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1)  shelled force
破壳力
1.
Study on influencing factors of Chinese chestnut s shelled force;
板栗破壳力学特性的影响因素研究
2.
The effects of different factors,such as the loading direction,the size,the loading speed,the water content and geometry shape,on the chestnut shelled force were investigated in this manuscript.
用准静态压缩试验,对影响板栗破壳力的不同因素——加载方向、板栗大小、加载速率、板栗含水率以及板栗的几何形状进行了分析。
2)  shell doctorial pressure
壳体破坏压力
3)  Bursting pressure of case
壳体爆破压力
4)  cracking [英]['krækɪŋ]  [美]['krækɪŋ]
破壳
1.
According to the definition shape and structure of apricot stones,together with the analysis of physical features of its structure,the conclusion of mechanical analysis of cracking has been drawn that the relationship between the core's length,width and height is not simply linear the core can approximately be on shell which is symmetry on its transverse,upright and vertical elliptical section.
同时设定该壳体所受破壳压力大小一致、均匀分布,在弯矩公式中引入回转半径L进行简化计算,分析探讨其综合应力和危险截面,结论是杏核破壳的最佳截面为杏核所具有的最大应力截面,即椭圆截面的最小回转半径处。
2.
An apricot kernal shell is studied as a shell with an unusual shape subject to consistant and uniformly distributed cracking pressures.
同时设定该壳体所受破壳压力大小一致、均匀分布,在弯矩公式中引入回转半径,简化计算;进行分析探讨其综合应力和危险截面;通过统计验证,最终得出结论:杏核破壳的最佳截面为杏核所具有的最大应力截面,即椭圆截面的最小回转半径处。
5)  extrusion cracking
挤压破壳
1.
In the experiment of apricot stone's extrusion cracking,the parameter of cracking load and its compress variation which influence apricot stone's cracking has been measured.
本文通过新疆杏核挤压破壳试验,测定了影响杏核破壳的破坏载荷及其压缩变形量等参数;统计分析表明,杏核的压缩变形并不是显著影响其破坏载荷的物理参数;为寻找更具代表性的物理参数,需进一步深入分析和探讨其他因素。
6)  cladding damage
包壳破损
1.
The system is also used for monitoring and measuring the cladding damage of the nuclear fuel rods.
系统包括缓发中子测铀装置 ,一旦核燃料元件包壳破损 ,系统将即时发出警
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