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Titanium Tube
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Gr1 Gr2 Titanium Welded Tubes for Chemical Industry

Gr1 Gr2 Titanium Welded Tubes for Chemical Industry

Brand Name: LHTi
Model Number: Titanium Tube
MOQ: 100 pieces
Price: negotiable
Payment Terms: L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Ability: 200-300 Ton/Tons Per Month
Detail Information
Place of Origin:
Baoji, China
Certification:
ISO9001,CE, API,etc
Sample:
Available
Package:
Wooden Cases
Thickness:
0.5mm-10mm
Model:
TP006
Type:
Seamless Or Type
Drawing:
Accept Customized
Connection:
Welding
Applications:
Pressure Vessel Equipment And Boilers
Specific Use:
Heating And Cooling
Processing Service:
Bending, Cutting
Packaging Details:
All goods are packed by seaworth shipment materials or required by buyer
Supply Ability:
200-300 Ton/Tons Per Month
Highlight:

Chemical Industry Titanium Welded Tube

,

Grade 2 Titanium Welded Tube

,

Grade 1 Titanium Welded Tube

Product Description
Gr1 Gr2 Titanium Welded Tubes for Chemical Industry
Grade 1 and Grade 2 titanium welded tubes designed specifically for demanding chemical industry applications, offering exceptional corrosion resistance and durability.
Introduction to Grade 1 Titanium
Grade 1 titanium is commercially pure titanium with a minimum purity of 99.5%, offering outstanding corrosion resistance, excellent weldability, and superior mechanical properties. It provides the highest ductility among all titanium grades, facilitating easier forming and fabrication processes.
Advantages in Heat Exchanger Applications
Grade 1 titanium pipes deliver a lightweight yet durable solution that ensures efficient heat transfer while resisting corrosive fluids in industrial processes. This corrosion resistance extends equipment lifespan and reduces maintenance requirements, contributing to lower operational costs.
Increasing Demand for Grade 1 Titanium
As industries prioritize sustainable and reliable solutions, demand for Grade 1 titanium in heat exchangers continues to grow. Its unique properties make it particularly suitable for aggressive environments in chemical processing and marine industries.
Manufacturing Processes
The production of Grade 1 titanium pipes involves sophisticated manufacturing processes starting with high-purity titanium ingots. Vacuum arc remelting (VAR) eliminates impurities, followed by hot or cold working to create tubular shapes. Extrusion forms the pipes, with subsequent heat treatment to optimize mechanical properties. Gas tungsten arc welding (GTAW) ensures strong, defect-free joints, supported by rigorous quality control including non-destructive testing.
Grade 2 Tubing Specifications
SpecificationsASTM B 337 ASME SB 337 / ASTM B 338 ASME SB 338
DimensionsASTM, ASME and API
Size½"NB to 24"NB in Sch 10s, 40s, 80s, 160s, XXS
Specialized inLarge Diameter Size
TypeSeamless / ERW / Welded / Fabricated
FormRound, Hydraulic Etc
LengthSingle Random, Double Random & Cut Length
GradeTitanium Grade 2, Titanium Grade 5
EndPlain End, Beveled End, Threaded
ASTM B338 Specifications
ItemStandardMaterialSize(mm)
Heat exchanger And Condenser tubeASTM B338, ASTM B337, ASTM B861Grade 1,2,3OD(5-114)X(0.3-10)XL12000mmMax
Corrosion Resistant TubesASTM B338Grade 7, Grade 12OD(5-114)X(0.5-4.5)Xlength 12000mmMax
Bike Frame/Wheelchair/Exhaust tube/PipesASTM B338Gr9/Ti3Al2v5OD(38.1-44.5)X(0.9-3.15)X(L1000-2000MM)
Automobile & MotorCycle Exhaust Tube/PipesASTM B337/338Gr1, Gr2, Gr9OD(38.1-88.9)X1.2X(L1000-2000mm)
Marine IndustryASTM/AMSGr2, Gr5, Gr7, Gr12OD(23.1-210)X(W0.5-6.0)X(L1000-6000mm)
Chemical Composition of ASME SB338 Titanium Grades
GradeCNOHTiVAlFe
Titanium Grade 1.08 Max.03 Max.18 Max.015 MaxBal.20 Max
Titanium Grade 20.1 max0.03 max0.25 max0.015 max99.2 min0.3 max
Titanium Grade 4.08 Max.05 Max.40 Max.015 MaxBal.50 Max
Titanium Grade 50.10 max0.05 max0.20 max0.015 max90 min3.5-4.55.5-6.75 max0.40 max
Titanium Grade 7.08 Max.03 Max.25 Max.015 MaxBal.30 Max
Titanium Grade 9.08 Max.03 Max.15 Max.015 Max-.25 Max
Titanium Grade 12.08 Max.03 Max.25 Max0.15 Max-.30 Max
Future Trends in Titanium Seamless Pipe Technology
Gr1 Gr2 Titanium Welded Tubes for Chemical Industry 0
Ongoing research focuses on enhancing titanium alloy properties for extreme conditions. Innovations in manufacturing techniques, including additive manufacturing, enable complex geometries and tailored designs. Sustainability drives material selection, with titanium's recyclability contributing to environmental benefits. Digitalization and smart technologies integrate sensors and real-time monitoring systems into titanium pipe designs, enabling predictive maintenance and improved operational efficiency.
Titanium Tube Sizes
Wall ThicknessTitanium Tube Sizes (O.D.)
.0101/16", 1/8", 3/16"
.0201/16", 1/8", 3/16", 1/4", 5/16", 3/8"
.0121/8"
.0161/8", 3/16"
.0281/8", 3/16", 1/4", 5/16", 3/8", 1/2", 3/4", 1", 1 1/2", 2"
.0351/8", 3/16", 1/4", 5/16", 3/8", 7/16", 1/2", 16", 5/8", 3/4", 7/8", 1", 1 1/4", 1 1/2", 1 5/8", 2", 2 1/4"
.0493/16", 1/4", 5/16", 3/8", 1/2", 16", 5/8", 3/4", 7/8", 1", 1 1/8", 1 1/4", 1 1/2", 1 5/8", 2", 2 1/4"
.0651/4", 5/16", 3/8", 1/2", 16", 5/8", 3/4", 7/8", 1", 1 1/4", 1 1/2", 1 5/8", 1 3/4", 2", 2 1/2", 3"
.0831/4", 3/8", 1/2", 5/8", 3/4", 7/8", 1", 1 1/4", 1 1/2", 1 5/8", 1 7/8", 2", 2 1/2", 3"
.0951/2", 5/8", 1", 1 1/4", 1 1/2", 2"
.1091/2", 3/4", 1", 1 1/4", 1 1/2", 2"
.1201/2", 5/8", 3/4", 7/8", 1", 1 1/4", 1 1/2", 2", 2 1/4", 2 1/2", 3"
.1253/4", 1", 1 1/4", 1 1/2", 2", 3", 3 1/4"
.1341"
.2503"
.3753 1/2"
ASTM B338 Gr2, Gr5, Gr7, and Gr20 titanium seamless pipes provide unmatched durability, strength, and corrosion resistance for critical applications in chemical, aerospace, marine, and power generation industries.
Applications of Grade 1 Titanium Pipes
Grade 1 titanium pipes serve critical roles across multiple industries. In petrochemical applications, they handle corrosive substances in heat exchangers, resisting pitting, crevice corrosion, and stress corrosion cracking. Marine industry applications include cooling systems and heat exchangers for ships and submarines, where seawater exposure demands superior corrosion resistance. Aerospace applications leverage the lightweight, high-strength characteristics in aircraft engine heat exchangers, contributing to fuel efficiency and performance optimization.