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首页> 外文期刊>Journal of Materials Science >Experimental observation and computer simulation of conic markings on fracture surfaces of polymers
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Experimental observation and computer simulation of conic markings on fracture surfaces of polymers

机译:聚合物断裂表面圆锥形记号的实验观察和计算机模拟

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摘要

The morphology of conic markings was observed on the fracture surfaces of amorphous polysulfone, polyethersulfone and polyetherimide and semicrystalline polypropylene, polyphenylene sulfide and polybutylene terephthalate by using scanning electron microscopy. Most of conics exhibit the stepped stereo configuration, and the origin of secondary crack is depressed in the crack plane as a result of plastic deformation. The brittle-ductile transition of polymers can be analyzed by comparing the matching morphology of conic markings. According to computer simulations, the type I marking is determined by the ratio of the main to the secondary crack velocity while the type II marking is determined by the distances that two secondary cracks have covered before they meet. Variations of conic shapes can help to determine the changes of crack growth velocity.
机译:通过扫描电子显微镜观察,在非晶态聚砜,聚醚砜和聚醚酰亚胺以及半结晶聚丙烯,聚苯硫醚和聚对苯二甲酸丁二酯的断裂表面上观察到圆锥形记号的形态。大部分圆锥形体呈现阶梯状立体构型,并且由于塑性变形,次级裂纹的起点在裂纹平面中被压低。可以通过比较圆锥形标记的匹配形态来分析聚合物的脆性-延性转变。根据计算机模拟,类型I的标记由主裂纹与次要裂纹速度的比值确定,而类型II的标记则由两个次要裂纹相遇之前所覆盖的距离确定。圆锥形状的变化可以帮助确定裂纹扩展速度的变化。

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