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Ladhani Metal Corporation manufactures Protection Tube Sleeves designed to safeguard boiler tubes, heat exchanger coils, and industrial piping exposed to high-temperature erosion, flue gas corrosion, and abrasive particle wear. These sleeves act as a replaceable protective covering, absorbing the mechanical and chemical damage that would otherwise reduce tube service life.
Function of Protection Tube Sleeves
• Protect boiler and heater tubes from erosion, oxidation, and scaling
• Reduce wear in high-velocity flue gas zones and soot blower impact areas
• Extend tube lifespan and minimize costly replacement downtime
• Improve boiler reliability under harsh operating environments
Ladhani Metal Corporation manufactures, supplies, and exports Protection Tube Sleeves in a variety of lengths, diameters, and thicknesses for both domestic and international projects.
Available Grades
• SS 304 / SS 304L
• SS 310 / SS 310S
• SS 316 / SS 316L
• SS 410 / SS 420 / SS 430
• 1Cr13
• 1Cr18Ni9Ti
• 1Cr20Ni14Si2
• 1Cr25Ni20Si2
• Cr23Ni13
• Cr25Ni20
Applications: Widely used in thermal power plants, waste heat recovery boilers (WHRBs), HRSGs, superheaters, reheaters, economizers, and petrochemical process heaters.
Uses
• Provides erosion resistance for boiler tube bends and straight lengths
• Shields tubes in high-velocity flue gas and abrasive ash environments
• Suitable for high-temperature reheater and superheater tubes
• Applied in HRSGs, WHRBs, and industrial steam plants
Features
• Excellent resistance to oxidation and erosion at high temperatures
• Strong mechanical performance with precision-engineered fit
• Easy installation and replacement during maintenance cycles
• Available in stainless steels and heat-resistant alloy grades
Applications
• Power generation boilers – Tube protection in reheater and superheater zones
• Waste heat recovery systems – Guards against ash and flue gas erosion
• HRSGs – Withstands cyclic temperature variations
• Industrial boilers and process heaters – Reliable under erosive service conditions
Conclusion
Protection Tube Sleeves by Ladhani Metal Corporation provide durable and cost-effective shielding for boiler tubes and steam system components operating in aggressive environments. Available in stainless steel and heat-resistant alloy grades, these sleeves ensure longer equipment life, reduced downtime, and export-quality reliability.
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Product name: Gr2 Titanium Tubes 25.4mm
Standard:ASTM B338
Material:Titanium Gr2
Diameter:5-914mm
Wall thickness:0.5-10mm
Length:Max 16000mm
Surface:Pickling surface/Polished
Type:Seamless, welded
Application:Heat Exchanger, chemical industry etc.
Technique:Rolled
Gr2 Titanium Tubes 25.4mm
Titanium pipe/titanium alloy pipe has excellent strength, hardness, small density, light weight, high temperature resistance, low temperature resistance, good machining performance, excellent corrosion resistance, non-magnetic non-toxic, good heat exchange performance. It also has memory and superconductivity. Hydrogen storage performance is very outstanding, the products are widely used in: navigation, aerospace, vacuum salt, automotive industry, medical sports, paper and textile industry, electric power industry, metallurgy industry, chlor-alkali industry, chemical fertilizer industry, seawater desalination industry.
1.Shape: round tube, square tube, spiral tube, coil tube,
2. Standard: ASTM B337, ASTM B338, ASTM B861, ASTM B862
3. Srand: Titanium GR2
4. Specifications:
ф (3-159) x (0.2-10.0) x L(500-9000)
ф (30-1000) x (0.5-12.0) x L(500-15000)
Extruded tube (M state) ф (45-219) x (5.0-30.0) x L
5. Production method: cold rolling, extrusion
6. Testing: ultrasonic testing, eddy current testing, water pressure testing, airtight testing
Chemical composition (Wt%)
ASTM No.
Fe max
O max
N max
C max
H max
Pd
Al
Bal
Grade 2
0.3
0.25
0.03
0.1
0.015
-
-
Ti
Physical Properties (Min)
ASTM Grade
Alloy Composition
Tensile Strength
Yield Strength
Elongation min %
ksi
Mpa
ksi
Mpa
Distributor & High Volume Supplier
CP Titanium – Commercially Pure Titanium
Titanium CP4 – Grade 1
Commercially Pure Titanium Grade 1 is the softest titanium and has the highest ductility. It has good cold forming characteristics and provides excellent corrosion resistance. It also has excellent welding properties and high impact toughness.
Applications
Architecture, Automotive Desalination, Dimensional Stable Anodes, Medical, Marine, Processing & Chlorate Manufacturing
Standards
ASME SB-363, ASME SB-381, ASME SB-337, ASME SB-338, ASME SB-348, ASTM F-67, ASME SB-265, ASME SB-337, ASME SB-338
Forms Available
Bar, Flanges, Forgings, Sheet, Welding Wire
Titanium CP3 – Grade 2
Commercially Pure Titanium Grade 2 has moderate strength and excellent cold forming properties. It provides excellent welding properties and has excellent resistance to oxidation and corrosion.
Applications
Aerospace, Automotive, Chemical Processing & Chlorate Manufacturing, Desalination, Architecture, Hydro Carbon Processing, Marine, Medical, Power Generation
Standards
ASME SB-363, ASME SB-381, ASME SB-337, ASME SB-338, ASME SB-348, ASTM F-67, AMS 4921, ASME SB-265, AMS 4902, ASME SB-337, ASME SB-338, AMS 4942
Forms Available
Bar, Fittings, Flanges, Forgings, Pipe, Plate, Sheet, Tube, Welding Wire, Wire
Titanium CP2 – Grade 3
Commercially Pure Titanium Grade 3 is stronger and less formable than Titanium Grades 1 and 2. It is used in Aerospace and industrial applications that require moderate strength. Grade 3 titanium has excellent corrosion resistance.
Applications
Aerospace, Architecture, Automotive, Chemical Processing & Chlorate Manufacturing, Desalination, Hydro Carbon Processing, Marine, Medical, Power Generation,
Standards
ASME SB-363, ASME SB-381, ASME SB-337, ASME SB-338, ASME SB-348, ASTM F-67, AMS 4921, ASME SB-265, AMS 4902, ASME SB-337, ASME SB-338, AMS 4942
Forms Available
Bar, Fittings, Flanges, Forgings, Pipe, Plate, Sheet, Tube, Welding Wire, Wire
Titanium CP1 – Grade 4
Commercially Pure Titanium Grade 4 is stronger than CP Grades 2 & 3 – it can be cold formed, but has lower ductility. It has excellent corrosion resistance in a wide variety of environments. Grade 4 titanium is commonly used in Aerospace, Industrial and Medical applications where high strength is needed.
Applications
Aerospace, Chemical process, Industrial, Marine, Medical
Standards
ASME SB-363, ASME SB-381, ASME SB-337, ASME SB-348, ASTM F-67, AMS 4921, ASME SB-265, AMS 4901, ASME SB-338
Forms Available
Bar, Forgings, Sheet, Welding Wire, Wire
Titanium Grade 7
Titanium Grade 7 has physical and mechanical properties equivalent to CP3 titanium or Grade 2. It has excellent welding and fabrication properties and is extremely resistant to corrosion especially from reducing acids.
Applications
Chemical Processing, Desalination, Power generation
Standards
ASME SB-363, ASME SB-381, ASME SB-337, ASME SB-338, ASME SB-348, ASME SB-265, ASME SB-337, ASME SB-338,
Forms Available
Bar, Forgings, Plate, Sheet, Tube, Welding Wire, Wire
Titanium Grade 11 – CP Ti-0.15Pd
Titanium Grade 11 is highly resistant to corrosion has similar physical and mechanical properties to Titanium CP Grade 2.
Applications
Chemical processing, Desalination Power generation, Industrial
Standards
ASME SB-338
Forms Available
Tube
Titanium Based Alloys
Titanium Grade 5 – Titanium 6Al-4V
Titanium Grade 5 alloy is the most commercially available of all titanium alloys. It offers an excellent combination of high strength and toughness. Grade 5 titanium has good welding and fabrication characteristics.
Applications
Aerospace, Chemical Processing, Marine, Medical
Standards
ASME SB-265, AMS 4911, ASME SB-348, AMS 4928, AMS 4965, AMS 4967
Forms Available
Titanium Grade 6 – Titanium 5Al-2.5Sn
Titanium Grade 6 alloy offers good weldability, stability and strength at elevated temperatures.
Applications
Aerospace
Standards
ASME SB-381, AMS 4966, MIL-T-9046, MIL-T-9047, ASME SB-348, AMS 4976, AMS 4956, ASME SB-265, AMS 4910, AMS 4926
Forms Available
Bar, Forgings Plate, Sheet, Wire
Titanium Grade 9 – Titanium 3Al-2.5V
Titanium Grade 9 has medium strength that falls between Grade 4 and Grade 5. It has excellent corrosion resistance and is used in Aerospace and Industrial applications. Grade 9 Titanium can be used at higher temperatures than Grades 1 through 4. Grade 9 titanium has good cold rolling properties.
Applications
Aerospace, Automotive, Chemical processing, Consumer applications, Marine, Medical, Transportation
Standards
AMS 4943, AMS 4944, ASME SB-338
Forms Available
Bar, Forgings Plate, Sheet, Wire
Titanium Grade 12 – Ti-0.3-Mo-0.8Ni
This Titanium Grade 12 alloy is similar to Titanium Grades 2 and 3 except that Titanium Grade 12 has 0.3% molybdenum and 0.8% nickel. This offers enhanced corrosion resistance.
Applications
Chemical processing, Desalination, Power generation, Industrial
Standards
ASME SB-338
Forms Available
Tube
Titanium Grade 19 – Titanium Beta C
Titanium Grade 19 has very high strength and can be heat treated. It offers good resistance to stress and corrosion.
Applications
Aerospace Automobile
Standards
MIL-T-9046, MIL-T-9047, ASME SB-348, AMS 4957, AMS 4958, ASME SB-265
Titanium Grade 23 – Titanium 6Al-4V ELI
Titanium Grade 23 is similar to Grade 5 but has lower oxygen, nitrogen and iron. It has better ductility and fracture toughness than Titanium Grade 5.
Applications
Aerospace, Chemical Processing, Marine, Medical
Standards
AMS 4911, AMS 4928, AMS 4930, AMS 4931, AMS 4935, AMS 4965, AMS 4967, AMS 4985, AMS 4991, MIL -T-9046, MIL -T-9047, BSTA 10,11,12, BSTA 28,56,59, DIN 3.7165, AMS 4907 ELI, AMS 4930 ELI, AMS 4956 ELI, ASTM F136 ELI, UNS R56407
Forms Available
Bar, Forgings, Plate, Sheet, Welding Wire, Wire
Titanium 6Al-6V-2Sn – Titanium 6-6-2
Titanium 6-2-4-2 has excellent strength, stability, and creep resistance to temperatures as high as 550 °C.
Applications
Gas, Turbine Compressor Engine afterburner, Aerospace
Standards
AMS 4919, AMS 4952, AMS 4975, DIN 3.7164, GE B50 TF22, GE B50TF21, GE B50TF22, GE C50TF7, MIL F-83142, MIL T-9046, MIL T-9047, PWA 1220, UNS R54620
Forms Available
Bar, Plate, Sheet
Titanium 6Al-2Sn-4Zr-2Mo – Titanium 6-2-4-2
Titanium 6Al-6V-2Sn is a two-phase, Alpha Beta Alloy. It is usually used in the annealed or solution treated and aged conditions. It’s a heat treatable, high strength alloy with lower toughness and ductility than Titanium Grade 5 (6Al-4V) and it’s difficult to weld. Cold forming of Titanium 6Al-6V-2Sn is difficult because of its high strength and the large amount of spring-back that results. This grade can be welded by the inert gas shielded, fusion welding process but the heat effected area will have less ductility and toughness than the parent material. The hardness of Titanium 6-6-2 is approximately Rockwell C 36-38. This grade is primarily used for airframe and jet engine parts, rocket engine cases and ordinance components. Please call us to determine our minimum item quantity.
Applications
Airframe Components, Jet Engine Parts, Ordinance Components, Rocket Engine Cases
Standards
AMS 4981, MIL-T-9047,
Forms Available
Bar, Wire Sheet, Plate, Forgings, Fittings, Flanges, Seamless Pipe, Seamless Tube, Welded Pipe, Welded Tube
Titanium 6Al-2Sn-4Zr-6Mo – Titanium 6-2-4-6
Titanium 6Al-2Sn-4Zr-6Mo is an Alpha-Beta Alloy and it’s generally regarded as the workhorse alloy of the titanium industry. The alloy is fully heat-treatable in section sizes up to one inch and is used up to approximately 400°C (750°F). Since it is one of the most commonly used alloys (over 70% of all alloy grades melted are a sub-grade of Ti-6-4,) its uses span many aerospace engine and airframe components. Titanium 6Al-2Sn-4Zr-6Mo is also used in lots of non-aerospace applications such as marine, offshore and power generation industries. This Alpha-Beta Alloy combines good corrosion resistance and strength with weldability and fabricability. The alloy is generally available in bar form and it’s typically used in deep sour well applications. This alloy can be hot or cold formed. Please call us to determine our minimum item quantity.
Applications
Aerospace Engines, Airframe Components, Marine Applications, Offshore Applications, Power Generation Applications
Standards
AMS 4981
Forms Available
Bar, Plate, Sheet
Titanium 8Al-1Mo-1V – Titanium 8-1-1
Titanium 8Al-1Mo-1V is a near Alpha Alloy that was primarily designed for use at elevated temperatures – up to 455 degrees centigrade. It offers the highest modulus and lowest density of all Titanium alloys. It has good creep strength and it’s weldable by the inert gas fusion and resistance-welding processes. Titanium 8Al-1Mo-1V is used in the annealed condition for such applications as airframe and jet engine parts that demand high strength, superior creep resistance and a good stiffness-to-density ratio. The machinability of this grade is similar to that of Titanium 6Al-4V. Please call us to determine our minimum item quantity.
Applications
Airframe Parts, Jet Engine Parts
Standards
MIL-T-9046, MIL-T-9047, AMS 4972, AMS 4915, AMS 4973, AMS 4955, AMS 4916
Forms Available
Forgings, Bar, Sheet, Plate, Strip, Extrusions, Wire
Titanium 10V-2Fe-3Al
Titanium 10V-2Fe-3Al is a Titanium Beta Alloy. It is harder and stronger than many titanium alloys. This Titanium is a heat treatable alloy, it’s weldable and it’s easily formed. Titanium 10V-2Fe-3Al is an all Beta Alloy and is more difficult to machine than most titanium alloys. The chief problems include flank wear, spring-back and chip control. Because of these characteristics, positive rake chip grooves in combination with light hones on the cutting edge are advantageous. Please call us to determine our minimum item quantity.
Applications
Airframe Components, Compressor Blades, Disks, Wheels and Spacers
Standards
AMS 4983, AMS 4984, AMS 4986, AMS 4987
Forms Available
Bar, Forgings, Plate, Sheet, Seamless Pipe, Seamless Tube, Welded Pipe, Welded Tube, Wire
Titanium 15V-3Cr-3Sn-3Al
This Metastable-Beta Alloy is used primarily in sheet metal form. It is age-hardenable and highly cold-formable. Titanium 15V-3-3-3 is often used to replace hot-formed Titanium Grade 5 (6Al-4V) sheet. It can also be produced as foil and is an excellent alloy for castings. For aerospace applications, this grade is often specified as AMS 4914. Please call to determine the minimum item quantity.
Applications
Aerospace Tank Applications, Airframe Applications, Castings, Fasteners High Strength Hydraulic Tubing
Standards
AMS 4914, ASTM B265
Forms Available
Sheet, Foil
Titanium Alpha Alloys
Commercially pure titanium and alpha alloys of titanium are non-heat treatable and have very good welding characteristics.
Applications
Cryogenic applications, Airplane parts, Chemical processing equipment
Standards
AMS 4973, AMS 4976, AMS 4924, AMS 4972, MIL-T-9047, AMS 4910, ASTM B265, GR-6 MIL-T9046, AMS 4909, AMS 4915/4916, AMS 4966, AMS 4924, AMS 4973, AMS 4933, MIL-T-81556A A-1, MIL-T-81556A A-2, MIL-T-81556A A-4
Forms Available
Bar, Forgings, Plate, Sheet Extrusions
Titanium Beta Alloys
Titanium Beta or near Beta Alloys are:
Fully heat treatable Generally weldable
Capable of high strengths Possess good creep resistance up to intermediate temperatures
In the solution treated condition, excellent formability can be expected from Beta Alloys
Titanium Beta Alloys are ideal for sporing applications. Common Titanium Beta Alloys include:
Ti3Al8V6Cr4Mo4Zr
ASTM Grade 19
Ti-3Al-8V-6Cr-4Mo-4Zr
AMS 4983, 4984, 4987
Ti-10V-2Fe-3Al
ASTM Grade 21
Ti-15Mo-3Nb-3Al-2Si
AMS 4914
Ti-15V-3Cr-3Sn-3Al
The Metastable Titanium Beta Alloys are heat treatable by solution treatment and ageing. Fully stable beta alloys can only be annealed.
Applications
Aerospace,
Standards
AMS 4914, AMS 4983, AMS 4984, AMS 4987, ASTM Grade 19, ASTM Grade 21
Forms Available
Forgings
Titanium Alpha-Beta Alloys
Titanium Alpha Beta alloys are heat treatable and most of them are also weldable. The typical properties of Titanium Alpha Beta Alloys are:
Medium to high strength levels;
High temperature creep strength is not as less than most alpha alloys;
Limited cold forming but hot forming qualities are normally good;
The most commonly used Titanium Alpha Beta Alloy is Ti 6Al-4V. Titanium 6Al-4V has been developed in many variations of the basic formulation for numerous and widely differing applications.
Other Titanium Alpha Beta Alloys include: 6Al-4V-ELI 6Al-6V-2Sn 6Al-2Sn-4Zr-2Mo 3Al-2.5V 8Mn
Applications
Aircraft and aircraft turbine parts, Chemical processing equipment, Marine hardware, Prosthetic devices
Standards
ASME SB-265, AMS 4911, ASME SB-348, AMS 4928, AMS 4965, AMS 4967, AMS 4981, MIL-T-9047, AMS 4930, AMS 4971, AMS 4907, ASTM F 136, MIL-T-9046, AMS 4918, DMS1879/2237, AMS 4908, AMS 4943, ASTM B348, AMS 4975, MIL-T-9047 G, AMS 4928, BMS 7-348, DMS 1570, AMS 4976, AMS 4920, AMS 4934
Forms Available
Bar, Fittings, Flanges, Forgings, Pipe, Plate, Sheet, Tube, Wire
Titanium Metals
Titanium Specifications
Titanium Grades
CP4 – Grade 1
CP3- Grade 2
Titanium CP2 – Grade 3
CP1 – Grade 4
Grade 7
Grade 11 – CP Ti-0.15Pd
Grade 5 – Titanium 6Al-4V
Grade 6 – Titanium 5Al-2.5Sn
Grade 9 – Titanium 3Al-2.5V
Grade 12 – Ti-0.3-Mo-0.8Ni
Grade 19 – Titanium Beta C
Grade 23 – Titanium 6Al-4V ELI
6Al-6V-2Sn
6Al-2Sn-4Zr-2Mo
6Al-2Sn-4Zr-6Mo
8Al-1Mo-1V
10V-2Fe-3Al
15V-3Cr-3Sn-3Al
Alpha Alloys
Beta Alloys
Alpha-Beta Alloys
Titanium Dioxide TiO2
Titanium Applications
Titanium Sheets
Titanium Plates
Titanium Wire
Titanium Tubes & Tubing
Titanium Round Bar
Titanium Pipe
We stock and sell Commercially Pure Titanium and Titanium Alloys in a broad range of forms and sizes. We can deliver production quantities in 90-120 days.
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Product name: Grade 7 titanium tubes
Standard:ASTM B338 ASTM B861 ASTM B862
Material:Titanium Gr7
Diameter:5-914mm
Wall thickness:0.5-10mm
Length:Max 16000mm
Surface:Pickling surface/Polished
Type:Seamless, welded
Application:Heat Exchanger, chemical industry etc.
Technique:Rolled
Grade 7 Titanium Tubes
Product name: Grade 7 titanium tubes
Standard:ASTM B338 ASTM B861 ASTM B862
Material:Titanium Gr7
Diameter:5-914mm
Wall thickness:0.5-10mm
Length:Max 16000mm
Surface:Pickling surface/Polished
Type:Seamless, welded
Application:Heat Exchanger, chemical industry etc.
Technique:Rolled
Dimension and Tolerance of titanium tube
Outside diameter,
in.(mm)
Diameter tolerance,
in.(mm)
Permissible variations , wall thinckness,
t, % in.(mm)
<1 (25.4) ±0.004( ± 0.012) ±10
1-1½(25.4-38.1) ±0.005( ±0.127 ) ±10
1½-2(38.1-50.8) ±0.006( ± 0.152) ±10
2-2½(50.8-63.5) ±0.007( ± 0.178) ±10
2½-3½(63.5-88.9) ±0.010( ± 0.254) ±10
Grade 7 (Ti-0.2Pd) titanium tube
Chemical compositions(weight%,<=)
Pd
Al
V
Fe
C
0.12-0.25
----
----
0.30
0.08
N
H
O
Other(total)
Ti
0.05
0.015
0.2
0.4
Remainder
Physical properties(>=)
Σb
Tensile Strength
(Mpa)
σr0.2
Yield Strength
(Mpa)
δL0+50mm
Elongation
(%)
ψ
Reduction of area
(%)
370
250
20
25
The density of titanium alloy is generally about 4.51g/ cubic centimeter, only 60 of steel, the strength of pure titanium is close to the strength of ordinary steel, some high strength titanium alloy exceeds the strength of many alloy structural steel. Therefore, the specific strength (strength/density) of titanium alloy is much higher than that of other metal structural materials, as shown in Table 7-1. It can produce components with high unit strength, good rigidity and light weight. At present, titanium alloy is used for engine components, skeleton, skin, fasteners and landing gear.
High thermal strength
The use temperature is several hundred degrees higher than aluminum alloy, can still maintain the required strength at moderate temperature, can work for a long time at 450500 temperature these two titanium alloys still have high specific strength in the range of 150500, and aluminum alloy at 150 than the strength decreased significantly. Titanium alloys operate at temperatures up to 500, while aluminum alloys operate below 200.
Good resistance to corrosion
The corrosion resistance of titanium alloy is much better than that of stainless steel when working in humid atmosphere and seawater medium. Resistance to pitting corrosion, acid corrosion, stress corrosion is particularly strong; Excellent corrosion resistance to alkali, chloride, chlorine organic articles, nitric acid, sulfuric acid and so on. But titanium has poor corrosion resistance to reducing oxygen and chromite medium.
Good low temperature performance
Titanium alloy can keep its mechanical properties at low temperature and ultra low temperature. Titanium alloys with good low temperature performance and very low gap elements, such as TA7, can maintain certain plasticity at -253. Therefore, titanium alloy is also an important low temperature structural material.
Half Round Tube Shield
Half Round Tube Shields by Ladhani Metal Corporation are robust, precision-fabricated protective sleeves designed to guard the outer surfaces of tubes in boilers, heat exchangers, incinerators, and high-temperature processing equipment. Engineered to extend the service life of tubes exposed to corrosive gases, abrasive particulates, and elevated temperatures, these shields provide a reliable barrier against mechanical and chemical degradation. The half-round design facilitates easy installation while ensuring a secure, form-fitting layer of defense.
1Cr13 Half Round Tube Shield
The 1Cr13 Half Round Tube Shield is a semi-cylindrical component manufactured from martensitic stainless steel containing approximately 13% chromium. Classified under the 1Cr13 grade, this alloy delivers good corrosion resistance, excellent wear performance, and moderate strength at elevated temperatures. It is especially suited for thermal environments that are not extremely oxidizing or carburizing but where erosion and mechanical wear are a concern. With a higher hardness potential through heat treatment and moderate thermal resistance, 1Cr13 shields are ideal for applications involving flue gas exposure, soot-laden atmospheres, and temperature cycling.
The shield’s half-round configuration is precision-engineered for optimal tube coverage and long-term durability. It offers a balance of strength, corrosion resistance, and cost-effectiveness, making it suitable for a wide range of industrial processes.
Chemical Composition of 1Cr13 – Martensitic Stainless Steel
• Carbon (C): 0.15 – 0.20%
• Silicon (Si): ≤ 1.00%
• Manganese (Mn): ≤ 1.00%
• Phosphorus (P): ≤ 0.035%
• Sulfur (S): ≤ 0.030%
• Chromium (Cr): 12.0 – 14.0%
• Nickel (Ni): ≤ 0.60%
• Iron (Fe): Balance
Uses
• Boiler Tube Protection – Shields tube surfaces from flue gas erosion, ash particle abrasion, and soot buildup in economizers and waterwalls.
• Heat Exchanger Tubes – Provides an extra layer of wear resistance in zones prone to mechanical stress and fluid turbulence.
• Incinerator and Waste Heat Units – Guards tubes exposed to fluctuating temperatures, slag, and particulate deposits.
• Cement Plant Piping – Protects tubing and ducts in kiln exhaust systems from abrasive dust and high flow velocity.
• Air Preheaters and Recuperators – Enhances the durability of components subjected to temperature variations and corrosive gases.
Features
• Moderate Oxidation Resistance – Chromium content enables good performance in mildly oxidizing environments and intermittent exposure to high temperatures.
• Wear and Abrasion Resistance – Martensitic structure offers high surface hardness and resistance to mechanical wear.
• Heat Treatable – Can be hardened to increase durability and resistance to deformation.
• Cost-Effective – Provides a lower-cost alternative to austenitic and superalloy shields for moderate service conditions.
• High Dimensional Accuracy – Manufactured with tight tolerances to ensure secure fitment and uniform tube coverage.
• Convenient Installation – Half-round shape enables quick mounting through welding or clamping techniques.
• Versatile Finishing Options – Supplied with pickled or mechanically polished surfaces to improve corrosion resistance and adhesion.
Applications
• Power Generation – Used in economizer, preheater, and convection sections of boilers to prevent erosion and fouling.
• Chemical and Fertilizer Plants – Protects exposed tube surfaces in systems with moderate chemical exposure.
• Metallurgical Furnaces – Shields mechanical and flue components exposed to particulate movement and temperature cycling.
• Pulp and Paper Industry – Used in recovery boilers and heat exchangers where corrosion resistance and mechanical strength are both required.
• Petrochemical Plants – Applied in lower-temperature zones where scaling and erosion are primary concerns.
Conclusion
The 1Cr13 Half Round Tube Shield by Ladhani Metal Corporation provides an optimal solution for industrial tube protection in moderate temperature and corrosion environments. Its martensitic stainless steel composition ensures excellent wear resistance, good oxidation stability, and structural strength at a competitive cost. Designed for easy installation and reliable performance, these shields are ideal for various applications in power, process, and heat recovery systems.
Custom-built to meet specific dimensions, material thicknesses, and finishing preferences, 1Cr13 tube shields offer dependable service life extension for critical heat transfer equipment.
For technical specifications, pricing, or customization inquiries, please contact Ladhani Metal Corporation.
DIN 2634 Inconel flanges PN 25 are high-performance weld neck flanges manufactured in accordance with the DIN 2634 standard. Specifically designed for high-pressure applications up to 25 bar (362 psi), these flanges are produced using premium Inconel alloys. Inconel is known for its exceptional resistance to oxidation, high-temperature strength, and ability to withstand corrosive and extreme environments, making these flanges suitable for the most demanding operational conditions. Their high performance and reliability make them ideal in environments where other materials may degrade or fail under stress.
Ladhani Metal Corporation is a trusted global manufacturer and supplier of Inconel flanges, recognized for advanced manufacturing expertise, precision machining, and commitment to international quality standards. Every flange undergoes rigorous inspection and testing to guarantee safety, longevity, and consistent performance under extreme operating environments.
Pressure Rating:
• PN 25 (25 bar / 362 psi): Suitable for high-pressure systems that require superior corrosion resistance and mechanical strength.
Flange Type:
• Weld Neck Flanges
Featuring a tapered neck for gradual stress transition, weld neck flanges are ideal for high-pressure and high-temperature systems, ensuring a strong and leak-resistant weld connection.
• Flat Face (FF) Flanges
Designed to be used with softer gasket materials or cast equipment, flat face flanges ensure even compression and secure sealing in moderate to high-pressure systems.
Inconel Grades and Typical Composition:
Inconel 600 (UNS N06600) – Nickel-Chromium Alloy
• Nickel (Ni): 72.0 min
• Chromium (Cr): 14.0 – 17.0%
• Iron (Fe): 6.0 – 10.0%
• Carbon (C): ≤ 0.15%
• Manganese (Mn): ≤ 1.0%
• Silicon (Si): ≤ 0.5%
Applications: Commonly used in heat exchangers, furnace components, and chemical processing equipment due to excellent resistance to high-temperature oxidation and corrosion.
Inconel 625 (UNS N06625) – Nickel-Chromium-Molybdenum Alloy
• Nickel (Ni): 58.0 min
• Chromium (Cr): 20.0 – 23.0%
• Molybdenum (Mo): 8.0 – 10.0%
• Niobium (Nb): 3.15 – 4.15%
• Iron (Fe): ≤ 5.0%
Applications: Widely used in offshore and marine engineering, aerospace, chemical processing, and power generation due to excellent fatigue strength and resistance to chloride pitting and crevice corrosion.
Inconel 718 (UNS N07718) – Nickel-Chromium Alloy with Niobium and Molybdenum
• Nickel (Ni): 50.0 – 55.0%
• Chromium (Cr): 17.0 – 21.0%
• Iron (Fe): Balance
• Niobium + Tantalum (Nb + Ta): 4.75 – 5.50%
• Molybdenum (Mo): 2.80 – 3.30%
• Titanium (Ti): 0.65 – 1.15%
• Aluminum (Al): 0.20 – 0.80%
Applications: Preferred in aerospace, turbine engines, nuclear reactors, and cryogenic tanks due to its excellent creep resistance, high strength, and ability to retain properties across a wide temperature range from cryogenic to 700°C.
Applications of DIN 2634 Inconel Flanges PN 25:
• Offshore Oil and Gas Platforms
Resistant to seawater, sour gas, and harsh chemicals, ensuring reliability in corrosive and high-pressure marine environments.
• Chemical Processing and Heat Treatment Plants
Offers resistance to aggressive acids, alkalis, and oxidizing agents, even at elevated temperatures.
• Power Generation Facilities
Used in turbine systems, heat recovery steam generators, and reactors due to its high-temperature strength and oxidation resistance.
• Aerospace and Defense Components
Performs reliably in aircraft and defense systems exposed to extreme pressure and temperature variations.
• Waste Treatment and Pollution Control
Ideal for systems handling incineration gases, flue gases, and chemical waste due to high corrosion resistance.
Key Features:
• Manufactured as per DIN 2634 standards for dimensional accuracy and pressure compliance
• PN 25 pressure rating for robust and high-pressure service conditions
• High resistance to heat, corrosion, and oxidation in challenging environments
• Suitable for both high-temperature and cryogenic applications
• Weld neck configuration offers optimal stress distribution and structural integrity
• Available in Inconel 600, 625, and other grades upon request
• Custom sizes, pressure ratings, and special surface finishes available
Conclusion:
DIN 2634 Inconel flanges PN 25 from Ladhani Metal Corporation are engineered to provide uncompromising performance in corrosive and high-temperature environments. With superior material properties and strict quality control, these Inconel flanges deliver long-term reliability for demanding industrial applications. Contact Ladhani Metal Corporation for detailed technical support, material selection guidance, or competitive pricing for your specific requirements.
DIN 2633 stainless steel flanges PN 16 are precision-engineered weld neck flanges manufactured in accordance with the DIN 2633 standard. These flanges are designed for higher medium-pressure applications up to 16 bar (232 psi), offering durable and secure connections in a wide range of industrial pipeline systems. Made from high-quality stainless steel grades such as 304, 316, and 321, they offer superior corrosion resistance, mechanical strength, and long-term performance under more demanding operating and environmental conditions.
Ladhani Metal Corporation is a leading global manufacturer and supplier of stainless steel flanges, known for consistent product quality, technical precision, and adherence to international standards. Each flange undergoes rigorous inspection to ensure compliance with industry norms and safety guidelines.
Pressure Rating:
• PN 16 (16 bar / 232 psi): Suitable for medium to high-pressure pipeline systems requiring enhanced joint strength and corrosion protection.
Flange Type:
• Weld Neck Flanges
Designed with a long tapered hub that facilitates proper pipe alignment and reduces stress concentration at the flange base. This ensures smooth flow transitions and minimizes turbulence.
• Flat Face (FF) Flanges
Flat face configuration promotes uniform gasket compression, making it ideal for systems using soft gasket materials or mating with cast components.
Stainless Steel Grades and Full Composition:
Stainless Steel 304
• Chromium (Cr): 18.0 – 20.0%
• Nickel (Ni): 8.0 – 10.5%
• Carbon (C): ≤ 0.08% (304), ≤ 0.03% (304L)
• Manganese (Mn): ≤ 2.0%
• Silicon (Si): ≤ 1.0%
• Phosphorus (P): ≤ 0.045%
• Sulfur (S): ≤ 0.03%
• Iron (Fe): Balance
Applications: Suitable for general-purpose piping systems including potable water, food-grade processing lines, and moderate chemical environments.
Stainless Steel 316
• Chromium (Cr): 16.0 – 18.0%
• Nickel (Ni): 10.0 – 14.0%
• Molybdenum (Mo): 2.0 – 3.0%
• Carbon (C): ≤ 0.08% (316), ≤ 0.03% (316L)
• Manganese (Mn): ≤ 2.0%
• Silicon (Si): ≤ 1.0%
• Phosphorus (P): ≤ 0.045%
• Sulfur (S): ≤ 0.03%
• Iron (Fe): Balance
Applications: Suitable for more aggressive environments including chemical processing, marine systems, and equipment exposed to chlorinated solutions or cleaning agents.
Stainless Steel 321
• Chromium (Cr): 17.0 – 19.0%
• Nickel (Ni): 9.0 – 12.0%
• Titanium (Ti): ≥ 5 × C (typically 0.20 – 0.70%)
• Carbon (C): ≤ 0.08%
• Manganese (Mn): ≤ 2.0%
• Silicon (Si): ≤ 1.0%
• Phosphorus (P): ≤ 0.045%
• Sulfur (S): ≤ 0.03%
• Iron (Fe): Balance
Applications: Preferred in applications involving elevated temperatures and moderate corrosion exposure, such as exhaust systems, heat exchangers, and food-grade thermal equipment.
Applications of DIN 2633 Stainless Steel Flanges PN 16:
• Industrial Water Systems
Used in pressurized water delivery and treatment systems requiring increased pressure tolerance.
• Chemical and Petrochemical Plants
Suitable for pipelines transporting reactive or mildly corrosive chemicals.
• Marine and Offshore Applications
Resistant to saltwater corrosion and pressure variations in marine environments.
• Food and Beverage Processing
Employed in sanitary and hygienic systems requiring strong, corrosion-resistant joints.
• HVAC Systems
Used in high-pressure duct and pipe connections for heating, ventilation, and cooling systems.
Key Features:
• Manufactured in compliance with DIN 2633 standards
• PN 16 pressure rating for enhanced medium-pressure service
• Weld neck design supports secure, vibration-resistant connections
• Offered in stainless steel grades 304, 304L, 316, 316L, and 321
• High resistance to chemical and environmental corrosion
• Long-lasting performance under mechanical stress and thermal cycles
• Custom dimensions, materials, and finishes available upon request
Conclusion:
DIN 2633 Stainless Steel Flanges PN 16 from Ladhani Metal Corporation are built for reliability in demanding industrial settings that require higher pressure tolerance and superior corrosion resistance. These weld neck flanges, made from premium stainless steel, are ideal for applications across water treatment, chemical processing, marine installations, and food-grade systems. For custom configurations, technical consultations, or detailed pricing, contact Ladhani Metal Corporation today.
DIN 2568 Carbon Steel Flanges PN 64 are robust threaded flanges manufactured from high-strength carbon steel, specifically designed to deliver reliable performance in high-pressure industrial systems. Produced in accordance with DIN 2568 specifications, these flanges offer excellent mechanical strength, thermal conductivity, and impact resistance, making them well-suited for demanding applications in oil and gas, petrochemicals, water treatment, mechanical construction, and power generation.
Ladhani Metal Corporation is a trusted manufacturer and exporter of carbon steel flanges, offering products that comply with international quality standards and dimensional tolerances. The threaded design enables quick, weld-free installation and removal, making these flanges ideal for systems requiring ease of maintenance and rapid assembly.
Pressure Rating:
• PN 64 (64 bar / 928 psi): Engineered to withstand high-pressure environments and thermal variations in critical industrial applications.
Flange Types:
• Threaded (Screwed) Flanges
Enable efficient installation without welding, ideal for systems requiring regular inspection or maintenance.
• Raised Face (RF) Flanges
Improve gasket sealing by concentrating pressure at the gasket area, ideal for high-pressure applications.
• Flat Face (FF) Flanges
Used in systems involving flat mating surfaces, particularly with brittle or non-metallic equipment.
• Forged Threaded Flanges
Provide excellent mechanical properties, dimensional accuracy, and durability under load.
• Custom-Machined Flanges
Available in various sizes, sealing surfaces, and material grades as per customer requirements.
Available Carbon Steel Grades and Composition:
1. ASTM A105 (Forged Carbon Steel)
Composition:
• Carbon (C): ≤ 0.35%
• Manganese (Mn): 0.60 – 1.05%
• Phosphorus (P): ≤ 0.035%
• Sulfur (S): ≤ 0.040%
• Silicon (Si): 0.10 – 0.35%
Applications:
Widely used in valve, pipe, and fitting assemblies in oil and gas, power, and chemical systems due to its strength, toughness, and weldability.
2. ASTM A350 LF2 (Low-Temperature Carbon Steel)
Composition:
• Carbon (C): ≤ 0.30%
• Manganese (Mn): 0.60 – 1.35%
• Phosphorus (P): ≤ 0.035%
• Sulfur (S): ≤ 0.040%
• Silicon (Si): 0.15 – 0.30%
Applications:
Ideal for cryogenic and low-temperature pressure systems such as pipelines, storage tanks, and vessel components operating in sub-zero climates.
Applications of DIN 2568 Carbon Steel Flanges:
• Oil and Gas Industry
Utilized in upstream and downstream operations, including high-pressure pipelines, wellheads, and separators.
• Power Plants
Used in steam, cooling water, and high-pressure boiler systems.
• Water and Wastewater Management
Suitable for potable water lines, sewage treatment facilities, and utility piping systems.
• Petrochemical and Refining
Applied in process piping that handles non-aggressive or mildly corrosive fluids.
• Mechanical and Structural Installations
Common in HVAC systems, pressure vessels, and general mechanical piping networks.
Key Features:
• Manufactured as per DIN 2568 standard
• Rated for PN 64 high-pressure applications
• Excellent strength, impact resistance, and thermal conductivity
• Threaded connection ensures quick and easy, weld-free assembly
• Cost-effective and durable solution for industrial infrastructure
• Supplied with test certificates, inspection reports, and full traceability
• Compatible with galvanizing, coating, or welding processes as required
Conclusion:
DIN 2568 Carbon Steel Flanges PN 64 from Ladhani Metal Corporation are engineered for high performance in critical industrial environments. Offering high pressure resistance, mechanical durability, and easy installation, these flanges are an optimal solution for a wide range of piping systems. For custom sizes, material options, or technical consultation, contact Ladhani Metal Corporation today.
DIN 2568 Monel Flanges PN 64 are high-integrity threaded flanges manufactured from corrosion-resistant Monel alloys, designed to perform reliably under high pressure and in highly corrosive environments. Built in accordance with DIN 2568 standards, these flanges offer outstanding resistance to seawater, acids, and alkalis, while maintaining high mechanical strength and thermal stability. They are ideally suited for use in marine, chemical, oil and gas, and offshore applications where both durability and corrosion performance are critical.
Ladhani Metal Corporation is a recognized manufacturer and exporter of Monel flanges, offering components that conform to global industry specifications. The threaded design facilitates easy, weld-free installation and disassembly, making them ideal for systems requiring frequent maintenance or rapid assembly in corrosive environments.
Pressure Rating:
• PN 64 (64 bar / 928 psi): Specially engineered for high-pressure systems exposed to aggressive chemical environments, ensuring mechanical integrity and long service life.
Flange Types:
• Threaded (Screwed) Flanges
Enable efficient, non-welded installation and maintenance in high-corrosion environments.
• Raised Face (RF) Flanges
Improve gasket sealing performance in systems with pressure and temperature variations.
• Flat Face (FF) Flanges
Suited for connections with flat-faced components, ensuring uniform gasket load distribution.
• Forged Threaded Flanges
Provide enhanced strength, dimensional precision, and resistance to corrosion.
• Custom-Machined Flanges
Available in a variety of sizes, pressure ratings, and Monel grades to suit specific application needs.
Available Monel Grades and Composition:
1. Monel 400 (UNS N04400)
Composition:
• Nickel (Ni): ≥ 63.0%
• Copper (Cu): 28.0 – 34.0%
• Iron (Fe): 2.0 – 2.5%
• Manganese (Mn): ≤ 2.0%
Applications:
Commonly used in marine engineering, chemical processing, and hydrocarbon systems for its excellent resistance to saltwater, hydrofluoric acid, and stress corrosion cracking.
2. Monel K500 (UNS N05500)
Composition:
• Nickel (Ni): ≥ 63.0%
• Copper (Cu): 27.0 – 33.0%
• Aluminum (Al): 2.3 – 3.15%
• Titanium (Ti): 0.35 – 0.85%
Applications:
Ideal for high-strength applications such as pump shafts, marine fasteners, and heat exchangers, combining the corrosion resistance of Monel 400 with increased hardness and tensile strength.
Applications of DIN 2568 Monel Flanges:
• Marine and Offshore Systems
Used in seawater piping, ballast systems, and marine heat exchangers.
• Chemical and Petrochemical Plants
Resistant to acidic and alkaline media in processing plants and reactors.
• Oil and Gas Industry
Applied in sour gas service, separators, and wellhead systems.
• Power Generation
Installed in condensers, boilers, and cooling systems exposed to aggressive fluids.
• Aerospace and Heat Treatment
Suitable for exhaust systems, fixtures, and salt bath environments.
Key Features:
• Conforms to DIN 2568 standard
• Rated for PN 64 high-pressure service
• Exceptional resistance to seawater, acids, and alkalis
• High strength, ductility, and fatigue resistance
• Threaded design allows for fast, weld-free installation and disassembly
• Supplied with test certificates, material traceability, and quality documentation
• Available with custom machining, finishing, and dimensional options
Conclusion:
DIN 2568 Monel Flanges PN 64 from Ladhani Metal Corporation offer an optimal solution for high-pressure systems operating in chemically aggressive or marine environments. With superior mechanical performance and corrosion resistance, Monel 400 and K500 flanges provide long-lasting service life in demanding applications. For technical support, grade selection, or custom orders, contact Ladhani Metal Corporation today