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TC2钛合金换热管与管板焊接工艺研究 被引量:2
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作者 惠媛媛 《焊管》 2011年第9期41-43,共3页
阐述了某耐腐蚀换热器用TC2钛合金换热管与管板的焊接结构及该产品对焊接质量的技术要求,分析了TC2钛合金的可焊性及可能出现的焊接缺陷,提出了防止钛合金焊接缺陷产生的途径和预防措施,对钛合金焊前准备、清理要求、焊接过程等各阶段... 阐述了某耐腐蚀换热器用TC2钛合金换热管与管板的焊接结构及该产品对焊接质量的技术要求,分析了TC2钛合金的可焊性及可能出现的焊接缺陷,提出了防止钛合金焊接缺陷产生的途径和预防措施,对钛合金焊前准备、清理要求、焊接过程等各阶段进行了质量控制,并制定了相应的焊接工艺参数,对焊后结果进行检验。试验和生产结果表明,所采用的技术途径和预防措施完全适合于TC2钛合金换热管和管板焊接的批量生产,已经投入某生产厂家进行应用。 展开更多
关键词 TC2 换热管 管板 焊接工艺
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EnOcean技术的研究现状及展望 被引量:1
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作者 崔凯 宋文飞 +3 位作者 陈蔚 文明艳 曾湘湘 张俊 《数字技术与应用》 2019年第3期40-42,共3页
EnOcean技术是一种新型无线通信技术,具有能量采集、超低功耗模块组与高质量通信的优点。本文主要阐述了EnOcean技术的系统原理和发展历史,并介绍了EnOcean技术的通信原理与主要特点,最后分析了EnOcean技术的未来发展趋势。
关键词 EnOcean技术 无线通信 能量采集 低功耗
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气压渗流铸造泡沫铝的试验研究
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作者 徐远跃 邱克强 《热加工工艺》 CSCD 北大核心 1992年第2期3-6,共4页
采用自制的气压渗流铸造试验装置和正交试验方法,探索了粒子层的预热温度,铝液的浇注温度、充型压力、充压保持时间以及粒子粒度等工艺因素对铝液渗透深度与铸件有效高度的影响,并对试验装置结构上的有关问题进行了分析讨论,为泡沫铝的... 采用自制的气压渗流铸造试验装置和正交试验方法,探索了粒子层的预热温度,铝液的浇注温度、充型压力、充压保持时间以及粒子粒度等工艺因素对铝液渗透深度与铸件有效高度的影响,并对试验装置结构上的有关问题进行了分析讨论,为泡沫铝的渗流铸造提供参考。 展开更多
关键词 泡沫铝 气压渗流铸造
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Preparation of nitrogen-doped graphene by high-gravity technology and its application in oxygen reduction 被引量:2
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作者 Jie Tian Fei Gao +2 位作者 Xiangqian Yu Wei Wu Hong Meng 《Particuology》 SCIE EI CAS CSCD 2017年第5期110-117,共8页
Electrochemical oxygen reduction is key to many clean and sustainable energy technologies, including proton exchange membrane fuel cells and metal-air batteries. However, the high activation barriers in the oxygen red... Electrochemical oxygen reduction is key to many clean and sustainable energy technologies, including proton exchange membrane fuel cells and metal-air batteries. However, the high activation barriers in the oxygen reduction reaction often make it the bottleneck of energy conversion processes; thus, high- performance oxygen reduction electrocatalysts are desired. At present, the best commercially available oxygen reduction catalyst is based on the precious metal Pt. However, it suffers from resource scarcity and unsatisfactory operational stability, hindering its widespread and large-scale application in clean and sustainable technologies. Nitrogen-doped graphene has excellent electrocatalytic properties for oxygen reduction. In this paper, a scalable method to prepare nitrogen-doped graphene with high quality was introduced, in which the graphene oxide prepared by high-gravity technology and urea was reacted under hydrothermal conditions. Accompanying the hydrothermal reaction, graphene oxide reduction and nitrogen doping were accomplished at the same time. The effect of the content of nitrogen on the performance of nitrogen-doped graphene was investigated. When the mass ratio (graphene oxide]urea) was 1:400, the nitrogen-doped graphene had the best oxygen reduction performance, Compared with the undoped samples, the initial reduction voltage of the nitrogen-doped samples distinctly shifted 45 mV to the right. When the voltage was - 1,0 V, the electron transfer number was 4.1, indicating good oxygen reduction activity. The preparation method is feasible, simple, and can be easily scaled up. 展开更多
关键词 High-gravity technologyc rapheneNitrogen-doped grapheneOxygen reduction reaction
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