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VACUUM ›› 2022, Vol. 59 ›› Issue (3): 1-6.doi: 10.13385/j.cnki.vacuum.2022.03.01

• Vacuum Acquisition System •     Next Articles

Design and Analysis of New Sinusoidal Helical Screw Rotor for Twin-Screw Vacuum Pump

ZHAO Xi-hao1, ZHAO Li-zhuang1, WANG Jun1, LI Xue-qin1, CUI Feng1, WANG Zeng-li1, GENG Mao-fei2   

  1. 1. China University of Petroleum(East China),Qingdao 266580,China;
    2. State Key Laboratory of Compressor Technology,Hefei General Machinery Research Institute Co.,Ltd.,Hefei 230031,China
  • Received:2021-08-19 Online:2022-05-25 Published:2022-06-01

Abstract: The cross-sectional profile of the existing screw rotor has sharp points and the contact line is discontinuous. To solve this problem and simplify the composition of the section profile, this paper uses a sinusoidal helix to smoothly connect the tooth tip arc and the tooth root arc, and then proposes a new type of fully meshed sinusoidal helical screw rotor. The meshing model of the sinusoidal helix and its conjugate curve are proposed, and the equation of the section profile is deduced. The influence of the radius ratios and helical central angle of the new section profile on the performance of the twin-screw vacuum pump is analyzed, and their reasonable value range is given. The results show that the section profile of the as-proposed new full meshing screw rotor is completely smooth, and the spatial contact line is continuous, which is beneficial to improve the performance of the twin-screw vacuum pump.

Key words: twin-screw vacuum pump, new-type screw rotor, sinusoidal helix, work performance

CLC Number: 

  • TH36
[1] 郭蓓, 薛建国, 牛瑞, 等. 干式螺杆真空泵研究现状与展望[J]. 真空, 2009, 46(5): 37-40.
[2] 黄强. 干式真空泵的应用和发展[A]. 广东省真空学会. 2013年广东省真空学会学术年会论文集[C]. 广东省真空学会: 广东省科学技术协会科技交流部, 2013: 90-93.
[3] 姜燮昌. 干式螺杆真空泵的结构、性能与应用[J]. 真空, 2018, 55(4): 6-12.
[4] 孙瑾亭. 变螺距螺杆真空泵结构设计及优化[D]. 合肥: 合肥工业大学, 2018.
[5] 陈宗武, 张东庆, 郭金光, 等. 螺杆真空泵转子热形变分析及转子优化[J]. 真空, 2016, 53(3): 48-51.
[6] MISGANAW A.双螺杆泵流场数值模拟[D]. 重庆: 重庆大学, 2011.
[7] SPILLE-KOHOFF A, HESSE J, ANDRES R, et al.CFD simulation of a dry scroll vacuum pump with clearances,solid heating and thermal deformation[C]//IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2017, 232(1): 012052.
[8] SPILLE-KOHOFF A, HESSE J.CFD simulation of a screw compressor including leakage flows and rotor heating[C]//IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2015, 90(1): 012009.
[9] 潘成程, 徐飞, 谭昱全, 等. 双螺杆真空泵封闭容积间压力和泄漏特性研究[J]. 真空, 2015(3): 21-25.
[10] ZHANG Z X, FONG Z H.A novel tilt form grinding method for the rotor of dry vacuum pump[J]. Mechanism and Machine Theory, 2015, 90: 47-58.
[11] 王琼娥. 双螺杆真空泵转子型线设计与仿真研究[D]. 杭州: 浙江大学, 2005.
[12] 陈长琦, 贾寅, 郑定宝, 等. 螺杆真空泵单头等螺距内凹转子型线研究[J]. 真空, 2011, 48(3): 8-11.
[13] 巫修海, 张宝夫, 陈文华. 严格密封型螺杆真空泵转子型线研究[J]. 真空科学与技术学报, 2015, 35(8): 947-954.
[14] 王君, 刘宏杰, 崔峰, 等. 一种双螺杆真空泵的全光滑的螺杆转子: CN105240277A[P].2016-01-13.
[15] LU Y, GUO B, GENG M F.Study on design of rotor profile for the twin screw vacuum pump with single thread tooth[C]//IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2015, 90(1): 012007.
[16] 刘春姐, 徐成海, 张世伟, 等. 一种新型干式螺杆真空泵转子端面型线的研究[J]. 真空, 2003(6): 40-43.
[17] 郭蓓, 耿茂飞, 谭书鹏, 等. 一种双螺杆真空泵转子型线: CN103032333A[P].2013-04-10.
[18] 王君, 刘宏杰, 崔锋, 等. 双螺杆真空泵的全光滑螺杆型线及其性能研究[J]. 真空科学与技术学报, 2017, 37(2): 125-130.
[19] WANG J, CUI D, WEI S H, et al.Geometric design and performance analysis of a novel smooth rotor profile of claw vacuum pumps[J]. Vacuum, 2017, 143: 174-184.
[20] WANG J, CUI F, WEI S H, et al.Study on a novel screw rotor with variable cross-section profiles for twin-screw vacuum pumps[J]. Vacuum, 2017, 145: 299-307.
[21] 张凌宏. 双螺杆泵的光滑螺杆转子与其工作特性研究[D]. 青岛: 中国石油大学(华东), 2018.
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