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Blog - Deposition Materials - Heeger Materials

Deposition materials include sputtering targets and evaporation materials. Their applications have permeated into our daily life such as glass, flat panel displays, data storage, and photovoltaics.

This article explains how silicon nitride powder influences creep behavior, using scientific mechanisms and practical indicators. Each section addresses one aspect of powder properties and describes how it affects microstructure evolution and high-temperature creep performance.
This article provides a complete, engineering-level guide on what determines mean particle size during spray drying, how each variable interacts with others, and how ceramic manufacturers can systematically tune parameters to obtain consistent and high-quality powder for advanced applications.
This article presents a structured analysis of how low-temperature treatment affects nano alumina and how these changes impact its performance in ceramic applications. Drawing from scientific principles and production data, we will examine the underlying mechanisms, quantitative indicators, processing pathways, and industrial implications to give a complete and SEO-friendly exploration suitable for a ceramic-focused website.
This article provides a detailed, engineering-oriented explanation of common spray-dried granule defects, why they form, and how they can be prevented. Each section answers a key process question and includes tables or lists to clearly present mechanisms and process-parameter relationships. The goal is to give ceramic manufacturers practical insight into identifying defect origins and optimizing spray-drying conditions.
In this article, we explore how the inherent “genetic makeup” of Alumina Ceramics, defined by chemical purity and powder properties, dictates their final performance across various applications—from electronic components and medical implants to cutting tools and refractory linings. Understanding these factors ensures precise material selection, reliable product performance, and long-term durability.
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