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cone bit相关的网络例句

查询词典 cone bit

与 cone bit 相关的网络例句 [注:此内容来源于网络,仅供参考]

Correlation of drillability anisotropy index of the roller cone bit and PDC bit, the difference between drillability of the roller cone bit in perpendicular and horizontal directions of the bedding plane with the P-wave velocity anisotropy coefficient are studied respectively by means of mathematical statistics. A mathematical model is established for predicting drillability anisotropy index by using P-wave velocity anisotropy coefficient.

用数理统计方法研究分析了牙轮钻头岩石可钻性各向异性指数、牙轮钻头垂直于和平行于地层层面方向岩石可钻性差值和PDC钻头岩石可钻性各向异性指数与纵波波速各向异性系数的相关关系,建立了用纵波波速各向异性系数评价地层可钻性各向异性的模型。

The new bit ′ s cone and bearing are much larger than those of the three cone bit with the same size,therefore the new bit can bear a greater WOB,thus,the life of the bearing and cone can be prolonged and then the penetration rate can be raised and the length of bit run prolonged.

与相同钻头尺寸的三牙轮钻头相比,该新型钻头的牙轮尺寸和轴承尺寸要大得多,因此,它可以承受较大的钻压,从而可以提高轴承和牙轮的使用寿命,进而提高机械钻速和钻头的使用寿命。

It is sharp, wear-resistant, the PDC can be self-sharpening cutting teeth as a cutting edge in low WOB high penetration rate can be,(cone bit higher than 2 times more) and high-footage (cone bit higher than the 4-6 times), applicable to soft - in the hard formation.

它以锋利、耐磨、能自锐的PDC切削齿作为切削刃、在低钻压能获得高钻速、(高于牙轮钻头2倍以上)及高进尺(高于牙轮钻头4-6倍),适用于软-中硬地层。

A APDL program is developed for analyzing the contact stress of journal bearing pair of roller cone bit. The 25 contact stress cases of different clearance fit(including clearance of large bearing is bigger, equal to and smaller than that of small bearing) journal bearing pair of the 8 1/2XXX roller cone bit are analyzed. The result is that the maximum contact stress is less when the clearance of large journal bearing pair is smaller than or equal to that of small journal bearing pair.

用参数化设计语言APDL编制了牙轮钻头滑动轴承的ANSYS接触有限元分析程序,根据钻头制造厂方提供的某8 1/2的轴承配合间隙尺寸,分三种不同的间隙配合(大轴间隙大于小轴间隙、大轴间隙等于小轴间隙、大轴间隙小于小轴间隙),共25种情况,对轴承的表面的接触应力进行了分析,得出:大轴间隙小于等于小轴间隙时最大应力比较小。

Cone bit ; bit bearing ; bit lubrication ; load ; calculation

牙轮钻头;钻头轴承;钻头润滑;载荷;计算

Making the full use of the theoretical knowledge of FEA,contact mechanics and friction wear,and integrating with the research of other domestic and international scholar. Starting with analyzing working characteristics of journal bearing of roller cone bit, we finished the contact FEA of the journal bearing and the thrust bearing, using ANSYS software. The tolerance ranges of journal bearing of a roller cone bit are specially studied.

本文利用有限元、接触力学和摩擦学理论知识,同时结合国内外其它学者的研究,从分析牙轮钻头滑动轴承的工作特性入手,利用软件ANSYS完成了牙轮钻头中大、小轴承及止推轴承的接触有限元分析工作,对牙轮钻头滑动轴承的尺寸公差的取值,进行了专门的研究和探讨。

The transmission ratio (cone/bit rotary speed ratio) of a mono-cone bit was tested on the bit test stand.

单牙轮钻头的牙轮转速与钻头转速之比是研究和设计钻头的重要参数。

Research on cone/bit speed ratio simulation model of tri-cone bit s;2. In this paper, the kinematics simulation model of tri-cone bit s was established according to the roller cone bit geometry and kinematics.

根据钻头几何学和运动学建立起了随钻运动的三牙轮钻头的计算机运动学仿真模型,该仿真模型既表示出了钻头上各牙齿的形状、大小和在钻头上的分布情况,又可真实反映钻头钻进过程中各牙齿的瞬时位置和相互关系。

Because of special geometry structure of three-cone bit, the top of formation will form a tri-spine well bottom while drilling with three-cone bit the drill string. It is the tri-spine well bottom that leads to the axial harmonic of vibration when the bit revolves a round and the three concavo-convex heave of bit and formation result in one time (1×rpm),two time (2×rpm), three time (3×rpm) turning table speed.

高岩由于三牙轮钻头的特殊几何结构,钻进过程中在岩层顶部容易形成一个三脊状井底,正是这一三脊状井底,当钻头旋转一周时钻柱轴向三次凸凹变化,由此在轴向产生1倍、2倍和3倍及其更高次倍于转盘转速rpm的谐波振动。

Because of special geometry structure of three-cone bit, the top of formation will form a tri-spine well bottom while drilling with three-cone bit the drill string. It is the tri-spine well bottom that leads to the axial harmonic of vibration when the bit revolves a round and the three concavo-convex heave of bit and formation result in one time (1×rpm),two time (2×rpm), three time (3×rpm) turning table speed.

高岩摘要:由于三牙轮钻头的特殊几何结构,钻进过程中在岩层顶部容易形成一个三脊状井底,正是这一三脊状井底,当钻头旋转一周时钻柱轴向三次凸凹变化,由此在轴向产生1倍、2倍和3倍及其更高次倍于转盘转速rpm的谐波振动。

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