ISO 1101 (2017 ) [en] - Geometrical product specifications (GPS) - Geometrical tolerancing - Tolerances of form, orientation, location and run-out PDF

Title ISO 1101 (2017 ) [en] - Geometrical product specifications (GPS) - Geometrical tolerancing - Tolerances of form, orientation, location and run-out
Course 5 Technische uitrusting 2
Institution Odisee hogeschool
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Download ISO 1101 (2017 ) [en] - Geometrical product specifications (GPS) - Geometrical tolerancing - Tolerances of form, orientation, location and run-out PDF


Description

INTERNATIONAL STANDARD

ISO 1101

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Rules .............................................................................................................................................................................................................. 55

Direction feature ...............................................................................................................................................................................................57

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17.16.1 General................................................................................................................................................................................101 17.16.2 Circular run-out specification — Radial ................................................................................................ 101 iv

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ISO 13715, Technical drawings — Edges of undefined shape — Vocabulary and indications

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the direction of the width of tolerance zones.

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The CZ symbol was called “common zone” in the former version of this document.

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dimension line of a feature of size (see the examples in Figures 4, 5, and 6), or 10

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which these specification elements shall be indicated. 14

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Figure 16 — Circular area restricted tolerance zone specification 16

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where each offset value applies.

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the median point, if the indicated feature is a circle or a sphere.

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proportionally between the locations, see Figure 10 and Figure 14. For former practice, see A.3.2.

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major diameter features and minor diameter features and features derived from these (e.g. the median line of the pitch diameter feature) are currently not well defined in GPS standards.

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“ISO 1101”, followed by the relevant symbol from Table 6 and a “:”, followed by the default filtering, see Annex C. 38

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If the characteristic shall be applied as a pattern of zones for all the requirements to the indicated features, i.e. the tolerance zones for all the features are in a theoretically exact relationship to each © ISO 2017 – All rights reserved

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the same characteristic are to be indicated, they may be combined as shown in Figure 66 b).

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When indicating the projected toleranced feature length directly on the drawing by a “virtual” integral feature representing the portion of the extended feature to be considered, this virtual feature shall be 48

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Figure 71 — Reference plane of the projected feature

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symbol does not explicitly indicate whether the toleranced feature is the planar feature or the lines in 52

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Figure 81 — Specification using an intersection plane symmetrical to (including) the datum 54

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— the toleranced feature is an integral feature, and © ISO 2017 – All rights reserved

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apart in a plane that includes the axis of the cylinder, see Figure 93. 62

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The toleranced feature can be an integral feature or a derived feature. The nature of the nominal toleranced feature is explicitly given as a linear feature or a set of linear features. The shape of the 68

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NOTE

The definition of extracted centre of a sphere has not been standardized.

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Figure 154 — Position indication 92

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is limited by two parallel planes 0,1 apart and symmetrically disposed about the centre line for that 94

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Figure 163 — Concentricity indication

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Members of a pattern shall be positively identified (e.g. 4×, etc.). © ISO 2017 – All rights reserved

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NOTE A derived centre point exists for a sphere, a circle and a torus. The derived centre point of a torus cannot be specified with the current rules.

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drawing or by queries of the CAD model, see ISO 16792.

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Gaussian, spline and wavelet filters all work in fundamentally the same way. They split the profile in a short-wave portion and a long-wave portion and disregard one or the other. For the purposes of this © ISO 2017 – All rights reserved

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Figure E.2 — Surface profile filtered with a Gaussian filter

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the filtered profile in Figure E.6 b), but in this case, the height ranges are significantly different. The 134

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specification applies to the feature after the application of a hull filter. The value 0 indicates that the

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ICS 01.100.20; 17.040.10 Price based on 145 pages © ISO 2017 – All rights reserved...


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