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Experimental Analysis of the Influence of Basalt Fibers on the Frost Resistance of Concrete
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作者 Junli Guo Guoxin Jiang +5 位作者 Chuan Zhao Linlin Jiang Hongyu Liu Chunyi Zhuang Zelong Ma Xin Zhang 《Journal of Geoscience and Environment Protection》 2025年第1期292-301,共10页
Concrete buildings used in cold regions are prone to freeze-thaw damage, leading to internal cracking and surface peeling of the concrete. Therefore, improving the freeze-thaw resistance of concrete is of great signif... Concrete buildings used in cold regions are prone to freeze-thaw damage, leading to internal cracking and surface peeling of the concrete. Therefore, improving the freeze-thaw resistance of concrete is of great significance for the safety of hydraulic engineering. This paper explores the effect of basalt fibers on improving the frost resistance index of concrete through a series of experiments, and analyzes the influencing mechanism. The results show that adding an appropriate amount of basalt fibers can significantly improve the frost resistance of concrete and reduce the freeze-thaw damage phenomenon indicated by concrete specimens. Adding 0.1% basalt fiber can maintain the relative dynamic modulus of concrete specimens at 98% after 150 freeze-thaw cycles, while adding 0.3% basalt fiber can control the quality loss rate of concrete specimens after 150 freeze-thaw cycles at 0.87%. Taking into account both the frost resistance effect and economic factors, it is recommended that the basalt fiber content in frost resistant concrete be 0.1%. The research results can provide reference and guidance for the optimization design of the mix proportion of hydraulic concrete in cold regions. 展开更多
关键词 basalt fiber CONCRETE Frost Resistance Dynamic Modulus of Elasticity
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Study on Sulfate Erosion Resistance of Basalt Fiber Concrete after Ultra-Low Temperature Freezing and Thawing
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作者 Kourachia Said Ali Yang Li Lingfeng Ye 《World Journal of Engineering and Technology》 2025年第1期80-95,共16页
This study investigates the compressive and tensile properties of basalt fiber-reinforced concrete (BFRC) after ultra-low-temperature freeze-thaw cycles. Scanning electron microscope (SEM) analysis was conducted to ex... This study investigates the compressive and tensile properties of basalt fiber-reinforced concrete (BFRC) after ultra-low-temperature freeze-thaw cycles. Scanning electron microscope (SEM) analysis was conducted to examine the deterioration mechanisms caused by freeze-thaw cycles and sulfate erosion. The results show that compressive and tensile strengths increase with basalt fiber dosage. The optimal dosage is 0.2%. With longer exposure to sulfate erosion, both strengths decline significantly. Basalt fibers effectively bridge cracks, control expansion, enhance compactness, and improve concrete performance. Ultra-low-temperature freeze-thaw cycles and sulfate erosion cause rapid crack growth. Sulfate erosion produces crystallization products and expansive substances. These fill cracks, create pressure, and damage the internal structure. Freezing and expansion forces further enlarge voids and cracks. This provides space for expansive substances, worsening concrete deterioration and reducing its performance. 展开更多
关键词 basalt fiber Concrete Ultra-Low Temperature Freeze-Thaw Cycle Compressive Properties Splitting Tensile Properties Strength Deterioration Model
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Mechanical properties and wear behavior of extruded basalt fibers/7075 aluminum matrix composites used for drill pipes
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作者 MA Yin-long SUN Zhi-gang +3 位作者 XIONG Hong-wei REN Jie ZHAO Jing-jing GUO Cheng-bin 《Journal of Central South University》 2025年第1期21-33,共13页
Basalt fibers/7075 aluminum matrix composites were studied to meet the demand of aluminum alloy drill pipes for material wear resistance.The composites with different basalt fiber additions were prepared by hot presse... Basalt fibers/7075 aluminum matrix composites were studied to meet the demand of aluminum alloy drill pipes for material wear resistance.The composites with different basalt fiber additions were prepared by hot pressed sintering and hot extrusion.The mechanical properties as well as friction and wear properties of the composites were studied by microstructure analysis,tensile experiments,friction and wear experiments.The results showed that basalt fibers were oriented and uniformly distributed and led to local grain refinement in the alloy matrix.The hardness and elongation of the composites were improved.The friction coefficient of the composites increased and then decreased,and the maximum wear depth and wear amount decreased,then increased,then decreased again with the growth of basalt fiber addition.Meanwhile,the inclusion of basalt fibers mitigated the uneven wear of the extruded 7075 aluminum alloy.The value of wear depth difference of 7075-0.2BF was the smallest,and that of 7075-2.0BF was close to it.The maximum wear depth and wear volume the 7075-0.2BF and 7075-2.0BF were also the smallest.The inhibition of uneven wear by basalt fibers enhanced of wear resistance for 7075 aluminum alloy,which has reference significance for improving the performance of aluminum alloy drill pipes. 展开更多
关键词 aluminum matrix composites basalt fibers mechanical properties wear behavior
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BFRP/AA5052胶粘接头力学性能及工艺参数影响研究
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作者 王大勇 崔俊佳 +3 位作者 王绍螺 王书豪 蒋浩 李光耀 《汽车工程》 北大核心 2025年第2期356-366,375,共12页
本文研究了胶粘剂、基材和尺寸等重要参数对玄武岩纤维增强塑料(BFRP)-铝合金(AA5052)和BFRP-BFRP单搭接胶粘接头力学性能的影响。基于响应面分析法(RSM)建立了工艺参数(AA5052基板厚度、搭接区长度、加载方向与玄武岩纤维主方向的夹角... 本文研究了胶粘剂、基材和尺寸等重要参数对玄武岩纤维增强塑料(BFRP)-铝合金(AA5052)和BFRP-BFRP单搭接胶粘接头力学性能的影响。基于响应面分析法(RSM)建立了工艺参数(AA5052基板厚度、搭接区长度、加载方向与玄武岩纤维主方向的夹角)对接头机械性能影响的预测模型。结果表明胶粘接头的强度和刚度受到被粘基材的屈服强度和刚度影响,BFRP-BFRP胶粘接头具有更高的峰值载荷,而BFRP-AA5052胶粘接头的整体刚度更大。使用脆性结构胶可以显著提升胶粘接头的强度和断裂吸收能,最高分别达到了57.4%与1 128.5%。引入了剪切强度Y作为评估胶粘剂强度利用率的评价指标,基于RSM建立了Y的强度预测模型,得到了具有良好显著性的回归方程,并对最佳工艺参数的区间进行了预测。根据强度预测模型分析了工艺参数的耦合作用,发现纤维方向与接头强度呈负相关,而搭接区长度和铝合金基板厚度与接头强度呈正相关。综合考虑接头强度、胶粘剂使用成本和轻量化效果,应使加载方向和纤维主方向一致,并控制搭接区长度在20-25 mm区间内,AA5052基板的厚度在2-2.5 mm区间内。本文为BFRP-AA5052胶粘结构在载运装备中的应用提供了理论和数据支持。 展开更多
关键词 玄武岩纤维 铝合金 胶粘接头 工艺参数 力学性能 预测模型
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Compressive properties of glue-laminated timber circular post modified by basalt fiber reinforced polymer
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作者 WEI Peixing GUO Wenzhen +2 位作者 ZHAO Mingjing GUO Zhensheng WANG Jianhe 《林业工程学报》 CSCD 北大核心 2024年第5期67-74,共8页
Glued timber structure is one of the main forms of modern wood architecture,which has gradually developed towards mid-and high-rise buildings.Glue-laminated timber(GLT)is comprised of several laminates of parallel-to-... Glued timber structure is one of the main forms of modern wood architecture,which has gradually developed towards mid-and high-rise buildings.Glue-laminated timber(GLT)is comprised of several laminates of parallel-to-grain dimension lumber that are bonded together with durable,moisture resistant structural adhesives.GLT can be used in horizontal applications as a beam and in vertical applications as a post.So,its compressive performance has a significant impact on structural safety.Fiber reinforced polymers(FRPs)were commonly used to improve the bearing capacity of GLT components,and the structural and process parameters largely determined the reinforcement effect.This study was aimed at investigating the influence of structural and process parameters on the axial compression performance of GLT components.Three wrapping methods(middle-part,end-part and full wrapping)and three lengths(0.6,0.8,and 1.0 m)of wood post specimens were designed in this work and the axial compression performance and ductility of GLT post specimens modified by basalt fiber reinforced polymer(BFRP)were studied.The results showed that the effect of different BFRP wrapping methods on the compressive strength and elastic modulus of laminated wood was not statistically significant(P>0.05).The compressive bearing capacity of unreinforced GLT posts decreased with the increase of aspect ratio.The GLT posts with middle-part and end-part wrapping still followed this pattern,while the compressive bearing capacity of GLT posts with full wrapping showed a pattern of first decreasing and then increasing.For GLT with low aspect ratios(4.0 or 5.3),there was no correlation between the wrapping method and the compressive bearing capacity,while the compressive bearing capacity of GLT with a high aspect ratio(6.7)for middle-part,end-part and full wrapping increased by 3.5%,7.5%and 9.7%,respectively.Compared to the unreinforced group,the ultimate axial compressive strength and modulus of elasticity(MOE)of the 6-E series specimens reinforced at both ends decreased by 2.58%and 6.70%,respectively.The ultimate axial compressive strength of the 8-E specimens reinforced at both ends increased by 8.62%and the MOE decreased by 1.91%.The compressive strength of the 10-E specimens reinforced at both ends increased by 7.51%and the MOE increased by 8.14%.The failure modes of GLT with different aspects were consistent under the same BFRP wrapping,while the failure modes of GLT with the same aspect ratio were different for different BFRP wrapping methods.The ductility performance of GLT with different aspects ratio was improved by the BFRP wrapping. 展开更多
关键词 basalt fiber reinforced polymer(bfRP) GLT circular post bearing performance
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BF复合材料及其在混凝土结构中的应用研究进展
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作者 罗文怀 彭飞 +4 位作者 宣善钦 刘流 姚硕 黄镜渟 高鹏 《混凝土与水泥制品》 2025年第1期64-69,共6页
玄武岩纤维(BF)是玄武岩矿石经过高温熔融和拉丝处理制备而成的一种新型材料,具有优异的力学性能、耐候性能,且性价比优势明显。首先,总结了BF的特性;其次,简述了BF的产品类型(短切BF、绞联BF、BF织物等),并在此基础上介绍了其在混凝土... 玄武岩纤维(BF)是玄武岩矿石经过高温熔融和拉丝处理制备而成的一种新型材料,具有优异的力学性能、耐候性能,且性价比优势明显。首先,总结了BF的特性;其次,简述了BF的产品类型(短切BF、绞联BF、BF织物等),并在此基础上介绍了其在混凝土领域的应用研究进展;最后,探讨了BF在混凝土领域的应用前景。 展开更多
关键词 玄武岩纤维 纤维复合材料 结构加固 混凝土 力学性能
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ECC+BFRP格栅复合加固钢筋混凝土梁弯曲抗冲击性能试验研究
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作者 赵德博 黄峰 +3 位作者 陈湘生 崔宏志 包小华 陈斌 《土木工程学报》 北大核心 2025年第4期24-36,共13页
文章对超高韧性水泥基材料(ECC)+玄武岩纤维复材(BFRP)格栅复合加固钢筋混凝土(RC)梁的静力与冲击动力行为进行试验研究,共进行4根梁的三点弯曲静力试验和9根梁的落锤冲击试验,考虑ECC强度、混凝土强度、FRP格栅种类、FRP格栅厚度等影... 文章对超高韧性水泥基材料(ECC)+玄武岩纤维复材(BFRP)格栅复合加固钢筋混凝土(RC)梁的静力与冲击动力行为进行试验研究,共进行4根梁的三点弯曲静力试验和9根梁的落锤冲击试验,考虑ECC强度、混凝土强度、FRP格栅种类、FRP格栅厚度等影响因素。试验中测量了支座反力、冲击力、加速度及挠度时程响应,并采用高速摄像机和非接触式数字成像测试系统(DIC)分析冲击过程中加固梁表面的动态应变。试验结果表明,随着加固层BFRP格栅配置率增大,相同冲击能量下加固梁表现出更小的挠度变形和界面剥离长度。当采用低强度ECC作为加固层基体时,提高梁体混凝土强度对界面黏结性能有所削弱,但可通过同时提高加固层ECC与梁体混凝土强度以增强界面黏结性能。采用基于平截面假定的简化模型可以较为准确地计算ECC+BFRP格栅复合加固RC梁的抗冲击承载力,但界面黏结滑移使得加固梁冲击最大挠度大于相同承载力的钢筋混凝土梁。 展开更多
关键词 ECC材料 bfRP 落锤冲击试验 抗冲击加固 界面剥离
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掺玄武岩粉的PVA-BF工程水泥基复合材料力学性能研究
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作者 马立军 牟洪臣 +1 位作者 苟维光 张云龙 《北方建筑》 2025年第2期25-30,共6页
为解决传统工程水泥基复合材料造价高且力学性能较低的问题,本文在玻璃骨料工程水泥基复合材料的基础上研究了一种新型掺玄武岩石粉的聚乙烯醇-玄武岩混杂纤维工程水泥基复合材料(PVA/BF-ECC)。通过使玄武岩石粉与玻璃砂、聚乙烯醇纤维... 为解决传统工程水泥基复合材料造价高且力学性能较低的问题,本文在玻璃骨料工程水泥基复合材料的基础上研究了一种新型掺玄武岩石粉的聚乙烯醇-玄武岩混杂纤维工程水泥基复合材料(PVA/BF-ECC)。通过使玄武岩石粉与玻璃砂、聚乙烯醇纤维和玄武岩纤维产生协同效应,从而达到提升工程水泥基复合材料的强度和韧性,并有效降低其生产成本。结果表明,当分别以不同比例的玄武岩纤维和玄武岩石粉替代聚乙烯醇纤维和玻璃砂时,工程水泥基复合材料的各项力学性能均得到了显著提高,为相关领域的研究提供了重要参考。 展开更多
关键词 玄武岩纤维 玄武岩石粉 玻璃砂 力学性能
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Experimental study of pavement performance of basalt fiber-modified asphalt mixture 被引量:17
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作者 范文孝 康海贵 郑元勋 《Journal of Southeast University(English Edition)》 EI CAS 2010年第4期614-617,共4页
To discuss the pavement performance of basalt fiber-modified asphalt mixtures,the optimum dosages of asphalt and fibers are studied by the Marshall test and the rutting test.The results demonstrate that the optimum do... To discuss the pavement performance of basalt fiber-modified asphalt mixtures,the optimum dosages of asphalt and fibers are studied by the Marshall test and the rutting test.The results demonstrate that the optimum dosages of asphalt and fibers are 4.63% and 0.3%,respectively.Then the pavement performances of basalt(polyester,xylogen)fiber-modified asphalt mixtures are investigated through high temperature stability tests,water stability tests and low temperature crack resistance tests.It indicates that the pavement performances of the fiber-modified asphalt mixtures such as rutting dynamic stability,freezing splitting tensile strength,low temperature crack resistance and so on are improved compared with control asphalt mixture.The results show that the pavement performances of asphalt mixtures can be improved by fiber-modifiers.Besides,the improvement effects of basalt fiber are superior to polyester fiber and xylogen fiber. 展开更多
关键词 asphalt mixture basalt fiber Marshall test high temperature stability test pavement performance
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BFRP筋回收轮胎钢纤维混凝土黏结性能分析 被引量:3
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作者 范小春 黄祎晨 +1 位作者 张澳 徐伟 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第2期389-397,共9页
对玄武岩纤维增强复合材料(BFRP)筋在回收轮胎钢纤维(RTSF)混凝土中的黏结性能进行了试验和分析研究.对不同RTSF体积掺量、BFRP筋直径和嵌入长度的试件进行了拉拔试验,研究其对黏结破坏模式、黏结滑移响应和黏结强度的影响,并提出了BFRP... 对玄武岩纤维增强复合材料(BFRP)筋在回收轮胎钢纤维(RTSF)混凝土中的黏结性能进行了试验和分析研究.对不同RTSF体积掺量、BFRP筋直径和嵌入长度的试件进行了拉拔试验,研究其对黏结破坏模式、黏结滑移响应和黏结强度的影响,并提出了BFRP筋RTSF混凝土的黏结滑移理论模型.结果表明:BFRP筋RTSF混凝土黏结破坏类型包括拔出破坏、劈裂破坏以及拔出且劈裂破坏;BFRP筋直径对黏结破坏模式无显著影响,而RTSF体积掺量、BFRP筋直径和嵌入长度均对黏结强度有较大影响,且RTSF体积掺量与极限黏结强度呈正相关,BFRP筋直径和嵌入长度对其影响与之相反;当RTSF体积掺量从0增大至1.5%时,其极限黏结强度最大可提高约23.87%.与已有模型相比,所提出的黏结滑移理论模型对BFRP筋RTSF混凝土的黏结滑移曲线具有更高的拟合精度. 展开更多
关键词 bfRP筋 回收轮胎钢纤维(RTSF)混凝土 拉拔试验 黏结应力-滑移曲线
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BFPC固定结合面虚拟材料热特性参数建模
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作者 于英华 朱华杰 +2 位作者 曹泉 沈佳兴 阮文新 《辽宁工程技术大学学报(自然科学版)》 CAS 北大核心 2024年第1期62-67,共6页
为确定含有玄武岩纤维树脂混凝土(basalt fiber polymer concrete,BFPC)固定结合面的机床基础件热特性参数,基于虚拟材料法建立了含有BFPC固定结合面组件的仿真模型,并对其热特性进行仿真分析;设计制造了含有BFPC固定结合面的组件,通过... 为确定含有玄武岩纤维树脂混凝土(basalt fiber polymer concrete,BFPC)固定结合面的机床基础件热特性参数,基于虚拟材料法建立了含有BFPC固定结合面组件的仿真模型,并对其热特性进行仿真分析;设计制造了含有BFPC固定结合面的组件,通过实验方法研究组件的热特性。将仿真分析和实验研究的结果进行对比,分析表明:两种方法得到的组件在不同时刻的温度场具有一致性,且仿真与对应实验点温度的误差不大于8.57%,证明了所建立的BFPC固定结合面虚拟材料参数模型的准确性,以及基于此采用虚拟材料法对含有BFPC固定结合面组件进行热特性仿真分析的精确性和有效性。 展开更多
关键词 玄武岩纤维树脂混凝土 结合面 热特性 虚拟材料
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玄武岩纤维增强水泥基材料与BFRP筋的黏结性能研究
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作者 于彬 成佃虎 +2 位作者 丁里宁 张楚楚 倪路瑶 《江西建材》 2024年第8期354-359,共6页
文中利用中心抗拔试验研究了玄武岩纤维增强复合材料(BFRP)筋和玄武岩纤维增强水泥基材料(BFRCM)的黏结滑移性能,分析了筋材种类、基体种类、筋材直径、锚固长度对黏结性能的影响,在此基础上,提出了BFRP筋和BFRCM的三阶段黏结滑移本构... 文中利用中心抗拔试验研究了玄武岩纤维增强复合材料(BFRP)筋和玄武岩纤维增强水泥基材料(BFRCM)的黏结滑移性能,分析了筋材种类、基体种类、筋材直径、锚固长度对黏结性能的影响,在此基础上,提出了BFRP筋和BFRCM的三阶段黏结滑移本构模型。结果表明,BFRP与混凝土的黏结强度高于钢筋,BFRP筋与砂浆的黏结强度略小于与混凝土的黏结强度,BFRP筋直径和砂浆中的纤维体积掺量均与黏结强度呈反比。此外,分析显示黏结滑移曲线可分为微滑移段、滑移段、下降段和残余段,利用CMR模型上升段、连续曲线模型下降段和GFRP/钢绞线复合筋模型的残余段建立了BFRP筋-BFRCM的高精度黏结滑移模型。该研究为BFRP筋和BFRCM的工程应用提供了重要的研究基础。 展开更多
关键词 bfRP筋 玄武岩纤维水泥基材料 黏结滑移 本构模型
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Fatigue Property of Basalt Fiber-Modified Asphalt Mixture under Complicated Environment 被引量:10
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作者 郑元勋 CAI Yingchun +1 位作者 ZHANG Guanghai FANG Hongyuan 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2014年第5期996-1004,共9页
The fatigue property of asphalt mixtures under complicated environment (low-temperature bending performance, chloride penetration, freezing-thawing cycle and their coupling effect) and the improvement effect for rel... The fatigue property of asphalt mixtures under complicated environment (low-temperature bending performance, chloride penetration, freezing-thawing cycle and their coupling effect) and the improvement effect for relevant property of basalt fiber-reinforcing asphalt mixture under complicated environment are studied. Two grading types of asphalt mixtures, AC-16I and AC-13I, are chosen, whose optimum asphalt-aggregate ratio and optimum dosage of basalt fiber are determined by the Marshall test. The standard specimens are made firstly, and then the low temperature bending tests of asphalt mixture and basalt fiber-reinforced asphalt mixture under the coupling effect of the chloride erosion and freezing-thawing cycle have been carried out. Finally, the fatigue property tests of asphalt mixture and basalt fiber-reinforced asphalt mixture under complex environment are performed on MTS material testing system. The results indicate that the tensile strength, the maximum curving tensile stress, the curving stiffness modulus, and fatigue properties of asphalt mixture are influenced by the coupling effect of the chloride erosion and freezing-thawing cycle. The low-temperature bending performance and fatigue property of asphalt mixtures under complicated environment can be greatly improved by adding moderate basalt fiber. The dense gradation asphalt mixture possesses stronger ability to resist adverse environmental effects under the same condition. 展开更多
关键词 asphalt mixture basalt fiber the chloride erosion freezing-thawing cycle the coupling effect low-temperature performance fatigue property
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Chemical and Thermal Resistance of Basalt Fiber in Inclement Environments 被引量:3
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作者 应淑妮 周晓东 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第3期560-565,共6页
To study the applicability of the basalt fiber through various experimental works in thermal and chemical environments, glass fiber and carbon fiber were compared and discussed. The tensile strength testing was used t... To study the applicability of the basalt fiber through various experimental works in thermal and chemical environments, glass fiber and carbon fiber were compared and discussed. The tensile strength testing was used to investigate the corrosive resistance of basalt fiber, meanwhile, surface study by scanning electron microscopy and microanalysis with complementary X-ray diffraction analysis (SEM/EDS) was also used to ascertain the durability of basalt fiber. The basalt fiber showed better strength retention than the glass fiber at relatively high temperature. Its tensile strength increased when exposed at 300 ~C for several hours, and still maintain about 70% of the initial strength at 400 ~C, whereas that of the glass fiber decreased dramatically. The better stability of the basalt fiber was observed in hydrothermal and chemical environment. The tensile strength of the basalt fiber increased by 20% after the immersion in boiling water and remained well in acid solution, when it comes to glass fiber, the tensile strength decreased to some extent. Although the alkali resistance of basalt fiber was poor at the initial stage, it shows better resistance than the glass fiber after long time treatment. 展开更多
关键词 basalt fiber thermal stability corrosion resistance mechanical property
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Mechanical properties of polyvinyl alcohol-basalt hybrid fiber engineered cementitious composites with impact of elevated temperatures 被引量:4
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作者 WANG Zhen-bo HAN Shuo +2 位作者 SUN Peng LIU Wei-kang WANG Qing 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第5期1459-1475,共17页
In the present study,the mechanical properties of polyvinyl alcohol(PVA)-basalt hybrid fiber reinforced engineered cementitious composites(ECC)after exposure to elevated temperatures were experimentally investigated.F... In the present study,the mechanical properties of polyvinyl alcohol(PVA)-basalt hybrid fiber reinforced engineered cementitious composites(ECC)after exposure to elevated temperatures were experimentally investigated.Five temperatures of 20,50,100,200 and 400℃ were set to evaluate the residual compressive,tensile and flexural behaviors of hybrid and mono fiber ECC.It was shown that partial replacement of PVA fibers with basalt fibers endowed ECC with improved residual compressive toughness,compared to brittle failure of mono fiber ECC heated to 400℃.The tension tests indicated that the presence of basalt fibers benefited the tensile strength up to 200℃,and delayed the sharp reduction of strength to 400℃.Under flexural load,the peak deflections corresponding to flexural strengths of hybrid fiber ECC were found to be less vulnerable ranging from 20 to 100℃.Further,the scanning electron microscopy(SEM)results uncovered that the rupture of basalt fiber at moderate temperature and its pullout mechanism at high temperature was responsible for the mechanical evolution of hybrid fiber ECC.This work develops a better understanding of elevated temperature and basalt fiber impact on the residual mechanical properties and further provides guideline for tailoring ECC for improved fire resistance. 展开更多
关键词 engineered cementitious composites hybrid fiber basalt fiber mechanical properties elevated temperature
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BF型钢EPS泡沫混凝土外挂墙板有限元分析
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作者 刘芳 赵龙 《北方建筑》 2024年第6期22-27,共6页
为研究玄武岩纤维对型钢EPS泡沫混凝土预制外挂墙板的作用影响,本文通过棱柱体试验以及相关文献获得不同掺量玄武岩纤维的EPS泡沫混凝土的本构曲线,利用有限元软件ABAQUS对预制墙板进行有限元分析,探究其不同掺量时对EPS轻骨料混凝土力... 为研究玄武岩纤维对型钢EPS泡沫混凝土预制外挂墙板的作用影响,本文通过棱柱体试验以及相关文献获得不同掺量玄武岩纤维的EPS泡沫混凝土的本构曲线,利用有限元软件ABAQUS对预制墙板进行有限元分析,探究其不同掺量时对EPS轻骨料混凝土力学性能的影响规律。研究结果表明:当玄武岩纤维掺量为0.2%时,对构件承载力有明显提升;而当玄武岩纤维掺量为0.6%时,对构件承载力几乎没有提升,且延性有所下降。因此,最佳掺量为2%。此外,冷弯薄壁C型钢与EPS泡沫混凝土之间具有较高黏结强度,且掺入玄武岩纤维不改变墙板的破坏模式。 展开更多
关键词 玄武岩纤维 EPS泡沫混凝土 本构曲线 预制墙板 有限元分析
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Rheological Behavior of Basalt Fiber Reinforced Asphalt Mastic 被引量:2
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作者 顾兴宇 XU Tingting NI Fujian 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2014年第5期950-955,共6页
The characters of basalt fiber are analyzed and compared with commonly used fibers. The rheological behaviors of the basalt fiber reinforced asphalt mastic are investigated by the dynamic shear rheological tests and t... The characters of basalt fiber are analyzed and compared with commonly used fibers. The rheological behaviors of the basalt fiber reinforced asphalt mastic are investigated by the dynamic shear rheological tests and the repeated creep tests. The results show that basalt fiber has excellent reinforced performances, such as high asphalt absorption ratio, low water absorption ratio, high tensile strength, high elastic modulus and high temperature stability. The rutting factor of the fiber reinforced asphalt mastic is higher than the plain asphalt mastic and the reinforced effects are more remarkable under high temperature. The rheological performances of the asphalt mastic demonstrate a good linear relationship between different temperature and loading frequency. The creep stiffness modulus of the asphalt mastic at different loading time can be expressed by power function. Improved Burgers model is used to represent the rheological behaviors of the asphalt mastic with basalt fiber and the model parameters are estimated. 展开更多
关键词 basalt fiber asphalt mastic dynamic shear rheological test repeated creep test rheological model
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Mechanical properties and failure behavior of 3D printed thermoplastic composites using continuous basalt fiber under high-volume fraction 被引量:2
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作者 Hang Zhang Wei-fu Sun 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第9期237-250,共14页
Continuous basalt fiber(CBF)is an outstanding inorganic fiber produced from nature,which has a wide range of applications in the field of armor protection of national defense military.However,the mechanical response a... Continuous basalt fiber(CBF)is an outstanding inorganic fiber produced from nature,which has a wide range of applications in the field of armor protection of national defense military.However,the mechanical response and failure mechanism of 3D printed CBF reinforced components are still not well understood.Here,the 3D printing thermoplastic composites with high volume fraction CBF have been successfully prepared by fused deposition modelling(FDM)method.The effects of fiber printing direction and polymer matrix type on the tensile and flexural properties of the 3D printed composites have been explored,and the detailed failure morphology has been characterized using scanning electron microscopy and optical microscopy.It was found that under high fiber volume fraction,3D printed CBF reinforced polyamides(PA)composites have the best ability to maintain material integrity of the composites,followed by acrylonitrile butadiene styrene(ABS)and high impact polystyrene(HIPS).Besides,the results from rule of mixtures can accurately predict the longitudinal Young’s modulus of the 3D printed specimens,but there exists a large discrepancy for the prediction of the tensile strength.The microstructure analysis shows that the failure modes of 3D printed composites mainly include fiber debonding,fiber pull-out,stress whitening and matrix cracking. 展开更多
关键词 Additive manufacturing Continuous basalt fiber Failure behavior Mechanical properties Thermoplastic composites
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Experimental study on mechanical properties of basalt fiber-reinforced silty clay 被引量:2
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作者 JIA Yu ZHANG Jia-sheng +3 位作者 WANG Xuan DING Yu CHEN Xiao-bin LIU Tao 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第6期1945-1956,共12页
Fiber reinforcement technology can significantly improve the mechanical properties of soil and has been increasingly applied in geotechnical engineering.Basalt fiber is a new kind of environment-friendly and highperfo... Fiber reinforcement technology can significantly improve the mechanical properties of soil and has been increasingly applied in geotechnical engineering.Basalt fiber is a new kind of environment-friendly and highperformance soil reinforcement material,and the mechanical properties of basalt fiber-reinforced soil have become a hot research topic.In this paper,we conducted monotonic triaxial and cyclic triaxial tests,and analyzed the influence of the fiber content,moisture content,and confining pressure on the shear characteristics,dynamic modulus,and damping ratio of basalt fiber-reinforced silty clay.The results illustrate that basalt fiber can enhance the shear strength of silty clay by increasing its cohesion.We find that the shear strength of reinforced silty clay reaches its maximum when the fiber content is approximately 0.2%and the moisture content is 18.5%(optimum moisture content).Similarly,we also find that the dynamic modulus that corresponds to the same strain first increases then decreases with increasing fiber content and moisture content and reaches its maximum when the fiber content is approximately 0.2%and the moisture content is 18.5%.The dynamic modulus is positively correlated with the confining pressure.However,the change in the damping ratio with fiber content,moisture content,and confining pressure is opposite to that of the dynamic modulus.It can be concluded that the optimum content of basalt fiber for use in silty clay is 0.2%.After our experiments,we used scanning electron microscope(SEM)to observe the microstructure of specimens with different fiber contents,and our results show that the gripping effect and binding effect are the main mechanisms of fiber reinforcement. 展开更多
关键词 basalt fiber-reinforced silty clay shear behavior dynamic modulus damping ratio optimum fiber content
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An investigation on anti-impact and penetration performance of basalt fiber composites with different weave and lay-up modes 被引量:1
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作者 Hai-dong Fu Xin-ya Feng +3 位作者 Jin-xu Liu Zhi-ming Yang Chuan He Shu-kui Li 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2020年第4期787-801,共15页
The woven basalt fiber composites(WBFC) and the unidirectional [0°/90°/45°/-45°]s basalt fiber composites(UBFC) were prepared by hot-pressing.Three-point bending test,low velocity impact test,and b... The woven basalt fiber composites(WBFC) and the unidirectional [0°/90°/45°/-45°]s basalt fiber composites(UBFC) were prepared by hot-pressing.Three-point bending test,low velocity impact test,and ballistic test were performed to the prepared composites.After the tests,the specimens were recovered and analyzed for micromorphology.Three-point bending tests show that both the bending strength and stiffness of the WBFC surpass those of the UBFC.Low velocity impact test results show that the low velocity impact resistance to hemispherical impactor of the UBFC is higher than that of the WBFC,but the low velocity impact resistance to sharp impactor of the UBFC is lower than that of the WBFC.For the ballistic test,it can be found that the ballistic property of the UBFC is higher than that of the WBFC. After the tests,microscopic analysis of the specimens was applied,and their failure mechanism was discussed.The main failure modes of the UBFC are delamination and fibers breakage under the above loading conditions while the main failure mode of the WBFC is fibers breakage.Although delamination damage can be found in the WBFC under the above loading conditions,the degree of delamination is far less than that of the UBFC. 展开更多
关键词 The woven basalt fiber composites The[0°/90°/45°/-45°]_s basalt fiber COMPOSITES Low velocity impact Ballistic test DELAMINATION
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