Aerospace — Fixed displacement hydraulic motors — General specifications

This document establishes the general requirements for constant displacement hydraulic motors, suitable for use in aircraft hydraulic systems at pressures up to 35 000 kPa (5 000 psi). Primary and secondary function motors (see Clause 4) are covered in this document; however, actuators with internal rotation angle limits and low-speed motors are not covered. This document is to be used in conjunction with the detail specification that is particular to each application.

Aéronautique et espace — Moteurs hydrauliques à cylindrée fixe — Spécifications générales

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Publication Date
06-Dec-2018
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ISO 9206:2018 - Aerospace -- Fixed displacement hydraulic motors -- General specifications
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INTERNATIONAL ISO
STANDARD 9206
Third edition
2018-12
Aerospace — Fixed displacement
hydraulic motors — General
specifications
Aéronautique et espace — Moteurs hydrauliques à cylindrée fixe —
Spécifications générales
Reference number
©
ISO 2018
© ISO 2018
All rights reserved. Unless otherwise specified, or required in the context of its implementation, no part of this publication may
be reproduced or utilized otherwise in any form or by any means, electronic or mechanical, including photocopying, or posting
on the internet or an intranet, without prior written permission. Permission can be requested from either ISO at the address
below or ISO’s member body in the country of the requester.
ISO copyright office
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Phone: +41 22 749 01 11
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Email: copyright@iso.org
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Published in Switzerland
ii © ISO 2018 – All rights reserved

Contents Page
Foreword .vi
1 Scope . 1
2 Normative references . 1
3 Terms and definitions . 2
4 Classification . 6
5 General requirements . 6
5.1 Order of precedence . 6
5.2 Hydraulic system characteristics . 7
5.3 Airworthiness regulations . 7
5.4 Qualification . 7
6 Functional requirements . 7
6.1 Hydraulic fluid . 7
6.2 Pressures . 7
6.2.1 Rated supply pressure. 7
6.2.2 Rated differential pressure . 7
6.2.3 No-load break-out pressure . 8
6.2.4 Motor outlet port pressure . 8
6.2.5 Case drain pressure . 8
6.3 Flows . 8
6.3.1 Rated consumption . 8
6.3.2 Case drain flow . 8
6.3.3 Shaft seal leakage flow . 8
6.3.4 External leakage . 9
6.4 Speed and direction of rotation . 9
6.4.1 Speed . 9
6.5 Torque .12
6.5.1 Rated torque .12
6.5.2 Break-out torque .12
6.5.3 Stalling torque .12
6.5.4 Torque pulsations .12
6.6 Motor overall efficiency .12
6.7 Dynamic characteristics .12
6.7.1 General.12
6.7.2 Dynamic braking .12
6.7.3 Rapid reversals .13
6.8 Passive operation .13
6.9 Rated temperature .13
6.10 Acoustic noise level .13
6.11 Rated endurance .13
6.12 Environmental requirements .14
7 Detail design requirements .14
7.1 Dimensionally critical components .14
7.2 Maintainability features .14
7.3 Seals .14
7.4 Lubrication .15
7.5 Balance .15
7.6 Self-contained failure .15
7.7 Safety wire sealing .15
7.8 Electro-conductive bonding .15
7.9 Marking .15
7.9.1 Nameplate .15
7.9.2 Fluid identification .16
7.9.3 Ports .16
8 Strength requirements .16
8.1 General .16
8.2 Proof pressure .16
8.2.1 Motor case .16
8.2.2 Motor inlet port .16
8.2.3 Motor outlet port .16
8.3 Ultimate pressure .17
8.3.1 Motor case .17
8.3.2 Motor inlet port .17
8.3.3 Motor outlet port .17
8.4 Pressure impulse (fatigue) .17
8.5 Port strength .17
9 Construction requirements .17
9.1 Materials .17
9.1.1 General.17
9.1.2 Metals .18
9.2 Corrosion protection .18
9.2.1 General.
...

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