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高速破坏的PMMA断裂表面形态与裂纹速度的相依关系
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作者 盛季生 赵亚溥 《南通工学院学报》 1999年第1期1-9,共9页
利用超声波断口图和扫描电镜建立了有机玻璃快速破坏时断裂表面形态与主裂纹速度间的直接联系,提出了“能核”与“能核爆破”模式,并用此对断裂表面微观形态的特征和形成机理进行了解释。
关键词 有机玻璃 微观形态 PMMA 断裂表面形态 裂纹速度
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Vortex fluidic mediated one-step fabrication of polyvinyl alcohol hydrogel films with tunable surface morphologies and enhanced self-healing properties
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作者 Javad Tavakoli Colin LRaston +1 位作者 Yong Ma Youhong Tang 《Science China Materials》 SCIE EI CSCD 2020年第7期1310-1317,共8页
Previous strategies for controlling the surface morphologies of polyvinyl alcohol(PVA)-based hydrogels,including freeze-drying and electrospinning,require a posttreatment process,which can affect the final textures an... Previous strategies for controlling the surface morphologies of polyvinyl alcohol(PVA)-based hydrogels,including freeze-drying and electrospinning,require a posttreatment process,which can affect the final textures and properties of the hydrogels.Of particular interest,it is almost impossible to control the surface morphology during the formation of PVA hydrogels using these approaches.The strategy reported in this study used the novel vortex fluidic device(VFD)technology,which for the first time provided an opportunity for one-step fabrication of PVA hydrogel films.PVA hydrogels with different surface morphologies could be readily fabricated using a VFD.By also reducing the crosslinking agent concentration,a self-healing gel with enhanced fracture stress(60%greater than that of traditionally made hydrogel)was achieved.Interestingly,the associated selfhealing property remained unchanged during the 260-s mechanical testing performed with the strain rate of 5%s-1.The VFD can effectively tune the surface morphologies of the PVA-based hydrogels and their associated properties,particularly the self-healing property. 展开更多
关键词 polyvinyl alcohol vortex fluidic device one-step fabrication SELF-HEALING surface morphology manipulation
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