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1)  strong strain zone
强应变带
1.
It is helpful for our mapping objectively,dineating reasonablly the linear strong strain zone and weak strain domain, and revealing thd deformational and metamorphic history of Wudang Gr.
求文以1:5万凉水河镇幅、浪河镇幅区调资料为基础,阐述了武当山群的原生层理(So)、板劈理(S1B)、分异层理(S2C)和折劈理(S3Z)等面理的宏观及微观特征,探讨了其成生及演化关系,意义在于:客观地进行地质境图,合理地划分线状的强应变带与弱应变城,以揭示武当山群的变形变质及演化史。
2)  highly strained structural belt
强应变构造带
1.
The highly strained structural belts in some units of palaeo plate tectonics, products of subduction and collision of various scale plates in East Junggar, controlled the distribution of the majority of the endogenetic gold deposits and occurrences,turning into the most important gold metallogenic system in East Junggar.
东准噶尔强应变构造带形成于板块构造的特定部位 ,是不同级别板块俯冲、碰撞作用的产物 ,控制着该区大部分内生金矿的分布 ,并构成了该区最重要的金成矿系统 。
2.
Eastern Junggar highly strained structural belt is a product of plate collision.
东准噶尔强应变构造带是板块碰撞作用的产物 ,控制了金成矿带的分布 ,而金的矿化富集地段分布于强应变构造带与走向北北西的断裂交汇部位。
3)  Huilongwan strong strain band
回龙湾强应变带
1.
in central China (we call it Huilongwan strong strain band).
东秦岭二郎坪群和石界河群之间发现了一条强应变带(称之为回龙湾强应变带),呈NNW—SSE向延伸,面理置换强烈,韧性剪切变形特征明显,糜棱岩发育。
4)  strain hardening
应变强化
1.
Measurement of strain hardening coefficients of steels at low temperatures;
低温下钢材应变强化系数的测定
2.
Experimental study on the strain hardening and bake hardening properties of dual phase steel
双相钢板应变强化和烘烤硬化特性试验研究
3.
The solidified body is provided with typical plasticity, high elastic modulus and strain hardening even under the condition of very small surrounding stress.
该膏体充填材料具有典型的塑性特征,弹性模量大,在低围压下就转变为应变强化特征,是一种比较理想的充填胶结材料。
5)  strain strengthening
应变强化
1.
Influence of strain strengthening on steel sheet dent resistance;
应变强化对钢板局部凹痕抗力影响研究
2.
Strain Strengthening Technology of Pressure Vessels of Austenitic Stainless Steel;
奥氏体不锈钢压力容器的应变强化技术
6)  intense strain
强应变
1.
The ultra-fine grained aluminum alloys produced by intense strain and reducing residual stress bythe control of quenching and pre-stretch and aging process are reviewed.
综述了铝合金强应变组织细化技术,以及通过控制淬火、时效、预拉伸工艺,减小残余应力的研究现状。
补充资料:椐椐强强
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