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HENCH Vertical Automatic Heating Press: Precision Hot-Pressing Sample Preparation Solution for Laboratories
Read moreIn the research and development of polymers, composite materials, rubber-plastics, and new functional materials, hot-press forming is a critical step in sample preparation. Conventional hot-press equipment commonly suffers from large temperature control deviation, obvious pressure fluctuation, considerable manual interference, and poor sample repeatability. These drawbacks readily lead to sample defects such as air bubbles, warpage, […]
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500℃ Circular Heating Mold: High-Temperature Sample Preparation to Empower Material Analysis
Read moreIn material science, polymer R&D, inorganic powder research, and infrared spectroscopy sample preparation experiments, molds are the core components that determine the quality of formed samples. Conventional pressing molds cannot withstand high-temperature working conditions and often suffer from difficult demolding, sample cracking, and uneven heating, which directly impair the accuracy of subsequent test data. Developed […]
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HENCH IR Desiccator: Precise Humidity Control, Consumable-Free, Long-Term Protection for FTIR Spectrometers
Read moreFTIR spectrometers are widely used in university research, pharmaceutical quality control, chemical analysis and material testing. However, sensitive internal components, including optical lenses and detectors, can be affected by prolonged exposure to humid air. Excessive moisture may cause lens mildew, baseline drift and measurement errors, affecting spectral accuracy and instrument service life. Designed for Thermo […]
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Isostatic Pressing for Crack-Free and Delamination-Free Pellets
Read morePellet cracking, delamination, internal porosity, and uneven density can compromise powder compaction experiments. These problems often arise when conventional uniaxial presses apply pressure from a single direction. Friction between the powder and die wall can create density gradients and residual stress inside the compact. These defects may become more obvious during demolding, sintering, or later […]



