All posts by: Non-Ferrous Crucible Inc.

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Tantalum Wire Manufacturing Process The manufacturing of tantalum wire involves a series of precise and controlled steps to ensure high quality and specific properties for a variety of applications. Powder Metallurgy The process begins with the creation of ultra-pure, uniform metal powders through advanced chemical reduction techniques. These powders are then mixed with alloys, if […]

In modern industry, silicon nitride ceramic structural parts are emerging and have become key materials in many fields with their unique performance advantages. Its characteristics are as follows: High strength and high hardness The crystal structure of silicon nitride ceramics gives it excellent strength and hardness. Its high strength can maintain good structural integrity when […]

It is used in medical imaging and industrial applications. The heart of this technology is surrounded by an element that is often overlooked: tungsten plates. Tungsten plates are dense and have excellent radiation shielding properties, which makes them extremely valuable in X-ray systems. This blog explores the role of tungsten plates in X-ray generation technology […]

IntroductionNitinol (Nickel-Titanium alloy), a revolutionary shape memory alloy (SMA), is redefining industries such as healthcare, aerospace, and advanced manufacturing with its unique superelasticity and shape memory effect. This article provides an in-depth analysis of Nitinol Sheet—its core properties, cutting-edge applications, and expert purchasing strategies—to empower engineers and decision-makers in leveraging this transformative material. 1. What is […]

When using boron nitride crucibles, the following matters need to be noted: Temperature control: Boron nitride crucibles have excellent high-temperature resistance, but it is still necessary to pay attention to the use temperature not exceeding its maximum operating temperature (about 1800°C in a vacuum and 2100°C in an inert atmosphere) to avoid damage to the […]

Due to their excellent comprehensive properties, titanium and titanium alloys are widely used in the field of biomedicine for implant materials, surgical and rehabilitation equipment, medical equipment, etc. 1. Implant materials As load-bearing components are implanted in the body, implant materials must have a certain strength, and at the same time need to have good […]

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