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焊接熔池 weld pool英语短句 例句大全

时间:2019-02-21 07:35:12

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焊接熔池 weld pool英语短句 例句大全

焊接熔池,weld pool

1)weld pool焊接熔池

1.Research on the camera calibration in the capturingweld pool image process in under water welding;水下焊接熔池采集过程中摄像机的标定

2.Image processing ofweld pool by mixed programming based on VC++ and Matlab;基于VC++与Matlab混合编程的焊接熔池图像处理

3.Simulation of columnar dendrite grain growth inweld pool of Ni-Cr binary alloyNi-Cr二元合金焊接熔池中柱状枝晶生长模拟

英文短句/例句

1.Vision-Based Measurement of Weld Pool Surface Depression in TIG Welding;TIG焊接熔池表面变形的视觉检测

2.Numerical Simulation of the Transient Behaviors of Full-Penetrated TIG Weld Pools;全熔透TIG焊接熔池形态瞬时行为的数值模拟

3.Simulation of Fluid Dynamics Behavior and Solidified Structure in Welding Pool;焊接熔池的流体动力学行为及凝固组织模拟

4.Studies on the Asymmetric Reaction Catalyzed by Small Organic Molecules;焊接熔池视觉特征信息获取与处理系统的设计

5.The Collecting and Character Analysis of the Welding Pool Image Based on the Doulde Wire Arc Welding Process of the Aluminum Alloy;铝合金双丝焊接熔池图像采集与特征分析

6.The Three Dimensional Numerical Simulation of Temperature and Fluid Flow Fields of Plasma Arc Welding;等离子弧焊接熔池流场与温度场三维数值模拟

7.Digital Modeling of the Dynamic Process of Welding Pool and the Distribution of Arc Energy;焊接熔池动态过程及电弧能量分布的数值模拟

8.The Preliminary Simulation of Dendritic Growth in Molten Pool of Pure Metal with Phase-Field Method纯金属焊接熔池枝晶生长的相场法模拟初探

9.Numerical Simulation of Phase-Transition Heat Transfer and Fluid Dynamic Characteristic in Welding Pool焊接熔池相变传热特性及流体动力学分析

10.Impact of Physical Properties of Dissimilar Metal on Laser Welding Pool异种金属物理性质对激光焊接熔池的影响

11.Simulation of columnar dendrite grain growth in weld pool of Ni-Cr binary alloyNi-Cr二元合金焊接熔池中柱状枝晶生长模拟

12.MEASUREMENT OF MOLTEN POOL TEMPERATURE FIELD DISTRIBUTION USING INFRARED TECHNIQUE IN VERTICAL - DOWN SMAW立向下焊焊接熔池表面温度场分布的红外热象法测定

13.Observations of Molten Pool Behavior during A-TIG Welding活性剂钨极惰性气体保护电弧焊接熔池行为的观察

14.Characteristic of Molten Pool During Laser Welding of TA15YAG激光焊接钛合金TA15熔池特征

15.Laser Welding and Numerical Simulation of the Flow Field for Titanium Alloy;钛合金激光焊接及其熔池流动场数值模拟

16.Processing and Identifying Image of Welding Molten Pool Based on Morphology;基于形态学的焊接区熔池图像的处理与识别

17.Observation of Melting Pool and Electrode during TIG Arc Welding from High Speed Video Image;高速摄像技术中TIG焊接过程的熔池和电极研究

18.The Research on the Process Stability and Molten Pool Forming in Ultra-narrow-gap Welding超窄间隙焊接过程工艺稳定性及熔池形成

相关短句/例句

welding pool焊接熔池

1.Image taking and processing ofwelding pool based on structured light projection;基于结构光投影的焊接熔池图像获取与处理

2.Because prolific information can be got from thewelding pool,the research on the sensing and control of thewelding pool is one of the important fields in welding.焊接熔池包含有丰富的信息,熔池传感与控制系统的研究是焊接研究一个重要领域。

3.The GBE model for simulation of grain structures inwelding pool is introduced.介绍了焊接熔池组织模拟的GBE模型。

3)molten pool焊接熔池

4)tungsten inert-gas welding molten poolTIG焊接熔池

5)shape of welding pool焊接熔池形状

6)molten pool width焊接熔池宽度

1.On-line detection of underwatermolten pool width based on structured light;基于结构光的水下焊接熔池宽度在线检测

延伸阅读

熔池熔炼炉解析熔池熔炼炉解析anallysis of bath smelting furnacerongehi rongljonlu jiexi熔池熔炼炉解析(analysis of bath smeltingfumace)为实现熔池熔炼过程和设备的优化而进行的数学解析。熔池熔炼炉为火法冶金反应器中的一类。通过解析已提出的控制和最优化模型有:(l)热力学平衡计算模型;(2)表征熔池熔炼传递现象的熔体搅拌功计算模型;(3)瓦纽科夫熔炼炉的回归模型及列线图;(4)白银炼铜炉工艺参数优化模型。这些模型尚在发展中,但可用于工程开发与生产控制。热力学平衡计算模型闪速熔炼和熔池熔炼以及吹炼都是动态过程,其化学反应以高速进行。和闪速熔炼一样,热力学平衡计算模型(见闪速炉解析)已用于解析诺兰达法中主要元素(铜、铁、硫、氧和510:)的行为。熔体搅拌功计算模型熔池熔炼法的传热和熔池中强化熔炼能力,在很大程度上取决于喷嘴喷射气体给予熔池的强力搅拌混合。喷入熔体的气体所作的搅拌功可用下式表示:P。=0 .74QTln(l+尸mZ/P。)式中尸m为单位时间消耗的搅拌功W;Q为喷入熔体的气体流量L/s(标准状态);T为熔体的绝对温度,K;Pm为熔体密度g/cm“;Z为气体上升高度Cm;尸,为大气压力kg/cm,。表中比较了熔池熔炼与萃取混合、浮选、球磨、P一S铜转炉及底吹炼钢的搅拌功能耗数据。应该指出的是,底吹炼钢法的能耗较高。各种过程搅拌功能耗的比较…蒸三牛,叩绪续表根据原料的已知成分,需要的铜梳含铜量和渣含—一一一一一一一一下一一一一一一510,量计算数值a、,把式(7)和式(8)代入式(6), 赚磨、棒磨、自动磨矿}25一125山91+御92+山93一。叨)----一万)不—一—一一丁一一一一一—一一一所以-一一‘二一一一一一一一一书一一一一一一一一一g飞+92+93一1、z。,J 诺兰达炉}60要确定配料需要第三个方程,选择炉料含1定量 、*、,。}。二的硫作为其条件,得到方程式:—s,g一十s:92+5 393一s(川 方程组(9)一(11)的解可确定配料为得到给瓦纽科夫熔炼炉的回归模型及列线图为了保证一,,泣二二石一‘。~,*。舒,。_,。二八。、、。,。‘、阻叮’\份孙刀‘,目,“’次土人J人以‘/,‘犷卜~定品位的铜铣所需氧气量,可根据过程的氧平衡得出正确选择瓦纽科夫炉的工艺制度及其控制方法,方便二_。~一,*,l_ha-,*,扁‘二,,l。、,.、,。‘、‘,、J1一咄胜”干f。趾’汗八万日”一“。’阴仄~伏’么’川““’公’zJ’入氧消耗于硫化铁和离解硫的氧化,炉料必须的耗氧量i一于算,在回归方程基础上编制了列线图来简化计算。

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