By customizing the cross - sectional shape, accurately match the force - bearing paths of the structure (such as corners, grooves, load - bearing beams), avoiding "excessive material performance" or "structural redundancy".
The density of carbon fiber is only 1.6-1.8g/cm³, approximately 60% of that of aluminum alloy (2.7g/cm³) and 35% of that of titanium alloy (4.5g/cm³). For instance, the frame of a certain consumer-grade drone (with a takeoff weight of 3kg) is assembled with 0.8-2mm thick engraved carbon plates. The overall frame weighs only 280g, which is 45% lighter than an aluminum alloy frame of the same strength, directly increasing the flight endurance by approximately 25 minutes
The "more stable support strength" of six-chamber and multi-chamber carbon fiber tubes is essentially achieved by deeply coupling the material properties of carbon fiber with structural design through three core logic: multi-chamber stress dispersion, reinforcement rigidity with ribs, and optimization of material anisotropy. Ultimately, it realizes the support effect of "making the strength more controllable, more resistant to fluctuations, and more resistant to extreme working conditions on the basis of lightweight".
Carbon fiber integrated polygonal bracket,Lined with PMi core material, it is lighter in weight and higher in strength. The exterior is made of pure carbon fiber laid in a cross pattern, and it is used for ship parts, train parts, etc.
Aramid honeycomb pipes are composite pipes that combine the high - performance characteristics of aramid fibers with the mechanical advantages of the honeycomb structure. Their characteristics stem from the synergistic effect of the physical and chemical properties of the material itself and the structural design, demonstrating irreplaceable advantages in the high - end manufacturing field.
Carbon-aluminum bonded carbon tubes are carbon fiber tubes that are convenient for drilling and installation Special tubes for engraving machine crossbeams and load-bearing arms for large equipment