Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Detonation wave propagation in micro-scale groove charges

View through CrossRef
The detonation wave propagation characteristics in micro-scale groove charges are very important for optimizing the structure of the Micro-Electro-Mechanics System explosive train and improving its detonation reliability. Focusing on the problem of detonation wave propagation of micro-scale groove charges under strong confinement, the effects of charge density, groove size and confinement are considered. A theoretical model of curved detonation wave propagation in a micro-scale groove charge under a strong confinement was established by means of equivalent mass correction. The mathematical expression for the detonation velocity was derived and a numerical calculation method of detonation velocity and shock front shape was given using MATLAB software. An experiment was designed to test the detonation velocities for micro-scale groove charges with a booster explosive. The results closely agreed with the calculations, validating the propagation model of curved detonation waves. The results show that the smaller the groove size, the bigger the detonation velocity loss and the curvature of shock front in the central axis. When the charge size was 0.6×0.6mm, the detonation velocity loss was 11.49%. The detonation velocity and maximum streamline deflection angle increase with increasing charge density and size. The increase of streamline deflection angle reduces the detonation velocity of the explosive. However, the streamline deflection angle changes by only a small amount in the micro-scale with an effect on the detonation velocity of less than 1%. The detonation velocity has a strong correlation with charge size and density. This paper contains theoretical guidance for the design and performance optimization of charge structures in the MEMS explosive train.
Title: Detonation wave propagation in micro-scale groove charges
Description:
The detonation wave propagation characteristics in micro-scale groove charges are very important for optimizing the structure of the Micro-Electro-Mechanics System explosive train and improving its detonation reliability.
Focusing on the problem of detonation wave propagation of micro-scale groove charges under strong confinement, the effects of charge density, groove size and confinement are considered.
A theoretical model of curved detonation wave propagation in a micro-scale groove charge under a strong confinement was established by means of equivalent mass correction.
The mathematical expression for the detonation velocity was derived and a numerical calculation method of detonation velocity and shock front shape was given using MATLAB software.
An experiment was designed to test the detonation velocities for micro-scale groove charges with a booster explosive.
The results closely agreed with the calculations, validating the propagation model of curved detonation waves.
The results show that the smaller the groove size, the bigger the detonation velocity loss and the curvature of shock front in the central axis.
When the charge size was 0.
6×0.
6mm, the detonation velocity loss was 11.
49%.
The detonation velocity and maximum streamline deflection angle increase with increasing charge density and size.
The increase of streamline deflection angle reduces the detonation velocity of the explosive.
However, the streamline deflection angle changes by only a small amount in the micro-scale with an effect on the detonation velocity of less than 1%.
The detonation velocity has a strong correlation with charge size and density.
This paper contains theoretical guidance for the design and performance optimization of charge structures in the MEMS explosive train.

Related Results

Recirculation effects on detonation in a flow-through ramjet combustor
Recirculation effects on detonation in a flow-through ramjet combustor
The application of detonation combustion to enhance the combustion performance of ramjets requires careful consideration of combustion stability. Recirculation zones are critical f...
Experimental Consideration of the Detonation Expansion Wave Limit
Experimental Consideration of the Detonation Expansion Wave Limit
The pressure time-history associated with a propagating detonation within a pipe can be reasonably well described using a one-dimensional model. These models describe the advanceme...
Advances on Deflagration to Detonation Transition Methods in Pulse Detonation Engines
Advances on Deflagration to Detonation Transition Methods in Pulse Detonation Engines
Pulse detonation engines (PDEs) have become a transformative technology in the field of aerospace propulsion due to the high thermal efficiency of detonation combustion. However, i...
ANALISIS PERTIMBANGAN MAHKAMAH AGUNG DALAM MENGABULKAN KASASI TERDAKWA (STUDI PUTUSAN NOMOR 2959/K/PID.SUS/2022)
ANALISIS PERTIMBANGAN MAHKAMAH AGUNG DALAM MENGABULKAN KASASI TERDAKWA (STUDI PUTUSAN NOMOR 2959/K/PID.SUS/2022)
<p><em><span class="markedContent"><span style="left: calc(var(--scale-factor)*195.53px); top: calc(var(--scale-factor)*496.87px); font-size: calc(var(--scale-...
Étude de l’interaction des plasmas hors-équilibre et des détonation : réduction de la largueur des cellules et longueur de transition.
Étude de l’interaction des plasmas hors-équilibre et des détonation : réduction de la largueur des cellules et longueur de transition.
La thèse présente une étude de l’interaction entre les plasmas froids nanosecondes et les ondes de combustion en vue d'améliorer la détonabilité de mélanges gazeux. Elle rapproche ...
Combustion Characteristics in Rotating Detonation Engines
Combustion Characteristics in Rotating Detonation Engines
A lot of studies on rotating detonation engines have been carried out due to the higher thermal efficiency. However, the number, rotating directions, and intensities of rotating de...
A Review of Psychological and Neuroscientific Research on Musical Groove (2006−2022)
A Review of Psychological and Neuroscientific Research on Musical Groove (2006−2022)
When we listen to music, we often feel the urge to tap our fingers, stomp our feet, or move our bodies. This pleasurable sensation of wanting to move one's body with the music has ...
PENGARUH JENIS WELDING GROOVE TERHADAP KEKUATAN IMPACT PLAT BAJA ASTM A36 MENGGUNAKAN MESIN LAS SMAW
PENGARUH JENIS WELDING GROOVE TERHADAP KEKUATAN IMPACT PLAT BAJA ASTM A36 MENGGUNAKAN MESIN LAS SMAW
Currently, metal joining with welding process is increasingly used, both in building construction, piping, and machine construction. This is due to the many advantages obtained fro...

Back to Top