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A comparison of tool-repair methods using CO_2 laser surfacing and arc surfacing

机译:使用CO_2激光堆焊和电弧堆焊的工具修复方法的比较

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摘要

The life of loaded machine elements and the vital parts of tools can be successfully extended by systematic maintenance and the timely repair of damaged surfaces. It has been proved that with the regular maintenance of tool parts the cost of the tool in the price of a finished product can be considerably reduced. It is a very economical practise to manufacture certain parts from low-cost, tough structural steel on which a layer of wear-resistant alloy has been surfaced. In such a case the volume fraction of the surfaced layer is usually much lower than 10% of the total volume of the tool or the machine element. In this paper, we report some of our latest results involving comparative studies of repair surfacing on maraging steel and the cladding of common structural steel with a Ni-Co-Mo alloy similar to the maraging steel using a laser process and submerged-arc surfacing. The results are based on micro-structural and micro-chemical analyses of the surfaced layer and are supported by analyses of the micro-hardness and the residual stresses, carried out on suitably adapted flat specimens.
机译:通过系统维护和及时修复受损表面,可以成功地延长负载的机器元件和工具重要部件的使用寿命。已经证明,通过定期维护工具零件,可以显着降低以成品价格计的工具成本。用低成本,坚韧的结构钢制造某些零件是非常经济的做法,在该零件上已经覆盖了一层耐磨合金。在这种情况下,表面层的体积分数通常远低于工具或机器元件总体积的10%。在本文中,我们报告了一些最新结果,这些结果涉及对比研究马氏体时效钢的修复堆焊以及与激光加工和埋弧堆焊类似的马氏体时效钢,与Ni-Co-Mo合金相似的普通结构钢的覆层。结果是基于对表面层的微观结构和微观化学分析得出的,并得到了在适当适应的扁平试样上进行的显微硬度和残余应力分析的支持。

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