Applied Mathematics and Mechanics (English Edition) ›› 1987, Vol. 8 ›› Issue (10): 957-967.

• 论文 • 上一篇    下一篇

A MATRIX METHOD OF DISPLACEMENT ANALYSIS OF THE GENERAL SPATIAL 7R MECHANISM

陈惟荣   

  1. Shanghai Second Polytechnical University, Shanghai
  • 收稿日期:1986-06-28 出版日期:1987-10-18 发布日期:1987-10-18

A MATRIX METHOD OF DISPLACEMENT ANALYSIS OF THE GENERAL SPATIAL 7R MECHANISM

Chen Wei-rong   

  1. Shanghai Second Polytechnical University, Shanghai
  • Received:1986-06-28 Online:1987-10-18 Published:1987-10-18

摘要: An input-output equation of the general spatial 7R mechanism is derived in this paper by using the method in [1] and applying the rotation matrices. The result is the same as [2], but the process of derivation is simpler. Applying the character of rotation matrices, it is not difficult to obtain the recurrence formulas of direction cosines of Cartesian unit vectors, to calculate the scalar products and triple products of these unit vectors, and to derive the 6th constraint equation. Moreover, an algorithm, which consists of successive applications of row transformation and expansion based on Laplace’s Theorem, is given to evaluate the 16 × 16 determinant according to its characteristic, so that the evaluation is much simplified.

关键词: viscoelastic solid with void, variational integral method, generalized variational principle, generalized potential energy principle, Timoshenko beam

Abstract: An input-output equation of the general spatial 7R mechanism is derived in this paper by using the method in [1] and applying the rotation matrices. The result is the same as [2], but the process of derivation is simpler. Applying the character of rotation matrices, it is not difficult to obtain the recurrence formulas of direction cosines of Cartesian unit vectors, to calculate the scalar products and triple products of these unit vectors, and to derive the 6th constraint equation. Moreover, an algorithm, which consists of successive applications of row transformation and expansion based on Laplace’s Theorem, is given to evaluate the 16 × 16 determinant according to its characteristic, so that the evaluation is much simplified.

Key words: viscoelastic solid with void, variational integral method, generalized variational principle, generalized potential energy principle, Timoshenko beam

APS Journals | CSTAM Journals | AMS Journals | EMS Journals | ASME Journals