MIL-STD-810 REV F

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老杨树 2024-10-07 44 5.54MB 539 页 20星币
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MIL-STD-810F
1 January 2000
SUPERSEDING
MIL-STD-810E
14 JULY 1989
DEPARTMENT OF DEFENSE
TEST METHOD STANDARD
FOR
ENVIRONMENTAL ENGINEERING CONSIDERATIONS
AND LABORATORY TESTS
AMSC N/A AREA ENVR
DISTRIBUTION STATEMENT A: Approved for public release; distribution is unlimited.
MIL-STD-810F
1 January 2000
Part One-ii
FOREWORD
This test method standard is approved for use by all Departments and Agencies of the Department of Defense (DoD).
Although prepared specifically for DoD applications, this standard may be tailored for commercial applications as
well. MIL-STD-810F is a significant revision of MIL-STD-810E. Much of the standard is rewritten completely to
provide clearer direction. The primary emphases are still the same -- tailoring a materiel item's environmental design
and test limits to the conditions that the specific materiel will experience throughout its service life, and establishing
laboratory test methods that replicate the effects of environments on materiel rather than trying to reproduce the
environments themselves. However, the "F" revision has been expanded significantly up front to explain how to
implement the environmental tailoring process throughout the materiel acquisition cycle.
This revision recognizes that the environmental design and test tailoring process has expanded to involve a wide
range of managerial and technical interests. Accordingly, this revision orients environmental design and test
direction toward three basic types of users who have distinctly different, although closely associated, interests:
program managers who, among other responsibilities, ensure proposed concepts and systems are valid and functional in
intended operational environments; environmental engineering specialists (EES), who enter the acquisition process early
to assist combat and materiel developer tailoring efforts by preparing life cycle environmental profiles and drafting
tailored design criteria and test programs, and the design, test, and evaluation community, whose analysts, engineers, and
facility operators use tailored designs and tests to meet user needs.
The most visible difference in the "F" revision is that the overall document is in two parts.
Part One describes management, engineering, and technical roles in the environmental design and test tailoring
process. It focuses on the process of tailoring materiel design and test criteria to the specific environmental
conditions a materiel item is likely to encounter during its service life. New appendices support the succinctly
presented text of Part One. Appendix A contains complete descriptions of environmental engineering tasks. These
tasks, along with management information in Appendix B and EES guidance in Appendix C, will help to ensure the
environmental design and test tailoring process is implemented and documented according to the disciplined, but
flexible approach to materiel acquisition called for in Department of Defense (DoD) 5000-series documents (DoD
5000.1, A.4). Terms used in this standard relating to the materiel acquisition process are limited to terms used in the
DoD 5000-series documents; to avoid confusion and promote simplicity, service-specific terms/processes are not
used.
Part Two contains environmental laboratory test methods to be applied according to the general and specific test
tailoring guidelines described in Part One. It is important to emphasize that these methods are not to be called out in
blanket fashion nor applied as unalterable routines, but are to be selected and tailored to generate the most relevant
test data possible.
To support the tailoring process described in Part One, each test method in Part Two contains some environmental
data and references, and identifies tailoring opportunities for the particular method. Some methods afford a wide
latitude for tailoring; some can be tailored up to established limits, and some have relatively few tailoring options.
Whenever possible, each method contains background rationale to help determine the appropriate level of tailoring.
Each test method supports the test engineer and test facility operator by describing preferred laboratory test facilities
and methodologies. Any specific tailoring information and values contained in these test methods should be
supplanted by more up-to-date or program-specific information when available.
When applied properly, the environmental management and engineering processes described in this standard can be
of enormous value in generating confidence in the environmental worthiness and overall durability of materiel
system design. However, it is important to recognize that there are limitations inherent in laboratory testing that
make it imperative to use proper caution and engineering judgement when extrapolating these laboratory results to
results that may be obtained under actual service conditions. In many cases, real-world environmental stresses
(singularly or in combination) cannot be duplicated practically or reliably in test laboratories. Therefore, users
MIL-STD-810F
1 January 2000
Part One-iii
should not assume that a system or component that passes laboratory tests of this standard also would pass field/fleet
verification trials.
The US Department of Defense would like to thank the following individuals for their contributions toward the
development and publication of MIL-STD-810F:
Anderson, Andy – United Defense Merritt, Ron – US Navy, Naval Air Warfare Center
Bair, Jim – US Air Force, Wright-Patterson AFB Moriceau, Jacques – LRBA, France
Bell, Dwayne – US Air Force, Eglin AFB Moss, Ron – Ordnance Board, United Kingdom
Caruso, Hank – G’s and Degrees Sullivan, Jamie – US Army, Redstone Technical Test Center
Connon, Skip – US Army, Aberdeen Test Center Tanner, Steve – US Navy, Naval Air Warfare Center
Egbert, Herb – US Army Developmental Test
Command Walton, Scott – US Army, Aberdeen Test Center
Galloway, Judy – US Army, Aberdeen Test Center Weaver, Earl – US Air Force, Wright-Patterson AFB
Henry, Connie – US Air Force, Wright-Patterson
AFB Williamson, Roger – US Army Test and Evaluation
Command
MacMartin, Dave – National Defence Headquarters,
Canada
Also, a special thank you to Herb Egbert, Chairman of the MIL-STD-810 revision committee for his leadership,
dedication, and perseverance in revising this document.
This standard is intended to be a "living document" that will be updated as new concepts, technologies, and
methodologies evolve. Address beneficial comments (recommended changes, additions, deletions) along with clear,
supporting rationale and any pertinent data that may improve this document to: ASC/ENOI, Bldg. 560, 2530 Loop
Road West, Wright-Patterson AFB OH 45433-7101. Use the Standardization Document Improvement Proposal
(DD Form 1426) appearing at the end of this document or send a letter detailing the paragraph/page number,
recommended wording, and reason/rationale for the recommendation.
Address technical questions to the following offices:
Aeronautical Systems Center, ATTN: ASC/ENFS, 2530 Loop Road West, Wright-Patterson AFB OH 45433-7101;
Commercial Tel: (937) 255-8357/8596; DSN 785-8357/8596; Fax: (937) 476-4546.
Naval Air Warfare Center, Weapons Division, ATTN: Code 476400D, China Lake CA 93555-6100; Commercial
Tel: (619) 939-4667; DSN 437-4667; Fax: (619) 939-1065.
US Army Developmental Test Command, 314 Longs Corner Road, ATTN: CSTE-DTC-TT-M, Aberdeen Proving
Ground MD 21005-5055; Commercial Tel: (410) 278-1476; DSN 298-1476; Fax: (410) 278-4243/1475.
摘要:

MIL-STD-810 REV F 是美国国防部发布的一项关键军事标准,专注于对装备与系统进行环境工程考量与实验室测试。该标准详细规定了温度、湿度、振动、冲击、沙尘、盐雾、低气压、太阳辐射等多种环境应力下的测试方法与条件,旨在评估并验证设备在严苛战场环境中的耐久性与可靠性。REV F 版本在测试设计、测试序列以及实验室与现场数据关联方面引入了显著更新,为军事和商业产品开发提供了系统化的环境适应性验证框架,广泛适用于航空航天、防御装备、电子设备及通信系统的设计与认证过程。

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作者:老杨树 分类:国外协会 价格:20星币 属性:539 页 大小:5.54MB 格式:PDF 时间:2024-10-07

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