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Vickers Micro-hardness Studies of Amino acids (L-histidine, L-threonien and DL-methionine) doped KDP crystals

机译:Vickers氨基酸的微硬度研究(L-组氨酸,L-Tronein和DL-甲硫氨酸)掺杂KDP晶体

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Pure and various amino acids (L-histidine, L-threonine, DL-methionine) doped KDP crystals were grown by slow solvent evaporation technique. The doping of amino acids was confirmed by C, H, N analysis, FTIR spectroscopy and paper chromatography. Pure and doped KDP crystals were subjected to Vickers microhardness studies. Indentations were made on smooth (100) as grown faces of pure and doped crystals. The Vickers indenter loads were varied from 0.298 N to 0.981 N in order to study the effect of load on microhardness. A number of indents were made at each load and the mean diagonal length (d) was used in calculating the Vickers Hardness Number (HV). The Vickers micro-hardness decreased as amino acid doping level was increased indicating that the KDP crystals became softer after doping. The Indentation size effect (ISE) the Kick's law as well as PSR model was verified for all samples. The values of the load independent hardness and the Newtonian pressure (W) were higher in pure KDP crystals than the amino acids doped KDP crystals. It was found that as the doping concentration of amino acids increased the values of load independent hardness and Newtonian pressure decreased. Hays and Kendall law analysis was also applied to the hardness data.
机译:通过缓慢的溶剂蒸发技术生长纯净和各种氨基酸(L-组氨酸,L-苏氨酸,DL-甲硫氨酸)掺杂KDP晶体。通过C,H,N分析,FTIR光谱和纸张色谱法确认氨基酸的掺杂。对纯净和掺杂的KDP晶体进行维氏微硬度研究。压痕是在光滑的(100)上制作的纯和掺杂晶体的面孔。 Vickers indenter负载从0.298 n到0.981n变化,以研究载荷对显微硬度的影响。在每个负载下进行许多凹口,并且使用平均对角线长度(D)计算维氏硬度数(HV)。随着氨基酸掺杂水平增加,维氏微型硬度降低表明掺杂后KDP晶体变得更柔软。对所有样品验证了缩进尺寸效应(ISE)踢球的法律以及PSR模型。负载独立硬度和牛顿压力(W)的值纯KDP晶体高于掺杂KDP晶体的氨基酸。发现,随着氨基酸的掺杂浓度增加了载荷独立硬度的值,牛顿压力降低。 HAYS和KENDALL法律分析也适用于硬度数据。

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