ASTM C1702-2015a
采用等温传导量热法测量水硬性胶凝材料的水化热的标准试验方法

Standard Test Method for Measurement of Heat of Hydration of Hydraulic Cementitious Materials Using Isothermal Conduction Calorimetry


ASTM C1702-2015a 发布历史

5.1x00a0;This method is suitable for determining the total heat of hydration of hydraulic cement at constant temperature at ages up to 7 days to confirm specification compliance. It gives test results equivalent to Test Method C186 up to 7 days of age (1).3

5.2x00a0;This method compliments Practice C1679 by providing details of calorimeter equipment, calibration, and operation. Practice C1679 emphasizes interpretation significant events in cement hydration by analysis of time dependent patterns of heat flow, but does not provide the level of detail necessary to give precision test results at specific test ages required for specification compliance.

1.1x00a0;This test method specifies the apparatus and procedure for determining total heat of hydration of hydraulic cementitious materials at test ages up to 7 days by isothermal conduction calorimetry.

1.2x00a0;This test method also outputs data on rate of heat of hydration versus time that is useful for other analytical purposes, as covered in Practice C1679.

1.3x00a0;The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.4x00a0;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.

ASTM C1702-2015a由美国材料与试验协会 US-ASTM 发布于 2015。

ASTM C1702-2015a在国际标准分类中归属于: 17.200.10 热、量热学。

ASTM C1702-2015a的历代版本如下:

  • 2009年07月01日 ASTM C1702-09 使用等温传导量热法测量水硬性水泥材料的水合热的标准测试方法
  • 2009年12月01日 ASTM C1702-09a 使用等温传导量热法测量水硬性水泥材料的水合热的标准测试方法
  • 2013年10月01日 ASTM C1702-13 使用等温传导量热法测量水硬性水泥材料的水合热的标准测试方法
  • 2013年12月15日 ASTM C1702-13a 使用等温传导量热法测量水硬性水泥材料的水合热的标准测试方法
  • 2014年07月15日 ASTM C1702-14 使用等温传导量热法测量水硬性水泥材料的水合热的标准测试方法
  • 2015年01月15日 ASTM C1702-15 使用等温传导量热法测量水硬性水泥材料的水合热的标准测试方法
  • 2015年08月01日 ASTM C1702-15a 使用等温传导量热法测量水硬性水泥材料的水合热的标准测试方法
  • 2015年12月01日 ASTM C1702-15b 使用等温传导量热法测量水硬性水泥材料的水合热的标准测试方法
  • 2017年02月01日 ASTM C1702-17 使用等温传导量热法测量水硬性水泥材料的水合热的标准测试方法
  • 2009年 ASTM C1702-2009 使用等温热传导量热法测定水硬胶结材料的水合热的标准试验方法
  • 2009年 ASTM C1702-2009a 利用等温量热传导测量水硬性胶凝材料的水化热的标准试验方法
  • 2013年 ASTM C1702-2013 利用等温量热传导测量水硬性胶凝材料的水合热的标准试验方法
  • 2013年 ASTM C1702-2013a 利用等温量热传导测量水硬性胶凝材料水合热的标准试验方法
  • 2014年 ASTM C1702-2014 利用等温量热传导测量水硬性胶凝材料的水化热的标准试验方法
  • 2015年 ASTM C1702-2015 采用等温传导量热法测量水硬性胶凝材料的水化热的标准试验方法
  • 2015年 ASTM C1702-2015a 采用等温传导量热法测量水硬性胶凝材料的水化热的标准试验方法
  • 2015年 ASTM C1702-2015b 采用等温传导量热法测量水硬性胶凝材料的水化热的标准试验方法
  • 2017年 ASTM C1702-2017 利用等温量热传导测量水硬性胶凝材料的水化热的标准试验方法

 

 

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标准号
ASTM C1702-2015a
发布日期
2015年
实施日期
废止日期
国际标准分类号
17.200.10
发布单位
US-ASTM
适用范围

5.1x00a0;This method is suitable for determining the total heat of hydration of hydraulic cement at constant temperature at ages up to 7 days to confirm specification compliance. It gives test results equivalent to Test Method C186 up to 7 days of age (1).3

5.2x00a0;This method compliments Practice C1679 by providing details of calorimeter equipment, calibration, and operation. Practice C1679 emphasizes interpretation significant events in cement hydration by analysis of time dependent patterns of heat flow, but does not provide the level of detail necessary to give precision test results at specific test ages required for specification compliance.

1.1x00a0;This test method specifies the apparatus and procedure for determining total heat of hydration of hydraulic cementitious materials at test ages up to 7 days by isothermal conduction calorimetry.

1.2x00a0;This test method also outputs data on rate of heat of hydration versus time that is useful for other analytical purposes, as covered in Practice C1679.

1.3x00a0;The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.4x00a0;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.





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