TY - JOUR
T1 - Ignition characteristics of semiconductor bridge based on lead styphnate and lead azide charges under capacitor discharge conditions
AU - Li, Hanjian
AU - Zhou, Qing
AU - Ren, Hui
AU - Jiao, Qingjie
AU - Du, Shujing
AU - Yang, Guili
N1 - Publisher Copyright:
© 2016 Elsevier B.V. All rights reserved.
PY - 2016/4/15
Y1 - 2016/4/15
N2 - Eight different sizes of semiconductor bridges and three kinds of charges, namely normal-lead styphnate (N-LS), lead azide (LA) and the double stacked charge (N-LS/LA), were selected to study the ignition characteristics of semiconductor bridge igniters under capacitor discharge conditions. The Neyer D-optimal Method was utilized in the experiments to explore the critical ignition voltages of the igniters. The relationships among the ignition voltage, current, resistance, and ignition time as well as other parameters of these igniters were analyzed. The results obtained were as follows: 1) The critical ignition voltage is positively proportional with the bridge area for the igniters possessing identical charge and ignition mechanism. 2) The ignition time and critical ignition voltage are related to the charges. The relationship of ignition time and charge following the short to long ranking is LA, N-LS/LA, and N-LS, but the relationship of critical ignition voltage and charge follows the opposite ranking. 3) The electroexploding ignition mechanism brings about shorter ignition time than electrothermal ignition mechanism for the igniters with identical charge, but the electroexploding ignition mechanism is accompanied by higher critical ignition voltage than the other.
AB - Eight different sizes of semiconductor bridges and three kinds of charges, namely normal-lead styphnate (N-LS), lead azide (LA) and the double stacked charge (N-LS/LA), were selected to study the ignition characteristics of semiconductor bridge igniters under capacitor discharge conditions. The Neyer D-optimal Method was utilized in the experiments to explore the critical ignition voltages of the igniters. The relationships among the ignition voltage, current, resistance, and ignition time as well as other parameters of these igniters were analyzed. The results obtained were as follows: 1) The critical ignition voltage is positively proportional with the bridge area for the igniters possessing identical charge and ignition mechanism. 2) The ignition time and critical ignition voltage are related to the charges. The relationship of ignition time and charge following the short to long ranking is LA, N-LS/LA, and N-LS, but the relationship of critical ignition voltage and charge follows the opposite ranking. 3) The electroexploding ignition mechanism brings about shorter ignition time than electrothermal ignition mechanism for the igniters with identical charge, but the electroexploding ignition mechanism is accompanied by higher critical ignition voltage than the other.
KW - Critical ignition voltage
KW - Ignition mechanism
KW - Lead azide
KW - Normal lead styphnate
KW - Semiconductor bridge
UR - http://www.scopus.com/inward/record.url?scp=84957964164&partnerID=8YFLogxK
U2 - 10.1016/j.sna.2016.02.006
DO - 10.1016/j.sna.2016.02.006
M3 - Article
AN - SCOPUS:84957964164
SN - 0924-4247
VL - 241
SP - 27
EP - 33
JO - Sensors and Actuators A: Physical
JF - Sensors and Actuators A: Physical
ER -