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所在平台: Udemy |
课程主页: https://www.udemy.com/course/geometric-dimensioning-and-tolerancing-gdt/
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课程名称:GD & T 课程概述: 几何尺寸与公差(GD & T)是一门深入讲解几何尺寸和公差的课程,适合各种经验水平的学习者。该课程通过实例展示了如何对零件进行公差控制。几何尺寸与公差是一种定义和传达工程公差的系统,使用符号语言在工程图纸和计算机生成的三维固体模型上明确描述名义几何形状及其允许的变化。 维度规范定义了名义、建模或预期的几何形状,而公差规范则定义了单个特征的形状、公差、方向和位置变化的允许范围。所涉及的示例包括线性尺寸和使用基准的特征控制框架。每个制造部件的所有特征都存在变异,因此必须指定允许变异的极限。公差可以直接应用于尺寸,也可以通过一般公差块或一般注释应用。 课程中强调,所有尺寸必须包含公差,工程图定义了成品部件的要求。图纸上应显示定义成品所需的每个维度和公差。如果有必要的附加尺寸,则可以标记为参考。尺寸应应用于特征并以便于理解的方式安排,以代表特征的功能,并且不应引起多重解释。 该课程还回避制造方法的描述,几何形状应在不明确规定制造方法的情况下进行描述。课程强调,在制造过程中某些大小可能是必要的,但在最终几何形状上并非强制要求时,应标记为非强制性。所有维度和公差应为最大可读性而安排,并应应用于真实轮廓的可见线。 此外,课程介绍了尺寸与公差的有效性、不同条件下的适用性,以及它们如何在图纸的不同层次中适用,但未必在所有层次中强制适用。 总之,该课程旨在提升学习者对几何尺寸与公差的理解,以便在实际工程和制造中能够有效应用。
Geometric dimensioning and tolerancing (GD & T) is explained thoroughly in this course and examples are given on how to tolerance parts. this course is hands on and suitable for any level of experienceGeometric dimensioning and tolerancing is a system for defining and communicating engineering tolerances. It uses a symbolic language on engineering drawings and computer-generated three-dimensional solid models that explicitly describe nominal geometry and its allowable variation. Dimensioning specifications define the nominal, as-modeled or as-intended geometry. One example is a basic dimension.Tolerancing specifications define the allowable variation for the form and possibly the size of individual features, and the allowable variation in orientation and location between features. Two examples are linear dimensions and feature control frames using a datum reference (both shown below).All dimensions must have a tolerance. Every feature on every manufactured part is subject to variation, therefore, the limits of allowable variation must be specified. Plus and minus tolerances may be applied directly to dimensions or applied from a general tolerance block or general note. For basic dimensions, geometric tolerances are indirectly applied in a related Feature Control Frame. The only exceptions are for dimensions marked as minimum, maximum, stock or reference.Dimensions define the nominal geometry and allowable variation. Measurement and scaling of the drawing is not allowed except in certain cases.Engineering drawings define the requirements of finished (complete) parts. Every dimension and tolerance required to define the finished part shall be shown on the drawing. If additional dimensions would be helpful, but are not required, they may be marked as reference.Dimensions should be applied to features and arranged in such a way as to represent the function of the features. Additionally, dimensions should not be subject to more than one interpretation.Descriptions of manufacturing methods should be avoided. The geometry should be described without explicitly defining the method of manufacture.If certain sizes are required during manufacturing but are not required in the final geometry (due to shrinkage or other causes) they should be marked as non-mandatory.All dimension and tolerance should be arranged for maximum readability and should be applied to visible lines in true profiles.When geometry is normally controlled by gage sizes or by code (e.g. stock materials), the dimension(s) shall be included with the Gage or code number in parentheses following or below the dimension.Angles of 90° are assumed when lines (including center lines) are shown at right angles, but no angular dimension is explicitly shown. (This also applies to other orthogonal angles of 0°, 180°, 270°, etc.)Dimensions and tolerances are valid at 20 °C (68 °F) and 101.3 kPa (14.69 psi) unless stated otherwise.Unless explicitly stated, all dimensions and tolerances are only valid when the item is in a free state.Dimensions and tolerances apply to the length, width, and depth of a feature including form variation.Dimensions and tolerances only apply at the level of the drawing where they are specified. It is not mandatory that they apply at other drawing levels, unless the specifications are repeated on the higher level drawing(s).(Note: The rules above are not the exact rules stated in the ASME Y14.5-2009 standard.) course/geometric-dimensioning-and-tolerancing-gdt/?couponCode=2596BF66B4C8DFE343A5