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迫弹射击水面引信正面水压和前冲过载规律
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作者 殷永亮 闻泉 +1 位作者 王雨时 张志彪 《探测与控制学报》 CSCD 北大核心 2015年第6期41-45,50,共6页
针对迫弹引信触发机构设计过程中,迫弹对水面射击时弹头引信环境参数的不足,利用有限元分析软件ANSYS/LS-DYNA对81mm迫击炮弹以不同着速、落角对水面射击情况进行动力学仿真,得到了迫击炮弹射击水面时引信正面水压和前冲过载规律。仿真... 针对迫弹引信触发机构设计过程中,迫弹对水面射击时弹头引信环境参数的不足,利用有限元分析软件ANSYS/LS-DYNA对81mm迫击炮弹以不同着速、落角对水面射击情况进行动力学仿真,得到了迫击炮弹射击水面时引信正面水压和前冲过载规律。仿真结果表明:当着速为150-300m/s时,其受到的正面水压范围为:0.19-0.43GPa;随着落角不同,引信前冲过载数值不同,其变化范围为1830-14330 g;落角和着速不同时,弹丸达到最大前冲过载的时刻也不同,其范围为0.13-1.98ms。 展开更多
关键词 迫击炮弹 引信 动力学仿真 射击水面 正面水压 前冲过载
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Thermal Characteristics of Air-Water Spray Impingement Cooling of Hot Metallic Surface under Controlled Parametric Conditions
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作者 Santosh Kumar Nayak Purna Chandra Mishra 《Journal of Thermal Science》 SCIE EI CAS CSCD 2016年第3期266-272,共7页
Experimental results on the thermal characteristics of air-water spray impingement cooling of hot metallic surface are presented and discussed in this paper.The controlling input parameters investigated were the combi... Experimental results on the thermal characteristics of air-water spray impingement cooling of hot metallic surface are presented and discussed in this paper.The controlling input parameters investigated were the combined air and water pressures,plate thickness,water flow rate,nozzle height from the target surface and initial temperature of the hot surface.The effects of these input parameters on the important thermal characteristics such as heat transfer rate,heat transfer coefficient and wetting front movement were measured and examined.Hot flat plate samples of mild steel with dimension 120 mm in length,120 mm breadth and thickness of 4 mm,6 mm,and 8mm respectively were tested.The air assisted water spray was found to be an effective cooling media and method to achieve very high heat transfer rate from the surface.Higher heat transfer rate and heat transfer coefficients were obtained for the lesser i.e,4 mm thick plates.Increase in the nozzle height reduced the heat transfer efficiency of spray cooling.At an inlet water pressure of 4 bar and air pressure of 3 bar,maximum cooling rates670℃/s and average cooling rate of 305.23℃/s were achieved for a temperature of 850℃ of the steel plate. 展开更多
关键词 air-water spray transient temperature cooling rate plate thickness
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