Friction wear behaviors of 316L stainless steel/Y-PSZ composites
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摘要: 在MRH-3型高速環塊磨損試驗機上研究了粉末冶金方法制備的316L不銹鋼/Y-PSZ金屬陶瓷復合材料在干摩擦條件下的摩擦磨損性能,并與T10鋼(HRC45)的耐磨性能進行了對比.考察了316L不銹鋼體積分數(30%~50%)、顆粒尺寸(10.8~51.6μm)及對偶環轉速(200~280r·min-1)對材料耐磨性的影響.結果表明:隨著316L不銹鋼含量的增加和顆粒尺寸的增大,或隨著對偶環轉速的提高,復合材料的耐磨性下降.在本文研究條件下,除個別情形外,所制備316L/Y-PSZ復合材料的耐磨性能優于T10鋼;當不銹鋼體積分數為30%、顆粒尺寸為10.8Ⅱm時,復合材料的耐磨性能達到T10鋼的3.0~3.2倍.316L不銹鋼/Y-PSZ復合材料的磨損機理主要為316L不銹鋼顆粒剝落和Y-PSZ基體層片剝落.Abstract: The friction wear behaviors of 316L stainless steel/Y-PSZ (partially yttria-stabilized zirconia) metal-ceramics compos-ites fabricated by means of powder metallurgy were evaluated under dry-sliding condition on a high-speed block-on-ring contact wear test machine MRH-3, and were contrasted to those of T10 steel (HRC 45). The effects of the volume fraction (30% -50%) and particle size (10.8-51.6μm) of 316L and the rotary speed (200-280 r·min-1) of the friction ring on the wear resistance of 316L/Y-PSZ composites were investigated. The results show that the wear resistance of the composites decrease with the increase of 316L content and particle size, or with the increase of the rotary speed of the friction ring. The wear resistance of fabricated 316L/Y-PSZ composites is better than that of T10 steel under the experimental conditions in this work except for few cases. Furthermore, the wear resistance of the fabricated 316L/Y-PSZ composites with a 316L volume fraction of 30% and a 316L particle size 10.8μm is 3.0-3.2 times as large as that of T10 steel under the experimental conditions in this work. The abrasion mechanism of 316L/Y-PSZ composites is mainly composed of the desquamation of 316L particles and the delamination of Y-PSZ matrix.
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