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Designers are fond of its "zero waste" processing feature - laser cutting can achieve a precision of 0.1mm, and the hot bending forming technology breaks through the form constraints of traditional plates. From hyperbolic curtain walls to irregular-shaped furniture components, the geometric forms generated by parametric design software can all be perfectly reproduced. |
In a certain super high-rise project in Shenzhen, architects took advantage of the closed-cell structure characteristics of honeycomb core materials to reduce the U value of the glass curtain wall to 1.2W/(m²·K), and combined with electrochromic panels to achieve intelligent breathing of the building skin. The concept furniture series exhibited at the Milan Design Week transformed honeycomb units into modular systems with adjustable load-bearing capacity through 3D printed connectors. The weight of each piece was reduced by 78% compared to the solid wood solution, yet it could withstand a dynamic load of 200kg.
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![]() | This material revolution extends even further to the field of acoustic engineering. A certain concert hall project adopts a variable-density honeycomb sandwich structure. Through computer simulation to optimize the chamber layout, the mid and high-frequency reverberation time is precisely controlled within the golden range of 1.8 seconds. |
It is worth noting its full life cycle carbon footprint advantage - the production energy consumption is only one-third of that of aluminum materials, and after scrapping, it can achieve 100% closed-loop recycling through physical crushing. A certain German car manufacturer has included it in the sustainable material library for interior parts.
Designers are fond of its "zero waste" processing feature - laser cutting can achieve a precision of 0.1mm, and the hot bending forming technology breaks through the form constraints of traditional plates. From hyperbolic curtain walls to irregular-shaped furniture components, the geometric forms generated by parametric design software can all be perfectly reproduced. |
In a certain super high-rise project in Shenzhen, architects took advantage of the closed-cell structure characteristics of honeycomb core materials to reduce the U value of the glass curtain wall to 1.2W/(m²·K), and combined with electrochromic panels to achieve intelligent breathing of the building skin. The concept furniture series exhibited at the Milan Design Week transformed honeycomb units into modular systems with adjustable load-bearing capacity through 3D printed connectors. The weight of each piece was reduced by 78% compared to the solid wood solution, yet it could withstand a dynamic load of 200kg.
![]() | ![]() | ![]() |
![]() | This material revolution extends even further to the field of acoustic engineering. A certain concert hall project adopts a variable-density honeycomb sandwich structure. Through computer simulation to optimize the chamber layout, the mid and high-frequency reverberation time is precisely controlled within the golden range of 1.8 seconds. |
It is worth noting its full life cycle carbon footprint advantage - the production energy consumption is only one-third of that of aluminum materials, and after scrapping, it can achieve 100% closed-loop recycling through physical crushing. A certain German car manufacturer has included it in the sustainable material library for interior parts.