One-stop testing solutions for scientific research institutions
Help colleges and universities easily build top laboratories, empower cutting-edge scientific research, and cultivate compound talents that meet industry needs
As the packaging industry transitions toward high-performance, functional, and green development, the importance of research institutions and universities, as sources of technological innovation and nurturers of talent, is becoming increasingly prominent. However, establishing a comprehensive, efficient, and professional packaging testing laboratory often faces challenges such as complex equipment selection, incomplete standards coverage, and difficulty balancing teaching and research.
To address this pain point, we've developed a one-stop, integrated packaging testing solution tailored for universities and research institutes, encompassing "teaching, research, and certification," leveraging our industry-leading instrument portfolio. This solution aims to help institutions easily build cutting-edge laboratories, empower cutting-edge scientific research, and cultivate interdisciplinary talent tailored to industry needs.
Core of the solution: precise selection, covering all dimensions of packaging performance
Not all industrial testing equipment is suitable for research institutions. We carefully screen and integrate instruments based on multiple dimensions: teaching demonstration, scientific research accuracy, standard compliance, and equipment durability. The core covers the following five modules:
Barrier performance precision analysis module: Insight into the "breathing" secrets of packaging
Solution Value: This module is crucial for packaging materials research. It accurately measures the barrier properties of materials to gases such as O₂, CO₂, and water vapor, making it an essential tool for research into functional fresh-keeping packaging and high-barrier composite materials. The research data is accurate and reliable, while also providing a strong demonstration capability, facilitating students' understanding of the mechanisms of packaging preservation.
Basic material properties analysis module: Explore the "inner" nature of materials
Solution Value: This module focuses on fundamental research into materials. Gas chromatographs can be used to analyze residual solvents and component migration in packaging materials, closely addressing safety and environmental protection. Melt flow indexers are essential tools for studying resin processing fluidity. High-precision thickness gauges and electronic balances ensure the acquisition of essential data. This module is suitable for in-depth research at the graduate level.
Mechanical and physical strength test module: Evaluate the strength of packaging
Solution Value: This module is highly integrated and multifunctional (for example, the electronic tensile testing machine can perform tensile, peel, and puncture resistance tests). It comprehensively simulates the various mechanical challenges packaging experiences during transportation, stacking, filling, and opening. It is essential for studying material mechanical properties, packaging structure design, and sealing process optimization. It is ideal for student experiments and research projects, providing intuitive data and a strong hands-on approach.
Sealing and Weathering Evaluation Module: Challenging Reliability in Extreme Environments
Solution Value: Focuses on packaging processing technology and end-use environments. Heat sealers are used to study optimal sealing parameters; reverse pressure retorts are used to test the reliability of pressure-resistant packaging such as high-temperature retort pouches; and constant temperature and humidity chambers simulate various climates to study material aging and weathering properties. This module is essential for research in high-end applications such as food and pharmaceutical packaging.
Color and appearance quality control system: defining the "appearance" standard of packaging
Solution Value: Provides an objective, quantitative, scientific basis for evaluating packaging materials' optical properties (haze, transmittance), print quality, and appearance. Suitable for printing process research, color management, and raw material color difference testing. Standard light boxes standardize observation conditions, making them an excellent platform for teaching color science and print quality.
Solution advantages and features
Systematicity and integration
Break the isolated island of single machines and provide modular and systematic laboratory construction solutions to avoid repeated investment and waste of resources.
Emphasis on both scientific research and teaching
The equipment not only meets the high-precision data requirements of cutting-edge scientific research, but also takes into account the intuitiveness of teaching demonstrations and students' hands-on operability.
Standard height compliance
The instrument fully complies with multiple domestic and international standards such as ASTM, ISO, and GB, ensuring the authority and universality of experimental data, and helping colleges and universities participate in standard setting and certification testing services.
Sustainable upgrades
The solution has good scalability, and colleges and universities can carry out modular upgrades and additions based on the deepening of scientific research directions and changes in teaching needs.
This one-stop solution is more than just a collection of instruments and equipment; it serves as a bridge connecting industry needs, academic research, and talent development. By jointly building joint laboratories, developing test methods, and jointly applying for scientific research projects, we are committed to working with research institutes and universities to promote technological progress and innovation in the flexible packaging industry and cultivate industry elites who will lead the future.