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1)  elastic energy of deformation
弹性形变能
2)  elastic deformation energy
弹性变形能
1.
Abutment pressure distribution in coalface plays an important role in stress concentration and elastic deformation energy storage in coal or rock seams,so it will affect greatly the occurrence of rock burst.
工作面支承压力分布对于煤岩体中应力集中和弹性变形能储存起着重要作用,因而会对冲击地压的发生产生重要影响。
2.
Fe-26Mn-6Si-7Cr-1Cu alloy is more resistant to cavitation erosion than Fe-20Mn-6Si-7Cr-1Cu alloy, which is mainly attributed to the higher strain-induced martensitic transformation energy and elastic deformation energy under a localized load.
在局部载荷作用下可吸收较多弹性变形能及在空蚀过程中有较高应变诱发马氏体相变能是前者抗空蚀性能优于后者的主要原因。
3)  deformation resilience, deformational resilience
变形回弹[性能]
4)  elastic deformation
弹性变形
1.
The compensation method of the double posts vertical lathe crossbeam elastic deformation;
双柱立式车床横梁弹性变形的补偿方法
2.
Precisely deriving the distribution of unit rolling force in cold strip rolling considering elastic deformation;
考虑轧件弹性变形时冷轧薄板轧制压力分布的精确求解
3.
On uneven limited elastic deformation theory;
不均匀的有限弹性变形理论
5)  elastic deformation
弹性形变
1.
Based on the method of equivalent electrical circuit, the paper calculates the intimate contact area and the bonding electrical current, taking into account elastic deformation of glass and two-dimensional roughness of the anode.
本文借助等效电路法 ,考虑玻璃弹性形变及阳极表面二维不平整度 ,计算了紧密接触面积和连接电流强度。
2.
A model was proposed on the elastic deformation of silicon wafer contact in bonding.
提出了键合过程中硅片接触的一种弹性形变模型。
3.
In this paper,considering the integrity tube under the external pressure from the elastic deformation and elastic-plastic deformation two stages,analysis and calculation on the destruction of the elastic-plastic deformation base on the Four-hinge mechanism.
本文从完整管体受外压发生弹性形变和弹塑性变形两个阶段考虑,在基于四铰链机构原理基础上对管体弹塑性破坏变形进行分析计算,得出完整管体的抗挤毁压力。
6)  elasticity deformation
弹性变形
1.
Function relation about elasticity deformation and energy absorbed by plate in the course of shot-peening process is established in the paper.
确立了喷丸加工板簧弹性变形能量和变形量的函数关系,分析了不同刚度型板进行喷丸加工时变形的成长过程,为典型的喷丸加工提供理论参考,从而能确定合适的工艺路线,达到设计的曲率要求。
补充资料:弹性形变
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性质:弹性材料在外力作用下发生形变后,当外力释去时,形变完全恢复、此种形变称为弹性形变。一般金属材料弹性形变不超过1%,应力应变之间关系符合虎克定律。对非晶态高聚物材料,弹性形变则包括普弹形变和高弹形变两类。普弹形变很小(约0.1-0.2%),应力应变之间关系符合虎克定律,高弹形变可高达百分之几百。高弹形变是高聚物一种独特的力学特性质,是由处于高弹态的高聚物分子内链段的聚向和位移产生的,形变时内应力小、模量小,形度值很大,当外力除支后可完全恢复。

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