Dynamic Mechanical Analysis – DMA Analysis

Unlock precise material performance insights with Element's DMA analysis. From polymers to composites, our advanced testing capabilities offer end-to-end solutions, delivering actionable data on stiffness, damping, and thermal behavior. With global reach, hands-on technical guidance, and a full spectrum of standards, we ensure your materials meet the highest performance and reliability benchmarks

Dynamic Mechanical Analysis - DMA Analysis
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What is Dynamic Mechanical Analysis at Element?

Dynamic Mechanical Analysis (DMA) measures material properties by applying periodic stress to evaluate modulus (stiffness) and damping (energy dissipation). At Element, we provide insights into thermal and mechanical properties of non-metallic materials, helping you understand key performance parameters such as glass transition temperatures and deterioration limits.

Element testing specialist examining precision measurement equipment for materials analysis

What Can Element Offer You For DMA Analysis?

Key tests offered

We deliver comprehensive material property measurements essential for understanding material behavior and performance. Our testing capabilities encompass the full spectrum of dynamic mechanical analysis, from basic property measurements to advanced characterization of complex materials under varied conditions. By measuring the response to oscillating force application, we provide detailed insights into your material's mechanical characteristics as a function of temperature, revealing crucial performance parameters for your application needs.

  • Modulus and stiffness evaluation
  • Creep and stress relaxation studies
  • Film and tension behavior analysis
  • Damping characteristics
  • Glass transition and softening temperature determination
  • Cure behavior

Materials we test

Our testing capabilities cover a wide range of materials, from composites and polymers to coatings and adhesives. We specialize in analyzing both solid and liquid materials, providing crucial data for material selection and optimization across multiple industries. This includes advanced composites, engineering plastics, rubbers, and specialized polymeric materials with complex mechanical and viscoelastic properties. We can measure how these materials respond to time, frequency, and temperature variations, ensuring accurate and reliable characterization for your specific application.

Methods and solutions offered

We offer both standard and customized testing protocols to meet your specific requirements, supported by state-of-the-art equipment and expert analysis. Our approach ensures accurate measurement of mechanical and viscoelastic properties across a wide range of temperatures and conditions. For advanced applications, we provide specialized analysis of stress-relaxation behavior and creep testing to give you complete understanding of your material's performance characteristics. 

Advanced technical capabilities

Our multidisciplinary team utilizes sophisticated DMA instrumentation to provide precise measurements across temperature ranges. We offer specialized testing for viscoelastic properties, time-dependent behavior, and advanced applications including stress-relaxation and creep testing including creep testing. Our capabilities allow for detailed analysis of material responses under various conditions, providing essential insights for material development and optimization. This comprehensive approach helps you understand fundamental transition temperatures and how they change with material formulation and conditioning.

Standards we test to and materials we test

These are our most prevalent requests. Don't see what you're looking for? Contact us!

American Society for Testing & Materials 

  • ASTM D4065 
  • ASTM D5023 
  • ASTM D5024 
  • ASTM D5026 
  • ASTM D7028 
  • ASTM E1356 
  • ASTM E1545 
  • ASTM E1640 

Euronorm 

  • EN 6032 

Institute for Interconnecting and Packaging Electronic Circuits 

  • IPC-TM-650 

Society of Automotive Engineers 

  • SAE J2253 

Various customer specifications 

  • SRM 18R-94, Sikorsky SS9152/PP101 

Your Challenges, Our Solutions

Checklist

Precise Material Characterization

Element’s advanced DMA testing provides detailed insights into thermal and mechanical properties, helping you understand material behavior across your operating temperature range. Our comprehensive analysis reveals critical performance characteristics for informed material selection and optimization.
Checklist

Evaluating Complex Material Properties

Our testing capabilities measure multiple properties simultaneously, from modulus to damping, streamlining your material evaluation process. We deliver clear, actionable data on stiffness, energy dissipation, and other key parameters through a single efficient testing program.
Checklist

Understanding Material Behavior Across Temperatures

Accurately predicting material performance in varying temperatures can be a complex challenge. Element’s DMA service provides precise insights into glass transition temperatures, stiffness, and damping properties, allowing you to optimize material selection for real-world conditions and application-specific performance.
Checklist

Ensuring Compliance with Industry Standards

Ensuring your materials meet performance and regulatory standards is critical. At Element, we follow industry-standard protocols like ASTM and SAE, providing reliable data that validates material performance and ensures compliance with regulatory requirements.

Why Choose Element

Element materials testing engineer operating precision measurement equipment for quality analysis

Global reach, local service

Access our worldwide network of laboratories with local support.

Comprehensive testing solutions

Full range of DMA capabilities for non-metallic materials.

Industry-leading expertise

Multidisciplinary team of test engineers with material testing experience.

State-of-the-art technology

Advanced DMA instrumentation for reliable results.
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Related Articles and Events

Considerations for Measuring Glass Transition Temperature

Glass transition temperature measurements can vary greatly in technique and calculation based on the specific material type, real world application, and many other factors. In this article, Element's polymer scientists provide several considerations relating to glass transition of polymeric materials.

Apr 28, 2023

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