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首页> 外文期刊>Metallurgist >Improving Wear Resistance of Agricultural Machine Components by Applying Hard-Alloy Thick-Layer Coatings Using Plasma Surfacing
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Improving Wear Resistance of Agricultural Machine Components by Applying Hard-Alloy Thick-Layer Coatings Using Plasma Surfacing

机译:使用等离子体表面涂覆硬合金厚层涂层来提高农业机械部件的耐磨性

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摘要

The most effective method for improving wear resistance of rapidly wearing agricultural machine components reacting under operating conditions with an abrasive soil medium is application of hard alloy coatings by surfacing. The thickness of a surfacing layer is a factor governing the operating life of these components. Production limitations exist in applying hard alloy coatings connected with a reduction in their physicomechanical properties with an increase in surfacing layer thickness. In view of this, operating properties are studied for hard alloy coatings of different thickness for soil working components. Empirical dependences are determined governing permissible values of hard alloy surfacing layer thickness on components of working elements of solid treatment equipment. An effective production method is substantiated for applying hard alloy thick layer coatings. Production and materials science recommendations are given for preparing tool components.
机译:提高在用磨料土壤介质的运行条件下迅速磨损的农业机械部件的耐磨性的最有效方法是通过表面施加硬质合金涂层。 表面层的厚度是控制这些组分的使用寿命的因素。 在施加硬质合金涂层的情况下,在施加与物理机械性能的降低的施加的硬质合金涂层中,存在产生限制。 鉴于此,研究了不同厚度的硬质合金涂层的操作性能,用于土壤工作组件。 实证依赖性确定了固体处理设备的工作元件组件的硬合金表面厚度的允许值。 为了施加硬合金厚层涂层,证实了有效的生产方法。 提供生产和材料科学推荐,用于准备工具组件。

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