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低压条件下的等离子射流特性分析  ( EI收录)   被引量:1

Characterization of plasma jet at low pressure

文献类型:期刊文献

中文题名:低压条件下的等离子射流特性分析

英文题名:Characterization of plasma jet at low pressure

作者:杨德明[1];高阳[1];傅迎庆[1];孙成琪[1,2]

机构:[1]大连海事大学热喷涂研究中心;[2]广东海洋大学航海学院

年份:2016

卷号:37

期号:10

起止页码:64

中文期刊名:焊接学报

外文期刊名:Transactions of the China Welding Institution

收录:CSTPCD、、北大核心2014、EI(收录号:20164502988834)、CSCD2015_2016、Scopus(收录号:2-s2.0-84994108676)、北大核心、CSCD

基金:国家自然科学基金资助项目(51172033);中央高校基本科研业务费专项资金资助项目(3132014323;3132016071)

语种:中文

中文关键词:低压等离子喷涂;等离子射流;焓探针;努森数

外文关键词:low pressure plasma spraying;;plasma jet;;enthalpy probe;;knudsen number

中文摘要:低压等离子喷涂由于具有特殊的射流特性,以及可以沉积组织均匀的特殊结构涂层而备受关注.涂层的形成受到等离子射流特性的影响,比如焓值、温度、速度等.研究中利用热焓探针技术在环境压力为3 k Pa的条件下,测量了Ar-H2等离子体不同轴向位置射流中心的焓值和压力,并且进一步计算了射流的温度和速度,以及表征等离子体对粉体加热能力的努森数.结果表明,等离子射流在距离喷嘴出口12.5 mm处的温度为11 000 K;400 mm处降为7 000 K;等离子射流速度在喷嘴出口处25 mm左右达到最大值,约为2 000 m/s;喷嘴外部等离子射流的努森数处于过渡区,对粉体的加热能力较低.

外文摘要:Low pressure plasma spraying has been attracted attention due to special properties of the expanded plasma jet which may probably deposit specific and unique structure coatings. The formation of the coatings is affected by plasma generation and working conditions. The operating parameters such as arc power,plasma gas flow rate,and chamber pressure have influences on enthalpy,temperature and velocity of plasma jet. In this paper,an enthalpy probe was applied to measure the enthalpy of argon-hydrogen plasma jet generated at chamber pressure of3 kP a. Attempts were also made to measure the pressure of plasma jet by U-tube fixed on the enthalpy probe. The temperature and velocity of plasma jet were calculated by measuring the enthalpy and pressure at different axial distances of the plasma jet.The results showed that the temperature of plasma jet reaches to11 000 K at 25 mm from nozzle exit,and then dropped slowly to7 000 K at 400 mm. The velocity of plasma jet reaches the maximum value of 2 024 m/s from the nozzle exit about 25 mm. The Knudsen number of the plasma jet is about 1. 0,so the heating capacity of the plasma jet is significantly reduced.

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