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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Nano-indentation on amorphous calcium phosphate splats: effect of droplet size on mechanical properties.
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Nano-indentation on amorphous calcium phosphate splats: effect of droplet size on mechanical properties.

机译:非晶磷酸钙片上的纳米压痕:液滴尺寸对机械性能的影响。

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Droplet processing technologies and many biological processes use disk-like or hemispherical shapes for construction or the design of surfaces. The ability to tune the characteristics and properties of a surface is important at the micro- and nano-scale. The influence of size on the mechanical properties is presently unknown. This work set out to produce splats from different droplet sizes (20-40 μm, 40-60 μm and 60-80 μm), and then determine the deposit characteristics and mechanical properties. All splats produced by melting particles in a flame and depositing onto a polished titanium surface were amorphous, as determined by Raman micro-spectrometry. The topography shown in an optical and scanning electron microscope and topographically mapped using the scanning mode of the nano-indenter revealed a flattened hemispherical deposit. The critical nano-indentation load for determining the true hardness decreased with increasing splat size; for 20-40 μm, 40-60 μm and 60-80 μm splats the critical load was 19, 16, 11 mN respectively compared to 30 mN for sintered hydroxyapatite. Higher loads are required to cause cracking and delamination in smaller splats. A load between 40 and 60 mN was required for delamination of the splat. Delamination of the splats could offer a new means to determine the adhesion of splats on low roughness surfaces.
机译:液滴处理技术和许多生物过程使用盘状或半球形形状来构造或设计表面。在微米和纳米尺度上,调节表面特征和特性的能力很重要。尺寸对机械性能的影响目前未知。这项工作旨在从不同的液滴尺寸(20-40μm,40-60μm和60-80μm)中产生飞溅,然后确定沉积物特性和机械性能。如通过拉曼显微光谱法所测定的,通过将颗粒在火焰中熔化并沉积在抛光的钛表面上而产生的所有小片都是无定形的。光学和扫描电子显微镜中显示的形貌,并使用纳米压头的扫描模式进行形貌绘制,显示出扁平的半球形沉积物。用于确定真实硬度的临界纳米压痕负荷随飞溅尺寸的增加而降低;对于20-40μm,40-60μm和60-80μm的片,临界载荷分别为19、16、11 mN,而烧结的羟基磷灰石为30 mN。需要较高的载荷才能在较小的短片中引起裂纹和分层。需要40至60 mN的负载才能使splat分层。碎片的分层可以提供一种新的方法来确定碎片在低粗糙度表面上的附着力。

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