Khaled Stainless, located in Cairo, Egypt, stands out as a trusted manufacturer and supplier of Stainless Steel 316Ti bolts, specifically designed for high-temperature and corrosion-resistant fastening needs. These titanium-stabilized bolts are crafted with precision threading, tight dimensional tolerances, and rigorous metallurgical standards to guarantee reliable joint performance even under thermal and corrosive stress. Khaled Stainless caters to refineries, power plants, chemical processing facilities, and heavy engineering sectors where standard 316L fasteners might falter at elevated temperatures. With certified raw materials, a clean surface finish, and consistent stock availability, Khaled Stainless ensures long-term operational reliability for critical bolting systems.
Stainless Steel 316Ti is a titanium-stabilized, molybdenum-bearing austenitic stainless steel that contains around 16–18% chromium, 10–14% nickel, and 2–3% molybdenum, with titanium added to prevent carbide precipitation at high temperatures. The carbon content is typically kept below 0.08%. The mechanical properties of SS 316Ti bolts are impressive, featuring a tensile strength of about 515–750 MPa, yield strength around 205–310 MPa, and an elongation of approximately 30–40%. This alloy is known for its excellent toughness, strong resistance to intergranular corrosion, and stable strength during prolonged exposure to high temperatures.
|
Material |
Specification |
Standards |
Size |
Length |
|
Stainless Steel 316Ti Bolts |
ASTM, ASME and API |
ASTM B 193 / ASME SB 193 |
M02 to M30 |
3 mm To 200 mm |
| Element | SS 316Ti |
| Tensile Strength (MPa) min | 480 |
| Yield Strength 0.2% Proof (MPa) min | 275 |
| Elongation (% in 50mm) min | 16 |
| Rockwell B (HR B) max Hardness | 95 |
| Brinell (HB) max Hardness | 201 |
| Element | SS 316Ti |
| Ni | 0.75 |
| C | 0.15 |
| Mn | 1.00 max |
| P | 0.04 max |
| S | 0.03 max |
| Si | 1.00 max |
| Cr | 11.5 – 13.5 |
| Mo | – |
| N | – |
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Stainless steel 316Ti bolts are high strength fasteners that resist corrosion, especially in high acid and chloride environments. They are hardened and toughened at high temperatures and harsh conditions.
Custom Stainless Steel 316Ti Hex Bolt is a high strength, corrosion-resistant fastener with a hexagonal head, tailored to specific dimensions This provides exceptional durability and heat resistance for demanding applications.
Stainless Steel 316Ti leg bolt is a high-strength, corrosion-resistant fastener with a long, threaded shaft and flat head. It offers durability and stability in high-temperature and harsh environments.
Stainless Steel 316Ti Expansion Anchor Bolt is a corrosion-resistant fastener used to secure concrete or masonry structures. It expands in the hole as it tightens, providing stability and reliability.
Stainless Steel 316Ti Hex Flange Head Bolts have hexagonal head integrated flanges for improved weight distribution. Provides excellent corrosion resistance and durability in high temperatures and harsh environments.
Stainless steel 316Ti full threaded bolts have threads running the entire length, providing consistent clamping force. They offer excellent corrosion resistance and durability, making them ideal for high-temperature and harsh environments.
Our stainless steel 316Ti bolts undergo rigorous quality testing including advanced destructive and non-destructive testing to ensure unparalleled performance and reliability. They are packed with high-quality materials to avoid any disruption in the journey and are promptly delivered to our customers. We provide complete documentation, ensuring quality products and customer satisfaction every step of the way.
Stainless Steel 316Ti bolts are essential in fastening systems that face high temperatures and harsh corrosive environments. You’ll find them in a variety of applications, including heat exchangers, furnace assemblies, refinery piping, petrochemical reactors, exhaust systems, thermal processing equipment, and components in power plants. Thanks to the titanium stabilization, these bolts can function reliably within a temperature range of 425–900°C, all while avoiding the risk of intergranular corrosion.







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