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新型蓬松嵌段硅油SH-572的制备及应用 被引量:3
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作者 洪加勇 《针织工业》 2017年第10期50-54,共5页
对聚醚氨基嵌段共聚硅油合成进行改进,制备了蓬松型嵌段硅油SH-572,探讨了引发剂用量及环己基偶联剂用量对蓬松型嵌段硅油SH-572整理织物性能的影响,将其用于织物的柔软整理并与市场同类产品进行比较。结果表明,蓬松型嵌段硅油SH-572合... 对聚醚氨基嵌段共聚硅油合成进行改进,制备了蓬松型嵌段硅油SH-572,探讨了引发剂用量及环己基偶联剂用量对蓬松型嵌段硅油SH-572整理织物性能的影响,将其用于织物的柔软整理并与市场同类产品进行比较。结果表明,蓬松型嵌段硅油SH-572合成优化工艺为:聚合温度105℃、聚合时间2.5 h、引发剂用量0.3%、环己基偶联剂用量为0.9%,制备的蓬松型嵌段硅油SH-572环氧率为96%,耐高温、耐碱稳定性良好,能够满足生产的要求;采用蓬松型嵌段硅油SH-572的乳液对棉织物和涤纶织物进行整理,具有较好的蓬松性,且整理后织物的白度值为83,比市场上的整理剂更优。 展开更多
关键词 侧链改性 嵌段硅油sh-572 耐高温稳定性 耐碱稳定性 蓬松性 白度
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Assessment of Rockfall Hazard along the Road Cut Slopes of State Highway-72, Maharashtra, India 被引量:11
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作者 M. Ahmad R. K. Umrao +2 位作者 M. K. Ansari Rajesh Singh T. N. Singh 《Geomaterials》 2013年第1期15-23,共9页
Rockfall is a major problem in high hill slopes and rocky mountainous regions and construction of highways at these rockfall prone areas often require stable slopes. The causes of rockfall are presence of discontinuit... Rockfall is a major problem in high hill slopes and rocky mountainous regions and construction of highways at these rockfall prone areas often require stable slopes. The causes of rockfall are presence of discontinuities, high angle cut slopes, heavy rainfall, and unplanned slope geometry etc. Slope geometry is one of the most triggering parameters for rockfall, when there are variations in slope angle along the profile of slope. The Present study involves rockfall hazard assessment of road cut slopes for 15 km distance starting from Mahabaleshwar town along State Highway-72 (SH-72). The vertical to subvertical cut slopes are prone to instability due to unfavorable orientation of discontinuities in slope face of weathered and altered basaltic rockmass. The predominant type of instability has been found as wedge type failure involving medium to large size blocks. In order to investigate the existing stability conditions, analyses were carried out at two locations under different slope conditions. The kinematic analysis was performed using stereographic projection method. RockFall 4.0 numerical simulator software was used to calculate the maximum bounce heights, total kinetic energies and translational velocities of the falling rockmass blocks, and a comparative analysis is presented with increasing the mass of blocks and height of the slope. The result of numerical analysis shows that varying slope angle geometry creates more problems as compared to the mass of blocks in the scenario of rockfall. 展开更多
关键词 ROCKFALL BOUNCE Height Kinetic Energy TRANSVERSE Velocity Mahabaleshwar sh-72
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