AGMA 911-A94-1994
航空航天齿轮加工用设计指南.替代:AGMA 411.02

Design Guidelines for Aerospace Gearing


AGMA 911-A94-1994 发布历史

This Information Sheet covers current gear design practices as they are applied to air vehicles and spacecraft. The material included goes beyond the design of gear meshes per se, and presents, for the consideration of the designer, the broad spectrum of factors which combine to produce a working gear system, whether it be a power transmission or special purpose mechanism. Although avariety of gear types, such as wormgears, face gears and various proprietary tooth forms are used in aerospace applications, this document covers only conventional spur, helical, and bevel gears. 1.1 Application The working environment of the aerospace gear has become so diverse that a single set of guidelines will no longer suffice. The operating conditions imposed on a high speed, high powered, transmission or actuator are quite different than those experienced by the spacecraft mechanism which must function in a hard vacuum for long periods of time without maintenance. This Information Sheet addresses these differences and provides guidance to the designer for these demanding applications.

AGMA 911-A94-1994由美国齿轮制造商协会 US-AGMA 发布于 1994-01-01。

AGMA 911-A94-1994的历代版本如下:

  • 1994年01月01日 AGMA 911-A94-1994 航空航天齿轮加工用设计指南.替代:AGMA 411.02

 

 

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标准号
AGMA 911-A94-1994
发布日期
1994年01月01日
实施日期
废止日期
发布单位
US-AGMA
适用范围
This Information Sheet covers current gear design practices as they are applied to air vehicles and spacecraft. The material included goes beyond the design of gear meshes per se, and presents, for the consideration of the designer, the broad spectrum of factors which combine to produce a working gear system, whether it be a power transmission or special purpose mechanism. Although avariety of gear types, such as wormgears, face gears and various proprietary tooth forms are used in aerospace applications, this document covers only conventional spur, helical, and bevel gears. 1.1 Application The working environment of the aerospace gear has become so diverse that a single set of guidelines will no longer suffice. The operating conditions imposed on a high speed, high powered, transmission or actuator are quite different than those experienced by the spacecraft mechanism which must function in a hard vacuum for long periods of time without maintenance. This Information Sheet addresses these differences and provides guidance to the designer for these demanding applications.




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