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1)  velocity ratio of stroke
行程速比
2)  stoke speed ratio K
行程速比系数K
1.
In this paper,a convient method by graphic for designing crank and rocker according to stoke speed ratio K and auxiliary conditions(known crank length)is introduced,and the method is then demonstrated.
介绍了按行程速比系数K设计曲柄摇杆机构时,根据某一附加条件(已知曲柄长度)用作图法求解的简便方法,并进行了论证。
3)  travel velocity-ratio coefficient
行程速比系数
1.
This paper introduces a new analytical formula for designing a planar rank and rocker mechanism according to travel velocity-ratio coefficient.
介绍推导了按已知的行程速比系数k、摇杆的长度c和摆角Ψ及其余三个构件中任意一个构件的长度,并由此确定其余各构件长度的解析公式。
2.
Via introducing the "Auxiliary Circle Ⅰ" and "Auxiliary Circle Ⅱ" , the paper contributes a new way to improving the traditional graphic method for designing the crank-rocker mechanism in according with the travel velocity-ratio coefficient K , and makes the design process more simple and direct.
通过引入辅助圆 和辅助圆 ,对传统的按行程速比系数 K设计曲柄摇杆机构的图解法作了改进 ,使设计过程更简单、直接 ,在此基础上经过简单计算给出了 4种条件下的曲柄摇杆机构的设计方法。
3.
This paper makes deep and systematic researches on the theoretical task according to travel velocity-ratio coefficient K and allowable transmission angle,and draws some conclusions of guiding significance for the analysis and synthesis of type Ⅰ as well as type Ⅱ planar crank and rocker mechanisms.
对兼按行程速比系数K和许用传动角 [γ]设计平面曲柄摇杆机构的理论课题进行了系统的讨论 ,得到了若干对Ⅰ型、Ⅱ型平面曲柄摇杆机构分析与设计有关的结
4)  Time ratio
行程速比系数
1.
The mechanism offset double crank slider not only has the characteristic of super quick-return (k>3),but also has variety time ratio.
偏置双曲柄滑块机构不仅具有k>3的超急回运动特性,而且具有可变急回运动特性,机构中各构件尺寸一定时,仅仅改变其相对安装位置,便可获得不同的行程速比系数。
2.
The time ratio of this mechanism is changed only the setting position is changed, when the sizes of all links are determined.
分析了对心双曲柄滑块机构急回运动特性,结果证明,该机构不仅具有超急回运动特性的可能性,而且在各构件尺寸一定的情况下,仅改变其相对安装位置便可使其具有行程速比系数不同的急回运动特征。
3.
By means of assistant circles, this paper solved the problem of designing planar crank slide block mechanism on the condition of time ratio, additional with the crank length L 1 or the connecting rod length L 2 .
本文通过引入两个辅助圆,成功地解决了在已知行程速比系数K后,再给定辅助条件———曲柄长度L1或连杆长度L2时,平面曲柄滑块机构的设计问题。
5)  travel speed ratio coefficient
行程速比系数
1.
Adopting the differential method,taking the allowable minimum transmission angle[γ] of the mechanism as the foundation of design and using the travel speed ratio coefficient of mechanism as the functi.
曲柄滑块机构,瞬间传动角愈大,其运动性能愈好;单向工作的曲柄滑块机构,行程速比系数愈大,急回特性愈强,工作效率愈高。
2.
Based on literature,this article has deduced the calculation formula of the maximum value K_(max) of travel speed ratio coefficient in the crank and rocker mechanism with the characteristic of the swift-return movement,when a given minimum driving angle value of is allowed.
在文献[1]的基础上,导出了具有急回特性的曲柄摇杆机构在给定最小传动角许用值[γ]时行程速比系数最大值Kmax的计算公式,不需进行迭代优化就能算出,为综合曲柄摇杆机构选定K值范围提供了简捷准确的计算方法。
3.
That is a method in accordance with the minimum transmission angle γmin and other known conditions(travel speed ratio coefficient k,rocker swinging angle φ and one of the rod lengths among the linkage) and adopting the analytical geometry method to establish a series of relationship formula and to determine the lengths of other rods of this mechanism.
提出了一种设计曲柄摇杆机构的解析新方法,即按最小传动角γmin和其他已知条件(行程速比系数k、摇杆摆角φ和其中一杆长度),采用解析几何方法建立一系列关系式来确定该机构其余杆件长度的方法。
6)  travel velocity ratio coefficient
行程速比系数
1.
Tha paper discusses how to design crank and rocker machanism on exilary circled graphic solution with the given travel velocity ratio coefficient K,angle between extreme positions of the rocher ψ,the length of the rocher l_3(or the length of the rack l_4),the length of the crank l_1(or the length of the link pole l_2),and so on.
探讨给定行程速比系数K,摇杆摆角ψ,以及摇杆长度l3(机架长度l4),曲柄长度l1(连杆长度l2)等,运用辅助圆图解设计曲柄摇杆机构的方法。
补充资料:辊速比
分子式:
CAS号:

性质:指相邻两个辊筒线速度之比,是压延机操作中使用的术语。压延机在加工塑料薄膜或片材的时候,利用相邻压延辊线速度的不同和辊距的变化等,使塑料在压延时能更好地进行剪切、塑化,使料片顺利地从一个压辊转移到另一压辊上,从而获得规定厚度和满意质量的成品,压延机就是根据辊筒配置情况,分别称L型三辊压延机、Z型四辊压延机等。开炼机的辊速比一般为1:1.2~1:1.3。压延机擦胶时的三辊筒的速比一般为1:1.3~1.5:1(上辊:中辊:下辊)。辊筒速比的大小表示两辊间的剪切力与摩擦力的大小。密炼机的辊筒转速较快,故速比较低,一般为1:1.14~1:1.19

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