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341.
Impact flash occurs when objects collide at supersonic speeds and can be used for real-time damage assessment when weapons rely on kinetic energy to destroy targets.However,the mechanism of impact flash remains unclear.A series of impact flash experiments of flat-head long-rod projectiles impacting thin target plates were performed with a two-stage light gas gun.The impact flash spectra for 6061 aluminum at 1.3-3.2 km/s collision speeds were recorded with a high-speed camera,a photoelectric sensor,and a time-resolved spectrometer.The intensity of the impact flash exhibited a pulse charac-teristic with time.The intensity(I)increased with impact velocity(V0)according to I∝Vn0,where n = 4.41 for V0 > 2 km/s.However,for V0 < 2 km/s,n = 2.21,and the intense flash duration is an order of magnitude less than that of higher V0.When V0 > 2 km/s,a continuous spectrum(thermal radiation background)was observed and increased in intensity with V0.However,for V0 < 2 km/s,only atomic line spectra were detected.There was no aluminum spectral lines for V0 < 2 km/s,which indicated that it had not been vaporized.The initial intense flash was emission from excited and ionized ambient gases near the impact surface,and had little relationship with shock temperature rise,indicating a new mechanism of impact flash.  相似文献   
342.
Multi-pass TIG welding was conducted on plates (15×300×180 mm3) of aluminum alloy Al-5083 that usually serves as the component material in structural applications such as cryogenics and chemical processing industries. Porosity formation and solidification cracking are the most common defects when TIG welding Al-5083 alloy, which is sensitive to the welding heat input. In the experiment, the heat input was varied from 0.89 kJ/mm to 5 kJ/mm designed by the combination of welding torch travel speed and welding current. Tensile, micro-Vicker hardness and Charpy impact tests were executed to witness the impetus response of heat input on the mechanical properties of the joints. Radiographic inspection was performed to assess the joint's quality and welding defects. The results show that all the specimens displayed inferior mechanical properties as compared to the base alloy. It was established that porosity was progressively abridged by the increase of heat input. The results also clinched that the use of me-dium heat input (1-2 kJ/mm) offered the best mechanical properties by eradicating welding defects, in which only about 18.26% of strength was lost. The yield strength of all the welded specimens remained unaffected indicated no influence of heat input. Partially melted zone (PMZ) width also affected by heat input, which became widened with the increase of heat input. The grain size of PMZ was found to be coarser than the respective grain size in the fusion zone. Charpy impact testing revealed that the absorbed energy by low heat input specimen (welded at high speed) was greater than that of high heat input (welded at low speed) because of low porosity and the formation of equiaxed grains which induce better impact toughness. Cryogenic (-196 C) impact testing was also performed and the results corroborate that impact properties under the cryogenic environment revealed no appreciable change after welding at designated heat input. Finally, Macro and micro fractured surfaces of tensile and impact specimens were analyzed using Stereo and Scanning Electron Microscopy (SEM), which have supported the experimental findings.  相似文献   
343.
张涛  黄文韬 《国防科技》2021,42(5):108-113
军队审计容错免责机制是在审计权限范围内对符合容错免责情形的事由减轻或免于问责并及时纠正的稳定工作机制,是审计问责态势下应对“为官不为”问题的合理路径。本文基于SWOT法分析认为,当前审计环境下建立军队审计容错免责机制的优势在于独立的经济监督地位、专业的经济监督力量和广泛的经济监督对象,劣势在于单一的认定主体、缺失的法律规范和匮乏的免责素质,机遇在于利好政策的出台、国家审计的实践经验和军队审计的职能定位,威胁在于制度规范笼统、审计风险扩大和资源矛盾加剧。在此基础上,本研究基于W-T(劣势-威胁)的战略选择,提出完善军队审计容错免责机制的现实路径,即:明确机制定位,科学界定边界;完善制度规范,形成法律依据;完备容错清单,转变审计模式;优化容错环境,降低容错风险。  相似文献   
344.
Cardiovascular diseases (CVDs) are the leading cause of death and disability both in the United States and worldwide. Despite high morbidity, mortality, and cost in the United States and global healthcare systems, cardiovascular care has been understudied in the healthcare operations management literature. In this paper, we identify research opportunities for healthcare operations management scholars to aid in improving cardiovascular care. We focus on three burdensome conditions, including (1) coronary artery disease, (2) stroke, and (3) heart failure, which, collectively, lead to the vast majority of CVD‐caused mortality and disability. For each condition, we characterize a typical patient's journey in receiving cardiovascular care, elucidating key challenges in improving care and outlining research questions for healthcare operations management scholars. We close with a reference to new research opportunities that emerge as artificial intelligence is likely to transform much of cardiovascular care.  相似文献   
345.
突发型失效与退化型失效共存的竞争失效问题在实践中大量存在,一般情况下突发失效是受退化量大小影响的。文中利用比例危险模型分析了突发失效与退化量的关系,给出了竞争失效的一般模型及模型的参数估计方法,最后利用所给模型对强激光装置所用的金属化膜脉冲电容器进行了可靠性分析。  相似文献   
346.
采用四球试验机研究Cu、Zn(OH)2和PbO3种不同纳米粒子的摩擦性能,探讨纳米粒子在油品中的润滑作用机理。结果表明:纳米粒子在油品中抗磨作用的发挥存在载荷临界点;只有当载荷高于临界载荷时,纳米粒子才能表现出良好的摩擦学性能。  相似文献   
347.
针对导弹电液伺服机构的跟踪控制问题,设计了一种模糊滑模控制方案。将高层滑模函数作为模糊控制系统的一维输入,简化了一般模糊滑模控制系统结构,从而得到具有少量规则的模糊滑模的设计方案。仿真结果表明了该方案可以减小跟踪误差,增强系统的鲁棒性和削弱控制信号中的高频抖振。  相似文献   
348.
军用电子设备的维修是以更换电子集成模块为主,根据这一特点,通过分析处理电子设备的故障特征信息,把一种基于D-S证据理论的算法应用于故障特征信息的融合,从而实现故障电子模块的定位.结合实例,论证了这一方法在军用电子设备模块化故障诊断中的可行性.  相似文献   
349.
火炮反后坐装置故障机理研究   总被引:2,自引:0,他引:2  
反后坐装置是火炮的"心脏",性能好坏直接关系到其战斗力的发挥。节制环磨损及复进机漏液是反后坐装置最常见的故障。分析了节制环磨损和复进机漏液的故障机理,给出了磨损量以及漏液量计算模型。在此基础上,结合火炮后坐、复进反面问题计算程序,模拟计算火炮在节制环磨损和复进机漏液情况下的运动诸元。进而预测在其它射击条件正常情况下,火炮平均无故障射弹发数。  相似文献   
350.
幅相误差对稀疏阵天线性能的影晌   总被引:4,自引:0,他引:4       下载免费PDF全文
围绕天线阵增益、波束宽度、指向和副瓣电平等指标,分析了幅相误差、阵元失效对稀疏阵列天线性能的影响。应用概率统计原理,导出了具有幅相误差、阵元失效时稀疏阵天线阵增益损失、波束宽度、指向、副瓣电平的估计公式、并得出一些有益结论。  相似文献   
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