Dynamic loads such as blasting may lead to diverse levels of failure in cemented tailings backfill (CTB) under diverse strain rates and frequency spectral amplitudes. Hence, changes in dynamic properties of filling due to these loads should be studied as a function of strain rates for CTB mixtures. In this study, the dynamic characteristics of CTB samples containing polypropylene fiber contents were examined with the use of split Hopkinson pressure bar (SHPB) system and high speed photography technology. The experimental results illustrate that the backfill has a damping influence on the elastic wave. The original waveform noise of CTB with fiber is higher than the one without fiber, and the average strain rate changes the reflected wavefor...
To explore the influence that filling interval has on the mechanical strength of layered cemented ta...
Originally developed for polymer materials, 3D printing is an encouraging technique to create versat...
The excellent overall performance of polyoxymethylene (POM) fiber enables it to show great potential...
Dynamic loads such as blasting may lead to diverse levels of failure in cemented tailings backfill (...
The safety and durability of underground backfilled stopes of metalliferous mines are so crucial owi...
The ordinary cemented tailings backfill (CTB) is a cement-based composite prepared from tailings, ce...
Overall, solid materials like CTB (i.e., cemented tailings backfill) give out low-level seismic sign...
In order to study the effect of cement-sand ratio on the dynamic mechanical properties of the full t...
Mechanical characteristics of cementitious materials with fiber reinforcement are different from non...
The brittleness of the cemented tailings backfill (CTB) can easily cause collapse, which seriously t...
To investigate the effect of dimensional changes on the mechanical properties of cemented tailings b...
The mechanical strength properties of cemented tailings backfill are very important for the safe and...
Using polypropylene (PP) fiber and cement to modify iron-ore tailing and applying it to road enginee...
As mining depth increases, the backfill mining method is more and more widely used in underground mi...
Abstract This paper presents an experimental investigation on the stress–strain behavior and the dam...
To explore the influence that filling interval has on the mechanical strength of layered cemented ta...
Originally developed for polymer materials, 3D printing is an encouraging technique to create versat...
The excellent overall performance of polyoxymethylene (POM) fiber enables it to show great potential...
Dynamic loads such as blasting may lead to diverse levels of failure in cemented tailings backfill (...
The safety and durability of underground backfilled stopes of metalliferous mines are so crucial owi...
The ordinary cemented tailings backfill (CTB) is a cement-based composite prepared from tailings, ce...
Overall, solid materials like CTB (i.e., cemented tailings backfill) give out low-level seismic sign...
In order to study the effect of cement-sand ratio on the dynamic mechanical properties of the full t...
Mechanical characteristics of cementitious materials with fiber reinforcement are different from non...
The brittleness of the cemented tailings backfill (CTB) can easily cause collapse, which seriously t...
To investigate the effect of dimensional changes on the mechanical properties of cemented tailings b...
The mechanical strength properties of cemented tailings backfill are very important for the safe and...
Using polypropylene (PP) fiber and cement to modify iron-ore tailing and applying it to road enginee...
As mining depth increases, the backfill mining method is more and more widely used in underground mi...
Abstract This paper presents an experimental investigation on the stress–strain behavior and the dam...
To explore the influence that filling interval has on the mechanical strength of layered cemented ta...
Originally developed for polymer materials, 3D printing is an encouraging technique to create versat...
The excellent overall performance of polyoxymethylene (POM) fiber enables it to show great potential...