Analysis case: Characteristic analysis of thermoplastic and thermosetting resins using DSC and DMA.
A clear explanation of thermal property analysis using DSC (Differential Scanning Calorimetry), DMA (Dynamic Mechanical Analysis), and other methods. An introduction to various devices is also included.
Our company is engaged in the development and sales of various devices for thermal analysis, rheology, microcalorimetry, and mechanical analysis, boasting numerous installations worldwide. Currently, we are offering a "technical document" that provides a brief explanation of representative DSC, MDSC, DMA, etc., used for the property analysis of thermoplastic and thermosetting resins! [Overview of Contents] - The effect of thermal annealing on CFRTP (carbon fiber-reinforced thermoplastic resin) - Analysis of glass transition and curing using Modulated DSC - Determination of the glass transition temperature of resins through viscoelastic measurements - The impact of plasticizer addition on polyvinyl chloride *Please view the document by clicking the "Download" button. Feel free to contact us with any inquiries.
basic information
【Discovery Series】 "DSC" Measures temperature transitions in materials along with related temperature and heat flow. Equipped with patented Fusion Cell technology, it offers excellent performance in baseline stability, sensitivity, resolution, reproducibility, and reliability. "DMA" The new DMA850 provides superior deformation control and faster dynamic response, making it the best DMA in the series' history due to enhanced ease of use. "Hybrid Rheometer" Improves various performance and specifications, achieving accurate strain, strain rate, stress control, and normal force, and features our innovative patented Smart Swap geometry and Smart Swap temperature control system.
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August Event! Polymer Evaluation Webinar (Rheology)
Date and Time: August 29, 2024 (Thursday) For details and registration, please use the link below! https://pages.waters.com/2024-08-29-WBN-TAJPPolymerEvaluationSeminarRheology_LP-Registration1.html 1:00 PM - 3:00 PM [Title] Fundamentals of Viscoelastic Measurement Using Rotational Rheometers and Applications to Polymer Materials [Overview] Rheology is the scientific field concerning the deformation and flow of materials, utilized across a wide range of markets including petrochemicals, food, and pharmaceuticals. In polymers, rheological measurement techniques significantly cover the manufacturing value chain from synthesis to formulation, process characteristics, and the performance of final products. This presentation will focus on the fundamentals of rotational rheometers, followed by examples of polymer rheology analysis centered on thermoplastic and thermosetting resins, as well as elastomers. [Speaker] Masayoshi Takano, Application Department, TA Instruments
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July event! Short webinar on evaluating viscoelasticity of molten materials.
Event Date and Time: July 4, 2024 (Thursday) For details and registration, please use the link below! https://pages.waters.com/2024-07-04-WBN-TAJP-AutoTrimShortWebinar_LP-Registration1.html 1:00 PM - 1:40 PM [Title] Measurement Methods and Evaluation Cases of Thermal and Light-Curable Resins Using a Rotational Rheometer [Overview] Rotational rheometers possess excellent capabilities to evaluate an extremely wide range of viscosity and elasticity, spanning several orders of magnitude from low-viscosity liquids to high-elasticity solids. In the rapidly growing electronics industry, thermal and light-curable resins are widely used for encapsulation and adhesion in semiconductors and electronic devices. This presentation will introduce the lineup of equipment and accessories designed to meet the advanced technical requirements for these materials, along with measurement examples. [Speaker] Masayoshi Takano, Application Department, TA Instruments
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June event! Short webinar on Dynamic Mechanical Analysis (DMA)
Event Date and Time: June 21, 2024 (Friday) For details and registration, please use the link below! https://pages.waters.com/2024-06-21-WBN-TAJP-DMAShortWebinar_LP-Registration1.html 1:00 PM - 1:40 PM [Title] Three Types of DMA Instruments: Features and Measurement Examples [Overview] Understanding the mechanical properties of materials is crucial for determining and ensuring product performance, reliability, and processability. DMA: Dynamic Mechanical Analyzer measures the response of stress and strain under mechanical deformation. Our company offers three types of DMA instruments, providing solutions tailored to the measurement content. We will introduce the features of each instrument and measurement examples. [Instructor] Yasuki Otsuka, Applications Department, TA Instruments
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*Application Closed* Hosted by the experts in thermal analysis and viscoelasticity! Free online seminar on January 15 - Re: Rheology -
★ T.A. Instrument ★ Announcement of the Online Live Seminar on Rheology We are pleased to announce an online seminar that will be held on January 15th, 2021. Due to the popularity of the online rheology seminar we held in May of this year, we have decided to hold it again. Feel free to participate from your home or workplace. ● Date and Time: January 15, 2021 (Friday) 13:30 - ● Participation Fee: Free ● Participation Tool: Zoom (planned) Please check the following URL for details. https://reg34.smp.ne.jp/regist/is?SMPFORM=mis-lfleke-2c81dbc799c7197ea97011c8ea76861c
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*Application Closed* Hosted by experts in thermal analysis and viscoelasticity! Free online seminar on January 14 - Re: Thermal Analysis -
★ T.A. Instrument ★ Announcement of Online LIVE Seminar on Thermal Analysis We are pleased to announce an online seminar on thermal analysis to be held on January 14, 2021. Due to the popularity of the online thermal analysis seminar held in May of this year, we have decided to hold it again. Feel free to join from your home or workplace. ● Date and Time: January 14, 2021 (Thursday) 13:30~ ● Participation Fee: Free ● Participation Tool: Zoom (planned) For more details, please check the URL below. https://reg34.smp.ne.jp/regist/is?SMPFORM=mis-lflekc-8380f8032a474c74b8886788de350993