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Magnetic Properties of Materials Used in Electric Arc Welding and Surfacing

机译:电弧焊和堆焊材料的磁性

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摘要

It was experimentally established earlier that the increment of the electrode wire melting coefficient at submerged arc welding and surfacing with magnetic fields action (with equal parameters of the welding mode) depends on the chemical composition of the wires. It is suggested that this effect depends on the magnetic properties of the welding materials, i.e. electrode wire and base metal. To measure the magnetic properties of welding materials, a method has been developed in which the magnetic properties of welding materials on samples are investigated. The samples were made in the form of tori, on which the primary and secondary windings were placed. The primary circuit contains an ammeter and a voltmeter, as well as a wattmeter that allows to take into account losses in the sample on hysteresis and Foucault currents, and the secondary circuit contains a voltmeter. Experimental data on the magnetic properties of some welding and surfacing wires, as well as of base metals, are obtained. A simplified method is proposed, in which torus samples are also used, but on which only one winding is placed, over which a direct current is flowed. The value of the increment of the electrode wire melting coefficient at arc welding with the action of magnetic fields increases with increasing their magnetic permeability.
机译:较早的实验确定,在埋弧焊和有磁场作用(具有相同焊接模式参数)的情况下,焊丝熔化系数的增加取决于焊丝的化学成分。建议该效果取决于焊接材料即电极丝和贱金属的磁性能。为了测量焊接材料的磁性能,已经开发了一种方法,其中研究了样品上的焊接材料的磁性能。样品以花托形式制成,在其上放置了初级绕组和次级绕组。初级电路包含一个电流表和一个电压表,以及一个可以考虑到样品在磁滞和福柯电流下的损耗的功率计,而次级电路包含一个电压表。获得了一些焊接和堆焊焊丝以及贱金属的磁性能的实验数据。提出了一种简化的方法,其中也使用了环形样品,但仅在其上放置了一个绕组,在该绕组上流过直流电。随着磁场的导磁率的增加,电弧焊接时电极丝熔化系数的增加值也随之增加。

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