Polyimide resin for composite materials


     Product Type        Product Features           application area 
High strength polyimide resin LXPI-2001Powdered polyimide resin, with high strength and wear resistance, is the key to improving the strength of composite materials. Its powder form is conducive to uniform dispersion, enhances internal bonding strength, and ensures long-term stability. Has excellent thermal stability, can maintain structural integrity and performance stability at high temperatures, suitable for high heat resistant applications such as aircraft engines and spacecraft structural components. Good processing formability, easy to composite with various fiber materials, and processed into complex shaped components. We offer a variety of specifications and performance products, with customizable formulas to meet customer needs.    Powdered polyimide resin is widely used in aerospace, automotive lightweighting, high-end sports equipment and other fields. In the aerospace field, it is used to manufacture load-bearing structural components, thermal protection layers, etc., significantly improving the overall performance and safety of aircraft. In automobile manufacturing, it is used to manufacture body structural components, transmission systems, etc., to achieve lightweighting and performance improvement of automobiles. In addition, it is also suitable for manufacturing high-end sports equipment such as golf clubs and bicycle frames, providing excellent strength and durability.
Low temperature cured polyimide resin LXPI-2101Can cure at low temperatures, reduce equipment requirements, and avoid material deformation or performance degradation caused by high temperatures. Excellent heat resistance: Maintain stability and reliability in high-temperature environments after curing. Good processability: Good fluidity, easy to infiltrate fibers, improve the uniformity and overall performance of composite materials. Environmental protection features: using environmentally friendly solvents, reducing pollution, and meeting the needs of green production.Low temperature cured polyimide resin is suitable for applications that are temperature sensitive or require rapid curing, such as precision electronic component packaging, flexible circuit board manufacturing, and micro electronic device assembly. Its characteristics reduce thermal stress damage, ensure the strength and heat resistance of composite materials, and improve product reliability and lifespan. Meanwhile, due to its excellent processing performance, it is used in the production of composite material molds, automotive interiors, and lightweight components. The excellent wettability and flowability of resin improve the mechanical properties and fatigue resistance of composite materials. The use of environmentally friendly solvents conforms to the trend of green manufacturing, reduces environmental burden, and enhances brand image.
Phenylacetylene high-temperature resistant polyimide resin LXPI-2201Combining low-temperature efficient curing and high-temperature stability, using phenylacetylene end sealing technology to maintain structural integrity under extreme high temperatures. The product has high purity, low volatility, improves the operating environment, and protects the health of workers. After curing, it is resistant to chemical corrosion and expands its application range. Excellent mechanical properties enhance the strength, rigidity, and fatigue resistance of composite materials, making them suitable for high-performance structural components. Environmentally friendly, in line with the concept of green production, and contributing to sustainable development.Phenylacetylene terminated high-temperature resistant polyimide resin is particularly suitable for fields that require both low-temperature processing and high-temperature service conditions, such as aerospace engine components, high-temperature furnace liners, petrochemical pipelines and valves. Its unique performance combination ensures that the composite material can still maintain excellent comprehensive performance under these extreme working conditions, improving the safety and service life of the equipment. Provide strong guarantees for the reliability and durability of the product.

























 


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