Views: 0 Author: Site Editor Publish Time: 2021-08-17 Origin: 玻璃纤维专业情报信息网
In an environment where material and energy resources are scarce, Cetim Grand Est has developed two ecological processes for recycling composite materials and plastic waste, which helps reduce the impact of materials on the environment and supports the company’s technological and ecological changes.
As a member of the Cetim Group, the French machinery industry technology center, Cetim Grand Est has been committed to researching the recycling of composite materials and plastic waste through its engineering and materials science and industrial future departments for the past 10 years.
Cetim Grand Est is located in Mulhouse and Strasbourg in the northeastern part of France. The University of Strasbourg and Kanomika Research Institute nearby provide an environment conducive to technological innovation.
Through various technological innovations, Cetim Grand Est supports its customers in their future-oriented projects.
Realize two technologies on the same production line
Using a step-by-step thermomechanical processing method, this innovative process allows continuous production from the recycling of semi-finished waste (in the form of large thermoplastic composite panels).
This production line to be industrialized is installed in the factory in Mulhouse. It adopts a flexible, cost-effective and multi-functional design. Through an upgraded recycling method, it can recycle various thermoplastic plastic wastes. It has become a series of high value-added, cost-effective and competitive recyclable semi-finished composite materials.
Using the same production line and using two different feeding systems, the Thermosa?c and ThermoPRIME eco-technologies have been developed to make full use of the recycling potential of composite materials and plastics.
Recycling thermoplastic composite material waste: Thermosa?c technology
Starting from a pile of production waste (and then scrapped waste), Thermosa?c technology is to crush these materials to maximize the economic potential of recycling.
This technology can retain the inherent value of the original composite material, and continuously shape the fragments into plates through hot pressing.
Compared with recycled short fiber reinforced compounds, Thermosa?c sheet has significantly better mechanical properties and high forming potential.
Recycling plastic or fiber waste: ThermoPRIME technology
ThermoPRIME technology is based on the specific requirements of the application, formulating low value-added recycled plastics (controllable quality) to combine this polymer with continuous fibers or long fiber reinforced materials to produce high durability and Continuous laminate with economic recovery potential.
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