Reduction of oxides formation at surfact depositsitson of wear-resistant alloys

V. Chigarev, Yu. F. Logvinov
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Abstract

The article deals with the issues of reducing the content of harmful substances when surfacing alloyed wear-resistant alloys. Studies have been carried out to determine the possibility of reducing the formation of oxides during surfacing of high-alloy wear-resistant alloys of the sormite type using a closed filter-ventilation system, which ensures minimal losses of alloying elements during the formation of the deposited layer. The loss of alloying elements during surfacing is influenced by a number of metallurgical and technological factors, including the share of the base metal in the deposited, surfacing modes, oxidation processes during melting of the electrode material and in the melt of the weld pool when interacting with the surrounding gas environment. To reduce the oxygen content in the gas-air mixture formed during the surfacing process, special absorbent substances are used in a closed filtering and ventilation system, which reduce the course of oxidative processes with the formation of oxides of alloying elements. At the same time, the gas-air mixture is taken from the zone of arc burning and the weld pool, filtered through a system of special filters, in which solid and gaseous components of the welding aerosol are removed, after which the purified gas mixture is used as gas protection during surfacing. We used powder tapes containing a mechanical mixture of powder components and a complex-alloyed alloy in the core. A complex-alloyed alloy, an alloy previously melted in an induction furnace, containing the necessary alloying elements. Particles of the required sizes were obtained by hydrogranulation, which were then introduced into the core of a flux-cored tape. The indicated flux-cored strips provided the same chemical composition of one alloying system in the deposited layer. After surfacing, the chemical composition of the deposited metal was determined for the content of carbon, manganese, silicon, nickel. The use of a closed filtering and ventilation system makes it possible to reduce the formation of oxides of alloying elements, which requires the determination of specific parameters for each surfacing process. Creation and use of closed fil'tro vent system (CFVS), serve of the filtered air in area of surfacing and providing safe labour in the workplace of welder. It corresponds the international standard of ISO and norms of European Union. Therefore, to execute a requirement to impermissibility of hit of harmful questions in an atmosphere concordantly Kiotskomuo and to Parisian protocols.
减少耐磨合金表面沉积物中氧化物的形成
本文论述了合金耐磨合金堆焊时降低有害物质含量的问题。已经进行了研究,以确定在使用封闭式过滤器通风系统堆焊高合金耐磨合金的过程中减少氧化物形成的可能性,该系统确保在沉积层形成过程中合金元素的损失最小。堆焊过程中合金元素的损失受到许多冶金和技术因素的影响,包括基底金属在沉积、堆焊模式中的份额、电极材料熔化过程中的氧化过程以及与周围气体环境相互作用时熔池的熔化过程。为了降低堆焊过程中形成的气体-空气混合物中的氧含量,在封闭的过滤和通风系统中使用了特殊的吸收物质,这减少了氧化过程,形成了合金元素的氧化物。同时,气体-空气混合物取自电弧燃烧区和熔池,通过一个特殊过滤器系统进行过滤,在该系统中去除焊接气溶胶的固体和气体成分,然后在堆焊过程中使用净化的气体混合物作为气体保护。我们使用的粉末胶带含有粉末成分和复杂合金的机械混合物。一种复杂的合金,一种预先在感应炉中熔化的合金,含有必要的合金元素。通过加氢造粒获得所需尺寸的颗粒,然后将其引入药芯胶带的芯中。所示的药芯带材在沉积层中提供了一种合金系统的相同化学成分。堆焊后,根据碳、锰、硅、镍的含量测定沉积金属的化学成分。使用封闭式过滤和通风系统可以减少合金元素氧化物的形成,这需要确定每个堆焊过程的特定参数。创建和使用封闭式过滤通风系统(CFVS),在堆焊区域提供过滤空气,并在焊工工作场所提供安全的劳动力。它符合ISO的国际标准和欧盟的规范。因此,为了执行一项要求,即在符合Kiotskomuo和巴黎协议的氛围中不允许出现有害问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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