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DIN 4052-4-2006 道路排水沟的混凝土构件和斗式地漏.第4部分:斗式地漏

作者:标准资料网 时间:2024-05-10 20:16:41  浏览:9645   来源:标准资料网
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【英文标准名称】:Concreteelementsandbucketsforroadgullies-Part4:Buckets
【原文标准名称】:道路排水沟的混凝土构件和斗式地漏.第4部分:斗式地漏
【标准号】:DIN4052-4-2006
【标准状态】:现行
【国别】:德国
【发布日期】:2006-05
【实施或试行日期】:
【发布单位】:德国标准化学会(DIN)
【起草单位】:
【标准类型】:()
【标准水平】:()
【中文主题词】:桶;混凝土构件;设计;名称与符号;尺寸;排水;作标记;质量(物质);材料;道路集水沟;排水配件;形状;开槽;街道排水沟;水常规
【英文主题词】:Buckets(containers);Concreteelement;Design;Designations;Dimensions;Drainage;Marking;Mass;Materials;Roadgullies;Seweragefittings;Shape;Slots;Streetdrainage;Waterpractice
【摘要】:Thestandardspecifiesgeneralrequirementsforthedifferentpartsofroadgulliesandgivesinformationforbuckets.
【中国标准分类号】:Q14
【国际标准分类号】:93_080_30
【页数】:12P.;A4
【正文语种】:德语


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基本信息
标准名称:化学品的熔点及熔融范围试验方法 毛细管法
英文名称:Test methods for melting point and melting range of chemical products - Capillary tube method
中标分类: 综合 >> 标志、包装、运输、贮存 >> 标志、包装、运输、贮存综合
ICS分类: 环保、保健与安全 >> 危险品防护
发布部门:中华人民共和国国家质量监督检验检疫总局 国家标准化管理委员会
发布日期:2008-05-12
实施日期:2008-09-01
首发日期:2008-05-12
作废日期:
主管部门:国家标准化管理委员会
提出单位:全国危险化学品管理标准化技术委员会(SAC/TC 251)
归口单位:全国危险化学品管理标准化技术委员会
起草单位:广东出入境检验检疫局、湖北出入境检验检疫局、深圳出入境检验检疫局等
起草人:刘莹峰、翟翠萍、周明辉、李丹、李全忠、郑建国、崔海容、郭坚、李英、黎庆翔
出版社:中国标准出版社
出版日期:2008-07-01
页数:8页
计划单号:20070979-T-469
书号:155066·1-32162
适用范围

本标准为首次发布。本标准规定了化学品的熔点及熔融范围的试验方法——毛细管法。本标准适用于化学品的熔点及熔融范围的测定,是温度范围从高于300℃的通用方法。本标准等同采用JISK0064:1992《化学品熔点和熔程的测定方法》(英文版)。

前言

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引用标准

下列文件中的条款通过本标准的引用而成为本标准的条款。凡是注日期的引用文件,其随后所有的修改单(不包括勘误的内容)或修订版均不适用于本标准,然而,鼓励根据本标准达成协议的各方研究是否可使用这些文件的最新版本。凡是不注日期的引用文件,其最新版本适用于本标准。
GB/T514 石油产品试验用玻璃液体温度计技术条件
GB/T8170 数值修约规则
JISK0050 化学分析通则
JISK0211 分析化学的技术术语(通用部分)
JISR3503 化学分析用的玻璃器皿
日本药典(第12次修订版)

所属分类: 综合 标志 包装 运输 贮存 标志 包装 运输 贮存综合 环保 保健与安全 危险品防护
MIL-STD-1678/3, DEPARTMENT OF DEFENSE STANDARD PRACTICE: FIBER OPTIC CABLING SYSTEMS REQUIREMENTS AND MEASUREMENTS PHYSICAL, MECHANICAL, ENVIRONMENTAL AND MATERIAL MEASUREMENTS (PART 3 OF 5 PARTS) (28 MAY 2010) [SUPERSEDING DOD-STD-1678]., This standard practice provides detailed information and guidance to personnel concerned with ensuring standardization of fiber optic cable topologies (optical fiber cabling and associated components) on military mobile vehicles used in air, land, and sea applications. In general, the requirements and methods specified herein are not identifiable to any specific mobile vehicle class or type, but are intended to standardize and minimize variations in requirements, test setups, test measurement procedures, test sample fabrication configurations, and other aspects that must be addressed for completeness. Where specified, constrains for usage or platform types will be listed. The term 損latform?will be used to refer to the military mobile vehicles in general or, where designated, one particular class (such as 揳ircraft platform? or one particular type within that class (such as 揊-35?.4. In order to provide flexibility in the use and update of the different aspects for requirements and methods, this standard practice is issued in five parts; as follows:Part 1: Design, installation and maintenance requirements. This part addresses design requirements for platforms that use cable harnesses as the means to transport data through optical fiber among communication network and end user equipment. Larger platforms that route trunk cables through cableways and drop cables to the end user (application equipment), can cite applicable requirements in Part 1 of the Standard Practice and augment them with use of MIL-HDBK-2051 and MIL-STD-2042 as appropriate. Surface ships and submarines, are to use MIL-HDBK-2051 and MIL-STD-2042 in lieu of Part 1 of this Standard Practice.Part 2 Optical measurements. Part 2 of this standard practice addresses further details to refine or bound (constrain) the performance of each optical test measurement addressed. The test methods, such as those in a TIA-455 series standard or military standard/specification, are cited already. This part of the standard practice augments the test method in the standard or specification to ensure consistency with setup and measurement procedure. This consistency minimizes variations when comparing data obtained from different test laboratories (including commercial, vendor, Government and Government contractor).Part 3 Physical, mechanical, environmental and material measurements. Part 3 of this standard addresses further details to refine or bound (constrain) the performance of each physical, mechanical, environmental and material test measurement or inspection addressed. The test methods, such as those in a TIA-455 series standard or military standard/specification, are cited already. This part of the standard practice augments the test method to ensure consistency with setup, measurement procedure, data recording/analysis and other factors critical to conducting or evaluating test performance. This consistency minimizes variations when comparing data obtained from different test laboratories (including commercial, vendor, Government and Government contractor).Part 4 Test sample preparation/fabrication requirements. Part 4 of this standard practice addresses further details to refine or bound (constrain) the preparation and fabrication of test samples for the fiber optic components addressed. Fabrication methods, such as those in the Shipboard installation standard, MIL-STD-2042, or in the general series aircraft maintainer抯 manual, NAVAIR 01-1A-505-4/TO 1-1A-14-1, are cited already. This part of the standard practice augments the fabrication method to ensure consistency of the test configurationPart 5 Design phase and legacy measurements. Tests that are more unique to the design phase are addressed in Part 5 of this standard practice. Also, Part 5 addresses some test methods cited in former DOD-STD-1678. The test methods cited in DOD-STD-1678 are considered obsolete; however, a few military specifications and commercial standards still refer to some of the test methods. These test methods are provided in this part of the standard practice with the recommended replacement method. These latter test methods are listed under the constraint that they be used only with the specific military specifications or commercial standards in which they are cited. The intent is to delete each DOD-STD-1678 test method from that standard practice in Part 5 once its reference from military specification or commercial standard is removed.

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