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A Framework for Explicating Formal Geometrical and Dimensional Tolerances Schema From Manufacturing Process Plans for Three-Dimensional Conformance Analysis

机译:一个用于从制造工艺计划中阐明形式几何和尺寸公差方案的框架,以进行三维一致性分析

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摘要

A process plan is an instruction set for the manufacture of parts generated from detailed design drawings or computer-aided design (CAD) models. While these plans are highly detailed about machines, tools, fixtures, and operation parameters, tolerances typically show up in less formal manner, if at all. It is not uncommon to see only dimensional plus/ minus values on rough sketches accompanying the instructions. On the other hand, design drawings use standard geometrical and dimensional tolerances (GD&T) symbols with datums and datum reference frames (DRFs) clearly specified. This is not to say that process planners do not consider tolerances; they are implied by way of choices of fixtures, tools, machines, and operations. Process planners do tolerance charting in converting design tolerances to the manufacturing datum flow based on operation sequence, but the resulting plans cannot be audited for conformance to design specification. In this paper, we present a framework for explicating the GD&T schema implied by machining process plans. The first step is to derive DRFs from the fixturing method in each setup. Then, basic dimensions for features machined in the setup are determined with respect to the extracted DRF. Using shop data for the machines and operations involved, the range of possible geometric variations are estimated for each type (form, size, orientation, and position). The sequence of operations determines the datum flow chain. Once we have a formal manufacturing GD&T schema, we can analyze and compare it to design specification using the T-map math model.
机译:流程计划是用于制造由详细设计图或计算机辅助设计(CAD)模型生成的零件的指令集。尽管这些计划对机器,工具,固定装置和操作参数进行了非常详细的描述,但公差通常以不太正式的方式显示(如果有的话)。随说明书附带的粗略草图仅看到尺寸的正负值并不少见。另一方面,设计图使用标准的几何和尺寸公差(GD&T)符号,并明确指定了基准和基准参考系(DRF)。这并不是说过程计划者不会考虑公差;通过固定装置,工具,机器和操作的选择来暗示它们。工艺计划人员可以根据操作顺序将设计公差转换为制造基准流,从而进行公差制图,但是无法审核生成的计划是否符合设计规范。在本文中,我们提出了一个框架,用于解释加工工艺计划所隐含的GD&T模式。第一步是从每种设置中的夹具方法获得DRF。然后,针对提取的DRF确定在设置中加工的特征的基本尺寸。使用涉及的机器和操作的车间数据,可以估算每种类型(形状,尺寸,方向和位置)的可能几何变化的范围。操作顺序决定了基准流链。一旦有了正式的制造GD&T模式,我们就可以使用T-map数学模型对其进行分析并将其与设计规范进行比较。

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