用户名: 密码:    忘记密码   注册   在线充值
用薄皮热量计测量传热速率的标准试验方法  
 【英文标准名称】  Standard Test Method for Measuring Heat Transfer Rate Using a Thin-Skin Calorimeter
 【原文标准名称】  用薄皮热量计测量传热速率的标准试验方法
 【标准号】  ASTM E459-2005
 【标准状态】  Active
 【国别】  
 【发布日期】  2005
 【实施或试行日期】  
 【发布单位】  美国材料与试验协会(US-ASTM)
 【起草单位】  E21.08
 【标准类型】  (Test Method)
 【标准水平】  ()
 【中文主题词】  叠层板材;纤维;航天技术;热量计;热传递;规范(验收);材料;测量;航空航天运输
 【英文主题词】  calorimeter; convective; heat flux; heat transfer distribution; heat transfer rate; radiative; thin-skin
 【摘要】  

This test method may be used to measure the heat transfer rate to a metallic or coated metallic surface for a variety of applications, including:

3.1.1 Measurements of aerodynamic heating when the calorimeter is placed into a flow environment, such as a wind tunnel or an arc jet; the calorimeters can be designed to have the same size and shape as the actual test specimens to minimize heat transfer corrections;

3.1.2 Heat transfer measurements in fires and fire safety testing;

3.1.3 Laser power and laser absorption measurements; as well as,

3.1.4 X-ray and particle beam (electrons or ions) dosimetry measurements.

The thin-skin calorimeter is one of many concepts used to measure heat transfer rates. It may be used to measure convective, radiative, or combinations of convective and radiative (usually called mixed or total) heat transfer rates. However, when the calorimeter is used to measure radiative or mixed heat transfer rates, the absorptivity and reflectivity of the surface should be measured over the expected radiation wavelength region of the source.

In 4.6 and 4.7, it is demonstrated that lateral heat conduction effects on a local measurement can be minimized by using a calorimeter material with a low thermal conductivity. Alternatively, a distribution of the heat transfer rate may be obtained by placing a number of thermocouples along the back surface of the calorimeter.

In high temperature or high heat transfer rate applications, the principal drawback to the use of thin-skin calorimeters is the short exposure time necessary to ensure survival of the calorimeter such that repeat measurements can be made with the same sensor. When operation to burnout is necessary to obtain the desired heat flux measurements, thin-skin calorimeters are often a good choice because they are relatively inexpensive to fabricate.


FIG. 1 Typical Thin-Skin Calorimeter for Heat Transfer Measurement

1.1 This test method covers the design and use of a thin metallic calorimeter for measuring heat transfer rate (also called heat flux). Thermocouples are attached to the unexposed surface of the calorimeter. A one-dimensional heat flow analysis is used for calculating the heat transfer rate from the temperature measurements. Applications include aerodynamic heating, laser and radiation power measurements, and fire safety testing.

1.2 Advantages

1.2.1 Simplicity of ConstructionThe calorimeter may be constructed from a number of materials. The size and shape can often be made to match the actual application. Thermocouples may be attached to the metal by spot, electron beam, or laser welding.

1.2.2 Heat transfer rate distributions may be obtained if metals with low thermal conductivity, such as some stainless steels, are used.

1.2.3 The calorimeters can be fabricated with smooth surfaces, without insulators or plugs and the attendant temperature discontinuities, to provide more realistic flow conditions for aerodynamic heating measurements.

1.2.4 The calorimeters described in this test method are relatively inexpensive. If necessary, they may be operated to burn-out to obtain heat transfer information.

1.3 Limitations

1.3.1 At higher heat flux levels, short test times are necessary to ensure calorimeter survival.

1.3.2 For applications in wind tunnels or arc-jet facilities, the calorimeter must be operated at pressures and temperatures such that the thin-skin does not distort under pressure loads. Distortion of the surface will introduce measurement errors.

1.4 The values stated in SI units are to be regarded as the standard. The values given in parentheses are for information only.

1.5 ......

 【中国标准分类号】  A42
 【国际标准分类号】  17_200_10
 【页数】  7P.;A4
 【正文语种】  
索取全文
标准全文由山东省标准化研究院向您提供(不能使用知网账号下载全文),需向山东省标准化研究院支付相关费用后,方可获得标准。

 

       

标准间关联  
本领域专利与科技成果  
本标准研制背景
本标准应用动态
所涉核心技术研究动态
京ICP证040431号 互联网出版许可证 新出网证(京)字008号 京公网安备11010802014875号
© 2014中国知网(CNKI) 《中国学术期刊(光盘版)》电子杂志社有限公司
服务热线:400-810-9888 订卡热线:800-810-6613
在线咨询:http://help.cnki.net 客服中心:http://service.cnki.net 电子邮件:help@cnki.net