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Analysis and identification of SCAR molecular markers associated with birch fiber length trait 被引量:1
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作者 王丹 魏志刚 +1 位作者 杨传平 刘关君 《Journal of Forestry Research》 SCIE CAS CSCD 2008年第4期288-292,共5页
The fiber length trait (FLT) of 538 individuals from nature birch population in Maorshan region, Heilongjang, China were measured, of which 100 individuals were selected as representative variety of correlated fragm... The fiber length trait (FLT) of 538 individuals from nature birch population in Maorshan region, Heilongjang, China were measured, of which 100 individuals were selected as representative variety of correlated fragments screening with random amplified polymorphism DNA (RAPD) technique. In total of 20 RAPD primers were tested through multiple regression analysis between amplified strip and the character behaviors, and a correlative segment BFLR-16 was obtained. The correlation coefficient between BFLI-16 and FLT was 0.6144, with the significant level of 1%. BFLI-16 was then cloned, sequenced and transformed into SCAR marker. The percentage of identifying long fiber birches by this SCAR was more than 92. The result indicates that the SCAR markers has high specificity for the long fiber individuals and is highly linked with the gene controlling the character of fiber length, and its existence is significantly correlative with the increase in the fiber length. 展开更多
关键词 Betula platyphylla fiber length trait random amplified polymorphism DNA sequence characterized amplified region
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Precise measurement method of optical fiber length based on timestamp technique
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作者 缪新育 周波 周峰 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2016年第3期302-306,共5页
A measurement method of optical fiber length using timestamp technique is demonstrated. Based on IEEE1588 precise clock synchronization protocol, the principle that time delay asymmetry on two path results in synchr... A measurement method of optical fiber length using timestamp technique is demonstrated. Based on IEEE1588 precise clock synchronization protocol, the principle that time delay asymmetry on two path results in synchronization time deviation is used, and the difference between two-path delays could be deduced by measuring the synchronization time deviation reversely. Then the length of optical fiber on one path could be calculated if that on the other path is known Due to the fact that the path of Sync and Delay_Req message is symmetric, the optical pulse dispersion and the asymmetry of photoelectric detector performance on two paths are averaged by exchanging two optical fibers. The time difference between master and slave clocks is eliminated by sharing the same time base. At last, the lengths of two single-mode optical fibers are measured with the uncertainty of 0. 578 m for 3 227. 722 m and 0. 758 m for 25 491. 522 m, respectively. Thus this method has high precision and long range. 展开更多
关键词 TIMESTAMP fiber length measurement time synchronization
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Determination of fiber length and juvenile and mature wood zones in Acer velutinum Boiss.trees grown in Iran
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作者 Majid KIAEI Reza BAKHSHI Samane VEYLAKI 《Forestry Studies in China》 CAS 2012年第4期323-326,共4页
In our investigation we studied fiber lengths and the transition age from juvenile to mature wood in Acer velutinum Boiss. For this purpose, samples from three normal maple trees at a Noshahr site in northern Iran wer... In our investigation we studied fiber lengths and the transition age from juvenile to mature wood in Acer velutinum Boiss. For this purpose, samples from three normal maple trees at a Noshahr site in northern Iran were selected. Disks were cut at breast height. Test samples were taken along a radial direction from the pith to the bark, accounting for every ring during a 48-year period. We used the Franklin method to distinguish between fibers of juvenile and mature wood. The results show that the fiber length in- creased along the radial direction from the pith to the bark. The transition age between juvenile and mature wood was determined at the 14th annual ring from the pith. 展开更多
关键词 Acer velutinum Boiss. transition age juvenile wood mature wood fiber length
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Dynamic Expression Analysis and Introgressive Gene Identification of Fiber Length Using Chromosome Segment Substitution Lines from G.hirsutum×G.barbadense
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作者 Pengtao Li Quanwei Lu +2 位作者 Xianghui Xiao Rui Yang Xixi Duan 《Phyton-International Journal of Experimental Botany》 SCIE 2021年第1期129-144,共16页
Fiber length is a critical trait that principally determines cotton spinning quality,while Upland cotton as the most widely cultivated Gossypium species around the world subjects to the relatively ordinary fiber perfo... Fiber length is a critical trait that principally determines cotton spinning quality,while Upland cotton as the most widely cultivated Gossypium species around the world subjects to the relatively ordinary fiber performance.Chromosome segment substitution lines(CSSLs)have been introduced in cotton breeding to take full advantages of superior fiber quality and high yield from Sea Island and Upland cotton,respectively,which serve as ideal materials for elucidating the genetic mechanism of complex quantitative traits.Here,three CSSLs derived from CCRI45(G.hirsutum)×Hai1(G.barbadense),two superior(MBI7561 and MBI7747)and one(MBI7285)with ordinary fiber-quality,were subjected to transcriptome sequencing during fiber elongation together with their recurrent parent CCRI45,and 471.425 million clean reads were obtained with 91.47%average Q30 and 45.23%mean GC content.In total,5,673 differentially expressed genes(DEGs)were identified from multi-sample comparisons,which were mainly involved in the oxidation-reduction process,protein phosphorylation,regulation of transcription,DNA template,and carbohydrate metabolic process.Eight temporal expression patterns were monitored on the DEGs of different lines,of which the significantly enriched profile revealed higher similarities between two superior CSSLs or the ordinary CSSL and CCRI45 with respect to fiber performance.Based on the intersection between the predicted introgressive genes from RNAseq data and the published gene information from the G.barbadense genome,1,535 introgressive genes were identified in three CSSLs.Further analysis of the three common introgressive sections in superior CSSLs revealed eight candidate genes that were identified to be involved in fiber development,namely,O-fucosyltransferase family protein(GB_A02G0240),glutamine synthetase 2(GB_A02G0272),Ankyrin repeat family protein(GB_A02G0264),beta-6 tubulin(GB_D03G1742),WRKY DNA-binding protein 2(GB_D03G1655),quinolinate synthase(GB_D07G0623),nuclear factor Y,subunit B13(GB_D07G0631),and leucine-rich repeat transmembrane protein kinase(GB_D07G0797).Our results provide novel insights into the mechanism underlying fiber formation and lay a solid foundation for further high-efficiency determination of candidate genes by combining RNA-seq data and pivotal chromosome regions. 展开更多
关键词 Gossypium hirsutum Gossypium barbadense chromosome segment substitution lines RNA-SEQ fiber length
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Mapping of QTL for Fiber Length Using Interspecific Gossypium hirsutum × G.barbadense F_2 Population
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作者 PREETHA S RAVEENDRAN T S 《棉花学报》 CSCD 北大核心 2008年第S1期64-,共1页
Cotton occupies a pre-eminent place among cash crops as it guides the destiny of a large section of the farming community as well as that of a flourishing textile industry.As the yarn manufacturing industry has underg... Cotton occupies a pre-eminent place among cash crops as it guides the destiny of a large section of the farming community as well as that of a flourishing textile industry.As the yarn manufacturing industry has undergone a technological revolution,more emphasis is given to quality of the raw 展开更多
关键词 G.barbadense F2 Population length Mapping of QTL for fiber length Using Interspecific Gossypium hirsutum
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Precise Optical Fiber Length Measurement System Based on Fresnel Reflection
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作者 Firat Ertac Durak Arif Basgumus +1 位作者 Serif Ali Sadik Ahmet Altuncu 《Journal of Electrical Engineering》 2016年第3期128-132,共5页
In this study, a precise optical fiber length measurement system is proposed. The measurement technique is based on the measurement of relative Fresnel reflected light intensity in a test fiber. Time delayed optical r... In this study, a precise optical fiber length measurement system is proposed. The measurement technique is based on the measurement of relative Fresnel reflected light intensity in a test fiber. Time delayed optical reflected pulses are obtained from a single nanosecond pulse injected at the input due to the difference in lengths of the reference and test fibers. The lengths of the different optical fibers have been measured with this technique with high resolution and fast response time. The measured results show that, the proposed technique has a comparable performance with the well-known length measurement systems. 展开更多
关键词 Fresnel reflection nanosecond pulse optical fiber length measurement time delayed pulses.
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Stability, variation, and application of AFIS fiber length distributions
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作者 HINDS Zachary KELLY Brendan Robert HEQUET Eric Francois 《Journal of Cotton Research》 2020年第2期79-89,共11页
Background:Fiber length is one of the primary quality parameters for the cotton industry when considering the textile performance and end-use quality of cotton.Currently,many decisions regarding cotton fiber length ut... Background:Fiber length is one of the primary quality parameters for the cotton industry when considering the textile performance and end-use quality of cotton.Currently,many decisions regarding cotton fiber length utilize the industry standard measurement device,i.e.,the High Volume Instrument(HVI).However,it is documented that complete fiber length distributions hold more information than the currently reported HVI length parameters,i.e.,upper half mean length(UHML)and uniformity index(UI).An alternative measurement device,the Advanced Fiber Information System(AFIS),is able to capture additional information about fiber length distribution.What is currently not known is how much additional information the AFIS length distribution holds.Results:The stability of differences in within-sample variation in fiber length captured by the AFIS length distribution by number characterizing differences between samples was deemed stable across the extended testing period.A diverse breeding population was evaluated and four significant sources of within sample variation in length were identified.A comparison of the ability between HVI length parameters and AFIS fiber length distribution to correctly categorize breeding lines to their family was performed.In all cases,the AFIS fiber length distribution more accurately identified germplasm families.Conclusions:The long-term stability test of the AFIS fiber length distribution by number shows that the measurement is stable and can be used to assess differences across samples.However,more information about within-sample variation in fiber length than that can be captured by length parameters is needed to assess differences across samples in many applications.Four length parameters outperform two length parameters when trying to identify the familial background of the samples in this set.These parameters characterize distributional shape differences that are not captured by the standard AFIS length parameters,UQL and short fiber content by number(SFCn).These findings suggest that additional types of variation in cotton fiber length are not captured and are therefore not currently used in most cotton breeding programs. 展开更多
关键词 COTTON fiber quality fiber length distribution Advanced fiber information system(AFIS)
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Ameliorative effects of potassium on drought-induced decreases in fiber length of cotton(Gossypium hirsutum L.) are associated with osmolyte dynamics during fiber development 被引量:5
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作者 Wenqing Zhao Haoran Dong +5 位作者 Rizwan Zahoor Zhiguo Zhou John L.Snider Yinglong Chen Kadambot H.M.Siddique Youhua Wang 《The Crop Journal》 SCIE CAS CSCD 2019年第5期619-634,共16页
Fiber length of cotton(Gossypium hirsutum L.)decreases under drought stress,potassium(K)could diminish the decreased caused by drought,but the mechanism associated with this alleviation effect is not clear.We evaluate... Fiber length of cotton(Gossypium hirsutum L.)decreases under drought stress,potassium(K)could diminish the decreased caused by drought,but the mechanism associated with this alleviation effect is not clear.We evaluated the effect of K on fiber elongation using two cotton cultivars,Simian 3 and Siza 3,grown in well-watered and drought-stressed conditions.Potassium fertilizer(K2O)was applied 0,150,or 300 kg ha?1 in each growing condition.Drought stress reduced the final fiber length due to a decline in the maximum rate of rapid elongation(Vmax,mmday?1).The application of K alleviated the droughtinduced fiber length reduction by increasing Vmax.At 10 and 15 days post-anthesis(DPA),drought significantly reduced osmotic potential(OP)and increased K+and malate contents at all K rates,relative to well-watered conditions,which was associated with increased activities of phosphoenolpyruvate carboxylase(PEPC),V-ATPase,PPase,and PM H+-ATPase in cotton fiber.However,the relative contribution of K+and malate to OP declined under drought in comparison with well-watered condition.Compared with control without K,K application decreased OP and increased the accumulation of osmolytes(K+,malate and soluble sugar)as well as the activities of related enzymes in fiber irrespective of water treatments.Moreover,K application increased osmotic adjustment during drought,and improved the contribution of K+and malate to OP,especially under drought stress.This study showed that drought decreased fiber length by reducing Vmax,and K application ameliorates the decline in fiber elongation due to drought by enhancing osmolytes accumulation and their contribution to OP in fiber cells. 展开更多
关键词 Cotton(Gossypium hirsutum) fiber length DROUGHT stress POTASSIUM application OSMOLYTE
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The Influence of Biocomposite Processing and Composition on Natural Fiber Length, Dispersion and Orientation 被引量:1
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作者 Peltola Heidi Madsen Bo +1 位作者 Joffe Roberts Naittinen Kalle 《材料科学与工程(中英文A版)》 2011年第2X期190-198,共9页
关键词 生物复合材料 纤维长度 纤维分散性 熔融加工 天然纤维 淀粉醋酸酯 组成 取向
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A targeted QTL analysis for fiber length using a genetic population between two introgressed backcrossed inbred lines in upland cotton(Gossypium hirsutum)
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作者 Guoyuan Liua Wenfeng Pei +10 位作者 Dan Li Jianjiang Ma Yupeng Cui Nuohan Wang Jikun Song Man Wu Libei Li Xinshan Zang Shuxun Yu Jinfa Zhang Jiwen Yu 《The Crop Journal》 SCIE CAS CSCD 2019年第3期273-282,共10页
Cotton fiber is the most important natural raw material for the textile industry, and fiber length(FL) is one of the most important traits in cotton.Quantitative trait locus(QTL)mapping based on high-density genetic m... Cotton fiber is the most important natural raw material for the textile industry, and fiber length(FL) is one of the most important traits in cotton.Quantitative trait locus(QTL)mapping based on high-density genetic maps is an efficient approach to identify genetic regions for FL.In our study, two backcrossed inbred lines(BILs) were chosen as parents to construct a high-density genetic map in F2 which was used to fine map FL QTL in F2:3 population.The genetic map had a total size of 3462.8 cM, containing 9182 singlenucleotide polymorphisms(SNPs) based on genotyping-by-sequencing.Two FL related stable QTL were identified on two chromosomes(qFL-A08–1 on A08 and qFL-D03–1 on D03),and qFL-A08–1 was confirmed by a meta-analysis.Utilizing previously obtained RNA-seq data for the two BILs and qRT-PCR analysis, two candidate genes annotated as cytochrome b5(CB5, Gh_A08 G1729) and microtubule end-binding 1 C(EB1C, Gh_D03 G0232) that may regulate FL during the fiber elongation stage were identified.In addition, nine recombination hotspots in this population were found.The results of this study will provide an important foundation for further studies on the molecular and genetic regulation of fiber elongation. 展开更多
关键词 GOSSYPIUM Single-nucleotide polymorphism fiber length Quantitative TRAIT LOCUS
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Testing of Cotton Fiber Length
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作者 Liu Ruohua(刘若华) +1 位作者 Li Ruqin(李汝勤) 《Journal of Donghua University(English Edition)》 EI CAS 2001年第1期116-119,共4页
To understand the influences of actual sampling conditions on cotton fiber length testing, this article presents a theoretic study on the distributions and fibrogram of the sample taken out by sampler from ideal slive... To understand the influences of actual sampling conditions on cotton fiber length testing, this article presents a theoretic study on the distributions and fibrogram of the sample taken out by sampler from ideal sliver at a certain angle. From the distributions expression it can be found that the size of the sampler and the sampling angle are important factors which affect sampling, but if the sampling width is narrow enough, the influence of the sampling angle on the distributions and fibrogram is small enough to be omitted. This is an important conclusion for sampling, in light of this, some suggestions for designing new type sampler are put forward. 展开更多
关键词 COTTON fiber length testing IDEAL sliver hock-grip type sampling method SAMPLE distribution fibrogram.
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Recognition of Bragg Wavelength Disturbed by Time Delay of Fiber Length in Prepositive Tunable Filter
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作者 Chuan Li Xiaoyong Chao +3 位作者 Yingna Li Tao Xie Zhengang Zhao Xin Xiong 《Optics and Photonics Journal》 2013年第2期232-235,共4页
The wavelength shift in fiber Bragg grating does not depend directly on the total light levels, losses in the connecting fibers and couplers, or source power. However, if the tunable Fabry-Perot filter is place on the... The wavelength shift in fiber Bragg grating does not depend directly on the total light levels, losses in the connecting fibers and couplers, or source power. However, if the tunable Fabry-Perot filter is place on the end of incident fiber, the detected time delay of modulation light is occurred due to the unmatch between the scanning time and light transmission time in the transmission fiber. Consequently, the detected peak wavelength shifts with the length of transmission fiber. Thus, the peak wavelength shift effect of Bragg reflective light transmitted in fiber with different fiber length can be obvious in the demodulator with a prepositive tunable Fabry-Perot filter. The experiment indicates the shift rates of 0.109 - 0.126 nm/km increase approximately linearly with the original peak wavelength of 1532.917 - 1560.300 nm at the fiber length of 0 - 6 km. To certify the consistency of measurement data, the criterion correction is introduced. By using the differential method of two fiber Bragg gratings with an optical path, the differential worth is compensated from the disturbance modulated by the time delay of fiber length. 展开更多
关键词 OPTIC fiber fiber length BRAGG WAVElength FABRY-PEROT Filter Time Delay
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Genetic improvement of fiber quality in tetraploid cotton:an overview of major QTLs and genes involved in and edited for the quality of cotton fibers 被引量:1
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作者 BAGHYALAKSHMI Kari PRIYANKA Rajendran Ariyapalayam +2 位作者 SARATHAPRIYA Govindaraj RAMCHANDER Selvaraj PRAKASH Arkalgud Hiriyannaiah 《Journal of Cotton Research》 CAS 2024年第4期399-410,共12页
Cotton,an important industrial crop cultivated in more than 70 countries,plays a major role in the livelihood of millions of farmers and industrialists.Cotton is mainly grown for its fiber,an economic component that c... Cotton,an important industrial crop cultivated in more than 70 countries,plays a major role in the livelihood of millions of farmers and industrialists.Cotton is mainly grown for its fiber,an economic component that can be differentiated from its epidermal cells in the outer integument of a developing seed.Fiber length,fiber strength,and fiber fineness are three main attributes that contribute to the quality of cotton fibers.Recent advancements in genomics have identified key genes,which are the most important factors that govern these three traits,can be introduced into cultivars of interest via gene editing,marker-assisted selection,and transgenics,thus the narrow genetic background of cotton can be addressed and its fiber quality traits can be enhanced.Over the past two decades,quantitative trait loci(QTLs)have been mapped for different fiber traits,approximately 1850 QTLs have been mapped for fiber length,fiber strength,and fineness among which a few genes have been edited for quality improvement in cotton.In this background,the current review covers the development and the factors that influence these traits,along with the reported genes,QTLs,and the edited genomes for trait improvement. 展开更多
关键词 COTTON fiber length fiber strength MICRONAIRE Quantitative trait locus Genome editing
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GhWDL3 is involved in the formation and development of fiber cell morphology in upland cotton(Gossypium hirsutum L.)
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作者 CHEN Baojun TIAN Zailong +9 位作者 FU Guoyong ZHANG Ai SUN Yaru WANG Jingjing PAN Zhaoe LI Hongge HU Daowu XIA Yingying HE Shoupu DU Xiongming 《Journal of Cotton Research》 CAS 2024年第1期58-68,共11页
Background Cotton fiber is a model tissue for studying microtubule-associated proteins(MAPs).The Xklp2(TPX2)proteins that belong to the novel MAPs member mainly participate in the formation and development of microtub... Background Cotton fiber is a model tissue for studying microtubule-associated proteins(MAPs).The Xklp2(TPX2)proteins that belong to the novel MAPs member mainly participate in the formation and development of microtubule(MT).However,there is a lack of studies concerning the systematic characterization of the TPX2 genes family in cotton.Therefore,the identification and portrayal of G.hirsutum TPX2 genes can provide key targets for molecular manipula-tion in the breeding of cotton fiber improvement.Result In this study,TPX2 family genes were classified into two distinct subclasses TPXLs and MAP genes WAVE DAMP-ENED2-LIKE(WDLs)and quite conservative in quantity.GhWDL3 was significantly up-regulated in 15 days post anthe-sis fibers of ZRI-015(an upland cotton with longer and stronger fiber).GhWDL3 promotes all stem hairs to become straight when overexpressed in Arabidopsis,which may indirectly regulate cotton fiber cell morphology during fiber development.Virus induced gene silencing(VIGS)results showed that GhWDL3 inhibited fiber cell elongation at fiber development periods through regulating the expression of cell wall related genes.Conclusion These results reveal that GhWDL3 regulated cotton fiber cell elongation and provide crucial information for the further investigation in the regulatory mechanisms/networks of cotton fiber length. 展开更多
关键词 Upland cotton GhWDL3 fiber length TPX2 CYTOSKELETON Microtubule-associated proteins(MAPs)
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Efficiency of employing fiber-based finite-length plastic hinges in simulating the cyclic and seismic behavior of steel hollow columns compared with other common modelling approaches
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作者 Mojtaba Farahi Saeed Erfani 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2019年第4期777-794,共18页
The accuracy and effi ciency of the modelling techniques utilized to model the nonlinear behavior of structural components is a signifi cant issue in earthquake engineering. In this study, the suffi ciency of three di... The accuracy and effi ciency of the modelling techniques utilized to model the nonlinear behavior of structural components is a signifi cant issue in earthquake engineering. In this study, the suffi ciency of three diff erent modelling techniques that can be employed to simulate the structural behavior of columns is investigated. A fi ber-based fi nite length plastic hinge (FB-FLPH) model is calibrated in this study. In order to calibrate the FB-FLPH model, a novel database of the cyclic behavior of hollow steel columns under simultaneous axial and lateral loading cycles with varying amplitudes is used. By employing the FB-FLPH model calibrated in this study, the interaction of the axial force and the bending moment in columns is directly taken into account, and the deterioration in the cyclic behavior of these members is implicitly considered. The superiority of the calibrated FB-FLPH modelling approach is examined compared with the cases in which conventional fi ber-based distributed plasticity and concentrated plasticity models are utilized. The effi ciency of the enumerated modelling techniques is probed when they are implemented to model the columns of a typical special moment frame in order to prove the advantage of the FB-FLPH modelling approach. 展开更多
关键词 CYCLIC BEHAVIOR seismic BEHAVIOR FI ber-based FI nite-length plastic hinge model FI ber-based modelling techniques CYCLIC strength deterioration axial force-bending moment interaction
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Measuring Optical Length and Analyzing Accuracy Error Based on All-Fiber Optic Interferometer
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作者 Jun Su Qi Qiu Shuang-Jin Shi 《Journal of Electronic Science and Technology》 CAS 2013年第3期329-333,共5页
An optical length measuring system base on all-fiber optic interferometer is proposed. The theoretical analysis indicates that, when the two branches of the interferometer are equal, the output have the maximum cohere... An optical length measuring system base on all-fiber optic interferometer is proposed. The theoretical analysis indicates that, when the two branches of the interferometer are equal, the output have the maximum coherent intensity. Therefore, the optical length can be obtained by measuring the distance of collimator movement. Through the experiment and simulation, the impact of the signal-to-noise ratio and fluctuation of the coupling efficiency on null error has been obtained. 展开更多
关键词 Index Terms----All-fiber optic interferometer coherent intensity fiber optics optical length.
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Optimal design for elliptical holey fiber with stable polarization beat-length
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作者 石志东 林建强 何伟 《Journal of Shanghai University(English Edition)》 CAS 2011年第2期89-91,共3页
In order to design birefringent holey fiber with beat-length independent of wavelength, an asymmetric structure is introduced to reduce its wavelength-sensitivity. The influence of structural parameters on the modal b... In order to design birefringent holey fiber with beat-length independent of wavelength, an asymmetric structure is introduced to reduce its wavelength-sensitivity. The influence of structural parameters on the modal birefringence is calculated and analyzed. After optimizing the parameters, a flat dispersion curve of beat-length is obtained. The beat-length changes from 89.8 mm to 91.0 mm in wavelength range from 1.1 μm, to 1.7μm, and its relative variation is 1.38%. If this fiber is made into zero-order quarter wave plate, the phase delay can be easily controlled in (90±1)°. 展开更多
关键词 fiber optics holey fiber modal birefringence beat-length wavelength sensitivity
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短切玻璃纤维复合材料有限元模拟及其随机分布快速生成算法 被引量:6
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作者 喻九阳 张天义 +2 位作者 刘博文 马琳伟 杨培炎 《塑料科技》 北大核心 2025年第3期121-128,共8页
复合材料的剪切、横向力学性能以及耐久性在很大程度上取决于纤维与基体的界面强度。复合材料界面强度通常依赖纤维和树脂基体的大小、形状、性质和空间分布。文章提出一种适用于复合材料的数值模拟计算方法,选择短切玻璃纤维复合材料... 复合材料的剪切、横向力学性能以及耐久性在很大程度上取决于纤维与基体的界面强度。复合材料界面强度通常依赖纤维和树脂基体的大小、形状、性质和空间分布。文章提出一种适用于复合材料的数值模拟计算方法,选择短切玻璃纤维复合材料为研究对象进行有限元模拟计算,对纤维的随机分布提供一种快速生成算法,分析短切玻璃纤维长度对片状模塑料力学性能的影响。结果表明,短切玻璃纤维片状模塑料弹性模量随纤维长度的增大出现先增大后变缓的趋势,通过比较随机结构和规则结构说明计算方法合理性,纤维分布的随机性对复合材料宏观弹性常数的影响较小。 展开更多
关键词 短切纤维增强 随机分布模型 数值模拟 纤维长度 弹性常数
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束状玄武岩纤维增强混凝土力学性能试验研究 被引量:1
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作者 高鹏 储圣洁 +2 位作者 韦海涛 封磊 黄玲玲 《复合材料学报》 北大核心 2025年第9期5178-5188,共11页
为研究束状玄武岩纤维(Bundled basalt fiber,BBF)增强混凝土的力学性能,对不同纤维长度(12 mm、18 mm、24 mm)、体积掺量(0.1vol%、0.2vol%、0.3vol%)和类型(束状玄武岩、短切玄武岩和聚丙烯)的纤维增强混凝土进行立方体抗压、劈裂抗... 为研究束状玄武岩纤维(Bundled basalt fiber,BBF)增强混凝土的力学性能,对不同纤维长度(12 mm、18 mm、24 mm)、体积掺量(0.1vol%、0.2vol%、0.3vol%)和类型(束状玄武岩、短切玄武岩和聚丙烯)的纤维增强混凝土进行立方体抗压、劈裂抗拉和断裂韧性试验,并通过扫描电镜观察了其微观结构。结果表明:BBF对混凝土抗压强度提升效果不明显;而对劈裂抗拉强度增强效果显著,在纤维长度为24 mm,体积掺量为0.2vol%时,抗拉强度最大提高幅度为26.65%;随纤维增强指数(Reinforcement index,RI)增加,BBF混凝土拉压比呈升高趋势,且RI为24时,拉压比为普通混凝土(Normal concrete,NC)的1.39倍;BBF的掺入显著提升了混凝土三点弯曲峰值荷载、起裂韧度及失稳韧度,且当掺量为0.3vol%,纤维长度为12 mm时,三者较NC最大提升幅度分别为53.66%、47.06%及151.03%。电镜扫描显示BBF表面附着大量水化产物,与水泥浆体粘结紧密且与基体间无明显界面过渡区,有效抑制了微裂缝扩展连通。 展开更多
关键词 束状玄武岩纤维 体积掺量 纤维长度 混凝土 力学性能
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纤维特性对磷酸镁基免蒸压加气混凝土性能的影响
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作者 陈畅 丁学成 +1 位作者 酒少武 陈延信 《材料导报》 北大核心 2025年第10期94-100,共7页
免蒸压加气混凝土(NAAC)存在强度低和易开裂的问题。本工作采用磷酸镁水泥(MPC)作为基体制备磷酸镁基免蒸压加气混凝土(MPC-NAAC),通过添加聚丙烯纤维和玻璃纤维对其进行增强,系统研究了纤维长度和掺量对其物理、力学和耐水性能的影响;... 免蒸压加气混凝土(NAAC)存在强度低和易开裂的问题。本工作采用磷酸镁水泥(MPC)作为基体制备磷酸镁基免蒸压加气混凝土(MPC-NAAC),通过添加聚丙烯纤维和玻璃纤维对其进行增强,系统研究了纤维长度和掺量对其物理、力学和耐水性能的影响;并采用X射线衍射仪和扫描电镜分析其微观结构,揭示了纤维的增强机理。研究结果表明:纤维可以在降低MPC-NAAC干密度的同时提高其抗压和抗折强度,聚丙烯纤维和玻璃纤维的最佳长度均为9 mm,最佳掺量均为0.1%。此时,聚丙烯纤维增强的MPC-NAAC抗压和抗折强度较对照组分别提高了5.95%和16.46%;玻璃纤维增强的MPC-NAAC抗压和抗折强度较对照组分别提高了12.70%和11.39%。此外,纤维与基体之间的作用是物理作用,聚丙烯纤维表现出拔出破坏机制,玻璃纤维表现出断裂破坏机制。 展开更多
关键词 磷酸镁水泥 纤维长度 纤维掺量 力学性能 微观结构
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