• Galvalume Steel Coil/Gl/Zinc Aluminized Steel/Color Steel Rolled System 1
  • Galvalume Steel Coil/Gl/Zinc Aluminized Steel/Color Steel Rolled System 2
  • Galvalume Steel Coil/Gl/Zinc Aluminized Steel/Color Steel Rolled System 3
Galvalume Steel Coil/Gl/Zinc Aluminized Steel/Color Steel Rolled

Galvalume Steel Coil/Gl/Zinc Aluminized Steel/Color Steel Rolled

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
20 m.t.
Supply Capability:
20000 m.t./month

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Product Description


Specification:

Product Name:

Galvalume steel coil/GL/Zinc Aluminized steel


Standard:
JIS G3302-1998/EN10142/ASTM A653/ASTM A792/ AISI/BS/ DIN/GB 
Price:US $600-800 / Metric Ton
Trade Terms:FOB/CNF/CIF
Supply Ability:30000 Metric Ton monthly
Packing:standard exporting packing or at buyer's requirement
Payment Terms:L/C,T/T
Delivery time:Within 15-30days after we receive deposit or L/C at sight
 Specifications:Brand Name :CNBM
Thickness:0.14-0.6mm
Type:coil/sheet/strips
Width:600- 1250mm
Length:
Zinc Coating:40g-150g/
Coil ID :508mm or 601mm
Coil Weight :3-8MT
Place of Origin:China Tianjing,shanghai
Standard: AISI, ASTM, BS, DIN, GB, JIS
Technique:Cold Rolled
Surface Treatment:Anti-finger 


Application
1. Architecture Roofs and outside walls of civilian and industrial buildings, garage doors, fencings and window blinds
2. Appliances Industry Outer clad sheets for washing machine, refrigerator, television, air conditioner and ventilation system, explosion-proof strip, solar water heater and appliance parts
3. Auto Industry Muffler, heat shields of exhaust pipe and catalytic converter, auto parts & accessories under the frame, signboard in highway
4. Industrial Instruments Electric control cabinet, industrial refrigeration equipment, automatic vending machine
 
Service
1.MOQ:25 ton.
2.Delivery time;15-30days
3.Payment:30% deposite, 70% in L/C before delivery or T/T
4.We can guarantee 100% inspeciton before the shipment
5.We can 100% supply MTC.

Q&A What is your acceptable payment term?   

ANSWER: TT,LC,OA etc

Q:Can steel coils be painted?
Yes, steel coils can be painted. Painting steel coils is a common practice to enhance their appearance, protect them from corrosion, and provide additional durability. The coils are typically cleaned, prepped, and coated with a primer before applying the desired paint color.
Q:I've created something but it's a huge secret. Anyways I need to know everything and anything about steel. Like the iron steel. ANYTHING AND EVERYTHING. Best answer goes to the person with the most correct information. Please this is really important.
If you want to know everything about steel, there's no way you're going to get an answer on Yahoo that is comprehensive enough. What you want to do is get some books on steel metallurgy, engineering properties of materials, and maybe machine design depending on your application. Topics will include molecular structure, material properties, alloying, stress and strain, work hardening, creep, computing damage and lifetime cycles, corrosion, toughness vs hardness, heat treating, and a ton of others. If you want to sharpen steel, that is a whole topic in itself concerning different blade profiles and their sharpness, edge holding, ease of sharpening, type of grind etc.
Q:How are steel coils used in the production of steel framing systems?
Steel coils are used in the production of steel framing systems as they are unrolled and fed into a machine that shapes and cuts the steel into the desired lengths and profiles. These coils provide a continuous supply of high-quality steel, allowing for efficient and precise manufacturing of steel framing components, which are then assembled to create sturdy and durable steel structures.
Q:What are the different methods of corrosion protection for steel coils?
There are several different methods of corrosion protection for steel coils, each with its own advantages and disadvantages. 1. Coating: One of the most common methods is to apply a protective coating to the steel coils. This can be done through a variety of techniques such as hot-dip galvanizing, electroplating, or painting. Coatings provide a barrier between the steel surface and the corrosive environment, preventing direct contact and thus reducing the risk of corrosion. 2. VCI (Vapor Corrosion Inhibitor): Another method is the use of VCI materials, which release chemicals that inhibit corrosion when in contact with the steel surface. These materials can be applied as coatings, films, or papers, and are particularly useful for long-term storage or shipping of steel coils. 3. Cathodic Protection: This method involves the use of sacrificial anodes or impressed currents to protect the steel coils. Sacrificial anodes, typically made of zinc or aluminum, are connected to the steel surface. These anodes corrode instead of the steel, sacrificing themselves to protect the coils. Impressed current systems use a direct electrical current to prevent corrosion on the steel surface. 4. Wrapping and Packaging: Proper wrapping and packaging of steel coils can also provide corrosion protection. This includes using moisture barrier films, desiccants, or absorbent materials to reduce the moisture content around the coils. Additionally, ensuring adequate ventilation and avoiding contact with other corrosive substances can help prevent corrosion. 5. Environmental Control: Controlling the environment in which the steel coils are stored or used is crucial for corrosion protection. This may involve maintaining proper humidity levels, controlling temperature, and managing air quality. By minimizing exposure to corrosive elements such as moisture, salts, or chemicals, the risk of corrosion can be significantly reduced. It is important to note that the choice of corrosion protection method depends on various factors such as the specific application, budget constraints, and desired lifespan of the steel coils. A combination of these methods may also be used to provide enhanced protection against corrosion.
Q:What are the challenges in welding steel coils?
In order to guarantee successful and high-quality welds, it is necessary to address various challenges encountered when welding steel coils. One primary challenge involves achieving appropriate joint preparation. Steel coils often exhibit different surface conditions, such as rust, scale, or oil, which must be cleaned or eliminated before welding. This demands extensive cleaning and preparation to establish a clean and reliable welding surface. Another challenge lies in controlling the heat input. Due to the thin nature of steel coils, excessive heat can result in distortion, warping, or even burn-through. Welding operators must exercise careful control over the heat input to prevent such issues and uphold the integrity of the coils. Additionally, the presence of residual stresses poses a significant difficulty. Steel coils typically endure various stresses during the manufacturing, transportation, and handling processes, which can lead to distortion or cracking during welding. To mitigate these stresses and prevent potential defects, sufficient preheating and post-weld heat treatment may be necessary. Ensuring proper weld penetration is also of utmost importance. Steel coils often possess varying thicknesses, making it challenging to achieve consistent and adequate weld penetration throughout the joint. Welding operators must select appropriate welding parameters and techniques to guarantee complete fusion and a robust bond. Lastly, the size and weight of steel coils can create logistical challenges during welding. Specialized equipment and precise positioning are required to handle large and heavy coils, ensuring safe and efficient welding. Additionally, the length of the coils may necessitate multiple passes or continuous welding, demanding skilled operators and meticulous coordination. In conclusion, welding steel coils necessitates careful attention to joint preparation, heat control, stress relief, weld penetration, and logistical considerations. Overcoming these challenges guarantees the production of welded steel coils that are of high quality and durability.
Q:Can steel coils be used in the production of packaging materials?
Yes, steel coils can be used in the production of packaging materials. Steel coils are commonly used to manufacture metal packaging materials such as cans, containers, and drums. The strength and durability of steel make it an excellent choice for packaging materials that require protection and stability. Additionally, steel coils can be easily shaped and formed to meet specific packaging requirements, making them versatile for various applications in the packaging industry.
Q:How are steel coils used in the manufacturing of fasteners?
Steel coils are used in the manufacturing of fasteners as they provide a continuous and reliable source of raw material. These coils are typically processed through a series of steps, including cutting, shaping, and forming, to create various types of fasteners such as bolts, screws, and nails. The high strength and durability of steel make it an ideal material for fasteners, ensuring their performance and longevity in a wide range of applications.
Q:I love the design! It looks great, is safe, and you can see through it just fine on camera. Do you like it?BQ: Old Blue WWF Steel Cage or the newer fence type steel cage?
TNA steel cage is alot more better i agree with you its safe and can see through it just fine on camera.. BQ: i think newer fence type because it does slow down a match and its brutal.. Old blue cage is just a bit too wide that someone can easily jump two or three squares up and finsihed, nah its too quickly finishing a match into that cage.
Q:What are the different types of steel coil handling equipment?
Some different types of steel coil handling equipment include coil lifters, coil tongs, coil grabs, coil hooks, coil transfer cars, and coil upenders. These equipment are designed to safely lift, transport, and rotate steel coils during various industrial processes.
Q:My boyfriend says he has balls of steel.
it is extra of a euphemism than actuality. somewhat the testicles are somewhat gentle and may even herniate or rupture; it somewhat is why they cover those balls of steel with athletic cups earlier they actually take the sector.

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