The assembled form of thick-wall glass fiber reinforced plastics (GFRP) tube and 0Cr18Ni9 austenitic stainless steel pipes was designed as the radius thermal-insulating and load-supporting structure in cryogenic vesse...The assembled form of thick-wall glass fiber reinforced plastics (GFRP) tube and 0Cr18Ni9 austenitic stainless steel pipes was designed as the radius thermal-insulating and load-supporting structure in cryogenic vessels. In order to study the thermal leakage and gap changes on the support structure, as well as radius temperature and stress distribution on GFRP tube, an experimental investigation has been taken. The results indicate that the support structure is proved to fit well as thermal-insulating and load-supporting part in cryo-genic vessels, furthermore has high security during cryogenic applications.展开更多
The mechanical behavior of concrete-filled glass fiber reinforced polymer(GFRP)-steel tube structures under combined seismic loading is investigated in this study. Four same-sized specimens with different GFRP layout ...The mechanical behavior of concrete-filled glass fiber reinforced polymer(GFRP)-steel tube structures under combined seismic loading is investigated in this study. Four same-sized specimens with different GFRP layout modes were tested by a quasi-static test system. Finite element analysis(FEA) was also undertaken and the results were presented. Results of the numerical simulation compared well with those from experimental tests. Parametric analysis was conducted by using the FE models to evaluate the effects of GFRP thickness, axial compression rate, and cross sectional steel ratio. The experimental and numerical results show that the technique of GFRP strengthening is effective in improving the seismic performance of traditional concrete-filled steel tubes, with variations related to different GFRP layout modes.展开更多
为解决锗(Ge)基硫系玻璃光纤损耗相对较高等问题,采用物理和化学除杂相结合的工艺,制备出了高纯Ge28Sb12Se60硫系玻璃,显著降低了红外波段C、H、O杂质吸收。应用真空高速旋转法,制备出了壁厚均匀、光学质量优异的Ge28Sb12Se58S2硫系玻...为解决锗(Ge)基硫系玻璃光纤损耗相对较高等问题,采用物理和化学除杂相结合的工艺,制备出了高纯Ge28Sb12Se60硫系玻璃,显著降低了红外波段C、H、O杂质吸收。应用真空高速旋转法,制备出了壁厚均匀、光学质量优异的Ge28Sb12Se58S2硫系玻璃皮管。采用棒管法拉制出外径50±1.5μm、具有芯包结构的Ge-Sb-Se硫系玻璃光纤,光纤弯曲半径为5 mm,红外波段吸收基线为2.2 d B/m(2.87μm和4.5μm处除外)。展开更多
文摘The assembled form of thick-wall glass fiber reinforced plastics (GFRP) tube and 0Cr18Ni9 austenitic stainless steel pipes was designed as the radius thermal-insulating and load-supporting structure in cryogenic vessels. In order to study the thermal leakage and gap changes on the support structure, as well as radius temperature and stress distribution on GFRP tube, an experimental investigation has been taken. The results indicate that the support structure is proved to fit well as thermal-insulating and load-supporting part in cryo-genic vessels, furthermore has high security during cryogenic applications.
基金Project supported by the National Natural Science Foundation of China(No.51178068)the Fundamental Research Funds for the Central Universities of China(No.3132013315)
文摘The mechanical behavior of concrete-filled glass fiber reinforced polymer(GFRP)-steel tube structures under combined seismic loading is investigated in this study. Four same-sized specimens with different GFRP layout modes were tested by a quasi-static test system. Finite element analysis(FEA) was also undertaken and the results were presented. Results of the numerical simulation compared well with those from experimental tests. Parametric analysis was conducted by using the FE models to evaluate the effects of GFRP thickness, axial compression rate, and cross sectional steel ratio. The experimental and numerical results show that the technique of GFRP strengthening is effective in improving the seismic performance of traditional concrete-filled steel tubes, with variations related to different GFRP layout modes.
文摘为解决锗(Ge)基硫系玻璃光纤损耗相对较高等问题,采用物理和化学除杂相结合的工艺,制备出了高纯Ge28Sb12Se60硫系玻璃,显著降低了红外波段C、H、O杂质吸收。应用真空高速旋转法,制备出了壁厚均匀、光学质量优异的Ge28Sb12Se58S2硫系玻璃皮管。采用棒管法拉制出外径50±1.5μm、具有芯包结构的Ge-Sb-Se硫系玻璃光纤,光纤弯曲半径为5 mm,红外波段吸收基线为2.2 d B/m(2.87μm和4.5μm处除外)。