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废弃玻璃钢粉改性沥青材料制备与性能研究 被引量:3
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作者 胡晨光 苏航 +3 位作者 封孝信 丁锋 李恩硕 付佳伟 《中国塑料》 CAS CSCD 北大核心 2022年第8期119-126,共8页
为提高玻璃钢(GFRP)管道废弃物的利用率,研究了废弃GFRP粉粒径、掺量及剪切制度(温度、时间、速率)对改性沥青延度、针入度及软化点的影响规律,利用偏光显微镜(PLM)、红外光谱仪(FTIR)分析了其微观结构。结果表明,废弃GFRP中热固性树脂... 为提高玻璃钢(GFRP)管道废弃物的利用率,研究了废弃GFRP粉粒径、掺量及剪切制度(温度、时间、速率)对改性沥青延度、针入度及软化点的影响规律,利用偏光显微镜(PLM)、红外光谱仪(FTIR)分析了其微观结构。结果表明,废弃GFRP中热固性树脂可与沥青反应生成环烷烃和脂肪烃,其中脂肪烃含量增加将提高沥青延度,废弃GFRP掺量过高则环烷烃含量增加,不利于沥青延度提升;玻璃纤维可降低沥青针入度和提高其高温稳定性,掺量过高却会形成更多缺陷致使延度下降,但有利于沥青硬度提高;剪切温度过低或过高时,改性沥青中形成的环烷烃含量均升高,不利于沥青延度提升,但剪切温度对改性沥青高温稳定性影响不显著;当剪切机转速达到一定值时,增加剪切机转速对改性沥青性能影响较小,而延长剪切时间却有利于其性能提高;最佳改性制度为粒径<0.3 mm、掺量4%、改性温度150℃、剪切时间4 h、剪切机转速8000 r/min。 展开更多
关键词 废弃玻璃钢 基质沥青 剪切制度 微结构 性能
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Phase field lattice Boltzmann model for non-dendritic structure formation in aluminum alloy from LSPSF machine 被引量:6
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作者 An-shan YU Xiang-jie YANG Hong-min GUO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第3期559-570,共12页
The formation of non-dendritic structures in the primary phase of an aluminum alloy solidified using low superheat pouring with a shearing field(LSPSF) machine was investigated by numerical simulation.The growth and m... The formation of non-dendritic structures in the primary phase of an aluminum alloy solidified using low superheat pouring with a shearing field(LSPSF) machine was investigated by numerical simulation.The growth and motion of a dendrite during solidification was simulated by a combination of the lattice Boltzmann method and the phase field method.The simulation results indicated that enough shear flow helped homogenize the concentration fields,rotate crystals and altere microstructures from dendritic to non-dendritic.The interaction of grains was also discussed.A fragmentation criterion was established based on partial remelting of dendrite arms;fragmentation was enhanced by a strong shear flow and larger inclined angles.The simulation results were verified experimentally. 展开更多
关键词 numerical simulation non-dendritic structure low superheat pouring with shearing field(LSPSF) aluminum alloy phase field method lattice Boltzmann method
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Study on Low-Temperature Traction Behavior of a Space Lubricating Oil No.4116
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作者 Wang Yanshuang Cheng Junwei Cai Yujun 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2015年第3期111-116,共6页
The traction behavior of space lubricating oil No. 4116 was measured and analyzed at various oil inlet temperatures below 0 ℃ and various rolling speeds under normal loads by a test rig simulating the operating condi... The traction behavior of space lubricating oil No. 4116 was measured and analyzed at various oil inlet temperatures below 0 ℃ and various rolling speeds under normal loads by a test rig simulating the operating conditions of space bearings. A traction coefficient calculation model was presented. The rheological property and rheological parameters of the lubricant at a low oil inlet temperature were analyzed based on the Tevaarwerk-Johnson model. The results showed that the lubricating oil No. 4116 was sensitive to the rolling speed and had lower sensitivity to the normal load. This lubricating oil is more suitable for applications under high speed when it is used below 0 ℃. It behaves as an elastic-plastic fluid operating below 0 ℃. Both the average limiting shear stress and the average elastic shear modulus have a negative correlation with the rolling speed and oil inlet temperature and have a positive correlation with the normal load. 展开更多
关键词 space bearing space lubricating oil traction behavior low temperature rheological property
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