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Coatings grown with substrate rotation have much lower compressive stress (<2 GPa) and high hardness (>60 GPa).
In carbon fiber polymer matrix systems our model predicts a much lower compressive failure stress than obtained from Rosen's classic microbuckling model, yielding values much closer to those observed experimentally.
For the Ca3(PO4 2-added samPO4 2-addedmpresamplesthength is equivalent to that of the blank sample at 28 d, while the H3PO4-added sample exhibits a mucompressivemprestrengthrength over 28 d.
The film deposited on rotary substrate has a higher sp2 content with high degree of bond disorder and relatively low H content, thus resulting in much lower compressive stress and high hardness.
Compared with other types of rocks in the sand-shale sequence of the Xujiahe Formation, the carbonaceous layers such as coal seams express a much lower compressive strength when the fault zone is subject to a regional stress.
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The tensile strength of EEC is much lower than the compressive strength, largely because of the ease with which cracks can propagate under tensile loads.
This is much lower than the wet compressive strength expected for the Ostermundigen Blue (~3.2 MPa, considering a factor 10 with respect to the dry strength of 32 MPa [30]).
It was shown that the TES-ECCs offer much better ductile performance and lower compressive strength, first-crack flexural strength and first-crack stress than the normal FRCC, which used silica sand instead as fine aggregate.
At early ages, the concrete containing CEM II/B-P binder types had compressive strengths much lower than that of plain cement concrete.
Nano-ZnO prolonged the setting time of mortar significantly, furthermore, the compressive strength was much lower than that of control specimen at early age.
In contrast, films with corresponding AlN concentrations grown under Tin+ metal ion irradiation (with a significant Ti2 + component) in the Ti-HIPIMS/Al-DCMS mode have much lower hardness, 18 19 GPa, and high compressive stress ranging up to 2.7 GPa.
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