首页> 外文会议>IFIP(International Federation for Information Processing) TC5 WG5.5 International Precision Assembly Seminar(IPAS'2008); 20080210-13; Chamonix(FR) >A METHOD FOR THREE DIMENSIONAL TOLERANCE ANALYSIS AND SYNTHESIS APPLIED TO COMPLEX AND PRECISE ASSEMBLIES
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A METHOD FOR THREE DIMENSIONAL TOLERANCE ANALYSIS AND SYNTHESIS APPLIED TO COMPLEX AND PRECISE ASSEMBLIES

机译:复杂精密组件的三维公差分析与综合方法

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摘要

The tolerancing process for precise mechanical systems in a context of short or long run in industrial production requires a rational method from the specification of the functional requirements until the final products are checked. Nowadays the optimization of the tolerances is generally carried out empirically. Compromises must be made between the functional requirements in the design process and the manufacturing step. The limits of accuracy imposed by the process must be taken into account. The need for a rational method is particularly necessary for new products in the field of traditional mechanisms as well as of micromechanics or even of micro-systems. In the design process, in the cas6 of an assembly, the functional requirements must be defined in geometrical terms, in order to satisfy the customer requirements. Then, these geometrical requirements must be translated into specifications on the various parts so that on the one hand the assembly can be carried out under well defined conditions and on the other hand, after assembly, the functional requirements are strictly respected. This transfer of specifications with creations of new specifications of the assembly requires a three-dimensional geometrical analysis taking into account the geometrical deviations- form defects, position and orientation- and size deviations. Clearances in the assemblies also will intervene. They are necessary to ensure the mechanical motions but also to compensate for variations of geometry in the case of hyper constrained assemblies. In the phase of industrialisation, the geometrical and dimensional tolerances will be necessary for the choice of machines, for manufacturing planning process and for the measurement processes during the production but also for the final quality control of the parts and of the system. The methods of assemblies are also strongly conditioned by the functional requirements.
机译:在工业生产中短期或长期运行的情况下,精密机械系统的公差过程需要一种合理的方法,从功能要求的规范直到最终产品的检验。如今,公差的优化通常是凭经验进行的。必须在设计过程和制造步骤的功能要求之间进行折衷。必须考虑过程所施加的精度限制。对于传统机构以及微机械乃至微系统领域的新产品,特别需要一种合理的方法。在设计过程中,在组件的cas6中,必须以几何术语定义功能要求,以满足客户的要求。然后,必须将这些几何要求转化为各个零件的规格,以便一方面可以在明确定义的条件下进行组装,另一方面,在组装之后必须严格遵守功能要求。伴随着组件新规格的创建,规格的这种转移需要进行三维几何分析,其中要考虑几何偏差,例如缺陷,位置和方向以及尺寸偏差。组件中的间隙也将介入。它们对于确保机械运动是必要的,但对于高度受限的组件,则还必须补偿几何形状的变化。在工业化阶段,几何公差和尺寸公差对于选择机器,制造计划过程和生产过程中的测量过程以及零件和系统的最终质量控制都是必需的。组装方法也受功能要求的严格限制。

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