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The linear sizes tolerances and fits system modernization

机译:线性尺寸容差和适合系统现代化

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摘要

The study is carried out on the urgent topic for technical products quality providing in the tolerancing process of the component parts. The aim of the paper is to develop alternatives for improving the system linear sizes tolerances and dimensional fits in the international standard ISO 286-1. The tasks of the work are, firstly, to classify as linear sizes the elements additionally linear coordinating sizes that determine the detail elements location and, secondly, to justify the basic deviation of the tolerance interval for the element's linear size. The geometrical modeling method of real details elements, the analytical and experimental methods are used in the research. It is shown that the linear coordinates are the dimensional basis of the elements linear sizes. To standardize the accuracy of linear coordinating sizes in all accuracy classes, it is sufficient to select in the standardized tolerance system only one tolerance interval with symmetrical deviations: Js for internal dimensional elements (holes) and js for external elements (shafts). The main deviation of this coordinating tolerance is the average zero deviation, which coincides with the nominal value of the coordinating size. Other intervals of the tolerance system are remained for normalizing the accuracy of the elements linear sizes with a fundamental change in the basic deviation of all tolerance intervals is the maximum deviation corresponding to the limit of the element material: EI is the lower tolerance for the of the internal elements (holes) sizes and es is the upper tolerance deviation for the outer elements (shafts) sizes. It is the sizes of the material maximum that are involved in the of the dimensional elements mating of the shafts and holes and determine the fits type.
机译:该研究是对技术产品质量的紧急话题进行,提供了在组件零件的公差过程中。本文的目的是开发改善系统线性尺寸公差和尺寸适合在国际标准ISO 286-1中的替代方案。首先,该工作的任务是分类为线性大小的元件另外的线性协调大小确定细节元素位置,其次,以证明元素的线性大小的公差间隔的基本偏差。真实细节元素的几何模拟方法,研究了研究。结果表明,线性坐标是元件线性尺寸的尺寸基础。为了在所有精度等级中标准化线性协调大小的准确性,可以在标准化公差系统中选择一个公差间隔,其具有对称偏差:JS用于内部尺寸元素(孔)和外部元件(轴)的JS。该协调公差的主要偏差是平均零偏差,其与配位尺寸的标称值一致。剩余的公差系统的其他间隔仍然用于标准化元件线性尺寸的精度,在所有公差间隔的基本偏差中具有基本偏差的基本变化是对应于元素材料的极限的最大偏差:EI是较低的容差内部元件(孔)尺寸和ES是外部元件(轴)尺寸的上部容差偏差。它是涉及轴和孔的尺寸元素配合的材料最大值的大小,并确定配合型。

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