A new apparatus was designed to measure the electromagnetic force and a computational study of the traveling magnetic field(TMF)and its application to the Ga-In-Sn melt(with low melting point),then the forces on Al,Mg...A new apparatus was designed to measure the electromagnetic force and a computational study of the traveling magnetic field(TMF)and its application to the Ga-In-Sn melt(with low melting point),then the forces on Al,Mg,and Li melt,were simulated. The result show that the electromagnetic force on the melt increases linearly with the increasing length of the melt in the TMF.The TMF-induced Lorentz force increases with increasing frequency,and then decreases.The maximum value is obtained when the current frequency is 160 Hz,over that frequency the force decreases rapidly.When the iron-core is activated,the force increases when the melt closes to the iron-core.The Lorentz forces have inversely-proportional relationships with the electrical resistivity,the dfx/dρdecreases and the dfy/dρincreases with the increasing electrical resistivity(df/dρis the slope of the Lorentz force profile).展开更多
The design, fabrication, and testing of soft sensors that measure elastomer curvature and mechanical finger bending are described in this study. The base of the soft sensors is polydimethylsiloxane (PDMS), which is a ...The design, fabrication, and testing of soft sensors that measure elastomer curvature and mechanical finger bending are described in this study. The base of the soft sensors is polydimethylsiloxane (PDMS), which is a translucent elastomer. The main body of the soft sensors consists of three layers of silicone rubber plate, and the sensing element is a microchannel filled with gallium-indium-tin (Ga-In-Sn) alloy, which is embedded in the elastomer. First, the working principle of soft sensors is investigated, and their structure is designed. Second, the relationship between curvature and resistance is determined. Third, several sensors with different specifications are built in accordance with the structural design. Experiments show that the sensors exhibit high accuracy when the curvature changes within a certain range. Lastly, the soft sensors are applied to the measurement of mechanical finger bending. Experiments show that soft curvature sensors can effectively reflect mechanical finger bending and can be used to measure the bending of mechanical fingers with high sensitivity within a certain working range.展开更多
以Ga-In-Sn三元合金为研究对象,研制了可用于现场及在线标定的微型Ga-In-Sn共晶点容器,开展了3种不同配比对相变温度和温坪复现影响的研究。结果表明:3种配比的共晶点温坪可持续1. 2~2 h,实验的复现性优于4. 5 m K,合成扩展不确定度为9...以Ga-In-Sn三元合金为研究对象,研制了可用于现场及在线标定的微型Ga-In-Sn共晶点容器,开展了3种不同配比对相变温度和温坪复现影响的研究。结果表明:3种配比的共晶点温坪可持续1. 2~2 h,实验的复现性优于4. 5 m K,合成扩展不确定度为9. 3 m K(k=2),3种配比的共晶点相变温度平均值为10. 748℃;在相同热工况下Ga-In-Sn合金发生共晶反应的相变温度不受配比的影响;改变合金熔体的降温速率可改变微型共晶点过冷度。展开更多
研究使用一种含有金属相变材料(Phase Change material,PCM)的温控组件(Thermal Control Component,TCC)对航天器上的有效载荷进行温度控制。通过对载荷的温控需求分析,设计并制备了以Ga-Sn合金为PCM的TCC,并通过地面模拟实验对TCC的温...研究使用一种含有金属相变材料(Phase Change material,PCM)的温控组件(Thermal Control Component,TCC)对航天器上的有效载荷进行温度控制。通过对载荷的温控需求分析,设计并制备了以Ga-Sn合金为PCM的TCC,并通过地面模拟实验对TCC的温控性能进行测试。实验结果表明这种含有Ga-Sn合金的TCC满足载荷的温控需求。最后在仿真软件中建立了TCC的相变传热仿真模型用于预测TCC的温控性能。结果表明:仿真模型计算所得结果与实验结果基本一致,可用于预测TCC的温控性能。展开更多
基金Project supported by the Program of Excellent Team in Harbin Institute of Technology,China
文摘A new apparatus was designed to measure the electromagnetic force and a computational study of the traveling magnetic field(TMF)and its application to the Ga-In-Sn melt(with low melting point),then the forces on Al,Mg,and Li melt,were simulated. The result show that the electromagnetic force on the melt increases linearly with the increasing length of the melt in the TMF.The TMF-induced Lorentz force increases with increasing frequency,and then decreases.The maximum value is obtained when the current frequency is 160 Hz,over that frequency the force decreases rapidly.When the iron-core is activated,the force increases when the melt closes to the iron-core.The Lorentz forces have inversely-proportional relationships with the electrical resistivity,the dfx/dρdecreases and the dfy/dρincreases with the increasing electrical resistivity(df/dρis the slope of the Lorentz force profile).
基金This work was supported by the National Natural Science Foundation of China (Grant No. 51405280).
文摘The design, fabrication, and testing of soft sensors that measure elastomer curvature and mechanical finger bending are described in this study. The base of the soft sensors is polydimethylsiloxane (PDMS), which is a translucent elastomer. The main body of the soft sensors consists of three layers of silicone rubber plate, and the sensing element is a microchannel filled with gallium-indium-tin (Ga-In-Sn) alloy, which is embedded in the elastomer. First, the working principle of soft sensors is investigated, and their structure is designed. Second, the relationship between curvature and resistance is determined. Third, several sensors with different specifications are built in accordance with the structural design. Experiments show that the sensors exhibit high accuracy when the curvature changes within a certain range. Lastly, the soft sensors are applied to the measurement of mechanical finger bending. Experiments show that soft curvature sensors can effectively reflect mechanical finger bending and can be used to measure the bending of mechanical fingers with high sensitivity within a certain working range.
文摘以Ga-In-Sn三元合金为研究对象,研制了可用于现场及在线标定的微型Ga-In-Sn共晶点容器,开展了3种不同配比对相变温度和温坪复现影响的研究。结果表明:3种配比的共晶点温坪可持续1. 2~2 h,实验的复现性优于4. 5 m K,合成扩展不确定度为9. 3 m K(k=2),3种配比的共晶点相变温度平均值为10. 748℃;在相同热工况下Ga-In-Sn合金发生共晶反应的相变温度不受配比的影响;改变合金熔体的降温速率可改变微型共晶点过冷度。
文摘研究使用一种含有金属相变材料(Phase Change material,PCM)的温控组件(Thermal Control Component,TCC)对航天器上的有效载荷进行温度控制。通过对载荷的温控需求分析,设计并制备了以Ga-Sn合金为PCM的TCC,并通过地面模拟实验对TCC的温控性能进行测试。实验结果表明这种含有Ga-Sn合金的TCC满足载荷的温控需求。最后在仿真软件中建立了TCC的相变传热仿真模型用于预测TCC的温控性能。结果表明:仿真模型计算所得结果与实验结果基本一致,可用于预测TCC的温控性能。