• The recrystallization temperature and time are the main factors.

    结晶温度时间立方织构形成主要影响因素。

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  • Trace lithium can improve recrystallization temperature of pure copper.

    在工业加入微量提高其再结晶温度

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  • The lower the recrystallization temperature, the smaller is the grain size.

    变形量越大,则再结晶温度,晶粒尺寸越小;

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  • After tempering, structure inheritance reduces, the recrystallization temperature reduces.

    淬火组织经回火相变再结晶温度有所降低。

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  • The fully recrystallization temperature and the on-set overheated temperature have also been obtained.

    得出了完全再结晶温度开始过烧温度。

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  • The cementite phase in steels increases the recrystallization temperature and abstracts the grain growth.

    由于渗碳体阻碍晶粒长大,所以碳含量增加再结晶温度升高

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  • The results showed that the recrystallization temperature is increased by alloying chromium and molybdenum.

    结果表明提高再结晶温度

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  • The effect of damage and fault healing has the great influence on the plasticity in materials over the recrystallization temperature.

    再结晶温度以上材料内部缺陷损伤修复作用效果对塑性变形能力具有重要影响

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  • The recrystallization temperature of cold deformed steels and its influencing factors have been studied by measuring hardness values and structure observation.

    通过测量硬度观察组织,确定几种变形再结晶温度及其影响因素

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  • The secondary recrystallization and its temperature range of grain oriented silicon steel have been studied by the method of interrupting secondary recrystallization annealing.

    采用中断研究了取向硅钢次再结晶过程中的异常长大行为,确定二次再结晶发生温度范围

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  • The coarse crystalline LC4 alloy exhibit some superplasticity under lower temperature and higher strain rate, because it can create effective recrystallization refinement.

    lc 4合金较低温度较高应变速率条件下,产生有效再结晶细化,而呈现一定的超塑性。

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  • At the same velocity, the dynamic recrystallization phenomenon is rather distinct with the rise of temperature.

    相同速度下随着温度升高动态再结晶现象比较明显

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  • With the decreases of deformation temperature and increases of deformation degree and deformation rate, the recrystallized grain size decreases and the recrystallization volume percent increases.

    随着变形温度降低、变形程度变形速率增大再结晶晶粒尺寸减小,再结晶体积分数增大。

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  • Lowering temperature window of rolling and large strain accumulation is basic condition for exceeding of critical strain for dynamic recrystallization to refine austenite grain size.

    为了获得足够应变积累来克服动态再结晶临界应变,低温变形量的变形基本条件

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  • The results showed that the austenite recrystallization occurs in a temperature range biger than thenormal quenching temperature and there is an optimum temperature range for the grain refining.

    结果表明氏体的再结晶发生钢的正常淬火温度以上个温度范围,并在该范围内存在晶粒细化效果最佳的温度区域

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  • High finish rolling temperature promotes the recrystallization of hot-rolled strip, increases favorable texture components, decreases the core loss, and increases magnetic induction of final product.

    提高温度可以促进热轧再结晶增加成品有利织构组分降低提高感。

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  • According to the experiment, the effects of rolling parameters on the extent of austenite recrystallization and grain size show a varying way in different temperature area.

    试验基础上就一般强度船板热变形时奥氏体再结晶百分数晶粒尺寸与工艺参数的关系进行了研究

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  • But if the annealing temperature is too high these will appear coarse-grained structure resulting from entire recrystallization.

    但是如果温度过高产生再结晶而出现粗晶组织,还会导致性能的严重恶化。

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  • Deformation, deformation temperature, deformation velocity and breaks after deformation have important influence on recrystallization grains grown.

    变形量,变形温度,变形速度,变形间歇时间等因素再结晶晶粒长大重要影响

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  • As the temperature elevating, dynamic recrystallization was more fully.

    随变形温度升高再结晶区域增大

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  • The different recrystallization annealing temperature and the micro-hardness of sample show the complex relationship.

    不同再结晶退火温度试样的显微硬度表现出复杂关系

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  • The results show that after alternate deformation, with the increase of heat treatment temperature, the nucleation ratio of recrystallization rises.

    结果表明,弯折压平交替变形,随热处理温度升高,再结晶增加。

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  • The dynamic recrystallization and recrystallized grain sizes of heading for high-temperature alloy (GH4169) bolt are simulated with this software.

    应用软件分析了高温合金(GH4169)螺栓挤工艺动态结晶过程结晶晶粒度分布。

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  • At higher temperature, the earlier recovery and recrystallization begin, and their effect on property degradation will be produced in advance.

    温度较高时,回复再结晶开始早,性能下降影响提前。

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  • The secondary phase particle dissolves back more with the increase of solution temperature and holding time, but recrystallization will occur, grains grow up.

    随固温度升高固溶时间延长,第二颗粒溶较多,发生结晶晶粒发生长大

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  • Dynamic recovery and recrystallization of the composite generate with the increasing of deformation temperature.

    变形温度升高,复合材料发生动态回复结晶。

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  • Small deformation in high temperature is easy to cause incomplete recrystallization and bulky and uneven grain. It is hard to eliminate them in subsequent rolling process.

    高温变形时容易发生不完全再结晶造成晶粒粗大不均匀随后轧制过程中很难消除

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  • When the temperature is constant, the dynamic recrystallization was increased as the strain rate decreased.

    温度一定时,随着应变速率降低材料越容易发生动态结晶

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  • When the temperature is constant, the dynamic recrystallization was increased as the strain rate decreased.

    温度一定时,随着应变速率降低材料越容易发生动态结晶

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