



比热容相关标准参考信息
GB/T 5990-2021 耐火材料 导热系数、比热容和热扩散系数试验方法(热线法)
简介:
信息:ICS:81.080 CCS:Q40 发布:2021-10-11 实施:2022-05-01 00:00:00.0
BS EN ISO 11357-4-2014 塑料.差示扫描量热法(DSC).比热容的测定
简介:
信息:ICS:83.080.01 CCS:G31 发布:2014-07-31 实施:2014-07-31
KS L 1604-2002 工程陶瓷材料热扩散率、比热容、导热系数试验方法.激光闪点法
简介:이 규격은 레이저 플래시법에 의한 파인 세라믹스의 실온에서 1 700 K까지의 열 확산율,
信息:ICS:81.060.30 CCS:Q32 发布:2002-12-27 实施:2002-12-27
GB/T 19466.4-2016 塑料 差示扫描量热法(DSC) 第4部分:比热容的测定
简介:
信息:ICS:83.080.01 CCS:G31 发布:2016-10-13 实施:2017-05-01 00:00:00.0
BS EN ISO 11357-4-2014 塑料.差示扫描量热法(DSC).比热容的测定
简介:
信息:ICS:83.080.01 CCS:G31 发布:2014-07-31 实施:2014-07-31
KS L 1604-2002 工程陶瓷材料热扩散率、比热容、导热系数试验方法.激光闪点法
简介:이 규격은 레이저 플래시법에 의한 파인 세라믹스의 실온에서 1 700 K까지의 열 확산율,
信息:ICS:81.060.30 CCS:Q32 发布:2002-12-27 实施:2002-12-27
GB/T 3140-2005 纤维增强塑料平均比热容试验方法
简介:本标准规定了用混合法(采用铜块量热计)测定纤维增强塑料平均比热容的试样、试验原理、仪器设备、试验步骤、结果计算和试验报告。 本标准适用于测试平均温度约85℃(120℃~20℃),即试样被加热到150℃的纤维增强塑料的平均比热容。 本标准不适用于在150℃时发软变形的材料。
信息:ICS:83.120 CCS:Q23 发布:2005-05-18 实施:2005-12-01
NB/SH/T 0632-2014 比热容的测定 差示扫描量热法
简介:本标准规定了用差示扫描量热法(DSC)测定比热容的方法。本标准适用于热稳定性好的固体、液体。通常试验温度范围为-100℃~600℃。如果测量仪器、样品坩埚可满足于更高温度的使用要求,试验温度范围可以扩展到更大的范围。与本标准要求等效的计算机或者电子仪器、技术或数据处理才可以使用。
信息:ICS:75.080 CCS:E30 发布:2014-06-29 实施:2014-11-01
QJ 809-1994 复合固体推进剂热导率和比热容测定方法 准稳态法
简介:
信息:ICS: CCS:V71 发布:1994 实施:
GB/T 3140-1995 纤维增强塑料平均比热容试验方法
简介:本标准规定了用混合法,采用铜块量热计,测定纤维增强塑料的平均比热容。 本标准适用于平均温度约60℃(100℃到20℃),即试样被加热到100℃的纤维增强塑料的平均比热容。 本标准不适用于在100℃时发软变形的试样。
信息:ICS:83.120 CCS:Q23 发布:1995-05-25 实施:1996-01-01
ISO 11357-4-2014 塑料.差示扫描量热法(DSC).第4部分:比热容的测定
简介:
信息:ICS:83.080.01 CCS:G31 发布:2014-06-01 实施:
ONORM ENV 821-3-1993 先进的技术陶瓷.单块陶瓷.热物理性能.第3部分:比热容的测定
简介:
信息:ICS: CCS: 发布:1993-11-01 实施:1993-11-01
ASTM E2716-23 用调制温差扫描量热法测定比热容的标准试验方法
简介:
信息:ICS:17.200.10 CCS: 发布:2023-01-01 实施:
EN ISO 11357-4-2014 塑料.差示扫描量热法(DSC).第4部分:比热容测定(ISO 11357-4:2014)
简介:Dieser Teil von ISO 11357 legt Verfahren zur Bestimmung der spezifischen Warmekapazitat von Kunststoffen mittels Dynamischer Differenz-Thermoanalyse (Dynamischer Differenzkalorimetrie) fest.
信息:ICS:83.080.01 CCS:G31 发布:2014-06 实施:
SY/T 7517-1994 原油比热容测定方法绝热量热法
简介:本标准规定了使用绝热量热法测定原油比热容的方法。
信息:ICS: CCS:E21 发布:1992-04-27 实施:1992-10-01
T/CI 038-2021 锂离子电池单体平均比热容测试方法
简介:3.1锂离子电池(lithiumionbattery)锂离子电池,简称电池,是一种利用锂离子作为导电离子,在阳极和阴极之间移动,通过化学能和电能相互转化实现充放电的电池。[GB/T19596-2017,定义3.3.1.2.1]3.2锂离子电池单体(lithiumionbatterycell)锂离子电池单体,简称电池单体,是将化学能与电能相互转换的基本锂离子电池单元装置,由正极、负极、隔膜、电解质、壳体和端子等组成。[GB/T36276-2018,定义3.1.1]3.3电池平均比热容(batterymeanspecificheatcapacity)平均比热容是单位质量的电池温度升高1K所需的热量,该热量是在规定温度范围内的平均热量。3.4荷电状态(stateofcharge)当前电池中按照规定放电条件可以释放的容量占可用容量的百分比。[GB/T19596—2017,定义3.3.3.2.5]3.5电池平均温度(meanbatterytemperature)基于电池表面多点温度测量进行算术平均所获得的温度记为电池平均温度,简称电池温度。3.6电池平均温升(meanbatterytemperaturerise)电池平均温度与环境温度之差即为电池平均温升,简称电池温升。3.7电池热损(batteryheatloss)在给定环境温度下将包裹高效绝热材料的电池加热至高温后自然冷却,对应电池平均温度下降的热力学能下降即为该电池平均温升下的电池热损。3.8校准量热法(calibratedcalorimetry)在加热或者产热条件下,根据电池的表面温度上升、校准该过程中电池的热量损失、并确定电池在完全绝热条件下的总温度上升或者产热率。3.9高效绝热材料导热系数在0.05W/(m·K)或者以下的材料称为高效绝热材料。3.10符号c?比热容(J/(kg??C))I?加热电流(A)L0?高效绝热材料厚度(mm)L1、L2、L3?电池在不同方向的尺寸(mm)m?质量(kg)Q?加热器热量(J)t?加热后时刻t(s)Ta?环境温度(?C)ΔTave?电池平均温升(?C)ΔTL1?电池加热过程因热损导致的平均温升(温降)(?C)ΔTL2?电池均温过程因热损导致的平均温升(温降)(?C)Tmax?电池平均温度上限值(?C)Ucool?电池平均温升速率(?C/s)?h?加热功率(W)?1?加热时间(s)?2?均温与测量时间(s)???均温与测量过程的固定时间段(s)
信息:ICS:17.020 CCS:M745 发布:2021-12-27 实施:2021-12-28
ASTM E2716-09(2014) 通过正弦调制温度差示扫描量热法测定比热容的标准测试方法
简介:
信息:ICS:17.200.10 CCS: 发布:2014-03-15 实施:
SY 7517-1992 原油比热容测定 绝热量热法
简介:
信息:ICS:无 CCS:能源部 发布:1992-04-27 实施:1992-10-01
DIN EN ISO 11357-4-2021 塑料. 差示扫描量热法(DSC). 第4部分: 比热容的测定(ISO 11357-4-2021); 德文版 EN ISO 11357-4-2021
简介:This document specifies methods for determining the specific heat capacity of plastics by differential scanning calorimetry.
信息:ICS:83.080.01 CCS:G31 发布:2021-05-01 实施:
DIN EN ISO 11357-4-2013 塑料.差示扫描量热法(DSC).第4部分:比热容的测定(ISO 11357-4-2002).德文版本EN ISO 11357-4-2013
简介:
信息:ICS:83.080.01 CCS:G31 发布:2013-04 实施:
QJ 2275-1992 复合固体推进剂比热容测定方法
简介:
信息:ICS: CCS:V72 发布:1992-02-25 实施:1992-12-01
NF B43-365-2021 精细陶瓷(高级陶瓷, 高级工业陶瓷). 陶瓷复合材料的热物理性能. 比热容的测定
简介:
信息:ICS:81.060.30 CCS:Q32 发布:2021-03-03 实施:2021-09-18
NF T51-507-4-2013 塑料.差示扫描量热法(DSC).第4部分:比热容的测定
简介:
信息:ICS:83.080.01 CCS:G31 发布:2013-03-20 实施:2013-03-20
QJ 1521-1988 固体材料深低温比热容测试方法
简介:
信息:ICS: CCS:V04 发布:1988-04-25 实施:1988-12-01
ISO 11357-4-2021 塑料. 差示扫描量热法(DSC). 第4部分: 比热容的测定
简介:
信息:ICS:83.080.01 CCS:G31 发布:2021-02-00 实施:
JIS K7123 AMD 1-2012 塑料比热容检测方法(修改件1)
简介:
信息:ICS:83.080.01 CCS:G31 发布:2012-07-20 实施:
JIS K7123-1987 塑料比热容的测试方法
简介:この規格は,プラスチックの比熱容量を測定する方法について規定する。
信息:ICS:83.080.01 CCS:G31 发布:1987-10-01 实施:
YS/T 1256-2018 有色金属材料 比热容试验 差示扫描量热法
简介:
信息:ICS:77.040.99 CCS:H21 发布:2018-10-22 实施:2019-04-01
KS M 3049-2011 塑料比热容试验方法
简介:이 표준은 플라스틱의 비열 용량을 측정하는 방법에 대하여 규정한다.
信息:ICS:83.080.00 CCS:G40 发布:2011-12-02 实施:2011-12-02
SY 7517-2010 原油比热容的测定方法
简介:
信息:ICS: CCS: 发布: 实施:
KS L 1604-2017(2022) 精细陶瓷-用激光闪光法测定整体陶瓷的热扩散率、比热容和导热率
简介:
信息:ICS:81.060.30 CCS: 发布:2017-12-01 实施:
SY/T 7517-2010 原油比热容的测定方法
简介:警告:使用本标准的人员应有正规实验室工作的实践经验。本标准并未指出所有可能的安全问题。使用者有责任采取适当的安全和健康措施,并保证符合国家有关法规规定的条件。本标准规定了测定原油比热容的方法。本标准的方法A绝热量热法适用于各种原油从273K到初镏点温区的比热容测定。本标准的方法B差示扫描量热法适用于各种原油从273K到初镏点温区的比热容快速测定。
信息:ICS:75-010 CCS:E10 发布:2011-01-09 实施:2011-05-01
QJ 968-1986 固体材料低温比热容测试方法
简介:
信息:ICS: CCS:V10 发布: 实施:
BS ISO 19628-2017 精细陶瓷(高级陶瓷, 高级工业陶瓷). 陶瓷复合材料的热物理性能. 比热容的测定
简介:
信息:ICS:81.060.30 CCS:Q32 发布:2017-06-28 实施:2017-06-28
ASTM E1269-2011 用差式扫描量热法测定比热容的标准试验方法
简介:Differential scanning calorimetric measurements provide a rapid, simple method for determining specific heat capacities of materials. Specific heat capacities are important for reactor and cooling system design purposes, quality control, and research and development. 1.1 This test method covers the determination of specific heat capacity by differential scanning calorimetry. 1.2 This test method is generally applicable to thermally stable solids and liquids. 1.3 The normal operating range of the test is from x2212; 100 to 600 x00B0;C. The temperature range can be extended, depending upon the instrumentation and specimen holders used. 1.4 The values stated in SI units are to be regarded as the standard. 1.5 Computer or electronic-based instrumentation, techniques, or data treatment equivalent to this test method may be used. Note 18212;Users of this test method are expressly advised that all such instruments or techniques may not be equivalent. It is the responsibility of the user of this test method to determine equivalency prior to use. 1.6 This method is similar to ISO 11357x2013;4, but contains additional methodology not found in that method. Additionally, ISO 11357x2013;4 contains practices not found in this standard. This method is similar to Japanese Industrial Standard K 7123, but contains additional methodology not found in that method. 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. Specific precautionary statements are given in Section 9.
信息:ICS:17.200.10 (Heat. Calorimetry) CCS:N11 发布:2011 实施:
QJ 969-1986 固体材料高温至800°平均比热容测试方法
简介:
信息:ICS: CCS:V10 发布: 实施:
ISO 19628:2017 精细陶瓷(高级陶瓷、高级工业陶瓷).陶瓷复合材料的热物理性能.比热容的测定(ISO 19628-2017)
简介:
信息:ICS:81.060.30 CCS: 发布:2017-04-25 实施:
ASTM E2716-09 通过正弦调制温度差示扫描量热法测定比热容的标准测试方法
简介:
信息:ICS:17.200.10 CCS: 发布:2009-09-01 实施:
简介: 信息:
ISO 19628-2017 精细陶瓷(高级陶瓷, 高级工业陶瓷). 陶瓷复合材料的热物理性能. 比热容的测定
简介:
信息:ICS:81.060.30 CCS:Q32 发布:2017-04 实施:
ASTM E2716-2009 用温度调制差示扫描量热法测定比热容的标准试验方法
简介:Modulated temperature differential scanning calorimetric measurements provide a rapid, simple method for determining specific heat capacities of materials, even under quasi-isothermal conditions. Specific heat capacities are important for design purposes, quality control, and research and development. The use of a stepped quasi-isothermal program may be used to follow structure changes in materials.1.1 This test method describes the determination of specific heat capacity by sinusoidal modulated temperature differential scanning calorimetry. For the determination of specific heat capacity by a step-isothermal or multiple step-isothermal temperature program, the reader is referred to Test Method E1269. 1.2 This test method is generally applicable to thermally stable solids and liquids. 1.3 The normal operating range of the test is from x2013;100 to 600 x00B0;C. The temperature range may be extended depending upon the instrumentation and specimen holders used. 1.4 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard. 1.5 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.
信息:ICS:17.200.10 (Heat. Calorimetry) CCS:A42 发布:2009 实施:
简介: 信息:
GOST R 57969-2017 聚合物复合材料. 温度调制差示扫描量热法测定比热容
简介:
信息:ICS:83.120 CCS: 发布:2017-00-00 实施:2018-06-01
ASTM E2716-2009(2014) 采用正弦调制温度差分扫描量热法测定比热容的标准试验方法
简介:5.1x00a0;Modulated temperature differential scanning calorimetric measurements provide a rapid, simple method for determining specific heat capacities of materials, even under quasi-isothermal conditions. 5.2x00a0;Specific heat capacities are important for design purposes, quality control, and research and development. 5.3x00a0;The use of a stepped quasi-isothermal program may be used to follow structure changes in materials. 1.1x00a0;This test method describes the determination of specific heat capacity by sinusoidal modulated temperature differential scanning calorimetry. For the determination of specific heat capacity by a step-isothermal or multiple step-isothermal temperature program, the reader is referred to Test Method E1269. 1.2x00a0;This test method is generally applicable to thermally stable solids and liquids. 1.3x00a0;The normal operating range of the test is from x2013;100 to 600x00b0;C. The temperature range may be extended depending upon the instrumentation and specimen holders used. 1.4x00a0;The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard. 1.5x00a0;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.
信息:ICS:17.200.10 (Heat. Calorimetry) CCS: 发布:2009 实施:
简介: 信息:
KS M ISO 11357-4-2016(2021) 塑料差示扫描量热法(DSC)第4部分:比热容的测定
简介:
信息:ICS:83.080.01 CCS: 发布:2016-12-27 实施:
BS EN ISO 11357-4-2013 塑料.差示扫描量热法(DSC).比热容的测定
简介:
信息:ICS:83.080.01 CCS:G31 发布:2006-01-11 实施:2006-01-11
简介: 信息:
GOST R 56754-2015 塑料. 差示扫描量热法 (DSC). 第4部分. 比热容的测定
简介:
信息:ICS:83.080.01 CCS: 发布:2015 实施:2017-01-01
ISO 11357-4-2005 塑料.差示扫描量热法(DSC).第4部分:比热容的测定
简介:This part of ISO 11357 specifies methods for determining the specific heat capacity of plastics by differential scanning calorimetry.
信息:ICS:83.080.01 CCS:G31 发布:2005-09 实施:
简介: 信息:
GOST R 56754-2015 塑料. 差示扫描量热法 (DSC). 第4部分. 比热容的测定
简介:
信息:ICS:83.080.01 CCS:G32 发布:2015 实施:2017-01-01
NF B41-215-2005 高级工业陶瓷.整体陶瓷.热物理特性.第3部分:比热容的测定
简介:
信息:ICS:81.060.30 CCS:Q32 发布:2005-06-01 实施:2005-06-05
简介: 信息:
DIN EN ISO 11357-4-2014 塑料.差示扫描量热法(DSC).第4部分:比热容的测定(ISO 11357-4-2014).德文版本EN ISO 11357-4-2014
简介:
信息:ICS:83.080.01 CCS:G31 发布:2014-10-01 实施:
BS EN 821-3-2005 高级工业陶瓷.整体陶瓷.热物理特性.比热容的测定
简介:This document specifies two methods for the determination of specific heat capacity of advanced monolithic technical ceramic materials based on drop calorimetry (Method A) and differential scanning calorimetry (DSC, Method B) over a temperature range from room temperature upwards, depending on the design of the equipment.NOTE 1 The methods described apply in the case of test materials free from phase transformations, annealing effects or partial melting. If any such effect occurs in a material over the temperature range of the test, spurious results will be obtained unless the data are carefully analysed. In such cases it is usually necessary to conduct repeat tests at a number of temperatures close to the discontinuity, in order to estimate correctly its contribution to the apparent heat capacity.NOTE 2 Care should be exercised in both methods over the selection of the cell or crucible material and in the selection of the test atmosphere, especially at high temperatures. Test pieces can react with the crucible or the atmosphere, leading to spurious results. In general, an awareness of such problems should be maintained at all times. Especially with regard to Method B, awareness should also be maintained of radiation effects at temperatures above 1000 ℃, and of the reproducibility of the output signal.
信息:ICS:81.060.30 CCS:Q32 发布:2005-04-20 实施:2005-04-20
简介: 信息:
NF T51-507-4-2014 塑料.差示扫描量热法(DSC).第4部分:比热容的测定
简介:La présente partie de l'ISO 11357 spécifie des méthodes de détermination de la capacité thermique massique des plastiques par analyse calorimétrique différentielle.
信息:ICS:83.080.01 CCS:G31 发布:2014-08-30 实施:2014-08-30
GJB 5382.8-2005 烟火药物理参数试验方法.第8部分:连续比热容测定.差示扫描量热法
简介:本部分规定了测定烟火药连续比热容的差示扫描量热法。 本部分适用于烟火药在规定的温区范围内的连续比热容的测定,烟火药相关材料的连续比热容测定可参照使用。
信息:ICS: CCS:G89 发布:2005-04-11 实施:2005-07-01
简介: 信息:
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