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Dynamic Systems Inc. Teams Up with University of Alabama to Beta Test New UHTC System for Advanced Materials Research

MWN-AI** Summary

Dynamic Systems Inc. (DSI), a pioneer in advanced materials testing solutions and a subsidiary of Vishay Precision Group Inc. (VPG), has introduced its first Ultra High Temperature Ceramic and Composite (UHTC) system designed for testing non-conductive materials like ceramics at temperatures exceeding 2000°C. This state-of-the-art system allows for rapid thermal cycling and offers superior capabilities compared to traditional testing methods, drastically improving research productivity, particularly in high-performance sectors such as aerospace, defense, and energy.

In a significant move, DSI has partnered with The University of Alabama to beta test this groundbreaking system. Dr. Bryan Boudouris, the university's vice president for research and economic development, emphasized the collaboration's potential to accelerate the development of ceramic materials through advanced characterization and testing methods. The partnership aims to leverage the university's materials processing capabilities and DSI's expertise in commercialization, facilitating innovations across multiple applications.

The UHTC system boasts several key features, including extreme temperature capabilities, high throughput testing (up to 8 tests per day), fast heating and cooling rates, and compliance with ASTM standards for various performance metrics of advanced ceramics. Its integrated pyrometer allows for meticulous monitoring and control of high temperatures, ensuring accurate and reliable testing results.

As DSI continues to refine the UHTC system in collaboration with The University of Alabama, the company reinforces its commitment to advancing material testing and fostering innovation. This strategic partnership is poised to make a significant impact on the field of advanced materials research, showcasing DSI's role as a leader in testing technology globally.

MWN-AI** Analysis

Dynamic Systems Inc. (DSI) is making significant strides in the materials testing arena with its recent introduction of the Ultra High Temperature Ceramic and Composite (UHTC) system, a development that warrants close attention from investors and market analysts. This collaboration with The University of Alabama enhances DSI’s credibility and innovation potential, particularly in high-demand sectors like aerospace, energy, and defense.

The UHTC system offers unprecedented capabilities, testing ceramics at temperatures exceeding 2000°C. This positions DSI favorably against competitors, as it enables rapid thermal cycling and high-throughput testing, optimizing research productivity. Transparency and reliability in results are further ensured through the system's integrated pyrometer and compliance with ASTM standards.

Investors should note that DSI is a subsidiary of Vishay Precision Group Inc. (VPG), which adds an additional layer of stability and resources to support DSI's growth. The synergies derived from VPG's precision measurement technologies will enhance the UHTC's capabilities and broaden DSI's customer base.

As industries seek stronger and more heat-resistant materials, DSI’s innovative offering is well-timed to lead the market. The increased data throughput and accelerated testing processes present compelling arguments for R&D centers and manufacturing firms looking to innovate and reduce time-to-market.

In consideration of these developments, analysts may look favorably on DSI's stock as both a trajectory of growth and an essential player in the evolving landscape of materials science. Investors should monitor the progress of beta testing outcomes with The University of Alabama, as promising results could lead to broader adoption and increased sales, ultimately impacting DSI’s market valuation positively. Given these factors, Dynamic Systems Inc. represents a viable investment opportunity in a niche market valued for its potential contributions to advanced materials technology.

**MWN-AI Summary and Analysis is based on asking OpenAI to summarize and analyze this news release.

Source: GlobeNewswire

POESTENKILL, N.Y., Jan. 29, 2025 (GLOBE NEWSWIRE) -- Dynamic Systems Inc. (DSI), a leading provider of advanced materials testing solutions and a subsidiary of Vishay Precision Group Inc. (VPG), has launched its new standalone Ultra High Temperature Ceramic and Composite (UHTC) system for the development and testing of non-conductive materials, including ceramics. This innovative solution pushes the boundaries of material testing, enabling research and development at temperatures exceeding 2000°C for non-conductive materials, including ceramics.

DSI is proud to announce a collaboration with The University of Alabama, whose team will play a key role in beta testing this innovative system.

“The University of Alabama is excited to collaborate with Dynamic Systems Inc. in offering a rapid means for ceramic thermomechanical testing,” said. Dr. Bryan Boudouris, vice president for research and economic development at The University of Alabama. “The materials processing and advanced characterization capabilities of the Alabama Materials Institute, combined with the commercialization and testing development expertise of Dynamic Systems Inc., will positively impact ceramic development across a range of applications, from energy to aerospace.”

This UHTC system is the first of its kind in the field of ceramic and composite testing, building on the technology of the company’s flagship Gleeble ® thermal-mechanical simulation tool. Used by manufacturers, R&D centers, and universities worldwide, the Gleeble enables efficient development and testing of new metal alloys. The UHTC system takes these innovations further, allowing researchers and engineers to conduct rapid thermal cycling via localized heating for fast and efficient test results. Its integrated pyrometer ensures precise control and monitoring of high temperatures, delivering reliability and accuracy across diverse testing environments.

Key Features of the UHTC System:

  • Extreme Temperature Capabilities: Tests ceramics at temperatures greater than 2000°C, supporting industries like aerospace, defense, and energy.
  • Fast Heating and Cooling Rates: Reduces time between tests, outperforming traditional furnace-based testing methods.
  • High Throughput Testing: Capable of as many as 1+ test per hour and 8+ tests per day, optimizing research productivity.
  • User-Friendly Interface: Simplifies operation, data analysis, and reporting.
  • ASTM Compliance: Adheres to ASTM standards, ensuring results meet industry benchmarks for accuracy and reliability. These include:
    • ASTM C1211 — Flexural Strength of Advanced Ceramics
    • ASTM C1421 — Fracture Toughness of Advanced Ceramics
    • ASTM C1495 — Effect of Surface Finishing on the Strength of Advanced Ceramics
    • ASTM C1368 — Slow Crack Growth Testing at Temperatures Above 2000°C

DSI looks forward to working closely with The University of Alabama and the broader research community to further refine the UHTC system. This partnership underscores DSI’s commitment to advancing materials testing and fostering innovation in high-performance industries.

About Dynamic Systems Inc.

Dynamic Systems Inc. (DSI) is a global leader in materials testing technology. For decades, DSI has delivered world-class testing solutions through the Gleeble series, empowering researchers and engineers to push the boundaries of materials science in industries such as aerospace, automotive, defense, and energy.

About VPG:

Vishay Precision Group, Inc. (VPG) is a leader in precision measurement and sensing technologies. Our sensors, weighing solutions and measurement systems optimize and enhance our customers’ product performance across a broad array of markets to make our world safer, smarter, and more productive. To learn more, visit VPG at www.vpgsensors.com and follow us on LinkedIn .

For more information on Dynamic Systems and the Gleeble, please contact:
info@gleeble.com
www.Gleeble.com

“Gleeble” is a registered trademark of Dynamic Systems Inc. A VPG Brand
© 2025 VPG - All Rights Reserved

A photo accompanying this announcement is available at https://www.globenewswire.com/NewsRoom/AttachmentNg/2948e758-0143-4833-9373-114f88450639


FAQ**

How does the launch of the UHTC system by Dynamic Systems Inc. (DSI) align with the strategic goals of Vishay Precision Group Inc. (VPG) in the advanced materials testing market?

The launch of the UHTC system by Dynamic Systems Inc. aligns with VPG's strategic goals by enhancing their capabilities in advanced materials testing, enabling them to offer cutting-edge solutions that meet evolving industry demands and strengthen their market position.

In what ways might the collaboration with The University of Alabama enhance the research capabilities of Vishay Precision Group Inc. (VPG) in developing non-conductive materials?

Collaborating with The University of Alabama could enhance VPG's research capabilities in developing non-conductive materials by providing access to advanced research facilities, expertise in materials science, and opportunities for joint innovation and technology transfer.

What feedback has DSI received from industry stakeholders about the potential impact of the UHTC system on the testing landscape within VPG’s targeted sectors, such as aerospace and energy?

DSI has received positive feedback from industry stakeholders indicating that the UHTC system could enhance testing efficiency and accuracy in the aerospace and energy sectors, potentially leading to improved safety and performance standards.

How does adherence to ASTM standards for the UHTC system strengthen Vishay Precision Group Inc. (VPG)'s position in the competitive advanced materials testing industry?

Adherence to ASTM standards for the UHTC system enhances VPG's credibility and reliability, ensuring high-quality performance and safety in advanced materials testing, which strengthens its competitive edge and fosters customer trust in its products.

**MWN-AI FAQ is based on asking OpenAI questions about Vishay Precision Group Inc. (NYSE: VPG).

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