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Specific classification of 3D printed metal powders

Imagine a world where complex metal parts materialize layer-by-layer, conjured from a vat of shimmering dust. This isn’t science fiction; it’s the reality of 3D printed metal powders. But not all these metallic marvels are created equal. Understanding how 3D printed metal powders are classified is crucial for unlocking their

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Laser Beam Powder Bed Fusion (PBF-LB)

3D printed cobalt chromium alloy for Medical device manufacturing

Imagine a world where damaged bones can be repaired with custom-made implants perfectly mimicking their natural form. Imagine a future where surgeons have access to intricate medical devices designed specifically for each patient’s unique anatomy. This is the exciting reality that 3D printed cobalt chromium (CoCr) alloy is bringing to

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High-temperature alloy C276

Which 3D printed nickel-based alloy powder can be used in aerospace

Imagine a bird soaring effortlessly through the sky. Now, picture a jet engine, the beating heart of a modern aircraft, propelling it across continents at phenomenal speeds. Both marvels of engineering share a crucial need: lightweight, incredibly strong materials that can withstand extreme temperatures and harsh environments. Enter the fascinating

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High-temperature alloy C276

Which 3D printed stainless steel powders can be used in aerospace

The aerospace industry is constantly pushing the boundaries of what’s possible. Imagine crafting lightweight, super-strong aircraft parts with intricate designs that were once impossible to manufacture. This futuristic vision is becoming a reality thanks to 3D printing technology. But what exactly goes into the printer to create these marvels of

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