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首页> 外文期刊>CERAMICS INTERNATIONAL >Boron nitride nanoplatelets induced synergetic strengthening and toughening effects on splats and their boundaries of plasma sprayed hydroxyapatite coatings
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Boron nitride nanoplatelets induced synergetic strengthening and toughening effects on splats and their boundaries of plasma sprayed hydroxyapatite coatings

机译:氮化硼纳米片诱导了对Splats的协同强化和增韧效果及其血浆喷涂羟基磷灰石涂料的界限

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Boron nitride nanoplatelets (BNNPs) with excellent mechanical properties were introduced into HA coatings fabricated through plasma spray in this research. SEM observation and Raman results revealed the added BNNPs retained their original structure even after harsh process and distributed homogeneously in the as-sprayed coatings. As compared with the monolithic HA coating, a 2.0 wt%BNNP/HA coating exhibited significant improvement (similar to 40.3%) in fracture toughness and moderate enhancement (similar to 20.0%) in indentation yield strength. Synergetic strengthening and toughening mechanisms which are operative through splat boundaries and individual splats were proposed. At splat boundaries, these embedded BNNPs induced stronger adhesion between the adjacent splats to resist splat sliding, which is evident from the fact that the calculated inter-splat friction force of an as-sprayed BNNP/HA coating was increased by similar to 7.3% at 2.0% BNNP weight fraction. Within splats, toughening mechanisms such as BNNP pullout, crack bridging by both anchored BNNPs and nanosized HA grains, crack deflection and crack propagation arrested by the embedded BNNPs were observed to improve toughness. Moreover, thermal mismatch between HA matrix and BNNPs during cooling process after plasma spray would induce the pre-existing dislocations formed around these BNNP nanofillers, which was assumed to hold out the effect of Orowan-type strengthening within splats.
机译:将具有优异机械性能的氮化硼纳米片(BNNP)引入通过该研究中的等离子体喷雾制成的HA涂层中。 SEM观察和拉曼结果表明,即使在苛刻的过程和在喷涂涂层中均匀地分布,也显示出添加其原始结构的BNNP。与整体式HA涂层相比,2.0wt%的BNNP / HA涂层在骨折韧性中表现出显着的改善(类似于40.3%),并在压痕屈服强度下的中度增强(类似于20.0%)。提出了通过Splat边界和单独的Splats操作的协同强化和增韧机制。在Splat边界处,这些嵌入的BNNP在相邻的Splats之间引起更强的粘附性以抵抗SPLAT滑动,这可能从所计算的BNNP / HA涂层的计算间隔摩擦力增加到7.3%时显而易见2.0%BNNP重量分数。在Splats内,通过锚定BNNP和纳米型HA颗粒,锚固BNNP和纳米颗粒的裂纹桥接,由嵌入的BNNP被阻滞的裂缝桥接,裂缝桥接,裂纹桥接的增韧机构被观察到改善韧性。此外,在等离子体喷雾后冷却过程中HA基质和BNNP之间的热失配会诱导围绕这些BNNP纳米填充物形成的预先存在的脱位,这假设在Splats内保持orowan型强化的效果。

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