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Assessment of Hydroabrasive Wear Resistance of Construction Materials with Functional Coatings, which are Formed by Resource-Saving and Environmentally Friendly Technologies

机译:通过资源节约和环境友好技术形成的功能涂层,评估建筑材料的水磨耐磨性

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The work presented in this paper is devoted to the formation of thick-layer wear-resistant coatings by technologies based on electrospark alloying, an example of essential components hardening for the heavy-duty processing equipment operating under hydroabrasive wear conditions. The aim of the paper is to improve the manufacturing and repairing technologies for the helical surfaces of the screws made of 65r, 30X13 and 40X steels and corrosion-resistant stainless steel 12X18H10T. The above aim has been achieved owing to applying the new environmentally friendly technologies for the formation of the surface layers, and also due to the choice of the surface layers that are most resistant against hydroabrasive wear, which choice being provided for by conducting the comparative tests on the samples made of the above said steel grades and strengthened in various ways. The analysis results of the hydroabrasive wear resistance of the samples made of steel and provided with protective coatings is presented.
机译:本文介绍的工作致力于通过基于电火花合金化的技术形成厚层耐磨涂层,这是在水力磨料磨损条件下运行的重型加工设备的关键部件硬化的一个例子。本文旨在改进65r、30X13和40X钢及耐腐蚀不锈钢12X18H10T螺钉螺旋面的制造和修复技术。由于采用了新的环境友好技术来形成表面层,以及由于选择了最能抵抗水力磨料磨损的表面层,从而实现了上述目标。通过对由上述钢种制成并以各种方式加固的样品进行对比试验,选择了最能抵抗水力磨料磨损的表面层。本文介绍了钢制试样和防护涂层试样的水磨耐磨性分析结果。

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