Printed Aluminum Cosmetic Cream Can with Best Price

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5 m.t.
Supply Capability:
10000 m.t./month

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Item specifice:

Grade: 1000 Series,3000 Series,5000 Series,8011 Surface Treatment: Coated,Mill Finish Shape: Flat
Temper: Soft,Hard Application: Kitchen Use

Product Description:



1.Structure of Printed Aluminum Cosmetic Cream Can Description

Aluminium Sheet mainly used in signs, billboards, building exterior decoration, bus body, high-rise buildings and factories wall decoration, kitchen sink, lamp, fan leaves, with pieces of electronic, chemical equipment, sheet metal processing parts,     deep drawing or spinning hollowware, welding parts, heat exchangers, bell surface and disk, plate, kitchenware, decorations, reflective devices, ect



2.Main Features of Printed Aluminum Cosmetic Cream Can 

Food grade, eco-friendly, recyclable;
 Food grade inner coating, Appealing surface finish;

Cost effective, light weight, corrosion resistant;
 Longer shelf-life for products; 


3. Printed Aluminum Cosmetic Cream Can Images:


Printed Aluminum Cosmetic Cream Can with Best Price

Printed Aluminum Cosmetic Cream Can with Best Price

Printed Aluminum Cosmetic Cream Can with Best Price





4. Printed Aluminum Cosmetic Cream Can Specification:

Alloy No.Thickness 
A1050,A1060, A1070,A11000.2-10020-220020-8000O,H12,H22,H14,H16,H18, H24,H26,etc
A5052 ,A5005,A5083,A57540.2-10020-220020-8000O,H18,H24,H32,H34,H111,H112 ,etc
A6061,A6082,A60630.2-20020-220020-8000T4,T6, T651,etc
A80110.2-10020-220020-8000O,H12,H22,H14,H16,H18,H24,H26, etc


Q1.How long have you been in this product?
A1:More than 10 years.
Q2. What's the minium quantity(MOQ)?
A2. 5 Metric tons
Q3. How long is shipping time?
A3. 7 (ready-made products)-25 days(OEM)
Q4. How do you guarantee the quality?
A4. 1. Cooperating and Exchaning experience with sevral quoted aluminum companies
    2. Japanese and Swiss production line and skilled works (regular training and testing)
    3. more than 10 years production experience.
Q5. Do you have after sale service?
A5. Yes. Any quality problem occurs within one year, pls take photoes,we will be responsible.




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Q:How to solve the loose bonding of aluminum sheet and silica gel?
Bonding silicone rubber needs surface treatment, after using silicone rubber surface treating agent of Kuer , you can bond them with 4211 adhesive.
Q:what's the size of gap while pressing 6mm aluminum sheet?
unilaterial gap is 0.1-0.15mm, and you can change the gap according to cutting effect.
Q:good aluminium free deoderant?
Are you allergic to aluminum or are you refusing to use it because it is not natural? Aluminum has solid research to back its antiperspirant ability. As long as the deodorant or antiperspirant is well-formulated, it is good. There is no best. You should make a search on Amazon UK with key word like natural or organic deodorant or antiperspirant because those terms usually filter out aluminum ones. But, whether or not it will be effective is a different story.
Q:explain the following observation :(1) aluminium foil does not react with water?
Aluminium is very reactive in air and forms a protective oxide coating. This protects it when placed in water as aluminium oxide is unreactive with water. When immersed in mercury the oxide coating is removed and therefore the aluminium itself reacts when the cleaned aluminium metal is immersed in water.
Q:Is it dangerous to eat foods baked in aluminum foil (Alzheimer's)?
There If you do need to use aluminum foil in an emergency, make sure the bright side it toward the food, and hopefully it is not long exposed or an acidic food. I've had aluminum foil dissolved by food. I also keep in mind the difference between consuming the metal, versus the natural occurring form. Don't you find it odd that it took the US government until 2012 to decide that Al was safe to add to table salt? Who influenced this? How can they decide it is not safe, then safe in other products? I hope this helps. Take care.
Q:Why does deodorent have aluminum in it?
Q:Bauxite ore contains aluminum oxide...........?
Aluminum Oxide is put together from aluminum and oxygen. A quick look at the periodic table tells you that Al has a +3 charge, while O has a -2 charge. Thus the formula must be Al2O3. Now, the atomic mass of Al is 26.982, and of O 15.999. This means that there is that many grams of each in one mole of each respective element. Thus the formula Mass of Al2O3 is 2(26.982)+3(15.999) = 101.961 g Al2O3. There are 2 mols of Al, so 2(26.982) = 53.964 g Al per the formula mass (53.964/101.961). Now that you have a ratio for the amount of Al in Al2O3, simply multiply it by the mass of aluminum oxide you have to get the mass of Aluminum out. Thusly: (53.964/101.961) x 125g = 66.157 g Al Ta-da!
Q:Bought a House with aluminum wiring?
I used to own a home with aluminium wiring in it. In the years 1972 to 1974 the Vietnam War had priority for the copper to be used in bombs, planes, tanks, etc. So for a few years the building industry had to use aluminum wire for the new home construction going on. I never had a single problem with the wiring in my 34 year old house. if your upgrading or puting in a new circuit i suggest going all the way to the service box... either way you can connect the copper to an aluminum wire but only and I stress only by using a cu-al connector. because dissimilar metal react chemically these two wires need a connector between them which will not chemically react... i know its alot but trust the science One thing to remember is that if you ever run a new service line or you do a repair,, make sure that if you use copper wire for the repair or the new install, that you apply the semi liquid compound to all of the connections, between the aluminum wire and the copper wire. You can use standard wire nuts at all connections. You can also buy wire nuts with the compound in them. When connecting aluminum and copper wiring together you must use devices marked CU AL which are designed to keep the 2 wires from touching each other. Best advice is to absolutely not use copper wiring! nti-oxidizing paste to lower the fire hazard. 3M also makes a crimp type tool and connectors that can Hope this helps
Q:student combines 43.1 mL of a 0.279 M aluminum chloride solution with 14.6 mL of a 0.464 M aluminum sulfate (a?
You have to be able to determine the number of moles of Al+3 that each solution contributes to the final solution: 1. aluminum chloride: AlCl3 Multiply the volume (in L) by the molarity to determine the number of moles of each compound dissolved in solution. 0.0431 L x 0.279 M = 0.0120 mol AlCl3 in solution When the AlCl3 in placed in the water, it dissociates to form the following ions: AlCl3 -- Al+3 + 3Cl- So for every one mole of AlCl3 placed in the water, one mole of aluminum ions will dissociate. Therefore, since we have 0.0120 mole of AlCl3 in the solution, that means that the aluminum chloride will contribute 0.0120 Al+3 ions to the final solution. 2. Aluminum sulfate: Al2(SO4)3 Multiply the volume (in L) by the molarity to determine the number of moles of each compound dissolved in solution. 0.0146 L x 0.464 M = 0.00677 mol Al2(SO4)3 in solution When the Al2(SO4)3 in placed in the water, it dissociates to form the following ions: Al2(SO4)3 -- 2Al+3 + 3(SO4)-2 So for every one mole of Al2(SO4)3 placed in the water, two mole of aluminum ions will dissociate. Use the mole ratios of the dissociation reaction to determine the number of moles of Al+3 ions that the aluminum sulfate contributes to the solution. 0.00677 mol Al2(SO4)3 x (2 mol Al+3 ions / 1 mol Al2(SO4)3) = 0.01354 mol Al+3 ions Therefore, the total number of Al+3 ions in solution is the sum: 0.01354 + 0.0120 = 0.02554 mol Al+3 ions The last piece of information needed to determine the concentration of the final solution is the volume of the final solution. Since the two volumes were mixed, the volume of the final solution will be the sum of the two solutions. 0.0431 L + 0.0146 L = 0.0577 L Therefore, to calculate molarity: Molarity = moles of solute / liters of solution Molarity = 0.02554 mol / 0.0577 L = 0.443 M Al+3
Q:If equal masses of water and aluminum interact thermally, will the final temperature be closer to the...?
Let's say the aluminum starts out at a higher temperature than the water. The aluminum cools down by 1°C, which means it loses energy (Q = mcΔT, where ΔT = 1°C). That energy goes to the water, warming it up. Since Q is the same for both water and aluminum, and m is the same for both, all that matters is the heat capacity c. Water has a higher heat capacity than aluminum, so for the same Q it must have a smaller ΔT. This process continues until both have reached the same T. From the above paragraph, you should be able to figure out if the final T is closer to the initial water temp or the original aluminum temp.

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