• Special Steel A36/A992 Round Solid Steel Bar System 1
  • Special Steel A36/A992 Round Solid Steel Bar System 2
  • Special Steel A36/A992 Round Solid Steel Bar System 3
Special Steel A36/A992 Round Solid Steel Bar

Special Steel A36/A992 Round Solid Steel Bar

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Loading Port:
China main port
Payment Terms:
TT OR LC
Min Order Qty:
30 m.t.
Supply Capability:
10000 m.t./month

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Item specifice

Type:
Alloy Steel
Shape:
Steel Round Bar
Standard:
AISI,ASTM,JIS,GB,BS,DIN,API,EN
Technique:
Hot Rolled,Cold Rolled,Cold Drawn,ERW,Forged,Saw,Extruded,EFW,Spring
Shape:
U Channel,Square,C Channel,Hexagonal,Round,Rectangular,Oval,LTZ
Surface Treatment:
Galvanized,Coated,Copper Coated,Color Coated,Oiled,Dry,Chromed Passivation,Polished,Bright,Black,PVDF Coated
Steel Grade:
Q195,Q215,Q235,Q215B,Q235B,RHB335,HRB400,200 Series,300 Series,400 Series,600 Series,SS400-SS490,10#,20#,A53(A,B)
Certification:
ISO,SGS,BV,IBR,RoHS,CE,API,BSI,UL
Net Weight:
as required
Length:
as required
Thickness:
as required

Features:
1) Material: Grade A, B, AH32, AH36, D, DH32, DH36, SS400, SS540, S235JR/JO/J2, S275JR/JO/J2, S355JR/JO/J2
With ABS, BV, CCS, DNV, GL, LR, NK, RINA and CE marks

2) Standard: GB, ASTM, JIS
3) Size: 23 X 23mm to 200 X 200mm
4) Length: As requested
5) Other dimensions or shapes are available

Alloy steel International Table:

Mark

ChinaUSAUKJapanFranceGermany
structural alloy steelGBASTMBSJISNFDIN
20Mn213201321150M19SMn420
20Mn5
30Mn21330150M28SMn433H32M530Mn5
35Mn21335150M36SMn438(H)35M536Mn5
40Mn21340
SMn44340M5
45Mn21345
SMn443
46Mn7
50Mn2


~55M5
20MnV



20MnV6
35SiMn
En46

37MnSi5
42SiMn
En46

46MnSi4
40BTS14B35



45B50B46H



40MnB50B40



45MnB50B44



15Cr5115523M15SCr415(H)12C315Cr3
20Cr5120527A19SCr420H18C320Cr4
30Cr5130530A30SCr430
28Cr4
35Cr5132530A36SCr430(H)32C434Cr4
40Cr5140520M40SCr44042C441Cr4
45Cr51455147534A99SCr44545C4
38CrSi










12CrMo
620Cr.B
12CD413CrMo44
15CrMoA-387Cr . B1653STC4212CD416CrMo44



STT42




STB42

20CrMo41194118CDS12SCT4218CD420CrMo44


CDS110STT42




STB42

25CrMo4125En20A
25CD425CrMo4
30CrMo41301717COS110SCM42030CD4
42CrMo4140708A42
42CD442CrMo4


708M40


35CrMo4135708A37SCM335CD434CrMo4
12CrMoV




12Cr1MoV



13CrMoV42
25Cr2Mo1VA




20CrV6120


22CrV4
40CrV6140


42CrV6
50CrVA6150735A30SUP1050CV450CrV4
15CrMn




20CrMn5152527A60SUP9

30CrMnSiA




40CrNi3140H640M40SNC236
40NiCr6
20CrNi3A3316

20NC1120NiCr14
30CrNi3A3325653M31SNC631H
28NiCr10

3330
SNC631

20MnMoB80B20



38CrMoAlA
905M39SACM64540CAD6.1241CrAlMo07
40CrNiMoA4340871M40SNCM439
40NiCrMo22

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Special Steel A36/A992 Round Solid Steel Bar

Shipping 

1. FedEx/DHL/UPS/TNT for samples, Door-to-Door;

2. By Air or by Sea for batch goods, for FCL; Airport/ Port receiving;

3. Customers specifying freight forwarders or negotiable shipping methods!

Delivery Time: 3-7 days for samples; 5-25 days for batch goods.

 

Payment Terms

1.Payment: T/T, L/C, Western Union, MoneyGram,PayPal; 30% deposits; 70% balance before delivery.

2.MOQ: 1pcs

3.Warranty : 3 years

4.Package Informations: 1) EXPORT, In 20 feet (GW 25 ton) or 40 feet Container (GW 25 ton)

                                        2)as customer's requirement


Why choose us? 

(1) The leading exporter in China special steel industry.       

(2) Large stocks for various sizes, fast delivery date.       

(3) Good business relationship with China famous factories.       

(4) More than 7 years steel exporting experience.       

(5) Good after-sales service guarantee. 


Q:What are the applications of special steel in the defense sector?
Special steel has numerous applications in the defense sector due to its exceptional strength, durability, and resistance to extreme conditions. It is commonly used to manufacture various components of weapons and military vehicles, such as gun barrels, armor plates, missile casings, and aircraft landing gear. Additionally, special steel is utilized in the construction of submarines, warships, and military infrastructure due to its corrosion resistance properties. Overall, special steel plays a crucial role in enhancing the performance, efficiency, and safety of defense equipment and infrastructure.
Q:What are the different methods of surface etching for special steel?
Some of the different methods of surface etching for special steel include chemical etching, electrochemical etching, and laser etching. Chemical etching involves using a specific chemical solution or acid to selectively remove material from the surface of the steel, creating a desired pattern or design. Electrochemical etching, also known as electroetching or electrolytic etching, utilizes an electric current to dissolve the surface of the steel and create the desired etched pattern. Laser etching, on the other hand, employs a high-powered laser beam to remove material from the surface of the steel, resulting in a precise and intricate etched design. Each method has its own advantages and suitability depending on the specific requirements and characteristics of the special steel being etched.
Q:How does special steel contribute to the manufacturing of shafts and axles?
Special steel plays a crucial role in the manufacturing of shafts and axles due to its unique properties and characteristics. Special steel is specifically designed and engineered to have superior strength, durability, and resistance to wear and tear, making it an ideal material for these critical components in the automotive and machinery industries. One of the main advantages of special steel is its high tensile strength. Shafts and axles are subjected to significant loads and torque, especially in heavy-duty applications. Special steel, with its exceptional strength, allows these components to withstand these forces without deformation, ensuring optimal performance and longevity. Furthermore, special steel offers excellent fatigue resistance, which is essential for parts that undergo cyclic loading, such as shafts and axles. Fatigue failure is a common issue in these components, particularly in high-speed rotating applications. Special steel's ability to resist fatigue helps prevent fractures and extends the lifespan of shafts and axles, minimizing downtime and maintenance costs. Another critical property of special steel is its high hardness. This hardness provides superior wear resistance, enabling shafts and axles to withstand the abrasive forces encountered during operation. By reducing wear and minimizing surface damage, special steel ensures the continued efficiency and reliability of these components. Moreover, special steel can be heat-treated to enhance its mechanical properties further. Through processes like quenching and tempering, the steel's hardness, toughness, and strength can be selectively modified to suit specific shaft and axle applications. This flexibility allows manufacturers to tailor the material properties to meet the required specifications and performance standards. In summary, special steel significantly contributes to the manufacturing of shafts and axles by providing exceptional strength, fatigue resistance, hardness, and wear resistance. These properties ensure the durability, reliability, and optimal performance of these critical components in various industries, ultimately leading to safer and more efficient machinery and vehicles.
Q:What are the different methods for improving the corrosion resistance of stainless special steel?
There are several methods for improving the corrosion resistance of stainless special steel. Some of the common methods include alloying the steel with elements such as chromium, nickel, and molybdenum, which enhance its resistance to corrosion. Another method is passivation, which involves treating the steel with an acid solution to remove any surface contaminants and create a protective oxide layer. Coating the steel with materials like paint, powder coating, or electroplating can also improve its corrosion resistance. Additionally, proper cleaning and maintenance practices, such as regular removal of dirt and debris, can help prevent corrosion and maintain the steel's resistance over time.
Q:What are the different machining methods for special steel?
There are several machining methods for special steel, including turning, milling, drilling, grinding, and broaching. Each method is chosen based on the specific requirements of the project, such as the desired shape, surface finish, and dimensional accuracy. These machining methods allow for the precise shaping and finishing of special steel to meet the desired specifications and applications.
Q:What is the purpose of annealing in special steel production?
The aim of annealing in the production of special steel is to enhance the mechanical characteristics and overall quality of the steel. Annealing involves subjecting the steel to a particular temperature and gradually cooling it, typically in a controlled setting. This procedure aids in relieving any internal stresses or strains that might have developed during previous manufacturing processes like rolling or forging. During the annealing process, the microstructure of the steel goes through changes, resulting in a more refined and uniform material. The process allows for the redistribution of atoms, thereby eliminating defects, improving grain structure, and enhancing the steel's toughness, ductility, and machinability. Furthermore, annealing helps in reducing the hardness of the steel, rendering it easier to work with and shape. It also enhances the steel's resistance to cracking and increases its ability to withstand corrosion and other environmental factors. In certain special steel alloys, annealing can also be employed to achieve desired physical properties such as increased hardness or improved magnetic characteristics. Ultimately, the objective of annealing in the production of special steel is to optimize the steel's properties and ensure it meets the specific requirements of its intended application, be it in industries such as automotive, aerospace, or manufacturing.
Q:What is the role of special steel in the defense industry?
Special steel plays a critical role in the defense industry due to its unique properties and capabilities. One of the primary functions of special steel in defense is to provide strength and durability to various components and structures of military equipment, such as tanks, armored vehicles, naval vessels, and aircraft. These steels are designed to withstand extreme conditions, including high impact and ballistic resistance, making them essential for ensuring the safety and protection of military personnel. Another significant role of special steel in the defense industry is its contribution to the production of cutting-edge weaponry. Special steel alloys are used to manufacture firearms, missiles, and artillery systems, providing the necessary strength, hardness, and corrosion resistance required for such applications. These steels allow for the precise manufacturing of complex weapon systems, ultimately enhancing their performance, accuracy, and reliability. Moreover, special steel also plays a vital role in the defense industry by enabling the development of advanced communication and electronics technologies. Steel alloys with specific magnetic properties are utilized in the production of radar systems, satellite components, and other electronic devices critical for military surveillance, intelligence, and communication purposes. These steels enable the efficient transmission and reception of signals, enhancing the overall capabilities of defense systems. In summary, special steel is indispensable in the defense industry due to its strength, durability, and unique properties. It provides the necessary foundation for the construction of military equipment, enhances the performance of weapons, and enables the development of advanced communication and electronics technologies. By utilizing special steel, the defense industry can ensure the safety, effectiveness, and technological superiority of military operations.
Q:How does special steel contribute to the performance of cutting tools?
Special steel contributes to the performance of cutting tools in several ways. Firstly, it offers exceptional hardness and strength, enabling the cutting tool to withstand the high forces and pressures encountered during cutting. This durability ensures that the tool remains sharp for longer periods, reducing the need for frequent replacements. Additionally, special steel also possesses excellent heat resistance, preventing the tool from overheating and maintaining its cutting ability. Moreover, special steel can have specific alloying elements that enhance wear resistance, corrosion resistance, and toughness, further improving the performance and lifespan of cutting tools. Overall, the use of special steel in cutting tools enhances their efficiency, reliability, and longevity, resulting in improved cutting precision and reduced downtime.
Q:What are the main applications of special steel in the agricultural sector?
Special steel has various applications in the agricultural sector, primarily in the manufacturing of machinery and equipment. It is used to develop durable and robust components such as plows, tillers, cultivators, harvesters, and irrigation systems. Special steel's high strength and resistance to corrosion make it suitable for withstanding the demanding conditions encountered in agricultural operations, ensuring efficient and reliable performance of machinery in the field.
Q:How does special steel contribute to national security?
Special steel contributes to national security in several ways. Firstly, it is used in the manufacturing of military equipment and weapons. Special steel possesses high strength, toughness, and resistance to corrosion, making it ideal for producing tanks, armored vehicles, submarines, and aircraft carriers. The use of special steel in military applications ensures the durability and reliability of these crucial defense systems, ultimately enhancing national security. Secondly, special steel is used in the construction of critical infrastructure. It is employed in the fabrication of bridges, tunnels, and buildings that are key to the functioning and security of a nation. Special steel's superior strength and resistance to extreme conditions make it an essential material for structures that need to withstand natural disasters, terrorist attacks, or other security threats. By utilizing special steel in infrastructure projects, a nation can bolster its security and protect its citizens. Furthermore, special steel plays a vital role in the energy sector, particularly in nuclear power plants. Special steel alloys are used in the construction of reactor vessels and other components that are subjected to high temperatures and pressures. The use of special steel ensures the integrity and safety of these critical facilities, preventing potential nuclear accidents that could pose a significant threat to national security. Lastly, special steel contributes to national security by supporting the defense industry and fostering technological advancements. The research and development of special steel alloys often lead to breakthroughs in material engineering, which can have broader applications beyond defense. These advancements can drive innovation in other sectors, such as aerospace, automotive, and energy, thereby enhancing a nation's overall technological capabilities and economic competitiveness. In conclusion, special steel's contribution to national security is multifaceted. Its use in military equipment, critical infrastructure, nuclear power plants, and technological advancements all play a crucial role in safeguarding a nation's interests, protecting its citizens, and maintaining its strategic advantage in an increasingly volatile world.

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