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81.
非调质钢50MnSiV(/%:0. 50C,0.52S,1.20Mn,0.010P,0.025S,0.15Cr,0.10V,0.015Ti,0.015N)制造的新能源汽车电机轴,省去传统调质钢20CrMnTiH渗碳热处理和矫正精整工序,不仅可提高材料95%利用率和2天交货周期,还可以降低25%成本。50MnSiV钢抗拉强度1100 MPa、屈服强度858 MPa、冲击功48J。其静扭扭矩(4697 Nm)、疲劳寿命(±1600 Nm双向扭转12万次、±1400 Nm双向扭转27万次)较渗碳20CrMnTiH钢提高了27%和93%~140%,并且其性能指标和8万公里的路试结果均满足电机轴的技术要求。 相似文献
82.
An active band‐notched frequency selective absorber (BNFSA) with switchable notch band is proposed in this article. The BNFSA is a two‐layer structure composed of a lossy layer at the top and a ground plane at the bottom, separated by an air spacer. The element of the lossy layer is a lumped‐resistor‐loaded metallic dipole with a parallel LC resonance structure, which is realized by complementary n‐shaped resonator (CnR) inserted in the center, and PIN diode is welded at two arms of CnR. The bias circuit printed on the back of the substrate of the lossy layer connects to anode and cathode of the diode by via hole and isolates by the inductor. Simulation results show that the notch bands are located at 4.50 and 6.81 GHz when the diode sets to ON and OFF, respectively. To validate the performance of switchable BNFSA, the prototypes are fabricated and measured, reasonable agreement between simulated and measured results is obtained. 相似文献
83.
Jianlei Kuang Ting Xiao Xianjie Hou Qianfang Zheng Qi Wang Peng Jiang Wenbin Cao 《Ceramics International》2019,45(9):11660-11667
Thin thickness is always the pursuit of excellent electromagnetic wave absorbing materials. Herein, SiC nanowires with worm-like morphology were synthesized by microwave heating the mixture of expanded graphite and silica. The worm-like SiC nanowires exhibit an excellent microwave absorption ability at a thin thickness. With the filling ratio of SiC nanowires increases in the matrix, the dielectric loss and microwave absorbing ability are significantly enhanced; meanwhile the number of absorption peaks is gradually increased, and the absorption peaks also move toward a thinner thickness. When the nanowires filling ratio was 40?wt%, the minimum reflection loss reached down to ?35.2?dB and the effective absorption (RL?<??10?dB) bandwidth was 1.8?GHz?at a thickness of 1.3?mm. The possible growth mechanism of the worm-like SiC nanowires is that the intermediate reaction gas phases, SiO and CO, were confined in the relatively independent tiny pores of expanded graphite. This resulting in an excessive local gas phase pressure, which causes the nanowire growth direction changes randomly. 相似文献
84.
通过问卷调查的方法,围绕冰雪运动头盔品牌、性能、价格、附加功能等因素在采购及使用中的重要程度,对具有较丰富冰雪运动经验的受访者进行了调查研究.研究过程收到有效调研结果104份,受访者广泛的来自不同性别、年龄段,参加过一定级别的专业冰雪运动竞赛.调研结果显示:当前冰雪运动头盔市场主要被欧美国家品牌占领;安全性、舒适性及美观是开发冰雪运动头盔最需考虑的因素;兼容搜救、运动拍摄、实时对讲等提升安全性及娱乐性的功能,向智能化发展是冰雪运动头盔的发展趋势. 相似文献
85.
基于高等教育人口比、世界价值观调查数据库(WVS)中省级大众价值观数据,研究社会资本对固定资产投资的影响.通过实证分析表明,高等教育人口占比地区财政支出和尊重科学与权威的大众价值观念对地区固定资产投资有着显著的影响,而性别发展观念、长期与短期导向、个人理性生活等价值观维度因素对固定资产投资影响显著性较低. 相似文献
86.
结合全球倡导的营养导向型农业和功能性食品的内容,首次提出“功能性小麦品种”的概念,将其定义为“含有对人体健康有益的活性成分,可调节人体有益代谢,能给人体健康带来某种益处或满足特定人群的特殊需求,同时可以作为日常食物的口感正常、无毒副作用的小麦品种类型”;结合疫情警示和我国进入后工业时代后,人们需求必将由“吃得饱”、“吃得好”向“吃得健康”转变,因而提出继高产品种、优质品种之后培育“功能性小麦品种”的育种目标。根据多年关于小麦淀粉、蛋白、酯类和其他成分的功能研究结果,介绍新育成的“麦黄酮”、“高色素”、“高抗性淀粉”、“富锌”、“低醇溶蛋白”和“低植酸”等功能性小麦新品种(系)的营养特性和农艺产量状况;根据“健康中国2030”规划等国家战略,进行“功能性品种培育是解决我国功能性食品‘卡脖子’的关键基础,一种功能性品种可以形成一类功能性食品,多种功能性品种可以形成我国功能性面制品产业,推动我国整个食品工业的发展”的前景展望;根据功能性品种及其食品的稳定性和可靠性是产品和市场的“生命线”,从对消费者负责的高度,提出关于“功能性农作物品种审定导向和组建功能性成分检测机构;编制有关功能性品种和食品的国家或行业标准,设立功能性食品和功能性农作物品种的商业标志,保证我国功能性农作物品种及其食品健康发展”等方面的具体建议。 相似文献
87.
Juan Zhao Jian Zhang Guang Yang Chuanjun Wang Xu Zheng Xiaoxu Tang 《Chemistry and Technology of Fuels and Oils》2021,57(5):847-853
Chemistry and Technology of Fuels and Oils - In this paper, the authors have developed a new device and method for measuring the efficiency of spontaneous imbibition and displacement in a low... 相似文献
88.
Jiadong Liu Di Yu Zhipeng Zheng Geng Huangfu Yiping Guo 《Ceramics International》2021,47(3):3573-3579
Constructing hybrid nanogenerators (NGs) based on triboelectric effect and piezoelectric effect can combine the merits of the individual type of NG thus have drawn great attention in flexible wearable electronics. Herein, we prepared flexible BiFeO3 (BFO) film in a simple and cost-effective way, which was used to fabricate a wearable hybrid piezoelectric-triboelectric nanogenerator (H–P/TENG) with silk fiber. By optimizing the experimental conditions, the highest open-circuit voltage of 110 V and short-circuit current density of 3.67 μA/cm2 were achieved under 1 Hz contact-separation movement. The device also showed the best output power density of 151.42 μW/cm2 with load resistance of 250 MΩ. Stimulating by moving body, the fabricated H–P/TENG successively realized the harvest and conversion of mechanical energy into electric energy, demonstrating great potential to monitor posture and establish a self-powered system. Moreover, the proposed H–P/TENG exhibited great stable output after 1800 contact-separation cycles, indicating the outstanding structure stability and fatigue resistance. This work will provide not only a facile and viable way to realize the application of ferroelectric materials in H–P/TENG but also new opportunities for developing monitor posture and self-powered systems. 相似文献
89.
Jiongfang Lan Lin Zheng Zhiqiang An Deshan Hou Dongpeng Sun Jiliang Zhu 《应用聚合物科学杂志》2021,138(35):50896
A flexible self-powered piezoelectric nanogenerator (FSPN) of high power density was constructed using a poly (vinylidene fluoride) (PVDF) polymer matrix based on solution crystallization. Since the solubility parameter of the N-methylpyrrolidone (NMP) was closed to that of the PVDF, the FSPNs fabricated by PVDF and NMP showed a high concentrations of β-phase and a high power density of 6.6 W/m3 together with excellent mechanical properties and transparent. In addition, the FSPN retained its excellent performance even after 2000 cycles of cantilever vibration, which hold a great potential for harvesting mechanical energy for self-powered systems and provide a simpler solution for energy collection and utilization in our actual lives. 相似文献
90.
Chengkai Li Zheyi Zhang Haifei Zhan Zhuoqun Zheng Jingshuai Bai Yuantong Gu 《大分子材料与工程》2021,306(10):2100292
Low-dimensional carbon nanostructures are ideal nanofillers to reinforce the mechanical performance of polymer nanocomposites due to their excellent mechanical properties. Through molecular dynamics simulations, the mechanical performance of poly(vinyl alchohol) (PVA) nanocomposites reinforced with a single-layer diamond – diamane is investigated. It is found the PVA/diamane exhibits similar interfacial strengths and pull-out characteristics with the PVA/bilayer-graphene counterpart. Specifically, when the nanofiller is fully embedded in the nanocomposite, it is unable to deform simultaneously with the PVA matrix due to the weak interfacial load transfer efficiency, thus the enhancement effect is not significant. In comparison, diamane can effectively promote the tensile properties of the nanocomposite when it has a laminated structure as it deforms simultaneously with the matrix. With this configuration, the interlayer sp3 bonds endows diamane with a much higher resistance under compression and shear tests, thus the nanocomposite can reach very high compressive and shear stress. Overall, enhancement on the mechanical interlocking at the interface as triggered by surface functionalization is only effective for the fully embedded nanofiller. This work provides a fundamental understanding of the mechanical properties of PVA nanocomposites reinforced by diamane, which can shed lights on the design and preparation of next generation high-performance nanocomposites. 相似文献