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In order to provide a solid theoretical foundation for the efficient reuse of waste gypsum, the research on the degradation mechanisms of recycled gypsum mechanical performance was carried out in this paper.
The mechanism for such a synergic enhancement for both electrical and mechanical performance was investigated by rheology measurement and scanning electron microscopy, where uniform 3-D network formed by PANI/GO has been clearly observed.
For bulk incorporation, the mechanical performance was assessed.
The mechanical performance was assessed from compressive strength.
A possible strategy to build the composite at nanoscale for high mechanical performance was addressed.
They found that the mechanical performance was affected by resin rich regions and waviness of load-carrying fibres.
Similar(22)
Laboratory test data for thermal and mechanical performance are presented.
Mechanical performance is mostly dependent on blend composition.
A prototypical bandwidth chopper was fabricated and initial tests of the mechanical performance were satisfactory.
The physical stability and mechanical performance were analyzed by weight loss and compressive testing.
In addition, the relationship between process variables and achievable part geometry and mechanical performance are investigated.
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