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| 1 | The automobile steel of the third generation in B-pillar reinforced panel显示文摘The fundamental research and industry trials of the third generation automobile steel QP980 were introduced in this paper,including chemical ingredient,mechanical properties,microstructure,forming limit and basic performance parameters.The application of QP steel of the B-pillar was researched,and the QP980,DP600 and hot forming steel were compared in the aspect of formability,safety and cost.The results showed that the QP980 replacing DP600 steel single piece can reduce the weight by 2.4 kg.The security and performance is basically the same as that of hot forming steel using 22MnB5,and the cost is reduced by 30%. | Du Huijun Li Shuli Yang Jie Yang Hongxin Bai Kebin | 2012 | Engineering Sciences2012,10,6: | 2 |
| 2 | Research progress of rare earth separation methods and technologies显示文摘Strategical elements,such as rare earth elements,play a crucial role in the industry,especially in producing high-tech materials.Major global industries have developed a strong dependence on rare earth materials.Every year,there are innovations in industries such as modern technology,green energy,or communications technology,which need more strategic metals to improve investment profitability.This article reviews advances in rare earth separation methods and techniques to guide and recommend the best extractants,depending on leaching conditions and the final target product.Each method for separating and extracting agents is individually revised in terms of the mechanism and interaction of providing rare earth elements.This paper also evaluates past and current trends of these methods and technical extractants and identifies their strengths and weaknesses. | Mory Traore Aijun Gong Yiwen Wang Lina Qiu Yuzhen Bai Weiyu Zhao Yang Liu Yi Chen Ying Liu Huilin Wu Shuli Li Yueyi You | 2023 | Journal of Rare Earths2023,41,2: | 2 |
| 3 | Effects of chemotherapy on bone metabolism in patients with breast cancer after operation 显示文摘 | Bai shuli Zuo shuyao Wang lin | 2010 | Xiandai zhongliu yixue2010,18,10: | 1 |
| 4 | SO2-promoted reduction of NO with NH3 over vanadium molec- ularly anchored on the surface of carbon nanotubes 显示文摘 | BAI Shuli ZHAO Jianghong WANG Li | 2010 | Catal Today2010,158,34: | 1 |
| 5 | The properties and mechanism of CuO modified carbon nanotube for NO, removal 显示文摘 | BAI Shuli LI Huanying WANG Li | 2014 | Catal Lett2014,144,2: | 1 |
| 6 | Increased temperature and precipitation interact to affect root production,mortality,and turnover in a temperate steppe:implications for ecosystem C cycling显示文摘 | Bai Wenming Wan Shiqiang Niu Shuli | 2010 | Global change biology2010,16,4: | 1 |
| 7 | Ag nanoparticle/polymer composite barcode nanorods显示文摘We demonstrate a facile method combining colloidal lithography, selective ion-exchange, and the in situ reduction of Ag ions (Ag+) for the fabrication of multi-segmented barcode nanorods. First, polymer multilayer films were prepared by spin-coating alternating thin films of polystyrene and polyacrylic acid (PAA), and then multi-segmented polymer nanorods were fabricated via reactive ion etching with colloidal masks. Second, Ag nanoparticles (Ag NPs) were incorporated into the PAA segments by an ion exchange and the in situ reduction of the Ag~. The selective incorporation of the Ag NPs permitted the modification of the specific bars of the nanorods. Lastly, the Ag NP/polymer composite nanorods were released from the substrate to form suspensions for further coding applications. By increasing the number of segments and changing the length of each segment in the nanorods, the coding capacity of nanorods was improved. More importantly, this method can easily realize the density tuning of Ag NPs in different segments of a single nanorod by varying the composition of the PAA segments. We believe that numerous other coded materials can also be obtained, which introduces new approaches for fabricating barcoded nanomaterials. | Hongxu Chen Tieqiang Wang Huaizhong Shen Wendong Liu Shuli Wang Kun Liu Junhu Zhang Bai Yang | 2015 | Nano Research2015,8,9: | 0 |