SPECIAL CONCRETE AND COMPOSITES 2020: 17th International Conference 2021
DOI: 10.1063/5.0042061
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Self-sensing properties of fly ash geopolymer composite with graphite filler

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Cited by 5 publications
(4 citation statements)
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“…Conversely, the compressive strength of GP‐3 is 17.01 MPa lower than that of GP‐4, leading to a significant 46.90% reduction in strength. This result demonstrates a significant reduction in compressive strength when graphite is added to the specimens 39–41 . According to Zhang et al., 42 high graphite content in geopolymers can lead to agglomeration, defect formation, and strength reduction.…”
Section: Resultsmentioning
confidence: 68%
See 1 more Smart Citation
“…Conversely, the compressive strength of GP‐3 is 17.01 MPa lower than that of GP‐4, leading to a significant 46.90% reduction in strength. This result demonstrates a significant reduction in compressive strength when graphite is added to the specimens 39–41 . According to Zhang et al., 42 high graphite content in geopolymers can lead to agglomeration, defect formation, and strength reduction.…”
Section: Resultsmentioning
confidence: 68%
“…This result demonstrates a significant reduction in compressive strength when graphite is added to the specimens. [39][40][41] According to Zhang et al, 42 high graphite content in geopolymers can lead to agglomeration, defect formation, and strength reduction. In addition, the reduced strength can also be attributed to the weak bond between the geopolymer and graphite particles.…”
Section: Compressive Strengthmentioning
confidence: 99%
“…K podobným závěrům dospěla i studie věnovaná alkalicky aktivované strusce s 0,5 až 2 % CF, kde nedošlo ke zlepšení senzorických vlastností v důsledku tvorby mikrotrhlin [13]. Naopak použití 10 % grafitu [14] či 0,5 % uhlíkových sazí [15] v popílkové geopolymerní maltě zlepšilo jak citlivost, tak opakovatelnost odezvy při měření senzorických vlastností. Uhlíkové saze v nízké koncentraci měly navíc minimální negativní dopad na mechanické vlastnosti kompozitu.…”
Section: Lineární Tlakové Namáhání S Konstantní Amplitudou (10 Cyklů)unclassified
“…In addition, savings on expenses, greater toughness, and advantages include improved functional volume, simplicity in design, and the absence of mechanical property degradation, which happens when inserted electronics are used in place of multi-use structural components. All that is enabled by the use of smart cement-based materials [3][4][5][6].…”
Section: Introductionmentioning
confidence: 99%