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1)  the influence of contact section
接触区影响
2)  Language contact influence
接触影响
1.
The third chapter makes an elaborate comparison on the phonetic characteristics of Dongfeng Hakka and Elihua, and then aims to compare Dongfeng Hakka and Elihua with Meixian Hakka,Yizhang Hakka, Xiangnan dialect,southwest mandarin and Xiang groups in order to discuss the language contact influence of the phonological systems.
目的是通过对两个调查点语音的比较,揭示东风乡客家话和俄俚话语音接触影响的特点。
3)  Co-efficient of contact facet
接触面影响因子
4)  weld heat-affected zone
焊接热影响区
1.
The fatigue crack growth (FCG) behavior of the weld heat-affected zone of 14MnNbq bridge steel was systematically investigated in this paper.
该文系统地研究了14MnNbq桥梁钢焊接热影响区的疲劳裂纹扩展行为。
5)  heat affected zone(HAZ)
焊接热影响区
1.
The simulated heat affected zone(HAZ)continuous cooling transforming curve of X70 pipeline steel was measured by thermal simulated test,microstructural and hardness analysis,and the microstructure of simulated HAZ was investigated.
利用热模拟技术并结合组织分析和硬度测试,测定出X70管线钢焊接热影响区连续冷却转变曲线并研究其组织转变规律。
2.
The coarse grained structure of heat affected zone(HAZ) was gained through the thermal simulating method.
通过热模拟方法使试样获得焊接热影响区的粗晶组织 ,然后将模拟试样加工成标准夏氏冲击试样 ,经 5 0 0、5 2 0、5 5 0、5 80、6 0 0、6 2 0、6 5 0℃等 7个不同温度进行去应力退火。
3.
The effects of welding thermal cycle on impact toughness of coarse grain heat affected zone(HAZ)of two kinds X80 pipeline steels,namely Mn-Mo-Nb steel and high-Nb HTP pipeline steels,were investigated by means of welding thermal simulation on Gleeble-3500 simulator.
采用Gleeble-3500型热模拟试验机,研究了焊接热循环对Mn-Mo-Nb和高铌HTPX80管线钢焊接热影响区(HAZ)冲击韧性的影响。
6)  HAZ
焊接热影响区
1.
Comparison of Crystalline Ggrain Size of Ultra Fine Grain Steel and Mild Steel in HAZ;
超级钢与低碳钢焊接热影响区晶粒尺寸对比
2.
SCC at HAZ of Vapor Pipes Fabricated by SUS304L Stainless Steel;
不锈钢气相管焊接热影响区应力腐蚀开裂研究
3.
Prediction of grain size in the HAZ of the ultrafine grain steel joint;
400MPa级超级钢焊接热影响区晶粒尺寸的预测
补充资料:热影响区


热影响区
heat-affected zone

  reylngx}QngqU热影响区(Heat一affeeted zone)焊接或切割过程中,母材因受热的影响(但未熔化)而发生金相组织和力学性能变化的区域。对于母材的焊接热影响区,由于在焊接热作用下重新经历了一次(单道焊)或多次(多道焊)的加热与冷却循环,必然伴有独具特征的一种物理冶金过程,或者说是一种特殊的热处理过程,从而不能不使原已是优质的母材性能发生某些变化,而且常常带来恶化效果(如硬化、软化或脆化),甚至还可能发生各种类型的裂纹缺陷。因此,热影响区的性能变化是考察金属焊接性的重要一项。 (李维茜)
  
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