Nickel metal

Xometry provides many manufacturers with all sorts of alloys and other metals, and relevant services. We have a wide range of manufacturing capabilities, including 3D printing, laser cutting, CNC machining, and many more. If you’d like to learn more about nickel alloys or request a free no-obligation quote, reach out to a Xometry representative today.

Nickel alloys are typically reserved for high-performance applications because they tend to be more expensive than other types of metal. As we’ve seen, nickel alloys are usually strong and tough, and that can make them a pain to machine. If you’re interested in machining this type of alloy, you’ll probably need extra tools.

It’s believed that the first nickel alloy was used in 200 BCE in China. That’s the earliest record available, and the material was referred to as “white copper,” which experts believe was an alloy of nickel and silver. Fast forward to 1751, A. F. Cronstedt, a German scientist, managed to isolate nickel from the niccolite mineral. Copper and zinc were often found in these first nickel alloys, which came to be known as “German silver” and weren’t really used for anything other than ornaments.

Nickel alloys, also known as high-performance alloys, are metals that contain some nickel in their elemental makeup to improve some of their properties and make them better suited for applications outside their typical wheelhouse. Let’s look at everything to do with nickel alloys, including where they’re used, the different types, and their characteristics and physical properties.

Nickelion

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It’s generally quite hard to differentiate nickel alloys from other types of metals. Nickel alloys can seem slightly dull when their surface is rough, but when it’s smooth, they can be shiny and reflective. Here’s an example of what copper-nickel alloy rods look like:

In this table, we break down and compare the physical properties associated with some of the most common types of nickel alloys:

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In 1952, the plastic injection molds could only produce twelve LEGO bricks at a time, requiring workers to physically feed the raw plastic pellets into the machine and manually trim the extra plastic off the bricks. As injection molding technology advanced into 3D printing, so did the production efficiency and product quality of LEGOs. LEGO’s mold gate and runner system developed, with the runner system being modified to automatically remove extra plastic from produced bricks, enabling for a one-step injection mold process.

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LEGO Minifigures are yellow for a reason. Almost every LEGO Minifigure is yellow. This is for reasons other than aesthetics or branding. Instead, it was a conscious choice not to designate the Minifigures a distinct ethnicity. When it comes to licensed LEGO mini-figures, such as those based on movies, the ethnicity of the actor who plays the character is preserved. This not only preserves ethnicity but also eliminates any fears about favorite characters being ‘yellow-washed.’

Nickel

LEGOs are one of the most iconic and timeless children’s toys, yet you may be surprised to learn that they would not exist today without plastic injection molding. We look back at the history of LEGOs and how injection molding technology transformed a concept into a classic toy.

As his toy company grew, Christiansen looked for a solution to enhance manufacturing efficiency and made a purchase that would put LEGO on the map and give it the household name it is today. He bought a plastic injection molding machine and began making plastic toys instead of wooden ones.

Each LEGO plastic injection mold can cost up to $200,000 in price. Why is the pricing so exorbitant? Because of its very accurate shape, each LEGO plastic injection mold is made to the highest standards and must be checked and cleaned regularly by a qualified LEGO crew to assure faultless block manufacturing.

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Oct 24, 2018 — Common Metal Materials for CNC Machining · Aluminum 6061 · Aluminum 7075 · Brass · Magnesium AZ31 · Stainless Steel 303 · Stainless Steel 304.

Nickelatomic mass

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There isn’t a single person alive who hasn’t played with LEGO at some point throughout their lives. We hand down bags of LEGO bricks from generation to generation, yet the firm still produces a lot of new LEGO every year. It is the world’s second-largest plastic toy mold manufacturer. The stringent standards used in the manufacture of the small blocks are one of the reasons for their popularity.

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If a metal contains nickel as one of its primary elements, it’s classified as a nickel alloy. Some types of nickel alloys are even classed as “superalloys” because, if you compare them to other metals, their oxidation and creep resistance is off the charts and allows them to be used at temperatures of over half their melting points. Although not all superalloys are nickel alloys, the vast majority of them are nickel-based. Here’s an image of a nickel alloy in use:

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Today, about 75 billion LEGO bricks are produced globally each year, with over 3,700 variations of the original plastic bricks.

All of the fundamental Lego parts begin as plastic granules made mostly of acrylonitrile butadiene styrene — a substance Lego is attempting to avoid. These grains are transformed into identifiable bricks via a highly automated plastic injection molding service process. Because the production of a Lego brick necessitates extremely high temperatures and massive machinery, machines rather than humans manage the majority of their production.

LEGOs can endure forces of up to 950 pounds! LEGOs are designed to survive for decades due to their incredibly small cellular architecture and military-like plastic manufacturing perfection, ensuring that they always fit flawlessly together. When you combine their strength with sharp angles and the characteristic studs, it’s easy to see why walking on a LEGO brick is so painful.

Perhaps you are not the next Ole Kirk Christiansen (or perhaps you are!) If you want to build anything utilizing the plastic mold injection process, or just learn more about the journey of expediting the manufacturing of a tool or component, the staff at Immould is more than glad to assist.

After James Riley made an iron-chromium alloy in 1913, W. H. Hatfield figured out that adding nickel to these alloys would make them incredibly corrosion-resistant. This led to the creation of what we now know as austenitic stainless steel.

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Their high melting points can make them difficult to weld, but it’s not impossible. If you want to create a sufficient pool of weld metal, you’ll need more heat, but if you use more heat, there’s more chance of residual stress which can deform the component. Basically, it needs a lot of care. When in long-term contact with the skin, some nickel alloys can cause an allergic reaction. That’s why they’re probably not the best choice for wearables and medical devices. Also, when exposed to the elements, some nickel alloys (especially copper-based) will tarnish over time.

Lego’s history began in 1932 in a Danish carpentry workshop and continues into the twenty-first century as a popular and highly profitable line of construction toys and related products and services, including Lego board games, retail stores, Lego video games, Lego films, Legoland theme parks, and Lego Serious Play consultant services, with a significant impact on various areas of popular culture.

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What began as the aspirations of a father and son and an injection molding machine has evolved into an iconic toy that spans decades, with LEGOs becoming one of the most popular toys for both children and adults. Ole Kirk Christiansen probably had no idea that what he started with a single plastic injection mold machine would grow into amusement parks, life-size monuments, and even Hollywood blockbuster movies.

Every LEGO ever manufactured is designed to fit exactly with every other LEGO ever made: LEGO maintains size tolerances on the order of.0005 – or, in layman’s terms, deviations of half a thousandth of an inch. That means the LEGO kit you bought in fourth grade will still fit with the LEGO set your grandchild received for their first birthday. LEGOs are almost ageless due to superior process control and logistical integrity, with each one designed to be used in any LEGO brand kit, regardless of when or where it was purchased.

Not all metals can be mixed with nickel, but some of the most common elements are iron, chromium, aluminum, molybdenum, copper, cobalt, and titanium. To make nickel alloys, you’d have to follow the same process used for pretty much every other metal alloy. The alloying elements need to be decided on, and their ratios need to be carefully chosen. Once that’s done, the elements are all melted together in something like an arc furnace, which also purifies them, and then the alloy is cast into ingots, and off to be formed using either cold or hot processing.

The Origins of LEGO’s lego injection mold manufacturer Ole Kirk Christiansen, a Danish carpenter, began constructing wooden toys with his 12-year-old son, and as demand for their toys rose, he eventually founded the firm “LEGO,” which is Danish for “play well.”

Now that we’ve gone through some of the physical properties of nickel alloys, let’s take a closer look at their chemical properties:

The LEGO molds are the company’s most closely guarded secret, and it has been said that the original plastic molds were buried beneath the facility to safeguard this trade secret. Granules are heated to 450 degrees before being injected into molds under 25 to 150 tons of pressure for approximately 7 seconds before being allowed to cool on a rolling conveyor belt.

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Injection molding is the process of producing plastic items by injecting molten plastic into a prefabricated metal mold. The molten plastic is injected and allowed to cool at a set temperature and pressure. It is discharged as a formed component once it has hardened and conformed to the shape of the mold.

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LEGO components are not biodegradable… but they are working on changing that. Right now, if you visit the LEGO website, you can find information on how to recycle LEGO. The first option is to give them to someone else or donate them. LEGO is ideal for passing on to future generations. All of the parts are designed to be compatible with blocks from older LEGO sets.

The plastic mold design injector, intended to quickly and accurately construct hundreds of identical toy parts and pieces, enabled Christiansen to produce large quantities of the same toy item and is credited with inventing the stacking plastic parts known as LEGOS.

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Kristiansen bought a woodworking factory in Billund that had been in operation since 1895 in 1916. The business largely assisted in the construction of houses and furnishings, and it had a modest crew of apprentices. In 1924, a fire ignited some wood shavings, causing the workshop to burn down. Christiansen built a larger workshop and strove to develop his firm even further. When the Great Depression struck, he had fewer customers and was forced to concentrate on smaller projects. As a design help, he began creating smaller replicas of his items. These little miniatures of stepladders and ironing boards prompted him to start making toys.

LEGOS, like many other big manufacturers, is embracing green in its manufacturing procedures to help reduce unneeded plastic waste. In addition to incorporating plant-based elements into the manufacturing process in 2018, LEGO has updated its plastic mold process to allow any unfinished or broken components to be salvaged and repurposed rather than wasted as plastic trash.