Low Dielectric High-Frequency LCP
Low dielectric high-frequency LCP is a specialty LCP material developed specifically for 5G/6G communications, millimeter-wave radar, and high-frequency electronics. Through molecular structure design, filler optimization, and process refinement, this category achieves extremely low dielectric constant (Dk) and dissipation factor (Df), maintaining excellent signal integrity and low insertion loss in the 10GHz~110GHz high-frequency range. Low dielectric LCP is the ideal substrate for flexible high-frequency circuit boards and antenna modules.
Wear-Resistant & Lubrication Modified LCP
Wear-resistant & lubrication modified LCP is a tribologically modified material prepared by adding PTFE (polytetrafluoroethylene), graphite, MoS₂ (molybdenum disulfide), or silicone-based lubricants into the LCP matrix. While retaining the inherent heat resistance and dimensional stability of LCP, this category significantly reduces the friction coefficient and wear rate, suitable for precision mechanical components requiring long-term sliding, rotating, or reciprocating motion.
Carbon fiber reinforced LCP is a high-performance composite material using LCP resin as the matrix and carbon fiber (CF) as the reinforcing phase. Carbon fibers impart LCP with extremely high rigidity, excellent electrical/thermal conductivity, and very low coefficient of linear thermal expansion, enabling the material to serve dual functions of structural load-bearing and electromagnetic shielding.
Glass fiber reinforced LCP is a modified product based on LCP pure resin matrix, compounded with different proportions (typically 15%~45%) of chopped or long glass fibers.
LCP (Liquid Crystal Polymer) pure resin is a high-performance thermoplastic engineering plastic based on aromatic polyester liquid crystal polymers. In the molten state, molecular chains align highly along the flow direction, forming a unique liquid crystalline structure. Pure resin products are classified into Type I (high heat-resistant), Type II (general-purpose), and Type III (low melting point) categories based on molecular structure and thermal properties, serving as the foundational material for all LCP modified products.
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