• Window Blinds Applied Prime Prepainted Galvanized Steel System 1
  • Window Blinds Applied Prime Prepainted Galvanized Steel System 2
Window Blinds Applied Prime Prepainted Galvanized Steel

Window Blinds Applied Prime Prepainted Galvanized Steel

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
50 m.t.
Supply Capability:
10000 m.t./month

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 Product Details

Basic Info.

Model NO.:TDC51D+Z

Standard:ASTM, JIS, DIN, BS

Steel Grade:DC51d+Z

Certification:ISO

Surface Treatment:Coated

Technique:Hot DIP Galvanized

Application:Window Blinds Applied

Edge:Slit edge

Stock:Stock

Product Description:Prepainted Galvanized Steel

Brand Name:Cheeho & OEM

Base Metal:DC51d+Z

Available Dipped Layers:50-150G/M2

Inner Diameter:508mm

Temper Type:Ca

Available Coating Colors:off White & Sea Blue & Others

Approved Certificate:SGS & ISO & BV & TUV

Export Markets:Global

 

Additional Info.

Trademark:CheeHo & OEM

Packing:Standard Seaworthy Package with Wooden Pallet

Standard:SGS & ISO & BV & TUV Approved

Origin:Jiangyin, Jiangsu, China

HS Code:72107000

Production Capacity:150000mt/Year

 

Product Description

Brief Introduction
1. Prepainted Galvanized Steel is coated with organic layer, which provides higher anti-corrosion property and a longer lifespan than that of galvanized or galvalume steel sheets.
2. The base metal for Prepainted Galvanized Steel is HDGI steel.
The finish coats of Prepainted Galvanized Steel can be classified into groups as follows: Polyester, silicon modified polyesters, polyvinylidene fluoride, high-durability polyester, etc.
3. The production process has evolved from one-coating-and-one-baking to double-coating-and-double-baking, and even three-coating-and-three-baking.
4. The color of the Prepainted Galvanized Steel has a very wide selection, like orange, cream-colored, dark sky blue, sea blue, bright red, brick red, ivory white, porcelain blue, etc.
5. The Prepainted Galvanized Steel can also be classified into groups by their surface textures, namely regular prepainted sheets, embossed sheets and printed sheets.

Specification
1. Thickness: 0.3-0.8mm
2. Width: 914-1250mm
3. Inner Diameter: 508mm
4. Weight of Steel Coil: 3-15MT
5. Available Dipped Layer: 50-150G/M2
6. Surface Texture: Normal Coated
7. Type of coating structure: 2/1 Coat the top surface of the steel sheet twice, coat the bottom surface once, and bake the sheet twice.
8. Front Side Paint Thickness: 15-25μ M (bottom paint + top paint)
9. Back Side Paint Thickness: 5-10μ M

Common performance of front coating
1. Thickness: ≥ 20μ M
2. Pencil Hardness: 2H
3.60° Specular glossiness of coating: >60
4.180° Bend: ≤ 3T
5. Impact: ≥ 9J
6. Salt Fog Resistant: ≥ 500h
7. Color difference:<3Δ E

Packing
We use Seaworthy Package to make sure Prepainted Galvanized Steel is well-protected during the long ocean voyage.

Application
1. Construction: (Outside) workshop, agricultural warehouse, residential precast unit, corrugated roof, wall, rainwater drainage pipe, terrace, retailer booth, roller shutter door
(Inside) door, doorcase, light steel roof structure, folding screen, ceiling, elevator, stairway, vent gutter
2. Electrical appliance: Refrigerator, washer, switch cabinet, instrument cabinet, air conditioning, micro-wave oven, bread maker
3. Furniture: Central heating slice, lampshade, chifforobe, desk, bed, locker, bookshelf
4. Carrying trade: Exterior decoration of auto and train, clapboard, container, isolation lairage, isolation board
5. Others: Writing panel, garbage can, billboard, timekeeper, typewriter, instrument panel, weight sensor, photographic equipment

Superiority
1. We had already passed the authentification by the ISO9001 and established a completed set of quality assurance system.
2. Under such a complete set of quality assurance systems, there is a complete set of regulations for ordering, order handling, quality design, purchasing raw materials, working out production plan, production, test and inspection, packaging, storage, delivering, etc.
3. The PC-based production and marketing system not only improves the working efficiency but also assures the quality of product.
4. Our Prepainted Galvanized Steel lines are equipped with a large amount of online test instruments so that they can ensure and improve the quality of product.
5. We also have a complete set of equipment and techniques for testing and controlling the performance of the Prepainted Galvanized Steel products, which ensures our product quality to take a leading position among the fellow products at home and reach the international standard.

Mechanical properties of base metal

GradeTensile Test
Yield Strength
MPa
Tensile Strength
MPa
Elongation A80mm % ≥
DC01280-325320-50022

 

Window Blinds Applied Prime Prepainted Galvanized Steel

Window Blinds Applied Prime Prepainted Galvanized Steel

 

 

FAQ:

 

1. What is the minimum order quantity ?  

Our MOQ is 50mt for each size. And we will consider to give more discount if you make big order like 1000 tons and more. Further more, the more appropriate payment term your offer the better price we can provide. 

2. How long can we receive the product after purchase?

Usually within thirty working days after receiving buyer’s advance payment or LC. We will arrange the factory manufacturing as soon as possible. The cargo readiness usually takes 15-25 days, but the shipment will depend on the vessel situation.

3. How to guarantee the quality of the products

We have established the international advanced quality management systemevery link from raw material to final product we have strict quality testWe resolutely put an end to unqualified products flowing into the market. At the same time, we will provide necessary follow-up service assurance.

4.What is the validity of your quotation? 

Normally 7 days.

5.What is your advantage?

24 hour quick response /Customer oriented/ Credit foremost/ Top quality Excellent 

 

Q:explain what happen if carbon steel is exposed to an oxygen rich atmosphere at elevated temperature inside a furnace.
Assuming the steel isn't actually melted, two things will happen. First, a layer of iron(ii) oxide, FeO will slowly develop on the surface, getting thicker over time. This layer is usually poorly bonded to the metal surface, it tends to flake off, exposing fresh metal. This is known as mill scale, it's also known as wustite which is the mineral term. Second, the surface of the steel will become decarburized, essentially becoming pure iron, not steel. The depth of the decarburized layer depends on the temperature, time, and the diffusivity of carbon in the steel at the given temp. This has some implications to engineering, in hot-rolling or forging of steel shapes for example. It's often the case that the stress and strain in a material is greatest at or near the surface. Therefore the weakened, decarburized layer at the surface may have a much greater detrimental effect on the steel's performance than might be expected. In a more specific example, die and tool steels depend on their carbon content for their strength and wear resistance, Therefore if such steels are heated in an oxidzing atmosphere, wear resistance is totally destroyed: The thin decarburized iron layer will be extremely soft and malleable.
Q:What are the dimensions of a typical steel coil?
The dimensions of a typical steel coil can vary depending on its intended use and manufacturing specifications. However, common dimensions for a steel coil typically range from 0.15 to 3.5 millimeters in thickness, and 600 to 2,000 millimeters in width. The inner diameter of the coil can be around 508 to 610 millimeters, and the maximum outer diameter can be up to 2,000 millimeters.
Q:How are steel coils used in the production of lighting fixtures?
Steel coils are an essential component in the production of lighting fixtures. These coils are typically made of high-quality steel, which provides durability and strength to the final product. In the manufacturing process, the steel coils are first uncoiled and then passed through a series of machines. These machines cut and shape the steel into various parts and components required for lighting fixtures. The steel is often bent, stamped, or rolled to create the desired shapes and sizes. These parts may include the base, frame, arms, or other structural elements of the lighting fixture. Once the steel components are formed, they are then further processed and finished. This may involve welding, polishing, or coating the steel to enhance its appearance and protect it from corrosion. After the steel parts are finalized, they are assembled with other components like electrical wiring, bulbs, shades, and switches to create the complete lighting fixture. The use of steel coils in lighting fixture production ensures that the finished products are sturdy, long-lasting, and able to withstand various environmental conditions. Steel's strength allows for the creation of intricate designs and shapes, enabling manufacturers to produce lighting fixtures that are not only functional but also aesthetically pleasing. Overall, steel coils play a crucial role in the production of lighting fixtures by providing the necessary strength, durability, and versatility required for these products.
Q:I just bought a dpms ar15 and it says if I shoot steel cases (laquer coated) or foreign ammo it voids the warranty. But before I knew this I bought 200 rounds of Russian steel cased anmo. Think I should just shoot there two hundred and not buy anymore? Some people say all they shoot is steel cased ammo and have no problemAny advice is appreciated
Steel Case Ammo
Q:How are steel coils used in the production of storage containers?
In the production of storage containers, steel coils play a vital role. These coils, manufactured from high-quality steel, are crucial for constructing the walls, floors, and roofs of the containers. To begin the process, the steel coil is uncoiled and passed through a series of machines that cut and shape it into the desired dimensions. Then, the steel is transformed into panels, which are either welded or riveted together to form the container's structure. The strength, durability, and resistance to corrosion make steel coils an excellent material for storage containers. They provide a robust framework that can endure heavy loads and harsh environmental conditions. Moreover, the coils can be easily molded and customized to meet specific size and shape requirements. Once the structure of the container is complete, it is typically coated with a protective layer of paint or other coatings to further enhance its durability and resistance against weather elements. This ensures that the container remains unaffected by moisture, UV rays, and other external factors that could cause deterioration. All in all, steel coils are of utmost importance in the production of storage containers as they offer the necessary strength and durability required to safely store and transport a wide array of goods and materials.
Q:Please explain why steel is denser than wood.
Steel is basically a mixture (not the compound) of iron and carbon. Iron, by itself is an element and so is carbon. The atoms of Iron are larger in size compared to carbon. All the atoms of all the elements, smaller or larger, are spherical. If naturally a solid, the atoms of all such elements have voids as their atoms are closely packed. You can imagine a basket of oranges; you could see that void or empty space (which I am speaking about) between four or more of the oranges put together. Now, when heated to more than about 1500 degrees celcius, Iron melts and atoms in molten form increase space between themselves. Raising the teperature to 1800 degree celcius, carbon is mixed with iron. At this stage it causes the spherical carbon atoms to fill in the spaces present amongst the spherical atoms of the iron. On cooling, already dense iron becomes denser because no space is left there between its atoms. This denser form of iron + carbon has become steel in which carbon is not more than 3 to 4% of the total volume. Wood is nothing but a fallen and dried tree's part. When green and alive, tree's stem and branches have pores in there texture, which are fillled with water and other biological fluids necessary for the life of the plant. When dried all the fluids, especially water gets evaporated. and the pore are empty now. The term Density, means mass divided by volume (kg / cubic meters). Iron + Carbon (the steel) so tightly packed and Iron having very high atomic weight is surely denser than wood with just carbon and a few other elements with no significant role to play in the mass calculation; particularly if their are empty pore spaces filled with air only. Imagine the mass (which common people mistakingly call the weight) in kilograms of a peice of steel with dimensions of 1 meter cube and imagine the same for the dried wood. What do you think---which one is denser?
Q:What are the different types of steel coil surface treatments for durability?
The durability of the material can be enhanced through various types of steel coil surface treatments. 1. To achieve a protective zinc coating on the surface, the steel coil is immersed in a bath of molten zinc in the process of hot-dip galvanizing. This method not only provides excellent corrosion resistance but also extends the lifespan of the steel coil. 2. For indoor applications or when a thinner coating is desired, electro-galvanizing is preferred. This method involves electrodeposition of a thin layer of zinc onto the surface of the steel coil, offering good corrosion resistance. 3. By applying a dry powder paint to the steel coil's surface and curing it under heat, powder coating creates a durable and attractive finish. This finish is resistant to chipping, scratching, and fading, ensuring a uniform appearance. 4. To protect against corrosion, UV rays, and other environmental factors, organic coatings like acrylics, polyesters, or fluoropolymers are commonly applied to steel coils. These coatings not only enhance durability but also improve the aesthetics of the steel coil. 5. Chromate conversion coating involves applying a thin layer of chromate onto the steel coil's surface. This treatment provides corrosion resistance and improves the adhesion of subsequent paint or powder coating layers. Each of these surface treatments offers unique benefits in terms of corrosion resistance, durability, and appearance. The choice of treatment depends on the specific application requirements and the level of protection needed for the steel coil.
Q:and also what makes different hardness of stainless steel?
a little clarification. steel doesn't become stainless. There are many different types of steel, which is an alloy of iron and other element. The other elements determine things like hardness, corrosion resistance, etc. One element is chromium, which when added in the correct proportions, forms stainless steel. PS, there are many many different stainless steels, with different proportions.
Q:How are steel coils used in the production of metal fixtures?
The production of metal fixtures relies heavily on steel coils, an indispensable element. Typically composed of carbon steel, these coils act as the primary raw material for manufacturing a diverse array of metal fixtures. To begin the process, the steel coils are initially uncoiled and subsequently cut into sheets of the desired size and thickness. These sheets serve as the fundamental material for various types of metal fixtures, including brackets, hinges, handles, and other structural components. Once the sheets have been cut, they undergo a series of shaping procedures, such as bending, stamping, or rolling. These procedures are crucial in molding the steel sheets into the specific design required for each metal fixture. For instance, bending can be utilized to create brackets or angles, while stamping can form intricate patterns or shapes. Following the shaping procedures, it is common for the steel sheets to undergo welding or joining techniques, which are employed to assemble multiple components of the metal fixture. Through welding, the various parts are securely attached, ensuring strength and durability in the final product. Moreover, steel coils also play a vital role in enhancing the appearance and extending the lifespan of metal fixtures. They can be coated or treated with protective layers, such as galvanized or powder coatings, to prevent corrosion and provide a polished finish. These coatings guarantee that the metal fixtures can withstand environmental factors and prolong their durability. To summarize, steel coils are an indispensable component in the production process of metal fixtures. They are transformed into sheets, which are then shaped, joined, and coated to create a wide range of functional and aesthetically pleasing metal fixtures utilized across various industries.
Q:How are steel coils processed at the steel service centers?
Steel coils are processed at steel service centers through a series of steps to transform them into finished products that meet the specific requirements of customers. The process typically begins with the arrival of the steel coils at the service center. These coils are typically large and heavy, and may have been produced by a steel mill or imported from overseas. Once the steel coils are received, they are typically inspected for quality and any defects. This ensures that only high-quality coils are used in the production process. The coils are then stored in a warehouse until they are ready to be processed. Next, the steel coils are uncoiled. This involves unwinding the coil to create a flat sheet of steel. This can be done manually or using automated machines depending on the size and thickness of the coils. The uncoiled steel is then leveled to remove any residual stress and ensure a flat and consistent surface. After leveling, the steel sheets may undergo various processes depending on the desired end product. These processes can include cutting, shearing, slitting, and forming. Cutting and shearing involve cutting the steel sheets into specific sizes or shapes. Slitting involves cutting the steel into narrow strips, while forming involves bending or shaping the steel into the desired form. Once the desired processing operations are complete, the steel sheets are often treated with surface finishes to enhance their appearance or protect them from corrosion. These finishes can include painting, coating, or galvanizing. Finally, the processed steel sheets are inspected for quality again to ensure they meet the required specifications. They are then packaged and ready for shipment to customers, who may use them in various industries such as construction, automotive, or manufacturing. Overall, the processing of steel coils at steel service centers involves a combination of inspection, uncoiling, leveling, cutting/shearing/slitting/forming, surface finishing, quality control, and packaging. This process allows for the transformation of steel coils into finished products that are tailored to meet the specific needs and requirements of customers.

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