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Blog - Technical Ceramics - Heeger Materials

Ceramic end effectors are used to carry products, such as wafer silicon wafers, which require thermal stability and can be used in high temperatures of more than 2,000 degrees without causing pollution. This is because alumina ceramics have the advantages of high temperature and wear resistance.

Explore the potential of piezoelectric ceramics in shaping the future of electronics with applications in energy harvesting, wearable devices, and IoT technologies.
In this article, we’ll explore zirconia’s identity through the lens of material science, compare it to various metals and ceramics, and clarify what truly makes it unique. Whether you're in material procurement, product development, or SEO research, this article will give you a detailed and accurate perspective on zirconia’s properties, applications, and how it stacks up against both ceramics and metals.
This article explores how piezoelectric ceramics work, why lead content is a problem, which lead-free formulations are emerging, how they perform, where they are used, and what’s next. By the end, you’ll be ready to evaluate lead-free options for design, sourcing, and regulatory strategy.
This article explores the material science behind its hardness, how it compares with other ceramics and metals, and why it remains a top contender in high-performance applications.
This guide covers essential industry standards and specifications for niobium and niobium alloys, emphasizing their applications in high-performance sectors like aerospace, energy, and electronics.
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