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The role of subgrain boundaries in partial melting

机译:亚晶界在部分熔化中的作用

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Evidence for partial melting along subgrain boundaries in quartz and plagioclase is documented for rocks from the Lost Creek Gneiss of the Llano Uplift, central Texas, the Wet Mountains of central Colorado, and the Albany-Fraser Orogen, southwestern Australia. Domains of quartz or plagioclase crystals along subgrain boundaries are preferentially involved in partial melting over unstrained domains of these minerals. Material along subgrain boundaries in quartz and plagioclase has the same morphology as melt pseudomorphs present along grain boundaries and is commonly laterally continuous with this former grain boundary melt, indicating the material along subgrain boundaries can also be categorized as a melt pseudomorph. Subgrain boundaries consist of arrays of dislocations within a crystal lattice, and unlike fractures would not act as conduits for melt migration. Instead, the presence of former melt along subgrain boundaries requires that partial melting occurred in these locations because it is kinetically more favorable for melting reactions to occur there. Preferential melting in high strain locations may be attributed to strain energy, which provides a minor energetic contribution to the reaction and leads to preferential melting in locations with weakened bonds, and/or the presence of small quantities of water associated with dislocations, which may enhance diffusion rates or locally lower the temperature needed for partial melting. (C) 2016 Elsevier Ltd. All rights reserved.
机译:沿石英和斜长石沿亚晶界部分熔融的证据已记录在得克萨斯州中部的拉诺隆起的失落的河片麻岩中,科罗拉多州中部的湿山和澳大利亚西南部的奥尔巴尼-弗雷泽造山带中。沿亚晶粒边界的石英或斜长石晶体畴优先参与这些矿物的未应变畴的部分熔化。石英和斜长岩中沿亚晶界的物质的形态与沿晶界存在的熔融拟晶体具有相同的形态,并且通常与该先前的晶界熔体在横向上连续,这表明沿亚晶界的物质也可以归类为熔融拟晶体。亚晶界由晶格内的位错阵列组成,并且与断裂不同,其不会充当熔体迁移的通道。取而代之的是,沿着亚晶粒边界存在前者的熔体需要在这些位置发生部分熔解,因为从动力学上讲,它更有利于在那里发生熔解反应。高应变位置的优先熔化可能归因于应变能,应变能为反应提供了较小的能量贡献,并导致键弱的位置和/或与位错相关的少量水的存在优先熔化,这可能会增强扩散速率或局部降低部分熔融所需的温度。 (C)2016 Elsevier Ltd.保留所有权利。

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