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气缸活塞杆检测项目报价? 解决方案? 检测周期? 样品要求? |
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本标准规定了以液压油(液)或压缩空气为工作介质的液压缸、气缸活塞杆螺纹的常用系列,以及为活塞杆螺纹装配拧紧所设置的扳手面、扳手孔尺寸。本标准适用于液压缸、气缸活塞杆的外部连接螺纹。
本标准给出了用硫化仪测定橡胶混炼胶硫化特性的指南。
本标准规定了气缸活塞杆端球面耳环的安装尺寸,以满足其互换性要求。活塞杆端球面耳环专门设计用于按照ISO 6430、ISO 6432和ISO 15552制造的1 MPa系列气缸,但也可应用在其他方面。安装在气缸活塞杆端的球面耳环,用于气缸在摆动和倾斜运动时的机械连接,其根据符合ISO 6430、ISO 6432和ISO 15552中规定的气缸内径和压力所产生的大作用力设计。
本标准规定了气缸活塞杆端环叉的安装尺寸以满足互换性要求。这类气缸活塞杆端环叉主要用于按照ISO 6430、ISO 6432和ISO 15552制造的1 MPa系列气缸,但也可应用于其他方面。安装在气缸活塞杆端的环叉是用于气缸力的机械传输。气缸活塞杆端环叉根据符合ISO 6430、ISO 6432和ISO 15552规定的气缸内径和压力所产生的大作用力设计。
本标准规定了井内悬吊式气动抓岩机的定义、基本参数、技术要求、试验方法、检验规则和标志、包装、运输与贮存。\t本标准适用于井内悬吊式气动抓岩机(以下简称抓岩机)。
本标准规定了ZJL5型横管连续蒸煮器的产品分类、技术要求、试验方法、检验规则、标志、包装、运输、贮存。\t本标准适用于以竹片、竹丝、稻草、麦草、芦苇、荻、蔗渣、棉杆、麻杆等非木纤维为原料生产纸浆(也适用于以木片生产化学机械浆)的ZJL5型横管连续蒸煮器。
本标准规定了石油钻采设备用气动元件(包括控制阀、气缸和辅助元件,以下简称气动元件)的术语和定义、符号,分类与型号编制,基本参数,技术要求,试验方法,检验项目,标志和使用说明书,包装与贮存。本标准适用于以压缩空气为工作介质,公称压力不大于1MPa的气动元件的设计、制造及检验。
本规范适用于新建、扩建和改建的工业与民用建筑及市政工程施工现场机械设备的检查。
本标准规定了气动系统中气缸的技术要求、检验方法、检验规则及标识、包装及贮存等、本标准适用于以压缩空气为工作介质,在气压传动系统中使用的双作用、缸径为6 mm~320 mm的活塞式普通气缸(简称气缸)、
本标准规定了气缸用QY形、C形、CK形、J形、ZHM形及QH形密封圈的安装沟槽型式、尺寸和公差。 本标准适用于安装符合JB/T 6657标准中所规定的密封圈的安装沟槽型式、尺寸和公差。
本标准规定了气动元件和气动辅件型号的编制方法。本标准适用于以压缩空气或性能相当的其他工作介质的一般用途的气动元件和气动辅件。
本标准规定了梳齿榫对接机的几何精度及工作精度,并给定了相应的公差,适用于一般用途、普通精度的梳齿榫对接机。本标准只规定机床精度检验,不适用于机床的运动试验(如振动、异常噪声、零部件的爬行等检验)也不适用于机床的特性检验(如速度、进给量等),这些检验一般均在机床精度检验前进行。
本标准规定了气缸用圆形活塞杆的外径规格、材质、表面处理、公差(尺寸公差和形位公差)以及表面质量等要求。本标准适用于气缸用作直线运动的圆形活塞杆。
本标准适用于冶金设备用液压缸、气缸活塞杆外螺纹的防护。也可用于其他缸类活塞杆外螺纹的防护。使用环境温度为-40~+80℃。
This International Standard establishes a basic series for\npiston rod end types for application on cylinders used in hydraulic\nand pneumatic fluid power systems.\nIt specifies thread dimensions and configurations for use with\nhydraulic and pneumatic cylinder piston rod ends, as well as the\ndimensions of wrench flats and hook wrench holes that are sometimes\nnecessary for the assembly of the cylinder piston rod''s threaded\nend to accessories.
Technical Corrigendum 1 to ISO 4395:2009 was prepared by Technical Committee ISO/TC 131, Fluid power systems, Subcommittee SC 3, Cylinders.
This International Standard establishes a basic series for piston rod end types for application on cylinders used in hydraulic and pneumatic fluid power systems. It specifies thread dimensions and configurations for use with hydraulic and pneumatic cylinder piston rod ends, as well as the dimensions of wrench flats and hook wrench holes that are sometimes necessary for the assembly of the cylinder piston rod’s threaded end to accessories.
This International standard specifies general rules and safe requirements for the hydraulic fluid power systems and components used on machinery as defined by ISO 12100:2010,3.1. It deals with all significant hazards associated with hydraulic fluid power systems and specifies the principles to apply in order to avoid those hazards when the systems are put to their intended use.NOTE 1 See Clause 4 and Annex A.The significant hazard noise is incompletely dealt with in this International Standard.NOET 2 Noise emission depends especially on the installation of pneumatic components or systems into machinery.This International Standard applies to the design, construction and modification of systems and their components, also taking into account the following aspects:a) assembly;b) installation;c) adjustment;d) uninterrupted system operation;e) ease and economy of maintenance and cleaning;f) reliable operation in all intended uses;g) energy efficiency; andh) environment.
This International standard specifies general rules and safety requirements for pneumatic fluid power systems and components used on machinery as defined by ISO 12100:2010,3.1. It deals with all significant hazards associated with pneumatic fluid power systems and specifies the principles to apply in order to avoid those hazards when the systems are put to their intended use.NOTE 1 See Clause 4 and Annex A.The significant hazard noise is incompletely dealt with in this International Standard.NOET 2 Noise emission depends especially on the installation of pneumatic components or systems into machinery.This International Standard applies to the design, construction and modification of systems and their components, also taking into account the following aspects:a) assembly;b) installation;c) adjustment;d) uninterrupted system operation;e) ease and economy of maintenance and cleaning;f) reliable operation in all intended uses;g) energy efficiency; andh) environment.This International Standard does not apply to air compressors and the systems associated with air distribution as typically installed in a factory, including gas bottles and receivers.
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