TresClean Project

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TresClean Project

TresClean Project

@TresCleanEU

The TresClean Project ended in September 2020 this account is no longer being actively updated. However, please feel free to browse our results.

Europe Se unió Aralık 2016
189 Siguiendo88 Seguidores
TresClean Project
TresClean Project@TresCleanEU·
Today TresClean officially completes its mission to demonstrate that tailored surfaces replicating the types of organic structures found in nature can produce beyond state-of-the-art fluid-repellent surfaces. Find out more about the projects work at tresclean.eu.
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TresClean Project
TresClean Project@TresCleanEU·
Look at what our partners BSH & @EcorIntern have been doing with Direct Laser Interference Patterning (DLIP) of 855 nm periodic structures on a surface of a 400 kg injection mould, and on the outer surface of a 1-inch stainless steel tube, both at the IFSW (@Uni_Stuttgart).
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TresClean Project
TresClean Project@TresCleanEU·
The used laser source is the TresClean ThinDisk Multipass Amplifier (TDMPA) with 8 picoseconds pulse duration & an average power of up to 1 kW at 300kHz repetition rate developed & built by University of Stuttgart IFSW. (4 of 5) #antimicrobial @TheBSHGroup @Uni_Stuttgart
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TresClean Project
TresClean Project@TresCleanEU·
This process was done with a structuring rate of 416 mm2/s (considering only the laser on time) onto an area of about 145,600 mm2 (280 x 520 mm2), 1000 x 500 mm2 are possible with the current system. The mould has a weight of about 500 kg. (3 of 5) @Uni_Stuttgart @TheBSHGroup
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TresClean Project
TresClean Project@TresCleanEU·
The picture shows the Injection mould after DLIP Treatment. Process was done with a structuring rate of 416 mm2/s onto an area of about 280 x 520 mm2. The DLIP optics used can be seen in the top right. The period of the structure is 855 nm. (2 of 5) #photonics #lasers
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TresClean Project
TresClean Project@TresCleanEU·
Our Partners have been busy The University of Stuttgart IFSW have structured the surface of the injection mould (provided by our partner BSH) with a line like periodic structure by means of the Direct Laser Interference Patterning (DLIP) method (1 of 5)@TheBSHGroup @Uni_Stuttgart
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