TA Instruments

TA Instruments

电器、电气和电子产品制造业

New Castle,DE 17,946 位关注者

The World Leader in Thermal Analysis, Rheology, and Microcalorimetry.

关于我们

TA Instruments provides innovative material characterization instruments that are widely used for research, analysis, and quality control in the evaluation of physical properties. We are the world’s leading supplier of thermal analysis, rheology, and microcalorimetry instruments, and our product areas have expanded to include thermal conductivity & diffusivity, dilatometry, rubber testing, and dynamic mechanical characterization. TA Instruments' reputation for high technology products, quality manufacturing and unbeatable after sales support is why more customers recommend TA products to their colleagues around the world. Headquartered in New Castle, Delaware, TA Instruments prides itself on the technical competence and professionalism that our sales force offers, as well as the largest worldwide service and support team in the industry. We are the only thermal analysis, rheology, and microcalorimetry supplier recognized worldwide for our prompt, courteous and knowledgeable service staff, the hallmark of our company. With direct operations in 24 countries, we are uniquely positioned to support all of our customers with an extensive local support network. We are committed to providing high reliability and high-performance products to meet the needs of our customers.

网站
https://www.tainstruments.com/
所属行业
电器、电气和电子产品制造业
规模
501-1,000 人
总部
New Castle,DE
类型
上市公司
创立
1990
领域
Instrumentation、Thermal Analysis、Rheology、Microcalorimetry、Thermophysical Properties、Polymers、Pharmaceuticals、Composites、Food science、Life science、Materials Science、Dilatometry、Mechanical Testing、Thermal Conductivity、Flash Diffusivity和Medical Devices

地点

TA Instruments员工

动态

  • 查看TA Instruments的公司主页,图片

    17,946 位关注者

    Introducing the Discovery Core Rheometer, the first system to combine wide-ranging measurements of viscosity and viscoelasticity with streamlined, walk-up usability. The Core Rheometer empowers every user to perform rheological measurements, guiding formulation development, optimizing performance and ensuring product quality. Learn more: https://lnkd.in/e6iQm3ex #Rheology #MaterialsAnalysis #ProductDevelopment #QualityControl

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    17,946 位关注者

    Drug developers need thermal stability data to guide critical decisions in formulation and quality control. High-throughput DSC techniques are transforming #biopharmaceuticals development. Read this blog: https://lnkd.in/gJdy6XFD to learn more on how it’s revolutionizing thermal stability testing. #DrugDevelopment #BioPharma

    RS-DSC: The Ultimate High Throughput DSC for Rapid Screening

    RS-DSC: The Ultimate High Throughput DSC for Rapid Screening

    https://www.tainstruments.com

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    17,946 位关注者

    What is DMA, and how does it relate to thermal analysis and rheology? Jeffrey A. Jansen gives a great overview??

    查看Jeffrey A. Jansen的档案,图片

    Plastic Industry Expert / Materials Strategist / Failure Analysis and Root Cause Expert / Problem Solver

    Dynamic Mechanical Analysis: Where Thermal Analysis Meets Rheology Dynamic Mechanical Analysis (DMA) sits at the intersection of thermal analysis and rheology, offering insights into the performance of materials in their solid state—evaluating how molded parts perform under real-world service conditions. What is Thermal Analysis? Thermal analysis involves studying how materials respond to changes in temperature or time. It measures changes in physical properties as a function of temperature or time. This helps predict how materials will behave under different temperature conditions or over time in service. What is Rheology? Rheology is the study of the flow and deformation of materials, encompassing both liquid and solid states. In materials science, it primarily focuses on the viscoelastic properties of substances—how they deform under stress and how they flow under different conditions. Classic rotational rheology examines materials in their molten state, focusing on the flow behavior and moldability of resins during processing. This is crucial for understanding material behavior during manufacturing processes like molding or extrusion. In contrast, DMA assesses the mechanical properties of materials in the solid state. This is important for predicting how molded products will perform in their intended applications. DMA quantifies critical viscoelastic properties: Tensile Storage Modulus, E’ (Elastic Behavior): Measures stiffness. Tensile Loss Modulus, E” (Viscous Behavior): Highlights energy dissipation. Tan δ (Damping): Shows the balance between elasticity and viscosity. From Processing to Performance Rotational rheology ensures smooth resin flow and proper moldability during manufacturing, while DMA validates that the final molded part will meet performance expectations in its service environment. By combining the insights of these complementary techniques, material scientists and engineers can optimize both processing efficiency and product reliability. Together, these tools provide a comprehensive picture of a material's lifecycle—from manufacturing to end use. As my friend Gregory Kamykowski from TA Instruments says all the time, “Rheology is fun,” and that includes dynamic mechanical analysis. Want to explore how these techniques can help with material challenges or product development? Let’s connect and discuss further, [email protected]. #plastics #polymerscience #rheology #thermalanalysis #DMA

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  • 查看TA Instruments的公司主页,图片

    17,946 位关注者

    TA Instruments proudly partners with academic institutions to empower researchers with precision tools and expert support, driving innovation across industries and shaping the future. Learn more about our year-round academic deals: https://lnkd.in/envbkNEv From breakthroughs in batteries and polymers to advancements in biologics and beyond, our instruments are designed to revolutionize your research and fuel discovery. #Education #ScienceAndTechnology #StemEducation

  • 查看TA Instruments的公司主页,图片

    17,946 位关注者

    Are you testing lithium-ion battery materials? TA Instruments is a trusted partner in academia, providing cutting-edge tools to support your research. Learn more about our lab packages: https://lnkd.in/eY2P_faD Our Academic Deals and Battery Lab Packages make it easier than ever for university labs to analyze slurries, optimize battery materials, and drive breakthroughs in energy storage. From powder rheology to impedance testing, our instruments empower you to take your research further.

  • 查看TA Instruments的公司主页,图片

    17,946 位关注者

    We were proud to have Eng. Frederico Mendes Jr. join the celebration of the 10th anniversary of IPT Lightweight Structures Laboratory (LEL) at S?o José dos Campos Technology Park in S?o Paulo. The laboratory has had an inspiring and transformative impact over the last decade, and we are honored to support their success with our Thermal Analysis and Rheology technologies (ARES-G2 Rheometer, RSA-G2 Dynamic Mechanical Analyzer, TGA5500 Thermogravimetric Analyzer and DSC2500 Differential Scanning Calorimeter). TA Instruments Brasil would like to thank the CEO of IPT, Prof. Dr. Anderson Ribeiro Correia, the manager of the Lightweight Structures Laboratory, Dr. Alessandro Guimar?es, and the entire research group (Dr. Jefferson Patrício Nascimento and Dr. Luis Felipe de Paula Santos) for the invitation, which was attended by the Vice-Governor of the State of S?o Paulo, Felicio Ramuth; the head of the Secretariat of Science, Technology and Innovation of the State of S?o Paulo, Vahan Agopyan, and several companies (Embraer, Iochpe-Maxion S.A., AudaceTech (Stock Car) and Petrobras). This milestone reflects the dedication and continuous effort of everyone involved in the development of innovative solutions in high-performance composite materials, with significant and lasting impacts in strategic sectors such as aerospace, oil and gas, urban mobility, health and energy. TA Instruments | Waters is proud to support their groundbreaking work. #composites #polymers #advancedmaterials #laboratory #adhesives #research #3Dprinting #energy?

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