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Akademický článek
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Publikováno v:
Dearq
Dearquitectura: journal of architecture, 26(1)
Dearq, Iss 18, Pp 52-59 (2020)
Dearquitectura: journal of architecture, 26(1)
Dearq, Iss 18, Pp 52-59 (2020)
Our future designers have much to learn from the complex and highly functional systems found in nature. Creating design products that are not only human-centred but also in tune with the natural world requires our designers to be exposed to natural p
Autor:
Jure Zlopasa, Eric R. Dufresne, M. A. Pfeifer, Robert W. Style, Jonathan J. Petrozzini, Lara A. Estroff, Henk M. Jonkers, D. Palin
Publikováno v:
Journal of the American Chemical Society, 143(9)
The promise of crystal composites with direction-specific properties is an attractive prospect for diverse applications; however, synthetic strategies for realizing such composites remain elusive. Here, we demonstrate that anisotropic agarose gel net
Publikováno v:
Cement and Concrete Research. 84:1-7
Concrete has an autogenous ability to heal cracks potentially contributing to its functional water tightness and durability. Here, we quantify the crack-healing capacity of sea-water submerged mortar specimens through a simple and rapid permeability
Publikováno v:
Applied Sciences, Vol 9, Iss 3, p 468 (2019)
Applied Sciences, 9(3)
Applied Sciences
Volume 9
Issue 3
Articles
Applied Sciences, 9(3)
Applied Sciences
Volume 9
Issue 3
Articles
It has been demonstrated that calcium alginate capsules can be used as an asphalt healing system by pre-placing rejuvenator (healing agent) into the asphalt mix and releasing the rejuvenator on demand (upon cracking). This healing mechanism relies on
Publikováno v:
International Journal of Civil Engineering, 17(5)
Presented is a modified test for generating crack permeability data for cementitious materials. Single-parallel cracks were generated in mortar specimens. The width of the cracks was analysed through stereomicroscope and computer tomography, and the
Publikováno v:
Cement and Concrete Research. 73:17-24
Concrete can autogenously heal cracks potentially increasing construction durability. Studies quantifying this process are limited to fresh-water making the controlling parameters in sea-water unclear. Here we visually quantify the autogenous healing
Autor:
D. Palin
Bacteria-based self-healing concrete is an innovative self-healing materials approach, whereby bacteria embedded in concrete can form a crack healing mineral precipitate. Structures made from self-healing concrete promise longer service lives, with a
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8de865910f35d3926332f81af90d2dce
https://doi.org/10.4233/uuid:43dd673d-e80c-4e52-b8eb-f9a20df79646
https://doi.org/10.4233/uuid:43dd673d-e80c-4e52-b8eb-f9a20df79646
Publikováno v:
Biomimetics, Vol 2, Iss 3, p 13 (2017)
Biomimetics; Volume 2; Issue 3; Pages: 13
Biomimetics
Biomimetics; Volume 2; Issue 3; Pages: 13
Biomimetics
The current paper presents a bacteria-based self-healing cementitious composite for application in low-temperature marine environments. The composite was tested for its crack-healing capacity through crack water permeability measurements, and strengt