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Ni-Cr薄膜换能组件静电响应特性与发火概率预测研究
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作者 章云 李博 +3 位作者 解瑞珍 付禹龙 任小明 姚洪志 《火工品》 CAS CSCD 北大核心 2024年第5期59-65,共7页
针对电火工品在静电放电影响下可能发生误发火的问题,以Ni-Cr薄膜换能组件为研究对象,提出了一种分析其在人体静电放电下的响应特性,并预测发火概率的方法。首先,介绍了Ni-Cr薄膜换能组件系统架构,并建立了电火工品静电放电等效电路模型... 针对电火工品在静电放电影响下可能发生误发火的问题,以Ni-Cr薄膜换能组件为研究对象,提出了一种分析其在人体静电放电下的响应特性,并预测发火概率的方法。首先,介绍了Ni-Cr薄膜换能组件系统架构,并建立了电火工品静电放电等效电路模型;其次,研究了Ni-Cr薄膜换能组件静电放电响应特性,分析了换能组件尺寸和放电电压对薄膜桥区温度的影响规律;最后,构建了Ni-Cr薄膜换能组件在统计特征下的输入条件,确定了换能组件失效判据,进而结合发火感度试验与数理统计方法,实现了在静电放电条件下电火工品发火概率的预测。研究结果表明:预测发火概率与试验值误差不超过5%,验证了本文方法的有效性。 展开更多
关键词 电火工品 ni-cr薄膜 静电放电 失效判据 发火概率
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Gd改性Ni-Cr钎料钎焊金刚石组织和性能研究
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作者 徐东 金天 +1 位作者 王朋波 程战 《材料导报》 EI CAS CSCD 北大核心 2024年第19期177-181,共5页
本研究旨在减少钎焊金刚石的热损伤,提高钎焊金刚石的力学性能。采用Gd改性的Ni-Cr合金钎料,在1080℃保温5 min对金刚石进行真空感应钎焊试验,并利用SEM、EDS及XRD对钎料的微观组织和金刚石焊后界面微结构进行测试分析。结果表明,Gd的... 本研究旨在减少钎焊金刚石的热损伤,提高钎焊金刚石的力学性能。采用Gd改性的Ni-Cr合金钎料,在1080℃保温5 min对金刚石进行真空感应钎焊试验,并利用SEM、EDS及XRD对钎料的微观组织和金刚石焊后界面微结构进行测试分析。结果表明,Gd的添加提高了Ni-Cr合金钎料的力学性能,钎料中生成了两种新的稀土化合物(Gd_(2)Ni_(17)和GdNi_(5))。添加适量的Gd可提高金刚石的出露度,且钎焊接头中生成的新型Gd_(2)Ni_(17)化合物有利于减少钎焊金刚石的热损伤。此外,当Gd的添加量为0.8%时,金刚石的暴露量达到其自身高度的62.1%,力学性能测试证实使用该钎料钎焊的金刚石的静压强度和磨削性能高于使用纯镍铬合金钎焊的钻石。 展开更多
关键词 钎焊金刚石 ni-cr钎料 磨削性能 热损伤
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Y元素对Ni-Cr非晶钎料钎焊金刚石组织和性能的影响
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作者 冯帅帅 王邦伦 +5 位作者 陈志浩 王朋波 张雷 钟素娟 李家茂 徐东 《材料研究与应用》 CAS 2024年第5期787-795,共9页
钎焊金刚石工具因化学冶金结合方式而具备较高的结合强度,在陶瓷、半导体和玻璃等硬脆性材料的加工行业及轨道交通、航空航天等领域中拥有广泛的应用前景。虽然Ni基钎料钎焊金刚石工具在结合强度、耐磨性及服役环境方面具有一定的优势,... 钎焊金刚石工具因化学冶金结合方式而具备较高的结合强度,在陶瓷、半导体和玻璃等硬脆性材料的加工行业及轨道交通、航空航天等领域中拥有广泛的应用前景。虽然Ni基钎料钎焊金刚石工具在结合强度、耐磨性及服役环境方面具有一定的优势,但是较高的钎焊温度和化学侵蚀会对金刚石磨粒造成较为严重的热损伤,从而影响金刚石工具的工作效率和服役寿命。为了降低钎焊过程中金刚石的热损伤,采用掺杂Y元素的Ni-Cr非晶钎料钎焊金刚石,通过SEM研究了钎焊金刚石试样的界面微观形貌,使用拉曼光谱仪分析了钎焊金刚石试样的石墨化程度,同时还探究了钎焊金刚石试样的力学性能。结果表明,当Y元素的质量分数为0.8%时,钎焊试样的金刚石形貌最为完整,钎焊层硬度最高为533 HV_(0.1),金刚石出露度较高为76.2%且石墨化程度较低。另外,Y元素的添加细化了碳化物的尺寸,降低了碳化物微裂纹的产生。相较于未添加Y元素的钎焊试样,添加Y元素的金刚石钎焊试样的抗压强度提升了约50.4%,磨削性能提高了43.5%,金刚石的脱落数量最少。表明,用Y元素掺杂的Ni-Cr非晶钎料可成功制备出钎焊金刚石试样,同时还降低了钎料中的触媒元素对金刚石的侵蚀作用,改善了热损伤和磨削性能。本研究为非晶钎料在钎焊金刚石工具领域中的应用提供了可靠的理论支持,并为相关工业生产提供了新的技术路径,在降低生产成本和推动绿色生产方面具有一定的实际意义。 展开更多
关键词 ni-cr非晶钎料 钎焊金刚石 热损伤 磨削性能 微观形貌 抗压强度 Y元素 石墨化
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贴膜式Ni-Cr换能元设计及性能研究
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作者 艾沛延 赵婉君 +5 位作者 吴琴钟 杨康 郭凯 唐新月 韩克华 焦清介 《火工品》 CAS CSCD 北大核心 2024年第5期46-53,共8页
通过热压工艺将5μm的Ni-Cr薄膜附着在聚酰亚胺薄膜上制备了贴膜式Ni-Cr薄膜,采用激光刻蚀加工工艺制备了贴膜式Ni-Cr换能元电桥,仿真优化设计了蝶形、S形换能元电桥,并开展了2种形状电桥的贴膜式Ni-Cr换能元的伏安特性、最大不熔断电流... 通过热压工艺将5μm的Ni-Cr薄膜附着在聚酰亚胺薄膜上制备了贴膜式Ni-Cr薄膜,采用激光刻蚀加工工艺制备了贴膜式Ni-Cr换能元电桥,仿真优化设计了蝶形、S形换能元电桥,并开展了2种形状电桥的贴膜式Ni-Cr换能元的伏安特性、最大不熔断电流、50 ms脉冲恒流电爆特性以及发火特性试验研究。研究结果表明:桥区长度为3 mm的换能元电桥在1 A 5 min恒流激励后桥区温度最低;贴膜式Ni-Cr换能元在33μF电容放电时,随着充电电压的升高断桥时间缩短,蝶形和S形未发生断桥的电压分别为16,20 V;蝶形和S形换能元在5 min恒流脉冲输入下的最大不熔断电流分别为1.3,1.2 A;在50 ms脉冲恒流电爆时,随着施加电流幅度的不断增加,其工作电压也不断增高,其断桥时间越来越短,S形换能元和蝶形换能元分别在2.4,2.3 A时电桥未发生爆炸;33μF、28 V电容放电下贴膜式Ni-Cr换能元可以点燃斯蒂芬酸铅,并正常发火。 展开更多
关键词 ni-cr桥膜 贴膜式ni-cr 换能元 发火特性 电爆
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Cu-Sn、Ni-Cr、Co烧结助剂对Ni_(3)Al基金刚石复合材料性能的影响
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作者 卢家锋 张凤林 陈晓昀 《热加工工艺》 北大核心 2024年第15期44-48,共5页
采用真空热压法制备了Ni_(3)Al基金刚石复合材料,研究了不同烧结助剂对复合材料力学性能和微观结构的影响,并对Ni_(3)Al基金刚石钻头的钻孔性能进行了测试。结果表明,在添加0~30vol%的Cu-Sn、Ni-Cr、Co烧结助剂后,Ni_(3)Al基金刚石刀头... 采用真空热压法制备了Ni_(3)Al基金刚石复合材料,研究了不同烧结助剂对复合材料力学性能和微观结构的影响,并对Ni_(3)Al基金刚石钻头的钻孔性能进行了测试。结果表明,在添加0~30vol%的Cu-Sn、Ni-Cr、Co烧结助剂后,Ni_(3)Al基金刚石刀头的致密度、抗弯强度、硬度得到提高。Ni3Al基金刚石复合材料的抗弯强度随着Ni-Cr、Co烧结助剂含量的增加而提高。Cu-Sn、Ni-Cr烧结助剂中的Cr元素在金刚石的表面出现了富集现象。将添加Cu-Sn、Ni-Cr烧结助剂的Ni_(3)Al基金刚石复合材料制备成工具进行钻削测试,发现Ni_(3)Al基金刚石复合材料的失效形式可以分为微破碎、磨耗、宏观破碎3种形式,钻削试验中并没有发现整颗金刚石脱落的现象,表明Ni_(3)Al基对金刚石的把持力较大,强度较高。 展开更多
关键词 Ni_(3)Al Cu-Sn ni-cr 金刚石 复合材料 磨损
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Computer vision-aided DEM study on the compaction characteristics of graded subgrade filler considering realistic coarse particle shapes 被引量:1
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作者 Taifeng Li Kang Xie +2 位作者 Xiaobin Chen Zhixing Deng Qian Su 《Railway Engineering Science》 EI 2024年第2期194-210,共17页
The compaction quality of subgrade filler strongly affects subgrade settlement.The main objective of this research is to analyze the macro-and micro-mechanical compaction characteristics of subgrade filler based on th... The compaction quality of subgrade filler strongly affects subgrade settlement.The main objective of this research is to analyze the macro-and micro-mechanical compaction characteristics of subgrade filler based on the real shape of coarse particles.First,an improved Viola-Jones algorithm is employed to establish a digitalized 2D particle database for coarse particle shape evaluation and discrete modeling purposes of subgrade filler.Shape indexes of 2D subgrade filler are then computed and statistically analyzed.Finally,numerical simulations are performed to quantitatively investigate the effects of the aspect ratio(AR)and interparticle friction coefficient(μ)on the macro-and micro-mechanical compaction characteristics of subgrade filler based on the discrete element method(DEM).The results show that with the increasing AR,the coarse particles are narrower,leading to the increasing movement of fine particles during compaction,which indicates that it is difficult for slender coarse particles to inhibit the migration of fine particles.Moreover,the average displacement of particles is strongly influenced by the AR,indicating that their occlusion under power relies on particle shapes.The dis-placement and velocity of fine particles are much greater than those of the coarse particles,which shows that compaction is primarily a migration of fine particles.Under the cyclic load,the interparticle friction coefficientμhas little effect on the internal structure of the sample;under the quasi-static loads,however,the increase inμwill lead to a significant increase in the porosity of the sample.This study could not only provide a novel approach to investigate the compaction mechanism but also establish a new theoretical basis for the evaluation of intelligent subgrade compaction. 展开更多
关键词 Subgrade filler particles Deep learning particle Shape analysis Particle library Compaction characteristics Discrete element method(DEM)
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Effect of brazing temperature on microstructure and tensile strength ofγ-TiAl joint vacuum brazed with micro-nano Ti−Cu−Ni−Nb−Al−Hf filler
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作者 Li LI Yu-tong CHEN +3 位作者 Lei-xin YUAN Fen LUO Zhi-xue FENG Xiao-qiang LI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第8期2563-2574,共12页
A novel micro-nano Ti−10Cu−10Ni−8Al−8Nb−4Zr−1.5Hf filler was used to vacuum braze Ti−47Al−2Nb−2Cr−0.15B alloy at 1160−1220℃ for 30 min.The interfacial microstructure and formation mechanism of TiAl joints and the rel... A novel micro-nano Ti−10Cu−10Ni−8Al−8Nb−4Zr−1.5Hf filler was used to vacuum braze Ti−47Al−2Nb−2Cr−0.15B alloy at 1160−1220℃ for 30 min.The interfacial microstructure and formation mechanism of TiAl joints and the relationships among brazing temperature,interfacial microstructure and joint strength were emphatically investigated.Results show that the TiAl joints brazed at 1160 and 1180℃ possess three interfacial layers and mainly consist of α_(2)-Ti_(3)Al,τ_(3)-Al_(3)NiTi_(2) and Ti_(2)Ni,but the brazing seams are no longer layered and Ti_(2)Ni is completely replaced by the uniformly distributed τ_(3)-Al_(3)NiTi_(2) at 1200 and 1220℃ due to the destruction of α_(2)-Ti_(3)Al barrier layer.This transformation at 1200℃ obviously improves the tensile strength of the joint and obtains a maximum of 343 MPa.Notably,the outward diffusion of Al atoms from the dissolution of TiAl substrate dominates the microstructure evolution and tensile strength of the TiAl joint at different brazing temperatures. 展开更多
关键词 γ-TiAl alloy micro-nano filler vacuum brazing interfacial microstructure tensile strength
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Influence of filler characteristics on particle removal in fluid catalytic cracking slurry under an alternating electric field
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作者 Qiang Li Hui-Zhen Yang +3 位作者 Can Yang Qing-Zhu Qiu Wei-Wei Xu Zhao-Zeng Liu 《Petroleum Science》 SCIE EI CAS CSCD 2024年第3期2102-2111,共10页
The characteristics of the packing material under an alternating electric field are an important factor in the removal of FCCS particles.In this study,the electric field distribution of a separation unit consisting of... The characteristics of the packing material under an alternating electric field are an important factor in the removal of FCCS particles.In this study,the electric field distribution of a separation unit consisting of packed spheres under an alternating electric field is simulated,and the movement mechanism of catalyst particles is analysed.An"effective contact point"model is derived to predict the adsorption of filler contact points on catalyst particles under the alternating electric field,and the model is validated by simulations and experiments.The numerical calculation and experimental results indicate that the electrical properties of the filler spheres,the filler angleθ,and the frequency f of the alternating electric field affect the adsorption of catalyst particles.As the frequency of the electric field increases,the particle removal efficiency of the high-conductivity filler(silicon carbide)increases and then settles,and the separation efficiency of the low-conductivity filler(glass,zirconia)is not sensitive to the change in electric field frequency. 展开更多
关键词 Fluid catalyticcracking slurry(FCCS) PARTICLE AC electric field fillerS REMOVAL
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Basic Characteristics of an Appropriate Waste Fillers for Solvent Free and Water-Borne Industrial Polymer Floors and Their Utilization
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作者 Jana Kosikova 《Journal of Civil Engineering and Architecture》 2024年第3期141-147,共7页
Recently the manufacture of epoxy coating and flooring materials begun to be under strong pressure to use more environmentally friendly raw materials in its composition.First tendency to reduce of solvents and diluent... Recently the manufacture of epoxy coating and flooring materials begun to be under strong pressure to use more environmentally friendly raw materials in its composition.First tendency to reduce of solvents and diluents contained in the materials appeared at the end of 90´s.This situation was supported by the Council of Europe in 2004 to reduce VOC emissions to zero till 2020.Solvent materials were thus largely replaced by solvent free materials from which the volatile substances are not released into the air.But pressure continued to increase,and over the past decade began to take centre stage water-based epoxy.On the Czech market solvent based material is still occasionally used,but predominant are solvent free materials.There are no commonly used materials containing wastes as fillers in new water-borne and solvent-free epoxy materials.Characteristics identification of the waste material as a potential filler is a set of properties that determine the limits of secondary raw materials or waste as a filler.This paper describes the basic characteristics which must be selected to meet the requirements,to affect negatively the workability,sedimentation,properties and behavior of the final floor system.Some materials must comply with special requirements,such as resistance to chemicals,etc.Next part of paper talks about utilization of polymer floors and their mechanical properties. 展开更多
关键词 Industrial polymer flooring materials waster fillers building materials
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A Fe-Ni-Cr system filler metal for brazing of stainless steel
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作者 赵海生 熊华平 +1 位作者 潘晖 淮军锋 《China Welding》 EI CAS 2015年第1期1-5,共5页
New Fe-Ni-Cr system brazing alloys were designed, in which elements Si and B as well as Cu-Ti binary alloy were added as the temperature depressants. The brazing alloys were fabricated into filler foils by a rapidly-s... New Fe-Ni-Cr system brazing alloys were designed, in which elements Si and B as well as Cu-Ti binary alloy were added as the temperature depressants. The brazing alloys were fabricated into filler foils by a rapidly-solidifying technique. It was found that, to acquire a suitable liquidus temperature of the filler alloy, the addition of Cu-Ti binary alloy decreased the needed amount of Si and B, and it had an effect on improvement in mechanical properties of the brazed joints. Based on the results of melting and wettability experiments, one filler metal was used to join stainless steel at 1 140 ℃ for 15 min. The rnicrostructure of the joint was analyzed by means of a scanning electron microscope (SEM) equipped with X-ray energy- dispersive spectroscopy (EDS). It was found that the typical joint was mainly composed of solid solution with a small quantity of Cr-rich borides strips, Ti-rich boride blocks and Cu-rich silicide particles. The brazed joints show an average tensile strength of 270. 8 MPa and an average impact toughness of 35.6 J/cm^2. 展开更多
关键词 BRAZING stainless steel Fe-ni-cr filler metal MICROSTRUCTURE mechanical properties
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熔盐燃烧法制备Ni-Cr共掺LiMn_(2)O_(4)正极材料及电化学性能研究 被引量:1
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作者 郭昱娇 罗学英 +2 位作者 林杰 宁平 郭俊明 《化工新型材料》 CAS CSCD 北大核心 2023年第3期166-172,共7页
采用熔盐燃烧法和不同焙烧温度处理制备了一系列尖晶石型LiNi_(0.05)Cr_(0.05)Mn_(1.90)O_(4)(LNCMO)正极材料,研究了焙烧温度对LNCMO的结构、微观结构形貌、电化学性能和动力学性能等的影响。结果表明,所制备样品都归属于LiMn_(2)O_(4... 采用熔盐燃烧法和不同焙烧温度处理制备了一系列尖晶石型LiNi_(0.05)Cr_(0.05)Mn_(1.90)O_(4)(LNCMO)正极材料,研究了焙烧温度对LNCMO的结构、微观结构形貌、电化学性能和动力学性能等的影响。结果表明,所制备样品都归属于LiMn_(2)O_(4)立方晶系Fd3m空间群,随焙烧温度升高,样品颗粒逐渐增大,其中550℃制备的为纳米级颗粒,其余为亚微米级。其中600℃焙烧温度制备的LNCMO样品展现出最佳的电化学性能,在5C倍率下,其首次放电比容量为109.1mAh/g,500次循环容量保持率为75.7%。电流密度增大到15C和30C时,经800次循环后该样品仍有64.4%和60.6%的容量保持率,并且其具有最大的Li+扩散系数(6.31×10^(-16) cm^(2)/s)和最小的电荷转移电阻(89.0Ω)。Ni-Cr共掺有效抑制了Jahn-Teller效应,适宜的二次焙烧温度有利于稳定材料的晶体结构,从而提高其倍率性能和循环性能。 展开更多
关键词 LiMn_(2)O_(4) ni-cr共掺杂 熔盐燃烧法 焙烧温度 正极材料 JAHN-TELLER效应
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The Critical Role of Fillers in Composite Polymer Electrolytes for Lithium Battery 被引量:6
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作者 Xueying Yang Jiaxiang Liu +5 位作者 Nanbiao Pei Zhiqiang Chen Ruiyang Li Lijun Fu Peng Zhang Jinbao Zhao 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第5期339-375,共37页
With excellent energy densities and highly safe performance,solidstate lithium batteries(SSLBs)have been hailed as promising energy storage devices.Solid-state electrolyte is the core component of SSLBs and plays an e... With excellent energy densities and highly safe performance,solidstate lithium batteries(SSLBs)have been hailed as promising energy storage devices.Solid-state electrolyte is the core component of SSLBs and plays an essential role in the safety and electrochemical performance of the cells.Composite polymer electrolytes(CPEs)are considered as one of the most promising candidates among all solid-state electrolytes due to their excellent comprehensive performance.In this review,we briefly introduce the components of CPEs,such as the polymer matrix and the species of fillers,as well as the integration of fillers in the polymers.In particular,we focus on the two major obstacles that affect the development of CPEs:the low ionic conductivity of the electrolyte and high interfacial impedance.We provide insight into the factors influencing ionic conductivity,in terms of macroscopic and microscopic aspects,including the aggregated structure of the polymer,ion migration rate and carrier concentration.In addition,we also discuss the electrode-electrolyte interface and summarize methods for improving this interface.It is expected that this review will provide feasible solutions for modifying CPEs through further understanding of the ion conduction mechanism in CPEs and for improving the compatibility of the electrode-electrolyte interface. 展开更多
关键词 Composite polymer electrolytes fillerS Ionic conductivity Electrode-electrolyte interface
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Structure and Properties of PLA Composite Enhanced with Biomass Fillers from Herbaceous Plants 被引量:2
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作者 Haining Na Juncheng Huang +5 位作者 Hongguang Xu Fei Liu Liangke Xie Baoqing Zhu Jiuchen Wang Jin Zhu 《Journal of Renewable Materials》 SCIE EI 2023年第2期491-503,共13页
PLA composites containing biomass fillers from the three herbaceous plants such as reed,wheat stalk,and coco-nut fiber with length and diameter at the scale of several millimeters were prepared without using additives... PLA composites containing biomass fillers from the three herbaceous plants such as reed,wheat stalk,and coco-nut fiber with length and diameter at the scale of several millimeters were prepared without using additives.The reinforcement effect on the properties of PLA/biomass filler composites is investigated.The research results show that the PLA/biomass filler composites exhibit good stiffness,flexural strength,and impact toughness.Among the three kinds of biomass fillers,reed reinforced PLA composites show optimal mechanical properties.When filled with 40%–50%reed,the flexural moduli of the composites are over 7000 MPa.Flexural strength retains at the same level of pure PLA.The notch impact strength reaches to 4.50±0.73 kJ/m^(2),which is 2.06 times higher than that of pure PLA.Furthermore,the introduction of biomass fillers increases the crystallization ability of PLA and does not increase the water absorption of the composites.This research demonstrated that PLA composites prepared with biomass fillers from the herbaceous plants(namely herb plastic composites,HPCs)is a material with good comprehensive mechanical properties while retaining the intrinsic particularity of biological sources. 展开更多
关键词 PLA biomass filler herb plastic composites
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In-depth analysis of the influence of bio-silica filler(Didymosphenia geminata frustules)on the properties of Mg matrix composites
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作者 Izabela B.Zgłobicka Anna Dobkowska +12 位作者 Aleksandra Zielińska Ewa Borucinska Mirosław J.Kruszewski RafałZybała Tomasz Płociński Joanna Idaszek Jakub Jaroszewicz Krystian Paradowski Bogusława Adamczyk-Cieślak Kostiantyn Nikiforow Bartosz Bucholc WojciechŚwięszkowski Krzysztof J.Kurzydłowski 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2023年第8期2853-2871,共19页
A novel metal matrix composites(MMC)with Mg matrix reinforced with natural filler in the form of Didymosphenia geminata frustules(algae with distinctive siliceous shells)are presented in this work.Pulse plasma sinteri... A novel metal matrix composites(MMC)with Mg matrix reinforced with natural filler in the form of Didymosphenia geminata frustules(algae with distinctive siliceous shells)are presented in this work.Pulse plasma sintering(PPS)was used to manufacture Mg-based composites with 1,5 and 10 vol.%ceramic filler.As a reference,pure Mg was sintered.The results show that the addition of 1 vol.%Didymosphenia geminata frustules to the Mg matrix increases its corrosion resistance by supporting passivation reactions,and do not affect the morphology of L929 fibroblasts.Addition of 5 vol.%the filler does not cause cytotoxic effects,but it supports microgalvanic reactions leading to the greater corrosion rate.Higher content than 5 vol.%the filler causes significant microgalvanic corrosion,as well as increases cytotoxicity due to the greater micro-galvanic effect of the composites containing 10 and 15 vol.%diatoms.The results of contact angle measurements show the hydrophilic character of the investigated materials,with slightly increase in numerical values with addition of amount of ceramic reinforcement.The addition of Didymosphenia geminata frustules causes changes in a thermo-elastic properties such as mean apparent value of coefficient of thermal expansion(CTE)and thermal conductivity(λ).The addition of siliceous reinforcement resulted in a linear decrease of CTE and reduction in thermal conductivity over the entire temperature range.With the increasing addition of Didymosphenia geminata frustules,an increase in strength with a decrease in compressive strain is observed.In all composites an increase in microhardness was attained.The results clearly indicate that filler in the form of Didymosphenia geminata frustules may significantly change the most important properties of pure Mg,indicating its wide potential in the application of Mg-based composites with a special focus on biomedical use. 展开更多
关键词 Metal-matrix composites(MMCs) Pulse plasma sintering(PPS) Ceramic filler Microstructure Properties
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Phase field simulation of grain refinement in silver-based filler metal
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作者 朱宇辰 龙伟民 +4 位作者 魏世忠 郭鹏 武汉琦 樊喜刚 魏永强 《China Welding》 CAS 2023年第4期49-54,共6页
Numerical simulation is one of the important auxiliary methods for studying materials-related problems. In this study, phase field simulation was employed to investigate the refinement behavior of BAg55CuZn-x B brazin... Numerical simulation is one of the important auxiliary methods for studying materials-related problems. In this study, phase field simulation was employed to investigate the refinement behavior of BAg55CuZn-x B brazing alloys. Simulation and experimental studies were conducted for B contents ranging from 0 wt.% to 0.2 wt.%. The results demonstrated that the addition of 0.05 wt.% B in the brazing alloy leads to a significant refinement effect. As the B content increases, the grain size further reduces, and a refinement stagnation phenomenon occurs after exceeding 0.15 wt.%. The solidification process of brazing alloys with different B content was predicted by simulation, and the simulation results showed that with the increase of B content, the initial number of nucleation increased, and the radius of the dendrite tip decreased. The simulation results are in good agreement with the experimental findings, providing further evidence of the refining effect of the B element and the reliable predictive capability of the phase field model. 展开更多
关键词 phase field simulation grain refinement silver-based filler metal microstructure
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Ni-Cr桥膜换能元直流激励下作用规律研究
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作者 王科伟 段卜仁 +3 位作者 姜晓斌 李彤 黄金红 关文超 《火工品》 CAS CSCD 北大核心 2023年第6期21-26,共6页
为了研究直流激励下Ni-Cr桥膜换能元的作用规律,采用磁控溅射法制备了一种多层复合结构的Ni-Cr桥膜换能元,并通过电压探头、光电传感器和红外热像仪获得了不同电流输入时换能元电压、光信号和表面温度随时间变化的特征曲线。结果表明:... 为了研究直流激励下Ni-Cr桥膜换能元的作用规律,采用磁控溅射法制备了一种多层复合结构的Ni-Cr桥膜换能元,并通过电压探头、光电传感器和红外热像仪获得了不同电流输入时换能元电压、光信号和表面温度随时间变化的特征曲线。结果表明:在低电流(I≤2.5A)输入下,Ni-Cr桥膜换能元的作用规律类似传统桥丝/桥带换能元的热传导作用规律;当输入电流增大至3.0A时,Ni-Cr桥膜换能元的作用规律转变为微对流作用规律;当Ni-Cr桥膜换能元并联热敏电阻后,热敏电阻的分流作用有效抑制了换能元温度的升高,提升了安全电流,但同时也抑制了桥区等离子体的形成,因而无法实现热传导向微对流作用规律的转换。 展开更多
关键词 ni-cr桥膜 换能元 直流激励 热敏电阻 热传导 微对流
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不同填料生物膜对海水养殖尾水的脱氮效能及微生物群落分析 被引量:1
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作者 陈小红 许贻斌 +3 位作者 林永青 仇登高 姜双城 郑惠东 《大连海洋大学学报》 CAS CSCD 北大核心 2024年第1期9-19,共11页
为探究不同填料生物膜对海水养殖尾水氮污染物的处理能力,分别以无填料(C)、牡蛎壳(M)、珊瑚石(S)、弹性填料(T)和悬浮球填料(F)构建5组生物滤池,比较填料生物膜成熟时间、成膜情况及对不同氮污染物的24 h去除能力,同时利用高通量测序... 为探究不同填料生物膜对海水养殖尾水氮污染物的处理能力,分别以无填料(C)、牡蛎壳(M)、珊瑚石(S)、弹性填料(T)和悬浮球填料(F)构建5组生物滤池,比较填料生物膜成熟时间、成膜情况及对不同氮污染物的24 h去除能力,同时利用高通量测序技术分析挂膜期间(20、40、60 d)填料生物膜上微生物群落的变化。结果表明:不同填料生物膜成熟时间需要46~50 d,珊瑚石所需时间最短(46 d);扫描电镜显示,弹性填料和悬浮球填料附着生物量最多,以杆状细菌为主;对氨氮、亚硝酸盐氮、硝酸盐氮的24 h去除率最高的填料分别是悬浮球填料(68.66%±6.27%)、珊瑚石(99.99%±0.00%)和悬浮球填料(6.73%±3.41%);高通量测序显示,随着挂膜时间延长,弹性填料生物膜上的细菌丰度显著增加,牡蛎壳和珊瑚石生物膜上的细菌多样性显著下降(P<0.05);在门分类水平上,变形菌门(Proteobacteria)、拟杆菌门(Bacteroidetes)是不同填料生物膜的主要优势菌群,硝化螺旋菌门(Nitrospirae)、硝化刺菌门(Nitrospinae)的相对丰度随挂膜时间延长不断升高;在属分类水平上,亚硝酸菌属(Nitrosomonas)、硝化螺菌属(Nitrospira)、硝化刺菌属(Nitrospina)和未分类_亚硝化单胞菌科(unclassified_Nitrosomonadaceae)是填料生物膜上具有硝化作用的优势菌属,这4种硝化菌属在挂膜60 d时的相对丰度总和从高到低依次为悬浮球填料(42.53%)>牡蛎壳(30.50%)、弹性填料(29.30%)>珊瑚石(11.74%),假单胞菌属(Pseudomonas)、青枯菌属(Ralstonia)、噬几丁质菌属(Chitinophaga)和草螺菌属(Herbaspirillum)等反硝化菌属在珊瑚石填料生物膜上的相对丰度高于其他填料。研究表明,珊瑚石、悬浮球填料能够实现脱氮菌属的高效富集,对海水养殖尾水具有良好的脱氮能力,是较为理想的生物填料。 展开更多
关键词 海水养殖尾水 填料 生物膜 脱氮能力 微生物群落
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异种不锈钢1Cr18Ni9Ti/Mn-Ni-Cr/1Cr21Ni5Ti钎焊接头的组织和性能
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作者 马立驰 毛冬远 +4 位作者 袁琳 褚强 李双吉 李昭希 熊江涛 《材料导报》 CSCD 北大核心 2023年第S02期350-357,共8页
针对液体火箭发动机燃烧室的焊接制造,采用Mn-Ni-Cr箔材钎料对异种不锈钢1Cr18Ni9Ti与1Cr21Ni5Ti进行了钎焊实验,研究了工艺参数对接头微观组织结构的影响规律,揭示了焊缝区缺陷、第二相的形成过程。通过力学性能测试获得了接头组织结... 针对液体火箭发动机燃烧室的焊接制造,采用Mn-Ni-Cr箔材钎料对异种不锈钢1Cr18Ni9Ti与1Cr21Ni5Ti进行了钎焊实验,研究了工艺参数对接头微观组织结构的影响规律,揭示了焊缝区缺陷、第二相的形成过程。通过力学性能测试获得了接头组织结构与力学性能的响应关系,确定了钎焊的最佳工艺参数为1190℃、30 min,其爆破压力达到80 MPa。利用SEM、EDS以及EBSD等表征手段对断口形貌进行了分析,研究了不同工艺规范下接头的断裂机理,为不锈钢燃烧室的焊接制造提供了工艺理论基础。 展开更多
关键词 奥氏体不锈钢1Cr18Ni9Ti 双相不锈钢1Cr21Ni5Ti Mn基钎料 钎焊 组织结构 力学性能
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不同助留体系对装饰原纸二氧化钛复合填料留着效果的影响 被引量:1
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作者 张妍 王慧乐 +3 位作者 乔文朴 王一凡 刘忠 吴海标 《中国造纸》 CAS 北大核心 2024年第1期131-140,共10页
本研究分别分析了单元助留体系阳离子聚酰胺环氧氯丙烷树脂(PAE),双元助留体系PAE/阴离子聚丙烯酰胺(APAM)、PAE/膨润土(MMT)、PAE/阳离子聚丙烯酰胺(CPAM),三元助留体系PAE/CPAM/APAM、PAE/CPAM/MMT对装饰原纸TiO_(2)/滑石粉复合填料... 本研究分别分析了单元助留体系阳离子聚酰胺环氧氯丙烷树脂(PAE),双元助留体系PAE/阴离子聚丙烯酰胺(APAM)、PAE/膨润土(MMT)、PAE/阳离子聚丙烯酰胺(CPAM),三元助留体系PAE/CPAM/APAM、PAE/CPAM/MMT对装饰原纸TiO_(2)/滑石粉复合填料留着效果的影响。确定了各个体系的最佳添加量,并筛选出助留效果最好的助留体系。结果表明,当PAE添加量2.0%、CPAM添加量0.08%、MMT添加量0.6%时,组成的PAE/CPAM/MMT三元助留体系留着效果最佳,此时,浆料和填料留着率分别为89.5%和65.0%,纸张的不透明度、白度及匀度分别为98.5%、86.6%和91。 展开更多
关键词 填料留着率 单元助留体系 双元助留体系 三元助留体系
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污水处理填料堵塞的形成机理及控制措施
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作者 刘建国 门颖欣 +6 位作者 魏敬铤 李文凯 朱畅 曹英楠 杨晓霞 刘俊新 郑天龙 《工业水处理》 CAS CSCD 北大核心 2024年第5期1-13,共13页
污水处理填料能够提高污水处理效果,但其堵塞问题会降低处理能力、恶化运行工况,亟待解决。为提高污水处理填料的抗堵塞能力,综述了污水处理填料堵塞的相关研究,从填料特性、应用场景、物质分类、堵塞特点、发展机制和影响因素等方面总... 污水处理填料能够提高污水处理效果,但其堵塞问题会降低处理能力、恶化运行工况,亟待解决。为提高污水处理填料的抗堵塞能力,综述了污水处理填料堵塞的相关研究,从填料特性、应用场景、物质分类、堵塞特点、发展机制和影响因素等方面总结了污水处理填料堵塞的形成机理,从事前、事中、事后三个方面讨论了针对污水处理填料堵塞问题的7项常用控制措施,并根据研究现状提出了堵塞形成机理、堵塞控制措施、填料设计优化等方面的研究建议,以期为污水处理填料及配套工艺的后续研究和技术开发提供支撑,提高污水处理填料的应用效益。 展开更多
关键词 污水处理填料 堵塞 发展机制 控制措施
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