High-quality products deserve the best treatment. This is why we only allow trustworthy heads – and air – to get in touch with glass. With the patented AEROFLAT air-cushion system, the surfaces of the glass panes are not touched during the tempering process. The result of the innovative technology: top quality flat glass – economic and future-proof.
One technology, four advantages!
Visions need courage. You need people who push limits and dare to try new things. In 1996, we set new standards in terms of the tempering of flat glass with the revolutionary AEROFLAT air-cushion system. Now we are continuing the story.
A high competitiveness is the result of the interaction of quality and cost effectiveness/profitability.
COST EFFECTIVENESS by LiSEC
No waiting time when the types of glass are changed
Wear-free ceramic components
Significantly shorter heating time
No cooling of the heating zone required in case of glass breakage
Identical cycle time for coated and uncoated glasses
Operators trained in only five days
50% less staff required compared to conventional plants
Trend-setting technology is the result of forward-looking thinking.
TECHNOLOGY by LiSEC
LiSEC is the inventor of the patented air-cushion technology
No touching of the glass surface throughout the entire process
Tempering of double-sided coated/laminated and printed glass sheets is possible
Tempering of structural glass is possible
Maximum convection in the circulatory system
Thermal tempering of glass is possible from 1 to 10 millimeters
Patented cooling air routing: no SO2 gas required – environmentally friendly & sustainable
Perfect products are the result of unquestionable quality.
QUALITY by LiSEC
No roller waves
No white stripes
No roller pickups
Coating-friendly process due to a shorter standing time in the furnace
High quality due to stable processes
More than 95 % plant availability
The future of tempering begins with the best processes.
FUTURE-PROOFNESS by LiSEC.
LiSEC stands for...
best in glass processing
thin glass for technologies of the future
a dense service network
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