TY - JOUR
T1 - Polymers Resist Fatigue Crack Growth by Deconcentrating Stress
AU - Steck, Jason
AU - Ahn, Christine Heera
AU - Suo, Zhigang
N1 - Publisher Copyright:
Copyright © 2025 by the author(s).
PY - 2025/7/1
Y1 - 2025/7/1
N2 - When a material is cyclically loaded, an amplitude of load exists, called the threshold, below which a crack does not grow. In a polymeric material, physical interactions between polymer chains are much weaker than covalent bonds between repeat units along an individual chain. Consequently, when a crack impinges on a chain, high tension transmits along a long length of the chain. Breaking a single covalent bond dissipates the energy stored in that long length. The longer the length over which high tension transmits, the higher the threshold. Here we review how stress deconcentrates in diverse polymeric materials, including polymer networks, particle-reinforced elastomers, glassy polymers, semicrystalline polymers, phase-separated polymers, and composites. Ample opportunities exist for investigation and innovation.
AB - When a material is cyclically loaded, an amplitude of load exists, called the threshold, below which a crack does not grow. In a polymeric material, physical interactions between polymer chains are much weaker than covalent bonds between repeat units along an individual chain. Consequently, when a crack impinges on a chain, high tension transmits along a long length of the chain. Breaking a single covalent bond dissipates the energy stored in that long length. The longer the length over which high tension transmits, the higher the threshold. Here we review how stress deconcentrates in diverse polymeric materials, including polymer networks, particle-reinforced elastomers, glassy polymers, semicrystalline polymers, phase-separated polymers, and composites. Ample opportunities exist for investigation and innovation.
KW - fatigue
KW - fatigue threshold
KW - fracture
KW - polymer
KW - soft materials
KW - stress deconcentration
UR - https://www.scopus.com/pages/publications/105011393464
U2 - 10.1146/annurev-matsci-101922-122133
DO - 10.1146/annurev-matsci-101922-122133
M3 - 文献综述
AN - SCOPUS:105011393464
SN - 1531-7331
VL - 55
SP - 333
EP - 358
JO - Annual Review of Materials Research
JF - Annual Review of Materials Research
IS - 1
ER -