• Wood Pattern Printed Galvanized PPGI Steel Coils System 1
  • Wood Pattern Printed Galvanized PPGI Steel Coils System 2
  • Wood Pattern Printed Galvanized PPGI Steel Coils System 3
Wood Pattern Printed Galvanized PPGI Steel Coils

Wood Pattern Printed Galvanized PPGI Steel Coils

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
50 m.t.
Supply Capability:
1200000 m.t./month

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Specification

Standard:
AISI
Technique:
Hot Rolled
Shape:
U Channel
Surface Treatment:
Galvanized
Steel Grade:
Q195
Certification:
ISO
Thickness:
0.8
Length:
1200
Net Weight:
3.5

Description of PPGI:

1.  Environment friendly

2.  Lower cost and maintenance

3.  Long using time up to 10 years

4.  Fast construction, time saving and labor saving

5.  Easy cleaning

6.  Antistatic

 

Festures of PPGI:

 Building industry

 Outdoor application

Roof, structural balcony, panels, window sills, window frames, gates, garage doors, rolling doors, booths, shutters, watch rooms, makeshift houses, street waiting room (booth), refrigerators, etc.

Indoor application

Room doors, dividing walls, door frames, light house steel structures, sliding doors, screens, ceilings, toilets, interior elevator lobby, stairwayventilating duct, communication pipelines.   

 

Specifications of PPGI:

1, Save your working time because of its quickly assembly                      

2, Saving energy ,as it uses insulated panel with heat preservation and insulation funcation.    

3, Healthy and eco-friendly;                                                                          

4, Sound proof

 

Images of PPGI: 

Wood Pattern Printed Galvanized PPGI Steel Coils

 

FAQ:

1.What about the delivery.

We can arrange the shipment about 15-25 days after the deposit.

2.What about payment term?

30% T/T deposit, balance against B/L copy.

Full T/T payment if quantity less than MOQ.

3.How much about MOQ?

Normally 100pcs,but small order is acceptable as well.

Q:Can steel coils be coated with light-reflective materials?
Yes, steel coils can be coated with light-reflective materials. These materials, such as metallic coatings or specialized paints, can enhance the reflective properties of the steel surface, making it more resistant to heat absorption and reducing energy consumption.
Q:What are some characteristics of steel.
Characteristics Of Steel Hardening. - The characteristic difference between steel and pure wrought iron is as follows: - When steel is raised to a red heat and then suddenly cooled, it becomes hard and brittle. This process, which is known as hardening, has no effect upon pure wrought iron. Tempering is a characteristic of steel which distinguishes it from cast iron. If steel has been hardened by being heated and suddenly cooled, as above described, it may be softened again by applying a lower degree of heat and again cooling. This is known as tempering. Cast iron, on the contrary, though it is hardened by the first process, cannot be softened by the second. When a bar of steel is struck it gives out a sharp metallic ring, quite different from the sound produced by striking wrought iron. Other characteristics of steel are its great elasticity and its retention of magnetism.
Q:How are steel coils used in the manufacturing of industrial machinery?
Steel coils are used in the manufacturing of industrial machinery as they serve as the primary raw material for various components such as frames, casings, gears, and structural supports. These coils are typically cut, shaped, and welded to create the desired machine parts, ensuring strength, durability, and precision in the final product.
Q:What is the current value of steel? Is it expected to increase in value?
The steel in steel cents is the same as the steel in soup cans you throw out all the time. There is no sense in holding steel cents for their value as scrap. There are way too many steel cents around for them to ever have much numismatic value.
Q:like the steel industry and the effects it had on industrial growth, 10 points!
The single most important important advance in steel production was learning to accurately control carbon content. This was done through the Bessemer Process in which air was blown through molten iron to burn out impurities and excess carbon. Low carbon iron (wrought iron) could be easily worked into shapes. Medium carbon iron could be cast into useful and durable shapes. High carbon steel could be used for structural uses (beams and girders). Adding alloys such as nickel and silicon could produce very tough steels and steels resistant to rust. Adding vanadium to steel engine parts allowed Ford to produce finely machined engines in huge numbers with existing machinery.
Q:Can steel coils be painted?
Yes, steel coils can be painted. Painting steel coils helps to protect them from corrosion and enhance their appearance. The coils are typically cleaned, primed, and then painted using specialized coatings to ensure proper adhesion and durability.
Q:I've been looking into battle-ready katanas a lot lately. And I've come across some debates between the best forges and steels to be used for them. The functional katanas I use now are Musashi brand katanas, using 1045 carbon steel. They each cost roughly $200-$250. The straight carbon steels are mentioned in the debates, but they aren't very sophisticated in their design. Now the higher end of this middle class of katana ($250-$1000) uses higher carbon. spring, damascus, and other various steels and combinations. I've heard a lot about the strength of damascus steel and it's cutting power. But I look for more than that. I've also been looking at (and for) durability, flexibility, and how well it stands up to contact. So I guess what I'm asking is for the opinion of people who have used these steels, and an answer on what the community thinks is the best steel for a mid range ($250-$1000) battle-ready katana. Looking forward to some good answers.
This Site Might Help You. RE: Best battle-ready katana steel? I've been looking into battle-ready katanas a lot lately. And I've come across some debates between the best forges and steels to be used for them. The functional katanas I use now are Musashi brand katanas, using 1045 carbon steel. They each cost roughly $200-$250. The straight carbon...
Q:this is for a school project due morrow can u please answerwhat are disadvantages of stainless steelplease also show were u got info ty
Disadvantages of Stainless Steel: 1. High initial cost 2. Difficult to fabricate, or in other words, it is not as malleable as other metals, say iron, and hence if not fabricated properly, results in costly re-work. 3. Difficult to weld 4. High cost of polishing etc. i.e. adding finishing touches for the market. Also, for the record: Stainless steel does NOT rust. One of the advantages of it over other metals (steel and iron) are that it is rust-free. But of course, depending on the environment condition (E.g. long periods in a rainforest without use at all) it can rust....this is a very rare (and unfortunate) situation. ;)
Q:Is there any way to melt steel without the intense heat of a blast furnace?
This Site Might Help You. RE: How do you melt steel without a blast furnace? Is there any way to melt steel without the intense heat of a blast furnace?
Q:How are steel coils shipped internationally?
To ensure the safe and efficient transportation of steel coils internationally, various methods are utilized. The most commonly employed technique involves container shipping, where steel coils are placed in standard shipping containers. These containers are specifically designed to handle heavy and bulky cargo like steel coils. To load the steel coils into the containers, they are typically stacked horizontally and secured with steel strapping or metal bands to prevent any movement during transit. This ensures stability and minimizes the risk of damage. Additionally, wooden or metal dunnage may be used to separate and secure the coils, further preventing any shifting. Once loaded, the containers are sealed and transported to the port using trucks or trains. At the port, the containers are loaded onto cargo ships utilizing crane or specialized equipment, such as roll-on/roll-off (RO-RO) vessels or semi-submersible ships. These ships provide a protected environment for the steel coils during the journey, shielding them from adverse weather conditions and potential damage. Throughout the voyage, the steel coils are subjected to various safety measures to prevent corrosion and maintain their integrity. These measures include the application of protective coatings, such as oil or special paints, as well as the use of desiccants or humidity control systems inside the containers to regulate moisture levels and minimize the risk of rusting. Upon arrival at the destination port, the containers are unloaded from the ship and transferred to trucks or trains for further transportation to their final destination. At this stage, the steel coils may undergo customs clearance and inspection procedures before being delivered to the intended recipients. In conclusion, the international shipping of steel coils requires careful planning, secure packaging, and the utilization of specialized containers and equipment to ensure their safe and successful transport.

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