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Комплексное сравнение семейств и марок нержавеющей стали

Оглавление

Introduction to Stainless Steel Types

Stainless steel comes in several varieties, each designed for specific uses based on its properties. Choosing the right type can often feel like selecting the perfect tool for the job—precision matters.

  1. Аустенитная нержавеющая сталь: This is the go-to for industries that need top-notch corrosion resistance, like food processing and healthcare. Grades like 304 and 316 are popular for their durability and the fact they stay tough, even when it gets really cold. Plus, they’re non-magnetic, which adds to their versatility in applications where magnetism could be an issue.

  2. Ферритная нержавеющая сталь: Ferritic Stainless Steel, such as 430, may not steal the spotlight, but they’re reliable workhorses. Often used in kitchen appliances and automotive parts, they offer moderate corrosion resistance and are magnetic. If you’re working on a budget and don’t need the extreme resilience of austenitic steel, this type gets the job done without breaking the bank.

  3. Мартенситная нержавеющая сталь: When you need toughness and hardness, martensitic steel is your friend. Think tools, knives, or machinery parts. Grades like 410 and 420 don’t offer the same corrosion resistance as austenitic steel, but they make up for it with strength. You might imagine them as the tough, no-nonsense option—perfect for demanding tasks.

  4. Дуплексная нержавеющая сталь: This is where things get interesting. Duplex steel, such as 2205, combines the best of both austenitic and ferritic structures. It’s like having the strength of a bodybuilder with the agility of a gymnast. Ideal for oil refineries and marine environments, this steel excels in harsh conditions.

  5. Precipitation-Hardening Stainless Steel: For industries where strength and precision are paramount, PH grades like 17-4 PH step in. Aerospace and chemical processing sectors rely on this type because it offers high strength while still maintaining excellent corrosion resistance. You could think of it as the steel that doesn’t compromise—offering both power and finesse.

These Values Are Not Absolute

Each of these properties—density, tensile strength, hardness, and melting point—can fluctuate based on multiple factors:

  • Alloy Composition: The addition of various elements (e.g., chromium, nickel, molybdenum) changes the overall properties of the steel.
  • Производственные процессы: Processes like annealing, cold working, and heat treatment can strengthen, soften, or otherwise alter the steel’s properties.
  • Environmental Conditions: Temperature, pressure, and exposure to certain chemicals during manufacturing can affect the final material properties.
  • Batch Variations: Even within the same grade of steel, different production batches may show slight variations due to differences in raw materials or processing conditions.

In summary, while we can provide general ranges for these properties, the exact values can vary depending on many factors related to composition and processing.

Comparison Table for Different Types of Stainless Steel

Stainless Steel TypeStainless Steel GradeПлотность (г/см³)Tensile Strength, Ultimate (MPa)Hardness (HRB/HRC)Melting Point (°C)МагнетизмУстойчивость к коррозии
аустенитный201 нержавеющая сталь7.81 g/cm³758 MPa87 HRB1399 – 1454 °C
(2550 – 2649 °F)
Non-magnetic (may become slightly magnetic after processing).Good, suitable for general use, but not as resistant as 304 and 316.
202 Stainless Steel7.86 g/cm³515 MPa80 HRB1400 – 1450 °C
(2550 – 2640 °F)
Non-magnetic (may become slightly magnetic after processing).Similar to 201, suitable for general use.
Нержавеющая сталь 3018.03 g/cm³515 MPa85 HRB1399 – 1421 °C
(2550 – 2590 °F)
Non-magnetic (may become slightly magnetic after processing).Good, but slightly less than 304, suitable for springs, fasteners, etc.
304 нержавеющая сталь7,93 г/см³505 МПа70 HRB1400 – 1455 °C
(2550 – 2651 °F)
Non-magnetic (may become slightly magnetic after processing).Excellent, suitable for most environments, including food, chemical, and pharmaceutical industries.
Нержавеющая сталь 304L8.03 g/cm³585 МПа80 HRB1399 – 1454 °C
(2550 – 2649 °F)
Non-magnetic (may become slightly magnetic after processing).Similar to 304, better resistance to intergranular corrosion, ideal for welding applications.
Нержавеющая сталь 3167.99 g/cm³579 MPa79 HRB1371 – 1399 °C
(2500 – 2550 °F)
Non-magnetic.Superior, especially in chloride-containing environments (e.g., marine environments).
Нержавеющая сталь 316L7.99 g/cm³558 MPa79 HRB1371 – 1399 °C
(2500 – 2550 °F)
Non-magnetic.Similar to 316, with better resistance to intergranular corrosion.
321 Stainless Steel7.92 g/cm³621 МПа80 HRB1371 – 1399 °C
(2500 – 2550 °F)
Non-magnetic.Similar to 304, with better oxidation resistance at high temperatures.
310 Stainless Steel7.84 g/cm³617 MPa83 HRB1400 – 1455 °C
(2550 – 2651 °F)
Non-magnetic.Excellent, particularly in high-temperature environments.
904L Stainless Steel7.97 g/cm³600 MPa90 HRB1300 – 1390 °C
(2372 – 2534 °F)
Non-magnetic.Very strong, especially in highly acidic environments, widely used in chemical and marine industries.
254 SMO Stainless Steel8.00 g/cm³680 MPa96 HRB1320 – 1390 ℃
(2408 – 2534 °F)
Non-magnetic.Extremely high, suitable for extreme corrosive environments, such as marine and chemical equipment.
ферритныйНержавеющая сталь 4097.80 g/cm³448 МПа75 HRB1425 – 1510 °C
(2597 – 2750 °F)
МагнитныйModerate, mainly used in automotive exhaust systems.
Нержавеющая сталь 4307.74 g/cm³483 MPa85 HRB1425 – 1510 °C
(2597 – 2750 °F)
МагнитныйGood, suitable for kitchen appliances and decorative applications.
434 Stainless Steel7.68 g/cm³483 MPa85 HRB1426 – 1510 °C
(2600 – 2750 °F)
МагнитныйGood, with added molybdenum for improved corrosion resistance, suitable for kitchen equipment and automotive exhausts.
439 Stainless Steel7.69 g/cm³455 MPa74 HRB1426 – 1505 °C
(2600 – 2471°F)
МагнитныйGood, with better weldability, suitable for automotive exhaust systems.
446 Stainless Steel7.70 g/cm³550 МПа83 HRB1425 – 1510 °C
(2597 – 2750 °F)
МагнитныйExcellent, particularly in high-temperature environments.
МартенситныйНержавеющая сталь 4107.65 g/cm³450 МПа96 HRB1480 – 1530 °C
(2700 – 2790 °F)
МагнитныйModerate, suitable for knives, valves, and pumps.
Нержавеющая сталь 4207.73 g/cm³586 MPa88 HRB1454 – 1510 °C
(2649 – 2750 °F)
МагнитныйGood, often used in tools and medical instruments.
Нержавеющая сталь 4407.80 g/cm³760 MPa97 HRB1643 – 1753 °C
(2500 – 2696 °F)
МагнитныйModerate, with high hardness, suitable for knives and bearings.
Дуплекс2205 Нержавеющая сталь7,82 г/см³750 MPa95 HRB1385 – 1445 °C
(2525 – 2630 °F)
Magnetic (due to the ferritic portion of its duplex structure).Very high, especially strong against stress corrosion cracking, suitable for marine, oil, and chemical equipment.
2507 Stainless Steel7.80 g/cm³800 MPa108 HRB1410 – 1460 °C
(2570 – 2660 °F)
Magnetic (due to the ferritic portion of its duplex structure).Very high, suitable for extreme corrosive environments.
2101 Stainless Steel7.69 g/cm³696 МПа106 HRB1385 – 1443 °C
(2525 – 2630 °F)
Magnetic (due to the ferritic portion of its duplex structure).Good, suitable for construction and light industry.
Precipitation-HardeningНержавеющая сталь 17-4 PH7.80 g/cm³1350 MPa117 HRB1404 – 1440 °C
(2560 – 2625 °F)
МагнитныйExcellent, widely used in aerospace and tooling industries.
15-5 PH Stainless Steel7,78 г/см³1310 MPa108 HRB1404 – 1440 °C
(2560 – 2625 °F)
МагнитныйExcellent, with higher toughness, suitable for aerospace and mechanical parts.
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