•  Hot-dip Aluzinc Steel Building Roof Walls with Good Manufacturability China System 1
  •  Hot-dip Aluzinc Steel Building Roof Walls with Good Manufacturability China System 2
  •  Hot-dip Aluzinc Steel Building Roof Walls with Good Manufacturability China System 3
 Hot-dip Aluzinc Steel Building Roof Walls with Good Manufacturability China

 Hot-dip Aluzinc Steel Building Roof Walls with Good Manufacturability China

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

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 Hot-dip Aluzinc Steel Building Roof Walls with Good Manufacturability China

1. Description of the Hot-dip Aluzinc Steel:

 

Hot-dip aluzinc steel structure is composed of aluminum-zinc alloy, consisting of 55% aluminum, 43% zinc and 2% at 600  silicon solidification temperature and composition, the entire structure is made of aluminum - iron - silicon - zinc, to form a dense quaternary crystals an alloy.

Hot-dip aluzinc steel has many excellent features: strong corrosion resistance, is three times the pure galvanized sheet; zinc surface with beautiful flowers, can be used as a building outside board.

 

2.Main Features of the Hot-dip Aluzinc Steel:

 

 Excellent corrosion resistance

 High temperature oxidation resistance

• High hot reflectance

 Good manufacturability

•Beautiful appearance

3.Hot-dip Aluzinc Steel Images

 

 Hot-dip Aluzinc Steel Building Roof Walls with Good Manufacturability China

 Hot-dip Aluzinc Steel Building Roof Walls with Good Manufacturability China

4.Hot-dip Aluzinc Steel Specification 

AVAILABLE SPECIFICATION 

 

HOT-DIP ALUZINC STEEL COILS

THICKNESS

0.16mm-3.5mm

WIDTH

1250mm MAX

COATING MASS

30g/ m2-185 g/ m2

SPANGLE

Regular Spangle, Minimized Spangle, Zero Spangle

SURFACE TREATMENT

Chromated / non-chromated, Oiled / non-oiled, Anti Finger Print

COIL INNER DIAMETER

508mm or 610mm

  

 

5.FAQ of Hot-dip Aluzinc Steel 

We have organized several common questions for our clientsmay help you sincerely 

1.What advantages does your company have

Cement : Annual capacity of 400 million tons, No. 1 in the world 

Fiberglass:  Annual capacity of 1 million tons fiberglass, No. 1 in the world. 

 Carbon Fiber: Annual capacity of 10,000 tons PAN precursor and 4,000 tons carbon fiber, No. 1 in China 

Commercial concrete: Annual capacity of 0.35 billion cubic meters, No. 1 in the world. 

Refractory Material: Annual capacity of 40,000 tons casting refractory, No.1 in the world.

 

2.What advantages do your products have

Firstly, our base material is of high quality, Their performance is in smooth and flat surfaceno edge wave good flexibility.

Secondly, high quality zinc ingoats, 97.5% zinc,1.5% silicon,1% others, the same zinc coating measured by metal coating thickness or by zinc weight

Thirdly, high precision: Tolerance strictly according to ASTM or JISG standard even more rigid.

 

 

 

 

 

Q:What are the challenges faced in the recycling of steel coils?
One of the main challenges in recycling steel coils is the process of separating the different materials that may be attached to the coils, such as plastic or paper. These contaminants need to be removed before the steel can be recycled efficiently. Additionally, the size and weight of steel coils can pose logistical challenges in terms of transportation and storage. Lastly, ensuring that the recycled steel meets the required quality standards and specifications is another challenge faced in the recycling process.
Q:were iron age weapons made of steel?
Even in very early iron, a small amount of steel was produced by carburization, where the iron picks up carbon by laying in hot coals before quenching. This produces a thin layer of steel on the surface of the iron. By about 300 BC Damascus steel was being produced by the crucible method on the Indian subcontinent, and the Romans used steel from Noricum. In the first century BC the Chinese were melting cast iron and wrought iron together to make steel.
Q:Looking for a new entry door for my home If someone would explain the features and benefits of both fiberglass and steel doors I would greatly appreciate it!!
Steel doors can dent easily and are usually cheaper in price. Whereas fiberglass doors cost more but are more durable to withstand weather etc. Steel doors show the effects of wear and tear more than wood or fiberglass doors do.
Q:The highest quality i have seen is 9260 and i want to know if there is a higher quality steel.
Types of steel are one issue. But the quality of steel no matter what type is even more important. The only way to be sure that you are getting a good blade is to buy from someone that already has a reputation for producing great blades. Stop the questions about who thinks what type of steel is best and investigate the steel blades offered by companies like Bugei Trading company. they have good blades. Opinions vary, but Bugei has proven that they make good swords. That is all that is needed to be known. Any questions you have are best directed to them, not here.
Q:Is steel easier to weld?Which is more brittle/less flexible?
I can't weld steel to aluminum, and generally speaking I'd say the answer is no, however, there are some special procedures that can make a metallic bond between steel and aluminum, it can be done with explosive welding. A lot of multi-ply cookware is made with aluminum sandwiched between stainless steel, there is so much of it that I imagine there is another way besides explosives, but I don't know what. In any case it is not a normal workshop procedure. Steel is often considerably easier to weld, but it depends on the alloy. some steels are difficult to weld and some aluminum alloys are fairly easy, but on the average steel is easier. as far as brittle/ flexible it again depend on the alloy, some steels are less brittle than some aluminum alloys and the other way around. Steel does have a higher modulus of elasticity, so for a given size steel is stiffer, but that is for elastic deformation, for plastic deformation steel often has a higher yield strength, but some of the more exotic aluminum alloys can be stronger than low grades of steel.
Q:What is the standard weight of steel coils?
The standard weight of steel coils can vary depending on the specific type and dimensions of the coil. However, a common range for steel coils is between 3 to 25 tons.
Q:In what ways can steel fail in use of buildings ad what can be done to prevent it?
First let us see what steel is made from. PIG IRON, which is put into a blast furnace with other things to get the impurities out. the very high grated of steed include TUNGSTEN CARBIDE STEEL, which is used to make tooling. down to lower grades of steel to make other things. the stronger the steel that is required the less impurities that are in it. different steels are treated with different elements depending on what the steel is going to be used for, So if steel is Incorporated into a building and say the building caught fire enough heat could be produced to actually soften the steel and result in failure. hope this helps. Dr Knowitall.
Q:What are the factors affecting the formability of steel coils?
The factors affecting the formability of steel coils include the composition and microstructure of the steel, the thickness and width of the coil, the temperature and speed of the forming process, the lubrication used during forming, and the presence of any surface defects or contaminants.
Q:Can steel coils be used in architectural applications?
Architectural applications can indeed utilize steel coils. These coils possess versatility and can be transformed into various shapes and forms to match the distinctive design specifications of architectural ventures. They find utility in constructing structures such as buildings, bridges, and more, as well as in fabricating architectural elements like roofing, cladding, and facades. The utilization of steel coils in architectural applications presents several benefits. They exhibit exceptional durability, strength, and corrosion resistance, rendering them suitable for constructing enduring and low-maintenance structures. Steel coils can be customized in terms of thickness, width, and surface finish, granting architects the ability to achieve their desired aesthetic and functional objectives. Moreover, steel coils are renowned for their structural stability and load-bearing capacity, both of which are vital considerations in architectural designs. Their high strength-to-weight ratio makes them an ideal selection for creating spacious and open interior areas, as well as for supporting heavy loads in multi-story buildings. Additionally, steel coils are easily fabricated and installed, resulting in time and labor savings during the construction process. They can be efficiently molded, cut, and welded to create intricate shapes or architectural details. Additionally, steel coils can be pre-fabricated off-site, guaranteeing precision and quality control, and subsequently assembled on-site, reducing construction time and minimizing disruptions to the surrounding environment. All in all, steel coils present architects and designers with a wide array of possibilities in architectural applications. Whether it pertains to structural support, aesthetic appeal, or functional requirements, steel coils provide a dependable and versatile material option that can fulfill the demands of contemporary architectural projects.

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