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absorbed dose absorbed doses conversion method electron beams scopethis standard electron beam irradiation slag sludge moisture impact wrenches scopeexcept trading zones
GB/T 15447-1995 in English

GB/T 15447-1995 in English

SUPERSEDED

Conversion method of absorbed doses in different materials irradiated by X 、 γ rays and electron beams

  • Issued on:1995-01-05
  • Implemented on:1996-01-01
  • File Format:PDF
  • Delivery:Via email within 5 business days
Price(USD): $360.00
$350.00
Standard No: GB/T 15447-1995
Document status: SUPERSEDED
Superseded by: GB/T 15447-2008 Conversion method of absorbed doses in different materials irradiated by X γ rays and election beams
Superseded on: 2009-08-01
Title in English: Conversion method of absorbed doses in different materials irradiated by X 、 γ rays and electron beams
Title in Chinese: X、γ射线和电子束辐照不同材料吸收剂量的换算方法
Language: English
File Format: Electronic (PDF)
Delivery: Via email within 5 business days
Issued on: 1995-01-05
Implemented on: 1996-01-01
ICS Classification: 13.280-Radiation protection
Chinese Classification: F04-Basic standards and general method
Professional Classification: GB-National Standard
Related Keywords: absorbed dose
absorbed doses
conversion method
electron beams scopethis standard
electron beam irradiation
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gb/t 15447

《GB/T 15447-1995X、γ射线和电子束辐照不同材料吸收剂量的换算方法》由TC58(全国核能标准化技术委员会)归口,主管部门为国家标准化管理委员会。
本标准规定了在X,γ射线和电子束辐照下根据辐射场的特性、辐照条件、材料的组成和相关的测量,从已知的一种材料吸收剂量计算另外一种材料吸收剂量的方法。本标准适用范围:X、γ射线光子能量范围为:0.01~20MeV;电子束能量范围为:0.1~20MeV。本标准不适用于有效原子序数差别较大的两种材料界面附近吸收剂量的换算。


Scope

This standard specifies the method for calculating the absorbed dose of one material from the known absorbed dose of another material according to the characteristics of the radiation field, irradiation conditions, material composition and related measurements under X, γ-ray and electron beam irradiation. method. The scope of application of this standard: X, γ-ray photon energy range: 0.01 ~ 20MeV; electron beam energy range: 0.1 ~ 20MeV. This standard is not applicable to the conversion of the absorbed dose near the interface of two materials whose effective atomic numbers differ greatly.

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