中国石油大学(华东)化学工程学院,山东,青岛,266580
网络首发:2018-05-10,
纸质出版:2018
移动端阅览
王增丽 1, 申迎峰 1, 王宗明 1, 等. 圆盘密封单螺杆泵啮合特性研究[J]. 西安交通大学学报, 2018,52(5):69-74+107.
Research on the Meshing Characteristics of Disc-Seal Single Screw Pump[J]. 2018, 52(5): 69-74+107.
王增丽 1, 申迎峰 1, 王宗明 1, 等. 圆盘密封单螺杆泵啮合特性研究[J]. 西安交通大学学报, 2018,52(5):69-74+107. DOI: 10.7652/xjtuxb201805010.
Research on the Meshing Characteristics of Disc-Seal Single Screw Pump[J]. 2018, 52(5): 69-74+107. DOI: 10.7652/xjtuxb201805010.
为了研究圆盘密封单螺杆泵的啮合特性
分析了圆盘密封单螺杆泵的结构特点和工作原理
根据空间啮合理论及三维坐标变换原理建立了螺杆转子-密封圆盘啮合副的型面方程。利用上述方程得到了密封圆盘任意转角位置处的啮合特性分析模型
研究了啮合副型面参数对螺杆转子-密封圆盘啮合副啮合特性的影响机理。结果表明:密封盘存在着较为严重的局部磨损且下半侧会先予磨损; 不同截面上的密封盘其啮合角范围不同
当圆心角接近π时啮合部位最为集中; 中心距、密封盘半径对啮合角变化影响较大
圆盘边缘倒角半径、偏心距的影响较小。通过对圆盘密封单螺杆泵啮合特性的研究
可为以后对其啮合副型面的优化设计提供一定的理论基础。
As a commonly used rotary fluid machinery for high-viscosity sludge conveying
the disc-seal single screw pump has a core component of meshing pairs
which is composed of screw rotor and seal disc. So the meshing characteristics of the meshing pairs may significantly affect the performance of the pump body. In order to study the meshing characteristics of disc-seal single screw pump
the structural features and working principle of disc-seal single screw pump are analyzed. And the profile equations of the screw rotor-seal disc meshing pairs are established according to the spatial meshing theory and coordinate transform principle. Using the above profile equations
the meshing characteristics analysis model of an arbitrary sealing disk rotary angle is obtained
and the influencing mechanism of meshing parameters on the meshing characteristics is investigated. The results indicate that the sealing disc shows serious local wear and its lower half will be worn first
and that the meshing angle range of the sealing disc is different at different cross sections. The meshing angle range is the smallest when the central angle is close to π. The effects of the center distance and the sealing disc radius on the meshing angle variation are obvious
but the effects of the edge chamfer radius and eccentricity are small. This research can provide a theoretical basis for the optimal design of meshing pair profiles.
LEA J F. PCP study focuses on artificial life alications [J]. Petroleum Engineer Internation, 1993, 65(9): 10-13.
江威. 采油螺杆泵经济效益分析 [J]. 通用机械, 2011(2): 50-52.
JIANG Wei. Economic benefit analysis of oil well screw pump [J]. General Machinery, 2011(2): 50-52.
MILLS R A R. Progressing cavity oil well pumps: past, present and future [J]. Journal of Canadian Petroleum Technology, 1994, 33(4): 5-6.
张建伟. 井下采油单螺杆泵的现状及发展 [J]. 石油机械, 2000(8): 56-58.
ZHANG Jianwei. Present situation and development of downhole single screw pump [J]. China Petroleum Machinery, 2000(8): 56-58.
许永祥. 螺杆泵采油系统工况诊断技术研究 [D]. 青岛: 中国石油大学, 2010.
周琦. 螺杆泵采油技术在稠油开采中的应用研究 [D]. 大庆: 东北石油大学, 2015.
史建强, 房景奎, 郭颖. 采油螺杆泵磨损机理试验性研究 [J]. 科学技术与工程, 2012, 12(5): 1151-1154.
SHI Jianqiang, FANG Jingkui, GUO Ying. Experimental study on wear mechanism of oil well screw pump [J]. Science Technology and Engineering, 2012, 12(5): 1151-1154.
杜秀华. 采油螺杆泵螺杆套副力学特性及磨损失效研究 [D]. 大庆: 大庆石油学院, 2010.
林顺德. 单螺杆泵的力学分析与磨损研究 [D]. 西安: 西安石油大学, 2014.
魏纪德. 单螺杆泵工作特性研究及应用 [D]. 大庆: 大庆石油学院, 2007.
BJORNBERG N, KUTTERGAT A N I, VASTRA F A. Screw pump: WO 82/03428 [P]. 1982-10-14.
JOHANSSON A. Screw pump: WO 91/14869 [P]. 1991-10-03.
Foilex Engineering AB. Introduction of the Foilex products [EB/OL]. [2017-07-25]. http: ∥www. foilex.com.
JOHANSSON A. Screw pump: WO 00/05503 [P]. 2000-02-03.
戴国强, 王清. 基于高黏度介质的单螺杆泵试制研究与应用 [J]. 科技创新与生产力, 2012(4): 105-106.
DAI Guoqiang, WANG Qing. Trial production and application of single screw pump based on high viscosity medium [J]. Sci-Tech Innovation and Productivity, 2012(4): 105-106.
金光熹, 林强. 单螺杆压缩机的泄漏通道和泄漏量计算 [J]. 流体工程, 1986(1): 19-24.
JIN Guangxi, LIN Qiang. Leakage channel and leakage calculation of single screw compressor [J]. Fluid Engineering, 1986(1): 19-24.
李增亮, 石白妮, 鲁佳琪, 等. 圆弧齿形单螺杆式水力机械的啮合原理及应用 [J]. 中国石油大学学报(自然科学版), 2014, 38(4): 132-137.
LI Zengliang, SHI Baini, LU Jiaqi, et al. Meshing theory and application of single screw hydraulic machinery with arc tooth profile [J]. Journal of China University of Petroleum(Natural Science Edition), 2014, 38(4): 132-137.
安永生, 宋扬, 张德实, 等. 螺杆泵转子三维运动仿真分析及型线优化设计 [J]. 中国石油大学学报(自然科学版), 2012, 36(3): 155-158.
AN Yongsheng, SONG Yang, ZHANG Deshi, et al. Three dimensional motion simulation and locus optimization design of progressive cavity pump rotor [J]. Journal of China University of Petroleum(Natural Science Edition), 2012, 36(3): 155-158.
吴伟烽. 单螺杆压缩机啮合副的多圆柱包络啮合理论及加工技术的研究 [D]. 西安: 西安交通大学, 2010.
吴伟烽, 冯全科, 徐健. 单螺杆压缩机齿型的多圆柱包络原理 [J]. 西安交通大学学报, 2007, 41(11): 1271-1274.
WU Weifeng, FENG Quanke, XU Jian. Principle of multi-column envelope couple of single screw compressor [J]. Journal of Xi'an Jiaotong University, 2007, 41(11): 1271-1274.
李增亮, 石白妮, 鲁佳琪, 等. 全金属单螺杆泵结构优化设计 [J]. 石油机械, 2013, 41(12): 97-101.
LI Zengliang, SHI Baini, LU Jiaqi, et al. Optimum design of all-metal screw pump [J]. China Petroleum Machinery, 2013, 41(12): 97-101.
杜秀华, 刘双新, 宋玉杰, 等. 短幅内摆线型螺杆-衬套副滑动速度分析 [J]. 化工机械, 2015, 42(4): 522-526.
DU Xiuhua, LIU Shuangxin, SONG Yujie, et al. Analysis of sliding speed of a short cycloidal screw bushing pair [J]. Chemical Engineering Machinery, 2015, 42(4): 522-526.
0
浏览量
5
下载量
4
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621