It was found that a pitch-catch signal was more sensitive than normal incidence backwall echo of longitudinal wave to subtle flaw conditions in the composites (damages, fiber orientation, low level porosity, ply wavi...It was found that a pitch-catch signal was more sensitive than normal incidence backwall echo of longitudinal wave to subtle flaw conditions in the composites (damages, fiber orientation, low level porosity, ply waviness, and cracks). Both the strength and stiffness depend on the fiber orientation and porosity volume in the composites. The porosity content of a composite structure is critical to the strength and performance of the structure in general. The depth of the sampling volume where the pitch-catch signal came from was relatively shallow with the head- to-head miniature Rayleigh probes, but the depth can be increased by increasing the separation distance of the transmitting and receiving probes. Also, a method was utilized to determine the porosity content of a composite lay-up by processing micrograph images of the laminate. A free software package was utilized to process micrograph images of the test sample. The results from the image processing method were compared with existing data. Beam profile was characterized in unidirectional CFRP(carbon fiber reinforced plastics) using pitch-catch Rayleigh probes and the one-sided pitch-catch technique was utilized to produce C-scan images with the aid of the automatic scanner.展开更多
针对风电叶片玻璃纤维层合板的力学性能进行试验研究,确定其主要力学性能参数,分析各种铺层、测试方向及配方因素对玻璃纤维层合板力学性能的影响。依据BS EN ISO测试标准,应用微机控制万能试验机、应变仪对风电叶片玻璃纤维层合板进行...针对风电叶片玻璃纤维层合板的力学性能进行试验研究,确定其主要力学性能参数,分析各种铺层、测试方向及配方因素对玻璃纤维层合板力学性能的影响。依据BS EN ISO测试标准,应用微机控制万能试验机、应变仪对风电叶片玻璃纤维层合板进行拉伸、压缩及剪切破坏试验,得到试件的拉伸、压缩、剪切强度及弹性模量、泊松比等力学性能,并对四种不同配方玻璃纤维层合板的力学性能及其在不同加载方式下的破坏形态进行了比较与分析。结果表明,纤维层合板各向异性特征十分明显,沿纤维方向强度高;配方对层合板的力学性能有一定影响;其破坏形式与铺层方式和测试角度关系密切,而与其配方基本无关。展开更多
基金supported by Chosun University,Gwangju,Korea,during the 2007 academic year.
文摘It was found that a pitch-catch signal was more sensitive than normal incidence backwall echo of longitudinal wave to subtle flaw conditions in the composites (damages, fiber orientation, low level porosity, ply waviness, and cracks). Both the strength and stiffness depend on the fiber orientation and porosity volume in the composites. The porosity content of a composite structure is critical to the strength and performance of the structure in general. The depth of the sampling volume where the pitch-catch signal came from was relatively shallow with the head- to-head miniature Rayleigh probes, but the depth can be increased by increasing the separation distance of the transmitting and receiving probes. Also, a method was utilized to determine the porosity content of a composite lay-up by processing micrograph images of the laminate. A free software package was utilized to process micrograph images of the test sample. The results from the image processing method were compared with existing data. Beam profile was characterized in unidirectional CFRP(carbon fiber reinforced plastics) using pitch-catch Rayleigh probes and the one-sided pitch-catch technique was utilized to produce C-scan images with the aid of the automatic scanner.
文摘针对风电叶片玻璃纤维层合板的力学性能进行试验研究,确定其主要力学性能参数,分析各种铺层、测试方向及配方因素对玻璃纤维层合板力学性能的影响。依据BS EN ISO测试标准,应用微机控制万能试验机、应变仪对风电叶片玻璃纤维层合板进行拉伸、压缩及剪切破坏试验,得到试件的拉伸、压缩、剪切强度及弹性模量、泊松比等力学性能,并对四种不同配方玻璃纤维层合板的力学性能及其在不同加载方式下的破坏形态进行了比较与分析。结果表明,纤维层合板各向异性特征十分明显,沿纤维方向强度高;配方对层合板的力学性能有一定影响;其破坏形式与铺层方式和测试角度关系密切,而与其配方基本无关。