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首页> 外文期刊>Estonian Journal of Engineering >Characterization of functional gradient structures in duplex stainless steel castings
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Characterization of functional gradient structures in duplex stainless steel castings

机译:双相不锈钢铸件中功能梯度结构的表征

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摘要

Titanium carbide particle reinforced metal-matrix composite coatings, formed on duplex (austenitic/ferritic) stainless steel castings, were studied. These coatings, developed for wear applications, develop a functional gradient structure through a self-propagating high-temperature synthesis (SHS) of titanium carbide (TiC). This SHS-reaction was ignited in reactive inserts by the heat of liquid steel. The reactive inserts were compressed from mixtures of titanium, carbon and molybdenum powders together with iron or duplex stainless steel powders. The coating micro-structure depends on the reactive insert composition. Molybdenum reduced the TiC particle diameter, and reducing the binder content reduced the areal fraction of TiC.
机译:研究了在双相(奥氏体/铁素体)不锈钢铸件上形成的碳化钛颗粒增强金属基复合涂层。这些为磨损应用而开发的涂层通过碳化钛(TiC)的自蔓延高温合成(SHS)形成了功能梯度结构。液态钢的热量在反应性刀片中点燃了这种SHS反应。反应性插入物是由钛,碳和钼粉末与铁或双相不锈钢粉末的混合物压缩而成的。涂层的微观结构取决于反应性插入物的组成。钼减小了TiC的粒径,而减少粘结剂的含量则减少了TiC的面积分数。

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