Hot Rolled Stainless Steel Coil 430 Annealing and Pickling No.1 Finish
- Loading Port:
- Guangzhou
- Payment Terms:
- TT OR LC
- Min Order Qty:
- -
- Supply Capability:
- 5000 m.t./month
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Grade: | 400 Series | Standard: | JIS,AISI,ASTM,GB,DIN,EN | Length: | Coil |
Thickness: | 2.5mm,3.0mm, 4.0mm | Width: | 1000mm, 1219mm, 1240mm, 1500mm | Place of Origin: | China Mainland |
Brand Name: | CNBM | Model Number: | 430 | Type: | Coil |
Application: | Element Supports,Stove trim rings,Fasteners,Chimney Liners | Certification: | ISO | Certificate: | ISO9001:2008 |
Surface: | No.1 | Technique: | Hot Rolled | Experience: | About 20 years |
Stock Information: | In stock | Weight per coil: | 18-22 tons | Tolerance: | +/-0.1mm or less |
Model No.: | 430 |
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Hot Rolled Stainless Steel Coil 430 Annealing and Pickling No.1 Finish
Article | Hot Rolled Stainless Steel Coil 430 |
Grade | 400 series |
Specification | 1m, 1.2m, 1.5m |
Surface | No.1 |
Type | Sheet / Coil |
Width | 1000mm, 1219mm, 1240mm, 1500mm |
Thickness | 2.5mm,3.0mm, 4.0mm |
Brand name | CNBM |
Parking | seaworthy wooden pallets or wooden cases,in 20' or 40' container or as per customers' requirements |
Payment | 30% in advance,70% after shipping, or L/C at sight |
Delivery Time | Stock materials, within7-15 days after received the deposit of T/T or L/C |
Hot Rolled Stainless Steel Coil 430 Annealing and Pickling No.1 Finish
Grade | C | Cr | Si | Mn | Mo | Ni | P | S |
| Max |
| Max | Max |
| Max | Max | Max |
430 | 0.12 | 16.0-18.0 | 0.75 | 1.00 | ----- | 0.6 | 0.04 | 0.03 |
- Q:Can stainless steel strips be plated or coated with another metal?
- Yes, stainless steel strips can be plated or coated with another metal. The process of plating or coating stainless steel involves depositing a layer of another metal onto the surface of the stainless steel strip. This can be done for various reasons such as enhancing the appearance, providing corrosion resistance, improving hardness or lubricity, or for electrical conductivity. The plating or coating can be achieved through different methods such as electroplating, electroless plating, physical vapor deposition (PVD), or chemical vapor deposition (CVD). Each method has its own advantages and limitations, and the choice of plating or coating method depends on the desired properties and application requirements. It is important to consider factors such as compatibility between the stainless steel and the plating or coating material, thickness of the plating or coating layer, and the specific environmental conditions the stainless steel strips will be exposed to. Overall, plating or coating stainless steel strips with another metal is a common practice in various industries to achieve desired functional or decorative properties.
- Q:Can stainless steel strips be used in the electronics manufacturing industry?
- Yes, stainless steel strips can indeed be used in the electronics manufacturing industry. Stainless steel is a versatile material known for its strength, durability, and resistance to corrosion. These properties make it an ideal choice for various applications in the electronics industry. Stainless steel strips are commonly used for the fabrication of electronic components, such as connectors, terminals, and shielding. The strips can be easily shaped and formed into specific sizes and shapes, allowing for precise manufacturing of intricate electronic parts. Furthermore, stainless steel's resistance to corrosion is crucial in electronic devices that are exposed to harsh environments or moisture. It ensures the longevity and reliability of the components, preventing premature failure. Moreover, stainless steel strips can be used in the production of electronic enclosures, cabinets, and frames. These structures provide protection and support for delicate electronic circuitry, effectively shielding it from external factors like electromagnetic interference or physical damage. In addition to its mechanical properties, stainless steel also offers excellent thermal conductivity. This feature is advantageous in the electronics industry as it helps dissipate heat generated by electronic devices, ensuring their optimal performance and preventing overheating. Overall, stainless steel strips are a valuable material in the electronics manufacturing industry due to their strength, durability, corrosion resistance, and thermal conductivity. They play a crucial role in the production of electronic components, enclosures, and other necessary structures, contributing to the reliability and performance of electronic devices.
- Q:Can stainless steel strips be etched or engraved?
- Yes, stainless steel strips can be etched or engraved using various techniques such as chemical etching, laser engraving, or mechanical engraving.
- Q:What are the different surface finishes available for stainless steel strips?
- There are several surface finishes available for stainless steel strips, including mill finish, brushed finish, mirror finish, satin finish, and patterned finish.
- Q:What are the storage and handling recommendations for 111 stainless steel strips?
- The storage and handling recommendations for 111 stainless steel strips include storing them in a clean, dry, and well-ventilated area to prevent moisture and corrosion. It is advisable to stack them on pallets or racks to avoid contact with the ground and minimize the risk of damage. Additionally, handling should be done with clean gloves or tools to prevent contamination and scratches on the surface. Regular inspection for any signs of damage or corrosion is also recommended.
- Q:Are stainless steel strips suitable for pharmaceutical equipment?
- Indeed, pharmaceutical equipment finds stainless steel strips to be a fitting choice. Stainless steel, widely employed in the pharmaceutical sector, boasts exceptional resistance to corrosion, durability, and hygienic qualities. It proves effortless to clean, impervious to bacterial proliferation, and capable of enduring the elevated temperatures and harsh chemicals typically utilized in pharmaceutical procedures. Stainless steel strips serve multiple purposes in pharmaceutical equipment, encompassing the production vessels, storage tanks, mixing apparatus, conveyors, and packaging machinery. Thanks to its robustness and dependability, this material proves suitable for upholding the necessary integrity and cleanliness within pharmaceutical facilities, thus ensuring the safety and quality of products.
- Q:What is the electrical resistivity of stainless steel strips?
- The electrical resistivity of stainless steel strips can vary depending on the specific grade and composition of the stainless steel. However, typically, stainless steel strips have a relatively high electrical resistivity compared to other metals, ranging from 70 to 80 micro-ohm centimeters.
- Q:What are the factors affecting the formability of 111 stainless steel strips?
- There are several factors that can affect the formability of 111 stainless steel strips. These include the composition and microstructure of the steel, the thickness of the strip, the temperature at which forming is carried out, the speed and force of the forming process, and the presence of any lubricants or coatings. Additionally, the level of strain hardening and the presence of any impurities or defects in the steel can also impact its formability.
- Q:Can stainless steel strips be painted or coated?
- Yes, stainless steel strips can be painted or coated. However, it is important to properly prepare the surface before applying any paint or coating to ensure adhesion and durability. This typically involves cleaning the stainless steel thoroughly and using a primer or etching solution to promote better bonding. After the surface is prepared, various types of paints or coatings can be applied, such as epoxy, acrylic, or enamel. It is important to select a paint or coating that is specifically formulated for use on stainless steel to ensure the best results. Additionally, proper drying and curing times should be followed according to the manufacturer's instructions to achieve the desired finish and durability.
- Q:What are the common methods of cutting stainless steel strips?
- Various techniques are employed to cut stainless steel strips. 1. Shearing: A sharp blade is utilized to cut through the steel strip. This method is commonly employed for thinner strips, delivering a clean and precise cut. Shearing machines or hydraulic shears are commonly utilized in this process. 2. Laser Cutting: A focused laser beam is employed to precisely cut the stainless steel strip. This technique is suitable for both thin and thick strips, allowing for intricate designs and shapes to be achieved. Laser cutting machines are often computer-controlled, ensuring accuracy and repeatability. 3. Plasma Cutting: This method involves using a high-temperature plasma arc to melt through the metal and create a cut. It is commonly used to cut stainless steel strips of various thicknesses. Plasma cutting machines offer versatility in cutting capabilities. 4. Water Jet Cutting: A high-pressure jet of water mixed with an abrasive material is used to cut through the stainless steel strip. This technique is suitable for different thicknesses and produces precise cuts without heat-affected zones. Water jet cutting machines are often computer-controlled, making them ideal for complex shapes and designs. 5. Abrasive Cutting: Abrasive discs or wheels are employed to grind through the stainless steel strip. This technique is commonly used for thicker strips and can be performed manually or with the assistance of power tools like angle grinders. When selecting the appropriate cutting method, it is crucial to consider the specific requirements of the project, including the thickness and design of the stainless steel strip. Furthermore, safety precautions and appropriate equipment should always be utilized to ensure a successful and safe outcome.
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Hot Rolled Stainless Steel Coil 430 Annealing and Pickling No.1 Finish
- Loading Port:
- Guangzhou
- Payment Terms:
- TT OR LC
- Min Order Qty:
- -
- Supply Capability:
- 5000 m.t./month
OKorder Service Pledge
OKorder Financial Service
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