Perform precise material and particle analysis with compact lab tools designed for additive manufacturing. Measure particle size, hardness, and internal structure to validate powders and inspect printed parts with confidence. These systems support fast, reliable decision-making and help maintain consistency across research, development, and production environments.
Resistance-furnace analyzer for fast, simultaneous carbon and sulfur in organic matrices — combustion up to 1,550 °C with up to four solid-gold infrared cells over 20 ppm to 100 %, and an optimized low-blank sample port for reliable low-carbon analysis.
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Inert-gas-fusion analyzer for oxygen and total hydrogen in metals — the sample melts in a graphite crucible in an 8.5 kW impulse furnace above 3,000 °C, with IR detection of oxygen and thermal conductivity for hydrogen.
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Inert-gas-fusion analyzer for oxygen and nitrogen in metals — the sample melts in a graphite crucible in an 8.5 kW impulse furnace above 3,000 °C, with IR detection of oxygen and thermal conductivity for nitrogen.
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Inert-gas-fusion analyzer for oxygen, nitrogen and hydrogen in metals — the sample melts in a graphite crucible in an 8.5 kW impulse furnace above 3,000 °C, with IR detection of oxygen and thermal conductivity for nitrogen and hydrogen.
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Analyzer for hydrogen in metals by hot extraction — the solid sample drops into a tilting furnace at 900–1,000 °C, and a nitrogen carrier sweeps the diffused hydrogen into a high-capacity thermal conductivity cell in 3–15 minutes.
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Dedicated surface-carbon analyzer for solid samples — combustion in a resistance furnace up to 1,000 °C with infrared CO₂ detection, from trace level to 1,000 µg/cm² in 60–90 seconds.
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Manual-lid thermogravimetric analyzer — programmable furnace plus integrated balance measures moisture, ash and volatiles in up to 19 samples per run, 50–1,000 °C. A more economical route to standard-compliant TGA.
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Automated thermogravimetric analyzer that combines a programmable furnace with an integrated balance — measures moisture, ash and volatiles in up to 19 samples per run, 50–1,000 °C.
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