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带式输送机功率计算方法及其工程应用问题的研究 被引量:8

Research on power calculation method for belt conveyor and its problems in project application
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摘要 通过CEMA带式输送机功率和张力计算方法与德国标准DIN22101计算方法的比较分析,明确了CEMA方法的特点,以Visual Basic 6.0为开发工具开发了CEMA计算方法的带式输送机功率张力计算软件,通过实例和工程应用验证了软件的正确性.通过研究CEMA算法中弯曲阻力系数Ky和DIN22101标准中模拟摩擦系数f的关系,得出CEMA算法主要阻力的规律;给出了设定模拟摩擦系数修正功能,采用温度校正系数的修正技巧使软件能够按输入的模拟摩擦系数进行功率和张力计算,扩展了软件的功能.针对应用DIN22101标准时没有与温度相关的修正方法,利用CEMA算法得出模拟摩擦系数在低温情况下的修正值. By comparing the CEMA method for power and tension calculations of belt conveyor with the DIN2201 method, the characteristics of the CEMA method was definitely analyzed. The power and tension calculation software for belt conveyor was developed according to the CEMA method developed by Visual Basic 6.0 and it was validated by case studies and engineering applications. Through research on the relationship between curve resistance factor Ky in the CEMA method and analog friction factors in the German DIN2201 standard, the regularity of the main resistance in the CEMA method was obtained and the correction function of analog friction factor was provided; with the correcting skills of temperature correction factor; the power and the tension could be calculated according to the input analog friction factor, which extended the functions of this software. Due to the fact that there was no correction method relative to temperature when adopting DIN22101 standard, the corrected value of analog friction factor under low temperatures was calculated by the CEMA method.
作者 宋伟刚 姜涛
出处 《工程设计学报》 CSCD 北大核心 2008年第6期448-456,共9页 Chinese Journal of Engineering Design
基金 国家自然科学基金资助项目(50775031)
关键词 带式输送机 功率和张力计算 主要阻力 温度修正 belt conveyor power and tension calculation main resistance temperature correction
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参考文献13

  • 1宋伟刚,战欣,王元元.大型带式输送机驱动装置的比较研究[J].工程设计学报,2004,11(6):301-311. 被引量:58
  • 2SCHULZ G. Comparison of drives for long belt conveyor [J]. Bulk Solid Handling,1995,15(2) :247-251.
  • 3DIN22101-2002: Stetigfoderer-Gurtfoderer fiir Schuttguter Grundlagen fur die Berechnung und Auslegung[S]. Berlin, Beuth Verlag, 2002.
  • 4CEMA. Belt conveyors for bulk materials(5th ed)[M]. Florida: The Conveyor Equipment Manufacturers Assciation, 1997.
  • 5SPAANS C. The calculation of the main resistance of belt conveyors[J]. Bulk Solids Handling, 1991, 11(4) : 809-826.
  • 6WHEELER Craig A, ROBERTS Alan W, JONES Mark G. Calculating the flexure resistance of bulk solids transported on belt conveyors [J]. Part Part Syst Charact, 2004(21) :340-347.
  • 7RUDOLPHI Thomas J, REICKS Allen V. Viscoelastic indentation and resistance to motion of conveyor belts using a generalized maxwell model of the backing material [J]. Rubber Chemistry and Technology, 2006, 79(2): 307-319.
  • 8QIU Xiang-jun. Full two-dimensional model for rolling resistance: hard cylinder on viscoelastic foundation of finite thickness[J]. Journal of Engineering Mechanics, 2006, 132(11):1241-1251.
  • 9NORDELL L K. The channer 20km overland-a flagship of modern belt conveyor technology[J]. Bulk Solids Handling, 1991, 11(4) :781-792.
  • 10CEMA. Belt conveyors for bulk materials(6th ed)[M]. Florida: The Conveyor Manufacturers Assciation, 2005.

二级参考文献30

  • 1增一男,宋旭安.叶山矿长距离带式输送机的运行实绩[J].国外金属矿山,1994,19(10):21-25. 被引量:1
  • 2成一之,黄居森,郭建新.高寒地区带式输送机慢速驱动装置[J].起重运输机械,1994(4):9-12. 被引量:1
  • 3中煤国际工程集团沈阳设计研究院.大型露天矿设备国产化布局的研究[R].2001.Shenyang Coal Engineering & Research Institute,CHINACDC. Research on Equipment Arrangement of Large Open Coal Mine[R]. 2001.
  • 4SINGH M P, ELLIOTT M. Maximizing the perfor mance and economics of complex belt conveyors through integrated design [J]. Bulk Solid Handling,1995, 15(2): 239-244.
  • 5FAUERBACH R, OTREBSKI M. The syferfontein overland conveyor system at sasol secunda plant in south africa[J]. Bulk Solid Handling, 1993, 13 (2):289-295.
  • 6FAUERBACH R, OTREBSKI M, Kunicki J. SIGMA-a curved conveyor plant with special control[J].Bulk Solid Handling, 1994, 14(1): 13-19.
  • 7FUNKE H, HARTMANN K, LAUHOFF H. Design and operating performance of a long distance belt conveyor system with horizontal curves and simultaneous material transport in the upper and lower strands[J].Bulk Solid Handling, 2000, 20(1): 45-55.
  • 8GRABNER K. Operation of the curve-going belt con veyor"bio-TEC" at titan cement [J]. Bulk Solid Han dling, 1997, 17(2): 266-269.
  • 9JAMES G L. Design of a 13. 1km overland conveyor[J]. Bulk Solid Handling, 1992, 12(3): 539-545.
  • 10NORDELL L K. The channer 20km overland-a flagship of modern belt conveyor technology [J]. Bulk Solids Handling, 1991, 11(4): 781-792.

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