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Polymer Manufacturing and Processing![]() For the manufacturing and processing of the most varied of polymers, knowledge of the thermal properties plays a decisive role. By means of modern thermoanalytical measuring methods, the following questions in the fields of product development, quality assurance, failure analysis and process optimization can be answered. Please choose your application area: Here you will find literature for the polymer field for download as well as order forms for application books for the polymer sector. Our product recommendation for you: DSC 200 F3 Maia®This newest Differential Scanning Calorimeter (DSC) development at NETZSCH unites compactness, robustness and simple operation with high detection sensitivity for your preferred application in material quality control and failure analysis, especially in polymer processing. more information DSC 204 F1 Phoenix® Very high sensitivity and resolution can be realized with this premium Differential Scanning Calorimeter (DSC), which also features an automatic sample changer (ASC), temperature modulation (TM-DSC), baseline optimization (BeFlat®), correction of thermal resistance and time constants (DSC-correction), even coupling to QMS and FTIR as well as UV-extension for photo-calorimetry. more information Photo-DSC 204 F1 Phoenix® The Photo-DSC 204 F1 Phoenix®, Differential Photocalorimeter, is our answer to the market trend seeking solutions for analyzing the UV curing of light-activated resin systems, adhesives, paints, coatings and dental masses. Further application areas include determining the effect of light on the shelf life of foods or technical oils, fats and lubricants. more information TG 209 F3 TarsusThis easy-to-use thermo-microbalance (TGA) was developed especially for routine applications in the field of plastics, but also for the chemical industry. It is the ideal starter unit up to 1000°C and, together with the DSC 200 F3 Maia®, represents a cost-effective overall concept. more information STA 449 F3 Jupiter®The new STA 449 F3 Jupiter® combines the advantages of a high sensitive thermobalance and a true Differential Scanning Calorimeter. Various furnaces and TG, TGA-DTA- and TGA-DSC-sensors can be used, whereby the system can be easily optimized for the most versatile applications. more information NEW: TMA 402 F1/F3 Hyperion®What sets the new TMA 402 F1/F3 Hyperion® apart is the modular concept of interchangeable furnaces covering the temperature range from -150°C to 1550°C, which are also compatible with other NETZSCH instruments. A large number of sample holder types and adjustment possibilities are available. The new TMA 402 F1/F3 Hyperion® can be operated with a broad range of force, without added weight, digitally programmable from -3 N to 3 N. more information DMA 242 CThe robust construction of the DMA 242 C and the high resolution of the deformation measuring system enable precise measurements on both very rigid and very soft samples. The most varied of deformation types, digital signal filtering, kinetic evaluation and frequency extrapolation make the DMA 242 C to a real all-rounder. more information DEA 230 Epsilon SeriesThere are three different systems in the 230 Epsilon series of Dielectric Cure Monitors: the high-performance, 2-channel DEA 230/2 with the broadest measurement and frequency range, particularly for product development and process optimization, the single-channel DEA 230/1, and the 10-channel DEA 230/10, also suitable for applications in manufacturing. more information LFA 447 NanoFlash®In the LFA 447 NanoFlash®, a powerful Xenon flash lamp is used instead of the laser used in other LFA instruments. An integrated sample changer and easy accessibility to the sample receptacle allow high sample throughput for routine applications up to 300°C. more information TG 209 F1 Libra®This premium thermobalance (TGA), through flexibility in the fittings, covers all imaginable applications of a modern TGA in the range up to 1100°C. High sensitivity, short cooling times and the automatic sample changer (ASC), make this TGA particularly well-suited for the compositional analysis of plastics and rubbers. more information HFM 436 LambdaWith the Heat Flow Meter, HFM 436 Lambda, the thermal conductivity of large-sized, plate-formed insulators is investigated at a fixed or adjustable temperature gradient. The built-in PC – or an externally connected one – delivers the precise measurement data after a short compensation time. more information |
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