V38 液压、冷气系统及其附件 标准查询与下载



共找到 272 条与 液压、冷气系统及其附件 相关的标准,共 19

本标准规定了液压脉冲试验台的关键部件组成、要求和操作方法。 本标准适用于液压软管组件、硬管、盘旋管、接头、作动筒、阀、压力容器及类似液压系统部件的标准液压脉冲试验台的研制。

General requirement for hydraulic impulse test stand

ICS
49.080
CCS
V38
发布
2014-07-09
实施
2014-11-01

本标准规定了民用飞机液压系统的试验要求和方法。 本标准适用于工作压力在21MPa~56MPa之间、工作温度在-55℃~232℃之间的飞机液压系统。

Test requirements for commercial aircraft hydraulic systems

ICS
49.080
CCS
V38
发布
2014-07-09
实施
2014-11-01

本标准规定了民用飞机气动系统的设计要求(包括设计依据、设计准则、一般要求、详细要求、设计程序及设计验证)和安装要求。 本标准适用于民用飞机气动系统设计和安装。

Design and installation requirements for pneumatic system of civil aircraft

ICS
49.080
CCS
V38
发布
2014-07-09
实施
2014-11-01

本标准规定了民用飞机液压系统的通用技术要求和验证方法。 本标准适用于民用飞机液压系统。

General requirements for civil aircraft hydraulic systems

ICS
49.080
CCS
V38
发布
2014-05-19
实施
2014-10-01

本标准规定了民用飞机液压系统固体颗粒污染度、含水量的指标要求、污染控制要求以及验证要求。 本标准适用于民用飞机液压系统污染控制。

Requirements for acceptance level and control level of contamination of civil aircraft hydraulic systems

ICS
49.080
CCS
V38
发布
2014-05-19
实施
2014-10-01

本标准规定了民用飞机用液压油污染度等级。 本标准适用于民用飞机及其地面设备的以颗粒数表示的液压油固体污染度等级评定。其他工作液固体污染度等级的评定可参照执行。

Contamination classification for hydraulic fluid of civil aircraft

ICS
49.080
CCS
V38
发布
2014-05-19
实施
2014-10-01

本标准规定了民用飞机气动系统的技术要求和验证要求。 本标准适用于民用飞机气动系统的设计、制造和验收。

General requirements for pneumatic systems of civil aircraft

ICS
49.080
CCS
V38
发布
2014-05-19
实施
2014-10-01

本标准规定了民用飞机液压管路系统设计、安装以及验证等相关要求。 本标准适用于民用飞机液压系统管路系统的设计和安装。

Design and installation requirements for hydraulic tubing system of commercial aircraft

ICS
49.080
CCS
V38
发布
2014-05-19
实施
2014-10-01

Scope is unavailable.

FITTING, TEE, INTERNAL STRAIGHT THREAD PORT

ICS
49.080
CCS
V38
发布
2014-04-22
实施

This International Standard establishes a system of graphic symbols of hydraulic and pneumatic circuits and components for all types of aerospace systems.

Aerospace series - Graphic symbols for schematic drawings of hydraulic and pneumatic systems and components

ICS
01.080.30;49.080
CCS
V38
发布
2014-03
实施

Aerospace series. Graphic symbols for schematic drawings of hydraulic and pneumatic systems and components

ICS
01.080.30;49.080
CCS
V38
发布
2014-02-28
实施
2014-02-28

This SAE Aerospace Recommended Practice (ARP) provides guidance for the design and installation of a commercial aircraft hydraulic system to meet the applicable requirements, including the applicable airworthiness regulations that affect the hydraulic system design. This ARP also provides information and guidelines on the many factors that arise in the design process to provide cost effectiveness, reliability, maintainability and accepted design and installation practices.

Aerospace - Design and Installation of Commercial Transport Aircraft Hydraulic Systems

ICS
49.080
CCS
V38
发布
2013-12-02
实施

Design and installation requirements of civil aircraft hydraulic system

ICS
CCS
V38
发布
2013-09-01
实施
2013-09-01

This document has been declared ""Stabilized"" and will no longer be subjected to periodic reviews for currency. Users are responsible for verifying references and continued suitability or technical requirements. New technology may exist. Of all the potential soluble contaminants, this SAE Aerospace Information Report (AIR) covers only chlorine containing materials, their detection, their effects, and suggests ways to prevent their contaminating aircraft hydraulic fluids. This document will limit itself to ""chlorine containing compounds"" in MIL-H-5606 and MIL-H-83282 fluids. The presence and effects of other types of materials will not be discussed in thi

Aerospace - Chlorinated Solvent Contamination of MIL-H-5606/MIL-H-83282 Vehicle Hydraulic Systems

ICS
49.080;75.120
CCS
V38
发布
2013-06-18
实施

This International Standard specifies the requirements and the procedures for impulse testing of hose, tubing, and fitting assemblies for use in aerospace hydraulic systems. Requirements may apply, when appropriate, to components used in other aerospace fluid systems.

Aerospace - Fluid systems - Impulse testing of hydraulic hose, tubing and fitting assemblies

ICS
23.100.40;49.080;83.140.40
CCS
V38
发布
2012-10
实施

This SAE Aerospace Information Report (AIR) provides the hydraulic and flight-control system designer with the various design options and techniques that are currently available to enhance the survivability of military aircraft.

Airborne Hydraulic and Control System Survivability For Military Aircraft

ICS
49.080;49.090
CCS
V38
发布
2012-04-11
实施

The purpose of this test procedure is to present test methods that can be utilized to evaluate the filtration and operating characteristics of filters that will be utilized in a cryogenic system. The methods presented herein are intended to supplement standard filter testing specifications to allow evaluation of filter performance characteristics in areas that could be affected by extreme low temperatures. The test methods can be utilized to evaluate filters up to and including 60 gpm (230 L/min) capacity. If higher flow rate filters are to be evaluated in accordance with the test methods presented herein, it will be necessary to increase the system flow capacity and the size of effluent sampling system from those recommended in this document. The test methods presented herein do not encompass testing of cryogenic bypass relief valves, differential pressure indicators, gages, or components other than a basic filter housing and element.

Methods for Evaluating Cryogenic Filters

ICS
49.080
CCS
V38
发布
2011-12-19
实施

This SAE Aerospace Information Report (AIR) contains Lessons Learned from aerospace actuation, control and fluid power systems technologies. The lessons were prepared by engineers from the aerospace industry and government services as part of the work of SAE Committee A-6, Aerospace Actuation, Control and Fluid Power Systems. Each lesson was presented to the appropriate A-6 technical panel. The technical topics are organized into five sections covering systems, actuation, hydraulic components, electrical components and miscellaneous, each further divided into subsections. The information topics are presented in a concise format of Problem, Issue, Solution and Lesson Learned, often with accompanying descriptive diagrams and illustrations for clarity and understanding.

Aerospace Hydraulics and Actuation Lessons Learned

ICS
49.080
CCS
V38
发布
2011-12-12
实施

Aerospace - Fluid systems - Vocabulary - Part 4: General terms and definitions relating to control/actuation systems

ICS
01.040.49;49.080
CCS
V38
发布
2011-10
实施

On application of the hydraulic fluid within the mechanical fluidic system, the fluid may become contaminated with acid and chloride ion. Mechanical shearing of the hydraulic fluid in the presence of the minute quantity of water and residual amount of organic solvents, used in cleaning, may initiate formation of acid and chloride ion. Measurements are desired to control and maintain the cleanliness and non-corrosiveness of the fluidic system.1.1 This practice covers the measurement of the pH and chloride ion of water extraction of aerospace hydraulic fluids. 1.2 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard. 1.3 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

Standard Practice for pH and Chloride-ion Concentration of Aerospace Hydraulic Fluids

ICS
49.080 (Aerospace fluid systems and components)
CCS
V38
发布
2011
实施



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