1、

Experiment and application of rowlock Wall Strengthened with expanded metal lath

空斗墙采用钢板网片加固试验及应用

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2、

Performance improvement of high strength bolts by low-carbon martensitic lath struc-ture

低碳板条马氏体组织对高强度螺栓性能的改善

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3、

The construction method of combining the prestress hollow core slab with the pour concrete lath

预应力空心板与现浇板带相结合的施工方法

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4、

The Effect of Microstructure on Crack Initiation and Steady State Propagation of Lath Martensite

微观结构对板条马氏体启裂和裂纹稳态扩展的影响

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5、

The main microstructure features of fatigue failure are martensite lath or martensite packet.

疲劳断裂的基本组织单元为板条晶或板条束。

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6、

Analyse the Surface Black Strap of Compressor Slide Lath

压缩机滑片表面黑带成因分析

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7、

A as thin as a lath women.

一个骨瘦如柴的妇女。

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8、

The microstructure of surfacing metal is lath martensite and carbide.

堆焊层显微组织为低碳马氏体和碳化物。

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9、

They are dislocated lath martensite area and twinned martensite area respectively.

这些微区分别为内孪晶马氏体区和位错板条马氏体区。

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10、

At high temperature and low strain rate, the lath martensite reorientates to the loading direction.

当试验温度较高且应变率较低时,伴随有马氏体板条向拉伸方向偏转的细观特征。

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11、

The magnitude and direction of lath martensitic shape strain is firstly measured by a new interference method in this research.

利用干涉显微镜首次测得了板条马氏体形状应变的大小及方向。

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12、

Lath sections with more smooth face and less destructive object cut and easy application to production are this way's advantages.

此种断裂控制爆破法具有切割面平整、对切割体的破坏性小、便于在生产中推广应用的突出优点。

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13、

The microstructures of the steel are fine lath martensite after "zero time holding" quenched.

零保温淬火后可获得细小的板条状马氏体组织。

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14、

A series of morphologies of lath microstructure can be attained by TMP.

通过TMP可获得各种各样的板条组织。

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15、

Abnormally turning of fine lath-like microstructures in low carbon microalloyed steel during mono-axis tension

低碳微合金钢微细板条状组织在单向拉伸中的反常转动

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16、

This sensor is embedded in a resin matrix composite lath to detect the change of lath's curvature.

将此传感器埋入树脂基复合材料板内部,测量板的弯曲变形。

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17、

The microstructure evolution and grain-refining mechanism of the process, severe rolling of lath martensite, was studied.

分析了采用板条马氏体大变形轧制工艺制备超细晶钢板时的显微组织演变过程及其晶粒细化机制。

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18、

Grain-Refining Mechanism of Severe Rolling to Lath Martensite

板条马氏体大变形轧制工艺的晶粒细化机制

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19、

Make-up: long edge of lath made according to the actual needs of the90-degree angle to join together.

拼版:板条长边根据实际需要做成90度角的企口和凹口来拼接。

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20、

Granular or lath be-bainite was formed in as-welded metal.

焊态下的焊缝组织是粒状或条状贝氏体。

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