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30/07 17:26
< On July 30, the price of hot-rolled steel plate in Hangzhou saw a slight decline. Q235B (ASTM A36) Ninggang 3.0*1250*6000mm 508.81, down 2.79. (USD/ton)
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30/07 17:25
< On July 30, the price of I-beam in Tangshan did not fluctuate much. Q235B (ASTM A36) Jinxi 32# (320×130×9.5) mm 490.69, down 2.79. (USD/ton)
30/07 17:24
< On July 30, the price of cold-rolled steel plate in Foshan fell slightly. SPCC (ASTM A1008 CS) Liuzhou Steel 1.5*1250*2500mm 556.21, down 4.18. (USD/ton)
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30/07 17:21
< On July 30, the price of welded rebar mesh in Quzhou remained stable. CRB600H (ASTM A615 Grade 80) common Φ12 (100×100) mm 543.66. (USD/ton)
30/07 00:00
< Henan Iron and Steel Group Anyang Base Successfully Delivered the First Order of High Manganese Wear-resistant Steel
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30/07 00:00
< Anyang Steel's Second Melting and Rolling Department successfully rolled nickel-molybdenum-chromium N10276 hot-rolled steel strip
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Answers

  • What is Mn13?

    Mn13 steel is a high-carbon, high-manganese austenitic steel. Its chemical composition is as follows:


    Core Characteristics:
    Excellent work-hardening ability: The core of Mn13 steel. When subjected to strong impact or high-stress compression, the surface austenite rapidly induces numerous dislocations and undergoes a martensitic transformation. The hardness can dramatically increase from an initial hardness of around HB200 to over HB500, forming a tough, wear-resistant surface layer while maintaining excellent toughness in the core.

    Excellent impact wear resistance: Under high impact loads, such as gouging and impact wear, the hardened layer effectively resists gouging, demonstrating a service life far exceeding that of ordinary wear-resistant steels.

    Excellent toughness: The high manganese content ensures the high toughness of the austenite matrix, enabling it to absorb significant impact energy without brittle fracture, thus preventing catastrophic failure under harsh operating conditions.

    Moderate initial hardness and ease of processing: After solution treatment (water toughening), the material is in a soft and tough state (HB180-220), which is convenient for cutting, drilling, forming and other mechanical processing, providing convenience for the manufacture of complex wear-resistant parts.


  • What are the characteristics of carbon steel?

    1. Ordinary carbon structural steel
    Q195 steel has low strength, good plasticity, toughness, processing performance and welding performance, and is mainly used for rolling thin plates and wire rods.
    Q215 steel is mainly used to make pipe billets, bolts, etc..
    Q235 steel has moderate strength, good load-bearing capacity, good plasticity and toughness, good weldability and processability, and is a commonly used grade for steel structures. It is made into steel bars, steel sections and steel plates in large quantities for building houses and bridges.
    Q275 steel has high strength and hardness, good wear resistance, but poor plasticity, impact toughness and weldability. It is mainly used to manufacture shafts, agricultural tools, wear-resistant parts and pads.

    2. Fine carbon structural steel, fine carbon structural steel is carbon steel with a carbon content of less than 0.8%. This steel contains less sulfur, phosphorus, and non-metallic inclusions than carbon structural steel. Compared with ordinary carbon structural steel, high-quality carbon structural steel has higher plasticity and toughness, and can be strengthened by heat treatment. It is mostly used for more important parts and is widely used in machinery manufacturing.

    According to the different carbon content, high-quality carbon steel is divided into low carbon steel, medium carbon steel and high carbon steel. Low carbon steel has low strength and hardness, but high plasticity and toughness, excellent processing and welding properties, and is used to manufacture parts with small loads and high toughness requirements, as well as small carburized parts; medium carbon steel has high strength and hardness, low plasticity and toughness, good cutting performance, but poor welding performance, good cold and hot deformation ability, and is mainly used to manufacture mechanical parts with large loads. Commonly used medium carbon steels are 40#, 45# and 50# steels, but because the hardenability of carbon steel is not high, the larger the size of the part, the worse the strengthening effect of the quenching and tempering treatment.


  • How high a temperature can 316 stainless steel withstand?

    316 stainless steel belongs to austenitic stainless steel. The key to high temperature resistance is the addition of 2.0% to 3.0% Mo element. The presence of this element enables 316 stainless steel to maintain stable chemical and mechanical properties under high-temperature environments.

    The temperature resistance of 316 stainless steel pipes shows significant environmental dependence:
    Oxidizing environment: It is recommended that the temperature for long-term continuous use should not exceed 800°C; otherwise, the oxide film may fail due to continuous oxidation.
    Non-oxidizing environment: Under anaerobic or low-oxygen conditions, it can withstand high temperatures of around 1200°C, and even 1300°C for short-term intermittent use.
    Load softening temperature: About 950°C, that is, the critical temperature at which the material begins to soften under stress conditions.


    The range of high temperatures that 316 stainless steel can withstand is roughly 1200-1300 degrees, and it can be used under relatively harsh conditions. The reason why 316 stainless steel can withstand such high temperatures is that the addition of Mo element to 316 stainless steel greatly increases its corrosion resistance and high temperature strength.


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