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5 Verified Cases | 4 Countries | 5 Industries

Project Cases

Explore our verified project cases demonstrating expertise in composite curing across industries worldwide.

5+Verified cases
4Countries & regions
5Application sectors
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Customer Success Stories

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5 cases shown
IN
Curing of composite materials for small components of wind turbine blades (blade connectors, reinforcements), mass production of components that meet the high-strength and weather resistance requirements of the wind power industry, ensuring the stability of wind power equipment operation.Product

Wind power component manufacturing enterprises (small and medium-sized)

Realize batch solidification of components, with an average daily output of 400 pieces, meeting the supporting needs of local wind power projects; The weather resistance of the cured components has been improved by 40%, and they can adapt to high temperature, high humidity, and strong wind environments, extending their service life to 15 years; Implement risk control measures for electrical and environmental issues, with equipment operating continuously without faults for a cumulative total of 2800 hours and an annual failure frequency controlled within 10 times; Effectively reducing production costs, saving 300000 yuan in annual operating costs compared to imported equipment, and increasing product market share by 12%.

6 unitsQuantity
5 yearsDuration
CN
Curing of composite materials for automotive components (steering wheel frame, interior parts), suitable for small and medium-sized production, processing 600 products per day to ensure uniform curing and strength compliance with automotive manufacturers' requirements.Product

Small and medium-sized composite material manufacturing enterprises (automotive parts suppliers)

The equipment runs stably, with a single batch curing time controlled at 2.5 hours, and production efficiency increased by 50% compared to traditional equipment; The product qualification rate has increased from 92% to 99.2%, reducing waste losses by 1.2 million yuan annually; Strictly implement mechanical and environmental risk control measures, equip tank door safety interlocks and material handling auxiliary equipment, and have no personnel injury or equipment damage accidents for 6 years; The annual operating cost is controlled at 120000 yuan, which is 28% more energy-efficient than similar equipment, and the return on investment is 150%.

8 unitsQuantity
6 yearsDuration
DE
Research and development of composite materials for new energy vehicle battery casings, testing the effects of different curing processes on the strength, high temperature resistance, and insulation of battery casings, optimizing production process parameters, and ensuring that battery casings comply with automotive industry safety standards.Product

Enterprise R&D Department (New Energy Materials Enterprise)

Successfully developed lightweight and high-strength composite materials for battery casings, with a 35% increase in strength and a 28% decrease in weight after curing. The high-temperature resistance performance reaches 180 ℃, meeting the safety requirements for new energy vehicle batteries; By precise temperature and pressure control through equipment, the process debugging cycle has been shortened by 40%, and research and development costs have been reduced by 25%; Provided standardized process parameters for mass production of enterprises, promoted the large-scale application of new battery casings, and achieved an annual increase in production value of 8 million euros.

2 unitsQuantity
4 yearsDuration
CN
Research and development of new carbon fiber composite material formula, debugging of curing process parameters, conducting wide temperature range (-40 ℃ to 300 ℃) experiments to verify the compatibility of different resin systems with fiber materials, collecting temperature and pressure data during the curing process, and providing technical support for industrial applications.Product

University Research Institute (School of Materials Science and Engineering)

Based on the high-precision temperature control capability of ± 0.5 ℃ of the equipment, we have completed the research and development of 12 new composite material formulas, optimized 6 sets of curing process parameters, published 8 core journal papers, and applied for 3 invention patents; The equipment runs stably, with a total of 1300+experiments completed, complete traceability of experimental data, and no safety accidents occurring; Assisted the team in successfully applying for 2 provincial-level scientific research projects and promoted the transformation of new material technology achievements into enterprises.

4 unitsQuantity
5Duration
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