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On polymer network rupture in gels in the limit of very slow straining or a very slow crack propagation rate

机译:凝胶中的聚合物网络破裂时,应变非常缓慢或裂纹扩展速度非常缓慢

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摘要

The J-integral is formulated in a direct manner for a gel consisting of a cross-linked polymer network and a mobile solvent. The form of the J-integral is given for a formulation that exploits the Helmholtz energy density of the gel and expressions are provided for it in both the unswollen reference configuration of the polymer network and in the current swollen configuration of the gel when small strains are superimposed on the swollen state. Similarly, the form of the J-integral is developed for an approach that exploits the Landau energy density of the gel and its reference and current configuration expressions are also developed. The Flory-Rehner model of the gel is used to obtain expressions for both the densities of Helmholtz energy and the Landau energy, with the chemical potential of the solvent derived from the Helmholtz energy used in the Legendre transformation that generates the Landau energy. Both the Helmholtz and Landau energies are expanded asymptotically for small strains superimposed on the swollen state of the gel. The results for the various forms of the energies are then used to obtain the elasticity law and the incompressibility constraint for the gel, each derived from both the Helmholtz and the Landau energies. The results are then inserted into the J-integral and fracture mechanics insights obtained for the rapid and slow loading of a gel body with a stationary crack and for a gel body with a crack that is experiencing slow, steady propagation. It is found that the Landau energy form of the J-integral is particularly useful for the slow loading of stationary cracks and for the slow steady propagation of the crack. It is noted that solvent flux during crack growth can cause an increase in the effective fracture toughness of the gel. However, it is found that there is an absence of such diffusional toughening in the rapidly loaded stationary crack case, the very slowly loaded stationary crack case and for the crack experiencing extremely slow but steady propagation. It is further found that, for cracks propagating very slowly, diffusional toughening rises linearly with crack propagation rate up to a critical crack growth rate, above which the diffusional toughening becomes insensitive to the crack propagation rate. The critical crack propagation rate for this transition is found to be dependent on the linear dimension of the gel body and on constitutive parameters for the gel elasticity and solvent diffusion.
机译:J-积分直接配制为由交联聚合物网络和流动溶剂组成的凝胶。 J-积分剂的形式用于利用凝胶的亥姆霍兹能量密度的配方,并提供了在聚合物网络未溶胀的参考构型和当小应变时凝胶的当前溶胀构型下的表达式。叠加在肿胀的状态上。类似地,J积分的形式是为利用凝胶的Landau能量密度的方法开发的,还开发了其参考和当前构型表达式。凝胶的Flory-Rehner模型用于获得亥姆霍兹能量和Landau能量密度的表达式,溶剂的化学势来源于在Legendre转换中产生的Landau能量的亥姆霍兹能量。对于叠加在凝胶溶胀状态的小应变,Helmholtz和Landau能量都渐近扩展。然后将各种形式能量的结果用于获得凝胶的弹性定律和不可压缩性约束,它们分别从亥姆霍兹能量和朗道能量中得出。然后将结果插入到J积分和断裂力学见解中,以快速和缓慢地加载具有固定裂纹的凝胶体,并获得具有缓慢,稳定传播的裂纹的凝胶体。已经发现,J积分的朗道能量形式对于固定裂纹的缓慢加载和裂纹的缓慢稳定传播特别有用。应当指出的是,裂纹扩展过程中的溶剂通量可以引起凝胶的有效断裂韧性的增加。但是,发现在快速加载的固定裂纹情况,非常缓慢加载的固定裂纹情况以及裂纹经历非常缓慢但稳定的扩展的情况下,都没有这种扩散增韧。进一步发现,对于非常缓慢地扩展的裂纹,扩散增韧以裂纹扩展速率线性增长,直至临界裂纹扩展速率,在该临界扩展速率以上,裂纹扩展速率变得不敏感。发现该转变的临界裂纹扩展速率取决于凝胶体的线性尺寸以及凝胶弹性和溶剂扩散的本构参数。

著录项

  • 来源
    《Journal of the Mechanics and Physics of Solids》 |2020年第3期|18.1-18.12|共12页
  • 作者

  • 作者单位

    Materials Department University of California Santa Barbara CA 93106 USA Department of Mechanical Engineering University of California Santa Barbara CA 93106 USA School of Engineering Aberdeen University King's College Aberdeen AB24 3UE Scotland UK INM - Leibniz Institute for New Materials Campus D2 2 66123 Saarbrücken Germany;

    The BioRobotics Institute Scuola Superiore Sant'Anna 56025 Pontedera (Pisa) Italy;

    SISSA - International School for Advanced Studies 34136 Trieste Italy;

    Engineering Department Trumpington Street Cambridge University Cambridge CB2 1PZ UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Polymer gel; Rupture; Slow crack growth; J-integral; Toughness;

    机译:聚合物凝胶;破裂;裂纹扩展缓慢;J积分韧性;
  • 入库时间 2022-08-18 05:19:20

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