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51.
通过煤炭自然氧化程序升温实验,采用程序升温实验系统等设备,对比分析煤样中通入不同浓度CO2条件下的相关参数的变化情况,针对性分析研究CO2对阳煤二矿易自燃高瓦斯的15号煤层氧化自燃的抑制性能。研究表明:CO2对阳煤二矿15号煤层煤样自然氧化发火过程具有显著抑制作用,尤其是20%浓度的CO2对煤样高温氧化阶段的抑制作用强烈;CO2的注入驱离了煤样中的O2,降低了煤样中O2浓度。同时,延迟推后了CO、CH4等自然氧化产物出现,且其浓度低于未注入CO2的煤样,降低了煤样的耗氧速率和CO产生率,抑制和延迟了煤样自然氧化的发生和发展过程。 相似文献
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53.
为实现对不同方向振动源振动能量的收集,对一种万向型压电换能器的发电性能进行了理论分析与实验测试.理论分析表明,万向型压电换能器的发电性能受到压电梁夹角的影响,在其多方向发电能力方面,随着外界激励方向的变化,产生的电能呈波浪起伏状变化,换能器对不同方向振动源的激励具有较好的适应性.进一步的实验测试验证了万向型压电换能器的多方向发电能力,且在压电梁夹角为π/2时,最大输出功率达到约1.3 mW,最小输出功率约为0.6mW. 相似文献
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56.
针对基站柜式空调耗电量大的问题,创造性地使用基站分布式冷却的方式,达到精确送风,节能高效的目的.在应用实践中检验了分布式冷却系统实际节能量和应用效果,总结出分布式冷却系统应用场景和范围,为更大范围推广应用DCS分布式冷却系统提供实践依据. 相似文献
57.
We investigate the effect of dopant random fluctuation on threshold voltage and drain current variation in a two-gate nanoscale transistor. We used a quantum-corrected technology computer aided design simulation to run the simulation (10000 randomizations). With this simulation, we could study the effects of varying the dimensions (length and width), and thicknesses of oxide and dopant factors of a transistor on the threshold voltage and drain current in subthreshold region (off) and overthreshold (on). It was found that in the subthreshold region the variability of the drain current and threshold voltage is relatively fixed while in the overthreshold region the variability of the threshold voltage and drain current decreases remarkably, despite the slight reduction of gate voltage diffusion (compared with that of the subthreshold). These results have been interpreted by using previously reported models for threshold current variability, load displacement, and simple analytical calculations. Scaling analysis shows that the variability of the characteristics of this semiconductor increases as the effects of the short channel increases. Therefore, with a slight increase of length and a reduction of width, oxide thickness, and dopant factor, we could correct the effect of the short channel. 相似文献
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The fracture behaviour and morphologies of high-strength boron steel were investigated at different temperatures at a constant strain rate of 0.1 s-1 based on isothermal tensile tests. Fracture mechanisms were also analyzed based on the relationship between microstructure transformation and continuous cooling transformation(CCT) curves. It is found that 1) fractures of the investigated steel at high temperatures are dimple fractures; 2) the deformation of high-strength boron steel at high temperatures accelerates diffusion transformations; thus, to obtain full martensite, a higher cooling rate is needed; and 3) the investigated steel has the best plasticity when the deformation temperature is 750 °C. 相似文献
60.
Rectangular section control technology(RSCT)was introduced to achieve high-precision profile control during silicon steel rolling.The RSCT principle and method were designed,and the whole RSCT control strategy was developed.Specifically,RSCT included roll contour design,rolling technology optimization,and control strategy development,aiming at both hot strip mills(HSMs)and cold strip mills(CSMs).Firstly,through the high-performance variable crown(HVC)work roll optimization design in the upper-stream stands and the limited shifting technology for schedule-free rolling in the downstream stands of HSMs,a hot strip with a stable crown and limited wedge,local spot,and single wave was obtained,which was suitable for cold rolling.Secondly,an approximately rectangular section was obtained by edge varying contact(EVC)work roll contour design,edge-drop setting control,and closed loop control in the upper-stream stands of CSMs.Moreover,complex-mode flatness control was realized by coordinating multiple shape-control methods in the downstream stands of CSMs.In addition,the RSCT approach was applied in several silicon-steel production plants,where an outstanding performance and remarkable economic benefits were observed. 相似文献