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F. KhakbazM. Kazeminezhad 《Journal of Manufacturing Processes》2012,14(1):20-25
A severe plastic straining method, called constrained groove pressing, is used to improve the microstructure and mechanical properties of non-hardenable 3003 Al-Mn alloy. Williamson-Hall method is utilized to measure the grain size from X-ray diffraction patterns of deformed samples. The results show that ultra-fine grained 3003 alloy having grain size of 580 nm can be successfully produced by constrained groove pressing at room temperature. Mechanical properties of sheets, examined by tensile test, are approximately exhibited 170% improvement in comparison with those of annealed sample. Also, comparing the achieved results with those of aluminum 1100 alloy confirms the rapid rate of grain refinement and mechanical properties improvement in 3003 alloy. This is attributed to the presence of fine dispersoids of Al6Mn in microstructure of the alloy. Tensile tests demonstrate that the work hardening rate of constrained groove pressed sheet is increased in comparison with that of annealed samples. Investigating of the work hardening by a model reveals why improvement stops after third pass and also work hardening rate diagrams show that only one stage of work hardening is detectable for the sheet after three passes of constrained groove pressing, while in lower pass numbers, more work hardening stages can be observed. 相似文献
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Induction of metallothionein (MT), Zn status and the subcellular distribution of administered Cd were studied in liver after single administration of CC14 to mice. Hepatic MT was increased up to 153±16 μMT/g liver 18 h after injection of 2ml CCl4/kg body weight. The observed decrease in Zn bound to cytosolic high molecular weight proteins from 25.5 ± 0.6 to 19.8±1.1 resp. 19.0 ± 1.7 μgZn/g and the increase in MT bound Zn from 4.0±0.5 to 9.5 ± 1.1 resp. 10.9±1.1 μgZn/g compensate each other. Zn content of whole liver and hepatic cytosol remained unchanged. Hepatic subcellular distribution of 4 mg Cd/kg body weight, administered 2 h prior termination was also influenced by CC14. Cd bound to high molecular weight proteins decreased from 10.0±1.0 to 7.2±1.6 resp. 3.7 ± 2.6 μg Cd/g and Cd bound to MT increased from 12.5 ± 1.4 to 18.0 ± 3.8 resp. 23.1± 6.4 μgCd/g. Cd content of both, whole liver and cytosol was not significantly different from control. The induction of MT has been suggested to be beneficial due to its role in the sequestration of toxic metals. The depletion of Zn from cytosolic high molecular weight proteins however might adversively influence essential physiological processes. 相似文献
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岩石变形破裂过程中电荷感应信号的检测 总被引:4,自引:1,他引:3
设计了采用非接触方式、高放大倍数、高效率的电荷传感器,并给出了电荷传感器的设计原理和技术指标。利用研制的电荷传感器对岩石变形破裂过程中产生的电荷感应信号进行了检测试验。结果表明,岩石在变形破裂过程中会产生电荷感应信号,并能够被研制的电荷传感器检测到;电荷感应信号是瞬时脉冲的;随着加载应力水平的增加,电荷感应信号强度增强,在峰值应力前,电荷感应信号强度达到最大值;在破裂面接收到的电荷感应信号较强,主破裂面接收到的信号最强,因而电荷的产生和岩石的破裂有很大的关系。作为正在探索的检测岩石破坏过程的手段之一,电荷感应方法应是一种很具潜力的方法,值得深入研究。 相似文献
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水源水细菌SOS反应与模糊综合评判的比较 总被引:4,自引:0,他引:4
为探讨细菌学测试和化学测试两类方法在评价水源水有机物污染程度和潜在危害上的关系,用SOS显色法研究了珠江某自来水原水8个水样有机提取物诱导的细菌SOS反应,并用模糊综合评判法分析了水样的BOD、Hg 、Pb 、Cr等化学指标.两个水样诱导了大肠杆菌 PQ37的 SOS反应.比较水样对细菌的 SOS反应诱导系数与化学污染的模糊综合评判结果后显示, SOS显色法这一细菌学短期测试系统与化学测试方法对水质的定性评价具有一致性、互补性和差异性,模糊综合评判法的应用可作为比较和解释这两类不同测试系统的分析结果的一种途径. 相似文献
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军用飞机机载设备环境实测技术研究 总被引:3,自引:3,他引:0
为解决装备可靠性试验、环境试验、新产品设计以及修订相应环境标准中缺乏装备环境应力实测数据的问题,通过技术论证和探索研究,开展了系列军用飞机机载设番环境的飞行实测工作,取得了实测机种典型任务剖面中的机载设备环境状态,掌握了有关设番舱的综合环境应力情况,从而为进一步编制飞机机载设备综合环境应力试验剖面提供了真实有效的实测数据依据。积累了飞机机载设备环境实测的经验,为我国军用飞机机载设备环境应力数据库的建设奠定了基础。 相似文献
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为探究不同尺寸方形油盘对双馈异步风力发电机组机舱中典型混合油品燃烧特性的影响,自主设计和搭建了热平板诱导油品加热燃烧测定实验系统。将液压油(CALTEXRANDO HDZ32)和齿轮箱油(CALTEXMEROPA320)按1∶1质量(各40.0g)比例均匀混合后,盛装于横截面尺寸分别为6.5cm×6.5cm、10.0cm×10.0cm、13.5cm×13.5cm 的钢制油盘中,利用热平板加热和诱导盘内同样质量混合油品燃烧,利用摄像机记录其燃烧行为和阶段节点时间,利用热电偶树、温度采集模块对油品燃烧对应阶段节点液内和上方火焰中心轴温度分布进行测定。观察发现,液/齿混合油品在加热后出现液内流动、蒸发、冒泡、气化、燃烧、发烟、火焰蹿高等典型传热传质和液相燃烧现象。实验结果表明,随油盘横截面尺寸递增,混合油品着火时间依次缩短(最高1048.0s),燃烧持续时间依次递减(最高1980.0s),燃烧液内最高温度依次升高(最高564.3 ℃),中心轴第一层火焰熄灭温度依次升高(最高489.2 ℃)。小尺寸油盘内油品交流换热过程缓慢,质量损失速率较低,着火前阶段出现最大质量损失速率(0.041g/s);中大尺寸油盘内对流、传质和传热过程明显增强,质量损失速率较高,火焰蹿高节点时出现最大质量损失速率(0.25g/s和0.29g/s) 相似文献
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The rate of pesticide biodegradation does not remain constant with time, and is dependent on the physico-chemical properties of the soil and of the pesticide as well as on the biology of the soil. Prolonged or repeated contact between soil microbes and pesticides has been shown to result in an increase in the rate and extent of biodegradation. This work assessed the impact of the soil:water ratio on measurement of catabolic induction for 14C-isoproturon, 14C-diazinon and 14C-cypermethrin. Slurrying (1:1 and 1:3 soil:water) with agitation resulted in significantly higher rates and extents of mineralisation than the non-slurried system (P ? 0.05; 1:0 soil:water), except for the mineralisation of 14C-diazinon where the greatest extent of mineralisation occurred in non-slurried soil. Slurrying without agitation resulted in the significant lower mineralisation in all cases (P ? 0.05). There was a significant interaction between the soil:water ratio and length of contact (P ? 0.05). Whilst the use of slurried systems can enhance the extent and rate of mineralisation, there is no improvement in reproducibility, and so for the measurement of catabolic induction, the use of field conditions will lead to a more environmentally relevant measurement. 相似文献