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TP316L SMLS Pipe Low Carbon Molybdenum Bearing Seamless Pipe

TP316L SMLS Pipe Low Carbon Molybdenum Bearing Seamless Pipe

Certification EN 10204 Type 3.1 / 3.2 available
Delivery Time 15-25days
Supply Ability 10000tons
Certifications ISO/EN 10204 Type 3.1 / 3.2 available
Place of Origin MADE IN CHAINA
Price Negotiable (Request a Quote)
Packaging Details Wooden pallets, wooden crates, woven bags, etc.
Country of Origin MADE IN CHAINA
Supply Capacity 10000tons
Brand Name Baosteel,TISCO
Payment Terms T/T,D/P,D/A,Western Union,PayPal
Grade 201 / 202 / 301 / 302 / 303 / 304 / 304L / 305 / 309S / 310S / 316 / 316L / 317 / 317L / 321 / 347 / 409L / 410 / 420 / 430 / 440C / 2205 / 2507 / 630 (17-4PH)
Brand Baosteel,TISCO
Minimum Order Quantity 100kg
Model Number 201 / 202 / 301 / 302 / 303 / 304 / 304L / 305 / 309S / 310S / 316 / 316L / 317 / 317L / 321 / 347 / 409L / 410 / 420 / 430 / 440C / 2205 / 2507
MOQ 100kg
Packaging Wooden Case / Wooden Pallet / Steel Frame / Carton / Woven Bag
Detailed Product Description

TP316L SMLS pipe is a low carbon, molybdenum-bearing austenitic seamless stainless steel pipe designed for superior corrosion resistance in aggressive environments. The "TP" designation indicates that the pipe meets the requirements of ASTM A312, the standard specification for seamless, welded, and heavily cold worked austenitic stainless steel pipes. "SMLS" denotes seamless construction, meaning no longitudinal weld seam exists.

The low carbon content (0.030% maximum) distinguishes TP316L from standard TP316. This reduced carbon level prevents sensitization – the precipitation of chromium carbides at grain boundaries during welding or elevated temperature service. Sensitization can lead to intergranular corrosion, so TP316L is the preferred choice for welded assemblies and applications involving exposure to corrosive media in the as-welded condition.

The addition of 2-3% molybdenum provides significantly enhanced resistance to pitting, crevice corrosion, and stress corrosion cracking in chloride-containing environments, as well as improved resistance to reducing acids such as sulfuric and phosphoric acid. This combination of properties makes TP316L one of the most versatile and widely specified stainless steel pipe grades for chemical processing, pharmaceutical, food and beverage, marine, and power generation industries.

The seamless manufacturing process ensures uniform wall thickness, consistent mechanical properties, and complete absence of weld seam vulnerabilities. This seamless construction provides superior pressure-holding capability and reliability, particularly important for high-pressure and critical service applications.

Product Parameters
ParameterDetails
Product NameTP316L SMLS Pipe
GradeTP316L (UNS S31603)
StandardASTM A312 / ASME SA312
EN Equivalent1.4404
FormSeamless Pipe (SMLS)
Manufacturing ProcessHot finished or cold drawn seamless
Size Range (NPS)1/8" to 24"
Size Range (DN)DN 6 to DN 600
Wall ThicknessSCH 5S, 10S, 40S, 80S, 160, XXS (per ASME B36.10 / B36.19)
Wall Thickness (mm)0.5mm to 50mm
Outer Diameter (mm)3.18mm to 610mm
LengthSingle random (5-7m), double random (10-13m), or exact cut
Pipe EndsPlain End (PE), Beveled End (BE), Threaded (T&C)
Surface FinishAnnealed & pickled (AP), Bright annealed (BA)
Packing MethodPlastic end caps, steel strapping bundles, waterproof paper, wooden crates
CertificationMill Test Certificate EN 10204 Type 3.1 or 3.2
Third-Party InspectionSGS, BV, Intertek, DNV, ABS, LR available
Chemical Composition (ASTM A312 TP316L)

The low carbon content is the defining characteristic of TP316L.

ElementContent (% by weight)
Carbon (C)0.030 max
Manganese (Mn)2.00 max
Silicon (Si)0.75 max
Phosphorus (P)0.045 max
Sulfur (S)0.030 max
Chromium (Cr)16.00 – 18.00
Nickel (Ni)10.00 – 14.00
Molybdenum (Mo)2.00 – 3.00
Iron (Fe)Balance

Comparison: TP316L vs TP316

ElementTP316LTP316
Carbon (max %)0.0300.080
Molybdenum (%)2.00-3.002.00-3.00
Sensitization RiskNone (weldable)Requires PWHT
Best ForWelded corrosive serviceHigh-temperature service
Mechanical Properties

TP316L SMLS pipe delivers the following mechanical properties in the solution annealed condition:

PropertyRequired ValueTypical Value
Tensile Strength485 MPa (70 ksi) min550-600 MPa
Yield Strength (0.2% offset)170 MPa (25 ksi) min240-280 MPa
Elongation (2" or 50mm)35% min45-50%
Hardness (Rockwell B)95 HRB max85-90 HRB
Hardness (Brinell)217 HBW max180-200 HBW
Modulus of Elasticity193 GPa (28,000 ksi)-
Density7.98 g/cm³ (0.29 lb/in³)-

High-Temperature Mechanical Properties (Typical):

Temperature (°C)Tensile Strength (MPa)Yield Strength (MPa)
20580250
100540210
200530190
300520175
400500165
500470155
600390140

Low-Temperature Impact Properties:

Temperature (°C)Charpy Impact (J)
20200+
0180+
-20160+
-50140+
-100100+

TP316L maintains excellent toughness down to cryogenic temperatures.

Manufacturing Process

The seamless manufacturing process for TP316L pipe ensures consistent quality and dimensional accuracy.

Step 1 – Billet Preparation
Solid round billets of TP316L composition are inspected, cut to length, and heated to approximately 1200°C (2190°F) in a rotary hearth furnace.

Step 2 – Rotary Piercing
The heated billet is fed into a piercing mill where a conical mandrel forces through the center, creating a hollow shell.

Step 3 – Elongation (Mandrel Mill)
The hollow shell passes through a mandrel mill with multiple rolling stands to reduce wall thickness and increase length.

Step 4 – Sizing and Reducing
The pipe passes through a sizing mill or reducing mill to achieve precise outer diameter and straightness.

Step 5 – Hot Finishing or Cold Drawing

  • Hot Finished: The pipe is solution annealed directly after hot rolling.

  • Cold Drawn (for tighter tolerances): The hot finished pipe is pickled, then cold drawn through a die and over a mandrel. Multiple cold drawing passes with intermediate annealing are employed for small diameters and thin walls.

Step 6 – Solution Annealing
The pipe is heated to 1010-1120°C (1850-2050°F) and then water quenched. This step dissolves chromium carbides, restores corrosion resistance, and achieves the required mechanical properties.

Step 7 – Pickling or Bright Annealing

  • Pickling (AP): The pipe is immersed in an acid bath (nitric-hydrofluoric acid) to remove mill scale and heat tint.

  • Bright Annealing (BA): The final annealing is performed in a controlled hydrogen or nitrogen atmosphere, producing an oxide-free, bright surface.

Step 8 – Straightening and Finishing
The pipe is straightened using rotary straighteners, cut to specified lengths, and ends are prepared (plain, beveled, or threaded).

Step 9 – Final Inspection
Dimensional checks, surface inspection, and non-destructive testing are performed before packaging.

Specifications & Standards Compliance

TP316L SMLS pipe conforms to multiple international standards:

StandardDescription
ASTM A312 / ASME SA312Standard for seamless, welded, and heavily cold worked austenitic stainless steel pipes
ASTM A269Standard for seamless and welded austenitic stainless steel tubing for general service
ASTM A213 / ASME SA213Standard for seamless ferritic and austenitic alloy steel boiler, superheater, and heat exchanger tubes
ASTM A511Standard for seamless stainless steel mechanical tubing
NACE MR0175 / ISO 15156For sour service applications (with restrictions)
PED 2014/68/EUCE marking for European pressure equipment
Surface Finishes
FinishCodeDescriptionTypical Application
Annealed & Pickled (AP)-Scale removed by acid bath, matte gray appearanceGeneral industrial piping, chemical processing
Bright Annealed (BA)-Oxide-free, bright reflective surfacePharmaceutical, food & beverage, clean service
Mechanical Polish 180##180Medium matte finishIndustrial equipment
Mechanical Polish 320##320Fine matte finishArchitectural, dairy
Mechanical Polish 400##400Near-mirror finishHigh-purity applications
ElectropolishedEPSmooth, bright, decontaminated surfaceSemiconductor, ultra-high purity
Applications

TP316L SMLS pipe is specified across multiple industries where corrosion resistance and weldability are critical.

Chemical Processing
  • Process piping for sulfuric, phosphoric, and organic acids

  • Heat exchanger tubes for corrosive media

  • Reactor and vessel interconnecting piping

  • Caustic and alkali transfer lines

  • Dye and intermediate chemical systems

  • Solvent and reagent transfer

The low carbon content allows welding without post-weld heat treatment, even in corrosive service.

Pharmaceutical Industry
  • Purified water and WFI (Water for Injection) systems

  • Clean steam distribution lines

  • API (Active Pharmaceutical Ingredient) transfer lines

  • Fermentation and bioreactor tubing

  • CIP (Clean-in-Place) and SIP (Sterilize-in-Place) systems

Bright annealed (BA) or electropolished finishes are typical for pharmaceutical applications.

Food and Beverage
  • Dairy processing lines (milk, cream, yogurt)

  • Beverage handling (juice, soft drinks, beer, wine)

  • Food product transfer (soups, sauces, oils)

  • CIP systems using acid and caustic rinses

  • Seafood and meat processing equipment

Marine and Offshore
  • Seawater cooling systems

  • Firewater lines on offshore platforms

  • Ballast water treatment systems

  • Hydraulic and instrumentation tubing

  • Chemical injection lines

Oil and Gas
  • Sour service piping (NACE compliant where approved)

  • Chemical injection lines

  • Hydraulic control lines for subsea equipment

  • Topside process piping on FPSOs and platforms

Power Generation
  • Condenser and heat exchanger tubing

  • Cooling water systems (coastal plants)

  • FGD (Flue Gas Desulfurization) components

  • Nuclear power plant auxiliary systems

Pulp and Paper
  • Bleach plant acid lines

  • Chlorine dioxide generator tubing

  • Paper machine shower lines

Corrosion Resistance

TP316L offers significantly enhanced corrosion resistance compared to TP304/L due to its molybdenum content.

Corrosion TypeTP304/LTP316L
Pitting Resistance Equivalent (PREN)18-2024-28
Crevice CorrosionLowGood
Chloride Stress Corrosion CrackingSusceptible (>60°C)Resistant (to higher limits)
Sulfuric Acid (dilute)PoorModerate-Good
Phosphoric AcidModerateGood-Excellent
Acetic AcidGoodExcellent
Citric AcidGoodExcellent
Lactic AcidGoodExcellent
Marine AtmosphereModerateExcellent
Seawater (intermittent)LimitedGood

PREN Calculation: PREN = Cr% + 3.3(Mo%) + 16N%

For TP316L (Cr 17%, Mo 2.5%): PREN = 17 + 8.25 = 25.25

Contact Us

For inquiries, technical data sheets, or a quotation for TP316L SMLS pipe (ASTM A312 TP316L seamless pipe / UNS S31603 seamless pipe), please contact our sales team.

Product Tags: TP316L SMLS Pipe   SMLS Pipe Low Carbon  
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