What is the general compressive strength of stainless steel

Updated on science 2024-02-28
8 answers
  1. Anonymous users2024-02-06

    There are many types of stainless steel, some of which can be heat treated, and some of which can be subjected to other mechanical properties.

    The treatment, the same is 304, the treatment method is different, the mechanical strength can reach 520MPa, can also reach 700MPa, 800MPa, or even more than 860MPa.

  2. Anonymous users2024-02-05

    Hello dear, glad to answer for you, thank you for your patience! The yield strength and compressive strength of 201 stainless steel and 304 stainless steel are small: the yield point of 201 steel is 275MPa, and the tensile strength is 520MPa.

    Specifically, it is sorted out for you as follows: the information of the query shows that the yield point of 201 stainless steel is 275MPa, the tensile strength is 520MPa, and the elongation is 40%: 2, the yield point of 304 stainless steel is 205MP, and the resistance strength is 515MPa and the elongation is 40%.

    The simplest and basic difference between the two is the difference in nickel content, 304 stainless steel has a nickel content of up to 8 points, and the corrosion resistance is stronger than that of 201 stainless steel. This also leads to 304 stainless steel pipes** are more expensive than 201, but 201 stainless steel will not rust if the environment is suitable and well maintained. The corrosion resistance of 304 is better than that of 201, and there is also a 301 stainless steel and nuclear trillion steel material in the middle.

    The main pressure difference between 201 stainless steel and 304 stainless steel is the manganese content and carbon content in it, these two alloying elements determine the strength (pressure bearing) of stainless steel, and 201 stainless steel has higher manganese content and higher carbon content than 304 stainless steel pipes, but the comprehensive mechanical properties of 304 stainless steel are better. There is a saying that "the pressure tolerance only depends on the wall thickness of the stainless steel pipe", and this sentence is also true, the thicker the pipe, the better the natural pressure tolerance. There is basically no difference between 304 stainless steel pipe and 201 stainless steel pipe, and the surface color, specification and size and even the production and processing technology can be the same.

    Then they have substantial differences, the answer is the difference in material, don't underestimate the "material" of the two words of Zen, the role can be particularly large, which is strictly related to the use of the product and the highest level of the product. The difference between 304 stainless steel pipe and 201 stainless steel pipe is mainly manifested in the following two aspects: 1. Chemical composition 304:

    C carbon ,si silicon ,mn manganese :cr chromium :,p phosphorus :

    n ,s : Ni nickel ::c carbon ,si) silicon , mn manganese :,cr) chromium :, n nitrogen: p phosphorus:

    s) Sulfur: Ni nickel: Due to the low nickel content of 201, it is usually used as an alloy of 201, such as adding manganese or nitrogen, so that 201 is more resistant to oxidation and increases corrosion resistance.

    2. Mechanical properties 304 Properties: tensile strength 520MPa, yield strength 205-210MPa, elongation 40%, hardness HB187 HRB90 HV200201 Performance: tensile strength:

    520MPa, Yield Strength: 275MPa, Elongation: 55 to 60%, Hardness HRB<183N mm2MPa, hope this service can help you.

  3. Anonymous users2024-02-04

    How many kilograms of pressure can stainless steel of 27 3 withstand.

    Kiss! Hello, happy to answer your <>

    The stainless steel of the pro-27 3 can withstand stainless steel with a bearing capacity between 25 and 40MPa. It depends on the safety factor you consider. However, stainless steel burns with extremely high fatigue resistance.

    Different stainless steel grades have different strengths, and the force they can bear is not the same. For example, the tensile strength of 1Cr17Ni7 stainless steel is 520MPa, if its diameter is 6mm, the grade of stainless steel can withstand a force of 14695 N, which is equivalent to a ton force.

    The bearing capacity of stainless steel is also very large, if you buy a stainless steel plate, the stainless steel plate per square meter can withstand the pressure of 800 to 1,000 kilograms, if the thickness of the thin plate is less than five millimeters, it can also withstand about 300 pressure per square meter, so the load-bearing capacity of stainless steel depends on the thickness of its plate and the area of the plate, the larger the area, the thicker the thicker the load-bearing capacity, and vice versa, the less I hope mine can help you <>

    Do you have any other questions?

  4. Anonymous users2024-02-03

    Hello dear, happy to answer for you. Austenitic-ferritic steel: high yield strength of this type of steel due to the expansion of the y area and the degree of action of the stable austenite elements in Huaimu, it is not enough to make the steel have a pure austenite structure at room temperature or a very high temperature, so it is an austenitic ferrite complex state, and its ferrite mass can also vary in a large range due to different composition and heating temperature.

    There are many stainless steels belonging to this category, such as low-carbon 18 8 chromium-nickel steel, 18 8 chromium-nickel steel with titanium, niobium and molybdenum, especially ferrite can be seen in the structure of cast steel, in addition to chromium-manganese stainless steel (such as CR17mnll) containing more than 14 15% and less carbon, as well as most of the chromium-manganese nitrogen stainless steel currently studied and has been applied. Compared with pure austenitic stainless steel, this type of steel has many advantages, such as higher yield strength, higher resistance to intergranular corrosion, low sensitivity to stress corrosion, less tendency to produce hot cracks during welding, good casting fluidity, and so on. The disadvantages are poor pressure processing performance, large tendency to pitting corrosion, easy to produce C-phase brittleness, and weak magnetism under the action of strong magnetic field.

    All of these advantages and disadvantages are based on ferrite in tissues.

  5. Anonymous users2024-02-02

    Dear you, yield strength and compressive strength are two important indicators to measure the strength of materials. Among stainless steels, 316L stainless steel is the one with the highest yield strength and compressive strength. 316L stainless steel is a kind of low-carbon steel with good corrosion resistance and high strength, which is widely used in chemical, medical, food processing and other fields.

    Its yield strength is 170-310 MPa, and the compressive strength is 620-1040 MPa. In addition, 304 stainless steel is also a commonly used stainless steel with a yield strength of 205 MPa and a compressive strength of 515 MPa. In general, the strength of stainless steel depends on factors such as its composition, manufacturing process, and heat treatment, and different kinds of stainless steel have different strength characteristics.

  6. Anonymous users2024-02-01

    Hello Glad to answer for you, the yield strength and compressive strength of stainless steel depend on factors such as material, heat treatment and manufacturing process. Generally speaking, austenitic stainless steels have relatively high yield strength and compressive strength, such as ASTM standard 316L stainless steel, which has a yield strength of 170MPa and a compressive strength of 485MPa. However, this is not absolute, as different stainless steel grades will perform differently in different applications and conditions.

    Therefore, when choosing stainless steel materials, it is necessary to comprehensively consider its specific application scenarios and performance requirements to select the most suitable material. The above suggestions are for your reference I wish you a happy life and a smooth lead cut before a boring! 拾殺

  7. Anonymous users2024-01-31

    Hello dear<>

    In stainless steel, elements such as chromium, nickel, and molybdenum are often present, which improve the physical and chemical properties of stainless steel. Therefore, when choosing stainless steels with high yield strength and compressive strength, we usually choose austenitic stainless steels with good corrosion resistance. Here are some introductions to corrosion-resistant stainless steels:

    Stainless steel: This is an austenitic stainless steel containing 2-3% molybdenum, 16-18% chromium, and 10-14% nickel. It has excellent strength and corrosion resistance, high temperature resistance, corrosion resistance, and a wide range of applications.

    It is commonly used in the manufacture of chemical, medical, and food processing equipment. 2.904L Stainless Steel:

    This is a highly alloyed, corrosion-resistant Otta silver lutenitic stainless steel containing a high percentage of chromium (19-23%), nickel (23-28%), and molybdenum (4-5%). 904L stainless steel has high yield strength and high compressive strength, which is economical and durable. However, it is more expensive and is commonly used to manufacture high-end Qingqing chemical, petroleum, marine and pharmaceutical equipment.

    3.2205 Stainless Steel: This is a duplex austenitic stainless steel that contains alloying elements such as chromium and nickel, as well as a certain amount of molybdenum.

    2205 stainless steel has high strength, high corrosion resistance, and can adapt to some harsh environments. It is commonly used in the manufacture of marine equipment, chemical equipment and food processing equipment. Each stainless steel has different uses, compositions, and properties, so choose the most suitable one for your needs.

  8. Anonymous users2024-01-30

    The yield strength and compressive strength of 201 stainless steel are respectively S (yield strength) 205MPa, b (compressive strength) 520MPa; The yield strength and compressive strength of 304 stainless steel are S (yield strength) 215MPa and B (compressive strength) 520MPa respectively. When using these two stainless steel materials, the following points should be noted: (1) establish a clear processing technology and construction structure to ensure that the structure plays an ideal functional effect during the use of the bucket cong; (2) Avoid large deformation tensile stress, so as to reduce the damage of stainless steel materials; (3) Fully consider heat treatment and cold treatment; (4) Adopt appropriate molds to prevent unnecessary deformation; (5) Perform regular inspection and maintenance to maintain the safe and normal state of stainless steel.

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