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新型聚氨酯固—固相变储能材料的组成与热性能的关系 被引量:3
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作者 粟劲苍 刘朋生 《中国塑料》 CAS CSCD 北大核心 2006年第2期21-24,共4页
利用差示扫描量热仪、傅里叶红外光谱仪、广角X射线衍射仪研究了一种新型的以聚乙二醇为软段的聚氨酯相变储能材料。结果表明,当软段含量低于90%(质量分数,下同)时,即使温度高于聚乙二醇的熔点,此类材料仍不会熔化成液体,而表现出一种... 利用差示扫描量热仪、傅里叶红外光谱仪、广角X射线衍射仪研究了一种新型的以聚乙二醇为软段的聚氨酯相变储能材料。结果表明,当软段含量低于90%(质量分数,下同)时,即使温度高于聚乙二醇的熔点,此类材料仍不会熔化成液体,而表现出一种固-固相变行为。该聚氨酯储能材料相变焓较大,相变温度适中,且随着软段含量的减少,材料相变焓和相变温度呈递减趋势。其相变过程实质是聚氨酯软段聚乙二醇由结晶固态转变为无定形固态的过程。 展开更多
关键词 聚乙二醇 相变行为 聚氨酯 储能材料 热性能 组成
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低油价的分析和对策 被引量:7
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作者 张抗 张立勤 《中外能源》 CAS 2020年第5期1-11,共11页
2020年初油价迅猛下跌,对石油行业和世界经济产生了巨大的影响。这次低油价是在前期相对低价背景上的油价"低谷",石油工业上下游同时出现了危机。原油供大于需的走势日趋明显和新冠疫情大爆发为其形成的首要因素,全球经济低... 2020年初油价迅猛下跌,对石油行业和世界经济产生了巨大的影响。这次低油价是在前期相对低价背景上的油价"低谷",石油工业上下游同时出现了危机。原油供大于需的走势日趋明显和新冠疫情大爆发为其形成的首要因素,全球经济低迷使其雪上加霜,世界政治形势的动乱增加了油气发展的不确定性。多种因素的叠加将会使近期油价在"低谷"中徘徊。能源构成的变化、石油生产的发展进入平台区并即将达到峰值,使未来中长期油价可能在中等偏低的水平上波动。这次油价"低谷"将对石油工业上游,特别是上游油服业产生重大冲击,对世界石油格局产生巨大影响。对于石油进口依存度已超过70%的中国,低油价对国民经济的发展有有利的一面,但产生的负面影响也值得关注。这要求我们导入石油发展战略的新方向:一方面继续坚持把降本增效作为企业发展永恒的主题,努力增储上产;另一方面把油气工业汇入国家能源转型的大计中,保障国家能源供应安全。 展开更多
关键词 低油价 供大于需 新冠疫情 能源构成变化 油服业 石油发展战略
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High density polyethylene (HDPE)--Graphite composite manufactured by extrusion:A novel way to fabricate phase change materials for thermal energy storage 被引量:1
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作者 A.Sciacovelli M.E.Navarro +5 位作者 Yi Jin Geng Qiao Lifang Zheng Guanghui Leng Li Wang Yulong Ding 《Particuology》 SCIE EI CAS CSCD 2018年第5期131-140,共10页
Thermal energy storage (TES)has the potential to facilitate the deployment of renewable energy through addressing the demand-supply mismatch,ultimately leading to the decarbonisation of heat supply. Among the TES tech... Thermal energy storage (TES)has the potential to facilitate the deployment of renewable energy through addressing the demand-supply mismatch,ultimately leading to the decarbonisation of heat supply. Among the TES technologies,latent heat based TES with composite phase change materials (PCMs)has shown great potential,which has attracted significant attention in recent years.However,large scale and reliable manufacturing methods for composite PCMs are still largely lacking.Here,we present a study aimed to develop,for the first time,an extrusion process capable of fabricating high density polyethylene based graphite PCM composites at a high throughput and with enhanced thermal properties.The PCM composites were fabricated under different extrusion process parameters and characterized for their thermo-physical properties by multiple techniques including differential scanning calorimetry,thermal gravitational analyzer,and Fourier transform infrared spectroscopy.The results show that the extrusion process has the potential to fabricate PCM composite bars in a continuous fashion with a manufacturing throughput higher than traditional method;the fabricated PCM composites show enhanced properties (e.g.up to +70% increase in thermal diffusivity);and there is a clear link between extrusion process parameters and PCMs properties.Microstructural analyses show a more homogeneous structure with a lower extrusion speed;whereas a high extrusion speed gives a more microscopically heterogeneous structure with visible graphite agglomerates distributed relatively homogeneous macroscopically;and a higher graphite content gives a larger agglomerate size.The results of this work suggest that the elucidation of composition-process-property relationships is crucial:for a given formulation (composition), only through fine tuning of high throughput manufacturing process can make it possible to achieve the desired performance of the PCM composites. 展开更多
关键词 COMPOSITE phase change materials Thermal energy storage Continuous manufacture composition-process-structure-property RELATIONSHIPS
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