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Honeycomb Composite Panel
Ongoing improvements to honeycomb composite panel materials and the
manufacturing process itself have been implemented to meet the
ever-increasing needs of the manufacturing industry. This progressive
thinking about the fabrication process of composite panels has resulted in
important advances in the composites industry and core materials production
to meet the needs of an expanding customer base.
More industries are looking to the honeycomb composite panel to address
issues around efficiency, resilience and longevity of traditional materials.
These inherent properties and the relatively low cost of production, has
made it possible to use composite honeycomb panel in the construction of
larger structures than was previously possible.
Engineers have been able to precision craft curved fabricated panels by a
combination of heat and vacuum processes to draw the composite core into a
special mold. Alternately, to offset costs, a scored core process allows
honeycomb panels to be formed in two directions at right angles
simultaneously – a process that also meets the needs of a highly curved
molded surface without the use of an oven or vacuum bag process.
Variation in manufacturing methods and using core materials with thicker
cell walls have further improved mechanical properties at no penalty to cost
and increases ability to manage shear force in both low and high stress
applications. Shear is carried uniformly across the skin and through the
core so the implementation of shear keys, packed between core blocks, ensure
premium durability and a very high impact resistance.
Improvements in structural and dimensional dynamics allows for vast
improvements in configuration, resilience and strength of composite
honeycomb panel. Additionally, new processing materials allow panel
production to reach into areas previously unavailable to create panels to
meet needs of this increasing number of industries and applications.
- Honeycomb composite panel is relatively inexpensive to produce
- Possesses superior strength and durability
- Truer panel dynamics and forms
- Ease of handling
- Potential for significant reduction in VOC emissions
- Excellent thermal and acoustic insulation
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