max) P / S (Max)
B8T / B8TA (S32100) 0.08% 17.0 - 19.0% 9.0 - 12.0% 5x (C%) Min - 0.70% Max 2.00% 1.00% 0.045% / 0.030%
Metallurgical Note: The exact Titanium content is mathematically tied to the Carbon content. The Ti concentration must be at least 5 times the Carbon percentage. Titanium acts as a dedicated "carbon scavenger," ensuring that any free carbon bonds with Titanium rather than Chromium, completely preventing Chromium Carbide precipitation.

■ Mechanical Properties

Grade / Class Tensile Strength (Min) Yield Strength (0.2% Offset) Elongation Reduction of Area Max Hardness
B8T (Class 1) 75,000 psi (515 MPa) 30,000 psi (205 MPa) 30% Min 50% Min 96 HRB (223 HBW)
B8TA (Class 1A) 75,000 psi (515 MPa) 30,000 psi (205 MPa) 30% Min 50% Min 90 HRB (192 HBW)

*The mechanical yields of Class 1 and Class 1A are identical; the critical difference lies in the 90 HRB maximum hardness cap of B8TA, achieved via post-fabrication solution annealing, which guarantees the eradication of all manufacturing-induced stress.

■ Applicable Standards & Specifications

Application Type Bolts & Studs Nuts Grade Designation
High-Temp / Exhaust Gas ASTM A193 ASTM A194 B8T / 8T
NACE / Sour Gas Compliant ASTM A193 ASTM A194 B8TA / 8TA
Cryogenic Petrochemical ASTM A320 ASTM A194 B8T / 8T

■ The Sensitization Solution: 304 vs. 321 (B8T)

Standard ASTM A193 B8 (SS 304) is an excellent fastener until it is exposed to continuous high temperatures. Between 425°C and 815°C, standard austenitic steel undergoes "sensitization." The internal Carbon aggressively bonds with Chromium, forming Chromium Carbides at the grain boundaries. This depletes the chromium from the surrounding metal, destroying the passive oxide layer and causing severe intergranular corrosion.

By specifying Grade B8T (SS 321), engineers introduce Titanium into the matrix. Titanium has a vastly higher affinity for carbon than chromium does. At high temperatures, Titanium Carbides form instead, leaving the Chromium entirely free to remain uniformly distributed and actively defend the fastener against oxidation and corrosive attack. This makes B8T the undisputed choice for prolonged high-temperature service like refinery cracking units and thermal exhaust systems.

■ Fastener Types Available

Fastener Category Standard and Specialty Types Available Primary Engineering Function
High-Temp Studs Fully Threaded Stud Bolts, Double-End Studs, Tap End Studs. Mating ASME pipe flanges in extreme heat applications; prevents intergranular failure.
Heavy Industrial Bolts Heavy Hex Bolts, Hex Cap Screws, 12-Point Flange Bolts. High-torque structural fastening for aerospace exhaust, heat exchangers, and expansion joints.
Matched Nuts (A194) Heavy Hex Nuts (Grade 8T / 8TA). Matched alloy chemistry ensures equal thermal expansion rates across the flanged joint.

■ 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 thermal-resistant alloys extends far beyond 321 stainless; we actively forge and machine superalloys including Inconel 718, Nimonic, Hastelloy C276, Monel, 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 fasteners globally.

■ Engineering FAQs

  • 1. How does B8T differ from B8C (347 Stainless)?
    Both are stabilized austenitic stainless steels designed to prevent high-temperature sensitization. However, B8T (321) uses Titanium, while B8C (347) uses Niobium (Columbium). B8C is generally more expensive but slightly more resistant to highly oxidizing environments and provides marginally better creep strength at extremes. For 90% of high-temperature refining applications, B8T is the optimal, cost-effective choice.
  • 2. Is ASTM A193 B8TA compliant with NACE MR0175 for sour gas?
    Yes. Like B8A and B8MA, the "A" designation signifies post-fabrication annealing. Because the final thermal cycle removes all residual thread-rolling stress and strictly caps the hardness at 90 HRB, B8TA is fully compliant with NACE restrictions for deployment in H2S (sour gas) environments.
  • 3. Does the Titanium in B8T make the bolt stronger?
    No. Titanium is not added to SS 321 to increase physical tensile strength—its yield and tensile strengths are identical to standard 304. The Titanium is added purely as a chemical stabilizer to preserve the structural integrity of the metal by preventing intergranular cracking at high temperatures.

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