• carbon hot rolled steel plate structural mild steel plate System 1
  • carbon hot rolled steel plate structural mild steel plate System 2
carbon hot rolled steel plate structural mild steel plate

carbon hot rolled steel plate structural mild steel plate

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Quick Details

  • Standard:AISI, ASTM, GB, JIS

  • Grade:Q195,Q235,SS400,A36,Q345B

  • Thickness:1.5mm-200mm

  • Place of Origin:Tianjin, China (Mainland)

  • Brand Name:Zhenxiang-steel plate

  • Model Number:1.5mm-200mm steel plate

  • Type:Steel Plate

  • Technique:Hot Rolled

  • Application:Ship Plate

  • Special Use:High-strength Steel Plate

  • Width:600mm-3200mm

  • Length:any length

  • Standard:AISI, ASTM, BS, DIN, GB, JIS

  • Grade:Q195,Q235,SS400,A36,Q345B

  • Technique:Hot Rolled

  • MOQ:100 tons

  • Delivery Detail:25 days after receive payment

Packaging & Delivery

Packaging Details:steel plate suitable for exported packing in coil coil weight arround 2 mt
Delivery Detail:10-25 days after receive payment

Specifications

Steel Plate
1.Large stock, low price, high quality
2.Dimension:8-100
3.Length:1000-12000
4.Grade:Q235,SS400,A36,Q345

carbon hot rolled steel plate structural mild steel plate

Q:What are the different alloying elements used in steel sheets?
To enhance the properties and performance of steel sheets, various alloying elements are utilized. Some commonly employed alloying elements are as follows: 1. Carbon: Being the most crucial alloying element, carbon imparts strength and hardness to the steel. It also enhances its heat-treatability, making it suitable for diverse applications. 2. Manganese: For improved mechanical properties like strength and toughness, manganese is frequently added to steel sheets. It also aids in reducing brittleness. 3. Chromium: Steel sheets are enriched with chromium to augment their corrosion resistance. By forming a thin protective layer on the steel's surface, it prevents rusting and corrosion. 4. Nickel: Nickel is commonly incorporated into steel sheets to enhance their toughness and impact resistance. It also improves their ability to withstand extreme temperatures, rendering them suitable for high-temperature applications. 5. Silicon: The addition of silicon to steel sheets improves their strength and hardness. It also aids in deoxidizing the steel during the manufacturing process. 6. Vanadium: Vanadium serves as an alloying element in steel sheets to enhance strength, toughness, and heat resistance. It also refines the grain structure of the steel, making it more uniform and fine. 7. Copper: Copper is included in steel sheets to enhance corrosion resistance and thermal conductivity. It also improves the weldability and brazability of the steel. 8. Tungsten: Tungsten is utilized as an alloying element in steel sheets to enhance hardness, strength, and wear resistance. In small quantities, it is often added to improve cutting and drilling capabilities. These examples highlight just a few of the alloying elements commonly employed in steel sheets. The selection of alloying elements depends on the specific requirements of the application and the desired properties of the steel. Different combinations and concentrations of these elements can be employed to achieve a wide range of characteristics in steel sheets.
Q:What are the different hardness levels available for steel sheets?
There are various hardness levels available for steel sheets, typically classified using the Rockwell hardness scale. Some common hardness levels for steel sheets include HRC (Rockwell C), HRB (Rockwell B), HV (Vickers hardness), and HRA (Rockwell A). These different hardness levels determine the steel sheet's resistance to indentation or deformation, allowing it to be suitable for specific applications.
Q:Can the steel sheets be used for medical equipment?
Indeed, medical equipment can make use of steel sheets. Steel's robustness, longevity, and resistance to corrosion render it a prevalent substance in the medical sector. It permits the production of an array of medical equipment, including surgical tools, hospital beds, medical trolleys, and diagnostic apparatus. Steel sheets can be conveniently shaped and crafted into diverse forms and dimensions, thereby catering to distinct requirements of medical equipment. Moreover, steel's hygienic attributes, facilitating easy sterilization, establish it as a fitting material for medical equipment necessitating regular sanitization.
Q:What are the dimensions of the steel sheets?
The dimensions of the steel sheets can vary depending on the specific requirements or intended use. Steel sheets are commonly available in standard sizes such as 4 feet by 8 feet or 1 meter by 2 meters. However, they can also be customized to different dimensions based on the needs of the project. It is important to specify the desired length, width, and thickness when ordering steel sheets to ensure they meet the required specifications.
Q:How are steel sheets measured and classified?
Steel sheets are typically measured and classified based on their thickness, which is commonly referred to as gauge. The gauge of steel sheets is determined by measuring the thickness of the sheet in terms of its weight per square foot or meter. The higher the gauge number, the thinner the sheet. Steel sheets are further classified based on their composition, finish, and intended application, such as hot-rolled, cold-rolled, galvanized, or stainless steel sheets.
Q:Are the steel sheets suitable for outdoor signage?
Indeed, outdoor signage can indeed be made from steel sheets. Steel is renowned for its robustness, endurance, and ability to resist various weather conditions. It is capable of enduring severe outdoor environments, such as extreme temperatures, rain, wind, and sunlight, without distorting or deteriorating. Modifying the thickness of the steel sheets can provide stability and durability to the signage, depending on its size and design. Furthermore, steel sheets can be effortlessly personalized and painted to align with the desired visual appeal, making them a favored option for outdoor signage ventures.
Q:Are steel sheets suitable for elevator shafts?
Yes, steel sheets are suitable for elevator shafts. Steel is a durable and strong material that can withstand the structural requirements and load-bearing capacity needed for elevator shafts. Additionally, steel sheets can be customized and fabricated to fit the specific dimensions and design of the elevator shaft.
Q:Can steel sheets be bent or formed into different shapes?
Yes, steel sheets can be bent or formed into different shapes through various processes such as heating, rolling, or using specialized machinery like press brakes.
Q:What are the different types of steel sheet surface coatings for corrosion resistance?
There are several types of steel sheet surface coatings available for corrosion resistance, including galvanized coatings, zinc-rich coatings, aluminum coatings, and organic coatings such as paint or epoxy. Each coating offers unique benefits and application suitability depending on the specific requirements and environmental conditions.
Q:What is the minimum thickness of a steel sheet?
The minimum thickness of a steel sheet relies on a variety of factors, including the specific grade of steel used, the intended application, and the manufacturing process. However, steel sheets can generally be manufactured with thicknesses ranging from 0.4 millimeters (0.016 inches) to several millimeters. It should be noted that thinner steel sheets are typically utilized for flexible and lightweight applications, such as automotive body panels or electrical enclosures, while thicker sheets are employed for structural purposes, like construction materials or heavy machinery components. Ultimately, the specific needs of the project or application determine the minimum thickness of the steel sheet.

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