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角钢系列相关标准参考信息

GB/T 23481-2009 数控角钢加工生产线
简介:本标准规定了数控角钢加工生产线的设计、制造和验收的基本要求。本标准适用于对各种角钢进行冲孔或钻孔、打字、定长切断等加工用的数控联合生产线(以下简称角钢线)。
信息:ICS:25.120.10 CCS:J62 发布:2009-04-02 实施:2009-11-01

DIN 6625-1-2013 闪点大于55℃地上存储液体用角钢储罐.第1部分:安装和试验原理
简介:
信息:ICS:23.020.10 CCS:J74 发布:2013-06 实施

KS D ISO 657-1-2004 热轧型钢.第1部分:等边角钢.尺寸
简介:이 규격은 열간 압연된 등각 앵글의 치수에 대하여 규정한다.
信息:ICS:77.140.70 CCS:H44 发布:2004-12-28 实施:2004-12-28

GB/T 905-1994 冷拉圆钢、方钢、六角钢 尺寸、外形、重量及允许偏差
简介:本标准规定了冷拉圆钢、方钢、六角钢的尺寸、外形、重量及允许偏差。 本标准适用于尺寸为3~80mm的冷拉圆钢、方钢、六角钢。
信息:ICS:77.140.70 CCS:H40 发布:1994-12-22 实施:1995-10-01

YD/T 757-2013 角钢类通信塔技术条件
简介:本标准规定了角钢类通信塔的生产制造、检验规则、包装标记、存储运输等技术要求。本标准适用于构件主要采用角钢制造和紧固件连接且热浸镀锌防腐的移动通信塔、微波通信塔等通信塔及类似钢结构的设计和制造。
信息:ICS:33.060.99 CCS:M42 发布:2013-04-25 实施:2013-06-01

KS D ISO 657-1-2004 热轧型钢.第1部分:等边角钢.尺寸
简介:이 규격은 열간 압연된 등각 앵글의 치수에 대하여 규정한다.
信息:ICS:77.140.70 CCS:H44 发布:2004-12-28 实施:2004-12-28

GB/T 705-1989 热轧六角钢和八角钢尺寸、外形、重量及允许偏差
简介:本标准规定了热轧六角钢和八角钢尺寸及允许偏差,重量、外形、长度及允许偏差。 本标准适用于对边距离为8~70mm的热轧六角钢和对边距离为16~40mm的热轧八角钢。
信息:ICS:77.140.70 CCS:H44 发布:1989-03-22 实施:1990-01-01

ASTM A577/A577M-90(2012) 钢板超声波角钢梁检验标准规范
简介:
信息:ICS:77.040.20 CCS发布:2012-03-01 实施

KS D ISO 657-5-2004(2009) 热轧型钢第5部分:等边角钢和不等边角钢公制和英制系列公差
简介:
信息:ICS:77.140.70 CCS发布:2004-12-28 实施

GB/T 9787-1988 热轧等边角钢 尺寸、外形、重量及允许偏差
简介:本标准规定了热轧等边角钢的尺寸、外形、重量及允许偏差。 本标准适用于热轧等边角钢。
信息:ICS:77.140.70 CCS:H44 发布:1988-09-05 实施:1989-07-01

ASTM D6255/D6255M-05(2011) 钢或铝开槽角钢箱的标准规范
简介:
信息:ICS:55.160 CCS发布:2011-04-01 实施

KS D ISO 657-5-2004 热轧型钢.第5部分:等边角钢和不等边角钢.米制和英制系列的公差
简介:이 규격은 1976년 제1판으로 발행된 ISO 657-5 Hot-rolled steel
信息:ICS:77.140.70 CCS:H44 发布:2004-12-28 实施:2004-12-28

GB/T 4227-1984 不锈钢热轧等边角钢
简介:本标准适用于不锈钢热轧等边角钢(以下简称角钢)。
信息:ICS:77.140.70 CCS:H44 发布:1984-03-26 实施:1985-03-01

KS D 3864-2010 抗震建筑结构用冷轧角钢管
简介:이 표준은 주로 내진 건축 구조물의 기둥재로 사용되는 각형 강관(이하 각형 강관이라 한다.
信息:ICS:77.140.75 CCS:H46 发布:2010-11-22 实施:2010-11-22

KS D ISO 657-1-2004(2009) 热轧型钢第1部分:等边角钢尺寸
简介:
信息:ICS:77.140.70 CCS发布:2004-12-28 实施

T/CASME 118-2022 电网角钢安全使用和技术规范
简介:本文件规定了电网角钢的分类、订货、基本要求、技术要求、试验方法、检验规则、质量证明书、标志和包装技术要求。
信息:ICS:77.140.70 CCS:C331 发布:2022-11-18 实施:2022-11-18

KS D 3864-2010 抗震建筑结构用冷轧角钢管
简介:이 표준은 주로 내진 건축 구조물의 기둥재로 사용되는 각형 강관(이하 각형 강관이라 한다.
信息:ICS:77.140.75 CCS:H46 发布:2010-11-22 实施:2010-11-22

DIN 1022-2004 钢棒.热轧方形底部等边角钢(LS 钢).尺寸、重量和公差
简介:The project applies to hot rolled equal flange sharp-edged angle steel.
信息:ICS:77.140.70 CCS:H44 发布:2004-04 实施

T/SSEA 0240-2022 塔式起重机用热轧角钢
简介:本文件规定了塔式起重机用热轧角钢的分类和牌号表示方法、订货内容、尺寸、外形、重量、技术要求、试验方法、检验规则、包装、标志和质量证明书。本文件适用于塔式起重机用热轧角钢(以下简称角钢)。
信息:ICS:77.140.70 CCS:C314 发布:2022-11-10 实施:2022-11-24

ASTM E587-2010 超声波角钢梁接触试验标准实施规程
简介:An electrical pulse is applied to a piezoelectric transducer which converts electrical to mechanical energy. In the angle-beam search unit, the piezoelectric element is generally a thickness expander which creates compressions and rarefactions. This longitudinal (compressional) wave travels through a wedge (generally a plastic). The angle between transducer face and the examination face of the wedge is equal to the angle between the normal (perpendicular) to the examination surface and the incident beam. Fig. 1 shows the incident angle x03D5;i, and the refracted angle x03D5;r, of the ultrasonic beam. When the examination face of the angle-beam search unit is coupled to a material, ultrasonic waves may travel in the material. As shown in Fig. 2, the angle in the material (measured from the normal to the examination surface) and mode of vibration are dependent on the wedge angle, the ultrasonic velocity in the wedge, and the velocity of the wave in the examined material. When the material is thicker than a few wavelengths, the waves traveling in the material may be longitudinal and shear, shear alone, shear and Rayleigh, or Rayleigh alone. Total reflection may occur at the interface. (Refer to Fig. 3.) In thin materials (up to a few wavelengths thick), the waves from the angle-beam search unit traveling in the material may propagate in different Lamb wave modes. All ultrasonic modes of vibration may be used for angle-beam examination of material. The material forms and the probable flaw locations and orientations determine selection of beam directions and modes of vibration. The use of angle beams and the selection of the proper wave mode presuppose a knowledge of the geometry of the object; the probable location, size, orientation, and reflectivity of the expected flaws; and the laws of physics governing the propagation of ultrasonic waves. Characteristics of the examination system used and the ultrasonic properties of the material being examined must be known or determined. Some materials, because of unique microstructure, are difficult to examine using ultrasonics. Austenitic material, particularly weld material, is one example of this material condition. Caution should be exercised when establishing examination practices for these type materials. While examination may be possible, sensitivity will be inferior to that achievable on ferritic materials. When examining materials with unique microstructures, empirical testing should be performed to assure that the examination will achieve the desired sensitivity. This may be accomplished by incorporating known reflectors in a mock up of the weld or part to be examined. Angle-Beam Longitudinal Waves8212;As shown in Fig. 4, angle-beam longitudinal waves with refracted angles in the range from 1 to 40x00B0; (where coexisting angle-beam shear waves are weak, as shown in Fig. 3) may be used to detect fatigue cracks in axles and shafts from the end by direct reflection or by corner reflection. As shown in Fig. 5, with a crossed-beam dual-transducer search unit configuration, angle-beam longitudinal waves may be used to measure thickness or to detect reflectors parallel to the examination surface, such as laminations. As shown in Fig. 6, reflectors with a major plane at an angle up to 40x00B0; with respect to the examination surface, provide optimum reflection to an angle-beam longitudinal wave that is normal to the plane of the reflector. Angle-beam longitudinal waves in the range from 45 to 85x00B0; become weaker as the angle increases; at the same time, the coexisting angle-beam shear waves become stronger. Equal amplitude angle beams of approximately 55x00B0;
信息:ICS:77.040.20 CCS:H26 发布:2010 实施

AS/NZS 2699.3-2002 砖石结构内嵌部件.门楣和座角钢(耐久性要求)
简介:Sets out the requirements for methods of testing the durability performance of steel lintel and shelf angles that are built into masonry.
信息:ICS:21.060.99;91.080.30 CCS发布:2002-11-07 实施

T/SSEA 0218-2022 质量分级与“领跑者”评价要求 特高压输电塔用角钢
简介:本文件规定了特高压输电塔用角钢质量及企业标准水平评价的评价指标体系和评价方法及等级划分。本文件适用于特高压输电塔用角钢(以下简称角钢)质量及企业标准水平评价。相关机构开展质量分级和企业标准水平评估、“领跑者”评价以及相关认证时可参照使用,企业在制定企业标准时也可参照本文件。
信息:ICS:77.140.60 CCS:C314 发布:2022-08-10 实施:2022-08-11

KS D 3690-2009 冷轧不锈钢等边角钢
简介:이 표준은 냉간 성형 스테인리스강 등변 ㄱ형강(이하 ㄱ형강이라 한다.)에 대하여 규정한다.
信息:ICS:77.140.20 CCS:H44 发布:2009-07-09 实施:2009-07-09

SAE AS 9525A-2001 UNS G87400、最小125 KSI、.6250-18 UNJF-3A镀镉六角钢机制螺栓
简介:
信息:ICS:49.030.20 CCS:V20 发布:2001-12-01 实施

T/QGCML 194-2021 输电线路角钢塔技术条件
简介:本文件规定了输电线路角钢塔制造过程中的技术要求、试验方法、检验规则、标志、包装、运输、贮存和移交要求。本文件适用于输电线路角钢塔制造的电力设备企业。
信息:ICS:29.240.99 CCS:D4420 发布:2021-11-26 实施:2021-11-26

KS D 3694-2009 热轧不锈钢等边角钢
简介:이 표준은 열간 압연 스테인리스강 등변 ㄱ형강(이하 형강이라 한다.)에 대하여 규정한다.
信息:ICS:77.140.70 CCS:H44 发布:2009-04-21 实施:2009-04-21

ASME SEC III D1 MA APP NF-II-2001 附录NF-II.单角钢的设计
简介:Boiler and Pressure Vessel.Appendix NF-II Design of Single Angle Members
信息:ICSCCS:H40;F69 发布:2001-07-01 实施

T/QGCML 195-2021 输电线路角钢塔安装售后服务规范
简介:本文件规定了角钢塔售后服务的术语定义、责任和义务、售后服务机构的基本要求、服务基础、运输安装、维修服务要求、保修要求、顾客满意度要求。本文件适用于生产角钢塔的企业,及其授权的服务机构等开展售后服务工作和管理活动。
信息:ICS:03.080.01 CCS:O8290 发布:2021-11-26 实施:2021-11-26

KS D 3694-2009 热轧不锈钢等边角钢
简介:이 표준은 열간 압연 스테인리스강 등변 ㄱ형강(이하 형강이라 한다.)에 대하여 규정한다.
信息:ICS:77.140.70 CCS:H44 发布:2009-04-21 实施:2009-04-21

ASTM A577/A577M-90(1996) 钢板超声波角钢梁检验标准规范
简介:
信息:ICSCCS发布:2001-01-01 实施

T/SSEA 0162-2021 特高压输电塔用角钢
简介:本文件规定了特高压输电塔用角钢的分类和牌号表示方法、订货内容、尺寸、外形、重量、技术要求、试验方法、检验规则、包装、标志和质量证明书。本文件适用于特高压输电塔用角钢(以下简称角钢)。
信息:ICS:77.140.70 CCS:C314 发布:2021-11-22 实施:2021-11-23

KS D 3694-2009(2019) 热轧不锈钢等边角钢
简介:
信息:ICSCCS发布:2009-04-21 实施

ASTM A577/A577M-90(2001) 钢板超声波角钢梁检验标准规范
简介:
信息:ICS:77.040.20 CCS发布:2001-01-01 实施

T/JZTX 0003-2021 角钢和板件包装作业规范
简介:1.分检首先分区划号,将包装区域划分为角钢区和板件区。根据包装清单在角钢区和板件区内标明塔型、呼高、包号、件号、数量,并清晰的写在场地上。根据塔型、呼高、包号、件号、数量,对零件进行分检,然后放置到地面上写的对应件号位置,同一件号上下叠放,叠放数量不超过10件,以便于清点件数。分料要求钢印号朝向一致,且两端平齐。分检过程中不得混件。分检后,不同件号之间须保持合理间距(大于层数*肢宽),防止混件。肢宽不小于100mm的角钢件按件号分检后,应在工件上对照包装清单标注包号,包号标注为”包序号/总包数”形式,方便后续包装工作。分检之后应自检、专检。2.抽料从分检好的件号里面抽出每基塔需要的数量,抽出长度应不少于50cm,确保抽出的料端部平齐。根据包装清单对抽出件的数量及加工工艺(切角、焊接、压扁、清根、铲背等)完整性进行复核。3.标签根据包装清单在不干胶标签上规范填写塔型、包号、件号、数量。将标签粘贴于零件钢印号左侧或右侧10cm空白区域处。粘贴标签时应同时复核标签上的件号、数量等信息与抽出零件的件号、数量是否一致。4.巡检每班组应安排两名巡检员进行巡检,巡检项目包含但不限于塔型、包号、件号、数量、工艺完整性。公司质检应严格执行巡检制度,巡检要求同班组巡检。5.分拣记录分拣之后应填写分拣记录,记录项包括工程名、塔型、呼高、包数、塔位号、日期、数量、缺件数量。如有缺件,应在缺件数量处注明缺件件号与数量;若无缺件则注明“无”字。分拣记录应由车间自检员、专职检验员和记录人签字。6.打包须使用L型夹具进行打包。应包装成长方体形状,大肢宽角钢在外,小肢宽角钢在内,包宽应大于包高。每包重量宜控制在2.5吨至3.0吨。打包时应预留出适当长度和肢宽的角钢,用于包顶面,以保证整包整齐、牢固、美观无法包装成长方体形状的角钢件,应尽量保证牢固、整齐。7.补料须一次性补齐缺失件,不得二次补料。补料应先放置于缺料包一侧,经确认无误后方可添加到缺料包并更新分拣记录。补料时应通知质检进行相关检验,避免发生质量问题。8.包材除客户特殊要求外,打包宜采用规格为0.9mm×32mm的钢带,和规格为1.20cm的打包扣;应使用气动打包机进行打包;打包前须用毛毡包裹(无特殊要求时可采用红色无纺布)。在距离端部40cm处用两根打包带固定,中间根据包长平均分布打包带。9.喷码与入库应在成品包双道打包带处进行喷码。入库人员检查喷码是否正确,入库结束后检查是否有缺料或者多入库现象;入库单必由质检部签字和物流部签收。
信息:ICS:55.020 CCS:C419 发布:2021-01-16 实施:2021-01-21

YB/T 4163-2007 铁塔用热轧角钢
简介:本标准规定了铁塔用热轧角钢的分类、牌号、订货内容、尺寸、外形、重量及允许偏差、技术要求、试验方法、检验规则、包装、标志及质量证明书。 本标准适用于铁塔用热轧角钢,以下简称角钢
信息:ICS:77.140.70 CCS:H44 发布:2007-03-06 实施:2007-09-01

ASTM D6255/D6255M-99 钢或铝开槽角钢箱的标准规范
简介:
信息:ICS:55.160 CCS发布:1999-10-10 实施

YB/T 4835-2020 铁塔用热轧耐候角钢
简介:
信息:ICS:77.140.60 CCS:H44 发布:2020-12-09 实施:2021-04-01

ASTM A577/A577M-90(2007) 钢板超声波角钢梁检验标准规范
简介:
信息:ICS:77.040.20 CCS发布:2007-03-01 实施

JIS G4317-1999 热轧不锈钢等边角钢
简介:
信息:ICS:77.140.20;77.140.70 CCS:H44 发布:1999-06-20 实施

T/CEC 352-2020 输电线路铁塔用热轧等边角钢
简介:本标准规定了热轧等边角钢的分类、牌号、订货内容、尺寸、外形、重量及允许偏差、技术要求、试验方法、检验规则、包装、标志、质量证明书等内容。本标准适用于输电线路铁塔用热轧等边角钢。
信息:ICS:77.140.70 CCS:D4420 发布:2020-06-30 实施:2021-09-18

NF L24-514-2007 航空航天系列.二硫化钼润滑的耐热自锁六角钢螺母.等级:1100 MPa(室温)/315℃
简介:
信息:ICS:49.030.30 CCS:V20 发布:2007-01-01 实施:2007-01-05

CNS 7794-1998 热轧不锈钢等边角钢
简介:
信息:ICS:77.140.10 CCS发布:1998-06-25 实施

T/CEC 352-2020 输电线路铁塔用热轧等边角钢
简介:
信息:ICS:77.140.70 CCS:H40/59 发布:2020-06-30 实施:2020-10-01

NF L24-515-2007 航空航天系列.二硫化钼润滑的镀镉自锁六角钢螺母.等级:1100 MPa(室温)/235℃
简介:
信息:ICS:49.030.30 CCS:V20 发布:2007-01-01 实施:2007-01-05

CNS 10806-1998 冷作成形不锈钢等边角钢
简介:
信息:ICS:77.140.20 CCS发布:1998-06-25 实施

ASTM D6255/D6255M-18 钢或铝开槽角钢箱的标准规范
简介:
信息:ICS:55.160 CCS发布:2018-03-01 实施

YB/T 5309-2006 不锈钢热轧等边角钢
简介:
信息:ICSCCS:H44 发布:2006-07-27 实施:2006-10-11

NEN-EN 10056-2-1994 等边和不等边结构角钢.第2部分:形状公差
简介:Dit deel van deze Europese norm geldt voor toleranties op vorm, afmetingen en massa van warmgewalste gelijkzijdige en ongelijkzijdige hoekstaven van constructiestaai. De nominale afmetingen van deze hoekstaven zijn gegeven in EN 10056-1. Deze toleranties zijn niet van toepassing op gelijkzijdige en ongelijkzijdige hoekstaven van corrosievast staal.OPMERKING:Tot EN 10056-1 is gepubliceerd kunnen of de EURONORMEN 56 en 57 of overeenkomstige nationale normen worden gebruikt.
信息:ICSCCS发布:1994-02 实施:1994-02

ASTM A577/A577M-17 钢板超声波角钢梁检验标准规范
简介:
信息:ICS:77.040.20 CCS发布:2017-11-01 实施

KS D ISO 657-18-2005 热轧型钢.第18部分:造船用的角钢断面(米制系列).尺寸、断面特征和公差
简介:이 규격은 조선용 열간 압연 L 형강의 치수, 단면 특성 및 치수 허용차에 대하여 규정한다
信息:ICS:77.140.70 CCS:H44 发布:2005-05-06 实施:2005-05-06

NBN-EN 10056-2-1994 等边和不等边结构角钢.第2部分:形状和尺寸公差
简介:
信息:ICSCCS发布:1994-01 实施:1994-01

YB/T 4163-2016 铁塔用热轧角钢
简介:
信息:ICS:77.140.70 CCS:H44 发布:2016-10-22 实施:2017-04-01

ASTM D6255/D6255M-05 钢或铝开槽角钢箱的标准规范
简介:
信息:ICS:55.160 CCS发布:2005-05-01 实施

BS EN 10056-2-1993 等边和不等边结构角钢.形状和尺寸公差
简介:This Part of this European Standard specifies tolerances on shape dimensions and mass of hot-rolled structural steel equal and unequal leg angles. The sizes of these angles are given in EN 10056-1. These tolerances do not apply to equal and unequal leg angles produced from stainless steel.NOTE. Until EN 10056-1 is published, either Euronorms 56 and 57 or the corresponding national standards may be used.
信息:ICS:77.140.70 CCS:H44 发布:1993-12-15 实施:1993-12-15

KS D 3593-2014(2019) 槽沟角钢
简介:
信息:ICS:77.140.70 CCS发布:2014-12-31 实施

ASTM D6255/D6255M-2005(2011) 钢制或铝制开缝角钢包装箱的标准规范
简介:1.1 This specification covers the material and fabrication of new reusable metal (slotted angle) crates intended for use as containers for domestic and overseas shipment of lightweight airframe components and lightweight bulky items, not exceeding 3000 lb [1361 kg] for domestic or overseas air and surface shipments. 1.2 Slotted angle crate performance is dependent on its fabricated components; therefore, a variety of types, classes, and styles reflecting varied performance are specified. This specification, however, does not cover slotted angle crate performance under all atmosphere, handling, shipping, and storage conditions. 1.3 If the use of other construction methods or techniques are acceptable and permitted (see 5.1.12), the resulting packaging systems shall be of equal or better performance than would result from the use of these specified materials and procedures. The appropriate distribution cycle specified in Practice D4169 can be used to develop comparative procedures and criteria. 1.4 The values stated in either inch-pound or SI units are to be regarded separately as standard. Within the text, the SI units are shown in brackets. The values stated in each system are not exact equivalents; therefore, each system must be used independently of the other. Combining values from the two systems may result in nonconformance with the standard. See for conversion of units. 1.5 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 the standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.
信息:ICS:55.160 CCS:A85 发布:2005 实施

BS EN 10056-2-1993 (1999) 等边和不等边结构角钢.形状和尺寸公差
简介:
信息:ICSCCS发布:1993-01-01 实施:1993-01-01

DIN 6625-2-2013 闪点大于55℃地上存储液体用角钢储罐.第2部分:计算
简介:
信息:ICS:23.020.10 CCS:J74 发布:2013-06 实施

KS D ISO 657-5-2004 热轧型钢.第5部分:等边角钢和不等边角钢.米制和英制系列的公差
简介:이 규격은 1976년 제1판으로 발행된 ISO 657-5 Hot-rolled steel
信息:ICS:77.140.70 CCS:H44 发布:2004-12-28 实施:2004-12-28

EN 10056-2-1993 等边和不等边结构角钢.第2部分:形状和尺寸公差
简介:This part of This European Standard specifies tolerances on shape dimensions and mass of hot-rolled structural steel equal and unequal leg angles. The sizes of these angles are given in EN 10056-1. These tolerances do not apply to equal and unequal leg angles produced from stainless steel.
信息:ICS:77.140.70 CCS发布:1993-01-01 实施

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