Ah&act-Static and dynamic energy release rates were utilised to study energy losses away from the crack tip in three diierent fracture specimens during a dynamic fracture event. The method of analysis utilizes an energy balance in the system. The results show that a substantial amount of energy is l
Fracture energy release rate in nylon fibers
β Scribed by S. Michielsen
- Publisher
- John Wiley and Sons
- Year
- 1998
- Tongue
- English
- Weight
- 106 KB
- Volume
- 67
- Category
- Article
- ISSN
- 0021-8995
No coin nor oath required. For personal study only.
β¦ Synopsis
The effect of relative humidity on the fracture energy release rate, G Ic , for single nylon 6,6 fibers has been determined previously. In this article, it is shown that G Ic is independent of relative humidity for moisture contents of ΓΊ 2.3% once the plastic zone correction is made. G Ic is compared with various proposed mechanisms to account for fracture energy. It is shown that the energy required to disrupt or ''melt'' the crystals in the plastic zone accounts for the majority of the energy required to break the specimen, and should be considered explicitly in future analyses of fracture in semicrystalline polymers.
π SIMILAR VOLUMES
The energy release rate G is a measure of the elastic energy causing crack propagation whereas the fracture heat Q indicates the amount of energy dissipated in the fracture zone. As long as any change in structure and energy losts by elastic waves can be neglected, the fracture heat represents the e
The fatigue and fracture performance of a cracked plate can be significandy improved by reinforcing it with high modulus composite material. The reduction in valid fracture mechanics parameters like energy release rate (G) or stress intensity factor (SIF) is measure of effectiveness of the reinforce