NF ISO 230-7
Test code for machine tools - Part 7 : geometric accuracy of axes of rotation
ISO 230-7:2006 is aimed at standardizing methods of specification and test of the geometric accuracy of axes of rotation used in machine tools. Spindles, rotary heads and rotary and swivelling tables of machine tools constitute axes of rotation, all having unintended motions in space as a result of multiple sources of errors. ISO 230-7:2006 covers the following properties of spindles: axis of rotation error motion; speed induced axis shifts. The other important properties of spindles, such as thermally induced axis shifts and environmental temperature variation induced axis shifts, are dealt with in ISO 230-3.
ISO 230-7:2006 is aimed at standardizing methods of specification and test of the geometric accuracy of axes of rotation used in machine tools. Spindles, rotary heads and rotary and swivelling tables of machine tools constitute axes of rotation, all having unintended motions in space as a result of multiple sources of errors.
ISO 230-7:2006 covers the following properties of spindles: axis of rotation error motion; speed induced axis shifts.
The other important properties of spindles, such as thermally induced axis shifts and environmental temperature variation induced axis shifts, are dealt with in ISO 230-3.
ISO 230-7:2015 is aimed at standardizing methods of specification and test of the geometric accuracy of axes of rotation used in machine tools. Spindle units, rotary heads, and rotary and swivelling tables of machine tools constitute axes of rotation, all having unintended motions in space as a result of multiple sources of errors. ISO 230-7:2015 covers the following properties of rotary axes: - axis of rotation error motion; - speed-induced axis shifts. The other important properties of rotary axes, such as thermally induced axis shifts and environmental temperature variation-induced axis shifts, are dealt with in ISO 230‑3. ISO 230-7:2015 does not cover the following properties of spindles: - angular positioning accuracy (see ISO 230‑1 and ISO 230‑2); - run-out of surfaces and components (see ISO 230‑1); - tool holder interface specifications; - inertial vibration measurements (see ISO/TR 230‑8); - noise measurements (see ISO 230‑5); - rotational speed range and accuracy (see ISO 10791‑6 and ISO 13041‑6); - balancing measurements or methods (see ISO 1940‑1 and ISO 6103); - idle run loss (power loss); - thermal effects (see ISO 230‑3).
- Avant-proposiv
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1 Domaine d'application1
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2 Références normatives2
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3 Termes et définitions2
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4 Remarques préliminaires15
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4.1 Unités de mesure15
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4.2 Référence à l'ISO 230-116
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4.3 Instruments et équipements d'essai recommandés16
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4.4 Environnement16
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4.5 Axe de rotation à soumettre à l'essai16
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4.6 Mise en température de l'axe de rotation16
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5 Méthodes d'essai de mouvement d'erreur17
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5.1 Généralités17
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5.2 Paramètres et spécifications d'essai17
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5.3 Mouvement de la structure, broche à l'arrét17
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5.4 Essais de la broche - Direction sensitive en rotation18
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5.5 Essais de la broche - Direction sensitive fixe24
- Annexe A (informative) Description des concepts généraux29
- Annexe B (informative) Élimination de l'erreur d'arrondi de la bille d'essai50
- Annexe C (informative) Définition des propriétés de souplesse d'un axe de rotation54
- Annexe D (informative) Définitions de dérive thermique associée à la rotation d'une broche55
- Annexe E (informative) Essais du mouvement d'erreur statique56
- Annexe F (informative) Estimation de l'incertitude de mesure pour la mise à l'essai des axes de rotation57
- Annexe G (informative) Référence croisée alphabétique des termes et des définitions62
- Bibliographie64
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