[1]熊滨生,张明成,李秀明..四位置刚体导引曲柄滑块机构的设计[J].郑州大学学报(工学版),2004,25(02):84-86.[doi:10.3969/j.issn.1671-6833.2004.02.020]
 Xiong Binsheng,ZHANG Mingcheng,Li Xiuming.Design of a four-position rigid body guidance crank slider mechanism[J].Journal of Zhengzhou University (Engineering Science),2004,25(02):84-86.[doi:10.3969/j.issn.1671-6833.2004.02.020]
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四位置刚体导引曲柄滑块机构的设计()
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《郑州大学学报(工学版)》[ISSN:1671-6833/CN:41-1339/T]

卷:
25卷
期数:
2004年02期
页码:
84-86
栏目:
出版日期:
1900-01-01

文章信息/Info

Title:
Design of a four-position rigid body guidance crank slider mechanism
作者:
熊滨生张明成李秀明.
郑州大学机械工程学院,河南,郑州,450002, 郑州大学机械工程学院,河南,郑州,450002, 郑州大学机械工程学院,河南,郑州,450002
Author(s):
Xiong Binsheng; ZHANG Mingcheng; Li Xiuming
关键词:
曲柄滑块机构 四位置刚体导引 圆心曲线 圆点曲线 相关点
Keywords:
DOI:
10.3969/j.issn.1671-6833.2004.02.020
文献标志码:
A
摘要:
通过作出布尔梅斯特圆心曲线、圆点曲线后,根据动力学要求γmin>40°~50°,对曲柄滑块机构进行了设计,求出拐点圆,并得出滑点、导路倾角、拐点圆之间的关系.滑块铰接点B1的位置与滑块导路倾角β有关,而拐点圆K1与滑块导路倾角β无关;设计时可适当调整滑块导路倾角β而拐点圆不变,则点B1位置在拐点圆K1上作出相应变化,以满足设计要求.对于计算实例,当A取值<-17时,不能得到圆心曲线上的点,与布尔梅斯特圆心曲线的理论相符合,即对于任意给定连杆平面四个相关位置,连杆运动平面上只能找到一些与之相应的圆心点.
Abstract:
After making the center curve and dot curve of Bourmeist, according to the kinetic requirements γmin>40°~50°, the crank slider mechanism is designed, the inflection point circle is found, and the relationship between slippage, guide inclination angle and inflection point circle is obtained. The position of the slider articulation point B1 is related to the β of the slide guide angle, while the inflection point circle K1 is independent of the β the slide guide angle. The inclination angle of the slider guide can be adjusted appropriately β and the inflection point circle is unchanged, and the position of point B1 is changed on the inflection point circle K1 to meet the design requirements. For the calculation example, when the value of A is <-17, the point on the center curve cannot be obtained, which is consistent with the theory of the Bulmeister center curve, that is, for any given four relevant positions in the plane of the connecting rod, only some corresponding center points can be found on the plane of motion of the connecting rod.

更新日期/Last Update: 1900-01-01