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首页> 外文期刊>Contributions to Mineralogy and Petrology >Structure and chemistry of grain boundaries in deformed, olivine + basalt and partially molten lherzolite aggregates: evidence of melt-free grain boundaries
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Structure and chemistry of grain boundaries in deformed, olivine + basalt and partially molten lherzolite aggregates: evidence of melt-free grain boundaries

机译:变形的橄榄石+玄武岩和部分熔融的锂铁矿聚集体中晶界的结构和化学性质:无熔融晶界的证据

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摘要

Olivine grain boundaries in deformed aggregates of olivine + basalt and partially molten lherzolite were analyzed with various electron microscopy techniques to test for the presence of thin (0.5-10 nm) intergranular melt films. High-resolution transmission electron microscopy (HREM) observations reveal that most of the boundaries do not contain a thin amorphous phase, although a small fraction of grains are separated by relatively thick (approx 1 mu m) layers of melt. However, due to the anisotropy of the olivine-melt interfacial energy, melt often tapers from a triple junction into an adjoining grain boundary over a length of 1 to 2 mu m, giving an effective dihedral angle of only approx 2 deg. The chemistry of olivine-olivine grain boundaries was analyzed using energy dispersive X-ray (EDX) profiling by scanning transmission electron microscopy (STEM) with a probe size of <1.5 nm. Ca, Al and Ti segregate to grain boundaries forming enriched regions of <7 nm width. Although these elements are concentrated in the glass phases, the presence of glass films with the same chemical composition as the bulk glass phases cannot explain concentrations of other elements such as Si and Al at the boundaries. Combined with the HREM results, the STEM/EDX profiling demonstrates the existence of chemical segregation between solid grains but the absence of thin, grain boundary melt films. Additionally, if melt films exist along all of the grain boundaries, as reported for similar samples by other groups, the rock should be substantially weakened. Creep experiments on the partially molten rocks analyzed in this study reveal little weakening at small melt contents, consistent with our observations of melt-free grain boundaries.
机译:用各种电子显微镜技术分析了橄榄石+玄武岩和部分熔融的锂铁矿变形聚集体中的橄榄石晶界,以测试是否存在薄的(0.5-10 nm)晶间熔体膜。高分辨率透射电子显微镜(HREM)观察表明,尽管一小部分晶粒被相对较厚(约1微米)的熔体层隔开,但大多数边界都不包含薄的非晶相。但是,由于橄榄石-熔体界面能的各向异性,熔体经常从三重结逐渐变细到相邻的晶界,长度为1至2μm,有效二面角仅为2度左右。使用能量色散X射线(EDX)分布图,通过扫描透射电子显微镜(STEM),以小于1.5 nm的探针尺寸分析橄榄石-橄榄石晶界的化学性质。 Ca,Al和Ti偏析到晶界,形成宽度小于7 nm的富集区域。尽管这些元素集中在玻璃相中,但与大块玻璃相具有相同化学组成的玻璃膜的存在无法解释边界处其他元素(如Si和Al)的浓度。结合HREM结果,STEM / EDX分析表明,固体颗粒之间存在化学偏析,但没有薄的晶界熔体膜。另外,如果熔体膜沿所有晶界存在,如其他小组对类似样品的报道,则岩石应被显着削弱。在本研究中对部分熔融岩石进行的蠕变实验表明,在低熔体含量下几乎没有减弱,这与我们对无熔体晶界的观察一致。

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