2022
DOI: 10.1016/j.compositesa.2021.106750
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Joule heating as a smart approach in enhancing early strength development of mineral-impregnated carbon-fibre composites (MCF) made with geopolymer

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Cited by 22 publications
(11 citation statements)
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“…The intrinsic self‐healing mechanism selected in this work was based on the softening of COC through a thermal mending process. In order to generate the thermal stimulus through the Joule effect, the evaluation of the resistivity of the produced laminates is fundamental 47 . At this aim, resistivity measurements were carried out by analyzing the voltage–current relationship for each sample 48 .…”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…The intrinsic self‐healing mechanism selected in this work was based on the softening of COC through a thermal mending process. In order to generate the thermal stimulus through the Joule effect, the evaluation of the resistivity of the produced laminates is fundamental 47 . At this aim, resistivity measurements were carried out by analyzing the voltage–current relationship for each sample 48 .…”
Section: Resultsmentioning
confidence: 99%
“…In order to generate the thermal stimulus through the Joule effect, the evaluation of the resistivity of the produced laminates is fundamental. 47 At this aim, resistivity measurements were carried out by analyzing the voltage-current relationship for each sample. 48 Table 5 reports the results obtained from the resistivity measurements, in terms of volume and surface resistivity.…”
Section: Evaluation Of the Healing Efficiencymentioning
confidence: 99%
“…The outgrowth of the existing literature has been a number of proposals of alternative binder concepts utilizing GP as impregnation materials for temperature-resistant fiber composites and as alternative binders to develop sustainable, fine-grained concrete materials. Compared to cement-based impregnations, the use of GP impregnation combines unique properties and structural characteristics of polymers, ceramics, and cements, allowing a wider processing window for continuous production and rapid setting with high early strength by directed low-temperature synthesis , and even possible chemical bonding at the interfacial region with the CF . The good mechanical response of continuous-fiber GP composites under temperatures ranging above 200 °C has been demonstrated in several earlier investigations, targeting solely high-tech automotive or aerospace applications.…”
Section: Introductionmentioning
confidence: 99%
“…Hence, more temperature stable materials, such as fine reactive pozzolanic particles [19][20][21], have been investigated to enhance the fiber-matrix interphase. A very promising approach in overcoming this temperature issue lies in utilizing impregnation matrices based on inorganic mineral binders, such as cement or aluminosilicates, to fabricate so-called mineral-impregnated carbon fibers (MCFs), which exhibit significantly higher temperature resistance, ensuring sufficient load-bearing capacity up to 500 • C [17,18,22] and comparable tensile properties to conventional CFRPs [23][24][25]. Moreover, this novel Fibers 2022, 10, 42 2 of 18 reinforcement type MCF brings several further advantages, namely, their low material cost, better compatibility with cementitious materials, flexibility in shape, automated manufacture [24], and possibilities for their direct integration into emerging 3D printing processes [26].…”
Section: Introductionmentioning
confidence: 99%