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USING TOLERANCE-MAPS TO TRANSFER DATUM PLANE FROM DESIGN TOLERANCING TO MACHINING TOLERANCING

机译:使用公差映射将基准平面传输到从设计公差到加工公差

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Datum transfer is usually carried out to satisfy requirements of fixture and operation in manufacturing process. Often such requirements are different than the functional requirements used when choosing tolerances during design. Reassignment and recalculation of tolerances are required to evaluate whether a machining scheme can reach the desired design specification. Since a planar feature are widely utilized in datum reference frame, this paper mainly focuses on the transfer of one datum plane to another parallel plane-segment with round or polygonal shape by using 3D Tolerance-Maps. Firstly, a parametric model about two parallel planar features is proposed to describe the geometric properties and spatial relationships between a design datum and a machining datum. Then, based on a variation analysis of plane-to-plane datum transfer, a more elaborate transformation is utilized to relate T-Maps (Patent No. 6963824) with M-Map. Next, several rigid mathematical inequalities are presented to describe the boundaries of primitive and transformed T-Maps for further accumulation and comparison. The largest possible machining tolerances are determined by fitting the M-Map inside the design T-Map. Analytical relations between the machining and design tolerances are extracted from cross-sections through both T-Maps. Lastly, an example is illustrated to show feasibility of the method.
机译:通常进行基准转移,以满足制造过程中的夹具和操作的要求。通常,这种要求与在设计期间选择公差时使用的功能要求不同。需要重新分配和重新计算公差,以评估加工方案是否可以达到所需的设计规范。由于平面特征在基准参考帧中广泛使用,因此本文主要集中于通过使用3D公差图对一个基准平面与圆形或多边形形状的另一个平行平面段的传送。首先,提出了关于两个平行平面特征的参数模型来描述设计数据和加工基准之间的几何特性和空间关系。然后,基于平面到平面基准转移的变化分析,利用更精细的转化来涉及与M图的T型图(专利No.6963824)。接下来,提出了几种刚性数学不等式以描述基元和转化的T型图谱的边界,以进一步积累和比较。通过在设计T型图内的M型图中拟合M-MAP来确定最大可能的加工公差。通过T-MAPS从横截面中提取加工和设计公差之间的分析关系。最后,说明了一个例子以显示该方法的可行性。

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