• PRE-PAINTED GALVANISED STEEL IN COIL System 1
  • PRE-PAINTED GALVANISED STEEL IN COIL System 2
  • PRE-PAINTED GALVANISED STEEL IN COIL System 3
PRE-PAINTED GALVANISED STEEL IN COIL

PRE-PAINTED GALVANISED STEEL IN COIL

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Product Description:

Prepainted galvanized color coated PPGI steel:

Thickness0.12-1.2mm
Width:700-1250mm
Material:SGCC,SGCD,SECC,SECD,DX51D+Z
Zinc coating:30-180G/M2
Surface Structure:galvanized ,zero spangle, regular spangle or normal spangle
COLOR:RAL numberor sample colour
Coating:

Topside: 5micron primer +15-20microns polyester

Backside: 5-8microns primer epoxy.

Surface treatment:  chromated and oiled, chromated and non-oiled

II Main characteristics :

1.strong corrosion resistance

2.surface quality

3.conducive to deep processing,such as corrugated steel sheet 4.economy and practicality

III Applications:

Household Appliance:

1.Refrigerator shutter &side panels,  Washer,  Freezers, Air conditions,
2.Rice Cooker, Microwave Ovens,  Water Heaters, Sterilization Cabinets, Range Hoods
3.Computer Panels , DVD/DVB  panels, TV back panel etc.

Q: I just purchased this Benchmade knife with m390 steel blade and it cost me a fortune but I wanted to know if this new steel is a tool steel. what classifies a tool steel. M390 = 1.9 carbon, 20. chromium, .30 manganese, 1. molybdenum, .60silicon, .60 tugsten, 4. vanadium at 60-62 HRC
M390 Steel
Q: How many types of steel buildings are there?
There are a number of designs which can be used to create different types of steel buildings as per the demands of the buyer or an investor. he various kinds of that can be constructed using steel are Homes, Hangars, Agriculture and Farm buildings for storage, Garages and Storage sheds, Open air sheds,, Barns, Arenas and stadiums, Automotive buildings with overhead doors and flexible framed openings, Religious buildings such as Churches and Temples, etc.
Q: How are steel coils used in the manufacturing of steering systems?
Steel coils are commonly used in the manufacturing of steering systems as they provide the necessary strength and durability required for various components such as steering racks, tie rods, and control arms. The steel coils are typically shaped, formed, and processed to create these parts, ensuring stability, precision, and reliability in steering mechanisms.
Q: Ok, I have motorcycle classes and im afraid that I wont feel the gear shifter when shifting. So I want to make the boot softer from the toes where the steel is at so i can feel the gear shift with my toes. When i walk and bump into something by accident with my boots I dont feel anything I almost dont notice it. So I think i will be a problem since I wont be able to feel anything.
You're not from this world, are you?
Q: how is stainless steel made? what are the things used in making it?
There are 3 basic stainless steels. The Martinsitic, the ferritic, and the Austinistic. The spelling may be wrong on all of them. (Got out of school in 1966 with my metallurgy in 1965. The Ferritic is magnetic and has some resistance to corrosion but the Martinsitic is much more resistant to corrosion. The Austinitic stainless is very resistant to corrosion. The differences are the amount of Chrome and Nickel in the batches. The Austinitic has an 18/8 ratio of Chromium and Nickel with the rest Iron and minor ingredients. The carbon content is very important and these steels are often made in small batches with close monitoring of composition and carbon content. Scrap metals are frequently used with the chrome and nickel being added as carefully selected scrap or even fresh crude stocks. Electric melting is frequent to avoid contamination.
Q: my step father bought a big steel drum grill it has steel sheets (very thin) that go inbetween the flame and the food (closer to the flame) with that there the food will not cook, it does not get hot enough????? please help... what should we do
This type of grill cooks like an oven You have to keep the lid shut until the proper temp. is reached. Then place you meats and stuff on the grill and close the lid. Open the lid infrequently to keep the heat in. If its charcoal make sure you use enough charcoal the first time so you don't have to add any while you food is cooking.
Q: What are the different methods of embossing steel coils?
There are several methods of embossing steel coils, including roller embossing, heat embossing, and laser embossing. Roller embossing involves using engraved rollers to press a pattern onto the steel surface. Heat embossing uses heat and pressure to create raised designs on the steel coils. Laser embossing utilizes laser technology to etch intricate patterns onto the steel surface. These methods allow for the creation of unique textures and designs on steel coils for various applications.
Q: How are steel coils tested for flatness and straightness?
Steel coils are commonly tested for flatness and straightness using various methods such as visual inspection, measuring with straightedges, laser-based measurements, or using specialized equipment like tension leveling machines. These tests ensure that the steel coils meet the required standards and are suitable for further processing or use in various industries.
Q: What are the advantages of using steel coils in the manufacturing industry?
Using steel coils in the manufacturing industry offers several advantages. Firstly, steel coils are renowned for their strength and durability, making them an ideal choice for various manufacturing processes. They can withstand heavy loads and resist deformation, ensuring that the final product is reliable and long-lasting. Secondly, steel coils are highly versatile and can be used in a wide range of applications across different industries. They can be shaped, molded, or cut into different forms and sizes, catering to diverse manufacturing needs. Additionally, steel coils are cost-effective. Their strength and durability result in a longer lifespan compared to other materials, reducing the need for frequent replacements and leading to cost savings in the long run. Furthermore, steel coils have excellent thermal conductivity, meaning they can efficiently transfer heat. This makes them suitable for applications that require temperature regulation, such as in the automotive and HVAC industries. Moreover, using steel coils in the manufacturing process contributes to a more sustainable and eco-friendly approach. Steel is one of the most recycled materials globally, reducing the need for raw materials extraction and energy consumption, and resulting in a reduced carbon footprint. Furthermore, steel coils can be coated with protective layers to enhance their resistance to rust and corrosion. This makes them suitable for outdoor applications or industries with corrosive environments. Lastly, steel coils offer consistent quality and uniformity in terms of dimensions, mechanical properties, and surface finish. This ensures that the end products meet the required specifications and maintain a high level of quality. To summarize, the advantages of using steel coils in the manufacturing industry include their strength, durability, versatility, cost-effectiveness, excellent thermal conductivity, recyclability, corrosion resistance, and consistent quality. These benefits make steel coils a popular choice for various manufacturing processes across different industries.
Q: What are the common storage defects in steel coils?
Steel coils can suffer from various storage defects, including staining or discoloration, rust or corrosion, coil deformation, surface damage, edge damage, coil slippage, contamination, and coil nesting. These defects can negatively impact the appearance, quality, usability, and safety of the steel. To prevent these defects, it is essential to implement proper handling, storage, and protection measures. This involves storing the steel coils in a dry and well-ventilated area, away from moisture and chemicals. Additionally, appropriate stacking and support structures should be used to prevent deformation and bending. To avoid mishandling and transport damage, it is important to stack and handle the coils correctly. Adequate protection against impacts and contaminants should be provided to prevent surface scratches, dents, and abrasions, as well as edge damage. It is crucial to ensure that the edges of the coils are properly protected and secured during storage to maintain their usability and safety. Furthermore, to prevent coil slippage and potential harm to personnel or equipment, the steel coils should be securely stored and stacked. To avoid contamination, the coils should be kept away from substances like dirt, oil, grease, and chemicals. Regular inspections and maintenance should be conducted to identify and address any potential defects or issues promptly. Overall, by implementing these proper handling, storage, and protection measures, the occurrence of these common storage defects in steel coils can be minimized, ensuring the appearance, quality, usability, and safety of the steel.

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