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Effect of Sandblasting and Surface Mechanical Attrition Treatment on Surface Roughness, Wettability, and Microhardness Distribution of AISI 316L

机译:喷砂和表面机械磨损处理对AISI 316L表面粗糙度,润湿性和显微硬度分布的影响

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Surface roughness and wettability determines the stability of bone-implant integration. Stable implants can be found in those with a rough and hydrophilic surface. Sandblasting and surface mechanical attrition treatment (SMAT) are among the current techniques to obtain surface with such typical properties. In addition, both treatments increase mechanical strength of metal through surface grains refinement. In this paper, the effect of sandblasting and SMAT on surface roughness, wettability, and microhardness distribution of AISI 316L is discussed. All treatments were conducted for 0-20 minutes. The result shows a rougher and a more hydrophilic surface on the sandblasted samples rather than on those with SMAT. A harder surface is yielded by both treatments, but the SMAT produces a thicker hardened layer.
机译:表面粗糙度和润湿性决定了骨-植入物整合的稳定性。在具有粗糙和亲水表面的植入物中可以找到稳定的植入物。喷砂和表面机械磨损处理(SMAT)是获得具有此类典型特性的表面的当前技术。另外,两种处理都通过表面晶粒细化提高了金属的机械强度。本文讨论了喷砂和SMAT对AISI 316L的表面粗糙度,润湿性和显微硬度分布的影响。所有处理进行0-20分钟。结果显示,喷砂样品比具有SMAT的样品表面更粗糙,更亲水。两种处理均会产生较硬的表面,但SMAT会产生较厚的硬化层。

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