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On the one hand, the dielectric strength of filled insulated gas obviously reduces under discharge because of the decomposition of SF6.
Obviously, biaxial flexural strength of filled dental resins raised by 22.2%.
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In order to forecast the strength of filling material exactly, the main factors affecting the strength of filling material are analyzed.
The results show that the model is feasible and scientifically justified to predict the strength of filling material, which provides a new method for forecasting the strength of filling material for paste filling in coal mines.
The model of predicting the strength of filling material was established by applying the theory of artificial neural networks.
The compressive strength of filling body mixed by HCM and the addition of 0 160% tailings (HFM) can meet various mining methods.
The flexural and compressive strength for 2 h of HPG neutralized by 1.5% quicklime was 1.6 MPa, 3.2 MPa, respectively, which can meet the strength requirements of filling binder.
They found that the PVC tube provides significant lateral confinement compressive strength of concrete filled PVC tube decreases.
The tensile strength of the filled material was consistently higher than that of pure copolymer.
In this case, at a representative loading of 4 phr, tensile strength of gel filled NR systems increase steadily with the increase in crosslinking density.
Gels with much higher TS than the neat rubber offer greater resistance to tensile deformation, thereby increasing the overall tensile strength of gel filled rubber matrix.
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