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Experimental impacts into chondritic targets, part I: Disruption of an L6 chondrite by multiple impacts

机译:实验对软骨目标的影响,第一部分:多重冲击破坏L6球粒陨石

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摘要

A fragment of an L6 chondrite (Allan Hills [ALH] 85017,13) with an initial mass (M-0) of 464.1 g was the target in a series of experimental impacts in which the largest remaining fragment (M-R) after each shot was impacted by a 3.18 mm ceramic sphere at a nominal speed of 2 km s(-1). This continued until the mass of the largest remaining piece was less than half the mass of the target presented to that shot (M-S). Two chunks of Bushveldt gabbro with similar initial masses were also impacted under the same conditions until M-R was less than half M-0. The two gabbro targets required a total of 1.51 x 10(7) and 1.75 x 10(7) erg g(-1) to attain 0.27 and 0.33 M-R/M-0, respectively; the chondrite, however, was considerably tougher, reaching 0.40 and 0.21 M-R/M-0 only after receiving 2.37 x 10(7) and 3.10 x 10(7) erg g(-1), respectively. The combined ejecta and spallation products from the gabbro impacts were coarser than those from the chondrite and in sufficient quantities that the new surface areas exceeded those from the meteorite until the fifth shot in the chondrite series, which was the number of impacts required to disrupt each gabbro target (i.e., M-R/M-0 <= 0.5). Unlike the behavior shown in previous regolith-evolution series, neither gabbro target produced an enhancement in the size fraction reflecting the mean size of the crystals composing the rock (about 3 mm), an effect possibly related to the width of the shock pulse. The original chondrite was so fine-grained and fractured, and the variance in its grain-size distribution so large, that effects related to grain size were relegated to the <63 mu m fraction. Impacts into ALH 85017 produced abundant, fine-grained debris, but otherwise the slopes of its size distributions were comparable to those from other experiments involving natural and fabricated terrestrial targets. The characteristic slopes of the chondrite's size distributions, however, were notably more constant over the entire nine-impact series than those from any of-the terrestrial targets, a testament to the control over comminution apparently exerted by pre-existing fractures and other, microscopic damage in the meteorite. The enhancement in the finer fraction of debris from ALH 85017 indicates that ordinary chondrites in solar orbit would be very efficient contributors to the cosmic-dust complex. At the same time, the greater resistance to disruption displayed by ordinary chondrites relative to that exhibited by igneous rocks indicates that a selection effect could be operative between the annealed, ordinary-chondritic breccias and relatively weaker, differentiated meteorites. Preferential survival from their time in the regoliths of their parent bodies through their transit to Earth and passage through the atmosphere suggests that meteorite collections could be biased in favor of the ordinary chondrites.
机译:一系列初始撞击(M-0)为464.1 g的L6球粒陨石碎片(Allan Hills [ALH] 85017,13)是一系列实验影响的目标,其中每次射击后残留的最大碎片(MR)受到3.18 mm陶瓷球的冲击,额定速度为2 km s(-1)。持续进行直到剩下的最大碎片的质量小于该次射击的目标质量(M-S)的一半。在相同条件下,两块初始质量相似的布什维尔德辉长岩也受到影响,直到M-R小于M-0的一半。两个gabbro目标总共需要1.51 x 10(7)和1.75 x 10(7)erg g(-1)才能分别达到0.27和0.33 M-R / M-0;然而,球粒陨石坚韧得多,仅在分别接收到2.37 x 10(7)和3.10 x 10(7)erg g(-1)后分别达到0.40和0.21 M-R / M-0。辉长岩撞击产生的喷射和散裂产物的组合要比球粒陨石粗得多,并且其数量足以使新表面积超过陨石的表面积,直到球粒陨石系列中的第五次射击为止,这是破坏每种撞击所需的撞击次数辉长岩目标(即MR / M-0 <= 0.5)。与以前的巨石演化系列中所示的行为不同,辉长岩靶都没有产生反映组成岩石的晶体平均尺寸(约3 mm)的尺寸分数的增强,这可能与冲击脉冲的宽度有关。原始的球粒陨石是如此细小和破裂,并且其晶粒尺寸分布的变化如此之大,以至于与晶粒尺寸有关的影响被降到了<63微米。对ALH 85017的撞击会产生大量细粒度的碎屑,但除此之外,其大小分布的斜率与其他涉及天然和人造地面目标的实验的斜率相当。然而,在整个九次撞击序列中,球粒陨石的大小分布特征斜率比任何一个地面目标的斜率都明显更恒定,这证明显然可以控制由预先存在的裂缝和其他微观作用所引起的粉碎。损坏陨石。来自ALH 85017的更细微碎片的增加表明,太阳轨道上的普通球粒陨石将是宇宙尘埃复合物的非常有效的贡献者。同时,相对于火成岩,普通球粒陨石显示出更大的抗破坏能力,这表明在退火的普通粒状角砾岩和相对较弱,分化的陨石之间有选择作用。从它们在母体的长石中迁移到地球并通过大气时的优先生存期表明,陨石的收集可能偏向于普通的球粒陨石。

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