1) short-circuiting arc welding
短路过渡焊接
1.
Using the power source, the influence of dynamics properties on short-circuiting arc welding is evaluated in this paper, the results indicate that increasing the current falling speed at the later period of short-circuit will help to get fewer spatter, and increasing the current rising speed at the mid-period of the short-circuit will make the welding process more stability and re.
在此基础上,研究了电源动态特性对CO2短路过渡焊接过程的影响规律。
2.
Metal transfer frequency are usually taken as the criteria to evaluate the process stability of short-circuiting arc welding.
短路过渡焊接时,熔滴过渡频率通常被作为评价焊接过程稳定性及焊接质量的重要指标。
2) C02 short circuiting arc welding
CO2短路过渡焊接
3) short circuit CO_2 welding
CO_2短路过渡焊接
4) short-circuit CO 2 welding
短路过渡CO2焊接
5) CO 2 short circuiting transfer
CO_2焊接短路过渡
6) Metal active gas(MAG) welding of short-circuiting transfer
短路过渡MAG焊接
补充资料:单相短路电流
分子式:
CAS号:
性质:一相导体与保护导体发生短路时流经相-零回路的电流。单相短路电流是评价和设计保护接零系统设计的基本要素。保护接零系统的单相短路电流不应小于低压断路器瞬时动作或短延时动作过电流脱扣器的整定电流的1.5倍;不应小于低压熔断器熔体额定电流的4倍。
CAS号:
性质:一相导体与保护导体发生短路时流经相-零回路的电流。单相短路电流是评价和设计保护接零系统设计的基本要素。保护接零系统的单相短路电流不应小于低压断路器瞬时动作或短延时动作过电流脱扣器的整定电流的1.5倍;不应小于低压熔断器熔体额定电流的4倍。
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