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NEW DESIGNS FOR SUBMILLIMETRIC PRESS-FITTING

机译:子弹压配合的新设计

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摘要

Press-fitting is a very common assembly process used in many fields, especially in the watchmaking industry. It consists of introducing a shaft in a hole (also called receptor) with a certain value of tightening (or interference). However, this process is not straightforward and it is often observed that some assemblies do not manage to hold out the time and function they are meant to. In order to solve this problem, influent parameters had been searched and are now studied. The shape of the receptor has appeared as a critical one. Indeed, new machining processes have been developed this last decade and we are now able to make new designs which could cope perfectly with this application. The article will deal with the influence of the two main parameters involved in a press-fitting assembly: the maximal press-fitting force, measured axially; and the resistive torque exercised between the shaft and the receptor. The main purpose will be to find which kind of design allows the contact to become less stiff, which means less internal constraints. Thus, the tolerances, especially those of the receptor (they are less well controlled than those of the shaft) could be enlarged and this would be a great improvement for the industrial world.
机译:压装是在许多领域中使用的非常普遍的组装过程,尤其是在制表业中。它包括以一定的拧紧(或过盈)值将轴插入孔(也称为接收器)中。但是,此过程并不简单,通常会观察到某些程序集无法保持所需的时间和功能。为了解决这个问题,已经研究了影响参数。受体的形状已显示为关键。确实,在过去的十年中已经开发了新的加工工艺,我们现在能够进行新的设计,以完美地应对这种应用。本文将探讨压装组件中涉及的两个主要参数的影响:轴向测量的最大压装力;以及在轴和接收器之间施加的阻力扭矩。主要目的是找到哪种设计可使触头变硬,从而减少内部约束。因此,可以扩大公差,特别是接收器的公差(与轴的公差相比,控制不佳),这对于工业界来说将是巨大的进步。

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