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GB/T 44125.1-2024 English PDF

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GB/T 44125.1-2024: Railway applications - Calculation of braking performance(stopping, slowing and stationary braking) - Part 1: General algorithms utilizing mean value calculation
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Basic data

Standard ID GB/T 44125.1-2024 (GB/T44125.1-2024)
Description (Translated English) Railway applications - Calculation of braking performance(stopping, slowing and stationary braking) - Part 1: General algorithms utilizing mean value calculation
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard S30
Word Count Estimation 55,598
Date of Issue 2024-05-28
Date of Implementation 2024-12-01
Issuing agency(ies) State Administration for Market Regulation, China National Standardization Administration

GB/T 44125.1-2024: Railway applications - Calculation of braking performance(stopping, slowing and stationary braking) - Part 1: General algorithms utilizing mean value calculation


---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
ICS 45.060 CCSS30 National Standards of People's Republic of China Braking performance calculations for railway applications (stopping, deceleration and Static braking) Part 1.Average calculation method (ISO.20138-1.2018,MOD) Released on 2024-05-28 2024-12-01 implementation State Administration for Market Regulation The National Standardization Administration issued

Table of Contents

Preface III Introduction V 1 Scope 1 2 Normative references 1 3 Terms and Definitions 1 4 Symbols and units of measurement 2 5 Calculation of parking and deceleration distance 7 6 Static brake 20 Appendix A (Informative) Calculation method for parking and deceleration braking distance 30 Appendix B (Informative) Static Braking Calculation Method 31 Appendix C (Informative) Braking Calculation Example 33 Appendix D (Informative) Braking force calculation (non-static) 45 References 48

Foreword

This document is in accordance with the provisions of GB/T 1.1-2020 "Guidelines for standardization work Part 1.Structure and drafting rules for standardization documents" Drafting. This document is Part 1 of GB/T 44125 "Calculation of braking performance for railway applications (parking, deceleration and static braking)". GB/T 44125 has published the following parts. --- Part 1.Average calculation method; --- Part 2.Distribution calculation method. This document is modified to adopt ISO.20138-1.2018 "Calculation of braking performance for railway applications (parking, deceleration and static braking) Part 1. Average Calculation Method. This document has the following structural adjustments compared to ISO.20138-1.2018. --- Deleted the contents of 5.3.7, 5.3.8, 5.4.4 and 5.4.5 in ISO.20138-1.2018 regarding the braking form to be developed; --- Changed the order of formula (43), formula (44) and formula (45); The technical differences between this document and ISO.20138-1.2018 and their reasons are as follows. --- Replaced ISO.20138-2.2019 (see 5.1) with the normative reference GB/T 44125.2.The consistency between the two documents is The degree has been modified to adapt to my country's technical conditions and increase operability; --- The formula for the static braking force transmitted to the wheelset [see formula (77)] has been changed to improve the accuracy of the calculation; --- The formula for average deceleration force of hydraulic brakes [see formula (D.10)] has been changed to improve the accuracy of calculation. The following editorial changes were made to this document. --- Deleted the terminology database statement in Chapter 3 of ISO.20138-1.2018; --- Added the definition of symbols v1 and ECB in Table 1; --- Changed the deceleration force "acting on the unit" in Figure 1 "Overview of the braking system and other forces" to "acting on the vehicle/unit/column" The deceleration force of the "car" has been deleted from the figure corresponding to the braking form to be developed; --- Changed the typical double-side tread brake configuration in Figure 5, the typical single-side brake shoe configuration in Figure 6, and the typical hand-crank parking brake in Figure 17 In dynamic (tread braking) conditions, the variables lc and ld are lc,n and ld,n (see 5.3.2 and 6.7.1); --- Changed the brake cylinder diagram in Figure 7 "Typical tread unit brake" (see 5.3.3); --- Changed the variables Fr,ECB in Figure 13 "Correspondence between typical working current and deceleration force and speed of linear eddy current brake" to FrECB (see 5.4.2); --- Changed Figure 15, the variable b in formula (34), formula (35), formula (36) and formula (39) to b1 (see 5.6.1 and 5.6.2); --- Changed the variable ηface to nface in Figure 19 "Typical hand-operated parking brake (disc brake)" (see 6.7.3); --- Changed the flow chart of parking and deceleration braking distance calculation in Figure A.1; --- Changed the variable τreq,max,ax,i in Figure B.2 "Blocking Braking Calculation Flowchart" to τreq,max,ax,j and the variable τreq,i to τD,req,ax (see B.3); ---Changed the variables lc,i and ld,i in the formula to lc,n and ld,n (see formulas 7, 8, 60, 61); --- Changed the variable irig,ax,i in the static force formula of a brake shoe in the attached table to irig,ax,n [see formula (59) in Table C.3], brake clip The variable Fpad,i in the clamping force formula is Fpad,n [see formula (21) in Table C.6], and the variable ae,MTB in the stopping distance formula is ae,Mg [see formula (49) in Table C.6], the variable Fb,tot in the total force formula for all brake disc surfaces is Fb [see formula (49) in Table C.6] (68)] to be consistent with the main text. --- Changed the description of brake system types in Table C.10. Please note that some of the contents of this document may involve patents. The issuing organization of this document does not assume the responsibility for identifying patents. This document is proposed and coordinated by the National Railway Administration. This document was drafted by. China Academy of Railway Sciences Group Co., Ltd. Locomotive and Rolling Stock Research Institute, China Academy of Railway Sciences Group Co., Ltd. CRRC Corporation Limited Standard Metrology Institute, CRRC Qingdao Sifang Rolling Stock Research Institute Co., Ltd., CRRC Tangshan Locomotive and Rolling Stock Co., Ltd., CRRC Changchun Railway Vehicles Co., Ltd. Datong Railway Vehicles Co., Ltd., CRRC Qingdao Sifang Locomotive and Rolling Stock Co., Ltd., CRRC Zhuzhou Electric Locomotive Co., Ltd., CRRC Qiqihar EL VEHICLES LIMITED. The main drafters of this document are. Jin Zhe, Xu Li, Cai Tian, Shao Lin, Chen Meng, Li Peishu, Zhang Xinyong, Yang Chuan, Zhang Zhongkai, Zhang Yongsheng, Jiang Lianhua, Wang Mingdong.

Introduction

The International Organization for Standardization Railway Application Technical Committee (ISO /TC269) has developed the braking performance calculation (parking, deceleration and static braking) Standards for dynamics. average calculation method and step-by-step calculation method for calculating the braking distance, deceleration, power and energy of railway vehicles. The calculation method of braking performance is in line with China's national conditions and in line with international standards. GB/T 44125 "Calculation of braking performance for railway applications (parking, Deceleration and Static Braking)》, which is planned to consist of two parts. --- Part 1.Average calculation method. The purpose is to use a general algorithm and formula with average value input to calculate all types of trains and The stopping or deceleration distance of a single rolling stock and the corresponding braking power and energy for the corresponding braking distance. --- Part 2.Step-by-step calculation method. The purpose is to use a general algorithm and formula with instantaneous value input to calculate all types of trains and The stopping or deceleration distance of a single rolling stock and the corresponding braking power and energy for the corresponding braking distance. Braking performance calculations for railway applications (stopping, deceleration and Static braking) Part 1.Average calculation method

1 Scope

This document specifies the calculation of the braking system stopping/decelerating distance and the braking power and A general algorithm for energy and other braking performance. This document applies to the calculation of the braking forces generated by common types of braking systems. This document is not applicable to the calculation of parking brake distances in conditions exceeding the available adhesion level (wheel slip). Note 1.This document does not specify specific acceptance criteria such as pass/fail. NOTE 2 This document is not intended as a design guide for the selection of braking systems, nor does it specify performance requirements for braking systems. NOTE 3 If other types of braking systems are used, such as new equipment or new types of equipment, other methods of calculating braking force are used.

2 Normative references

The contents of the following documents constitute the essential clauses of this document through normative references in this document. For referenced documents without a date, only the version corresponding to that date applies to this document; for referenced documents without a date, the latest version (including all amendments) applies to This document. GB/T 44125.2 Calculation of braking performance for railway applications (parking, deceleration and static braking) Part 2.Step-by-step calculation method (GB/T 44125.2-2024,ISO.20138-2-2019, MOD)

3 Terms and definitions

The following terms and definitions apply to this document. 3.1 train An operating group consisting of one or more units. 3.2 Trainset As a fixed marshaling unit for train operation. 3.3 Unit An element of a train formation consisting of one or more vehicles. 3.4 vehicle A single element of a unit. Note. Such as locomotives, passenger cars, freight cars and passenger cars with driver's cabs. 3.5 Retention force A force greater than or equal to the sum of the downhill force due to external forces and gravity.

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