COMPARISON OF THE FRACTURE AND FAILURE BEHAVIOR OF POLYPROPYLENE COMPOSITES REINFORCED BY LONG GLASS-FIBERS AND BY GLASS MATS

被引:78
作者
KARGERKOCSIS, J [1 ]
HARMIA, T [1 ]
CZIGANY, T [1 ]
机构
[1] TECH UNIV BUDAPEST,FAC MECH ENGN,INST MACHINE PART DESIGN,H-1111 BUDAPEST,HUNGARY
关键词
ACOUSTIC EMISSION; FRACTURE; GLASS-FIBER-REINFORCED COMPOSITE; GLASS-MAT-REINFORCED COMPOSITE; INFRARED THERMOGRAPHY; POLYPROPYLENE;
D O I
10.1016/0266-3538(95)00068-2
中图分类号
TB33 [复合材料];
学科分类号
摘要
The static fracture and related failure behavior of injection-molded long-glass-fiber-reinforced polypropylene (LGF-PP) and hot-pressed glass-fiber-mat-reinforced polypropylene (GMT-PP) with the same reinforcement fraction (V-f approximate to 0.20) has been studied and compared. It was established that GMT-PP is superior to LGF-PP when fracture toughness and energy are considered under both static and dynamic conditions. The failure mode and sequence of the composites were determined from acoustic emission (AE) analysis by relating AE signal characteristics (amplitude and energy) to the individual failure events. GMT-PP failed in a stepwise manner related to the successive breakdown of the GF mat incorporated. This resulted in a more extended damage zone than for LGF-PP. Size and shape of the damage zone were estimated by mapping the located AE events and by considering infrared thermogmphic (IT) pictures showing heat evolution in the crack tip region. The damage zone size deduced from AE analysis proved to be lower than that obtained from IT studies. This was attributed to differences in the damage assessment: AE informs us about the development of the full damage zone at every stage of the loading, while IT is sensitive for the process zone (being a part of the damage zone) in the crack growth range. It may be stated that the energy-related toughness of GMT-PP is superior to that of the LGF-PP at the same reinforcement content.
引用
收藏
页码:287 / 298
页数:12
相关论文
共 15 条
[1]  
BERGLUND LA, 1995, POLYPROPYLENE STRUCT, V3, P202
[2]  
Bigg DM., 1995, POLYPROPYLENE STRUCT, P263, DOI [10.1007/978-94-011-0523-1_7, DOI 10.1007/978-94-011-0523-1_7]
[3]   COMPARISON OF THE FAILURE MODE IN SHORT AND LONG GLASS-FIBER-REINFORCED INJECTION-MOLDED POLYPROPYLENE COMPOSITES BY ACOUSTIC-EMISSION [J].
CZIGANY, T ;
KARGERKOCSIS, J .
POLYMER BULLETIN, 1993, 31 (04) :495-501
[4]   FRACTURE-MECHANICAL CHARACTERIZATION OF A GLASS-FIBER MAT-REINFORCED POLYPROPYLENE BY INSTRUMENTED IMPACT BENDING [J].
FEJESKOZMA, Z ;
KARGERKOCSIS, J .
JOURNAL OF REINFORCED PLASTICS AND COMPOSITES, 1994, 13 (09) :822-834
[5]   FRACTURE-TOUGHNESS AND FAILURE MECHANISMS IN UNREINFORCED AND LONG-GLASS-FIBER-REINFORCED PA66/PP BLENDS [J].
HARMIA, T ;
FRIEDRICH, K .
COMPOSITES SCIENCE AND TECHNOLOGY, 1995, 53 (04) :423-430
[6]  
Karger-Kocsis, 1995, POLYPROPYLENE STRUCT, P142
[7]  
Karger-Kocsis J., 1989, APPL FRACTURE MECH C, P189
[8]   INSTRUMENTED IMPACT FRACTURE AND RELATED FAILURE BEHAVIOR IN SHORT-GLASS-FIBER-REINFORCED AND LONG-GLASS-FIBER-REINFORCED POLYPROPYLENE [J].
KARGERKOCSIS, J .
COMPOSITES SCIENCE AND TECHNOLOGY, 1993, 48 (1-4) :273-283
[9]   ASSIGNMENT OF ACOUSTIC-EMISSION TO THE FAILURE SEQUENCE AND DAMAGE ZONE GROWTH IN GLASS-FIBER STRAND MAT-REINFORCED STRUCTURAL NYLON RIM COMPOSITES [J].
KARGERKOCSIS, J ;
YUAN, Q ;
CZIGANY, T .
POLYMER BULLETIN, 1992, 28 (06) :717-723
[10]   FRACTURE-MECHANICAL CHARACTERIZATION AND DAMAGE ZONE DEVELOPMENT IN GLASS-FIBER MAT-REINFORCED THERMOPLASTICS [J].
KARGERKOCSIS, J .
POLYMER BULLETIN, 1993, 31 (02) :235-241