外文原文-有限元方法在PDC模具设计中的应用.pdf
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1、Petroleum Science 2005 Vol.2 No.3Applications of the Finite Element Method to PDC Mold Design Zhou Sizhu(School of Mechanical Engineering,Yangtze University,Jingzhou,Hubei 434102,China)Received May 8,2005 Abstract:This paper describes the structure of the molds for making polycrystalline diamond com
2、pact(PDC)drilling bits.It represents the mold shapes by using the Finite Element technique,and compares the analytical results with available experimental data.Based on the results of Finite Element analysis,some areas of stress concentrations are determined,and modifications made,to the PDC(polycry
3、stalline diamond compact)mold.A displacement plot and several stress contour plots are presented.Techniques of the mold design are discussed.Key words:Finite Element Method,PDC,mold,design 1.Introduction Since their introduction in the early 1970s,PDC bits have almost completely replaced three-cone
4、bits for use in relatively soft,nonabrasive formations.They sometimes replace three-cone bits in harder or slower drilling intervals,if the section is uniform.It is fair to say,however,that drillers do not normally consider selecting a PDC bit when drilling goes on in harder formations or even in so
5、ft formations with infrequent hard streaks.The problem is that the service life of the bit is too short.A PDC bit consists of a crown,a shank and a pin.The crown contains all the structural components necessary to drill the formation(Gaddy,1999).The key component necessary to better durability of th
6、e bit is polycrystalline diamond compact(PDC)(Fig.1,from Gaddy,1999).Fig.1 Polycrystalline diamond compact The PDC manufacturer must use a procedure similar to a Die-cast or plastic-injection molding process used in toy and automobile industries.The PDC mold design is very important.The need for a h
7、igher pressure and temperature in the PDC manufacturing process today has led to very intricate designs of the mold(Fig.2).Fig.2 PDC mold(1-mold,2-steel belts)The exotic alloys and complex geometries used require sophisticated analytical methods to optimize mold design.Finite Element Analysis,based
8、on the principle of minimization of total potential energy,is becoming widely accepted as a powerful design tool.This technique is being successfully used to eliminate excess weight and to accurately predict stresses.2.Theory of three-dimensional Finite Element Analysis A brief summary of the theory
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