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DL/T 1981.10-2020 统一潮流控制器 第10部分:系统试验规程 现行 发布日期 :  2020-10-23 实施日期 :  2021-02-01

本文件适用于220kV及以上电压等级采用模块化多电平换流器的UPFC,其他电压等级或形式的UPFC系统试验可参照执行。

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GA/T 2000.10-2014 公安信息代码 第10部分:居民身份证申领原因代码 现行 发布日期 :  2014-09-28 实施日期 :  2014-09-28

GA/T 2000的本部分规定了公民申请领取、换领、补领和换发居民身份证原因的代码。
本部分适用于各级公安机关居民身份证管理工作。

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YC/T 10.10-2018 烟草机械 通用技术条件 第10部分:金属镀覆与化学处理 现行 发布日期 :  2018-04-03 实施日期 :  2018-04-15

YC/T 10的本部分规定了烟草机械零(部)件的常用金属镀覆与化学处理(以下简称镀覆)的一般技术要求、检验方法和检验规则。本部分适用于烟草机械零(部)件的镀覆。

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YC/T 10.10-2006 烟草机械 通用技术条件 第10部分:金属镀覆与化学处理 被代替 发布日期 :  2006-02-23 实施日期 :  2006-03-01

YC/T 10的本部分规定了烟草机械零、部件的常用金属镀覆与化学处理(以下简称镀覆)的一般技术要求、检验方法和检验规则。 本部分适用于烟草机械零、部件的镀覆。

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T/CHAS 10-4-10-2022 中国医院质量安全管理第4-10部分:医疗管理病案管理 现行 发布日期 :  2022-11-26 实施日期 :  2022-12-01

本标准适用于各级各类医疗机构。

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本标准适用于各级各类医疗机构开展医务社会工作服务及其质量安全的管理与评价。

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GA 16.10-2003 道路交通事故信息代码第10部分:驾驶机动车人员类型代码 现行 发布日期 :  2003-10-22 实施日期 :  2003-10-22

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T/AHEMA 10-2021 安徽省社会环境监测机构综合星级评定规范(T/AHEMA 10-2021) 现行 发布日期 :  2021-12-06 实施日期 :  2021-12-06

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ASTM E2007-10(2023) Standard Guide for Computed Radiography Active 发布日期 :  1970-01-01 实施日期 : 

4.1 This guide is intended as a source of tutorial and reference information that can be used during establishment of computed radiography techniques and procedures by qualified CR personnel for specific applications. All materials presented within this guide may not be suited for all levels of computed radiographic personnel.4.2 This guide is intended to build upon an established basic knowledge of radiographic fundamentals (that is, film systems) as may be found in Guide E94. Similarly, materials presented within this guide are not intended as “all-inclusive” but are intended to address basic CR topics and issues that complement a general knowledge of computed radiography as described in 1.2 and 3.2.28.4.3 Materials presented within this guide may be useful in the development of end-user training programs designed by qualified CR personnel or activities that perform similar functions. Computed radiography is considered a rapidly advancing inspection technology that will require the user maintain knowledge of the latest CR apparatus and technique innovations. Section 11 of this guide contains technical reference materials that may be useful in further advancement of knowledge associated with computed radiography.1.1 This guide provides general tutorial information regarding the fundamental and physical principles of computed radiography (CR), definitions and terminology required to understand the basic CR process. An introduction to some of the limitations that are typically encountered during the establishment of techniques and basic image processing methods are also provided. This guide does not provide specific techniques or acceptance criteria for specific end-user inspection applications. Information presented within this guide may be useful in conjunction with those standards of 1.2.1.2 CR techniques for general inspection applications may be found in Practice E2033. Technical qualification attributes for CR systems may be found in Practice E2445. Criteria for classification of CR system technical performance levels may be found in Practice E2446. Reference Images Standards E2422, E2660, and E2669 contain digital reference acceptance illustrations.1.3 The values stated in SI units are to be regarded as the standard. The inch-pound units given in parentheses are for information only.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.

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BS 2000-10:1993 Methods of test for petroleum and its products 被代替 发布日期 :  1993-02-28 实施日期 : 

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BS 2000-10:2011 Methods of test for petroleum and its products 现行 发布日期 :  2011-07-31 实施日期 : 

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5.1 This test method is of particular use as a quality control tool for a molding or synthesis operation. Acetaldehyde is a volatile degradation product generated during melt processing of PET. Thus, it becomes trapped in the sidewalls of a molded article and desorbs slowly into the contents packaged therein. In some foods and beverages AA can impart an off-taste that is undesirable, thus, it is important to know its concentration in PET articles that are to be used in food contact applications.5.2 The desorption conditions of 150 °C for 60 min are such that no measurable AA is generated by the sample during the desorption process.1.1 This test method covers a gas chromatographic procedure for the determination of the ppm residual acetaldehyde (AA) present in poly(ethylene terephthalate) (PET) homo-polymers and co-polymers which are used in the manufacture of beverage bottles. This includes sample types of both amorphous and solid-stated pellet and preform samples, as opposed to the bottle test, Test Method D4509, an acetaldehyde test requiring 24 h of desorption time at 23 °C into the bottle headspace and then the concentration of the headspace quantified by a similar GC method.1.2 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.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.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.

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3.1 Calcium phosphate coatings have been shown in animal and clinical studies to be biocompatible and to enhance the early attachment of bone to implant surfaces (see Refs. (1-5)).33.2 It is believed that the form of calcium phosphate ceramic and its purity with respect to secondary crystalline phases and amorphous material have an effect on its physical, mechanical, and biological properties. However, no definitive studies of effects on biological properties have been completed. To achieve reproducible clinical results and to permit the determination of the effects of properties of the coating on biological performance, it is essential that the properties of both clinical and experimental materials be well-characterized and consistent.3.3 This practice provides procedures for determination of the percentage by weight of the crystalline phases identified as hydroxyapatite, β-TCP, and CaO in plasma-sprayed hydroxyapatite coatings.1.1 This practice is for the determination, by the Reference Intensity Ratio External Standard Method, of the percent by weight of the crystalline phases, hydroxyapatite (HA), beta-(whitlockite) tricalcium phosphate (β-TCP), and calcium oxide (CaO) in coatings deposited upon metallic substrates by plasma spraying hydroxyapatite.1.2 A major component in plasma-sprayed HA coatings other than HA is expected to be amorphous calcium phosphate (ACP). Crystalline components other than HA that may be present include alpha- and beta- (whitlockite) tricalcium phosphates, tetracalcium phosphate (TTCP), calcium oxide, and calcium pyrophosphates. Quantification of the minor crystalline components has proven to be very unreliable due to extreme overlap and confounding of X-ray diffraction peaks. Therefore, this practice addresses the quantification of only HA, β-TCP, and CaO.1.3 This practice was developed for plasma-sprayed HA coatings with HA contents of at least 50 % of the total coating. It is recognized that the analysis of the crystalline components uses diffraction from regions of the pattern that also include a small contribution from the amorphous component. However, within the limits of applicability of this practice, the effect of such interference is believed to be negligible.1.4 The coating analyzed shall be produced and processed under manufacturing conditions equivalent to those used on the device of interest.1.5 This practice requires the use of monochromated copper Kα radiation and flat samples.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, health, and environmental practices and determine the applicability of regulatory limitations prior to use.1.8 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.

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