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Tungsten steel belongs to cemented carbide, but cemented carbide is not necessarily tungsten steel. Generally speaking, tungsten steel is smelted by adding tungsten raw materials into molten steel by steelmaking process, and its tungsten content is generally 15-25%. While the cemented carbide is sintered with cobalt or other bonding metals using powder metallurgy technology with tungsten carbide as the main body, and its tungsten content is generally more than 80%.
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Commonly used cemented carbides can be divided into three categories according to their composition and performance characteristics: tungsten-cobalt, tungsten-titanium-cobalt, tungsten-titanium-tantalum (niobium), and the most widely used cemented carbides in production are tungsten-cobalt and tungsten-titanium-cobalt cemented carbides.
The discovery and application of piezoelectric crystals such as quartz, lithium niobate, and lithium tantalate have not only profoundly influenced the direction of modern scientific and technological progress but also demonstrated the great potential of materials science in solving real-world problems.
Thank you for reading our article and we hope it can help you to have a better understanding of the difference between the cemented carbide and tungsten steel. If you want to know more about cemented carbide and tungsten steel, we would like to advise you to visit Stanford Advanced Materials (SAM) for more information.
Simply put, all alloys with a hardness exceeding HRC65 can be called cemented carbide, so tungsten steel belongs to cemented carbide, but strictly speaking, cemented carbide is not necessarily tungsten steel.
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For a long time, many people think that cemented carbide is tungsten steel. In fact, there are certain differences between the two, so in this article, let's take a look at the difference between cemented carbide and tungsten steel.
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Tungsten steel, also known as tungsten-titanium alloy, high-speed steel or tool steel, has a hardness of Vickers 10K, second only to diamond, and refers to a sintered composite material composed of at least one metal carbide. The main advantage of tungsten steel lies in its high hardness and excellent wear resistance. It can still have high hardness even at 1000°C. The grain size of the carbide component is usually between 0.2-10 microns.
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Chin Trento holds a bachelor’s degree in applied chemistry from the University of Illinois. His educational background gives him a broad base from which to approach many topics. He has been working with writing advanced materials for over four years in Stanford Advanced Materials (SAM). His main purpose in writing these articles is to provide a free, yet quality resource for readers. He welcomes feedback on typos, errors, or differences in opinion that readers come across.
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Discover how d33 values in piezoelectric crystal materials influence their efficiency and performance in practical applications, including sensors, actuators, and energy harvesters. This article delves into the factors affecting d33 and its critical role in optimizing piezoelectric technologies.
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Cemented carbide is made of hard compounds of refractory metal and bonding metal through the powder metallurgy process, which is an alloy material with extremely high hardness. It has the characteristics of high hardness, high strength, good toughness, excellent wear resistance, and heat resistance. Thanks to its high hardness and excellent wear resistance, it remains basically unchanged even at a temperature of 500°C, and can still have a high hardness at 1000°C.