• 401# Lacquer EOE,Best Quality, Tinplate and Allumnium Material System 1
  • 401# Lacquer EOE,Best Quality, Tinplate and Allumnium Material System 2
  • 401# Lacquer EOE,Best Quality, Tinplate and Allumnium Material System 3
401# Lacquer EOE,Best Quality, Tinplate and Allumnium Material

401# Lacquer EOE,Best Quality, Tinplate and Allumnium Material

Ref Price:
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Loading Port:
China main port
Payment Terms:
TT OR LC
Min Order Qty:
100000 PCS
Supply Capability:
10000000 PCS/month

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Item specifice

Standard:
ASTM,JIS,GB,DIN,EN
Technique:
Annealing
Shape:
Round
Surface Treatment:
Bright/Fine Stone/Stone
Steel Grade:
MR/SPCC
Thickness:
0.20mm
Length:
401#
Net Weight:
10g

Specifications

1.easy open end 401
2.Coating:Clear inside&outside
3.Have saferim,Dia98.9
4.Illstrution on lid
5.Factory,OEM&ODM

Shape/type

Round

Size(mm)

Dia 98.9

Coating

Clear inside & outside

Material

Aluminum

Pcs/20 GP’

1,050,000 Customize packing: as clients’ requests.

Features

1.Have saferim.

2.Used for packaging of dry cargo,such as milk powder,coffe powder,condiment,tea,walnat meat,chicken essence,etc.

3.Have embossed illustration.

4.Coating can be according to customer required.

                                                                                 

Our Workshop 

Our packing

We could offer package as customers require, by carton or by wooden pallet.

FAQ

1.Q: What is the material and monthly output of EOE?

We can offer both tinplate and aluminum material made EOE, our output reaches more than 1000000000pcs per month.

2.Q:Could you offer samples for our testing?

YES, we could offer sample, but we hope you send us testing report at early time;

3. Q:Can you make new mold with customized size?

 YES, We can make new mold for our cutomer, if the qty reach our requirement.



Q:What kind of metal material is tinplate? How much is the current price per ton?
Tinplate originated in Bohemia (now Czech and Slovakia). The land has been rich in metal technology since ancient times, and know how to use water power in the manufacture of machinery, from fourteenth Century onwards began to produce tinplate. For a long, long time, it has been the main source of tinplate in the world. Tin was mainly used for making tableware and drinking utensils.
Q:What are the different types of tinplate finishes?
The different types of tinplate finishes include bright, matte, stone, lacquered, and printed finishes.
Q:What are the recycling processes for tinplate?
The recycling processes for tinplate typically involve collecting and sorting the tinplate materials, removing any contaminants, such as paper or plastic coatings, and then shredding the tinplate into small pieces. The shredded tinplate is then melted in a furnace to separate the steel from the tin. The steel is recovered and can be used to make new tinplate products, while the tin is commonly reused in various applications or sold as a raw material.
Q:Can tinplate be used for promotional items?
Yes, tinplate can be used for promotional items. Its versatility, durability, and ability to be customized make it a suitable material for creating various promotional products such as tin cans, tin boxes, tin signs, and tin trays. Tinplate can be printed, embossed, or lithographed with logos, graphics, or promotional messages, making it an attractive choice for promotional merchandise.
Q:Can tinplate be used for bakery packaging?
Yes, tinplate can be used for bakery packaging. Tinplate is a durable and versatile material that provides excellent protection for bakery products. It helps to maintain the freshness and quality of the baked goods by preventing moisture and oxygen from entering the packaging. Additionally, tinplate is also recyclable, making it an environmentally-friendly choice for bakery packaging.
Q:What are the main differences between tinplate and tinplate laminates in terms of barrier properties?
Tinplate is a type of steel coated with a thin layer of tin, while tinplate laminates consist of tinplate combined with other materials such as plastic or paper. In terms of barrier properties, tinplate has a higher level of barrier protection against moisture, oxygen, and light compared to tinplate laminates. This is because tinplate provides a solid and impermeable barrier, whereas laminates may have lower barrier properties due to the presence of other materials. However, tinplate laminates can still offer sufficient barrier properties depending on the specific composition and application.
Q:How does tinplate contribute to the overall sustainability of packaging?
Tinplate contributes to the overall sustainability of packaging in several ways. Firstly, tinplate is highly recyclable, meaning that it can be reused and repurposed indefinitely without losing its quality. This reduces the demand for virgin materials and minimizes the environmental impact of packaging production. Additionally, tinplate has excellent barrier properties, which helps protect the contents of the packaging from spoilage, extending their shelf life and reducing food waste. Furthermore, tinplate is lightweight yet durable, allowing for efficient transportation and reducing carbon emissions associated with logistics. Finally, tinplate has a long lifespan and can be reused in various forms, making it a more sustainable choice compared to other packaging materials.
Q:How does tinplate perform in terms of stackability?
Tinplate performs exceptionally well in terms of stackability. Its rigid and sturdy structure allows for easy stacking of tinplate containers or sheets without the risk of collapsing or damaging the items below. This makes tinplate a preferred choice for packaging and storing various goods, ensuring efficient utilization of storage space and enhanced transportability.
Q:How does tinplate contribute to the durability of gardening tools?
Tinplate contributes to the durability of gardening tools by providing a protective coating that prevents rust and corrosion, extending the lifespan of the tools.
Q:What are the welding methods used for tinplate?
The welding methods commonly used for tinplate include spot welding, resistance welding, and laser welding.

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