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An Investigation into Dynamic Puncture Resistance of the Polyester Needled Nonwoven Geotextiles using Video Processing Technique

机译:利用视频处理技术研究聚酯针刺非织造土工布的动态抗穿刺性能

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In this study, the dynamic puncture behavior of nonwoven needle-punched polyester geotextiles has been studied using video processing technique. Twenty-seven needle-punched geotextile samples were produced by changing areal weight, needle penetration depth and punch density as independent variables. Cone drop test was carried out on the samples. In addition to measuring the hole diameter (HD), the video processing technique with a high frame rate camera was employed to calculate the energy absorbed by geotextile fabric up to puncture point (Ep) and the hole expansion energy (Ee). Multiple linear regression method was used to develop the predicting relationships between independent and reply variables. The models showed that an increase in areal weight results in an increase in Ep, whereas it causes a decrease in Ee and HD. Moreover, increasing punch density and needle penetration depth, leads to less Ep, and more Ee and HD. In addition, it was also found that significant relationships exist for Ep-HD and Ee-HD.
机译:在这项研究中,已经使用视频处理技术研究了非织造针刺聚酯土工布的动态刺穿行为。通过改变面积重量,针刺深度和冲头密度作为自变量,生产了27个针刺土工布样品。对样品进行锥滴测试。除了测量孔径(HD)之外,还使用具有高帧频摄像头的视频处理技术来计算土工织物吸收的直至穿刺点(Ep)的能量和扩孔能量(Ee)。采用多元线性回归方法建立自变量与回复变量之间的预测关系。这些模型显示,单位面积重量的增加会导致Ep的增加,而Ee和HD则会减少。此外,增加打孔密度和针刺深度会导致更少的Ep以及更多的Ee和HD。另外,还发现Ep-HD和Ee-HD存在显着的关系。

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