• Pre-painted Galvanized Steel Coil-EN10169-STONE7 System 1
  • Pre-painted Galvanized Steel Coil-EN10169-STONE7 System 2
  • Pre-painted Galvanized Steel Coil-EN10169-STONE7 System 3
Pre-painted Galvanized Steel Coil-EN10169-STONE7

Pre-painted Galvanized Steel Coil-EN10169-STONE7

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
-
Supply Capability:
2000吨 m.t./month

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Pre-painted Galvanized Steel Coils/ PPGI/GI

I Specifications:

1.Thickness:0.16-2.0mm
2.Width:600-
1500mm

3.Material: SGCC,SGCD,SECC,SECD,DX51D+Z
4.Zinc coating:
40-275G/M2

5.Surface Structure:  galvanized ,zero spangle, regular spangle or normal spangle

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

7.Color:all RAL series

II Main characteristics :

1.strong corrosion resistance

2.surface quality

3.conducive to deep processing,such as the embossed PPGI,printed PPGI&punching PPGI

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.

Teaching Board: whiteboard, blackboard, green board(chalk board).

Indoor Decoration: Fireproof Door, kitchen cabinet, wall decoration.

Shipping Industries: Ship, Fecht, Marine.


Elevator/Medical Equipment/Rubbish Bin.

Thickness:0.17mm-0.8mm
Width:600mm-1250mm

Prepainted Galvanized Steel Coil


Q:What is steel made of and what is its molecular weight? It's for a project in chemistry class so if you have a website link as well, that would be great!
Steel is an alloy consisting mostly of iron with a little Carbon thrown in. Steel is not a molecule, therefore, it does not have a molecular weight. Steel contains atoms of iron and carbon in a crystal lattice, along with various other alloying elements such as manganese, chromium, vanadium, and tungsten.
Q:What are the different methods of engraving steel coils?
There are several methods of engraving steel coils, including laser engraving, chemical etching, mechanical engraving, and electrochemical etching. Each method involves different techniques and tools to create precise and permanent markings on the surface of the steel coils.
Q:I am making a permanent magnet, just for fun. I am trying to find the best grade of steel to do so with.
The type of steel you require is Steel ( Iron + Carbon, mainly.),{many different types of steel } with a high Cobalt and Nickel content. These alloyed together give the best Permanent Magnets, mainly due to their own individual magnetic properties / characteristics being retained in the Alloy. All 3 metals can be magnetised by there own, but Cobalt is known to cause cancer. Nickel, is poisonous and can also cause sever Dermatitis and the destruction of skin tissue.But when alloyed together with Iron they are pretty harmless. Interesting thing is, All of these metals (in this case Elements) can share the same Mass Number ( 60 ). And yet are totally different in their other properties beside Magnetism. Cobalt - Samarium - alloys, create some of the worlds most powerful permanent magnets. And were used in medicine, But are now superseded by Neodymium magnets which are employed instead. Edit; What you could try is, mild steel which is widely available and easily found. . The steels mentioned above are pretty exclusive materials and I personally would not know how to test for their contents, of which they are made from. Soft Iron is good for making electro-magnets if you fancy a go at making one. .
Q:How are steel coils used in the manufacturing of industrial equipment?
Steel coils are commonly used in the manufacturing of industrial equipment due to their versatility and strength. These coils are typically made from high-quality steel and are shaped into a coil form to facilitate easy transportation and storage. One of the primary uses of steel coils in industrial equipment manufacturing is for the fabrication of structural components. These coils are often cut, shaped, and welded to create various parts and structures that provide support and stability to the equipment. For example, steel coils can be used to construct frames, beams, and brackets that form the backbone of heavy machinery. Steel coils are also used in the production of mechanical components such as gears, shafts, and bearings. These components require high strength and durability to withstand the heavy loads and harsh operating conditions encountered in industrial settings. By using steel coils, manufacturers can ensure that these parts have the necessary strength and resilience to perform reliably. Additionally, steel coils are employed in the manufacturing of equipment surfaces that require corrosion resistance or aesthetic appeal. Steel with specific coatings or finishes can be rolled into coils to create sheets or plates that are used to construct outer casings, panels, or covers for industrial equipment. These coatings not only protect the equipment from environmental factors but also enhance its appearance. Furthermore, steel coils can be transformed into pipes and tubes, which are vital components in many industrial applications. These pipes are used to transport various fluids, gases, or materials within the equipment. The strength and structural integrity of steel coils ensure that the pipes can withstand high pressure, temperature, and mechanical stress, making them suitable for demanding industrial environments. In conclusion, steel coils play a crucial role in the manufacturing of industrial equipment. They are used to fabricate structural components, mechanical parts, surface finishes, and pipes. The versatility, strength, and durability of steel coils make them a preferred choice in the industrial equipment manufacturing industry.
Q:What is the average surface finish tolerance for steel coils?
The average surface finish tolerance for steel coils can vary depending on the specific requirements and standards set by the industry or customer. Generally, it ranges from 10 to 20 micro-inches (0.25 to 0.5 micrometers), but it is important to consult the relevant specifications for the specific application.
Q:What are the common methods of protecting steel coils from corrosion during storage?
To safeguard steel coils from corrosion during storage, there are multiple commonly employed techniques. These methods aim to shield the steel coils from moisture and other environmental factors that could trigger corrosion. 1. VCI (Volatile Corrosion Inhibitor) Packaging: VCI packaging is extensively utilized for steel coil protection. It incorporates VCI materials into the packaging, such as plastic bags or films. These materials emit a vapor that forms a protective layer on the surface of the steel coils, effectively preventing the intrusion of moisture and corrosive agents. 2. Oil Coating: Another widely adopted approach involves applying a thin layer of oil onto the steel coil surface. This oil acts as a barrier, obstructing the contact between the steel and moisture or oxygen. It proves particularly effective for long-term storage or transportation situations. 3. Desiccants: Silica gel packets or similar desiccants can be placed inside the packaging to absorb any trapped moisture. By reducing humidity levels within the packaging, the risk of corrosion is minimized. This method is often combined with VCI packaging or oil coating. 4. Proper Ventilation: Adequate ventilation is crucial to prevent moisture buildup around the steel coils during storage. By facilitating the free circulation of air, humidity levels are reduced, and the formation of condensation, which can lead to corrosion, is prevented. 5. Controlled Environment: Storing steel coils in a controlled environment is an effective corrosion prevention measure. This entails maintaining constant temperature and humidity levels that are unfavorable for corrosion. Temperature and humidity control can be achieved using air conditioning or dehumidification systems. It should be noted that the choice of specific protection methods or combinations thereof depends on various factors, including storage duration, environmental conditions, and specific steel coil requirements. Regular inspections and maintenance are also vital to ensure ongoing corrosion protection.
Q:I wanted to know what is steel fabricating?
Steel Fabricating/or Steel Fabricators is just a fancy way of saying that they sell steel products and a variety of related services. Thomas steel products has a wide range of steel products and services, from Windsor Republic Door Dist, Tie Wire, Steel Doors Frames, Snap Ties, S Parker Hardware Distributor, Reinforcing Steel Detail Drawings Avail, Rebar Fabrication, o_O.
Q:How are steel coils inspected for camber?
To ensure the quality and suitability of steel coils for further processing, various methods are employed to inspect their camber. One commonly used approach is visual inspection, where trained inspectors carefully examine the coils for any visible indications of camber. They search for any deviations from a perfectly straight surface, such as bows or curves, which serve as signs of camber. Another method involves the use of specialized equipment, including straightedges, measuring tapes, and laser devices. Inspectors place the straightedge along the length of the coil to assess any gaps or spaces between the coil and the straightedge. If a significant deviation is detected, it signifies the presence of camber. Measuring tapes are also utilized to measure the distance between the coil and the straightedge at multiple points along its length. This enables inspectors to ascertain the extent of camber and determine if it falls within acceptable tolerance limits. In some cases, laser devices are employed to provide a more precise measurement of camber. These devices emit a laser beam that reflects off the surface of the coil and is subsequently analyzed to determine the presence and magnitude of camber. Furthermore, advanced technologies such as computer vision systems and artificial intelligence algorithms are now being integrated into the inspection process. These technologies have the capability to analyze images or videos of the steel coils and automatically detect any camber, thereby delivering accurate and efficient inspection results. In conclusion, the inspection of steel coils for camber involves a comprehensive approach that combines visual inspection, manual measurements using straightedges and measuring tapes, and the utilization of advanced technologies. This multifaceted approach ensures effective detection and control of camber, thereby upholding the quality and integrity of the steel coils.
Q:I have one and need info about it??....It has a wooden case around the steel necks.and 20 strings,Twin Tens.
well, it was made sometime before 1981, because that's when Fender quit making 10 string steel guitars. Without any more information than what you've given me, it could be the Pedal 2000, the PS210, or the Artist Dual 10. Fender made steel guitars from the 1950s through 1981, so it could be from any time in there. I hope you have the pedals with it. The 10-string and dual 10-string models were quite expensive in their day. Unfortunately, if you're thinking of reselling it, you're probably not going to get a lot of money for it unless you find a pedal steel player, and like I said, having all the pedals is very important in that case. Anyway, hope this helped. Good luck. If I were you I'd learn to play it. Pedal steel players are always in demand.
Q:What temp does fire have to be to melt steel?
You need about 2800 degrees to melt steel.

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