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O-rings for fluid power systems - Part 5: Specification of elastomeric materials
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GB/T 3452.5-2022
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Basic data Standard ID | GB/T 3452.5-2022 (GB/T3452.5-2022) | Description (Translated English) | O-rings for fluid power systems - Part 5: Specification of elastomeric materials | Sector / Industry | National Standard (Recommended) | Classification of Chinese Standard | J20 | Classification of International Standard | 23.100.60; 83.140.50 | Word Count Estimation | 23,219 | Date of Issue | 2022-10-12 | Date of Implementation | 2022-10-12 | Issuing agency(ies) | State Administration for Market Regulation, China National Standardization Administration |
GB/T 3452.5-2022: O-rings for fluid power systems - Part 5: Specification of elastomeric materials---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.
O-rings for fluid power systems - Part 5.Specification of elastomeric materials
ICS 23.100.60;83.140.50
CCSJ20
National Standards of People's Republic of China
O-ring rubber seals for hydraulic and pneumatic
Part 5.Specifications for elastomeric materials
(ISO 3601-5.2015, Fluidpowersystems-O-rings-
Released on 2022-10-12
2022-10-12 Implementation
State Administration for Market Regulation
Released by the National Standardization Management Committee
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 5 of GB/T 3452 "O-Rubber Seals for Hydraulic and Pneumatic Applications". GB/T 3452 has issued the following
part.
--- Part 1.Dimension series and tolerances;
--- Part 2.Appearance quality inspection specifications;
--- Part 3.Groove dimensions;
--- Part 4.Anti-extrusion ring (retaining ring);
--- Part 5.Specifications for elastomeric materials.
This document is modified to adopt ISO 3601-5.2015 "O-rings for fluid transmission systems - Part 5.Specifications for industrial elastomer materials".
Compared with ISO 3601-5.2015, this document has made the following structural adjustments.
--- "When selecting the material of the O-ring in 4.1, the working conditions should be considered. Therefore, the user should use the working parameters (such as temperature
degree, pressure, etc.) to determine the O-ring material. "Corresponds to the content of 4.4 in ISO 3601-5.2015.
---The performance and index of the O-ring sample are shown in Appendix C, Table C.1~Table C.6, corresponding to Table 3, Table 5~Table 7, Table 5 in ISO 3601-5.2015
Contents of O-ring samples in Table 9 and Table 10.
The technical differences between this document and ISO 3601-5.2015 and their reasons are as follows.
--- Regarding the normative reference documents, the international standards are replaced by Chinese standards to adapt to the technical conditions of our country and increase operability.
See Appendix A for the comparison between the normative references in this document and ISO 3601-5.2015;
--- Table 1 has been supplemented and optimized, the column of vulcanization system in Table 1 of ISO 3601-5.2015 has been deleted, and the nitrile rubber material and three
Yuan ethylene propylene rubber material does not distinguish vulcanization system, two lines are combined into one line; ethylene acrylate rubber material (AEM) and polyester are added
Type polyurethane rubber material (AU), polyether type polyurethane rubber material (EU) (see Table 1), in order to improve the technical level and adapt to my country's
technical conditions;
--- Deleted 4.3 and Table 2 in ISO 3601-5.2015 to avoid duplication of content and adapt to the technical conditions of our country;
--- For all materials, the ShoreA method is added to the hardness test carried out using standard specimens, and the normative references are added
GB/T 531.1 (see Table 2~Table 7), to adapt to the technical conditions of our country;
--- For all materials, change the compression set from 336h to 168h (see Table 2~Table 7, Table C.1~Table C.6), and compare the indicators
It should be adjusted to shorten the test cycle and adapt to the technical conditions of our country;
--- For all materials, the hot air aging performance of 72h has increased the index of change rate of tensile strength and change rate of elongation at break (see Table 2~
Table 7, Table C.1~Table C.6), to make the assessment indicators more reasonable and advanced;
--- For all materials, change "Resistance to ISO No. 1 Oil" to "Resistance to No. IRM901 Oil", change "Resistance to No. ISO 3 Oil" to "Resistance to No. IRM903 Oil
Oil" (see Table 2~Table 5, Table 7, Table C.1~Table C.4 and Table C.6), to adapt to the technical conditions of our country and enhance operability;
--- Increase the hardness level of nitrile rubber "80" (see Table 2, Table C.1), so that the hardness level division of materials is more perfect and reasonable, more suitable
According to the technical conditions of our country;
--- Change the hardness level of hydrogenated nitrile rubber from "90" to "85"; its compression set, resistance to IRM901 oil and IRM903
The test temperature of the oil was changed from "125°C" to "150°C" (see Table 3, Table C.2) to adapt to my country's technical conditions and improve technical conditions.
Technical rationality and technical level;
---Deleted the hardness level "75" of fluororubber; the test temperature of its compression set was changed from "175°C" to "200°C" (see Table 4,
Table C.3), in order to adapt to the technical conditions of our country and improve the technical rationality and technical level;
--- The test temperature for compression set of silicone rubber is changed from "175°C" to "200°C" (see Table 5, Table C.4) to adapt to the national standard
Technical conditions, improve technical rationality and technical level;
--- EPDM rubber increases the requirements for brake fluid resistance (see Table 6, Table C.5) to adapt to the technical conditions of our country;
--- Increased the performance requirements of ethylene acrylate rubber material (AEM) (see Table 8, Table C.7) to improve the types of materials and adapt to I
country's technical conditions;
--- Increased the performance requirements of polyester polyurethane rubber materials (AU) and polyether polyurethane materials (EU), and added normative references
GB/T 529 (see Table 9 and Table 10) is used to improve the types of materials and meet the inspection requirements, and adapt to the technical conditions of our country;
---The hardness index of all O-ring samples (see No. 1 in Table C.1~Table C.7), compared with the index of the same hardness level of the same material
The hardness index of the quasi-sample is 5 IRHD lower (see No. 1 in Table 2 to Table 8) to improve technical rationality;
--- Deleted the referenced ISO 3601-1 (see Appendix A) to adapt to the technical conditions of our country;
--- Added "Preparation and Adjustment of Specimen" (see Chapter 5), and added normative references to GB/T 2941 (see 5.1) to adapt to I
country's technical conditions;
--- Added "inspection rules" (see Chapter 6) to adapt to the technical conditions of our country;
--- Added "marking, packaging, transportation and storage" (see Chapter 7) to adapt to the technical conditions of our country.
The following editorial changes have also been made to this document.
--- In order to coordinate with the current standard, the name of the standard is changed to "O-ring rubber seals for hydraulic and pneumatic use - Part 5.Specifications for elastomer materials
Fan";
--- Added Appendix B (informative) "Using temperature and applicable liquid of elastomeric materials";
--- Added Appendix D (informative) "Indicator differences between this document and ISO 3601-5.2015".
Please note that some contents of this document may refer to patents. The issuing agency of this document assumes no responsibility for identifying patents.
This document is proposed by China Machinery Industry Federation.
This document is under the jurisdiction of the National Hydraulic Pneumatic Standardization Technical Committee (SAC/TC3).
This document is drafted by. Northwest Rubber and Plastic Research and Design Institute Co., Ltd., Guangzhou Guoji Sealing Technology Co., Ltd., Anhui Cooper Seal
Technology Co., Ltd., Qingdao Beihai Sealing Technology Co., Ltd., Xi'an Xiangyang Aerospace Materials Co., Ltd., Qingdao Hailiwei New Material Technology
Co., Ltd., Changzhou Langbo Sealing Technology Co., Ltd., Chengdu Shengbang Sealing Co., Ltd., Guangdong Tiancheng Sealing Co., Ltd.
Co., Ltd., Shanxi Taibao Technology Co., Ltd., Shengli Oilfield Changlong Rubber and Plastic Co., Ltd., Hebei Huami New Material Technology Co., Ltd.,
Jihua Rubber Industry Co., Ltd., Qingdao Ruizhisen Oil Seal Co., Ltd., Suzhou Meifurui New Material Technology Co., Ltd., Nanjing Dongrun Special Rubber
Plastic Co., Ltd., Xianyang Hailong Sealing Composite Material Co., Ltd., Xiamen Maifeng Sealing Co., Ltd., Dongguan Runyin Industrial Co., Ltd.
The main drafters of this document. Gao Jingru, Cao Yuanli, Mu Xuejie, Liang Huoshou, Zhu Baoning, Wu Yongzeng, Ye Changqing, Ji Jianbo, Liu Zhongguo, Wu Xingcai,
Tian Youfeng, Ye Mei, Wu Kesheng, Wang Jinping, Li Zangxu, Zeng Yi, Ji Shunben, Tang Yingda, Yin Jianxin, Hu Yating, Jiang Wenyang, Zhu Haifeng, Zheng Huaan,
Zhang Yigui, Chen Wenqiang, Su Ruifen, Zhang Qiang, Zhang Heguang, Zhou Jiangfan, Pan Yuxun, Wang Min, Li Jinjie, Wang Yezhu.
Introduction
In a hydropneumatic system, power is transmitted and controlled by the pressure of a fluid (liquid or gas) in a closed path. O shape
Circles are an integral part of the system. GB/T 3452 "O-shaped rubber seal ring for hydraulic and pneumatic" specifies the
The technical requirements of O-rings are composed of 5 parts.
--- Part 1.Dimension series and tolerances. The purpose is for the size design or acceptance of O-ring rubber seals.
--- Part 2.Appearance quality inspection specifications. The purpose is to identify the appearance quality of the O-ring, for quality control or acceptance, to avoid
Avoid leakage due to appearance defects.
--- Part 3.Groove dimensions. The purpose is to match the size of the O-shaped rubber sealing ring to achieve a good sealing effect.
--- Part 4.Anti-extrusion ring (retaining ring). The purpose is to use anti-extrusion rings in conjunction with O-ring grooves under high pressure conditions to prevent
The o-ring is squeezed between metal parts (for example, between the cylinder bore and the piston or between the piston rod and the groove).
--- Part 5.Specifications for elastomeric materials. The purpose is to evaluate the suitability of O-ring elastomeric material (rubber) for production or acceptance.
usability.
O-ring rubber seals for hydraulic and pneumatic
Part 5.Specifications for elastomeric materials
1 Scope
This document specifies the requirements and test methods for elastomeric materials used in hydraulic and pneumatic O-ring rubber seals, the preparation and adjustment of samples, and the testing methods.
Inspection rules, signs, packaging, transportation and storage.
This document is applicable to O-shaped rubber sealing rings for hydraulic and pneumatic, and also applicable to O-shaped rubber seal rings with a cross-sectional diameter not greater than 7mm used in other occasions.
O-shaped rubber sealing ring (hereinafter collectively referred to as O-ring).
2 Normative references
The contents of the following documents constitute the essential provisions of this document through normative references in the text. Among them, dated references
For documents, only the version corresponding to the date is applicable to this document; for undated reference documents, the latest version (including all amendments) is applicable to
this document.
GB/T 528-2009 Determination of tensile stress-strain properties of vulcanized rubber or thermoplastic rubber (ISO 37.2005, IDT)
GB/T 529 Determination of tear strength of vulcanized rubber or thermoplastic rubber (pants-shaped, right-angled and crescent-shaped specimens) (GB/T 529-
2008, ISO 34-1.2004, MOD)
GB/T 531.1 Test method for indentation hardness of vulcanized rubber or thermoplastic rubber - Part 1.Shore durometer method (Shore hardness)
(GB/T 531.1-2008, ISO 7619-1.2004, IDT)
GB/T 1690-2010 Test method for liquid resistance of vulcanized rubber or thermoplastic rubber (ISO 1817.2005, MOD)
GB/T 2941 General procedure for specimen preparation and adjustment of rubber physical test methods (GB/T 2941-2006, ISO 23529.2004,
IDT)
GB/T 3512 Hot air accelerated aging and heat resistance test of vulcanized rubber or thermoplastic rubber (GB/T 3512-2014, ISO 188.
2011, IDT)
GB/T 5576 Rubber and latex nomenclature (GB/T 5576-1997, idtISO 1629.1995)
GB/T 5720 O-shaped rubber seal ring test method
GB/T 6031 Determination of hardness of vulcanized rubber or thermoplastic rubber (10IRHD~100IRHD) (GB/T 6031-2017,
ISO 48.2010, IDT)
GB/T 7758 Temperature shrinkage procedure for the determination of low temperature properties of vulcanized rubber (TR test) (GB/T 7758-2020,
ISO 2921.2019, IDT)
GB/T 7759.1-2015 Determination of compression set of vulcanized rubber or thermoplastic rubber Part 1.At room temperature and high temperature
Conditions (ISO 815-1.2008, IDT)
GB/T 9881 Rubber Terminology (GB/T 9881-2008, ISO 1382.2008, MOD)
GB/T 17446 Vocabulary for fluid transmission systems and components (GB/T 17446-2012, ISO 5598.2008, IDT)
3 Terms and Definitions
The terms and definitions defined in GB/T 9881 and GB/T 17446 apply to this document.
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