{"product_id":"differential-scanning-calorimetry-test-dsc","title":"Differential Scanning Calorimetry Test (DSC)","description":"\u003cp\u003eProduct Name Differential Scanning Calorimetry Test (DSC) Product Overview English Introduction: Differential Scanning Calorimetry (DSC) is a core thermal analysis technology for characterizing the thermal phase transition behavior, thermal kinetic characteristics and thermodynamic parameters of materials, widely used in polymer materials, chemical additives, biomedicine, new energy and composite materials. Through precise programmed temperature control, it continuously detects the heat flow difference between the sample and the reference sample with the change of temperature and time, and accurately captures the thermal behaviors of materials such as melting, crystallization, glass transition, curing crosslinking, phase transition and oxidative decomposition. It can obtain key thermodynamic parameters including glass transition temperature (Tg), melting temperature (Tm), crystallization temperature (Tc), melting enthalpy, crystallization enthalpy, phase transition enthalpy and thermal stability. Equipped with Swiss Mettler DSC1 scientific research-grade differential scanning calorimeter, this testing service supports a maximum conventional temperature of 550°C. Featuring high temperature control accuracy, sensitive heat flow signal, stable baseline and excellent data repeatability, the instrument is suitable for solid samples such as powders and particles. The test results can be directly applied to scientific paper publication, material modification mechanism analysis, product process optimization, formula performance calibration and enterprise quality inspection reports. Technical Parameter English Parameters: Instrument Model: Swiss Mettler DSC1 differential scanning calorimeter, an imported high-end scientific research-grade thermal analysis equipment with industry-leading thermodynamic test accuracy, widely used in university scientific research, new material R\u0026amp;D and industrial quality inspection fields Conventional Temperature Range: Room temperature ~ 550°C, covering the phase transition, melting, crystallization and curing temperature ranges of most polymers, inorganic materials and chemical materials, meeting the thermodynamic performance test requirements of conventional materials Temperature Control Accuracy: High-precision closed-loop temperature control system with accurately controllable heating and cooling rates and extremely high temperature resolution, which can accurately capture weak glass transition and subtle phase transition thermal signals Heat Flow Test Accuracy: Ultra-high sensitivity heat flow sensor with rapid signal response, which can accurately identify micro thermal changes and effectively distinguish subtle thermodynamic performance differences caused by material modification Baseline Stability: Precisely calibrated before delivery and baseline calibrated before testing, the whole test process features stable baseline without drift or stray peaks, with extremely low data error and excellent repeatability Testing Atmosphere: Supports switching between nitrogen inert atmosphere and air oxidation atmosphere, which can simulate different working conditions such as material processing, service and high-temperature aging Testing Modes: Supports multiple test modes such as single heating, heating and cooling cycle, constant temperature maintenance and multi-stage programmed temperature control, adapting to thermal performance research schemes of different materials Data Output Dimensions: Outputs complete parameters including original DSC heat flow curve, glass transition temperature, melting temperature, crystallization temperature, melting enthalpy, crystallization enthalpy, phase transition enthalpy and phase transition start\/end temperature Sample Adaptability: Suitable for various dry solid powder and granular samples, compatible with polymer polymers, resins, rubber and plastics, inorganic powders, composite materials and new energy materials Product Features Swiss imported high-precision equipment with authoritative and universal data: Adopts Swiss Mettler DSC1 top-level thermal analysis instrument, a global benchmark equipment for material thermodynamic characterization. The test data complies with international and national standards, and can be directly used for SCI papers, patent applications, project conclusions and authoritative quality inspection reports. Ultra-high heat flow sensitivity for accurate capture of weak phase transition: Equipped with a high-sensitivity heat flow sensing system, it can accurately identify weak glass transition, micro phase transition and low enthalpy thermal behaviors of materials, distinguish subtle thermodynamic differences caused by doping, modification and compounding, and adapt to refined scientific research analysis. Accurate and stable temperature control with excellent data repeatability: Closed-loop precise temperature control technology ensures uniform and stable heating and cooling rates with no baseline drift during the whole process. Multiple parallel test curves have high coincidence, with repeatable and traceable data. Multi-mode testing with comprehensive scenario adaptation: Supports multi-atmosphere and multi-program temperature control test modes, which can simulate various working conditions such as high-temperature processing, normal temperature use, high-temperature aging and oxidation failure of materials to truly restore material thermodynamic properties. Trace sample requirement with controllable test cost: Only 10-20mg dry powder\/granular sample is required for testing without complex pretreatment, with low sample loss, suitable for the detection of high-value and trace experimental materials. Full-dimensional data output with high scientific research practicability: A single test completely outputs core parameters such as phase transition temperature and enthalpy value, which can be directly used for material heat resistance judgment, crystallinity calculation, modification mechanism analysis and process parameter optimization. Transparent timing billing with high cost performance: Standardized hourly billing with transparent rules and no hidden charges, and efficient delivery within 5-7 working days, adapting to various scenarios such as batch sample screening, material control experiments and industrial product thermal performance quality inspection. Application Fields Polymer Material Field: Test of glass transition temperature, melting and crystallization performance and thermal stability of polymers such as plastics, rubber, resins, polyesters and polyolefins, used to evaluate the temperature resistance grade, molding process, aging performance and service life of materials. Composite Material Field: Phase transition and enthalpy test of glass fiber\/carbon fiber reinforced composites, organic-inorganic composite modified materials and flame retardant composite materials, analyzing the heat resistance performance and crystallization behavior changes of composite systems. Fine Chemical Industry Field: Curing reaction, melting phase transition and crystallization performance test of curing agents, adhesives, coatings, wax auxiliaries and phase change energy storage materials, guiding the formula optimization and production process debugging of chemical products. New Energy Material Field: Thermodynamic performance characterization of lithium battery separators, electrode binders, energy storage phase change materials and optoelectronic polymer materials, evaluating the high-temperature stability and service safety of materials. Biomedical Field: Phase transition temperature and thermal stability test of pharmaceutical excipients, polymer drug carriers and biodegradable materials, providing data support for the research of drug storage, processing technology and degradation mechanism. Phase Change Energy Storage Material Field: Test of melting\/solidification temperature, phase change latent heat and thermal cycle stability of various organic and inorganic phase change materials, used for performance calibration and application optimization of energy storage materials. Material Modification Mechanism Research Field: Comparing DSC curve changes of materials before and after doping, modification, crosslinking and compounding, analyzing the law of glass transition temperature shift, crystallinity change and enthalpy fluctuation, and providing core theoretical data for material thermal performance modification.\u003c\/p\u003e","brand":"xfnano","offers":[{"title":"1 sample Standard upper temperature limit 550°C 111285 \/ Store at room temperature \/ 365days","offer_id":57280583401850,"sku":"111285","price":39.06,"currency_code":"USD","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0907\/3606\/6938\/files\/1_27871cef-ce01-415a-9a0e-d29d5e516d17.png?v=1780024497","url":"https:\/\/chinanano.com\/es\/products\/differential-scanning-calorimetry-test-dsc","provider":"xfnano","version":"1.0","type":"link"}