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1)  deformation rate
形变率
1.
Differential scanning calorimetry (DSC) was employed to investigate the relation of deformation rate and eutectic melting activity energy of AZ91D magnesium alloy by SIMA method.
采用DSC技术研究了SIMA法制备半固态AZ91D镁合金坯料过程中形变率与共晶熔化激活能的关系。
2.
Taking U71Mn steel as an example, the effect of heating time, protective coating and rolling deformation rate on decarburization and oxidation of the heavy rail slab has been studied by observing the changes in the slab's decarburized layer in the course of heating and rolling.
以U71Mn钢为例,通过观察在加热和轧制过程中的钢坯脱碳层的变化,研究加热时间、保护涂料和轧制形变率对重轨钢坯脱碳和氧化的影响。
2)  deformation rate
变形率
1.
Study is made of the effect of rolling temperature and single-pass deformation rate on Kovar/Cu/Kovar laminates .
分析研究了轧制温度和单道次变形率对Kovar/Cu/Kovar层状复合材料制备的影响。
2.
Taking U71Mn steel as an example, the effect of heating time, protective material and rolling deformation rate on decarburization and oxidation of the slab has been studied by observing the changes of the slab's decarburized layer during the course of heating and rolling.
本文结合武钢大型厂U71Mn重轨钢,通过观察在加热和轧制过程中的钢坯脱碳层的变化,研究了加热时间、保护涂料和轧制变形率对重轨钢坯脱碳和氧化的影响。
3)  strain rate
变形速率
1.
The strain-stress curves were measured using Gleeble 3800 thermal mechanical simulator at strain rates of 0.
采用Gleeble 3800型热模拟试验机测定了含磷高强无间隙原子钢(IF钢)在变形温度为950,850℃,单道压缩变形量为50%,变形速率为0。
2.
The relationship between volume fraction of ultra-fine grained ferrite and strain rate was investigated for a plain low carbon steel (type Q235).
针对普通碳素钢(Q235类型),研究在Ae3~Ar3温度区间内采用形变诱导铁素体机制获得超细晶铁素体的数量与变形速率的相互关系。
3.
The influences of different technology parameters,such as temperature,strain,strain rate,on deformation resistance and microstructure of Q235 steel were investigated by Gleeble-1500 machine,which provided references for production practice.
借助Gleeble-1500热模拟机,研究了Q235钢不同温度、不同变形量及不同变形速率等参数对变形抗力及组织的影响规律,为生产实践提供了参考。
4)  deformation rate
变形速率
1.
The influence of different deformation temperature and different deformation rate on SUS316L stainless steel flow and mircostructure
不同变形温度和变形速率对SUS316L不锈钢流变应力及金相组织的影响
2.
The deformation temperature and the deformation rate are the mai.
变形温度和变形速率是影响动态再结晶的主要因素,一般在高的变形温度和小的变形速率下,动态再结晶才能发生。
3.
And the variation of deformation rate of plasticized material was also simulated.
计算并分析了惯性摩擦焊接过程中接头塑性区的分布、扩展规律及其与工件轴向缩短的关系,并计算了塑性区金属塑性变形速率的分布和变化情况。
5)  deformation curvature
变形曲率
1.
Based on analyzing the mechanism of laser peen forming(LPF),a theory of pure bending with small deflection of metal sheet induced by laser peening was presented,the estimated formula of sheet deformation curvature after LPF was derived,and the mathematical model among radius curvature of deformation,depth of residual stress and the material property was established.
以外弯矩替代激光喷丸后的残余应力层,把激光喷丸板料变形过程等价为平板的纯弯曲问题,推导出激光喷丸后板料的变形曲率估算式,建立了板料变形曲率半径与残余应力层深度、残余应力的大小及分布和材料性能之间的关系模型。
2.
Due to the distinct difference in tensile and compressive properties,the position and deformation curvature of curved neutral layer will change with time for the!strata in a creep state.
由于岩石材料抗拉与抗压性能的明显差异,使岩层受蠕变作用时,其弯曲中性层位置及变形曲率都将随时间变化。
3.
In this paper,theories of flexibility difference and deformation curvature which identify structural damage are introduced.
文章介绍了柔度差和变形曲率用于结构损伤识别的理论。
6)  total deformation rate
总变形率
1.
Based on the experiment,the elongation of the cladding sheet can be reached 50%~65% when the total deformation rate is 18%~20% and the heating temperature is 460~480℃.
实验中 ,复合板在总变形率为 18%~ 2 0 %时伸长率达到最大值 ,在加热温度为 4 6 0~ 4 80℃时 ,伸长率最佳。
补充资料:电导率(见电阻率)


电导率(见电阻率)
conductivity

d!日nd日O}已电导率(eonduetivity)见电阻率。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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