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1)  local induction heating
局部感应加热
2)  local heating
局部加热
1.
Analysis on runner welding residual stress affected by local heating;
局部加热法影响转轮焊接残余应力的试验分析
2.
Based on transient thermal analysis and average temperature on nodes located in“observed area”,an APDL (ANSYS Parametric Design Language)program tracing the local heating process of sp.
局部补焊修复的球形容器通常采用局部加热来降低焊接残余应力,但局部加热过程本身也会带来相当大的残余热应力。
3.
The application of programed control system of temperature at local heating of insulator for cure bonding is introduced.
介绍了温度程序控制系统在局部加热粘接瓷套中的应用 ,对控制系统的构成、工作原理作了详细的论述。
3)  local thermal sensation
局部热感觉
1.
Effect of local exposure on human thermal responses(1):effects of local thermal sensation on overall thermal sensation;
局部热暴露对人体热反应的影响研究(1):局部热感觉对全身热感觉的影响
2.
Presents the research background and important developments, including the effect of local environmental parameters on local thermal sensation, the effect of local thermal sensation on overall human response, the weight of the effect of local thermal sensation on overall thermal sensation and the relevant pyschological and physiological developments.
介绍了有关局部热暴露的研究背景和重要进展,包括局部热暴露环境参数对局部热感觉的影响,局部热感觉对全身热反应的影响,不同部位的局部热感觉对全身热感觉影响的权重,以及相关的心理学和生理学研究现状。
4)  induction heating
感应加热
1.
Process and technical characteristic of induction heating high-strength packing band line;
感应加热高强度包装钢带生产线及工艺技术特点
2.
Finite element simulation of pipe bending process of pure titanium using local induction heating;
中频感应加热纯钛弯管成形过程中的有限元模拟
3.
Study on mechanism of thermal damage on PCD compacts induced by induction heating;
感应加热聚晶金刚石热损伤机理的研究
5)  inductive heating
感应加热
1.
The mathematical model and the formulations of the finite element method for the inductive heatingof tubes is presented.
研究管道感应加热的数学模型,推导有限元分析计算公式,编制轴对称零件感应加热过程的计算机仿真软件,并对一典型厚壁管道的感应加热过程进行了数值仿真,给出了温度场的仿真结果。
2.
The research on the process of tunnel--type inductive heating tundish is carried out in view of different tundish type with the use of mathematical model.
采用数学模型方法,在不同包型条件下,对隧道感应加热中间包钢水加热过程进行了研究,探讨其有利于减少热损和温度调控的包型结构。
3.
An Introduction to the circuit structure of a multi-functional CAN node as well as the application in inductive heatin
介绍一种多功能CAN节点的电路结构及在工业中频感应加热设备控制现场总线中的应用。
6)  induction heat
感应加热
1.
It is shown by combining the non-linear fitting and dynamic studying of grain growth that the evolution of primary α-Al grain in the A356 aluminum alloy during induction heating accords with the law of Oswald, Rn- R0n = kt, where 2.
应用图象分析法系统研究了非枝晶A356铝合金感应加热时的组织演变规律,结合非线性拟合和晶粒长大动力学等研究,结果表明:A356铝合金初生α-Al晶粒在不同感应加热温度下的长大规律均符合奥斯瓦尔德熟化关系式Rn-R0n=kt,在540℃-600℃的保温温度范围内,n值在2-3之间,k值在0。
补充资料:感应电加热
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性质:利用电磁感应发热进行加热物体的操作。在线圈内放置被加热物体,当交流电通过线圈时,在其周围产生交变磁场。在被加热物体内由交变磁场感应产生感应电流,而放出热量,可以均匀加热整个物体。

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