• EXCELLENT HOT-DIP ALUZINC STEEL in China In CNBM System 1
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EXCELLENT HOT-DIP ALUZINC STEEL in China In CNBM

EXCELLENT HOT-DIP ALUZINC STEEL in China In CNBM

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
30 m.t.
Supply Capability:
5000000 m.t./month

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Specification of hot-dip aluzinc steel:

THICKNESS:0.18mm-1.5mm

WIDTH:900mm-1250mm

COATING MASS:AZ30-AZ150

SPANGLE:Minimized Spangle,Zero Spangle

SURFACE TREATMENT:N0on or Chromated,Non or Oiled,Non or Anti Finger Print

COIL INNER DIAMETER:508mm/610mm

COIL WEIGHT:3mt-7m

 

Applications of hot-dip aluzinc steel

1.      roofing

2.      gutters

3.      unexposed automotive parts

4.      appliances

5.      furniture 

6.      outdoor cabinetry


Images of hot-dip aluzinc steel

EXCELLENT HOT-DIP ALUZINC STEEL in China In CNBM

EXCELLENT HOT-DIP ALUZINC STEEL in China In CNBM

Hot-dip galvanized steel coils are available with a pure zinc coating through the hot-dip galvanizing process. It offers the economy, strength and formability of steel combined with the corrosion resistance of zinc. The hot-dip process is the process by which steel gets coated in layers of zinc to protect against rust. It is especially useful for countless outdoor and industrial applications.

We can ensure that stable quality standards are maintained, strictly meeting both market requirements and customers’ expectations. Our products enjoy an excellent reputation and have been exported to Europe, South-America, the Middle-East, Southeast-Asia, Africa and Russia etc.. We sincerely hope to establish good and long-term business relationship with your esteemed company.

 

Q:How are steel coils used in the production of shipbuilding materials?
Steel coils are used in the production of shipbuilding materials as they are typically cut and shaped into plates, sheets, or beams that are then used to construct various components of a ship's structure such as the hull, decks, and bulkheads. The coils provide a reliable and durable base material that can withstand the harsh marine environment and ensure the structural integrity and strength of the ship.
Q:Can't find it- this is for a physics experiment for youngs modulus done with a steel wire.
This Site Might Help You. RE: what is the elastic limit of steel in Nm^2? Can't find it- this is for a physics experiment for youngs modulus done with a steel wire.
Q:where can i get a thick sheet of steel ? and is steel bullet proff for example if you shoot a bullet on steel will that bullet bounce right off the steel ?
Try the business-to-business yellow pages in your area. A local hardware store can also tell you who to contact. Or search steel plate or sheet metal on the internet to find a local supplier. No, sheet steel is not bullet proof, unless you get heavy plate. Depending on how thick it is, the plate will deform if hit by a high velocity bullet, but usually not enough to matter. Bullets have velocities from about 500 ft/sec up to roughly 3000 ft/sec, depending on the type of weapon used. I wouldn't try to use anything thinner than 3/4 inch. You'll have to experiment and see what it will actually stop. I can't guarantee it'll stop a high-velocity rifle slug. Try it and see.
Q:What are the different grades of steel used for manufacturing coils?
Manufacturing coils requires the use of various grades of steel, each selected for their specific properties and suitability for different purposes. Some commonly used grades include low carbon steel, high carbon steel, stainless steel, galvanized steel, and alloy steel. Low carbon steel, also known as mild steel, is a cost-effective option with good formability. It is ideal for applications that require low strength and high ductility, such as automotive components and construction materials. High carbon steel is characterized by its exceptional strength and hardness. It is commonly employed in the production of coils that demand high tensile strength, like springs and wires. Stainless steel, an alloy with a high chromium content, offers corrosion and oxidation resistance. It is often utilized in the manufacturing of coils for the food industry, medical equipment, and automotive applications. Galvanized steel, on the other hand, is steel coated with a layer of zinc to safeguard it against corrosion. It is frequently used in the production of coils that will be exposed to harsh environmental conditions or require excellent durability, such as roofing materials and electrical appliances. Alloy steel, formed by adding elements like manganese, nickel, chromium, or molybdenum to carbon steel, exhibits improved strength, hardness, and resistance to wear and corrosion. It finds wide application in industries that necessitate high strength and toughness, such as aerospace and automotive. Choosing the appropriate grade of steel is crucial to ensure optimal performance and longevity of the coils, as it is essential to match the specific requirements of the application.
Q:I work at a tool store. I told my boss last week we needed more pruning shears so he did get more of all kinds. Thing is out of all of the shears he brought Two of different kinds say they are made out of Japanese steel. I have never heard of Japanese steel so now i ask you (the public) whats the difference between it and steel from the US or any other country? Those shears are worth more then the ones he gets from Mexico and China and even more than Black and Decker, Fiskars, etc but not more then Corona brand ones.
After WWII, The United States in order to help the Japanese get back on their feet, sent over the equipment needed to make the newest types of foundries available at the time. While this was a big boon for the Japanese, this meant that most of our foundries were using the older technologies. Japanese Steel then had a bit of a edge on purity than ours did and when you have a purer steel, you have a better product. Since then, they've stayed at the top of the game when it comes to steel. Not only because of the equipment which we have caught up with them on and stay with them on, but because they also have a stronger tradition regarding steel. They have made quality steel blades that were decades ahead of what the West could produce. So you couple that quality of metallurgy with modern techniques we gave them, they took steel making and and ran with it to be one of the top steel producers in the world. Don't get me wrong. We in the US can make Steel as well as they can. But we have ranges of steel. You can get a steel tool that is as good as a Japanese offering (if not more so) but at the same time you can also get a steel tool that is well...Dollar Store crap that'll break if you look at it wrong. While their best may not be better than our best, their worst is often far better quality than our worst. Their lower end products are often our medium grade tools and blades.
Q:The Chinese invented the windmill long before the 1800's, but I cannot find anywhere who invented the steel windmill, I believe it was in the 1800'sIf you know the answer that'd be great!And also if you could find the date it was patented? Thanks SO much!
The Steel Eclipse Type WG was the first of several self-oiling steel windmills marketed by Fairbanks, Morse, and Company after they became the distributor of all the Eclipse mills about the start of the 20th Century. It has the more important distinction of having been the only widely distributed worm-gear mill in the history of American windmill manufacture. Produced from about 1926 to the mid-1930's, the Steel Eclipse remains in the field today in considerable number in most parts of the country. Hope this helps!
Q:What are the challenges in coil edge trimming for narrow strips?
There are several challenges in coil edge trimming for narrow strips. Firstly, one of the main challenges is maintaining accuracy and precision during the trimming process. Narrow strips require a high level of precision to ensure that the edges are trimmed evenly and smoothly. Any deviation from this precision can result in uneven edges or burrs, which can affect the overall quality of the strip. Secondly, there is the challenge of controlling the strip tension. Narrow strips are more prone to tension issues, as they have less surface area to distribute the tension evenly. This can lead to problems such as strip breakage or stretching, which can impact the final product's quality. Another challenge is avoiding material waste. Narrow strips often have a smaller margin for error, meaning that any mistakes in the trimming process can result in a significant amount of wasted material. Minimizing material waste is crucial for cost-effectiveness and sustainable manufacturing practices. Additionally, maintaining a high production rate can be challenging when working with narrow strips. The trimming equipment needs to be able to handle the high speed required for efficient production while still maintaining accuracy and precision. This requires the use of advanced machinery and technology to ensure smooth and efficient operations. Lastly, the handling and transportation of narrow strips can also pose challenges. Due to their small size, narrow strips are more susceptible to damage during handling and transportation. Proper care and handling techniques need to be implemented to prevent any potential damage, which could affect the quality of the final product. Overall, the challenges in coil edge trimming for narrow strips revolve around precision, tension control, material waste, production rate, and handling. Overcoming these challenges requires the use of advanced technology, skilled operators, and careful attention to detail throughout the entire process.
Q:I have one and wonder how much force this can take since it does seem like you can bend it(Sure it's impossible with hands), but I don't want to try that cause i don't want to break it. Many people say that it's really hard and can handle a hammer smash? is that true and can it even make it through more force. Cause steel is harder than iron and iron is pretty hard... So how much can i trust this locks security, i mean if i put at at a door would some thiefes be able to break it, if they had the right tools??
It's hard to give you a quantitative answer. There are different grades of testing standards for padlocks. It comes under the ASTM F883. You need to be more specific. The link only gives a picture and no details about the lock. But in general, stainless steel locks are pretty darn strong. Also, you are under the wrong impression about steel vs iron. Iron is a component of steel. Pure iron is very ductile and is softer than steel. Cast iron, is very hard, but is also very brittle and has limited uses. In general, mild steel is realitively soft and ductile. But, there are many different alloys of steel and some have hardnesses and strengths higher than cast iron. Stainless steel is typically more ductile that mild steel because of the smaller amount of iron in the recipe. There are exceptions to that as well. The 400 series of stainless steels have higher amounts of iron and can be heat treated to hardnesses equaling the better steel alloys.
Q:Can steel coils be cut to length?
Yes, steel coils can be cut to length using various cutting methods such as shearing, slitting, or sawing.
Q:Can steel coils be coated with thermally insulating materials?
Yes, steel coils can be coated with thermally insulating materials.

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