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Rotax Metals

Understanding Corrosion and Why Copper and Brass Suppliers Are Not Worried about It

Most people believe that the world they live in is a calm and comfortable place. In reality, it is more hostile than they can possibly imagine. Everything on Earth is locked in a constant battle for survival. The environment is so fragile that even the slightest shift in the balance could push life to extinction.

Corrosion

It is only when living things learned to adapt and evolve that the world became less hostile. Yet the fact remains that when the world can no longer support life as we know it, everything will perish and decompose. All that will be left is a barren wasteland with nothing more than dust and rocks.

The famous adage “from dust you came, and to dust you shall return,” is originally addressed to all living things. It pertains to the natural process of decomposition when a carbon-based material loses resistance against the effects of its environment. It turns out that this principle applies to inorganic materials as well. The only difference is that their decomposition takes a lot longer and is influenced by a greater variety of factors. This process is more commonly known as corrosion.

Corrosion of Metals

Corrosion takes place when a certain material is placed in an environment where it is chemically unstable. Metals are among the best examples of materials that undergo this process. Despite being tougher and more resilient than most other materials, they have their share of weakness. There are certain chemicals that they don’t react well to. If you’ve seen the film Batman vs. Superman, particularly the part where Batman was able to weaken Superman by exposing him to kryptonite, it works pretty much the same way.

Understanding corrosion is important because it affects the properties for which metals are used in a vast range of applications. By knowing which element in an alloy reacts to which substance, metallurgists can more easily determine the best way to adjust the alloy’s composition to form a more corrosion-resistant material.

Perhaps that most widely held catalyst for corrosion is oxygen because most metals react to it. This has been proven by Antoine Lavoisier, the French chemist who also authored the law of conservation of mass and played a critical role in recognizing oxygen as an element. His experiments revealed that iron, together with all other ferrous metals, reacts to oxygen by forming iron oxide or rust. If not for Lavoisier’s discovery, iron (which makes up most of today’s man-made structures) would have not been utilized for applications where air exposure is involved.

Resisting Oxygen-Related Corrosion

Metals that do not contain iron usually resist corrosion with oxygen. The best example of this type of metal is copper and all of its alloys. Instead of forming rust when exposed to oxygen, copper forms a layer of greenish material known as patina. This layer does not affect the interior of the metal and rather encapsulates it to prevent further corrosion.

Alloys of copper, such as brass and bronze, exhibit this property as well. In most cases, they resist corrosion caused by even more potent substances, including saltwater and certain acids. They also hold up to extreme temperatures, which explains why most manufacturers prefer them for making machine parts. It’s no wonder reliable bronze and brass suppliers make so much fortune.

Brass and bronze are alloyed with other metals to form even stronger and more corrosion-resistant metals. Muntz metal, a type of alpha-beta brass, for instance, is used for making cover plating for ships due to its high tolerance to saltwater corrosion. This type of brass resists fouling, too. Another popular example is silicon bronze, which essentially is bronze combined with a little bit of silicon. This metal is almost if not stronger than steel, making it a good material for making pumps and boilers or for applications where the strength of steel is needed but not its weakness to rusting.

Other Substances that Can Trigger or Accelerate Corrosion

Oxygen is not the only element that can trigger or accelerate corrosion. In fact, any solid, liquid, or gas substances can cause corrosion depending on the metal exposed to them. Acids (such as sulfuric acid, nitric acid, and hydrochloric acid) and bases (such as sodium hydroxide and potassium hydroxide) are also notorious for corroding many different types of alloy.

Some metals could also corrode when exposed to dehydrating agents, such as phosphorus pentoxide or calcium oxide; halogens and halogen salts, such as bromine and sodium hypochlorite; organic halides; and acid anhydrides.

Using Corrosion to Your Advantage

There’s no denying the destruction corrosion can bring to one’s project. If left unchecked, it can lead to construction failure, consequently endangering people’s lives. However, it does not always have to be viewed negatively. There are certain applications for which it can be beneficial, such as furniture making and metal disposal.

It takes many years for bronze to achieve a kind of patina that gives it an antique look. For those who sell bronze furniture and believe that lost time is lost money, however, waiting that long is outright counterproductive. This is why they resort to a process called patination in which they speed up the formation of patina. It involves controlled exposure of bronze to a certain corrosive substance until the beautiful brown and green color, which usually takes years to produce, emerges in a few days.

Working with metals, especially for projects that require stability and strength among other critical properties, is a high risk. You have to be able to tell which metals corrode to which substances first. It would be better, though, to use metals that you know won’t succumb to corrosion that easily. Why not go to a trusted copper sheet supplier like Rotax Metals and ask what specific types of metal supplies you need. They specialize in all kinds of copper alloy, and so you will definitely find the materials you need and get the value for your money in the end.

Bronze Bars and Brass Channels: The Evolution of Copper

Copper is a major driver of trade, so much so that it has long been used to determine or predict the status of global economy. With telecommunication, transportation, and construction taking a new height, demand for copper is expected to go up as well. One apparent reason for this is that there’s no other metal that can substitute copper or any of its alloys. So it’s safe to say that the metal will not be obsolete anytime soon.


evolution of copper


The term copper, when used for economic purposes, represents all products that has copper as the base material. In truth, there are quite many copper alloys that have established themselves well to a point of creating whole new industries. Each of these alloys come in a variety of types of their own and with a set of unique properties that are useful for so many applications. Copper in its pure form, however, has its own valuable properties and benefited industries to boot.


Copper

Archaeological finds have long proven that copper is the first metal discovered and utilized by man. Its first practical application dates back 10,000 years. After several millennia of experiment, ancient metallurgists found out about the many unique properties of copper and put them to good use. Some of these properties are malleability and ductility, which makes copper the staple material for weapon, jewelry, and cookware making.

Today, copper is utilized for many of its other properties. Electrical wires and most electronic components are made of copper thanks to the metal’s high electrical and thermal conductivity. It also exhibits antimicrobial properties, and so many water filtration and conveyance systems are made of copper as well.


Brass

When copper is combined with zinc, a gold-like metal called brass is produced. It’s resemblance with gold is so striking you can easily mistake it for the latter in any given situation. Those who are into gold-based interior design or architecture can save a significant amount of money by using brass instead of the real thing. Nonetheless, the color as well as the properties may change by increasing or reducing the amount of zinc in the alloy.

Perhaps the most popular application of brass is the manufacture of musical instruments. In fact, an entire family of musical instruments is named after it. Compared to other metals, it produces the best sound. Apart from having an amazing acoustic property, brass is also prized for its machinability, making it a good material for various types of machine parts.


Bronze

One of the most widely held metals in history, bronze is actually just an alloy of copper. It is produced by combining copper and tin. Like brass, this combination also results in a material that has a good acoustic property, although bronze is often used for making bells instead of other musical instruments. Other elements, such as arsenic, phosphorus, aluminum, and silicon, are sometimes added to produce other versions of bronze to be utilized for special applications.

Bronze plays a crucial role in the design and construction of heavy machinery. Because it exhibits low friction and does not spark when struck against other metals, it is suitable for making gear and bearing. Of course, sculptures all around the world relish bronze’s amazing ability to expand while solidifying from a liquid state. This makes the metal easy to carve and press.

Now that you have basic knowledge of copper and two of its best alloys, it will be much easier for you to shop around for the materials you need for your project. Whether you need bronze bars and brass channel suppliers, you can get the highest quality from a reputable supplier like Rotax Metals. They specialize in copper supplies.


Different Extrusion Methods—The Making of Bronze and Brass Extrusions

Metals have been part of man’s daily life since the ancient times. Today, it’s present everywhere from within the pavement you’re walking on to the electronics inside the computer you are reading this article from. It’s hard to imagine a world without metal. Most people, however, know little about how these metals emerged in the first place, where they came from, and how they were manufactured.

extrusion methods

There are a number of methods for manufacturing metal supplies. The oldest and still practiced today is casting. It involves melting and purifying metal and pouring it into a mold. As demands for metal evolve year after year so is metalworking. New techniques with higher efficiency and better results have emerged. One of these new and more efficient techniques is extrusion.

What is extrusion?

Extrusion is a metalworking technique that involves the application of high pressure on a metal billet through a die that has a smaller opening and a differently-shaped cross-section. The die is made of a metal that is harder and tougher than the metal to be extruded through it to ensure that it will remain unchanged whether the process is cold or hot working.

Types of Extrusion

Many builders and artisans prefer extrusion for a number of reasons. It produces top surface quality and precision, and it is much faster than other metalworking techniques. To meet even more definitive and intricate specifications, extrusion has been developed into different specifications. Here are the different types of extrusion still practiced today.

  • Cold Extrusion

    When extrusion is performed while the metal billet is at room or near room temperature, the process is called cold extrusion. Because the metal billet hasn’t undergone severe chemical change, the resulting material is expected to have not experienced oxidation, has high strength, closer tolerances, and better surface finish. Materials that are commonly cold extruded include copper, aluminum, and steel. The best examples of products of cold extrusion are collapsible tubes, fire extinguisher cases, shock absorber cylinders, and gear blanks.

  • Hot Extrusion

    When extrusion is performed while the billet is about its recrystallization temperature, the process is called hot extrusion. At this temperature, the metal is no longer solid and is easier to push through the die. Unfortunately, because the billet is soft, it requires proper treatment to accurately achieve the desired shape and cross-section. One disadvantage of hot worked metal is that it may not be as compact as cold worked metals.

  • Warm Extrusion

    Heating the metal at a temperature halfway between the room temperature and recrystallization point produces extrusion of satisfying quality. This type of extrusion is called warm extrusion. This method could work for both ferrous and non-ferrous metals. Products of warm extrusion are expected to have proper balance of toughness and ductility.

If you go to your local metal supply store, you’ll find tubes and pipes of unconventional cross-sections and shapes. These are most likely products of extrusion. Not all metal extrusions, however, have the same quality. Those offered by top suppliers like Rotax Metals are very likely to be of the most desirable quality. So if you are looking to purchase brass extrusions or even bronze bars, make sure to turn to the right supplier.

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