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The composites were also prepared under the low flow condition (114 mm < flow < 126 mm), incorporating various MWNT contents.
Open image in new window Fig. 9 The experimental conductivity values of the specimens fabricated under the low flow condition (114 mm < flow < 126 mm).
The image analysis and DC conductivity results indicated that fabrication of the composites under the low flow condition was an effective way to enhance the MWNT distribution.
The constituent materials and respective weight content ratios of the composites fabricated under the low flow condition are given in the Table 2.
(4) The DC conductivity of the MWNT-embedded cement composites fabricated under the low flow condition showed percolation phenomena, thus indicating that MWNT was well distributed in the composites, as evaluated in the image analysis. .
The linear relationship between the q value and the MWNT content demonstrated that fabrication of the composites under the low flow condition is an effective way to enhance the MWNT distribution.
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In these tests, the principal near-field components (waste, encapsulation matrix, container and backfill) were equilibrated with the aqueous phase under static conditions to simulate the low flow rate in a repository.
While under the low swirl flow, fuel is distributed more randomly over the observing plane.
The image analysis demonstrated that the MWNT distribution was significantly enhanced in the composites fabricated under a low flow condition, and DC conductivity results revealed the dramatic increase in the conductivity of the composites fabricated under the same condition, which supported the image analysis results.
Humidity was controlled by placing the microscope under a low flow of dry nitrogen gas.
The distance between unhydrated cements in the composites prepared under a low flow condition was narrowed, as shown in Fig. 5b.
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