首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Abrasive wear behavior of Ni(Cr)-TiB{sub}2 coatings deposited by HVOF spraying of SHS-derived cermet powders
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Abrasive wear behavior of Ni(Cr)-TiB{sub}2 coatings deposited by HVOF spraying of SHS-derived cermet powders

机译:HVOF喷涂SHS衍生的金属陶瓷粉末沉积的Ni(Cr)-TiB {sub} 2涂层的磨损性能

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Self-propagating high temperature synthesis (SHS) was used to generate cermets consisting of TiB{sub}2 hard particles in a Ni(Cr) binder phase. Three cermets were prepared with the following target compositions namely Ni(Cr)-65 wt.% TiB{sub}2, Ni(Cr)-40 wt.% TiB{sub}2 and Ni(Cr)-40 wt.% TiB{sub}2 with 5 at.% excess boron in order to promote matrix amorphisation. The size of the TiB{sub}2 particles within the cermet depended critically on the initial composition; large particles were favoured by low binder fractions and the presence of the excess boron. The SHS products were milled and the resulting powder classified, from which coatings were deposited onto steel substrates by high velocity oxy-fuel (HVOF) thermal spraying. Coatings consisted primarily of TiB{sub}2 particles in a nickel-based binder phase. Abrasive wear behaviour was examined with both alumina and silica abradents. All the coatings had similar, low wear rates with silica abrasive whilst with alumina abrasive, significantly different wear rates were observed. Although the Ni(Cr)-65 wt.% TiB{sub}2 coating had the lowest indentation fracture toughness and the lowest hardness of all the coatings, it exhibited the greatest resistance to abrasive wear with alumina abrasive. Also, the Ni(Cr)-40 wt.% TiB{sub}2 coating with excess boron had a higher wear resistance than its stoichiometric counterpart. In light of this, it is proposed that in these coatings, the presence of the larger boride particles imparts wear resistance.
机译:自蔓延高温合成法(SHS)用于生成由Ni(Cr)粘结相中的TiB {sub} 2硬颗粒组成的金属陶瓷。用以下目标组成制备了三种金属陶瓷,分别是Ni(Cr)-65 wt。%TiB {sub} 2,Ni(Cr)-40 wt。%TiB {sub} 2和Ni(Cr)-40 wt。%TiB含有过量5 at。%硼的{sub} 2,以促进基体非晶化。金属陶瓷中的TiB {sub} 2颗粒的大小主要取决于初始组成。低粘合剂含量和过量硼的存在有利于大颗粒的形成。研磨SHS产品并将所得粉末分类,然后通过高速氧-燃料(HVOF)热喷涂将涂层从中沉积到钢基材上。涂层主要由镍基粘合剂相中的TiB {sub} 2颗粒组成。用氧化铝和二氧化硅磨料检查磨料的磨损行为。所有涂层在二氧化硅磨料下的磨损率均相似,而在氧化铝磨料下的磨损率则明显​​不同。尽管Ni(Cr)-65 wt。%TiB {sub} 2涂层在所有涂层中具有最低的压痕断裂韧性和最低的硬度,但它显示出对氧化铝磨料最大的耐磨性。同样,具有过量硼的Ni(Cr)-40 wt。%TiB {sub} 2涂层具有比其化学计量对应物更高的耐磨性。鉴于此,提出在这些涂层中,较大的硼化物颗粒的存在赋予耐磨性。

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