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1)  weld solidification structure
焊缝凝固组织
2)  weld solidification
焊缝凝固
1.
Modeling of Metal Hot Deformation and Weld Solidification Process Using Cellular Automaton Method
金属热变形及焊缝凝固过程的元胞自动机模拟
2.
Simulation of microstructure during weld solidification based on cellular automaton
基于CA模拟焊缝凝固过程枝晶生长的分析
3)  weld microstructure
焊缝组织
1.
With optimum magnetic intensity and frequency, the weld microstructures were almost fine equiaxed grains and the weld shape was .
当磁感应强度和频率匹配合适时,焊缝成形良好, 焊缝组织几乎为细小的等轴晶。
2.
Based on the Schaeffler diagram, a software that predicts the weld microstructure of dissimilar metal weldments is designed, and its application is illustrated with an example.
利用舍夫勒图 ,设计了一套软件 ,用它可以预测异种钢接头焊缝组织 ,并通过一个具体实例说明了该软件的应用 。
4)  microstructure [英]['maikrəu,strʌktʃə]  [美]['maɪkro,strʌktʃɚ]
焊缝组织
1.
Effect of longitudinal magnetic field on microstructure and properties of MIG weld joint of mild steel;
纵向磁场对低碳钢MIG焊焊缝组织及性能的影响
2.
The microstructure of the tested alloys were systemically investigated by means of optical microscope and JSM-5600 scanning electron microscope(SEM),and the relation between microstructure and the welding hot cracking susceptibility was discussed.
采用横向变拘束试验,研究铝锂合金(A合金)和2024合金的焊接热裂纹敏感性;并对焊缝组织进行分析,探讨它对两种合金焊接开裂倾向的影响。
3.
By adjusting Cr content,the changes of the microstructure and mechanical properties of a Fe-base manual SHS welding joint were studied.
研究表明:当焊接接头的含Cr量(质量分数)小于3%时,随Cr的增加,焊缝析出的富Fe相增多,富Fe相显微硬度提高,富Fe相熔合区加宽,提高了焊接接头的力学性能;当含Cr量大于4%时,抑制了富Fe相和富Cu相的液相分离,焊缝组织趋向均匀化的Cu基合金,熔合区Cr与C形成碳化物,出现微裂纹,焊接接头的力学性能降低。
5)  microstructure of weld metal
焊缝组织
6)  solidification structure
凝固组织
1.
Effects of Rectangle Wave Pulse Current on Solidification Structure of Al-Cu Alloy;
方波脉冲电流对Al-Cu合金凝固组织的影响
2.
Solidification Structure of Zn-4Sb Alloy Used for Hot Dip Galvanization;
热镀锌用Zn-4Sb合金凝固组织的研究
3.
Eeffects of cooling rate on solidification structures of Al-Si-Cu sputtering targets;
冷却速度对Al-Si-Cu溅射靶材凝固组织的影响
补充资料:微波组织凝固治疗


微波组织凝固治疗


介入放射学技术。利用特殊设计的一套微波电极针行肿瘤治疗的方法。局麻下,通过导向穿刺针经皮穿入肿瘤内。使用能发射2450MHz微波的组织凝固器,以60W的功率发射60秒,可多次穿刺肿块的不同部位行微波治疗,直至超声监视到整个肿瘤内均呈高回声为止。可于同一部位多次实施。微波能使局部组织不断升温发热而周围组织则不被升温。即其仅仅消融局部肿瘤组织而不影响周围正常组织。微波同时兼有止血功能,是一种很安全的技术。
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