The two-dimensional cellular detonation propagating in a channel with area-changing cross section was numerically simulated with the dispersion-controlled dissipative scheme and a detailed chemical reaction model. Eff...The two-dimensional cellular detonation propagating in a channel with area-changing cross section was numerically simulated with the dispersion-controlled dissipative scheme and a detailed chemical reaction model. Effects of the flow ex-pansion and compression on the cellular detonation cell were investigated to illus-trate the mechanism of the transverse wave development and the cellular detona-tion cell evolution. By examining gas composition variations behind the leading shock,the chemical reaction rate,the reaction zone length,and thermodynamic parameters,two kinds of the abnormal detonation waves were identified. To explore their development mechanism,chemical reactions,reflected shocks and rarefac-tion waves were discussed,which interact with each other and affect the cellular detonation in different ways.展开更多
研究了拉丝断面压缩率(5%~35%)对Φ9.67~11.69 mm 10B30钢丝(/%:0.28~0.34C,0.0005~0.0030B)球化退火组织及力学性能的影响。结果表明:随着球化退火前拉丝断面压缩率的增加,球化退火组织级别提高,抗拉强度降低,断面收缩率提高,这是因为...研究了拉丝断面压缩率(5%~35%)对Φ9.67~11.69 mm 10B30钢丝(/%:0.28~0.34C,0.0005~0.0030B)球化退火组织及力学性能的影响。结果表明:随着球化退火前拉丝断面压缩率的增加,球化退火组织级别提高,抗拉强度降低,断面收缩率提高,这是因为拉丝促进了球化退火过程中的自发球化和碳化物的ostwald熟化;当拉丝断面压缩率达到25%以上,球化组织和相应的抗拉强度和断面收缩率趋于稳定;实际生产中,退火前拉丝断面压缩率不应低于25%。展开更多
文摘The two-dimensional cellular detonation propagating in a channel with area-changing cross section was numerically simulated with the dispersion-controlled dissipative scheme and a detailed chemical reaction model. Effects of the flow ex-pansion and compression on the cellular detonation cell were investigated to illus-trate the mechanism of the transverse wave development and the cellular detona-tion cell evolution. By examining gas composition variations behind the leading shock,the chemical reaction rate,the reaction zone length,and thermodynamic parameters,two kinds of the abnormal detonation waves were identified. To explore their development mechanism,chemical reactions,reflected shocks and rarefac-tion waves were discussed,which interact with each other and affect the cellular detonation in different ways.
文摘研究了拉丝断面压缩率(5%~35%)对Φ9.67~11.69 mm 10B30钢丝(/%:0.28~0.34C,0.0005~0.0030B)球化退火组织及力学性能的影响。结果表明:随着球化退火前拉丝断面压缩率的增加,球化退火组织级别提高,抗拉强度降低,断面收缩率提高,这是因为拉丝促进了球化退火过程中的自发球化和碳化物的ostwald熟化;当拉丝断面压缩率达到25%以上,球化组织和相应的抗拉强度和断面收缩率趋于稳定;实际生产中,退火前拉丝断面压缩率不应低于25%。