ABS 165-2009 APPLICATION OF HIGHER-STRENGTH HULL STRUCTURAL THICK STEEL PLATES IN CONTAINER CARRIERS《集装箱运输船上较高强度船体结构厚钢板的应用指南》.pdf
《ABS 165-2009 APPLICATION OF HIGHER-STRENGTH HULL STRUCTURAL THICK STEEL PLATES IN CONTAINER CARRIERS《集装箱运输船上较高强度船体结构厚钢板的应用指南》.pdf》由会员分享,可在线阅读,更多相关《ABS 165-2009 APPLICATION OF HIGHER-STRENGTH HULL STRUCTURAL THICK STEEL PLATES IN CONTAINER CARRIERS《集装箱运输船上较高强度船体结构厚钢板的应用指南》.pdf(66页珍藏版)》请在麦多课文档分享上搜索。
1、 Guide for Application of Higher-Strength Hull Structural Thick Steel Plates in Container Carriers GUIDE FOR APPLICATION OF HIGHER-STRENGTH HULL STRUCTURAL THICK STEEL PLATES IN CONTAINER CARRIERS FEBRUARY 2009 (Updated February 2014 see next page) American Bureau of Shipping Incorporated by Act of
2、Legislature of the State of New York 1862 Copyright 2009 American Bureau of Shipping ABS Plaza 16855 Northchase Drive Houston, TX 77060 USA Updates February 2014 consolidation includes: February 2012 version plus Notice No. 2 and Corrigenda/Editorials February 2012 consolidation includes: January 20
3、12 version plus Notice No. 1 January 2012 consolidation includes: April 2010 version plus Corrigenda/Editorials April 2010 consolidation includes: February 2009 version plus Corrigenda/Editorials ABSGUIDE FOR APPLICATION OF HIGHER-STRENGTH THICK HULL STRUCTURAL STEEL PLATES IN CONTAINER CARRIERS .20
4、09 iii Foreword Foreword The drive for efficient sea-borne container transportation has, over the last several decades, led to some significant growth in container carrier size. Application of hull structural thick steel plates in the upper flange of large container carriers becomes a natural choice
5、 for the hull structure to meet the required hull girder strength. Steel plates well in excess of 51 mm* are commonly found in large container carriers. More recently, one technical innovation that is having a significant impact on the next generation of container carriers is the application of hull
6、 structural thick steel plates with a minimum yield stress of 460 N/mm2(H47). In addition to the ABS Rules for Building and Classing Steel Vessels (Steel Vessel Rules), this Guide is intended to provide the supplementary requirements for the application of higher-strength hull structural thick steel
7、 plates, greater than 51 mm, in large container carriers. For thick steel plates with a minimum yield stress of 390 N/mm2(H40), the requirements reflect a large and successful body of experience with large container carriers in service, taking into consideration the first principles structural analy
8、sis methodologies and the experience in material, welding, and construction that is being routinely applied to large container carriers. Also in response to the request from industry for the adoption of H47 steel grade, this Guide is developed to provide guidance on the design, construction and oper
9、ation, of container carriers built with such high strength steel plates. After a certain period for trial use, the criteria contained in this Guide will be incorporated and published in the Steel Vessel Rules. ABS encourages and welcomes at any time the submission of comments on this Guide. The requ
10、irements contained in this Guide became effective on 1 January 2009. * Note: The maximum thickness described in 3-1-2/1.3 of the Steel Vessel Rules. iv ABSGUIDE FOR APPLICATION OF HIGHER-STRENGTH THICK HULL STRUCTURAL STEEL PLATES IN CONTAINER CARRIERS .2009 Table of Contents GUIDE FOR APPLICATION O
11、F HIGHER-STRENGTH HULL STRUCTURAL THICK STEEL PLATES IN CONTAINER CARRIERS CONTENTS SECTION 1 Introduction 1 1 General . 1 3 Application . 1 SECTION 2 Hull Structural Design with Higher-Strength Thick Steel Plates 2 1 General . 2 3 Selection of Material Grade 2 5 Hull Girder Strength 2 5.1 Hull Gird
12、er Section Modulus 2 5.3 Hull Girder Moment of Inertia . 3 5.5 Hull Girder Shearing Strength 3 5.7 Hull Girder Torsional Strength . 4 7 Initial Scantling Evaluation 4 9 Total Strength Assessment . 4 11 Structural Details and Fatigue Strength Assessment . 4 TABLE 1 Material Grade 2 TABLE 2 Material F
13、actor Q for Determining Required Hull Girder Section Modulus 3 TABLE 3 Material Factor and Strength 3 SECTION 3 Testing and Certification of Thick Steel Plates with Minimum Yield Stress of 460 N/mm2. 5 1 General Requirements 5 1.1 Testing and Inspection . 5 1.3 Defects 5 1.5 Identification of Materi
14、als . 5 1.7 Manufacturers Certificates 5 1.9 Identification of Specimens and Retests 5 1.11 Standard Test Specimens . 5 1.13 Yield Strength and Elongation . 5 1.15 Permissible Variations in Dimensions 5 1.17 Process of Manufacture . 5 ABSGUIDE FOR APPLICATION OF HIGHER-STRENGTH THICK HULL STRUCTURAL
15、 STEEL PLATES IN CONTAINER CARRIERS .2009 v 1.19 Condition of Supply . 6 1.21 Marking 6 1.23 Surface Finish . 6 1.25 Fine Grain Practice 6 3 Chemical Composition 6 3.1 Chemical Composition 6 3.3 Carbon Equivalent . 6 3.5 Cold Cracking Susceptibility 6 5 Tensile Properties . 8 7 Impact Properties 8 9
16、 Fracture Toughness Testing . 8 TABLE 1 Chemical Properties of H47 Steel . 7 TABLE 2 Carbon Equivalent for H47 Steel 7 TABLE 3 Cold Cracking Susceptibility for H47 Steel . 7 TABLE 4 Tensile Properties of H47 Steel 8 TABLE 5 Impact Properties of H47 Steel . 8 SECTION 4 Welding and Fabrication of Thic
17、k Steel Plates with Minimum Yield Stress of 460 N/mm2. 9 1 General . 9 1.1 Preparation for Welding . 9 1.3 Production Welding . 9 1.5 Butt Welds . 9 1.7 Workmanship Test 9 1.9 Welders . 9 1.11 High Heat Input Welding 9 3 Requirements of Filler Metals . 9 3.1 General 9 3.3 Mechanical Properties . 9 3
18、.5 Application of Filler Metal 9 5 Approval of Welding Procedures 10 5.1 General 10 5.3 Approved Filler Metals . 10 5.5 Test Requirements 10 7 Weldability Test of Base Metal . 10 7.1 General 10 7.3 Tensile Properties . 10 7.5 Notch Toughness 10 TABLE 1 Applicable Filler Metals . 10 TABLE 2 Toughness
19、 Requirements of Welds 10 TABLE 3 Toughness Requirements of Welds 11 vi ABSGUIDE FOR APPLICATION OF HIGHER-STRENGTH THICK HULL STRUCTURAL STEEL PLATES IN CONTAINER CARRIERS .2009 SECTION 5 Prevention of Fatigue and Fracture Failure in Thick Steel Plates with Minimum Yield Stress of 460 N/mm212 1 Gen
20、eral . 12 3 Nondestructive Inspection of Welds . 12 3.1 General 12 3.3 New Construction 12 3.5 Vessels in Service . 12 3.7 Requirements for Nondestructive Test 12 5 Prevention of Fatigue Failure 13 5.1 Fatigue Strength Assessment 13 5.3 Fatigue Strength Improvement of Welds . 13 7 Prevention of Frac
21、ture Failure 14 7.1 General 14 7.3 Crack Stop Hole. 14 7.5 High Toughness Weld . 14 7.7 Block Joint Shift . 15 7.9 Insert Plate 16 9 Hull Girder Residual Strength . 17 FIGURE 1 Grinding of Butt Weld 13 FIGURE 2 Crack Stop Holes 14 FIGURE 3 High Toughness Weld . 15 FIGURE 4 Block Joint Shift . 16 FIG
22、URE 5 Insert Plate 16 APPENDIX 1 Full Ship Finite Element Based Fatigue Strength Assessment of Upper Flange Structure 18 1 General . 18 1.1 Note . 18 1.3 Applicability 18 1.5 Loadings 18 1.7 Effects of Corrosion . 18 1.9 Format of the Criteria . 18 3 Connections to be Considered for the Fatigue Stre
23、ngth Assessment. 19 3.1 General 19 3.3 Guidance on Locations 19 3.5 Fatigue Classification . 19 5 Fatigue Damage Calculation . 30 5.1 Assumptions 30 5.3 Criteria . 30 5.5 Long Term Stress Distribution Parameter, 30 5.7 Fatigue Damage 31 7 Fatigue Inducing Loads and Load Combination Cases 34 7.1 Gene
24、ral 34 7.3 Wave-induced Loads . 34 7.5 Combinations of Load Cases for Fatigue Assessment 34 ABSGUIDE FOR APPLICATION OF HIGHER-STRENGTH THICK HULL STRUCTURAL STEEL PLATES IN CONTAINER CARRIERS .2009 vii 9 Determination of Wave Induced Stress Range 35 9.1 General 35 9.3 Hatch Corners . 35 11 Hot Spot
- 1.请仔细阅读文档,确保文档完整性,对于不预览、不比对内容而直接下载带来的问题本站不予受理。
- 2.下载的文档,不会出现我们的网址水印。
- 3、该文档所得收入(下载+内容+预览)归上传者、原创作者;如果您是本文档原作者,请点此认领!既往收益都归您。
下载文档到电脑,查找使用更方便
10000 积分 0人已下载
下载 | 加入VIP,交流精品资源 |
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- ABS1652009APPLICATIONOFHIGHERSTRENGTHHULLSTRUCTURALTHICKSTEELPLATESINCONTAINERCARRIERS 集装箱 运输 船上 强度 船体

链接地址:http://www.mydoc123.com/p-400655.html