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1.
纤维加筋土工程性质研究进展   总被引:7,自引:0,他引:7  
纤维加筋是一种新型的土体改良技术,是指将分散的纤维丝均匀掺入土体中,达到提高土体的工程力学性能的目的。本文根据国内外近20a来在该领域取得的成果,着重对纤维加筋材料、纤维加筋土的工程性质及加筋机理等方面的研究进展进行了介绍。在纤维加筋材料方面,主要有人工合成纤维和自然纤维两种; 在纤维加筋土工程性质方面,纤维加筋能有效提高土体的抗剪、抗压、抗拉强度和承载力,增加土体的破坏韧性和渗透性,降低膨胀土的胀缩性和裂隙发育程度; 在纤维加筋机理方面,目前主要认为纤维的加筋效果主要取决于纤维-土界面的力学作用,即界面黏聚力和摩擦力。最后,针对目前纤维加筋土的研究不足,提出了今后该领域的研究重点和方向,主要包括: 开发简单可行的纤维土施工器具和工艺、开发更专业的纤维产品和降低纤维成本、开展大尺度模型试验和现场试验、纤维-土界面作用机理研究、纤维加筋土的破坏和失效机理研究、纤维加筋土的力学模型及计算理论研究、纤维加筋土的动力学特性研究等。  相似文献   

2.
黄仙枝  白晓红 《岩土力学》2005,26(9):1464-1468
大型三轴固结排水剪切试验表明:土工带加筋后土体的破坏强度和破坏应变均得到提高。从加筋土和未加筋土的强度包线看出,加筋前后土体的强度曲线基本平行,摩擦角相等,粘聚力提高。通过分析加筋土的应力-应变关系试验曲线,研究土工带加筋素碎石土的抗剪强度特性,提出土工带加筋土的抗剪强度表达式。为进一步研究土工带素碎石土加筋机理提供试验基础。  相似文献   

3.
加筋黄土变形和强度特性的三轴试验研究   总被引:3,自引:0,他引:3  
用三轴压缩试验方法研究了土工合成材料加筋黄土的应力—应变及强度特性,探讨了在各种不同加筋方式和围压下加筋机理。结果表明,加筋可以增加土体破坏时的轴向应变和土体的抗拉能力,减小土的侧向变形;试验结果发现,并不是加筋层数越多越有利于土体的稳定,而是表现为加筋土的强度与布筋位置和层间距有一定的关系;同时,分析和解释了未加筋土的变形破坏和筋材在土体剪切破坏过程中的阻裂机理。试验研究得出了在土体中部加筋是最经济合理的布筋方式。  相似文献   

4.
用三轴压缩试验方法研究了土工合成材料加筋黄土的应力-应变及强度特性,探讨了在各种不同加筋方式和围压下加筋机理。结果表明,加筋可以增加土体破坏时的轴向应变和土体的抗拉能力,减小土的侧向变形;试验结果发现,并不是加筋层数越多越有利于土体的稳定,而是表现为加筋土的强度与布筋位置和层间距有一定的关系;同时,分析和解释了未加筋土的变形破坏和筋材在土体剪切破坏过程中的阻裂机理。试验研究得出了在土体中部加筋是最经济合理的布筋方式。  相似文献   

5.
含水率与加筋率对加筋土抗剪强度的影响规律研究   总被引:1,自引:1,他引:0       下载免费PDF全文
研究含水率和加筋率对稻秸秆加筋土的强度影响问题,对促进稻秸秆加筋土在边坡生态防护中的推广应用具有重要作用。针对边坡生态防护所采用的稻秸秆加筋土,通过直剪试验研究不同加筋率与含水率条件下加筋土抗剪强度的变化规律。试验通过加水法和烘干法改变6种加筋率(加筋率为:0~0.5%)试样的含水率,然后进行室内直剪试验。结果表明:(1)不同加筋率条件下加水法所得加筋土试样的抗剪强度、粘聚力与内摩擦角均随含水率的增加先增大后减小,并在土体最优含水率14.8%时出现峰值,而烘干法所得加筋土试样的抗剪强度、粘聚力与内摩擦角则随含水率的增加而逐渐减小;(2)加水法与烘干法所得抗剪强度、粘聚力与内摩擦角受含水率的影响均存在临界值,约为19%;(3)在增长率相同的条件下含水率对加筋土抗剪性能的影响大于加筋率。  相似文献   

6.
巫山加筋土的三轴试验研究   总被引:1,自引:0,他引:1  
用常规三轴仪,研究了巫山县集仙中路1号加筋土挡墙加筋填土在不固结、不排水条件下的变形破坏机理和抗剪强度性质。试验结果表明,该加筋填土的抗剪强度性质虽较不加筋土有一定提高,但由于筋带表面网格细微,与土体之间的咬合摩擦力较弱,易在筋带与土体之间产生人为的滑动面,从而造成加筋土抵抗小,变形的能力减低;同时试验还表明,加筋层数和围压也是决定加筋土性质的重要因素。  相似文献   

7.
为研究纤维加筋黄土CBR值影响因素及纤维增强土体机理,以短切玄武岩纤维为筋材,通过改变土体含水率、纤维长度、纤维含量、击实次数、浸水时间等条件进行加州承载比试验,探究初始含水率、纤维参数及试验方法对加筋土局部抗剪强度的影响规律。结果表明:纤维加筋土CBR值随含水率的增加呈现先增大后减小的趋势,存在“施工最优含水率”且相比击实试验最优含水率高1%~3%左右;纤维加筋土CBR值高于黄土CBR值,确定纤维长度20 mm,纤维含量0.4%为最优配比;击实次数从30击增加到98击,黄土CBR值提高273%,纤维加入后CBR值提高327%,加筋作用使土体通过提高击实功来提升强度的效果更加显著;浸水对试样CBR值影响较大,浸水时间对试样CBR值影响较小,且纤维的加入使试样对浸水时间的敏感度进一步降低,加筋土浸水2 d后强度降低54%,浸水4 d后强度降低58%。  相似文献   

8.
砂土液化是导致重大地震灾害的主要原因之一。本研究探讨了天然纤维加筋砂土在循环荷载作用下的抗液化性能。在不排水条件下,对具有不同纤维含量的加筋砂土试样进行了一系列循环三轴试验,研究了饱和砂土的液化特性以及循环剪应变幅值、纤维含量对饱和砂土抗液化性能的影响。此外,通过模拟已完成的循环三轴试验,建立了二维有限元数值模型,并对具有不同纤维含量的加筋砂土进行了参数标定。研究结果表明:(1)增加循环剪应变幅值将促进超孔压累积,使得滞回曲线斜率和平均有效应力减小速度加快;(2)纤维的存在能够减缓超孔压的累积,随着纤维含量增加,加筋砂土抗液化能力得到明显提高;(3)标定后的本构模型参数能可靠地用于模拟纤维加筋砂土的液化响应。研究结果为饱和砂土抗液化问题与纤维加筋砂土的数值模拟提供了有价值的参考。  相似文献   

9.
棕榈加筋上海黏土强度特性试验研究   总被引:2,自引:0,他引:2  
采用棕榈作为加筋材料对上海黏土进行直剪慢剪试验,通过改变筋材的加筋率及尺寸研究棕榈对上海黏土强度特性的影响。试验表明,(1)与素土相比,加筋土的抗剪强度和黏聚力明显提高,但内摩擦角的变化较小;(2)加筋土的最优加筋率为0.6%;(3)棕榈尺寸为6 mm×12 mm的抗剪强度优于6 mm×6 mm和6 mm×18 mm的抗剪强度;(4)垂直压力为100 kPa时,应力-应变曲线呈应变软化型,随着垂直压力的增加,应力-应变曲线呈应变硬化型;(5)与素土相比,加筋土残余强度降低幅度减小,土体的抗变形能力提高,同时分析了加筋的抗剪强度作用机制,阐述了棕榈加筋材料在黏土中的作用,棕榈可作为加固上海黏土的一种有效方法。  相似文献   

10.
魏丽  柴寿喜  张琳  李瑶 《岩土力学》2022,43(12):3241-3248
合成纤维、矿物纤维和植物纤维加筋土,增强了土的强度和抗变形性能。开展冻融作用下的无侧限抗压试验和劈裂抗拉试验,研究聚丙烯纤维、玄武岩纤维和棕榈纤维加筋石灰固化土的抗压和抗拉性能随冻融次数的变化规律。结果表明:未冻融和冻融环境下,聚丙烯纤维加筋固化土、玄武岩纤维加筋固化土和棕榈纤维加筋固化土的最优质量加筋率分别为0.2%、0.2%和0.4%。随冻融次数增加,三类纤维加筋固化土的抗压强度和抗拉强度均呈阶段性下降,纤维加筋固化土的破坏应变均大于石灰固化土。冻融作用下,聚丙烯纤维加筋固化土的抗压强度、抗拉强度和抗变形性能均优于另两类加筋固化土。纤维与土颗粒间的界面作用力和纤维对土的空间约束作用,增强了土的冻融耐久性。对比三类纤维加筋固化土的试验结果,聚丙烯纤维加筋固化土的抗冻融性能最优。  相似文献   

11.
Several soil improvement methods are used to enhance the engineering properties of soil, among which, reinforcement by fibers is considered as an effective ground improvement method because of its cost effectiveness, and easy adaptability. The present investigation chooses synthetic wick and vinifera raphia fibers as reinforcement. The synthetic wick fiber was randomly included into the soil at four different percentages i.e. 0, 2, 4, 6% by volume of raw soil. Vinifera raphia fiber was used at one percentage (4%) as control. The main objective of this research is to focus on the strength behavior of clayey soil reinforced with randomly included synthetic wick fiber. The physical and mineralogical characterization was carried out on ten soil samples. The compression, flexion, abrasion, water absorption and capillarity tests were performed on synthetic wick reinforced specimens with various fiber contents. The results of these tests have clearly shown an improvement in the compression strength values from 1.65 to 2.84 MPa for the wicks fibers, and the flexural strength values which varied between 1.08 and 1.96 MPa. Hence, the waste of synthetic wick fibers is therefore an efficient reinforcement for compressed earth blocks, which are very significant for construction of durable and economic infrastructures.  相似文献   

12.
It is generally recognized that the low strength and high compressibility are the characteristics of soft soil. In addition to other techniques, reinforcement can also be used in increasing the strength and decreasing the deformation of this kind of soil. The results of an investigation into the effects of a natural fiber on the consolidation and shear strength behavior of Shanghai clayey soil reinforced with wheat straw fibers are presented in this paper. A series of one dimensional consolidation and triaxial tests were conducted on samples of unreinforced and reinforced Shanghai clayey soil with different percentages of randomly distributed wheat straw fibers. The results show that the preconsolidation pressure decreases and the coefficient of swelling and compression generally increase with increasing the fiber content until a optimum content value. Furthermore, the addition of wheat straw fiber leads to a significant increase in shear strength and friction angle of the natural soil and there is an optimum wheat fiber content that makes this increase maximal.  相似文献   

13.
This paper presents the effect of random inclusion of polypropylene fibers on strength characteristics of soil. Locally available cohesive soil (CL) is used as medium and polypropylene fibers with three aspect ratios (l/d = 75, 100 and 125) are used as reinforcement. Soil is compacted with standard Proctor’s maximum density with low percentage of reinforcement (0–1% by weight of oven-dried soil). Direct shear tests, unconfined compression tests and CBR tests were conducted on un-reinforced as well as reinforced soil to investigate the strength characteristics of fiber-reinforced soil. The test results reveal that the inclusion of randomly distributed polypropylene fibers in soil increases peak and residual shear strength, unconfined compressive strength and CBR value of soil. It is noticed that the optimum fiber content for achieving maximum strength is 0.4–0.8% of the weight of oven-dried soil for fiber aspect ratio of 100.  相似文献   

14.
Mechanical Behavior of a Clay Soil Reinforced with Nylon Fibers   总被引:2,自引:1,他引:1  
Soft soils are well known for their low strength and high compressibility. Several techniques, including reinforcement, are commonly used to increase the strength and decrease the deformation of this kind of soil. This paper presents the results of an investigation into the effects of fiber on the consolidation and shear strength behavior of a clay soil reinforced with nylon fibers. A series of one dimensional consolidation and triaxial tests were conducted on samples of unreinforced and reinforced clay with different percentages of randomly distributed nylon fibers. The results show that the preconsolidation pressure decreases and the coefficient of swelling and compression generally increase with increasing the fiber content. Furthermore, the addition of the fiber leads to a significant increase in shear strength and friction angle of the natural soil.  相似文献   

15.
MICP联合纤维加筋改性钙质砂的动力特性研究   总被引:1,自引:0,他引:1  
王瑞  泮晓华  唐朝生  吕超  王殿龙  董志浩  施斌 《岩土力学》2022,43(10):2643-2654
为了提高我国南海钙质砂地基的抗液化性能,提出利用微生物诱导碳酸钙沉积(MICP)技术联合纤维加筋技术对钙质砂进行改性处理。通过开展动三轴试验,对比分析了改性前后钙质砂试样的动应变、动孔压、应力−应变滞回曲线以及动弹性模量的发展规律和演化特征,并结合扫描电镜(SEM)试验探究了MICP和纤维加筋技术对钙质砂的联合改性机制。研究结果表明:(1)MICP技术可以明显改善钙质砂试样的抗变形与抗液化性能,相比于未胶结处理试样,仅MICP处理试样的动应变和动孔压分别降低了95.74% 和 92.46%;(2)纤维的掺入进一步提升了MICP的改性效果,相比于仅MICP处理试样,MICP和纤维加筋联合处理试样的动应变和动孔压分别降低了 74.32%和 74.18%;(3)MICP 和纤维加筋技术通过减轻试样在循环荷载作用下的循环活动强度和能量耗散、提高试样的动弹性模量和减小动弹性模量的衰减速率,从而实现试样抗变形与抗液化性能的显著提高;(4)SEM 试验分析结果表明,MICP 与纤维对钙质砂动力特性的改善具有协同作用。纤维的掺入为细菌提供了更多的附着场所,促进了碳酸钙晶体的生成量,该部分碳酸钙不仅增加了颗粒间的胶结强度,同时也将纤维固定在砂颗粒上增强了纤维网的约束作用。  相似文献   

16.
Admixtures and reinforcement materials are frequently used in practice to stabilize coarse and fine grained soils and to improve their engineering properties. However, a limited number of studies have been carried out on fiber-reinforced fine grained soils. In this study, a series of unconfined compression tests, direct shear tests, and California Bearing Ratio tests were carried out to investigate the effect of randomly distributed polypropylene fiber on the strength behavior of a fine grained soil. The content of polypropylene fiber was varied between 0.25 and 1% by total dry weight of the reinforced samples. It was observed that unconfined compression strength, cohesion intercept and California Bearing Ratio increased with the addition of fibers. On the other hand, the results of the tests indicated that shear strength angle was not affected significantly by the fiber reinforcement.  相似文献   

17.
Randomly distributed fibers have been successfully used for the reinforcement of soils to improve their properties. However, the technique requires extensive testing on samples before it can be implemented. Therefore, the purpose of this paper is to identify and quantify the influence of variables of linen-fiber (content and aspect ratio) on the performance of linen-fiber reinforced silty-sand specimens. The linen fibers have filament textures with special properties such as: low costs, plenitude in the region, lightweight, tension capacity and relative strength against deterioration. Linen fibers with diverse fiber contents (0.25, 0.50, 0.75 and 1.0% of dry weight) and ratio aspect (50, 100 and 150) were used. The composite soils were laboratory tested for compaction, unconfined compression strength (UCS), California Bearing Ratio (CBR) and direct shear tests. The test results indicated that adding linen fiber in silty-sand soil resulted in increasing in unconfined compression strength, California Bearing Ratio values, peak friction angle and cohesion values. Furthermore, adding linen fibers have the dual benefit of increasing the stiffness (modulus of elasticity) and the ductility of the reinforced soil. However, this study suggests that the optimum fiber content for silty-sand samples reinforced with linen fibers is approximately 0.75% of the dry weight of the soil and a maximum performance was achieved at aspect ratio of 100 to avoid fiber balling. The laboratory results were used for the development of linear regression equation that best relates the UCS and CBR of a reinforced soil to the aforementioned parameters.  相似文献   

18.
The effect of random inclusion of wheat straw (fibers) on shear strength characteristics of Shanghai cohesive soil is presented in this paper. 1 year old natural wheat straw (fibers) with four section lengths of 5, 10, 15, 20 mm (aspect ratio: l/d = 1.67, 3.33, 5, 6.67) are used as reinforcement and specific Shanghai cohesive soil is used as medium. Locally available cohesive soil is compacted with standard Proctor’s maximum density with low percentage of reinforcement (0.1–0.4 % of wheat straw sections by weight of oven-dried soil). A series of direct shear tests were conducted on unreinforced as well as reinforced soil to investigate the shear strength characteristics of wheat straw-reinforced soil. The test results show that the inclusion of randomly distributed wheat straw sections (fibers) in soil increases the shear strength to one degree or another. It is noticed that the optimum wheat straw (fiber) content for achieving maximum shear strength is 0.3 % of the weight of oven-dried soil for wheat straw fiber length 15–20 mm (aspect ratio: 5–6.67).  相似文献   

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