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Microhardness Anisotropy and the Indentation Size Effect in Single Crystal Magnesium Fluoride, MgF2

机译:MgF2单晶氟化镁的显微硬度各向异性和压痕尺寸效应

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摘要

The Knoop microhardness anisotropy profile was determined on the (001) of MgF2 which has microhardness maxima in the and minima in the . This anisotropy is the same as TiO2 and SnO2 which also have the rutile crystal structure. This indicates that the slip systems are the same for MgF2 as the other two rutile structures. The (001) microhardness of MgF2 is the most anisotropic of these three rutile structures. The three rutile structures are compared with regard to their absolute hardness values. MgF2 is much softer than the oxides, only about half the hardness of SnO2 and a third that of TiO2. It reflects the bond strengths as related to the single crystal elastic constants. The hardness of MgF2 is similar to, but slightly harder than the cubic alkaline earth fluorides, all of which have the fluorite structure. The indentation size effect of MgF2 on the (001) for the Knoop indenter over the range of test loads from 10g to 300g was determined. The ISE of MgF2 is less pronounced than those of TiO2 and SnO2.
机译:努氏显微硬度各向异性曲线是由MgF2的(001)决定的,MgF2的显微硬度最大值为,显微的最小值。该各向异性与也具有金红石型晶体结构的TiO 2和SnO 2相同。这表明MgF2的滑移系统与其他两个金红石结构相同。 MgF2的(001)显微硬度是这三种金红石结构中最各向异性的。比较了三种金红石结构的绝对硬度值。 MgF2比氧化物软得多,只有SnO2硬度的一半和TiO2硬度的三分之一。它反映了与单晶弹性常数有关的粘结强度。 MgF2的硬度与立方碱土金属氟化物相似,但硬度稍高,它们均具有萤石结构。确定了MgF2对努氏压头在(001)上的压痕尺寸的影响,其测试载荷范围为10g至300g。 MgF2的ISE不如TiO2和SnO2明显。

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