土方机械工作体的修复和合金化

O. V. Kazannikov, E. Popov
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引用次数: 1

摘要

筑路机械和土方机械在作业过程中,其工作主体受到最大的磨损,特别是:开膛机的顶、排土场的叶片、挖掘机铲斗的齿。零件的极限状态的特征是与地面直接接触的工作体磨损元件的质量损失为2535%。在修理过程中被拒绝的零件被送去回收或修复。一些负载最大的部件在处理重土壤时的使用寿命为几个小时。远东地区道路建设和采石企业对土方设备的皇冠需求每年以数万件计。由于设施远离零件生产中心,因此补充易损件库存必须执行复杂的物流计划,并且总是伴随着巨大的成本。因此,挖掘机铲斗的撕裂器和牙齿磨损的冠修复和加固问题是非常相关的。各种工业和科学组织长期以来一直在解决这一问题,E.O. Paton电焊研究所在电渣面焊方法(ESF)方向上进行了多次开发,在这一方向上取得了相当好的成果。基于这种方法,创建了各种修复大型部件的工艺流程。使用ESF不仅可以修复磨损明显的零件,还可以获得相应的设计要求或改进的功能性能。在修复建筑和道路车辆的工作机构时,这些将增加其耐久性。本文研究了以远东地区开采的矿石精矿为合金添加剂,采用电喷砂法修复土方车辆工作体磨损冠的可能性。
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Restoration and alloying of working bodies of earth-moving machinery
During the operation of road-building and earth-moving machinery, their working bodies are subjected to the greatest wear, in particular: crowns of rippers, blades of dumps, teeth of excavator buckets. The limiting state of parts is characterized by a 2535 % loss of mass of worn elements of working bodies that have direct contact with the ground. Rejected during repair parts are sent for recycling or restoration. The service life of some of the most loaded parts when working with heavy soils is several hours. The need for crowns for earthmoving equipment from enterprises involved in road construction and quarrying in the Far East region is measured in tens of thousands of pieces per year. Replenishment of stocks of wear parts makes it necessary to implement complex logistics schemes due to the remoteness of facilities from the centers of production of parts, and is always accompanied by significant costs. Therefore, the problem of restoring and strengthening worn crowns of rippers and teeth of excavator buckets is very relevant. Various industrial and scientific organizations have been solving this problem for a long time, and quite good results in this direction were obtained after a number of developments at the E.O. Paton Electric Welding Institute in the direction of the method of electroslag facing (ESF). Based on this method, various technological processes for the restoration of massive parts were created. The use of ESF allows not only to restore parts with significant wear, but also to obtain the corresponding design requirements or improved functional properties. These, when restoring the working bodies of construction and road vehicles, will increase their durability. The paper considers the possibility of restoring worn crowns of working bodies of earth-moving vehicles by the ESF method, using ore concentrates mined in the Far East as alloying additives.
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