Sae 8660 Alloy Structural Steel Round Bar
SAE 8660 alloy structural steel round bar is a high-quality material that is widely used in the manufacturing industry. This steel is known for its strength, durability, and resistance to wear and tear. It is an excellent choice for applications that require high performance and reliability.
One of the main advantages of SAE 8660 alloy structural steel round bar is its excellent mechanical properties. It has a high yield strength and good toughness, which makes it ideal for use in applications that require high strength and durability, such as construction, manufacturing, and automotive industries.
Another benefit of SAE 8660 alloy structural steel round bar is its good machinability. It is easy to cut, shape, and drill, which makes it a popular choice for manufacturing a wide range of products. It can be used to produce shafts, gears, springs, and other critical components for various machines and equipment.
In addition to its mechanical properties and machinability, SAE 8660 alloy structural steel round bar is also highly resistant to corrosion. It can withstand harsh environmental conditions and exposure to moisture and chemicals without losing its strength or durability. This makes it an excellent material for use in marine and offshore applications.
Product Specification
1. Material composition: Structural steel round rod is composed of carbon, manganese and chromium, with unique properties.
2. Strength :SAE 8660 alloy structural steel round bar has a tensile strength of up to 750mpa, which is very durable and ideal for use in high-stress applications.
3. Machinability: easy to process, weldable, widely used.
4. Corrosion resistance: The material has strong corrosion resistance and rust resistance, which is very suitable for use in wet and humid environments.
MATERIAL-NUMBER | DIN/EN | BSI/AFNOR | ASTM | AISI/SAE |
---|---|---|---|---|
1.6528 | GS-60 NiCrMo 2 | H 86600, G 86600 | 8660H, 8660 |
Analysis: Chemical composition, mass fraction in percent (%) of 8660
Carbon (C%) | Manganese (Mn%) | Silicon (Si%) | Phosphorus (P%) | Sulfur (S%) |
---|---|---|---|---|
Min: 0,55 Max: 0,65 | Min: 0,75 Max: 1,00 | Min: 0,15 Max: 0,30 | 0,04 | 0,04 |
Chrome (Cr%) | Nickel (Ni%) | Copper (Cu%) | Molybdenum (Mo%) | Aluminum (Al%) |
---|---|---|---|---|
Min: 0,40 Max: 0,60 | Min: 0,40 Max: 0,70 | Min: 0,15 Max: 0,25 |
SAE 8660 H SAE J 1268 Mechanical
Yield Rp0.2 (MPa) |
Tensile Rm (MPa) |
Impact KV/Ku (J) |
Elongation A (%) |
Reduction in cross section on fracture Z (%) |
As-Heat-Treated Condition | Brinell hardness (HBW) |
---|---|---|---|---|---|---|
345 (≥) | 934 (≥) | 12 | 43 | 33 | Solution and Aging, Annealing, Ausaging, Q+T,etc | 411 |
SAE 8660 H SAE J 1268 Physical
Physical performance parameters of SAE 8660 H SAE J 1268 are mainly indicated by thermal conductivity, specific thermal capacity, modulus of elasticity, coefficient of thermal expansion, electrical resistance value, density, poisson's ratio, etc. parameters of SAE 8660 H SAE J 1268.
Temperature (°C) |
Modulus of elasticity (GPa) |
Mean coefficient of thermal expansion 10-6/(°C) between 20(°C) and | Thermal conductivity (W/m·°C) |
Specific thermal capacity (J/kg·°C) |
Specific electrical resistivity (Ω mm²/m) |
Density (kg/dm³) |
Poisson’s coefficient, ν |
---|---|---|---|---|---|---|---|
41 | - | - | 0.13 | - | |||
338 | 945 | - | 43.3 | 333 | - | ||
849 | - | 31 | 24.2 | 313 | 443 |
Processing Service
1. Raw material preparation: The first step in the production of SAE 8660 alloy structural steel round rod is to prepare raw materials. This process depends on good economic conditions and technical levels, requiring precise control of alloying element content. We should note that this is an environmentally friendly and resource-saving process.
2. Melting: After preparing the raw material, it needs to be melted. This is a high temperature and high pressure process that requires professional technology and equipment. In the process of melting, we can see the workers working hard to ensure high quality products. In addition, this process also requires strict control and management to ensure that products meet standards.
3. Heat treatment: In the later stage of the production process, the steel round rod needs to be heat treated. This is a process that can control different characteristics and requires fine coordination of various links and stages to ensure good product quality. In this process, we can see a lot of highly technical work, such as controlling temperature and time. At the same time, manufacturers need to proactively communicate with customers to ensure that products meet customer needs.
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