共查询到18条相似文献,搜索用时 46 毫秒
1.
铝合金变极性等离子弧穿孔焊过程控制 总被引:10,自引:5,他引:5
分析了铝合金变极性等离子弧穿孔立焊工艺特点,提出了通过对焊接参数的精确控制,实现变断面铝合金变极性等离子弧穿孔立焊工艺的方法,并将焊接电流、离子气流量和焊接速度确定为变断面铝合金变极性等离子弧穿孔立焊过程的被调节参数.保持穿孔熔池上热和力的动态平衡是调节焊接参数的根本依据,是实现变断面试件自动焊接的关键所在.采用单片机为核心的控制器对焊接参数进行实时调节,动态保持穿孔熔池上热和力平衡,实现了变断面铝合金变极性等离子弧穿孔立焊工艺. 相似文献
2.
3.
采用Keil Cx51结构化程序设计语言,对设计的基于PHILIPS P89C51RD2的脉冲TIG焊电源控制系统进行编程,实现了焊接过程的单片机控制,并以PWM输出、D/A转换程序模块为例说明了整个程序具有较好的可读性和结构化特点,程序的实现较汇编语言简单,可满足电源控制系统设计要求.较好地实现控制系统的功能。 相似文献
4.
5.
6.
7.
8.
9.
以穿孔等离子弧焊接过程中形成的穿孔熔池为研究对象,根据熔池热源形态的特点,采用数值模拟与试验相结合的手段研究横焊位置下的铝合金变极性等离子弧焊缝成形.由于焊接速度波动和工件厚度的影响,体热源作用下的穿孔熔池背面存在最高温度点和最大熔宽截面相背离的现象;因此通过对穿孔熔池背面进行分区和定义,提出温宽偏离度概念,即熔池背面最高温度点和最大熔宽截面的偏离程度,用以描述穿孔熔池状态及焊缝成形;通过调节焊枪角度来改变焊接过程中的温宽偏离度,在其它参数不变的情况下减轻重力在焊接过程中对焊缝成形的影响,实现变极性等离子弧穿孔焊接在横焊位置上的良好成形. 相似文献
10.
11.
12.
13.
14.
变极性等离子弧焊的优点在于能够灵活调节特征工艺参数如电流频率、正负半波电流幅值及导通时间比,以满足铝合金焊接时的阴极清理和形成穿孔焊。介绍了国内外在实现变极性电流波形、电弧稳定性、阴极清理机理、小孔信号检测等方面的研究现状。指出保证前后级同步是双逆变电路形式的技术关键,双通道形式可克服主、维弧干涉并降低钨电极烧损。溅射、电介质击穿及瞬时熔化和蒸发是目前解释阴极清理机理的主要理论,重要的是工艺参数对清理的影响规律。近年来又出现了几种新的小孔检测方法,而正面检测及多传感信息融合仍是其主要发展方向。 相似文献
15.
16.
A double invert variable polarity plasma arc (VPPA) power source based on 16-bit MCU applied for aluminum alloys was developed. Mechanics, electrical and the produced heat mechanism of VPPAW arc were tested and analyzed. Results indicate that during the VPPA welding procedure of aluminum alloy, the arc of electrode negative (EN) has more effect on force, whereas the arc of electrode positive ( EP ) has more effect on heat. It should be noted that keeping the balance of the force and heat is the critical element of VPPAW. This power source had been successfully used to weld aluminum alloy with a 15 mm thickness in vertical welding. The conclusions are applicable to the variable polarity plasma arc welding technique used in the aerospace industry. 相似文献
17.
利用U形压力计测试了不同工艺参数条件下的变极性等离子焊接的电弧压力,利用正交试验测试了不同正极性电流、反极性电流、正反极性时间比和等离子气流量四种参数条件下的电弧压力.结果表明,电弧压力随着这些因素的增加而增加,而四种因素对电弧压力影响的大小依次为:等离子气流量>正极性电流>正反极性时间比>反极性电流.分析原因,等离子气流量是通过冷却压缩提高电弧压力,压缩了电弧尺寸,而焊接电流则通过电磁压缩,但也提高了电弧半径.由于正反极性阶段电弧压力的差异较为明显.因此正反极性时间比对电弧压力也有显著的作用.Abstract: VPPA pressure was measured at different welding parameters by U-tube barometer method. The effects of different welding conditions on arc force, including straight polarity current, reverse polarity current, time ratio, plasma gas flow rate were analyzed by the orthogonal experiment. The results indicates that VPPA pressure increased with these four parameters, and the influences of the welding parameters are in order of plasma gas flow rate, straight polarity current, time ratio, and reverse polarity current. Then the mechanisms were discussed. The plasma gas can cool and compress the arc column and compress the arc radius, which increases the VPPA pressure; while the welding current increases the arc radius by electromagnetic compression, which enhances the VPPA pressure. Moreover, due to the great difference of VPPA pressure between straight polarity phase and reverse polarity phase, time ratio is also one of key factors to VPPA pressure. 相似文献
18.
Variable polarity plasma arc welding (VPPAW) is one of the most excellent processes used for welding aluminum alloys recently. It combines the advantages of variable polarity welding and plasma are welding, and can achieve the most rational heat distribution and cathodic cleaning. With the VPPAW equipment developed by authors, the cathodic cleaning regularity that is one of the most important problems in VPPAW is investigated in this paper. The results will be helpful in realizing the real cleaning mechanism. 相似文献