HORIBA Launches Partica Analyzer for Particle Size and Shape Analysis in Mechanical Systems

Estimated reading time: 5 min

🧩 Article Summary

HORIBA has launched the new Partica device for particle size and shape analysis using laser diffraction and dynamic image analysis technologies. The device delivers high accuracy in measuring particles and size and shape distributions in a record time of about one minute, reducing measurement time by up to 50% compared with conventional models. Partica focuses on advanced applications in industries such as semiconductors, batteries, pharmaceuticals, and advanced materials, and contributes to improving manufacturing quality and product development. The device is equipped with enhanced software to support remote operation, automation, and data integrity requirements, as part of HORIBA’s future strategic plan.

🔧 Introduction to the Importance of Particle Analysis in Mechanical Engineering

In the fields of mechanical and industrial engineering, particle size and shape directly affect material properties and the behavior of thermal and fluid systems, such as heat transfer, engine efficiency, and the quality of manufacturing processes. Therefore, the availability of accurate and efficient tools for analyzing these particles is essential.

The new offering from HORIBA, the Partica device, represents a qualitative leap in this field by combining measurement and shape-analysis technologies within a single platform, while providing shorter measurement times and improved accuracy.

Technical takeaway: combining size and shape analysis provides a deeper and more comprehensive understanding of particle behavior and its impact on industrial processes.

🔍 Introducing Partica: Technology and Innovation

The Partica device relies on the laser diffraction principle to measure particle size distribution, with the addition of dynamic image analysis technology (dynamic image analysis) to understand dimensions and shape with high precision. This combination enables rapid detection of defects and important physical properties that affect the quality of the final product.

The analysis takes only about one minute, reducing the time required compared with traditional devices by about 50%, with the percentage of savings varying depending on the type of application and operating conditions.

The device is designed to meet the requirements of advanced industries that depend heavily on particle specifications, including fields where analysis accuracy affects the efficiency of engines and turbines, thermal processes, HVAC system functions, as well as manufacturing quality.

Important mechanical point: reducing measurement time supports maintenance and reliability operations by accelerating material testing.

🏭 Target Markets and Practical Applications

Energy and Environmental Industries 🔥

  • Developing and analyzing catalysts to improve the performance of various chemical processes.
  • Improving battery materials to achieve higher energy efficiency and better sustainability within energy systems.

Life Sciences and Healthcare 🧬

  • Analyzing biologic therapy compounds, such as antibodies and cells.
  • Monitoring the quality of pharmaceuticals and cosmetics that depend on granular forces and properties.
  • Ensuring the stability and improving the flavors and quality of food products through the study of particle distribution.

Materials and Semiconductors ⚙️

  • Managing the quality of semiconductor materials, such as adhesives and chemical pastes used in manufacturing.
  • Research and development in powders, coatings, and fine chemical products.
  • Developing precision machine materials such as multilayer capacitors and printed inks.
Why is this industrially important? Improving particle specifications directly affects product quality and the performance of thermal and mechanical systems.

⚙️ Software and Process Automation

The software platform for Partica has been redeveloped to provide an easy-to-use interface, with support for wide ranges to expand capabilities.

The improvements include remote operation, in addition to automation features that help reduce human error and speed up workflow in laboratories and manufacturing operations.

Strict support for data integrity requirements has also been included, which is critical in sensitive fields such as pharmaceuticals and semiconductors.

What changed here? Smart software helps speed up work and reduce errors, strengthening industrial reliability.

📈 Particle Measurement Market and Growth Prospects

According to company data, the global market for particle measurement tools is valued at around $1.14 billion, with a projected compound annual growth rate of approximately 5.7% during the period from 2022 to 2027.

This growth reflects a rising need for accurate and effective solutions to monitor and analyze material specifications in modern industrial sectors.

🔎 Conclusion: Partica’s Role in the Future of Mechanical Engineering

HORIBA’s Partica device is an important step in developing tools for measuring particle characteristics, which in turn support the advancement of thermal and precision mechanical industries.

Through advanced technologies and fast execution, the device helps improve manufacturing efficiency and ensure product quality, a key factor in innovation and in improving the performance of engines, turbines, and HVAC systems.

The strategic focus on the energy and environmental sectors, healthcare, and semiconductor materials confirms that this device aligns with the future vision of keeping pace with industrial challenges and enhancing the practical capabilities of engineers and researchers.


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