车里雅宾斯克 LL5 陨石轻岩性中金属组合的热变质作用

E. V. Brusnitsyna, R. Muftakhetdinova, G. Yakovlev, V. Grokhovsky
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摘要

研究课题。车里雅宾斯克普通软玉(LL5)轻岩性中的金属组合。研究目的研究kamacite(α-Fe(Ni, Co))和taenite(γ-Fe(Ni, Co))的结构,以及确定软玉物质加热产生的形态特征。材料和方法从车里雅宾斯克陨石未改变的轻岩性中提取的样本。使用光学显微镜(Zeiss Axiovert 40 MAT)和扫描电子显微镜(FE-SEM ∑IGMA VP)以及 EDS 单元研究了样品的化学成分。研究结果。根据结构组成的不同,所研究的碎片可分为三组:1)结构未变的金属晶粒;在钛铁矿中观察到带状结构(四钛铁矿,浑浊区);2)具有与带状结构相似的钛铁矿结构的金属晶粒;3)未发现具有带状结构的晶粒的碎片;存在在重新加热过程中形成的马氏体状结构。车里雅宾斯克陨石中的金属组合结构与之前在塞姆昌铁陨石实验中获得的金属组合结构进行了比较。实验结果表明,在 400°C 温度下加热 6 小时不会导致金属晶粒结构发生变化。在 500 和 600°C 的温度下加热 6 小时会启动浑浊区的转变过程,在 700°C 的温度下加热 6 小时后浑浊区会完全消失。车里雅宾斯克普通软玉的轻岩性碎片加热不均匀是其宇宙历史中撞击事件的结果。其中一块碎片中存在四钛铁矿和浑浊区,这意味着该区域的温度不超过 400°C。一些区域的加热温度在 500-600°C 之间,甚至超过 700°C。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal metamorphism of metal assemblage in the light lithology of the Chelyabinsk LL5 meteorite
Research subject. Metal assemblage in the light lithology of the Chelyabinsk ordinary chondrite (LL5). Aim. The study of the structure of kamacite (α-Fe(Ni, Co)) and taenite (γ-Fe(Ni, Co)), as well as identification of the morphological features resulting from heating of chondrite matter. Materials and methods. Samples from the unaltered light lithology of the Chelyabinsk meteorite. The chemical composition of the samples was studied using optical microscopy (Zeiss Axiovert 40 MAT) and scanning electron microscopy (FE-SEM ∑IGMA VP) with an EDS unit. Results. The studied fragments can be divided into three groups depending on their structural composition: 1) metal grains with an unchanged structure; a zonal structure is observed in taenite (tetrataenite, cloudy zone); 2) metal grains with a taenite structure similar to the zonal one; 3) fragments in which no grains with a zonal structure were found; martensite-like structures formed during reheating were present. The structure of metal assemblage in the Chelyabinsk chondrite is compared with the structure of metal assemblage obtained in previous experiments with the Seymchan iron meteorite. It was established that heating to a temperature of 400°C for 6 h causes no changes in the metal grain structure. Heating to temperatures of 500 and 600°C for 6 h initiates transformation processes of the cloudy zone, which disappears completely after heated to 700°C for 6 h. Conclusions. Fragments of the light lithology of the Chelyabinsk ordinary chondrite were heating unevenly as a result of an impact event in its cosmic history. The presence of tetrataenite and a cloudy zone in one of the fragments means that temperature in this area didn’t exceed 400°C. Some areas underwent heating in the temperature range of 500–600°C and above 700°C.
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