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风机叶片用缝编织物渗透性能评估 总被引:1,自引:1,他引:0
在渗透性能测试方法归纳介绍的基础上,开展了试验及比较,初步确定了相应的测试试验规范.结合风机叶片的具体工艺和使用部位等,初步选定了缝编织物的渗透性能评估参数和测试方法,以对风机叶片用缝编织物渗透性能测试评估方法的统一规范确定提供一些思路. 相似文献
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Houssam Toutanji Christopher M. Goff Edwin Ethridge Eric Stokes 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2012
Recent discoveries of water ice trapped within lunar topsoil (regolith) have placed a new emphasis on the recovery and utilization of water for future space exploration. Upon heating the lunar ice to sublimation, the resulting water vapor could theoretically transmit through the lunar regolith, to be captured on the surface. As the permeability of lunar regolith is essential to this process, this paper seeks to experimentally determine the permeability and flow characteristics of various gas species through simulated lunar regolith (SLR). Two different types of SLR were compacted and placed into the permeability setup to measure the flow-rate of transmitted gas through the sample. Darcy’s permeability constant was calculated for each sample and gas combination, and flow characteristics were determined from the results. The results show that Darcy’s permeability constant varies with SLR compaction density, and identified no major difference in permeable flow between the several tested gas species. Between the two tested SLR types, JSC-1A was shown to be more permeable than NU-LHT under similar conditions. In addition, a transition zone was identified in the flow when the gas pressure differential across the sample was less than ∼40 kPa. 相似文献
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采用喷射-沉淀法制备了纳米晶Ni-Zn 铁氧体粉料。在10 ~110 MHz 通过Agilent 阻抗仪测量纳
米晶Ni-Zn 铁氧体/ 环氧树脂复合材料磁导率。结果表明:600益下煅烧1. 5 h,喷射-共沉淀法制备Ni-Zn 铁
氧体晶粒尺寸约为30 nm;随着环氧树脂含量减少和成型压力增大,纳米晶Ni-Zn 铁氧体/ 环氧树脂复合材料
磁导率实部滋忆逐渐增大、虚部滋义逐渐减小;相同工艺条件下, Ni-Zn 铁氧体晶粒尺寸增大,磁导率实部滋忆逐渐
增大而虚部滋义减小,纳米Ni0. 4Zn0. 6Fe2O4 具有最佳磁导率。
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