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轴向荷载作用下聚丙烯纤维与纳米黏土改性石灰处理土的弹性模量及损伤应力-应变模型

The Elastic Modulus and Damage Stress-Strain Model of Polypropylene Fiber and Nano Clay Modified Lime Treated Soil under Axial Load.

作者信息

Wang Zhichao, Zhang Weiqing, Jiang Ping, Li Cuihong

机构信息

School of Civil Engineering, Shaoxing University, Shaoxing 312000, China.

出版信息

Polymers (Basel). 2022 Jun 27;14(13):2606. doi: 10.3390/polym14132606.

Abstract

Using polypropylene fiber (PPF) and nano clay modified lime treated soil (LS), the static and dynamic properties of fiber modified lime treated soil (FLS), nano clay modified lime treated soil (NLS), and fiber nano clay composite modified lime treated soil (NFLS) were studied. Through the unconfined compressive strength (UCS) test and dynamic triaxial test of FLS, NLS, and NFLS, the static and dynamic elastic modulus characteristics at 7 day curing age were explored, and the damage stress-strain model was established. The results show that: (1) Polypropylene fiber and nano clay can significantly enhance the mechanical properties of NFLS. Nano clay can promote the reaction between lime and soil to produce calcium silicate hydrate (C-S-H) and calcium aluminate hydrate (C-A-H), thus improving the strength of NFLS, and UCS can be increased by up to 103%. Polypropylene fiber can enhance the ductility of NFLS and increase the residual ductility strength, and the residual strength can be increased by 827%. (2) Nano clay can enhance the static and dynamic elastic modulus of modified lime treated soil. The static and dynamic elastic modulus of NLS, FLS, and NFLS are linear with the change of polypropylene fiber and nano clay content. The static and dynamic elastic modulus of NLS, FLS, and NFLS are linear, exponential, and logarithmic, respectively. (3) The mesoscopic random damage model can characterize the stress-strain relationship of NFLS. Polypropylene fiber and nano clay can improve the ductility and strength of modified LS, and the composite addition of polypropylene fiber and nano clay can improve the ability of modified LS to resist damage.

摘要

采用聚丙烯纤维(PPF)和纳米黏土改性石灰处理土(LS),研究了纤维改性石灰处理土(FLS)、纳米黏土改性石灰处理土(NLS)以及纤维 - 纳米黏土复合改性石灰处理土(NFLS)的静动力特性。通过对FLS、NLS和NFLS进行无侧限抗压强度(UCS)试验和动三轴试验,探究了7天养护龄期下的静动力弹性模量特性,并建立了损伤应力 - 应变模型。结果表明:(1)聚丙烯纤维和纳米黏土能显著提高NFLS的力学性能。纳米黏土可促进石灰与土之间的反应生成水化硅酸钙(C - S - H)和水化铝酸钙(C - A - H),从而提高NFLS的强度,UCS最高可提高103%。聚丙烯纤维可增强NFLS的延性并提高残余延性强度,残余强度可提高827%。(2)纳米黏土可提高改性石灰处理土的静动力弹性模量。NLS、FLS和NFLS的静动力弹性模量随聚丙烯纤维和纳米黏土含量的变化呈线性关系。NLS、FLS和NFLS的静动力弹性模量分别呈线性、指数和对数关系。(3)细观随机损伤模型可表征NFLS的应力 - 应变关系。聚丙烯纤维和纳米黏土可提高改性LS的延性和强度,聚丙烯纤维与纳米黏土复合添加可提高改性LS的抗损伤能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2471/9268877/bd31ff7e10c6/polymers-14-02606-g002.jpg

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