E36 润滑脂 标准查询与下载



共找到 380 条与 润滑脂 相关的标准,共 26

5.1 Trending the wear, contamination, consistency, and oxidative properties of a lubricating grease is a crucial part of condition-monitoring programs. Changes in these properties or deviations from the new grease can be indicative of problems within the lubricated component, such as the mixing of incompatible thickener types, excessive wear or contaminant levels, or significant depletion of antioxidant levels. These test methods also makes it possible to develop trends that can be used to predict failures before they occur and allow for corrective action to be taken. 1.1 This test method covers the determination and evaluation of flow properties, wear levels, contaminants, and oxidative condition of new and in-service lubricating grease. 1.2 This test method provides guidance on evaluating in-service grease samples, NLGI grades 00 to 3, for wear, consistency, contamination, and oxidation. 1.3 The values stated in SI units are to be regarded as the standard. The values given in parentheses are for information only. 1.3.1 Exception—The exception to this will be where units of references were developed by the developers of the test equipment and necessary to report the results of the test. 1.4 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 this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use. 1.5 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

Standard Test Method for Measurement of Flow Properties and Evaluation of Wear, Contaminants, and Oxidative Properties of Lubricating Grease by Die Extrusion Method and Preparation

ICS
75.100
CCS
E36
发布
2017
实施

Determination of the resistance of grease to fretting wear under high hertz contact pressure High frequency linear vibration testing machine method

ICS
75.100
CCS
E36
发布
2016-12-05
实施
2017-05-01

Determination of benzene and toluene content in paraffin wax by headspace sampling gas chromatography

ICS
75.100
CCS
E36
发布
2016-12-05
实施
2017-05-01

Testing of lubricants - Test using the FAG roller bearing grease testing apparatus FE9 - Part 1: General working principles

ICS
75.100
CCS
E36
发布
2016-07
实施

Testing of lubricants - Test using the FAG roller bearing grease testing apparatus FE9 - Part 2: Test method

ICS
75.100
CCS
E36
发布
2016-07
实施

Testing of lubricants - Determination of the content of foreign solid matters in lubricating greases - Particle sizes above 25 μm

ICS
75.100
CCS
E36
发布
2016-03
实施

5.1 This test method measures the tendency of lubricating grease to corrode copper under specific static conditions. It may be of some value in predicting possible chemical attack on lubricated parts, such as bearings that contain copper or copper alloys. Such corrosion, for example, can cause premature bearing failures. However, no correlations with actual field service, most of which are under dynamic conditions, have been established. It does not measure either the ability of the lubricant to inhibit copper corrosion caused by factors other than the lubricant itself nor does it measure the stability of the grease in the presence of copper. Note 1: Because this test method requires the ability to determine subtle differences in color of copper strips, persons with certain types of color blindness may find it difficult to accurately compare a test strip to the Copper Strip Corrosion Standard. 1.1 This test method covers the detection of the corrosiveness to copper of lubricating grease. 1.2 The values stated in SI units are to be regarded as the standard. 1.2.1 Exception—The values given in parentheses are for information only. 1.3 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 this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use. For specific warning statements, see Sections 7, 8, and 10. 1.4 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

Standard Test Method for Detection of Copper Corrosion from Lubricating Grease

ICS
75.100
CCS
E36
发布
2016
实施

Lubricants - Lubricating greases G - Classification and requirements

ICS
75.100
CCS
E36
发布
2015-04
实施

Lubricating greases. Oil separation at increased temperatures (conical sieve method)

ICS
75.100
CCS
E36
发布
2015
实施
2017-01-01

Petroleum products and lubricants. Petroleum oils and other fluids. Determination of rust-preventing properties in the presence of water

ICS
75.080
CCS
E36
发布
2015
实施
2017-01-01

Antifriction containing diamond concentrate. Specifications

ICS
75.100
CCS
E36
发布
2015
实施
2016-07-01

Testing of lubricants - Determination of oil separation from greases under static conditions

ICS
75.100
CCS
E36
发布
2014-08-01
实施

本标准规定了使用梯姆肯极压试验机测定润滑脂承载能力的标准方法。本标准适用于评价润滑脂的承载能力。

Standard test method for measurement of load-carrying capacity of lubricating grease(Timken method)

ICS
75.100
CCS
E36
发布
2014-06-29
实施
2014-11-01

本标准规定了钢丝绳用润滑脂的分类和标记、要求和试验方法、检验规则及标志、包装、运输和贮存。本标准适用于由石油烃或脂肪酸皂稠化矿物润滑油并加入抗氧、防锈等多种添加剂所制得的钢丝绳用润滑脂。符合本标准的产品,I型为钢丝绳表面脂,适用于钢丝绳生产厂的封存防护和润滑。Ⅱ型为钢丝绳麻芯脂,适用于钢丝绳麻芯的润滑和防腐。Ⅲ型为钢丝绳维护用脂,适用于钢丝绳使用过程的防护和润滑,在检查、清洁钢绳后,不需加热,直接刷涂或机械加注。

Wire rope greases

ICS
75.100
CCS
E36
发布
2014-06-29
实施
2014-11-01

Petroleum products and lubricants. Determination of acid number by potentiometric titration in non-aqueous medium

ICS
75.100
CCS
E36
发布
2014
实施
2016-07-01

4.1 Crude oil, petroleum, petroleum products, additives, and lubricants are routinely analyzed for their elemental content such as chlorine, nitrogen, phosphorus, sulfur, and various metals using a variety of analytical techniques. Some of these test methods require little to no sample preparation; some others require only simple dilutions; while others require elaborate sample decomposition before the product is analyzed for its elemental content. 4.2 Fairly often it can be shown that the round robin results by a co-operator are all biased with respect to those from other laboratories. Presumably, the failure to follow good laboratory practices and instructions in the test methods can be a causal factor of such errors. A further consequence is an unnecessarily large reproducibility estimate or the data being dropped from the study as an outlier. 4.3 Uniform practice for sample preparation is beneficial in standardizing the procedures and obtaining consistent results across the laboratories. 1.1 This practice covers different means by which petroleum product and lubricant samples may be prepared before the measurement of their elemental content using different analytical techniques. 1.2 This practice includes only the basic steps for generally encountered sample types. Anything out of the ordinary may require special procedures. See individual test methods for instructions to handle such situations. 1.3 This practice is not a substitute for a thorough understanding of the actual test method to be used, caveats the test method contains, and additional sample preparation that may be required. 1.4 The user should not expand the scope of the test methods to materials or concentrations outside the scope of the test methods being used without thoroughly understanding the implications of such deviations. 1.5 This practice may also be applicable to sample preparation of non-petroleum based bio-fuels for elemental analysis. Currently, work is ongoing in ASTM Subcommittee D02.03; as information becomes available, it will be added to this standard. 1.6 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard. 1.7 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 this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

Standard Practice for Sample Preparation of Petroleum and Lubricant Products for Elemental Analysis

ICS
75.100 (Lubricants, industrial oils and related pr
CCS
E36
发布
2014
实施

Lubricating grease

ICS
75.100
CCS
E36
发布
2013-11-20
实施

本标准规定了低温下润滑脂锥入度的测定方法。本标准适用于-40℃ ~ -20℃温度范围内低温下润滑脂锥入度的测定。

Determination of low - temperature cone penetration of lubricating greases

ICS
75.100
CCS
E36
发布
2013-06-08
实施
2013-10-01

本标准适用于测定润滑脂在高离心力下的分油倾向。本标准规定了润滑脂离心分油的测定方法。

Standard test method for oil separation from lubricating grease by centrifuging (Koppers method)

ICS
75.100
CCS
E36
发布
2013-06-08
实施
2013-10-01

本标准规定了采用电感耦合等离子体发射光谱(ICP-AES)法测定未使用过的润滑脂中多种金属元素含量的方法,金属元素包括铝、锑、钡、钙、铁、锂、镁、钼、硅、钠和锌,也可用于磷和硫非金属元素的测定。本标准的测定范围为:铝(10mg/kg ~ 600mg/kg)、锑(10mg/kg ~ 2300mg/kg)、钡(50mg/kg ~ 800mg/kg)、钙(20mg/kg ~ 50000mg/kg)、铁(10mg/kg ~ 360mg/kg)、锂(300mg/kg ~ 3200mg/kg)、镁(30mg/kg ~ 10000mg/kg)、钼(50mg/kg ~ 22000mg/kg)、磷(50mg/kg ~ 2000mg/kg)、硅(10mg/kg~15000mg/kg)、钠(30mg/kg ~ 1500mg/kg)、硫(1600mg/kg ~ 28000mg/kg)和锌(300mg/kg ~ 2200mg/kg)。含量低于此范围的元素,可以采取增加样品量的方法进行测定,含量高于此范围的元素,可以采取减少样品量的方法,或者样品溶解后增大稀释倍数的方法进行测定。但是,尚未确定这些条件下的精密度,这些条件下的精密度可能与表3所给出的不同。本标准也可用于其他金属,如铋、硼、镉、铬、铜、铅、锰、钾、钛等的测定。但尚无足够的数据确定其精密度,这些金属可认为是润滑脂的杂质或添加元素。在制备试样时,用多种酸(及其混合物)分解润滑脂样品。本标准没有规定具体的酸的类型。如果灰分溶解后产生肉眼可见的不溶物(假设该不溶物包含了部分待测元素

Standard test method for determination of metals in lubricating greases by inductively coupled plasma atomic emission spectrometry

ICS
75.100
CCS
E36
发布
2013-06-08
实施
2013-10-01



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