• The microstructural transformation could be divided into three phases.

    微观结构的转变分为三个阶段

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  • Study Design. Microstructural investigation of interlamellar connectivity.

    研究设计:板层间连接微观结构研究。

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  • The investigation of microstructural elements using some type of microscope.

    某种类型显微镜对材料微观组织情况进行的研究。

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  • Onion rings are formed in the microstructural texture and in the equivalent plastic distributions.

    焊缝中心线附近等效塑性应变结构纹理呈现洋葱状结构。

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  • The microstructural study plays an important role in analyzing disc performance and recording mechanism.

    薄膜的区结构研究对于分析光盘性能了解记录机理具有重要意义

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  • Microanalysis: analyzing the microstructural aspects, micro-constitution and microstructure of materials.

    分析:对材料微观形貌、微区成分、微区结构进行分析。

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  • Varying impurity level, it was found that this microstructural effect is independent of temper embrittlement.

    改变杂质水平看出显微组织影响回火脆性无关。

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  • Microstructural observations by microscope and SEM show that there exist whiskers in the ore after reduction.

    光学显微镜扫描电镜观察了还原矿石微观结构变化,电镜下观察到“铁须”的存在

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  • The microstructural anomalies resulting from cadmium embrittlement can lead to component fractures in service.

    脆化造成微结构异常导致部件使用断裂

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  • Study is emphasized on the evolution of microstructural damage induced in material, which initially embeds flaws.

    本文研究含有微小裂隙韧性材料细观损伤演化

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  • This paper mainly reviews deformation mechanism of superplasticity, microstructural aspects and its dynamic implications.

    概述了岩石塑性变形机制显微构造特征、影响因素及其动力学意义。

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  • Thus, a model intended to rationalize the different intervening microstructural factors at the notch location was developed.

    因此开发了一个模型使得刻痕位置不同相互干涉微结构因素合理化

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  • To determine the microstructural mechanical properties of W alloy is very important for the research and design of the alloy.

    合金微观性能测定对钨合金研究设计有着极其重要的意义。

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  • The microstructural change and fracture morphology during superplastic deformation of LF6 Alumini-um alloy have been examined.

    研究了LF6铝合金超塑性变形中的显微组织变化断口形貌特征。

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  • The infused hydrogen migrates to areas of high stress (e. g., material internal stresses) and creates local microstructural damage.

    如果氢元素转移应力区域(材料内部应力)导致微结构损伤

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  • Microstructural spheroidization of extruded AZ91D magnesium alloys with a high extrusion ratio of 40 was investigated at semisolid state.

    通过淬法获得挤压40AZ91D镁合金等温处理过程中的半固态组织,研究其球化机制。

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  • The important microstructural parameters of these two functionally gradient materials have been inferred from their percolation thresholds.

    渗流阈值讨论了两个体系功能梯度材料重要显微结构因素。

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  • The columnar to equiaxed transition (CET) is a kind of microstructural transformation in certain solidification, which should be controlled.

    状晶等轴晶转变CET一定凝固过程必须控制的显微组织转变

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  • The results show that amorphization of crystallite is the main form of microstructural evolution during thermal stabilization of PAN fibers.

    结果表明,晶区的非晶化转变原丝在预氧化过程组织结构演变的主要形式

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  • The microstructural changes of high-strength aluminum alloy 7475 in the process of superplastic deformation were systematically investigated.

    质点强化的高强度7475铝合金塑变形中显微组织变化进行了研究。

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  • Evaluation of the fired samples for oxidation percentage, weight loss, dense zone and microstructural characteristics of the zone is carried out.

    煅烧后试样氧化百分率失重致密致密层的显微结构特点了鉴定

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  • The dependence of the densification and the microstructural evolution of the composites on time, temperature, and sintering atmosphere were studied.

    研究了各种烧结温度时间气氛条件下复合体致密度显微结构改善。

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  • Microstructural homogeneity of a rebonded magnesia-chrome brick used in tunnel kiln in a period of 10 years were studied by means of OM, SEM, EDAX and XRD.

    利用OMSEMEDAXXRD检测方法研究了种在隧道使用10再结合镁显微结构化现象。

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  • The microstructural morphology of high vinyl polybutadiene (HVBR) and cis- polybutadiene rubber (BR) blends was observed by transmission electron microscope .

    乙烯基丁二烯HVBR顺丁橡胶BR共混胶进行了透射电镜观察

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  • Microstructural study revealed that the shape of ice crystal was different at different frozen temperature, which was the major reason for protein denaturation.

    微结构表明不同温度冻藏条件下,鱼肉蛋白质结晶大小有很大差异,冰晶影响导致蛋白质变性的主要原因

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  • When hydrogen remains in a component for an extended time, the microstructural damage that develops significantly degrades the mechanical properties of the steel.

    如果氢元素残留部件中达到一定时间微结构损伤就会使钢材机械性能严重衰减。

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  • When hydrogen remains in a component for an extended time, the microstructural damage that develops significantly degrades the mechanical properties of the steel.

    如果氢元素残留部件中达到一定时间微结构损伤就会使钢材机械性能严重衰减。

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