Adam Stainless based in Canberra, Australia is a trusted manufacturer and supplier of high-quality Stainless Steel 330 bolts for a wide range of industries. We specialize in providing top-notch Stainless Steel 330 Bolts. Known for their exceptional strength, resistance to oxidation and superior performance in high-temperature environments. Our Stainless Steel 330 bolts are designed to meet the most demanding applications, ensuring durability and reliability. We are committed to maintaining the highest standards of quality.
The Stainless Steel 330 Bolts from Adam Stainless in Canberra, Australia, are primarily made up of nickel (34–37%) and chromium (17–20%), along with a mix of iron and trace elements like silicon and manganese. This unique composition boosts their resistance to oxidation and enhances their strength at elevated temperatures. Mechanically, these bolts showcase impressive tensile strength (up to 620 MPa), good creep resistance, and remarkable stability in extreme heat conditions. Their low carbon content minimizes carbide precipitation, ensuring they perform reliably over time, even in thermal cycling situations. Adam Stainless guarantees that each bolt meets stringent material standards for industrial reliability and performance.
|
Material |
Specification |
Standards |
Size |
Length |
|
Stainless Steel 330 Bolts |
ASTM, ASME and API |
ASTM B 193 / ASME SB 193 |
M02 to M30 |
3 mm To 200 mm |
| Element | SS 330 |
| 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 330 |
| 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 | – |
Contact us to get a quick quote for your requirement.
Stainless Steel 330 bolts are high-temperature, corrosion-resistant fasteners designed for extreme heat environments. They offer excellent oxidation resistance, strength, and durability, making them ideal for industrial and furnace applications.
Custom Stainless Steel 330 Hex Bolt is a custom-made fastener with a square head, and provides superior heat and corrosion resistance. Ideal for special industrial applications requiring durability and durability.
Stainless Steel 330 leg bolt is a high-temperature resistant fastener with a threaded shaft and flat, leg-like design. It provides strong, reliable connections in extreme heat and harsh industrial environments.
Stainless Steel 330 Expansion Anchor Bolt is a high-temperature-resistant fastener designed to fasten to concrete or masonry structures. It stretches when installed, ensuring a sturdy, durable wear in harsh environments.
Stainless Steel 330 Hex Flange Head Bolt features a hexagonal head with an integrated flange, providing secure fastening and load distribution. It offers excellent resistance to high temperatures and corrosion.
Stainless Steel 330 full threaded bolts have a completely threaded shaft, offering consistent grip and engagement. They provide excellent strength and resistance to high temperatures and corrosion for demanding industrial applications.
The Stainless Steel 330 Bolts produced by Adam Stainless in Canberra, Australia, are widely utilized in industries that demand high-temperature and corrosion-resistant fasteners. Typical applications include heat treatment equipment, chemical processing facilities, furnaces, thermal oxidizers, and power generation systems. These bolts are particularly valued in environments that experience continuous thermal cycling and oxidation. Adam Stainless’s 330 bolts are perfect for securing structural components, pressure vessels, and high-heat enclosures. Their strength and durability under extreme conditions make them essential for a variety of critical applications.
Stainless steel 330 bolts are used in high temperature environments where good oxidation and corrosion resistance is required. Typical applications include furnace components, heat exchangers and industrial furnaces because of their ability to withstand extreme temperatures. They are employed in petrochemical plants and power plants to protect equipment exposed to extreme temperatures. Their durability makes them suitable for medical facilities and aerospace applications where reliability under extreme conditions is critical.







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