VACUUM ›› 2019, Vol. 56 ›› Issue (6): 54-59.doi: 10.13385/j.cnki.vacuum.2019.06.10
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LIU Zhao, XING Hong-shuo, SU Jia-hao, ZHANG Jun-shen, LIANG Shuai, XIE Yuan-hua, HAN Jin
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[1] Daytona Elevator. Home elevators - residential elevators[EB/OL]. http://www.daytonaelevator.com. [2] W. C. Kilpatrick,JC. Pneumatic elevator: USA, 3318418[P]. 1966.02.03. [3] Carlos A.Sors. Pneumatic elevator by depressure: USA, 5583326[P]. 1995.04.03. [4] Pneumatic Vacuum Elevators.Air-driven home elevators[EB/OL]. https://www.vacuumelevators.com. [5] Vacuum Elevator Australia Pty Ltd. The new revolution in residential elevators[EB/OL]. http://www.veaustralia.com.au. [6] Vacuum Elevators NZ Ltd. Vacuum elevators[EB/OL]. http://vacuumelevators.co.nz. [7] Vision Elevators. Pneumatic elevators[EB/OL]. http://www.glass-elevators.com. [8] 中国电梯. 美国开发真空电梯[J]. 中国电梯, 2005, 16(16): 6. [9] 电梯工业. 迷你真空电梯美国靓丽上市[J]. 电梯工业, 2005, 6(2): 49. [10] GFC崇友实业. 真空气动梭[EB/OL]. http://nuva.gfc.com.cn. [11] 苏州天梭电梯有限公司. 气动电梯的驱动装置及其驱动方法: 中国, 201410088090.4[P]. 2014.03.12. [12] 昆山通祐电梯有限公司. 一种多层真空气动电梯: 中国, 201410692632.9[P]. 2014.11.25. [13] 昆山通祐电梯有限公司. 一种新型气动电梯装置: 中国, 201410837084.4[P]. 2014.12.30. [14] 昆山通祐电梯有限公司. 一种气动电梯: 中国, 201510197697.0[P]. 2015.04.24. [15] 苏州天梭电梯有限公司. 电梯轿厢锁止机构及使用其的电梯: 中国, 201410130706.X[P]. 2014.04.02. [16] 昆山通祐电梯有限公司. 气动电梯的平层机构和气动电梯: 中国, 201420760659.2[P]. 2014.12.04. [17] 苏州天梭电梯有限公司. 气动电梯及气动电梯安全钳的钳制方法: 中国, 201410309861.8[P]. 2014.07.02. [18] 昆山通祐电梯有限公司. 气动电梯控制系统及控制方法: 中国, 201510197860.3[P]. 2015.04.24. |
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