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扭转角 meaning in Chinese

angle of distortion
angle of thread
angle of torque
angle of torsion (angle of twist )
torsion angle
twist angle

Examples

  1. Standard test method for angle of twist in rectangular and square copper and copper alloy tube
    矩形和正方形铜和铜合金管扭转角的标准试验方法
  2. When analyzing skew support continuous curved box girder bridge , curved grid girder analyzing method considering warping effect is applied . matrix displacement method is applied in analyzing skew support continuous curved thin - walled box girder bridge with restrained bearing . in order to convert original rigidity equations to structural rigidi ty equations that can be solved , bearing nodal displacement matrix can be introduced , then unknown quantities at the edge of beams can be consistent with the restrained directions of skew bearings , unit rigidity matrix and unit nodal forces can be gained . structural rigidity matrix can be composed according to matrix displacement method , so nodal displacements and inner forces on the end of the rod that are unknown can be gained calculating equations of inner forces on any cross - section can be solved
    分析斜支承连续曲线箱梁桥时,采用考虑翘曲作用的曲线格子梁分析方法,应用矩阵位移法对具有约束支承形式的斜支承连续曲线薄壁箱梁桥进行分析,考虑到支座的约束条件并不与梁端弯曲角位移和扭转角位移的方向一致,引入支座节点坐标矩阵,使得梁端的位移未知量与斜支座约束方向一致,来计算单元刚度矩阵和单元节点力,然后按照矩阵位移法组集总刚并建立结构刚度方程,根据结构刚度方程即可求解未知的节点位移及杆端力,推导出任意截面处的内力计算公式。
  3. Methods : fifty paired embalmed cadaveric humeri ( twenty - five pairs : fourteen from male donors and eleven from female donors ) were scanned in medial - lateral ( ml ) and anterior - posterior ( ap ) position according to the humeral retroversion by ct . images of the humeri in the transverse planes at the lowest border of neck ( lbn ) , 20mm and 40mm distal of lbn ( lbn - 20 、 lbn - 40 ) , isthmus , head - neck anterior - posterior ( hn - ap ) were obtained . sixty - one extracortical and intracortical parameters were measured exactly by image analytic computer software that included offset , head position , head - shaft angle , head to tuberosity height ( ht ) , head thickness , curvature radius , articular surface arc ( sa ) , neck diameter , isthmus position , proximal and distal border of isthmus , maximum coronal and sagittal diameter of medullary canal and thickness of cortical bone in four planes , including lbn , lbn - 20 , lbn - 40 and isthmus
    方法: 50根成对防腐肱骨(男14对,女11对)按肱骨头扭转角置于冠状位和矢状位,行肱骨全长,头颈矢状面,解剖颈下缘及其下20mm 、 40mm ,髓腔狭窄部四平面ct扫描,由ct软件测量冠、矢状位髓腔内外参数共61项,包括头心?干轴距,头位置,头干角,头?结节高度差,头厚度,头半径,关节面张角,解剖颈直径,髓腔狭窄部位置,解剖颈下缘及其下20mm 、 40mm和狭窄部四个平面髓腔的最大冠、矢状径,皮质骨厚度等。
  4. The main work includes : for the torsional vibrations of a rigid disk on saturated media , first , the dynamic governing equations are solved by the use of hankel transform and the general solutions in the hankel transform fields are formulated . then , considering the mixed boundary - value condition , the dual integral equations of the torsional vibrations of a rigid disk on saturated grounds are obtained , which can be reduced to the fredholm integral equations of the second kind and solved by numerical procedures . consequently , the dynamic compliance coefficient curves and the torsional angle amplitude curves versus the dimensionless frequency are presented and contrasted to that of the elastic one
    在前人研究的基础上,本文基于陈龙珠等曾提出的一组实用饱和土波动方程,用解析或半解析的方法首次较系统而深入地研究了饱和半空间地基与基础的扭转振动问题,主要工作有:对于饱和地基上刚性圆板的扭转振动,作者首先采用hankel变换求解了动力控制方程,得到了该控制方程在hankel变换域内的通解,然后由混合边值条件建立了饱和地基上刚性基础扭转振动时的对偶积分方程,并将其化为易于数值求解的第二类fredholm积分方程,用数值方法计算了基础的动柔度和扭转角幅值与振动频率的关系曲线,并将其与单相弹性介质情况进行了对比分析。
  5. The displacement and tortion caused by dead load and prestressing force in cantilever casting period are provided . some proposals are offered for design and construction in this paper . all these results will not only aid the bridge engineering design and construction , but also provide more useful information for further research on static behavior of curved - girder
    本文对大跨度曲线箱梁桥的施工控制问题进行了专项分析,给出了曲线箱梁桥施工过程中由自重、施工预应力等因素所引起的位移、扭转角等效应。
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Related Words

  1. 扭转位
  2. 回肠扭转
  3. 三脚架扭转
  4. 键扭转
  5. 扭转疲劳强度
  6. 扭转轧机
  7. 扭转映射
  8. 扭转次数
  9. 扭转速度
  10. 扭转怜
  11. 扭转矫正术 反扭转
  12. 扭转矫直机
  13. 扭转角度
  14. 扭转角度位
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