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Development of a Powder-feed Device and Procedures for the Application of an Experimental Alloy in Overhead PTA-P Welding

机译:粉末进给装置的开发和在架空PTA-P焊接中应用实验合金的程序

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When they are damaged by cavitation, hydroelectric power plant turbine blades must be repaired using operations that could benefit from developments in welding technologies. In light of this, the LABSOLDA welding laboratory at the Federal University of Santa Catarina is making efforts to enhance the flexibility and robustness of the powder-fed plasma transferred arc (PTA-P) process so that it can be used in any welding position and with different powders. The use of consumables in powder form in PTA-P welding allows experiments to be carried out to develop an alloy with special properties suitable for use in generator repairs. To this end, the RV-F PF powder feeder, which can operate with consumables with non-standard morphologies and particle sizes, was developed. The feeder was required to provide a regular flow of consumable material in out-of-position welding operations without the need for high gas flow rates and regardless of the morphology or particle size of the consumables. The RV-F PF is shown to operate efficiently with materials whose properties differ greatly from those of standard consumables. It is also suitable for overhead PTA-P welding and provides a constant supply of filler material efficiently with normal gas flow rates. The welding tests carried out involved deposition of a mixture of two alloys and were followed by cavitation testing of the resulting coating.
机译:当气蚀损坏水力发电厂的涡轮叶片时,必须使用可受益于焊接技术发展的操作进行维修。有鉴于此,圣卡塔琳娜州联邦大学的LABSOLDA焊接实验室正在努力提高粉末馈电等离子体转移电弧(PTA-P)工艺的灵活性和耐用性,使其可用于任何焊接位置和用不同的粉末。在PTA-P焊接中使用粉末形式的易损件可以进行实验,以开发出一种具有适合发电机修理的特殊性能的合金。为此,开发了RV-F PF粉末进料器,它可以使用具有非标准形态和粒径的消耗品进行操作。要求送料器在错位焊接操作中提供规则的消耗材料流,而无需高气体流量,并且不考虑消耗物的形态或粒径。 RV-F PF被证明可以有效地使用其特性与标准易损件性能差异很大的材料。它也适用于架空PTA-P焊接,并以正常的气体流量有效地提供恒定的填充材料。进行的焊接测试涉及两种合金混合物的沉积,然后对所得涂层进行空化测试。

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