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  • infrared tablet press

    The core application of the infrared tablet press (compatible with FTIR mid-infrared detection)

    The infrared tablet press is a key device for solid sample preparation in Fourier Transform Infrared Spectroscopy (FTIR). Designed for the KBr pellet method, it enables high-precision mid-infrared spectroscopy detection by compressing mixtures of solid samples and potassium bromide (KBr) into uniform, transparent, and crack-free thin discs. This process eliminates light scattering from powder samples […]

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  • application of laboratory hot presses

    The Application of Laboratory Hot Presses in Inorganic Materials

    The laboratory heating compaction machine is the core equipment for research and sample preparation of inorganic materials. It solves issues such as difficulty in forming inorganic powders, uneven microstructures, and poor performance controllability through coordinated regulation of temperature and pressure. Its applications span nearly all sub-sectors of inorganic materials, including ceramics, new energy functional materials, […]

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  • FTIR for API and Excipient Analysis

    How FTIR Is Used in the Pharmaceutical Industry for API and Excipient Analysis

    Fourier Transform Infrared Spectroscopy (FTIR) has become a cornerstone analytical technique in the pharmaceutical industry for the identification, verification, and quality control of active pharmaceutical ingredients (APIs) and excipients. Instruments such as the Hengchuang ENERGY-30 FTIR are widely adopted because they combine rapid analysis, non-destructive testing, high sensitivity, and strong molecular specificity. In pharmaceutical manufacturing, […]

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  • Hot Pressing of Polymer-Sensitive Materials

    Hench Customer Case: Singapore University — Hot Pressing of Polymer-Sensitive Materials

    Overview This solution combines a manual heated press with a glovebox, addressing the critical need for environmental protection during the hot pressing of highly sensitive, easily oxidized, hygroscopic, and highly reactive samples. It has been widely applied in lithium batteries, advanced materials, semiconductors, and academic research. Below are real-world application examples from diverse industries, detailing […]

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