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GB/T 41980.3-2024 English PDF

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GB/T 41980.3-2024: Hydraulic fluid power - Determination method of pressure ripple levels generated in systems and components - Part 3: Hydraulic motors
Status: Valid
Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 41980.3-2024599 Add to Cart 5 days Hydraulic fluid power - Determination method of pressure ripple levels generated in systems and components - Part 3: Hydraulic motors Valid

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Basic data

Standard ID: GB/T 41980.3-2024 (GB/T41980.3-2024)
Description (Translated English): Hydraulic fluid power - Determination method of pressure ripple levels generated in systems and components - Part 3: Hydraulic motors
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: J20
Classification of International Standard: 23.100.10
Word Count Estimation: 30,311
Date of Issue: 2024-09-29
Date of Implementation: 2024-09-29
Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration

GB/T 41980.3-2024: Hydraulic fluid power - Determination method of pressure ripple levels generated in systems and components - Part 3: Hydraulic motors


---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 23.100.10 CCSJ20 National Standard of the People's Republic of China Pressure fluctuations in hydraulic transmission systems and components Determination methods Part 3.Hydraulic motors Released on 2024-09-29 Implementation on September 29, 2024 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 subscripts 2 5 Instruments 4 6 Installation of hydraulic motor 4 7 Test conditions 5 8 Test bench 5 9 Test Procedure 9 10 Test Report 11 11 Marking instructions (refer to this document) 13 Appendix A (normative) Error of mean value and measurement level 14 Appendix B (Normative) Data Processing Algorithm 15 Reference 23

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 3 of GB/T 41980 "Methods for determining pressure fluctuations in hydraulic transmission systems and components". The following parts have been published. --- Part 1.Hydraulic pumps (precision method); --- Part 2.Hydraulic pumps (simplified method); --- Part 3.Hydraulic motors. This document is modified from ISO 10767-3.1999 "Determination of pressure fluctuations in hydraulic transmission systems and components - Part 3.Motors method". This document has the following structural adjustments compared to ISO 10767-3.1999. --- Chapters 5 to 9 correspond to Chapters 4 to 8 of ISO 10767-3.1999, and the numbers of the subsequent clauses shall be adjusted accordingly. 8.7.1, 8.11.1, 9.3.1 and 9.4.1 correspond to the suspension sections 7.7, 7.11, 8.3 and 8.4 of ISO 10767-3.1999 respectively; --- Chapter 10 corresponds to Chapter 9 of ISO 10767-3.1999, of which 10.1 corresponds to 9.1 and 9.2 of ISO 10767-3.1999, 10.2 corresponds to 9.3 of ISO 10767-3.1999; --- Chapter 11 corresponds to Chapter 10 of ISO 10767-3.1999; --- Tables 2 to 4 correspond to Tables 1 to 3 of ISO 10767-3.1999, with Tables 1 and 5 to 7 added; ---Merge A.1 and A.2 into segments; ---B.6.1 corresponds to the suspension section of B.6 in ISO 10767-3.1999, B.6.2 and B.6.3 correspond to B.6.1 and B.6.3 in ISO 10767-3.1999 B.6.2; ---B.7.1 corresponds to the suspension section of B.7 in ISO 10767-3.1999, B.7.2 and B.7.3 correspond to B.7.1 and B.7.3 in ISO 10767-3.1999 B.7.2. The technical differences between this document and ISO 10767-3.1999 and their reasons are as follows. --- ISO 5598.1985 (see Chapter 3) has been replaced by the normative reference GB/T 17446 to adapt to my country's technical conditions. High operability; --- Added the content of symbols (see Chapter 4). The following editorial changes were made to this document. --- Change the name of the standard to "Methods for determination of pressure fluctuations in hydraulic transmission systems and components Part 3.Hydraulic motors"; --- The informative reference ISO 1219-1.1991 has been deleted from the list of normative references; --- Figure 1 was redrawn in accordance with the requirements of national standards; --- Added distribution example of pressure sensor calibration (see Figure 3); --- Adjust the general information, test information and test results into a table format (see Table 5 to Table 7); --- Corrected minor editorial changes in formula (B.4), formula (B.38), formula (B.39) and formula (B.42) in ISO 10767-3.1999 mistake; --- Deleted the informative Appendix C; ---Added references. 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 was proposed by the China Machinery Industry Federation. This document is under the jurisdiction of the National Hydraulic and Pneumatic Standardization Technical Committee (SAC/TC3). This document was drafted by. Beijing Institute of Automation of the Mechanical Industry Co., Ltd., Hefei Xieli Hydraulic Technology Co., Ltd., National Intelligent Manufacturing Equipment Product Quality Supervision and Inspection Center (Zhejiang), Zhejiang University, Xiamen University, Ningbo Xinhong Hydraulic Co., Ltd., Yanshan University, Bosch Power Shile (Beijing) Hydraulic Co., Ltd., Beijing Huade Hydraulic Industry Group Co., Ltd., China Machinery Engineering Institute Group Haixi (Fujian) Branch Co., Ltd., MCC Mike (Tianjin) Hydraulic Technology Co., Ltd., Taizhong Group Yuci Hydraulic Industry Co., Ltd., Tongling University, Jiangsu Guorui Hydraulic Machinery Co., Ltd., Jiangsu Hengyuan Hydraulic Co., Ltd. The main drafters of this document are. Luo Jing, Li Jincun, Deng Jizhou, Zheng Zhijian, Xu Bing, Ye Shaogan, Wu Yinghua, Cai Wei, Yan Pengfei, Zhang Xinyu, Zhan Wen, Guo Lipeng, Zhang Zuopeng, Wang Dongsheng, Ruan Ruiyong, Gu Haiye, and Zhang Chao.

Introduction

GB/T 41980 aims to standardize the determination method of pressure fluctuations in hydraulic systems and components and consists of three parts. --- Part 1.Hydraulic pumps (precision method). The purpose is to determine the test method for measuring the source flow fluctuation and source impedance of a positive displacement hydraulic pump program. --- Part 2.Hydraulic pumps (simplified method). The purpose is to determine the test procedure for measuring positive displacement hydraulic pumps when the accuracy requirements are not high. --- Part 3.Hydraulic motors. The purpose is to determine the test procedures for hydraulic motors under steady-state conditions. This document mathematically processes the pressure fluctuation measurement values to analyze the interaction between the hydraulic motor flow, pressure fluctuation value and the circuit. The performance of the hydraulic motor is evaluated by assessing the pressure fluctuations and the impact of design changes on the operation of the hydraulic motor. The impact of the pressure fluctuation value generated helps hydraulic system designers avoid selecting hydraulic motors with high pressure fluctuation values. This method uses plane wave transmission line theory to analyze the pressure fluctuations in the hydraulic system. The characteristic impedance of the circuit is evaluated by measuring the pressure fluctuation at the position. In order to fully characterize the impedance of the system, the secondary source method is used to introduce the pressure fluctuation at the position of The reference pipe is far from the pressure fluctuation source at the other end of the motor inlet. Measuring the pressure fluctuation can evaluate the source impedance of the hydraulic motor, so that there is enough information. The information is used to evaluate the source flow fluctuations and pressure fluctuations of the hydraulic motor. Pressure fluctuations in hydraulic transmission systems and components Determination methods Part 3.Hydraulic motors

1 Scope

This document establishes the test procedures for source flow fluctuation, source impedance, and pressure fluctuation values for positive displacement hydraulic motors, including bidirectional motors. Ratings are based on the following parameters. a) Source flow fluctuation amplitudes of at least 10 individual motor excitation frequency harmonics (m3/s); b) the source impedance magnitude (N·s/m5) and phase (°) of at least 10 individual motor excitation frequency harmonics; c) The amplitude of the anechoic pressure fluctuations of at least 10 individual motor excitation frequency harmonics (Pa); d) Total root mean square of anechoic pressure fluctuation (Pa); e) High impedance pressure fluctuation amplitude of at least 10 harmonics of the motor excitation frequency (Pa); f) Total RMS of high impedance pressure fluctuations (Pa). This document applies to all types and specifications of positive displacement hydraulics with motor excitation frequencies in the range of 50Hz to 400Hz under steady-state conditions. motor.

2 Normative references

The contents of the following documents constitute 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 17446 Fluid power systems and components vocabulary (GB/T 17446-2024, ISO 5598.2020, MOD)

3 Terms and definitions

The terms and definitions defined in GB/T 17446 and the following apply to this document. 3.1 Source flow fluctuation sourceflowripple The variable component of the flow rate produced by a hydraulic motor (regardless of the characteristics of the connected circuit). 3.2 flow ripple The variable component of the flow rate of the hydraulic fluid caused by the interaction between the source flow fluctuation (3.1) and the system. 3.3 pressure ripple The variable component of the hydraulic fluid pressure caused by the interaction of the source flow fluctuation (3.1) with the system. 3.4 The pressure fluctuations produced at the inlet of a hydraulic motor when oil is supplied by a rigid tube of infinite length and having the same inner diameter as the inlet of the hydraulic motor. 3.5 When the oil supply circuit impedance is infinite, the pressure fluctuation generated at the hydraulic motor inlet.
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