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Growth Morphologies, Fragmentation Patterns, and Hardness in Sodium Hydrogen Urate Monohydrate

机译:氢气尿酸钠单水合物中的生长形态,碎片模式和硬度

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Mechanical properties and new morphological data on synthetic sodium hydrogen urate monohydrate are reported and interpreted. Crystals formed in supersaturated aqueous solutions were identified by powder x-ray diffraction. Intact grains and separate needles were examined by several microscopy techniques, some reported here for the first time. The dominant morphology was spherulite-type, comprising tapered, branched blades (needles) radiating out of a common core. The pointed blade tips were truncated by (011) planes, corresponding to hydrogen-bonded planes. Branching was at about a 5° angle or its multiples, suggesting it accommodated by dislocation arrays at the low angle boundaries, as is often seen in twinning. Vicker's micro-hardness, extrapolated to zero porosity, was 0.90 GPa, which is greater than the hardness measured by nano-indentation. Present results are anticipated to be useful in interpreting the mechanical characteristics of the material crystallized in vivo and its action concerning gout, and affording inferences on the role of the milieu on morphologies, fragmentation, and hardness.
机译:据报道和解释了对合成氢盐金刚酸钠一水合物的机械性能和新形态学数据。通过粉末X射线衍射鉴定在过饱和水溶液中形成的晶体。通过几种显微镜技术检查完整的晶粒和单独的针,其中一些是第一次报告的一些显微镜技术。主导形态是球晶型,包括锥形的支链叶片(针)散发出共同的核心。尖尖的刀片尖端被(011)平面截短,对应于氢键键的平面。分支处于大约5°角或其倍数,建议在低角度边界处的位错阵列中,如孪生中经常看到的那样。 Vicker的微硬度推断为零孔隙率为0.90GPa,其大于通过纳米压痕测量的硬度。预计目前的结果可用于解释体内结晶的材料的机械特性及其有关痛风的作用,并对Milieu对形态,碎裂和硬度的作用提供推论。

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