共找到 178 条与 其他管道部件 相关的标准,共 12 页
Grey cast-iron coarse filters - DN 40 to DN 200, nominal pressure PN 2,5 - Compilation and dimensions
Grey cast-iron coarse filters - Part 1: Enclosures, straight passage
Grey cast-iron coarse filters - Part 2: Angle passage
Grey cast-iron coarse filters - Strainer baskets
Clamping plates for the suspension of pipes on I and IPB beams, with CD-ROM
本规范规定了石油化工自动控制工程仪表及测量管道的伴热和绝热设计的要求。本规范适用于石油炼制、石油化工及以煤为原料制取燃料和化工产品工厂的新建、扩建和改建工程的自动控制仪表及测量管道的伴热和绝热设计。
Design specification for tracing and insulation of instrument and piping in petrochemical industry
本标准规定了螺旋杂质分离器(以下简称“杂质分离器”)的术语和定义、产品型号命名、要求、试验方式、检验规则、标志、包装、运输、贮存。本标准适用于运动黏度不大于40 mm/s的液体介质系统中铜合金制、碳钢、不锈钢制杂质分离器。杂质分离器的参数范围为:a) 公称通径不大于DN750,额定温度不大于180℃,公称压力PN不大于2.5 MPa的法兰连接和对焊连接杂质分离器。b) 公称通径不大于DN50,额定温度不大于180 ℃,公称压力PN不大于2.5 MPa的螺纹连接杂质分离器。
Dirt separator
本标准规定了螺旋空气分离器(以下简称“空气分离器”)的术语和定义、产品型号命名、要求、试验方式、检验规则、标志、包装、运输、贮存。本标准适用于运动黏度不大于40 mm/s的液体介质系统中铜合金制、碳钢、不锈钢制空气分离器,空气分离器的参数范围为:a) 公称通径不大于DN750,额定温度不大于180 ℃ ,公称压力PN不大于2.5 MPa的法兰连接和对焊连接空气分离器。b) 公称通径不大于DN50,额定温度不大于180℃,公称压力PN不大于2.5 MPa的螺纹连接空气分离器。
Air separator
本标准规定了螺旋空气分离器的术语和定义、产品型号命名、要求、试验方式、检验规则、标志、包装、运输、贮存。
Air separator
本标准规定了螺旋杂质分离器的术语和定义、产品型号命名、要求、试验方式、检验规则、标志、包装、运输、贮存。
Dirt separator
本标准规定了环锁型快开盲板的基本结构和型号、材料、设计、制造、试验方法、铭牌、涂敷、包装与运输、交货文件的要求。本标准适用于设计压力不大于35MPa的管道和压力容器用环锁型快开盲板(以下简称快开盲板),其设计温度范围按钢材和密封圈材料允许的使用温度确定。
Ring lock type quick opening blind plate technical specification
Metal bellows expansion joints for pressure applications
Metal bellows expansion joints for pressure applications; German version EN 14917:2009+A1:2012
This European Standard specifies the requirements for design, manufacture and installation of metal bellows expansion joints for pressure applications, i.e. maximum allowable pressure greater than 0,5 bar.
Metal bellows expansion joints for pressure applications
Metal bellows expansion joints for pressure applications.
Metal bellows expansion joints for pressure applications.
5.1 This practice is for use by designers and specifiers, regulatory agencies, owners, contractors, and inspection organizations who are involved in rehabilitation of pressurized piping systems. 1.1 This standard is intended to establish the minimum criteria necessary for use of a mechanically mixed, blended, epoxy barrier coating (AWWA Class I) that is applied to the interior of 1/2 in. to 36 in. metallic pipe or tube used in pressurized piping systems for corrosion protection and to improve flow rates. There is no restriction as to the developed length of the piping system other than the method of application (“blow through”, spin cast or hand sprayed) and the characteristics of the epoxy coating being applied but the manufacturer’s engineer shall be consulted for any limitations associated with this product, process and its application for the end user. 1.2 The values stated in inch-pound units are to be regarded as standard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and are not considered 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, health, and environmental practices and determine the applicability of regulatory limitations prior to use. 1.4 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.
Standard Practice for Internal Non Structural Epoxy Barrier Coating Material Used In Rehabilitation of Metallic Pressurized Piping Systems
Practice for Internal Non-Structural Epoxy Barrier Coating Material Used In Rehabilitation of Metallic Pressurized Piping Systems
Metal bellows expansion joints for pressure applications; German version EN 14917:2009, Corrigendum to DIN EN 14917:2009-07
Practice for the Sectional Repair of Damaged Pipe by Means of an Inverted Cured-In-Place Liner
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