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221.
文章在论述安全钳装置原理的基础上,探讨安全钳的检验检测重点,并就安全钳常见故障问题进行了分析,提出解决措施,最后结合实例,具体分析某电梯安全钳误动作故障及解决办法. 相似文献
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Kaneko H Dridi S Tarallo V Gelfand BD Fowler BJ Cho WG Kleinman ME Ponicsan SL Hauswirth WW Chiodo VA Karikó K Yoo JW Lee DK Hadziahmetovic M Song Y Misra S Chaudhuri G Buaas FW Braun RE Hinton DR Zhang Q Grossniklaus HE Provis JM Madigan MC Milam AH Justice NL Albuquerque RJ Blandford AD Bogdanovich S Hirano Y Witta J Fuchs E Littman DR Ambati BK Rudin CM Chong MM Provost P Kugel JF Goodrich JA Dunaief JL Baffi JZ Ambati J 《Nature》2011,471(7338):325-330
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Jones JT Hasell T Wu X Bacsa J Jelfs KE Schmidtmann M Chong SY Adams DJ Trewin A Schiffman F Cora F Slater B Steiner A Day GM Cooper AI 《Nature》2011,474(7351):367-371
Nanoporous molecular frameworks are important in applications such as separation, storage and catalysis. Empirical rules exist for their assembly but it is still challenging to place and segregate functionality in three-dimensional porous solids in a predictable way. Indeed, recent studies of mixed crystalline frameworks suggest a preference for the statistical distribution of functionalities throughout the pores rather than, for example, the functional group localization found in the reactive sites of enzymes. This is a potential limitation for 'one-pot' chemical syntheses of porous frameworks from simple starting materials. An alternative strategy is to prepare porous solids from synthetically preorganized molecular pores. In principle, functional organic pore modules could be covalently prefabricated and then assembled to produce materials with specific properties. However, this vision of mix-and-match assembly is far from being realized, not least because of the challenge in reliably predicting three-dimensional structures for molecular crystals, which lack the strong directional bonding found in networks. Here we show that highly porous crystalline solids can be produced by mixing different organic cage modules that self-assemble by means of chiral recognition. The structures of the resulting materials can be predicted computationally, allowing in silico materials design strategies. The constituent pore modules are synthesized in high yields on gram scales in a one-step reaction. Assembly of the porous co-crystals is as simple as combining the modules in solution and removing the solvent. In some cases, the chiral recognition between modules can be exploited to produce porous organic nanoparticles. We show that the method is valid for four different cage modules and can in principle be generalized in a computationally predictable manner based on a lock-and-key assembly between modules. 相似文献
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Programming the magnitude and persistence of antibody responses with innate immunity 总被引:1,自引:0,他引:1
Kasturi SP Skountzou I Albrecht RA Koutsonanos D Hua T Nakaya HI Ravindran R Stewart S Alam M Kwissa M Villinger F Murthy N Steel J Jacob J Hogan RJ García-Sastre A Compans R Pulendran B 《Nature》2011,470(7335):543-547
Many successful vaccines induce persistent antibody responses that can last a lifetime. The mechanisms by which they do so remain unclear, but emerging evidence indicates that they activate dendritic cells via Toll-like receptors (TLRs). For example, the yellow fever vaccine YF-17D, one of the most successful empiric vaccines ever developed, activates dendritic cells via multiple TLRs to stimulate proinflammatory cytokines. Triggering specific combinations of TLRs in dendritic cells can induce synergistic production of cytokines, which results in enhanced T-cell responses, but its impact on antibody responses remain unknown. Learning the critical parameters of innate immunity that program such antibody responses remains a major challenge in vaccinology. Here we demonstrate that immunization of mice with synthetic nanoparticles containing antigens plus ligands that signal through TLR4 and TLR7 induces synergistic increases in antigen-specific, neutralizing antibodies compared to immunization with nanoparticles containing antigens plus a single TLR ligand. Consistent with this there was enhanced persistence of germinal centres and of plasma-cell responses, which persisted in the lymph nodes for >1.5 years. Surprisingly, there was no enhancement of the early short-lived plasma-cell response relative to that observed with single TLR ligands. Molecular profiling of activated B cells, isolated 7 days after immunization, indicated that there was early programming towards B-cell memory. Antibody responses were dependent on direct triggering of both TLRs on B cells and dendritic cells, as well as on T-cell help. Immunization protected completely against lethal avian and swine influenza virus strains in mice, and induced robust immunity against pandemic H1N1 influenza in rhesus macaques. 相似文献
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针对常规PDP显示中的低灰度级轮廓问题,提出了一种新的PDP低灰度级图像增强算法.该算法根据PDP线性离散化的显示特点利用图像的表现率动态选择多种子场的编码,减少了图像伽马变化过程中灰度级的细节损失.针对PDP实际输出亮度相对于输入灰度级有反转的现象进行了理论分析和算法处理,消除了低灰度图像灰阶反转的现象.利用误差扩散算法最大限度地重现了图像的细节.实际结果表明该算法能够减少低灰度级轮廓,其显示效果明显优于传统方案. 相似文献
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基于曲率的自适应曲面数控磨削 总被引:1,自引:0,他引:1
利用等包络迹高度控制砂轮行走路径,实现了曲面的自适应数控成型磨削,以提高曲面的磨削效率.首先,根据曲面曲率建立自适应数控成型磨削的数控模式,然后,在比较等间距行走的数控磨削方式的基础上分析曲面曲率不同的成型磨削特征,最后,进行数控成型磨削试验和检测加工曲面的成形误差,验证该自适应数控成型磨削方法的有效性.分析结果表明,利用移动磨削点的包络成型磨削可以减小砂轮磨损对加工精度的影响.此外,等包络迹高度行走的数控磨削可以根据曲面曲率调节行走路经的间距,实现自适应磨削加工,提高曲面的加工效率,而且在加工曲率较大且提高加工精度时可以较大幅度地减少砂轮行走步数.试验结果表明,当等包络迹高度小至1μm时可以形成光顺的加工曲面,在100mm×40mm范围内形状误差PV值可以达到0.285mm. 相似文献