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1Bioactive hydrogels for bone regeneration显示文摘Bone self-healing is limited and generally requires external intervention to augment bone repair and regeneration.While traditional methods for repairing bone defects such as autografts,allografts,and xenografts have been widely used,they all have corresponding disadvantages,thus limiting their clinical use.Despite the development of a variety of biomaterials,including metal implants,calcium phosphate cements(CPC),hydroxyapatite,etc.,the desired therapeutic effect is not fully achieved.Currently,polymeric scaffolds,particularly hydrogels,are of interest and their unique configurations and tunable physicochemical properties have been extensively studied.This review will focus on the applications of various cutting-edge bioactive hydrogels systems in bone regeneration,as well as their advantages and limitations.We will examine the composition and defects of the bone,discuss the current biomaterials for bone regeneration,and classify recently developed polymeric materials for hydrogel synthesis.We will also elaborate on the properties of desirable hydrogels as well as the fabrication techniques and different delivery strategies.Finally,the existing challenges,considerations,and the future prospective of hydrogels in bone regeneration will be outlined.Xin Bai Mingzhu Gao Sahla Syed Jerry Zhuang Xiaoyang Xu Xue-Qing Zhang 2018Bioactive Materials2018,3,4:15
2Effect of Nd on microstructure and mechanical properties of as-extruded Mg-Y-Zr-Nd alloy显示文摘The microstructure and mechanical properties of Mg-Y-Zr-x Nd alloys with 0–2.63 wt% Nd were investigated using optical microscopy, scanning electron microscopy, transmission electron microscopy, X-ray diffraction and tensile testing test. Results indicated that more Mg_(24)Y_5 particles and Mg_(14)Nd_2Y(β) phases were dispersed in the matrix when Nd content increased from 0 wt% to 2.63 wt% in the extruded alloys.Consequently, the nucleation of dynamic recrystallization and the volume fraction of recrystallized grains were promoted obviously. The average grain size can be refined in the range of 4.6–1.3 μm after the addition of 2.63 wt% Nd. The tensile strength of extruded alloys increased with increasing Nd content, and elongation exhibited an opposite change tendency. The extruded alloy sheet with 1.01 wt% Nd demonstrates optimal combination of strength and plasticity, i.e., the ultimate tensile strength, yield strength,and elongation were 273 MPa, 214 MPa, and 24.2%, respectively. Variations in mechanical properties are discussed on the basis of microstructure observations.Xiaoyang Xu Xianhua Chen Weiwei Du Yuxiao Geng Fusheng Pan 2017Journal of Materials Science & Technology2017,33,9:14
3Clinical classification and treatment of leukokeratosis of the vocal cords显示文摘MA Li-jing WANG Jun XIAOYang YE Jing-ying XU Wen YANG Qing-wen 2013Chinese Medical Journal2013,,18:12
4Whole-Genome Resequencing of a Worldwide Collection of Rapeseed Accessions Reveals the Genetic Basis of Ecotype Divergence显示文摘Rapeseed (Brassica napus),an important oilseed crop,has adapted to diverse climate zones and latitudes by forming three main ecotype groups,namely winter,semiwinter,and spring types. However,genetic variations underlying the divergence of these ecotypes are largely unknown. Here,we report the global pattern of genetic polymorphisms in rapeseed determined by resequencing a worldwide collection of 991 germplasm accessions.A total of 5.56 and 5.53 million singlenucleotide polymorphisms (SNPs)as Well as 1.86 and 1.92 million InDels were identified by mapping reads to the reference genomes of 'Darmor-bzh'and 'Tapidor,'respectively.We generated a map of allelic drift paths that shows splits and mixtures of the main populations,and revealed an asymmetric evolution of the two subgenomes of B.napus by calculating the genetic diversity and linkage disequilibrium parameters.Selective-sweep analysis revealed genetic changes in genes orthologous to those regulating various aspects of plant development and response to stresses.A genome-wide association study identified SNPs in the promoter regions of FLOWERING LOCUS T and FLOWERING LOCUS C orthologs that corresponded to the different rapeseed ecotype groups. Our study provides important insights into the genomic footprints of rapeseed evolution and flowering-time divergence among three ecotype groups,and will facilitate screening of molecular markers for accelerating rapeseed breeding.Dezhi Wu Zhe Liang Tao Yan Ying Xu Lijie Xuan Juan Tang Gang Zhou Ulrike Lohwasser Shuijin Hua Haoyi Wang Xiaoyang Chen Qian Wang Le Zhu Antony Maodzeka Nazim Hussain Zhilan Li Xuming Li Imran Haider Shamsi Ghulam Jilani Linde Wu Hongkun Zheng Guoping Zhang Boulos Chalhoub Lisha Shen Hao Yu Lixi Jiang 2019Molecular Plant2019,12,1:10
5Hydrogel as a bioactive material to regulate stem cell fate显示文摘The encapsulation of stem cells in a hydrogel substrate provides a promising future in biomedical applications.However,communications between hydrogels and stem cells is complicated;various factors such as porosity,different polymer types,stiffness,compatibility and degradation will lead to stem cell survival or death.Hydrogels mimic the three-dimensional extracellular matrix to provide a friendly environment for stem cells.On the other hand,stem cells can sense the surroundings to make the next progression,stretching out,proliferating or just to remain.As such,understanding the correlation between stem cells and hydrogels is crucial.In this Review,we first discuss the varying types of the hydrogels and stem cells,which are most commonly used in the biomedical fields and further investigate how hydrogels interact with stem cells from the perspective of their biomedical application,while providing insights into the design and development of hydrogels for drug delivery,tissue engineering and regenerative medicine purpose.In addition,we compare the results such as stiffness,degradation time and pore size as well as peptide types of hydrogels from respected journals.We also discussed most recently magnificent materials and their effects to regulate stem cell fate.Yung-Hao Tsou Joe Khoneisser Ping-Chun Huang Xiaoyang Xu 2016Bioactive Materials2016,1,1:9
6Treatment of multiple sclerosis by transplantation of neural stem cells derived from induced pluripotent stem cells显示文摘Multiple sclerosis(MS) is an autoimmune disease of the central nervous system(CNS), with focal T lymphocytic infiltration and damage of myelin and axons. The underlying mechanism of pathogenesis remains unclear and there are currently no effective treatments. The development of neural stem cell(NSC) transplantation provides a promising strategy to treat neurodegenerative disease. However, the limited availability of NSCs prevents their application in neural disease therapy. In this study, we generated NSCs from induced pluripotent stem cells(iPSCs) and transplanted these cells into mice with experimental autoimmune encephalomyelitis(EAE), a model of MS. The results showed that transplantation of iPSC-derived NSCs dramatically reduced T cell infiltration and ameliorated white matter damage in the treated EAE mice. Correspondingly, the disease symptom score was greatly decreased, and motor ability was dramatically rescued in the iPSC-NSC-treated EAE mice, indicating the effectiveness of using iPSC-NSCs to treat MS. Our study provides pre-clinical evidence to support the feasibility of treating MS by transplantation of iPSC-derived NSCs.Chao Zhang Jiani Cao Xiaoyan Li Haoyu Xu Weixu Wang Libin Wang Xiaoyang Zhao Wei Li Jianwei Jiao Baoyang Hu Qi Zhou Tongbiao Zhao 2016Science China(Life Sciences)2016,59,9:9
7Clinical study using mesenchymal stem cells for the treatment of patients with severe COVID-19显示文摘The coronavirus disease 2019(COVID-19)caused by SARS-CoV-2 was identified in December 2019.The symptoms include fever,cough,dyspnea,early symptom of sputum,and acute respiratory distress syndrome(ARDS).Mesenchymal stem cell(MSC)therapy is the immediate treatment used for patients with severe cases of COVID-19.Herein,we describe two confirmed cases of COVID-19 in Wuhan to explore the role of MSC in the treatment of COVID-19.MSC transplantation increases the immune indicators(including CD4 and lymphocytes)and decreases the inflammation indicators(interleukin-6 and C-reactive protein).High-flow nasal cannula can be used as an initial support strategy for patients with ARDS.With MSC transplantation,the fracrion of inspired O2(Fi02)of the two patients gradually decreased while the oxygen saturation(Sa02)and partial pressure of oxygen(P02)improved.Additionally,the patients9 chest computed tomography showed that bilateral lung exudate lesions were adsorbed after MSC infusion.Results indicated that MSC transplantation provides clinical data on the treatment of COVID-19 and may serve as an alternative method for treating COVID-19,particularly in patients with ARDS.Lingling Tang Yingan Jiang Mengfei Zhu Lijun Chen Xiaoyang Zhou Chenliang Zhou Peng Ye Xiaobei Chen Baohong Wang Zhenyu Xu Qiang Zhang Xiaowei Xu Hainv Gao Xiaojun Wu Dong Li Wanli Jiang Jingjing Qu Charlie Xiang Lanjuan Li 2020Frontiers of Medicine2020,14,5:8
8Synthesis, Structure and Properties of Two New Coordination Polymers Based on 4-[(8-Hydroxy-5-quinolinyl)azo]-benzenesulfonic Acid显示文摘LUO Yanan XU Xianzhu SUN Fuxing YU Xiaoyang ZHANG Xiao ZHANG Ting YU Liying 2014Chemical Research in Chinese Universities2014,30,1:4
9An intrinsically bioactive hydrogel with on-demand drug release behaviors for diabetic wound healing显示文摘Prolonged,intense inflammation and excessive oxidative stress hinder diabetic wounds from healing normally,leading to disorders downstream including the postponement of re-epithelialization and extracellular matrix(ECM)formation.Herein,we report a hyaluronic acid(HA)and chitosan based hydrogel(OHA-CMC)with inherent antibacterial and hemostatic activities fabricated via Schiff base reaction.By encapsulating nanotechnologically-modified curcumin(CNP)and epidermal growth factor(EGF)into the hydrogel,OHA-CMC/CNP/EGF exhibited extraordinary antioxidant,anti-inflammatory,and migration-promoting effects in vitro.Meanwhile,OHA-CMC/CNP/EGF presented on-demand drug release in synchrony with the phases of the wound healing process.Specifically,curcumin was rapidly and constantly released to alleviate inflammation and oxidative stress in the early phase of wound healing,while a more gradual and sustained release of EGF supported late proliferation and ECM remodeling.In a diabetic full-thickness skin defect model,OHA-CMC/CNP/EGF dramatically improved wound healing with ideal re-epithelialization,granulation tissue formation,and skin appendage regeneration,highlighting the enormous therapeutic potential this biomaterial holds as a diabetic wound dressing.Bin Hu Mingzhu Gao Kofi Oti Boakye-Yiadom William Ho Wei Yu Xiaoyang Xu Xue-Qing Zhang 2021Bioactive Materials2021,6,12:4
10An Overview of Bearing Candidates for the Next Generation of Reusable Liquid Rocket Turbopumps显示文摘There is a consensus in the aerospace field that the development of reusable liquid rockets can effectively reduce the launch expense.The pursuit of a long service life and reutilization highly depends on the bearing components.However,the rolling element bearings(REBs)used in the existing rocket turbopumps present obvious and increasing limitations due to their mechanical contacting mode.For REBs,high rotational speed and long service life are two performance indexes that mutually restrict each other.To go beyond the DN value(the product of the bearing bore and rotational speed)limit of REBs,the major space powers have conducted substantial explorations on the use of new types of bearings to replace the REB.This review discusses,first,the crucial role of bearings in rocket turbopumps and the related structural improvements of REBs.Then,with the prospect of application to the next generation of reusable liquid rocket turbopumps,the bearing candidates investigated by major space powers are summarized comprehensively.These promising alternatives to REBs include fluid-film,foil,and magnetic bearings,together with the novel superconducting compound bearings recently proposed by our team.Our more than ten years of relevant research on fluid-film and magnetic bearings are also introduced.This review is meaningful for the development of long-life and highly reliable bearings to be used in future reusable rocket turbopumps.Jimin Xu Changhuan Li Xusheng Miao Cuiping Zhang Xiaoyang Yuan 2020Chinese Journal of Mechanical Engineering2020,33,2:4
11Synthesis of Refractory Cordierite from Calcined Bauxite, Talcum and Quartz显示文摘A cordierite was synthesized from calcined bauxite, talcum, and quartz. The properties and microstructure of the cordierite sintered samples were characterized by Archimedes' method, thermal dilatometry, X-ray diffraction (XRD), scanning electron microscopy (SEM), and so on. The experimental results showed that calcined bauxite could broaden the range of synthesizing temperature from 1300 ℃ to 1420 ℃ and get pure cordierite. The bulk density and linear thermal expansion coefficient of the sample synthesized at 1420 ℃ for 2 h were 1.97 g cm-3 and 2.1×10-6 ℃-1, respectively. The XRD analysis showed that the major crystalline phase was α-cordierite with almost no glassy matters, the SEM images illustrated a small vent hole and the size were 5-100 μm, the well-grown hexagonal and granular cordierite grains had the sizes distributed among 0.1-8 μm, and providing high mechanical strength and lower linear thermal expansion coefficient.吴建锋 FANG Binzheng XU Xiaohong XU Xiaoyang ZHENG Shuqing YI Guoxia 2013Journal of Wuhan University of Technology(Materials Science)2013,28,2:4
12LVTree Viewer:An Interactive Display for the All-Species Living Tree Incorporating Automatic Comparison with Prokaryotic Systematics显示文摘We describe an interactive viewer for the All-Species Living Tree(LVTree). The viewer incorporates treeing and lineage information from the ARB-SILVA website. It allows collapsing the tree branches at different taxonomic ranks and expanding the collapsed branches as well, keeping the overall topology of the tree unchanged. It also enables the user to observe the consequence of trial lineage modifications by re-collapsing the tree. The system reports taxon statistics at all ranks automatically after each collapsing and re-collapsing. These features greatly facilitate the comparison of the 16 S rRNA sequence phylogeny with prokaryotic taxonomy in a taxon by taxon manner.In view of the fact that the present prokaryotic systematics is largely based on 16 S rRNA sequence analysis, the current viewer may help reveal discrepancies between phylogeny and taxonomy. As an application, we show that in the latest release of LVTree, based on 11,939 rRNA sequences, as few as 24 lineage modifications are enough to bring all but two phyla(Proteobacteria and Firmicutes) to monophyletic clusters.Guanghong Zuo Xiaoyang Zhi Zhao Xu Bailin Hao 2016Genomics, Proteomics & Bioinformatics2016,14,2:3
13Efficient genotype-independent cotton genetic transformation and genome editing显示文摘Cotton(Gossypium spp.)is one of the most important fiber crops worldwide.In the last two decades,transgenesis and genome editing have played important roles in cotton improvement.However,genotype dependence is one of the key bottlenecks in generating transgenic and gene-edited cotton plants through either particle bombardment or Agrobacterium-mediated transformation.Here,we developed a shoot apical meristem(SAM)cell-mediated transformation system(SAMT)that allowed the transformation of recalcitrant cotton genotypes including widely grown upland cotton(Gossypium hirsutum),Sea island cotton(Gossypium barbadense),and Asiatic cotton(Gossypium arboreum).Through SAMT,we successfully introduced two foreign genes,GFP and RUBY,into SAM cells of some recalcitrant cotton genotypes.Within 2–3 months,transgenic adventitious shoots generated from the axillary meristem zone could be recovered and grown into whole cotton plants.The GFP fluorescent signal and betalain accumulation could be observed in various tissues in GFP-and RUBY-positive plants,as well as in their progenies,indicating that the transgenes were stably integrated into the genome and transmitted to the next generation.Furthermore,using SAMT,we successfully generated edited cotton plants with inheritable targeted mutagenesis in the GhPGF and GhRCD1 genes through CRISPR/Cas9-mediated genome editing.In summary,the established SAMT transformation system here in this study bypasses the embryogenesis process during tissue culture in a conventional transformation procedure and significantly accelerates the generation of transgenic and gene-edited plants for genetic improvement of recalcitrant cotton varieties.Xiaoyang Ge Jieting Xu Zhaoen Yang Xiaofeng Yang Ye Wang Yanli Chen Peng Wang Fuguang Li 2023Journal of Integrative Plant Biology2023,65,4:3
14Research and Development of Cadmium Sulphoselenide Red Pigment显示文摘Cadmium sulphoselenide was synthesized continuous substitution solid solution and the only known pigment to yield bright red color on ceramic decoration. Encapsulated cadmium sulphoselenide pigments could yield abundant hues from yellow to red with high opacity at high temperature. The color generation has a linear function relation with the substitution rate. The encapsulation formation process of zirconium silicate encapsulated cadmium sulphoselenide was shown. Insuffi cient encapsulation effi ciency and potential hazard to human and environment had limited the industrial application of cadmium sulphoselenide red pigment. Ink-jet printing decoration required fi ne size cadmium sulphoselenide red pigment on ceramic decoration. The review mainly focused on the synthesis techniques and industrial application of cadmium sulphoselenide red pigment.吴建锋 LI Kun XU Xiaohong ZHANG Yaxiang XU Xiaoyang LAO Xinbin 2015Journal of Wuhan University of Technology(Materials Science)2015,30,6:3
15Effect of MnO2 on Properties of SiC-mullite Composite Ceramics for Solar Sensible Thermal Storage显示文摘For improving the properties of Si C-mullite composite ceramics used for solar sensible thermal storage, Mn O_2 was introduced as sintering additive when preparing. The composite ceramics were synthesized by using Si C, andalusite, α-Al_2O_3 as the starting materials with non-contact graphite-buried sintering method. Phase composition and microstructure of the composites were investigated by XRD and SEM, and the effect of Mn O_2 on the properties of Si C composites was studied. Results indicated that samples SM1 with 0.2 wt% Mn O_2 addition achieved the optimum properties: bending strength of 70.96 MPa, heat capacity of 1.02 J·(g·K)-1, thermal conductivity of 9.05 W·(m·K)-1. Proper addition of Mn O_2 was found to weaken the volume effect of the composites and improve the thermal shock resistance with an increased rate of 27.84% for bending strength after 30 cycles of thermal shock(air cooling from 1 100 ℃ to RT).徐晓虹 lao xinbin wu jianfeng zhang yaxiang xu xiaoyang li kun 2016Journal of Wuhan University of Technology(Materials Science)2016,31,3:3
16Modes of genetic adaptations underlying functional innovations in the rumen显示文摘The rumen is the hallmark organ of ruminants and hosts a diverse ecosystem of microorganisms that facilitates efficient digestion of plant fibers.We analyzed 897 transcriptomes from three Cetartiodactyla lineages:ruminants,camels and cetaceans,as well as data from ruminant comparative genomics and functional assays to explore the genetic basis of rumen functional innovations.We identified genes with relatively high expression in the rumen,of which many appeared to be recruited from other tissues.These genes show functional enrichment in ketone body metabolism,regulation of microbial community,and epithelium absorption,which are the most prominent biological processes involved in rumen innovations.Several modes of genetic change underlying rumen functional innovations were uncovered,including coding mutations,genes newly evolved,and changes of regulatory elements.We validated that the key ketogenesis rate-limiting gene(HMGCS2)with five ruminant-specific mutations was under positive selection and exhibits higher synthesis activity than those of other mammals.Two newly evolved genes(LYZ1 and DEFB1)are resistant to Gram-positive bacteria and thereby may regulate microbial community equilibrium.Furthermore,we confirmed that the changes of regulatory elements accounted for the majority of rumen gene recruitment.These results greatly improve our understanding of rumen evolution and organ evo-devo in general.Xiangyu Pan Yudong Cai Zongjun Li Xianqing Chen Rasmus Heller Nini Wang Yu Wang Chen Zhao Yong Wang Han Xu Songhai Li Ming Li Cunyuan Li Shengwei Hu Hui Li Kun Wang Lei Chen Bin Wei Zhuqing Zheng Weiwei Fu Yue Yang Tingting Zhang Zhuoting Hou Yueyang Yan Xiaoyang Lv Wei Sun Xinyu Li Shisheng Huang Lixiang Liu Shengyong Mao Wenqing Liu Jinlian Hua Zhipeng Li Guojie Zhang Yulin Chen Xihong Wang Qiang Qiu Brian PDalrymple Wen Wang Yu Jiang 2021Science China(Life Sciences)2021,64,1:3
17Seasonal variation analysis of atmospheric CH_4,N_2O and CO_2 in Tianjin offshore area显示文摘The concentrations of CH4, N2O and CO2 at the sea level were observed from November 2007 to August 2008 in order to study the greenhouse gases in the Tianjin offshore area of Bohai Sea. CH4 concentrations varied from 1.87 to 2.61 ppm with the highest value appearing in summer and the lowest in winter. The concentration range of N2O was 319.3 to 347.7 ppb, with the maximal value appearing in winter. CO2 was higher in the heating season than in non-heating season in this area. Concentrations of the three greenhouse gases in the study area exceeded the 2005 global background values. Backward trajectory model was used to analyze the sources. All three gases were influenced evidently by continental sources in the inshore area during the sampling periods. Every gas was compared with each other by correlation analysis, showing that the correlation of CO2 and N2O was more significant than to CH4 and their relationship with meteorological factors was consistent. It can be concluded these three greenhouse gases may be influenced by some similar sources, especially for CO2 and N2O.KONG ShaoFei, LU Bing, HAN Bin, BAI ZhiPeng, XU Zhun, YOU Yan, JIN LiangMao, GUO XiaoYang & WANG Rui State Environmental Protection Key Laboratory of Urban Ambient Air Particulate Matter Pollution Prevention and Control, College of Environmental Science and Engineering, Nankai University, Tianjin 300071, China 2010Science China Earth Sciences2010,53,8:2
18Prediction of VIGS efficiency by the Sfold program and its reliability analysis in Gossypium hirsutum显示文摘Genetic transformation in some plant species,including cotton(Gossypium hirsutum), is hampered by laborious and time-consuming processes and often unachievable. Virus-induced gene silencing(VIGS) by double-stranded RNAs can serve as a reverse-genetics tool to determine gene function. However, knockdown levels vary greatly when using a tobacco rattle virus-based vector that carries different c DNA fragments of a gene. How to choose the optional target fragment for high interference efficiency is very challenging. Addressing this challenge requires increasing the efficacy of small interference RNA(si RNA) in target fragment. Here, we describe a method to assess VIGS efficiency by comparing the following parameters of si RNA in target sequence: the disruption energy of the target(DGdisruption), the differential stability of si RNA duplex ends(DSSE), and the internal stability at positions 9–14 of the si RNA antisense strand(AIS), which are calculated by Sfold program(http://gffzz01a2382fbe924301hw9bx5fbnkxck6f5q.ffgz.tsg.suse.edu.cn). We find that the si RNAs with low DGdisruption, high DSSE and high AIS have high activity and easily result in high VIGS efficiency by experimentally testing the actual knockdown levels of the four target genes, Gh PDS,Gh CLA1, Gh AOS1, and Gh CXE1 via choosing different target sequences for each gene. Therefore, the Sfold program can be used to analyze target sequences when carrying out VIGS design to increase gene-silencing effects in plants.Xiaoyang Ge Jie Wu Chaojun Zhang Qianhua Wang Yuxia Hou Zuoren Yang Zhaoen Yang Zhenzhen Xu Ye Wang Lili Lu Xueyan Zhang Jinping Hua Fuguang Li 2016Science Bulletin2016,61,7:2
19The chromosome-level Stevia genome provides insights into steviol glycoside biosynthesis显示文摘Stevia(Stevia rebaudiana Bertoni)is well known for its very sweet steviol glycosides(SGs)consisting of a common tetracyclic diterpenoid steviol backbone and a variable glycone.Steviol glycosides are 150–300 times sweeter than sucrose and are used as natural zero-calorie sweeteners.However,the most promising compounds are biosynthesized in small amounts.Based on Illumina,PacBio,and Hi-C sequencing,we constructed a chromosome-level assembly of Stevia covering 1416 Mb with a contig N50 value of 616.85 kb and a scaffold N50 value of 106.55 Mb.More than four-fifths of the Stevia genome consisted of repetitive elements.We annotated 44,143 high-confidence protein-coding genes in the high-quality genome.Genome evolution analysis suggested that Stevia and sunflower diverged~29.4 million years ago(Mya),shortly after the whole-genome duplication(WGD)event(WGD-2,~32.1 Mya)that occurred in their common ancestor.Comparative genomic analysis revealed that the expanded genes in Stevia were mainly enriched for biosynthesis of specialized metabolites,especially biosynthesis of terpenoid backbones,and for further oxidation and glycosylation of these compounds.We further identified all candidate genes involved in SG biosynthesis.Collectively,our current findings on the Stevia reference genome will be very helpful for dissecting the evolutionary history of Stevia and for discovering novel genes contributing to SG biosynthesis and other important agronomic traits in future breeding programs.Xiaoyang Xu Haiyan Yuan Xiaqing Yu Suzhen Huang Yuming Sun Ting Zhang Qingquan Liu Haiying Tong Yongxia Zhang Yinjie Wang Chunxiao Liu Lei Wu Menglan Hou Yongheng Yang 2021Horticulture Research2021,8,1:2
20Nonlinear dynamic analysis of low viscosity fluid-lubricated tilting-pad journal bearing for different design parameters显示文摘To reveal nonlinear dynamic rules of low viscosity fluid-lubricated tilting-pad journal bearings(TPJBs),the effects of design parameters on journal center orbits and dynamic minimum film thicknesses of water-lubricated TPJBs with and without static loads are investigated.The hydrodynamic bearing force used in the nonlinear dynamic analysis is an approximate analytical solution including the turbulence effect.The results reveal the methods for vibration suppression and load capacity improvement and give an optimal pivot offset and clearance ratio that can maximize the minimum film thickness.The results also show that four-pad TPJBs with loads between pads are preferred due to good dynamic performance and load capacity.This study would provide some guidance for nonlinear design of low viscosity fluid-lubricated TPJBs under dynamic loads.Yingze JIN Fei CHEN Jimin XU Xiaoyang YUAN 2020Friction2020,8,5:2
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