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Titanium Grade 7 Angle & Channel is a high-performance alloy known for its superior corrosion resistance due to the addition of palladium. This alloy is particularly effective in reducing environments and exhibits outstanding durability in oxidizing media as well. Its excellent mechanical strength and weldability make it a preferred material for demanding applications in the chemical, marine, and aerospace industries. Titanium Grade 7 maintains its structural integrity even in highly corrosive conditions, ensuring long-term performance and reliability. These properties make it an ideal choice for critical industrial equipment and architectural structures exposed to harsh environments.
One of the defining characteristics of Titanium Grade 7 is its ability to resist crevice and pitting corrosion, especially in chloride and acid-based environments. This makes it extremely valuable in industries such as desalination, chemical processing, and seawater systems where prolonged exposure to corrosive agents occurs. The presence of palladium enhances its resistance to corrosion cracking, offering a reliable and long-lasting performance. Fabrication of Titanium Grade 7 angles and channels is straightforward due to its formability and weldability using standard titanium welding procedures. Its combination of light weight and high strength further enhances its usability in precision engineering applications.
Titanium Grade 7 Angles are available in equal and unequal sizes, designed to provide strong structural support and framework for industrial constructions. They are commonly utilized in frameworks, bracing, and reinforcement components that require corrosion resistance with minimal weight. These angles exhibit superior resistance to chemical attack in both oxidizing and reducing media, ensuring stability in extreme conditions. The smooth surface finish also reduces contamination and promotes easy cleaning, making it suitable for use in pharmaceutical and food processing equipment. Customization options allow users to select dimensions and thicknesses that perfectly match their project requirements.
Titanium Grade 7 Channels, on the other hand, are structural profiles that provide excellent rigidity and load-bearing capacity in corrosive environments. These channels are widely used in support systems, marine structural components, and industrial frameworks where exposure to seawater or harsh chemicals is common. The alloy’s high fatigue resistance ensures durability even under constant mechanical stress or vibration. Titanium Grade 7 Channels are also lightweight compared to traditional materials like stainless steel, offering a significant reduction in overall system weight. Their longevity and minimal maintenance needs make them an economical choice for long-term installations.
In terms of mechanical properties, Titanium Grade 7 offers an excellent balance of tensile strength, elongation, and yield strength, making it versatile for a wide range of industrial uses. The alloy retains its strength even at elevated temperatures, maintaining mechanical stability and oxidation resistance. It also provides superior impact resistance, ensuring safe operation in dynamic and high-pressure systems. Titanium Grade 7 is non-magnetic, biocompatible, and non-toxic, expanding its use into medical and surgical equipment manufacturing. Its superior corrosion resistance ensures the preservation of structural integrity, even in continuous exposure to saline and acidic environments.
The chemical composition of Titanium Grade 7 primarily consists of titanium with small additions of palladium (approximately 0.2%). This small addition greatly improves the corrosion resistance without significantly affecting the mechanical properties of the alloy. It is similar to Titanium Grade 2 but with enhanced resistance to crevice corrosion, particularly in chloride environments. Due to its composition, it is suitable for applications that require exceptional resistance to oxidizing and mildly reducing conditions. This makes it highly reliable in power generation, desalination plants, and offshore installations.
Applications of Titanium Grade 7 Angles & Channels include heat exchangers, evaporators, piping systems, chemical reactors, and marine construction projects. They are also used in the manufacturing of condensers and cooling systems exposed to seawater. Their ability to perform under aggressive conditions ensures minimal downtime and maintenance costs. Titanium Grade 7’s biocompatibility allows its use in surgical instruments and implants. Its combination of lightweight structure, corrosion resistance, and strength makes it one of the most valuable titanium alloys in industrial and commercial applications.
Specification Table
| Specification | Details |
|---|---|
| Standard | ASTM B265 / ASME SB265, ASTM B381 / ASME SB381 |
| Material | Titanium Grade 7 (Ti-0.15% to 0.25% Pd) |
| UNS Number | R52400 |
| Form | Angle, Channel, Beam, Structural Profiles |
| Manufacturing Type | Hot Rolled / Cold Rolled / Extruded |
| Surface Finish | Mill Finish, Polished, Sandblasted, Pickled |
| Size Range | Angles: 20mm × 20mm to 150mm × 150mm Channels: 25mm × 25mm to 200mm × 100mm |
| Length | Up to 6 Meters (Custom Lengths Available) |
| Density | 4.51 g/cm³ |
| Melting Point | 1660°C (3020°F) |
| Corrosion Resistance | Excellent in Oxidizing, Reducing, and Chloride Environments |
| Applications | Chemical Processing, Marine Systems, Heat Exchangers, Desalination Plants, Medical Devices |
| Certification | EN 10204 3.1 / 3.2, NACE MR0175, ISO 9001 |
Chemical Composition (Typical ranges for SSIS)
Note: Values are typical ranges. Final composition will be confirmed on MTC provided per lot.
| Element | Composition (%) |
|---|---|
| Titanium (Ti) | Balance |
| Palladium (Pd) | 0.12 – 0.25 |
| Iron (Fe) | ≤ 0.30 |
| Carbon (C) | ≤ 0.08 |
| Nitrogen (N) | ≤ 0.03 |
| Hydrogen (H) | ≤ 0.015 |
| Oxygen (O) | ≤ 0.25 |
| Other Elements (each) | ≤ 0.10 |
| Total Other Elements | ≤ 0.40 |
Mechanical Properties (Typical)
| Property | Metric Value | Imperial Value |
|---|---|---|
| Tensile Strength (Minimum) | 345 MPa | 50 ksi |
| Yield Strength (0.2% Offset, Minimum) | 275 MPa | 40 ksi |
| Elongation (in 50mm) | 20% | 20% |
| Modulus of Elasticity | 105 GPa | 15.2 × 106 psi |
| Hardness (Brinell) | 160 HB | 160 HB |
| Density | 4.51 g/cm³ | 0.163 lb/in³ |
| Melting Point | 1660°C | 3020°F |
Equivalent Grades
| Standard | Equivalent Grade | Description |
|---|---|---|
| UNS | R52400 | Titanium Grade 7 (Ti-0.2Pd) |
| ASTM | Grade 7 | Commercially pure titanium alloyed with palladium for corrosion resistance |
| ASME | SB-265 Grade 7 / SB-381 Grade 7 | Standard specification for titanium and titanium alloy products |
| ISO | Ti-Pd 0.2 | ISO standard palladium-bearing titanium alloy |
| EN | 3.7235 | Titanium Grade 7 equivalent in European standards |
| JIS | TP270 | Japanese Industrial Standard equivalent to Titanium Grade 7 |
| DIN | Ti-Pd20 | German standard for Titanium Grade 7 alloy with 0.2% Palladium |
Dimension & Weight Chart (Selected common sizes)
Below is a representative chart showing outside diameter, wall thickness, inside diameter, cross-sectional area of metal and calculated weight per metre (kg/m). Values are calculated using density = 7.93 g/cm³ and are for guidance — use actual MTC values for procurement & engineering.
| Angle Size (mm) | Thickness (t) (mm) | Cross-Sectional Area (mm²) | Mass (kg/m) | Notes |
|---|---|---|---|---|
| 20 × 20 | 3 | 111 | 0.501 | Equal leg angle — typical for light frames |
| 25 × 25 | 3 | 141 | 0.636 | Good for small supports and brackets |
| 40 × 40 | 4 | 304 | 1.371 | Common structural size for light to medium loads |
| 50 × 50 | 5 | 475 | 2.142 | Medium duty structural members |
| 75 × 75 | 6 | 864 | 3.897 | Heavier structural applications |
| 100 × 100 | 8 | 1,536 | 6.927 | High-strength frameworks and supports |
| 150 × 150 | 10 | 2,900 | 13.079 | Large structural members — heavy duty |
Types Of Titanium Grade 7 Angal channel
Stainless Steel Angal & channel
Monel 400 Angal & channel
Inconel 600 Angal & channel
Titanium Grade Angal & channel
Super Duplex Angal & channel
Duplex Angal & channel
Nickel Angal & channel
Monel K500 Angal & channel
Frequently Asked Questions (FAQ)
What is Titanium Grade 7 and what makes it different from Grade 2?
Titanium Grade 7 (often noted Ti-0.2Pd or UNS R52400) is commercially pure titanium alloyed with a small amount of palladium (typically ~0.12–0.25%). The palladium improves resistance to crevice and pitting corrosion, especially in chloride and oxidizing environments, compared with Grade 2. Mechanical properties and fabricability remain similar to Grade 2 while corrosion resistance is enhanced.
Which applications are Titanium Grade 7 angles and channels best suited for?
Grade 7 is ideal for applications requiring superior corrosion resistance in aggressive media: desalination equipment, seawater heat exchangers, chemical processing plants, offshore/marine structures, and certain biomedical components. It is commonly used where chloride attack or oxidizing agents are present.
Are Grade 7 angles and channels weldable? What welding methods are recommended?
Yes — Grade 7 is readily weldable using standard titanium welding practices. Gas tungsten arc welding (GTAW/TIG) and plasma welding are common. Maintain inert gas shielding (argon) during welding and chilling, and follow qualified procedures to avoid contamination. Post-weld cleaning or pickling may be specified depending on the application.
How do I specify dimensions, tolerances, and surface finish when ordering?
Provide leg sizes (for angles), flange/web dimensions (for channels), thickness, length, and any corner radii. State tolerance class (standard mill tolerances or tighter tolerances if required) and desired surface finish (mill, pickled, sandblasted, polished). Also request material certification level (e.g., EN 10204 3.1/3.2) and any special testing.
What certifications and test reports are typically available?
Common certifications include EN 10204 2.1 / 3.1 / 3.2, mill test reports, and conformance to ASTM/ASME specifications (B265, B381 / SB265, SB381). NACE MR0175 or customer-specific inspection and material test plans can often be accommodated on request.
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